Publications


2022
3D modeling and experimental investigation on the damage behavior of an interpenetrating metal ceramic composite (IMCC) under compression
Schukraft, J.; Horny, D.; Schulz, K.; Weidenmann, K. A.
2022. Materials Science and Engineering: A, 844, Art.-Nr.: 143147. doi:10.1016/j.msea.2022.143147
Height-Averaged Navier–Stokes Solver for Hydrodynamic Lubrication
Holey, H.; Codrignani, A.; Gumbsch, P.; Pastewka, L.
2022. Tribology Letters, 70 (2), 36. doi:10.1007/s11249-022-01576-5
Dislocation structure analysis in the strain gradient of torsion loading: a comparison between modelling and experiment
Stricker, M.; Ziemann, M.; Walter, M.; Weygand, S. M.; Gruber, P.; Weygand, D.
2022. Modelling and simulation in materials science and engineering, 30 (3), Art.Nr.: 035007. doi:10.1088/1361-651X/ac4d77
Tight Coupling of Surface and In-Plant Biochemistry and Convection Governs Key Fine Particulate Components over the Amazon Rainforest
Shrivastava, M.; Rasool, Q. Z.; Zhao, B.; Octaviani, M.; Zaveri, R. A.; Zelenyuk, A.; Gaudet, B.; Liu, Y.; Shilling, J. E.; Schneider, J.; Schulz, C.; Zöger, M.; Martin, S. T.; Ye, J.; Guenther, A.; Souza, R. F.; Wendisch, M.; Pöschl, U.
2022. ACS earth and space chemistry, 6 (2), 380–390. doi:10.1021/acsearthspacechem.1c00356
High entropy alloys with hexagonal close-packed structure derived from thin film combinatorial approach
Ter-Isahakyan, A.; Rau, J. S.; Balk, T. J.
2022. Journal of alloys and compounds, 893, 162293. doi:10.1016/j.jallcom.2021.162293
Managing FAIR Tribological Data Using Kadi4Mat
Brandt, N.; Garabedian, N. T.; Schoof, E.; Schreiber, P. J.; Zschumme, P.; Greiner, C.; Selzer, M.
2022. Data, 7 (2), Art.-Nr. 15. doi:10.3390/data7020015
A phase‐field based model for coupling two‐phase flow with the motion of immersed rigid bodies
Reder, M.; Hoffrogge, P. W.; Schneider, D.; Nestler, B.
2022. International Journal for Numerical Methods in Engineering. doi:10.1002/nme.6988
Micromechanical fatigue experiments for validation of microstructure-sensitive fatigue simulation models
Durmaz, A. R.; Natkowski, E.; Arnaudov, N.; Sonnweber-Ribic, P.; Weihe, S.; Münstermann, S.; Eberl, C.; Gumbsch, P.
2022. International Journal of Fatigue, 160, Art.-Nr.: 106824. doi:10.1016/j.ijfatigue.2022.106824
Explainable Artificial Intelligence for Mechanics: Physics-Explaining Neural Networks for Constitutive Models
Koeppe, A.; Bamer, F.; Selzer, M.; Nestler, B.; Markert, B.
2022. Frontiers in Materials, 8, Art.-Nr.: 824958. doi:10.3389/fmats.2021.824958
Efficient Exploration of Microstructure-Property Spaces via Active Learning
Morand, L.; Link, N.; Iraki, T.; Dornheim, J.; Helm, D.
2022. Frontiers in Materials, 8, Art.-Nr.: 824441. doi:10.3389/fmats.2021.824441
Machine Learning Assisted Design of Experiments for Solid State Electrolyte Lithium Aluminum Titanium Phosphate
Zhao, Y.; Schiffmann, N.; Koeppe, A.; Brandt, N.; Bucharsky, E. C.; Schell, K. G.; Selzer, M.; Nestler, B.
2022. Frontiers in Materials, 9, Art.-Nr.: 821817. doi:10.3389/fmats.2022.821817
Two-dimensional buckling structure induces the ultra-low thermal conductivity: a comparative study of the group GaX (X = N, P, As)
Shen, C.; Hadaeghi, N.; Singh, H. K.; Long, T.; Fan, L.; Qin, G.; Zhang, H.
2022. Journal of materials chemistry / C, 10 (4), 1436–1444. doi:10.1039/d1tc04531h
The role of dissipation regarding the concept of purely mechanical theories in plasticity
Prahs, A.; Böhlke, T.
2022. Mechanics research communications, 119, Art.-Nr. 103832. doi:10.1016/j.mechrescom.2021.103832
Tribologically induced crystal rotation kinematics revealed by electron backscatter diffraction
Haug, C.; Molodov, D.; Gumbsch, P.; Greiner, C.
2022. Acta Materialia, 225, Art.-Nr.: 117566. doi:10.1016/j.actamat.2021.117566
Equilibrium droplet shapes on chemically patterned surfaces: theoretical calculation, phase-field simulation, and experiments
Wu, Y.; Kuzina, M.; Wang, F.; Reischl, M.; Selzer, M.; Nestler, B.; Levkin, P. A.
2022. Journal of Colloid and Interface Science, 606, 1077–1086. doi:10.1016/j.jcis.2021.08.029
2021
3D printing of inherently nanoporous polymers via polymerization-induced phase separation
Dong, Z.; Cui, H.; Zhang, H.; Wang, F.; Zhan, X.; Mayer, F.; Nestler, B.; Wegener, M.; Levkin, P. A.
2021. Nature Communications, 12 (1), Art:nr. 247. doi:10.1038/s41467-020-20498-1
Some Implications of Constraints in Phasefield Models. PhD dissertation
Reiter, A.
2021, November 16. Karlsruher Institut für Technologie (KIT). doi:10.5445/IR/1000139899
Droplet wetting on chemically and mechanically structured surfaces. PhD dissertation
Wu, Y.
2021, November 9. Karlsruher Institut für Technologie (KIT). doi:10.5445/IR/1000139649
Design and Characterization of Self-Lubricating Refractory High Entropy Alloy-Based Multilayered Films
Luo, D.; Zhou, Q.; Ye, W.; Ren, Y.; Greiner, C.; He, Y.; Wang, H.
2021. ACS Applied Materials and Interfaces, 13 (46), 55712–55725. doi:10.1021/acsami.1c16949
Efficient Experimental and Data-Centered Workflow for Microstructure-Based Fatigue Data – Towards a Data Basis for Predictive AI Models
Durmaz, A. R.; Hadzic, N.; Straub, T.; Eberl, C.; Gumbsch, P.
2021. Experimental mechanics, 61 (9), 1489–1502. doi:10.1007/s11340-021-00758-x
Numerische Untersuchung von mechanischen und thermischen Eigenschaften von Gusseisen mit Lamellengraphit. PhD dissertation
Herrmann, C. J.
2021, October 27. Karlsruher Institut für Technologie (KIT). doi:10.5445/IR/1000139258
Correlation of wear behaviour and microstructural evolution in Mg–Zn–Y alloys with long-period stacking ordered phase
Takagi, K.; Hashamova, E.; Dienwiebel, M.; Mine, Y.; Takashima, K.
2021. Wear, 482–483, Art. Nr.: 203983. doi:10.1016/j.wear.2021.203983
A Probabilistic Model for Forging Flaw Crack Nucleation Processes
Radaelli, F.; Amann, C.; Aydin, A.; Varfolomeev, I.; Gumbsch, P.; Kadau, K.
2021. Journal of engineering for gas turbines and power, 143 (10), 101012. doi:10.1115/1.4051426
Kinematics of Crystal Growth in Single‐Seal Syntaxial Veins in Limestone ‐ A Phase‐Field Study
Späth, M.; Spruženiece, L.; Urai, J. L.; Selzer, M.; Arndt, M.; Nestler, B.
2021. Journal of geophysical research / Solid earth, 126 (10). doi:10.1029/2021JB022106
The effect of electrochemically inactive Ti substituted for Ru in Li2Ru1-Ti O3 on structure and electrochemical performance
Yao, Y.; Zhang, L.; Sigel, F.; Schwarz, B.; Ehrenberg, H.; Chen, G.; Du, F.; Wang, C.
2021. Journal of Energy Chemistry, 60, 222–228. doi:10.1016/j.jechem.2020.12.037
Simulating mechanical wave propagation within the framework of phase-field modelling
Liu, X.; Schneider, D.; Daubner, S.; Nestler, B.
2021. Computer methods in applied mechanics and engineering, 381, Article: 113842. doi:10.1016/j.cma.2021.113842
Phase-field formulation of a fictitious domain method for particulate flows interacting with complex and evolving geometries
Reder, M.; Schneider, D.; Wang, F.; Daubner, S.; Nestler, B.
2021. International Journal for Numerical Methods in Fluids, 93 (8), 2486–2507. doi:10.1002/fld.4984
Graphite Lubrication Mechanisms Under High Mechanical Load
Morstein, C. E.; Dienwiebel, M.
2021. Wear, 477, Art. Nr.: 203794. doi:10.1016/j.wear.2021.203794
Achieving Ultra-Low Friction with Diamond/Metal Systems in Extreme Environments
Stoyanov, P.; Merz, R.; Stricker, M.; Kopnarski, M.; Dienwiebel, M.
2021. Materials, 14 (14), 3791. doi:10.3390/ma14143791
Phase-field modeling of unidirectionally solidified microstructures under diffusive-convective regime. PhD dissertation
Veluvali, P. L.
2021, July 5. Karlsruher Institut für Technologie (KIT). doi:10.5445/IR/1000134624
Morphological stability of three-dimensional cementite rods in polycrystalline system : A phase-field analysis
Mittnacht, T.; Kubendran Amos, P. G.; Schneider, D.; Nestler, B.
2021. Journal of materials science & technology, 77, 252–268. doi:10.1016/j.jmst.2020.11.019
Some refinements in the phase-field and sharp interface treatments of eutectic growth. PhD dissertation
Enugala, S. N.
2021, June 25. Karlsruher Institut für Technologie (KIT). doi:10.5445/IR/1000134170
Wide-blocky veins explained by dependency of crystal growth rate on fracture surface type: Insights from phase-field modeling
Spruženiece, L.; Späth, M.; Urai, J. L.; Ukar, E.; Selzer, M.; Nestler, B.
2021. Geology, 49 (6), 641–646. doi:10.1130/G48472.1
Quantitative Phase-Field Modeling of Faceted Crystal Dissolution Processes
Prajapati, N.; Späth, M.; Knecht, L.; Selzer, M.; Nestler, B.
2021. Crystal growth & design, 21 (6), 3266–3279. doi:10.1021/acs.cgd.0c01715
Mechanismen tribologisch-induzierter Oxidation in hochreinem Kupfer. PhD dissertation
Rau, J. S.
2021, March 31. Karlsruher Institut für Technologie (KIT). doi:10.5445/IR/1000130866
Formation of wide-blocky calcite veins by extreme growth competition
Spruženiece, L.; Späth, M.; Urai, J. L.; Ukar, E.; Selzer, M.; Nestler, B.; Schwedt, A.
2021. Journal of the Geological Society, 178 (2), jgs2020–104. doi:10.1144/jgs2020-104
Kadi4Mat : A Research Data Infrastructure for Materials Science
Brandt, N.; Griem, L.; Herrmann, C.; Schoof, E.; Tosato, G.; Zhao, Y.; Zschumme, P.; Selzer, M.
2021. Data science journal, 20 (1), Art.-Nr.: 8. doi:10.5334/dsj-2021-008
Atomically Architected Silicon Pyramid Single-Crystalline Structure Supporting Epitaxial Material Growth and Characteristic Magnetism
Irmikimov, A.; Pamasi, L. N.; Hattori, A. N.; Higashi, T.; Takahashi, S.; Hashamova, E. E.; Shi, X.; Guo, F.; Hosoito, N.; Osaka, A. I.; Tanaka, H.; Hattori, K.
2021. Crystal growth & design, 21 (2), 946–953. doi:10.1021/acs.cgd.0c01286
Phase-field simulations of grain boundary grooving under diffusive-convective conditions
Laxmipathy, V. P.; Wang, F.; Selzer, M.; Nestler, B.
2021. Acta materialia, 204, Art.-Nr.: 116497. doi:10.1016/j.actamat.2020.116497
Characterization of the Microstructure After Composite Peening of Aluminum
Seitz, M.; Dürrschnabel, M.; Kauffmann, A.; Kurpiers, C.; Greiner, C.; Weidenmann, K. A.
2021. Advanced engineering materials, 23 (2), Art.Nr. 2000575. doi:10.1002/adem.202000575
Tribologische Analysen eines hochbelasteten Rastmechanismus unter unterschiedlichen kinematischen Bedingungen. PhD dissertation
Schimrosczyk, E.
2021, January 21. Karlsruher Institut für Technologie (KIT). doi:10.5445/IR/1000128472
Phase-field modeling on the diffusion-driven processes in metallic conductors and lithium-ion batteries. PhD dissertation
Santoki, J.
2021, January 13. Karlsruher Institut für Technologie (KIT). doi:10.5445/IR/1000128098
How Tribo-Oxidation Alters the Tribological Properties of Copper and Its Oxides
Lehmann, J. S.; Schwaiger, R.; Rinke, M.; Greiner, C.
2021. Advanced materials interfaces, 8 (1), Art.-Nr.: 2001673. doi:10.1002/admi.202001673
An artificial intelligence approach to model nonlinear continua by intelligent meta‐elements
Koeppe, A.; Bamer, F.; Markert, B.
2021. PAMM, 20 (Special Issue), e202000300. doi:10.1002/pamm.202000300
Workflow concepts to model nonlinear mechanics with computational intelligence
Koeppe, A.; Bamer, F.; Selzer, M.; Nestler, B.; Markert, B.
2021. PAMM, 21 (Special Issue), e202100238. doi:10.1002/pamm.202100238
MoMaF Science Data Center für Molekulare Materialforschung
Altschuh, P.; Bach, F.; Bräse, S.; Hartmann, T.; Jung, N.; Krauß, P.; Nestler, B.; Schiefer, G.; Schreiber, C.; Selzer, M.; Terzijska, D.
2021. E-Science-Tage 2021: Share Your Research Data, Heidelberg, 04.03. - 05.03.2021. doi:10.11588/heidok.00029699
pH-Induced Modulation of Vibrio fischeri Population Life Cycle
Silva, A. R.; Sousa, C.; Exner, D.; Schwaiger, R.; Alves, M. M.; Petrovykh, D. Y.; Pereira, L.
2021. Chemosensors, 9 (10), 283. doi:10.3390/chemosensors9100283
A deep learning approach for complex microstructure inference
Durmaz, A. R.; Müller, M.; Lei, B.; Thomas, A.; Britz, D.; Holm, E. A.; Eberl, C.; Mücklich, F.; Gumbsch, P.
2021. Nature Communications, 12 (1), Art.Nr. 6272. doi:10.1038/s41467-021-26565-5
Calibrating a fiber–matrix interface failure model to single fiber push-out tests and numerical simulations
Rohrmüller, B.; Gumbsch, P.; Hohe, J.
2021. Composites Part A: Applied Science and Manufacturing, 150, Art.-Nr.: 106607. doi:10.1016/j.compositesa.2021.106607
Phase-Field Model for the Simulation of Brittle-Anisotropic and Ductile Crack Propagation in Composite Materials
Herrmann, C.; Schneider, D.; Schoof, E.; Schwab, F.; Nestler, B.
2021. Materials, 14 (17), Art.-Nr.: 4956. doi:10.3390/ma14174956
Atomistic calculations of charged point defects at grain boundaries in SrTi O3
Tao, C.; Mutter, D.; Urban, D. F.; Elsässer, C.
2021. Physical Review B, 104 (5), Art.-Nr.: 054114. doi:10.1103/PhysRevB.104.054114
Phase-field investigation on the peritectic transition in Fe-C system
Cai, Y.; Wang, F.; Zhang, Z.; Nestler, B.
2021. Acta Materialia, 219, Art.-Nr.: 117223. doi:10.1016/j.actamat.2021.117223
Development of a new topographical parameter set for characterizing textured rough surfaces
Yue, H.; Deng, J.; Schneider, J.
2021. Surface Topography: Metrology and Properties, 9 (3), 035013. doi:10.1088/2051-672X/ac1723
Thermodynamic Reassessment of the Au-In Binary System Supported with First-Principles Calculations
Shen, C.; Hu, K.; Fan, L.; Zhang, H.
2021. Journal of Phase Equilibria and Diffusion. doi:10.1007/s11669-021-00910-z
Controlling shear band instability by nanoscale heterogeneities in metallic nanoglasses
Nandam, S. H.; Schwaiger, R.; Kobler, A.; Kübel, C.; Wang, C.; Ivanisenko, Y.; Hahn, H.
2021. Journal of materials research, 36, 2903–2914. doi:10.1557/s43578-021-00285-4
The Force Cone Method Applied to Explain Hidden Whirls in Tribology
Mattheck, C.; Greiner, C.; Bethge, K.; Tesari, I.; Weber, K.
2021. Materials, 14 (14), Art.-Nr. 3894. doi:10.3390/ma14143894
A review of coated nano- and micro-lattice materials
Garcia-Taormina, A. R.; Alwen, A.; Schwaiger, R.; Hodge, A. M.
2021. Journal of materials research, 36, 3607–3627. doi:10.1557/s43578-021-00178-6
Effect of tortuosity, porosity, and particle size on phase-separation dynamics of ellipsoid-like particles of porous electrodes: Cahn-Hilliard-type phase-field simulations
Santoki, J.; Daubner, S.; Schneider, D.; Kamlah, M.; Nestler, B.
2021. Modelling and simulation in materials science and engineering. doi:10.1088/1361-651X/ac11bc
DFT Calculations and Thermodynamic Re-Assessment of the Fe-Y Binary System
Fan, L.; Shen, C.; Hu, K.; Liu, H.; Zhang, H.
2021. Journal of Phase Equilibria and Diffusion, 42, 348–362. doi:10.1007/s11669-021-00887-9
Phase-Field Modeling of Multiple Emulsions Via Spinodal Decomposition
Zhang, H.; Wu, Y.; Wang, F.; Guo, F.; Nestler, B.
2021. Langmuir, 37 (17), 5275–5281. doi:10.1021/acs.langmuir.1c00275
The indentation size effect of single-crystalline tungsten revisited
Wang, J.; Volz, T.; Weygand, S. M.; Schwaiger, R.
2021. Journal of Materials Research. doi:10.1557/s43578-021-00221-6
Kleine Bausteine mit großer Wirkung
Kneer, A.; August, A.; Wirtz, M.; Herrmann, C.; Schneider, D.; Nestler, B.
2021. Forschung aktuell, 44–51
Multiscale Friction Simulation of Dry Polymer Contacts: Reaching Experimental Length Scales by Coupling Molecular Dynamics and Contact Mechanics
Savio, D.; Hamann, J.; Romero, P. A.; Klingshirn, C.; Bactavatchalou, R.; Dienwiebel, M.; Moseler, M.
2021. Tribology letters, 69 (2), 70. doi:10.1007/s11249-021-01444-8
Tribological Performance of Additively Manufactured AISI H13 Steel in Different Surface Conditions
Guenther, E.; Kahlert, M.; Vollmer, M.; Niendorf, T.; Greiner, C.
2021. Materials, 14 (4), 928. doi:10.3390/ma14040928
Microstructure evolution of compressed micropillars investigated by in situ HR-EBSD analysis and dislocation density simulations
Zoller, K.; Kalácska, S.; Ispánovity, P. D.; Schulz, K.
2021. Comptes rendus physique, 22 (S3), 1–27. doi:10.5802/crphys.55
Lustre I/O performance investigations on Hazel Hen: experiments and heuristics
Seiz, M.; Offenhäuser, P.; Andersson, S.; Hötzer, J.; Hierl, H.; Nestler, B.; Resch, M.
2021. The journal of supercomputing. doi:10.1007/s11227-021-03730-7
Large characteristic lengths in 3D chiral elastic metamaterials
Frenzel, T.; Hahn, V.; Ziemke, P.; Schneider, J. L. G.; Chen, Y.; Kiefer, P.; Gumbsch, P.; Wegener, M.
2021. Communications materials, 2 (1), Art.Nr. 4. doi:10.1038/s43246-020-00107-w
Multiphase-field model for surface diffusion and attachment kinetics in the grand-potential framework
Hoffrogge, P. W.; Mukherjee, A.; Nani, E. S.; Amos, P. G. K.; Wang, F.; Schneider, D.; Nestler, B.
2021. Physical review / E, 103 (3), Article no: 033307. doi:10.1103/PhysRevE.103.033307
Wetting transition and phase separation on flat substrates and in porous structures
Wang, F.; Nestler, B.
2021. Journal of Chemical Physics, 154 (9), Art.-Nr.: 094704. doi:10.1063/5.0044914
Multiphase-field modeling of spinodal decomposition during intercalation in an Allen-Cahn framework
Daubner, S.; Kubendran Amos, P. G.; Schoof, E.; Santoki, J.; Schneider, D.; Nestler, B.
2021. Physical review materials, 5 (3), Article no: 035406. doi:10.1103/PhysRevMaterials.5.035406
A probabilistic model for forging flaw crack nucleation processes
Radaelli, F.; Amann, C.; Aydin, A.; Varfolomeev, I.; Gumbsch, P.; Kadau, K.
2021. ASME Turbo Expo 2020: Turbomachinery Technical Conference and Exposition, September 21–25, 2020, Virtual, Online. Volume 10B: Structures and Dynamics, GT2020–14606, The American Society of Mechanical Engineers (ASME). doi:10.1115/GT2020-14606
Modelling and simulation of the freeze casting process with the phase-field method
Seiz, M.; Nestler, B.
2021. Computational materials science, 193, Art.-Nr.: 110410. doi:10.1016/j.commatsci.2021.110410
Effect of conductivity on the electromigration-induced morphological evolution of islands with high symmetries of surface diffusional anisotropy
Santoki, J.; Mukherjee, A.; Schneider, D.; Nestler, B.
2021. Journal of applied physics, 129 (2), Ar. Nr.: 025110. doi:10.1063/5.0033228
A two-dimensional phase-field study on dendritic growth competition under convective conditions
Laxmipathy, V. P.; Wang, F.; Selzer, M.; Nestler, B.
2021. Computational materials science, 186, Art.-Nr.: 109964. doi:10.1016/j.commatsci.2020.109964
2020
Grand-potential based phase-field model for systems with interstitial sites
Kubendran Amos, P. G.; Nestler, B.
2020. Scientific reports, 10 (1), Art. Nr. 22423. doi:10.1038/s41598-020-79956-x
Initiale Mikrostrukturentwicklung in Kupfer infolge einer tribologischen Belastung. PhD dissertation
Ruebeling, F. M.
2020, December 11. Karlsruher Institut für Technologie (KIT)
Towards programmable friction: control of lubrication with ionic liquid mixtures by automated electrical regulation
Gatti, F.; Amann, T.; Kailer, A.; Baltes, N.; Rühe, J.; Gumbsch, P.
2020. Scientific reports, 10 (1), Art. Nr.: 17634. doi:10.1038/s41598-020-74709-2
Additive laser barcode printing on high reflective stainless steel
Mihalev, M. S.; Hardalov, C. M.; Christov, C. G.; Rinke, M.; Leiste, H.; Schneider, J.
2020. Acta polytechnica, 60 (5), 435–439. doi:10.14311/AP.2020.60.0435
Aspects on numerical integration of dislocation surface traction fields for discrete dislocation dynamics FEM coupling: the case of emerging dislocations
El Achkar, T.; Weygand, D.
2020. Modelling and simulation in materials science and engineering, 28 (8), Art.Nr. 085010. doi:10.1088/1361-651X/abc04d
Extreme Scale Phase-Field Simulation of Sintering Processes
Hierl, H.; Hötzer, J.; Seiz, M.; Reiter, A.; Nestler, B.
2020. 2019 IEEE/ACM 10th Workshop on Latest Advances in Scalable Algorithms for Large-Scale Systems (ScalA), Denver, CO, USA, 18-18 Nov. 2019, 25–32, Institute of Electrical and Electronics Engineers (IEEE). doi:10.1109/ScalA49573.2019.00009
Repulsion leads to coupled dislocation motion and extended work hardening in bcc metals
Srivastava, K.; Weygand, D.; Caillard, D.; Gumbsch, P.
2020. Nature Communications, 11 (1), Art. Nr.: 5098. doi:10.1038/s41467-020-18774-1
Microstructural transition in monotectic alloys: A phase-field study
Laxmipathy, V. P.; Wang, F.; Selzer, M.; Nestler, B.
2020. International journal of heat and mass transfer, 159, Art.-Nr. 120096. doi:10.1016/j.ijheatmasstransfer.2020.120096
Development of synthetic open porous structures for improved heat transfer
August, A.; Jamshidi, F.; Kneer, A.; Wolf, R. H.; Wirtz, M.; Nestler, B.
2020. International journal of heat and mass transfer, 159, Article No.: 120071. doi:10.1016/j.ijheatmasstransfer.2020.120071
Surface engineering of a titanium alloy for tribological applications by nanosecond-pulsed laser
Kümmel, D.; Linsler, D.; Schneider, R.; Schneider, J.
2020. Tribology international, 150, Article no: 106376. doi:10.1016/j.triboint.2020.106376
Studies of Charm Quark Diffusion inside Jets Using Pb-Pb and pp Collisions at √sNN=5.02  TeV
CMS Collaboration; Sirunyan, A. M.; Tumasyan, A.; Adam, W.; Ambrogi, F.; Asilar, E.; Bergauer, T.; Brandstetter, J.; Dragicevic, M.; Erö, J.; Escalante Del Valle, A.; Flechl, M.; Frühwirth, R.; Ghete, V. M.; Hrubec, J.; Jeitler, M.; Krammer, N.; Krätschmer, I.; Liko, D.; Madlener, T.; Mikulec, I.; Rad, N.; Rohringer, H.; Schieck, J.; Schöfbeck, R.; Spanring, M.; Spitzbart, D.; Taurok, A.; Waltenberger, W.; Wittmann, J.; Wulz, C.-E.; Zarucki, M.; Chekhovsky, V.; Mossolov, V.; Suarez Gonzalez, J.; De Wolf, E. A.; Di Croce, D.; Janssen, X.; Lauwers, J.; Pieters, M.; Van Haevermaet, H.; Van Mechelen, P.; Van Remortel, N.; Abu Zeid, S.; Blekman, F.; D’Hondt, J.; De Bruyn, I.; De Clercq, J.; Deroover, K.; Flouris, G.; Lontkovskyi, D.; Lowette, S.; Marchesini, I.; Moortgat, S.; Moreels, L.; Python, Q.; Skovpen, K.; Tavernier, S.; Van Doninck, W.; Van Mulders, P.; Van Parijs, I.; Beghin, D.; Bilin, B.; Brun, H.; Clerbaux, B.; De Lentdecker, G.; Delannoy, H.; Dorney, B.; Fasanella, G.; Favart, L.; Goldouzian, R.; Grebenyuk, A.; Kalsi, A. K.; Lenzi, T.; Luetic, J.; Postiau, N.; Starling, E.; Thomas, L.; Vander Velde, C.; Vanlaer, P.; Vannerom, D.; Wang, Q.; Cornelis, T.; Dobur, D.; Fagot, A.; Gul, M.; Khvastunov, I.; Poyraz, D.; Roskas, C.; Trocino, D.; Tytgat, M.; Verbeke, W.; Vermassen, B.; Vit, M.; Zaganidis, N.; Bakhshiansohi, H.; Bondu, O.; Brochet, S.; Bruno, G.; Caputo, C.; David, P.; Delaere, C.; Delcourt, M.; Giammanco, A.; Krintiras, G.; Lemaitre, V.; Magitteri, A.; Mertens, A.; Musich, M.; Piotrzkowski, K.; Saggio, A.; Vidal Marono, M.; Wertz, S.; Zobec, J.; Alves, F. L.; Alves, G. A.; Correa Martins Junior, M.; Correia Silva, G.; Hensel, C.; Moraes, A.; Pol, M. E.; Rebello Teles, P.; Belchior Batista Das Chagas, E.; Carvalho, W.; Chinellato, J.; Coelho, E.; Da Costa, E. M.; Da Silveira, G. G.; De Jesus Damiao, D.; De Oliveira Martins, C.; Fonseca De Souza, S.; Malbouisson, H.; Matos Figueiredo, D.; Melo De Almeida, M.; Mora Herrera, C.; Mundim, L.; Nogima, H.; Prado Da Silva, W. L.; Sanchez Rosas, L. 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Influence of Interstitial Oxygen on the Tribology of Ti6Al4V
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2020. Tribology letters, 68 (3), Art. Nr.: 96. doi:10.1007/s11249-020-01327-4
Calibrating micro-computed tomography data to permeability experiments and petrography – insights from Digital Rocks
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Data-driven exploration and continuum modeling of dislocation networks
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A continuum damage mechanics model for fatigue and degradation of fiber reinforced materials
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2020. Journal of composite materials, 54 (21), 2837–2852. doi:10.1177/0021998320904142
Computational modeling of syntaxial overgrowth cementation and fracture propagation in sedimentary rocks. PhD dissertation
Prajapati, N.
2020, August 27. Karlsruher Institut für Technologie (KIT). doi:10.5445/IR/1000122917
Skalenübergreifende Analyse makroporöser Membranen im Kontext digitaler Zwillinge. PhD dissertation
Altschuh, P.
2020, August 26. Karlsruher Institut für Technologie (KIT). doi:10.5445/IR/1000122904
A digital workflow for learning the reduced-order structure-property linkages for permeability of porous membranes
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2020. Acta materialia, 195, 668–680. doi:10.1016/j.actamat.2020.06.003
How do chemical patterns affect equilibrium droplet shapes?
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2020. Soft matter, 16 (26), 6115–6127. doi:10.1039/d0sm00196a
Critical issues for the ground control of shallow roadways in weak ground: a case study
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2020. Arabian journal of geosciences, 13 (14), Art.-Nr.: 623. doi:10.1007/s12517-020-05639-6
Influence of topological structure and chemical segregation on the thermal and mechanical properties of Pd–Si nanoglasses
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2020. Acta materialia, 193, 252–260. doi:10.1016/j.actamat.2020.03.021
Numerical and Experimental Characterization of Elastic Properties of a Novel, Highly Homogeneous Interpenetrating Metal Ceramic Composite
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2020. Advanced engineering materials, 22 (7), Art.Nr. 1901556. doi:10.1002/adem.201901556
Elementare Ermüdungsmechanismen in Metallen zur Lebensdauervorhersage mittels Versetzungsdynamiksimulation. PhD dissertation
El-Achkar, T.
2020, June 18. Karlsruher Institut für Technologie (KIT). doi:10.5445/IR/1000120240
Morphological stability of rod-shaped continuous phases
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2020. Acta materialia, 192, 20–29. doi:10.1016/j.actamat.2020.04.028
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2020. Scripta materialia, 182, 16–20. doi:10.1016/j.scriptamat.2020.02.041
Multiphase-field modelling of concurrent grain growth and coarsening in complex multicomponent systems
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2020. Journal of materials science & technology, 45, 215–229. doi:10.1016/j.jmst.2019.11.011
Model-free Adaptive Optimal Control of Episodic Fixed-horizon Manufacturing Processes Using Reinforcement Learning
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2020. International journal of control, automation, and systems, 18 (5). doi:10.1007/s12555-019-0120-7
Chemomechanische Modellierung der Wärmebehandlung von Stählen mit der Phasenfeldmethode. PhD dissertation
Schoof, E.
2020, April 1. Karlsruher Institut für Technologie (KIT). doi:10.5445/IR/1000117917
Discrete and continuum modelling of size effects in architectured unstable metamaterials
Findeisen, C.; Forest, S.; Hohe, J.; Gumbsch, P.
2020. Continuum mechanics and thermodynamics, 32 (2), 1629–1645. doi:10.1007/s00161-020-00870-8
Effect of Environment on Microstructure Evolution and Friction of Au–Ni Multilayers
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2020. Tribology letters, 68 (1), Art. Nr.: 30. doi:10.1007/s11249-019-1245-9
Numerical evaluation of surface welding residual stress behavior under multiaxial mechanical loading and experimental validations
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2020. International journal of mechanical sciences, 168, Art. Nr.: 105127. doi:10.1016/j.ijmecsci.2019.105127
Solid solution strengthening and deformation behavior of single-phase Cu-base alloys under tribological load
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2020. Acta materialia, 185, 300–308. doi:10.1016/j.actamat.2019.12.005
Influence of stress-free transformation strain on the autocatalytic growth of bainite: A multiphase-field analysis
Schoof, E.; Kubendran Amos, P. G.; Schneider, D.; Nestler, B.
2020. Materialia, 9, Article: 100620. doi:10.1016/j.mtla.2020.100620
Early deformation mechanisms in the shear affected region underneath a copper sliding contact
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SuLMaSS - Sustainable Lifecycle Management for Scientific Software
Loewe, A.; Seemann, G.; Wülfers, E. M.; Huang, Y.-L.; Sánchez, J.; Bach, F.; Ulrich, R.; Selzer, M.
2020. E-Science-Tage 2019 : data to knowledge. Hrsg.: V. Heuveline, 238–240, Universitätsbibliothek Heidelberg
Application of Random Forests in ToF-SIMS Data
Zhao, Y.; Otto, S.-K.; Brandt, N.; Selzer, M.; Nestler, B.
2020. Procedia computer science, 176, 410–419. doi:10.1016/j.procs.2020.08.042
Development of an Openfoam Solver for Numerical Simulation of Carbonization of Biomasses in Rotary Kilns
Tavakkol, S.; Zirwes, T.; Denev, J. A.; Jamshidi, F.; Bockhorn, H.
2020. OpenFOAM Workshop, June 22 - 25, 2020, Arlington, Virginia, USA
Phase-inherent linear visco-elasticity model for infinitesimal deformations in the multiphase-field context
Schwab, F. K.; Reiter, A.; Herrmann, C.; Schneider, D.; Nestler, B.
2020. Advanced modeling and simulation in engineering sciences, 7 (1), Art.-Nr.: 47. doi:10.1186/s40323-020-00178-x
Programming Viscosity in Silicone Oils: Reversible Tuning of Rheological Properties in 9-Anthracene Ester-Terminated Polydimethylsiloxanes
Gäbert, C.; Rosenstingl, T.; Linsler, D.; Dienwiebel, M.; Reinicke, S.
2020. ACS applied polymer materials, 2 (12), 5460–5468. doi:10.1021/acsapm.0c00794
Multiphase-field modelling of crack propagation in geological materials and porous media with Drucker-Prager plasticity
Späth, M.; Herrmann, C.; Prajapati, N.; Schneider, D.; Schwab, F.; Selzer, M.; Nestler, B.
2020. Computational geosciences, 25 (1), 325–343. doi:10.1007/s10596-020-10007-0
Traceable Lateral Force Calibration (TLFC) for Atomic Force Microscopy
Bhattacharjee, A.; Garabedian, N. T.; Evans, C. L.; Burris, D. L.
2020. Tribology letters, 68 (4), Art.-Nr.: 111. doi:10.1007/s11249-020-01349-y
Electrochemical Performance of Carbon Modified LiNiPO as Li-Ion Battery Cathode: A Combined Experimental and Theoretical Study
Nasir, M. H.; Janjua, N. K.; Santoki, J.
2020. Journal of the Electrochemical Society, 167 (13), 130526. doi:10.1149/1945-7111/abb83d
Variation of the frictional anisotropy on ventral scales of snakes caused by nanoscale steps
Wu, W.; Yu, S.; Schreiber, P.; Dollmann, A.; Lutz, C.; Gomard, G.; Greiner, C.; Hölscher, H.
2020. Bioinspiration & biomimetics, 15 (5), Art.-Nr.: 056014. doi:10.1088/1748-3190/ab9e51
Bad Nodes Considered Harmful: How to Find and Fix the Problem
Seiz, M.; Hötzer, J.; Hierl, H.; Andersson, S.; Nestler, B.
2020. Sustained Simulation Performance 2018 and 2019 – Proceedings of the Joint Workshops on Sustained Simulation Performance, University of Stuttgart (HLRS) and Tohoku University, 2018 and 2019. Ed.: M. Resch, 123–130, Springer International Publishing. doi:10.1007/978-3-030-39181-2_11
Automated Quantitative Analyses of Fatigue-Induced Surface Damage by Deep Learning
Thomas, A.; Durmaz, A. R.; Straub, T.; Eberl, C.
2020. Materials, 13 (15), Article: 3298. doi:10.3390/ma13153298
Microstructural changes in CoCrFeMnNi under mild tribological load
Dollmann, A.; Kauffmann, A.; Heilmaier, M.; Haug, C.; Greiner, C.
2020. Journal of materials science, 55 (26), 12353–12372. doi:10.1007/s10853-020-04806-0
Weakly supervised one shot segmentation
Raza, H.; Ravanbakhsh, M.; Klein, T.; Nabi, M.
2020. 2019 IEEE/CVF International Conference on Computer Vision Workshop (ICCVW), 1401–1406, Institute of Electrical and Electronics Engineers (IEEE). doi:10.1109/ICCVW.2019.00176
Brittle anisotropic fracture propagation in quartz sandstone: insights from phase-field simulations
Prajapati, N.; Herrmann, C.; Späth, M.; Schneider, D.; Selzer, M.; Nestler, B.
2020. Computational geosciences, 24, 1361–1376. doi:10.1007/s10596-020-09956-3
On counting cells in open pore foams
August, A.; Nestler, B.
2020. Engineering Research Express, 2 (2), Art. Nr.: 025029. doi:10.1088/2631-8695/ab8c94
Nondestructive evaluation of 3D microstructure evolution in strontium titanate
Trenkle, A.; Syha, M.; Rheinheimer, W.; Callahan, P. G.; Nguyen, L.; Ludwig, W.; Lenthe, W.; Echlin, M. P.; Pollock, T. M.; Weygand, D.; Graef, M.; Hoffmann, M. J.; Gumbsch, P.
2020. Journal of applied crystallography, 53, 349–359. doi:10.1107/S160057672000093X
Pattern formation during deformation of metallic nanolaminates
Gola, A.; Schwaiger, R.; Gumbsch, P.; Pastewka, L.
2020. Physical review materials, 4 (1), Art.-Nr. 013603. doi:10.1103/PhysRevMaterials.4.013603
Synergistic effects of antiwear and friction modifier additives
Eickworth, J.; Aydin, E.; Dienwiebel, M.; Rühle, T.; Wilke, P.; Umbach, T. R.
2020. Industrial lubrication & tribology, 72 (8), 1019–1025. doi:10.1108/ILT-07-2019-0293
Morphological characterization and photocatalytic efficiency measurements of pure silica transparent open‐cell sponges coated with TiO₂
Löffler, F. B.; Altermann, F. J.; Bucharsky, E. C.; Schell, K. G.; Vera, M. L.; Traid, H.; Dwojak, A.; Litter, M. I.
2020. International journal of applied ceramic technology, 17 (4), 1930–1939. doi:10.1111/ijac.13504
Interface tracking characteristics of color-gradient lattice Boltzmann model for immiscible fluids
Subhedar, A.; Reiter, A.; Selzer, M.; Varnik, F.; Nestler, B.
2020. Physical review / E, 101 (1), Article: 013313. doi:10.1103/PhysRevE.101.013313
About the surface area to volume relations of open cell foams
August, A.; Nestler, B.
2020. Engineering Research Express, 2 (1), Article No.015021. doi:10.1088/2631-8695/ab6ac6
Microstructural coarsening of multicomponent multiphase polycrystalline materials. PhD dissertation
Perumal, R.
2020. Karlsruher Institut für Technologie (KIT). doi:10.5445/IR/1000105110
The non-steady-state growth of divergent pearlite in Fe–C–Mn steels: a phase-field investigation
Mushongera, L. T.; Amos, P. G. K.; Schoof, E.; Kumar, P.; Nestler, B.
2020. Journal of materials science, 55, 5280–5295. doi:10.1007/s10853-019-04307-9
Limitations of preserving volume in Allen-Cahn framework for microstructural analysis
Kubendran Amos, P. G.; Schoof, E.; Santoki, J.; Schneider, D.; Nestler, B.
2020. Computational materials science, 173, Article No.109388. doi:10.1016/j.commatsci.2019.109388
Phase-field study of eutectic colony formation in NiAl-34Cr
Kellner, M.; Hötzer, J.; Schoof, E.; Nestler, B.
2020. Acta materialia, 182, 267–277. doi:10.1016/j.actamat.2019.10.028
Recrystallisation towards a single texture component in heavily cold rolled tungsten (W) sheets and its impact on micromechanics
Reiser, J.; Bonnekoh, C.; Karcher, T.; Pfleging, W.; Weygand, D.; Hoffmann, A.
2020. International journal of refractory metals & hard materials, 86, Article: 105084. doi:10.1016/j.ijrmhm.2019.105084
A Stochastic Study of Flow Anisotropy and Channelling in Open Rough Fractures
Marchand, S.; Mersch, O.; Selzer, M.; Nitschke, F.; Schoenball, M.; Schmittbuhl, J.; Nestler, B.; Kohl, T.
2020. Rock mechanics and rock engineering, 53, 233–249. doi:10.1007/s00603-019-01907-4
2019
Influence of melt convection on the morphological evolution of seaweed structures: Insights from phase-field simulations
Pavan Laxmipathy, V.; Wang, F.; Selzer, M.; Nestler, B.; Ankit, K.
2019. Computational materials science, 170, Art.-Nr. 109196. doi:10.1016/j.commatsci.2019.109196
Structural and elastic properties of amorphous carbon from simulated quenching at low rates
Jana, R.; Savio, D.; Deringer, V. L.; Pastewka, L.
2019. Modelling and simulation in materials science and engineering, 27 (8), Art.-Nr. 085009. doi:10.1088/1361-651X/ab45da
Formation of the third bodies of steel sliding against brass under lubricated conditions
Liu, L.; Sheng, Y.; Liu, M.; Dienwiebel, M.; Zhang, Z.; Dastan, D.
2019. Tribology international, 140, Article no: 105727. doi:10.1016/j.triboint.2019.04.011
Low friction of metallic multilayers by formation of a shear-induced alloy
Cihan, E.; Störmer, H.; Leiste, H.; Stüber, M.; Dienwiebel, M.
2019. Scientific reports, 9 (1), 9480. doi:10.1038/s41598-019-45734-7
Dislocation multiplication by cross-slip and glissile reaction in a dislocation based continuum formulation of crystal plasticity
Sudmanns, M.; Stricker, M.; Weygand, D.; Hochrainer, T.; Schulz, K.
2019. Journal of the mechanics and physics of solids, 132, Art. Nr.: 103695. doi:10.1016/j.jmps.2019.103695
Correction to: Fatigue assessment of the welded joints containing process relevant imperfections
Javaheri, E.; Hemmesi, K.; Tempel, P.; Fenzl, R.; Farajian, M.
2019. Welding in the world, 63 (6), 1903. doi:10.1007/s40194-019-00782-5
Droplets on chemically patterned surface: A local free-energy minima analysis
Wu, Y.; Wang, F.; Selzer, M.; Nestler, B.
2019. Physical review / E, 100 (4), Art.Nr. 041102. doi:10.1103/PhysRevE.100.041102
Tailoring the characteristic length scale of 3D chiral mechanical metamaterials
Ziemke, P.; Frenzel, T.; Wegener, M.; Gumbsch, P.
2019. Extreme mechanics letters, 32, Art:nr. 100553. doi:10.1016/j.eml.2019.100553
Application of Gaussian process autoregressive models for capturing the time evolution of microstructure statistics from phase-field simulations for sintering of polycrystalline ceramics
Yabansu, Y. C.; Rehn, V.; Hötzer, J.; Nestler, B.; Kalidindi, S. R.
2019. Modelling and simulation in materials science and engineering, 27 (8), Art.-Nr. 084006. doi:10.1088/1361-651X/ab413e
Non-Arrhenius grain growth in strontium titanate: Quantification of bimodal grain growth
Rheinheimer, W.; Schoof, E.; Selzer, M.; Nestler, B.; Hoffmann, M. J.
2019. Acta materialia, 174, 105–115. doi:10.1016/j.actamat.2019.05.040
Progress Report on Phase Separation in Polymer Solutions
Wang, F.; Altschuh, P.; Ratke, L.; Zhang, H.; Selzer, M.; Nestler, B.
2019. Advanced materials, 31 (26), Art.Nr. 1806733. doi:10.1002/adma.201806733
Solids Under Extreme Shear: Friction-Mediated Subsurface Structural Transformations
Greiner, C.; Gagel, J.; Gumbsch, P.
2019. Advanced materials, 31 (26), Art.Nr.: 1806705. doi:10.1002/adma.201806705
New Twists of 3D Chiral Metamaterials
Fernandez-Corbaton, I.; Rockstuhl, C.; Ziemke, P.; Gumbsch, P.; Albiez, A.; Schwaiger, R.; Frenzel, T.; Kadic, M.; Wegener, M.
2019. Advanced materials, 31 (26), Art.Nr. 1807742. doi:10.1002/adma.201807742
Message from the Editorial Chairman
Dienwiebel, M.
2019. Wear, (Part A), 426–427. doi:10.1016/j.wear.2019.04.010
Fatigue assessment of the welded joints containing process relevant imperfections
Javaheri, E.; Hemmesi, K.; Tempel, P.; Farajian, M.
2019. Welding in the world, 63 (2), 249–261. doi:10.1007/s40194-018-00676-y
On the multiphase-field modeling of martensitic phase transformation in dual-phase steel using J2-viscoplasticity
Schoof, E.; Herrmann, C.; Streichhan, N.; Selzer, M.; Schneider, D.; Nestler, B.
2019. Modelling and simulation in materials science and engineering, 27 (2), 025010. doi:10.1088/1361-651X/aaf980
Glass formation by severe plastic deformation of crystalline Cu|Zr nano-layers
Li, S.; Pastewka, L.; Gumbsch, P.
2019. Acta materialia, 165, 577–586. doi:10.1016/j.actamat.2018.11.045
A gradient plasticity creep model accounting for slip transfer/activation at interfaces evaluated for the intermetallic NiAl-9Mo
Albiez, J.; Erdle, H.; Weygand, D.; Böhlke, T.
2019. International journal of plasticity, 113, 291–311. doi:10.1016/j.ijplas.2018.10.006
DAMASK – The Düsseldorf Advanced Material Simulation Kit for modeling multi-physics crystal plasticity, thermal, and damage phenomena from the single crystal up to the component scale
Roters, F.; Diehl, M.; Shanthraj, P.; Eisenlohr, P.; Reuber, C.; Wong, S. L.; Maiti, T.; Ebrahimi, A.; Hochrainer, T.; Fabritius, H.-O.; Nikolov, S.; Friák, M.; Fujita, N.; Grilli, N.; Janssens, K. G. F.; Jia, N.; Kok, P. J. J.; Ma, D.; Meier, F.; Werner, E.; Stricker, M.; Weygand, D.; Raabe, D.
2019. Computational materials science, 158, 420–478. doi:10.1016/j.commatsci.2018.04.030
Carbon Nanofibers: Locally Controlled Growth of Individual Lambda-Shaped Carbon Nanofibers
Lutz, C.; Bog, U.; Loritz, T.; Syurik, J.; Malik, S.; Kumar, C. N. S.; Kübel, C.; Bruns, M.; Greiner, C.; Hirtz, M.; Hölscher, H.
2019. Small, 15 (7), 1970036. doi:10.1002/smll.201970036
Phase-field study of microstructure evolution in directionally solidified NiAl-34Cr during dynamic velocity changes
Kellner, M.; Steinmetz, P.; Hötzer, J.; Nestler, B.; Dargahi Noubary, K.; Kunz, W.
2019. Solidification processing 2017 : proceedings of the 6th Decennial International Conference on Solidification Processing : 25-28 July 2017, Beaumont Estate, Old Windsor, UK / SP 17 ; edited by Z. Fan, 372–375, BCAST
On the Volume-Diffusion Governed Termination-Migration Assisted Globularization in Two-Phase Solid-State Systems: Insights from Phase-Field Simulations
Amos, P. G. K.; Schoof, E.; Schneider, D.; Nestler, B.
2019. Proceedings of the 1st International Conference on Numerical Modelling in Engineering – Volume 2: Numerical Modelling in Mechanical and Materials Engineering, NME 2018, 28-29 August 2018, Ghent University, Belgium. Ed.: M. Abdel Wahab, 47–63, Springer. doi:10.1007/978-981-13-2273-0_5
Phase-Field Study of Electromigration-Induced Shape Evolution of a Transgranular Finger-Like Slit
Santoki, J.; Mukherjee, A.; Schneider, D.; Selzer, M.; Nestler, B.
2019. Journal of electronic materials, 48 (1), 182–193. doi:10.1007/s11664-018-6619-5
Code generation for massively parallel phase-field simulations
Bauer, M.; Hötzer, J.; Ernst, D.; Hammer, J.; Seiz, M.; Hierl, H.; Hönig, J.; Köstler, H.; Wellein, G.; Nestler, B.; Rüde, U.
2019. SC ’19: Proceedings of the International Conference for High Performance Computing, Networking, Storage and Analysis, Art.-Nr.: a59, Association for Computing Machinery (ACM). doi:10.1145/3295500.3356186
Probabilistic fracture mechanics framework including crack nucleation of rotor forging flaws
Radaelli, F.; Kadau, K.; Amann, C.; Gumbsch, P.
2019. ASME Turbo Expo 2019 : Turbomachinery Technical Conference and Exposition, Phoenix, AZ, June 17-21, 2019, The American Society of Mechanical Engineers (ASME). doi:10.1115/GT2019-90418
On the Characterization and Modeling of Interfaces in Fiber Reinforced Polymer Structures. PhD dissertation
Schober, M.
2019. Karlsruher Institut für Technologie (KIT). doi:10.5445/IR/1000100455
A bottom-up continuum approach of crystal plasticity for the analysis of fcc microwires under torsion
Zoller, K.; Schulz, K.
2019. Proceedings in applied mathematics and mechanics, 19 (1), Art.Nr. e201900032. doi:10.1002/pamm.201900032
Entwicklung einer Kontinuumsbeschreibung für die Versetzungsmobilität in Versetzungsnetzwerken. PhD dissertation
Sudmanns, M.
2019. Karlsruher Institut für Technologie (KIT). doi:10.5445/IR/1000100071
Role of conductivity on the electromigration-induced morphological evolution of inclusions in {110}-oriented single crystal metallic thin films
Santoki, J.; Mukherjee, A.; Schneider, D.; Nestler, B.
2019. Journal of applied physics, 126 (16), Article No.165305. doi:10.1063/1.5119714
Understanding the influence of neighbours on the spheroidization of finite 3-dimensional rods in a lamellar arrangement: Insights from phase-field simulations
Mittnacht, T.; Amos, P. G. K.; Schneider, D.; Nestler, B.
2019. Proceedings of the 1st International Conference on Numerical Modelling in Engineering : NME 2018, 28-29 August 2018, Ghent, Belgium. Ed.: M. Abdel Wahab, 290–299, Springer. doi:10.1007/978-981-13-2273-0_23
Structure evolution in tribological interfaces studied by multilayer model alloys. PhD dissertation
Cihan, E.
2019. Karlsruher Institut für Technologie (KIT). doi:10.5445/IR/1000099513
Post-buckling and dynamic response of angled struts in elastic lattices
Wehmeyer, S.; Zok, F. W.; Eberl, C.; Gumbsch, P.; Cohen, N.; McMeeking, R. M.; Begley, M. R.
2019. Journal of the mechanics and physics of solids, 133, 103693. doi:10.1016/j.jmps.2019.103693
Phase-field investigation on the growth orientation angle of aluminum carbide with a needle-like structure at the surface of graphite particles
Cai, Y.; Wang, F.; Selzer, M.; Nestler, B.
2019. Modelling and simulation in materials science and engineering, 27 (6), Art.-Nr.: 065010. doi:10.1088/1361-651X/ab2351
Comparison of K-doped and pure cold-rolled tungsten sheets: As-rolled condition and recrystallization behaviour after isochronal annealing at different temperatures
Lied, P.; Bonnekoh, C.; Pantleon, W.; Stricker, M.; Hoffmann, A.; Reiser, J.
2019. International journal of refractory metals & hard materials, 85, 105047. doi:10.1016/j.ijrmhm.2019.105047
Dislocation multiplication by cross-slip and glissile reaction in a dislocation based continuum formulation of crystal plasticity
Sudmanns, M.; Stricker, M.; Weygand, D.; Hochrainer, T.; Schulz, K.
2019. Journal of the mechanics and physics of solids, 132, 103695
Reaction and characterisation of a two-stage thermoset using molecular dynamics
Schwab, F. K.; Denniston, C.
2019. Polymer chemistry, 10 (32), 4413–4427. doi:10.1039/c9py00521h
Data-driven crack assessment based on surface measurements
Schulz, K.; Kreis, S.; Trittenbach, H.; Böhm, K.
2019. Engineering fracture mechanics, 218, Article no: 106552. doi:10.1016/j.engfracmech.2019.106552
Curing Simulations of a Fibre-Reinforced Thermoset on a Micro- and Nano-Scale. PhD dissertation
Schwab, F. K.
2019. Karlsruher Institut für Technologie (KIT). doi:10.5445/IR/1000096963
Surface flaws control strain localization in the deformation of Cu|Au nanolaminate pillars
Gola, A.; Zhang, G.-P.; Pastewka, L.; Schwaiger, R.
2019. MRS communications, 9 (3), 1067–1071. doi:10.1557/mrc.2019.93
Theoretical and numerical investigations of rod growth of an Ni–Zr eutectic alloy
Enugala, S. N.; Kellner, M.; Kobold, R.; Hötzer, J.; Kolbe, M.; Nestler, B.; Herlach, D.
2019. Journal of materials science, 54 (19), 12605–12622. doi:10.1007/s10853-019-03802-3
Mesoscale Simulation of Dislocation Microstructures at Internal Interfaces
Schulz, K.; Sudmanns, M.
2019. High Performance Computing in Science and Engineering’18 : Transactions of the High Performance Computing Center, Stuttgart (HLRS) 2018. Ed.: W.E. Nagel, 115–129, Springer. doi:10.1007/978-3-030-13325-2_7
Investigation of the microstructure adjustment by velocity variations during the directional solidification of Al-Ag-Cu with the phase-field method
Hötzer, J.; Kellner, M.; Kunz, W.; Nestler, B.
2019. Joint 5th International Conference on Advances in Solidification Processes (ICASP-5) & 5th International Symposium on Cutting Edge of Computer Simulation of Solidification, Casting and Refining (CSSCR-5) 17–21 June 2019, Salzburg, Austria, Article No.012007, Institute of Physics Publishing Ltd (IOP Publishing Ltd). doi:10.1088/1757-899X/529/1/012007
Impact of in situ nanomechanics on physical metallurgy
Kacher, J.; Kirchlechner, C.; Michler, J.; Polatidis, E.; Schwaiger, R.; Van Swygenhoven, H.; Taheri, M.; Legros, M.
2019. MRS bulletin, 44 (6), 465–470. doi:10.1557/mrs.2019.124
Insights into tribology from in situ nanoscale experiments
Jacobs, T. D. B.; Greiner, C.; Wahl, K. J.; Carpick, R. W.
2019. MRS bulletin, 44 (6), 478–486. doi:10.1557/mrs.2019.122
Phase-field study of grain growth in porous polycrystals
Rehn, V.; Hötzer, J.; Rheinheimer, W.; Seiz, M.; Serr, C.; Nestler, B.
2019. Acta materialia, 174, 439–449. doi:10.1016/j.actamat.2019.05.059
Scratching Cu|Au nanolaminates
Gola, A.; Pastewka, L.
2019. Lubricants, 7 (5), Art. Nr.: 44. doi:10.3390/lubricants7050044
Multiphase-Field Modeling and Simulation of Martensitic Phase Transformation in Heterogeneous Materials
Schoof, E.; Herrmann, C.; Schneider, D.; Hötzer, J.; Nestler, B.
2019. High Performance Computing in Science and Engineering ’18. Ed.: W. Nagel, 475–488, Springer International Publishing. doi:10.1007/978-3-030-13325-2_30
Understanding the volume-diffusion governed shape-instabilities in metallic systems. PhD dissertation
Kubendran Amos, P. G.
2019. Karlsruher Institut für Technologie (KIT). doi:10.5445/IR/1000095355
Phase-field study on the growth of magnesium silicide occasioned by reactive diffusion on the surface of Si-foams
Wang, F.; Altschuh, P.; Matz, A. M.; Heimann, J.; Matz, B. S.; Nestler, B.; Jost, N.
2019. Acta materialia, 170, 138–154. doi:10.1016/j.actamat.2019.03.008
Analysis of dislocation microstructure characteristics of surface grains under cyclic loading by discrete dislocation dynamics
El Achkar, T.; Weygand, D.
2019. Modelling and simulation in materials science and engineering, 27 (5), Art.-Nr.: 055004. doi:10.1088/1361-651X/ab1b7c
Modern Times need Enlightened Innovation and Sophisticated Materials
Kneer, A.; Wirtz, M.; Yurtsever-Kneer, S.; Barbe, S.; August, A.
2019. Galvanotechnik, 2019 (4), 712–719
Extension of Jackson-Hunt analysis for curved solid-liquid interfaces
Nani, E. S.; Nestler, B.
2019. Journal of crystal growth, 512, 230–240. doi:10.1016/j.jcrysgro.2019.01.025
Physikalisch basierte mehrskalige Simulation der additiv gefertigten Nickel-Legierung Inconel 718. PhD dissertation
Maiwald-Immer, T.
2019. Karlsruher Institut für Technologie (KIT). doi:10.5445/IR/1000091992
Atomistic insights into lubricated tungsten/diamond sliding contacts
Romero, P. A.; Mayrhofer, L.; Stoyanov, P.; Merz, R.; Kopnarski, M.; Dienwiebel, M.; Moseler, M.
2019. Frontiers in mechanical engineering. doi:10.3389/fmech.2019.00006
Tribological behavior of nanosecond-laser surface textured Ti6Al4V
Kümmel, D.; Hamann-Schroer, M.; Hetzner, H.; Schneider, J.
2019. Wear, 422-423, 261–268. doi:10.1016/j.wear.2019.01.079
Evolution of the True Contact Area of Laser Textured Tungsten Under Dry Sliding Conditions
Lechthaler, B.; Ochs, G.; Mücklich, F.; Dienwiebel, M.
2019. Frontiers in mechanical engineering, 5, Article no 3. doi:10.3389/fmech.2019.00003
A scalable and extensible checkpointing scheme for massively parallel simulations
Kohl, N.; Hötzer, J.; Schornbaum, F.; Bauer, M.; Godenschwager, C.; Köstler, H.; Nestler, B.; Rüde, U.
2019. The international journal of high performance computing applications, 33 (4), 571–589. doi:10.1177/1094342018767736
Phase-field analysis of quenching and partitioning in a polycrystalline Fe-C system under constrained-carbon equilibrium condition
Kubendran Amos, P. G.; Schoof, E.; Streichan, N.; Schneider, D.; Nestler, B.
2019. Computational materials science, 159, 281–296. doi:10.1016/j.commatsci.2018.12.023
A bionic approach for heat generation and latent heat storage inspired by the polar bear
August, A.; Kneer, A.; Reiter, A.; Wirtz, M.; Sarsour, J.; Stegmaier, T.; Barbe, S.; Gresser, G. T.; Nestler, B.
2019. Energy, 168, 1017–1030. doi:10.1016/j.energy.2018.11.143
Concurrent grain growth and coarsening of two-phase microstructures; large scale phase-field study
Perumal, R.; Selzer, M.; Nestler, B.
2019. Computational materials science, 159, 160–176. doi:10.1016/j.commatsci.2018.12.017
A mechanism-based homogenization of a dislocation source model for bending
Schmitt, S.; Stricker, M.; Gumbsch, P.; Schulz, K.
2019. Acta materialia, 164, 663–672. doi:10.1016/j.actamat.2018.11.013
Charakterisierung und Modellierung von instabilen Metamaterialien. PhD dissertation
Findeisen, C.
2019. KIT Scientific Publishing. doi:10.5445/KSP/1000087932
Phase-field simulation of solid state sintering
Hötzer, J.; Seiz, M.; Kellner, M.; Rheinheimer, W.; Nestler, B.
2019. Acta materialia, 164, 184–195. doi:10.1016/j.actamat.2018.10.021
The brittle-to-ductile transition in cold rolled tungsten plates: Impact of crystallographic texture, grain size and dislocation density on the transition temperature
Bonnekoh, C.; Jäntsch, U.; Hoffmann, J.; Leiste, H.; Hartmaier, A.; Weygand, D.; Hoffmann, A.; Reiser, J.
2019. International journal of refractory metals & hard materials, 78, 146–163. doi:10.1016/j.ijrmhm.2018.09.010
2018
Multiphase-field model of small strain elasto-plasticity according to the mechanical jump conditions
Herrmann, C.; Schoof, E.; Schneider, D.; Schwab, F.; Reiter, A.; Selzer, M.; Nestler, B.
2018. Computational mechanics, 62 (6), 1399–1412. doi:10.1007/s00466-018-1570-0
Multiobjective Reinforcement Learning for Reconfigurable Adaptive Optimal Control of Manufacturing Processes
Dornheim, J.; Link, N.
2018. 2018 13th International Symposium on Electronics and Telecommunications (ISETC), Article no: 8583854, Institute of Electrical and Electronics Engineers (IEEE). doi:10.1109/ISETC.2018.8583854
Chemo-elastic phase-field simulation of the cooperative growth of mutually-accommodating Widmanstätten plates
Kubendran Amos, P. G.; Schoof, E.; Schneider, D.; Nestler, B.
2018. Journal of alloys and compounds, 767, 1141–1154. doi:10.1016/j.jallcom.2018.07.138
Discrete Dislocation Dynamics simulations of dislocation transport during sliding
Gagel, J.; Weygand, D.; Gumbsch, P.
2018. Acta materialia, 156, 215–227. doi:10.1016/j.actamat.2018.06.002
The origin of surface microstructure evolution in sliding friction
Greiner, C.; Liu, Z.; Schneider, R.; Pastewka, L.; Gumbsch, P.
2018. Scripta materialia, 153, 63–67. doi:10.1016/j.scriptamat.2018.04.048
An elasto-chemical phase-field model for isotropic solids
Tschukin, O.; Schneider, D.; Nestler, B.
2018. European journal of mechanics / A, 73, 181–191. doi:10.1016/j.euromechsol.2018.06.014
Evaporation rate analysis of capillaries with polygonal cross-section
Schweigler, K. M.; Seifritz, S.; Selzer, M.; Nestler, B.
2018. International journal of heat and mass transfer, 121, 943–951. doi:10.1016/j.ijheatmasstransfer.2017.12.090
Numerical and experimental investigation of texture shape and position in the macroscopic contact
Codrignani, A.; Frohnapfel, B.; Magagnato, F.; Schreiber, P.; Schneider, J.; Gumbsch, P.
2018. Tribology international, 122, 46–57. doi:10.1016/j.triboint.2018.02.001
Study of pattern selection in 3D phase-field simulations during the directional solidification of ternary eutectic Al-Ag-Cu
Steinmetz, P.; Hötzer, J.; Kellner, M.; Genau, A.; Nestler, B.
2018. Computational materials science, 148, 131–140. doi:10.1016/j.commatsci.2018.02.040
Nanocomposites: Glassomer-Processing Fused Silica Glass Like a Polymer (Adv. Mater. 22/2018) [Nur Titelseite]
Kotz, F.; Schneider, N.; Striegel, A.; Wolfschläger, A.; Keller, N.; Worgull, M.; Bauer, W.; Schild, D.; Milich, M.; Greiner, C.; Helmer, D.; Rapp, B. E.
2018. Advanced materials, 30 (22), Art.Nr. 1870151. doi:10.1002/adma.201870151
Glassomer-Processing Fused Silica Glass Like a Polymer
Kotz, F.; Schneider, N.; Striegel, A.; Wolfschläger, A.; Keller, N.; Worgull, M.; Bauer, W.; Schild, D.; Milich, M.; Greiner, C.; Helmer, D.; Rapp, B. E.
2018. Advanced materials, 30 (22), 1707100. doi:10.1002/adma.201707100
The parallel multi-physics phase-field framework PACE3D
Hötzer, J.; Reiter, A.; Hierl, H.; Steinmetz, P.; Selzer, M.; Nestler, B.
2018. Journal of computational science, 26, 1–12. doi:10.1016/j.jocs.2018.02.011
Phase-field study of the transient phenomena induced by ’abnormally’ large grains during 2-dimensional isotropic grain growth
Perumal, R.; Kubendran Amos, P. G.; Selzer, M.; Nestler, B.
2018. Computational materials science, 147, 227–237. doi:10.1016/j.commatsci.2018.02.028
Phase-field study of dynamic velocity variations during directional solidification of eutectic NiAl-34Cr
Kellner, M.; Kunz, W.; Steinmetz, P.; Hötzer, J.; Nestler, B.
2018. Computational materials science, 145, 291–305. doi:10.1016/j.commatsci.2017.12.053
Experimental Investigations on Pressure Loss and Heat Transfer of Two-Phase Carbon Dioxide Flow in a Horizontal Circular Pipe of 0.4 mm Diameter
Kneer, A.; Wirtz, M.; Laufer, T.; Nestler, B.; Barbe, S.
2018. International journal of heat and mass transfer, 119, 828–840. doi:10.1016/j.ijheatmasstransfer.2017.11.146
Phase-field analysis of volume-diffusion controlled shape-instabilities in metallic systems-II: Finite 3-dimensional rods
Kubendran Amos, P. G.; Mushongera, L. T.; Mittnacht, T.; Nestler, B.
2018. Computational materials science, 144, 374–385. doi:10.1016/j.commatsci.2017.12.046
Phase-field analysis of volume-diffusion controlled shape-instabilities in metallic systems-I: 2-Dimensional plate-like structures
Kubendran Amos, P. G.; Mushongera, L. T.; Nestler, B.
2018. Computational materials science, 144, 363–373. doi:10.1016/j.commatsci.2017.12.045
Multiphase-field modeling of martensitic phase transformation in a dual-phase microstructure
Schoof, E.; Schneider, D.; Streichhan, N.; Mittnacht, T.; Selzer, M.; Nestler, B.
2018. International journal of solids and structures, 134, 181–194. doi:10.1016/j.ijsolstr.2017.10.032
Phase-field modeling of reactive wetting and growth of the intermetallic Al2 Au phase in the Al-Au system
Wang, F.; Reiter, A.; Kellner, M.; Brillo, J.; Selzer, M.; Nestler, B.
2018. Acta materialia, 146, 106–118. doi:10.1016/j.actamat.2017.12.015
Correction to: Small strain multiphase-field model accounting for configurational forces and mechanical jump conditions
Schneider, D.; Schoof, E.; Tschukin, O.; Reiter, A.; Herrmann, C.; Schwab, F.; Selzer, M.; Nestler, B.
2018. Computational mechanics, 61 (3), 297. doi:10.1007/s00466-017-1485-1
Small strain multiphase-field model accounting for configurational forces and mechanical jump conditions
Schneider, D.; Schoof, E.; Tschukin, O.; Reiter, A.; Herrmann, C.; Schwab, F.; Selzer, M.; Nestler, B.
2018. Computational mechanics, 61 (3), 277–295. doi:10.1007/s00466-017-1458-4
Contact mechanics of graphene-covered metal surfaces
Klemenz, A.; Gola, A.; Moseler, M.; Pastewka, L.
2018. Applied physics letters, 112 (6), Art. Nr.: 061601. doi:10.1063/1.5006770
Quantitative Comparison of Ternary Eutectic Phase-Field Simulations with Analytical 3D Jackson–Hunt Approaches
Steinmetz, P.; Kellner, M.; Hötzer, J.; Nestler, B.
2018. Metallurgical and materials transactions / B, 49 (1), 213–224. doi:10.1007/s11663-017-1142-2
Experimental and Simulative Modeling of Drilling Processes for the Compensation of Thermal Effects
Bollig, P.; Michna, J.; Faltin, C.; Schneider, J.; Zanger, F.; Schießl, R.; Maas, U.; Schulze, V.
2018. Thermal Effects in Complex Machining Processes. Hrsg.: D. Biermann, F. Hollmann, 145–180, Springer International Publishing. doi:10.1007/978-3-319-57120-1_9
The Impact of Pores on Microstructure Evolution: A Phase-Field Study of Pore-Grain Boundary Interaction
Rehn, V.; Hötzer, J.; Kellner, M.; Seiz, M.; Serr, C.; Rheinheimer, W.; Hoffmann, M. J.; Nestler, B.
2018. High Performance Computing in Science and Engineering ’ 17: Transactions of the High Performance Computing Center, Stuttgart (HLRS) 2017. Ed.: W. Nagel, 485–502, Springer International Publishing. doi:10.1007/978-3-319-68394-2_29
Groundwater remediation – numerical models and experiments
Nestler, B.; Kellner, M.; Hötzer, J.; Kunz, W.
2018. Forschung aktuell, 59–63
Surface texturing of TiAl6V4 using cutting tools in reverse
Segebade, E.; Kümmel, D.; Zanger, F.; Schneider, J.; Schulze, V.
2018. Procedia manufacturing, 18, 97–103. doi:10.1016/j.promfg.2018.11.013
Influence of cutting edge asymmetry on grain refinement of Ti6Al4V
Segebade, E.; Kümmel, D.; Zanger, F.; Schneider, J.; Schulze, V.
2018. Procedia CIRP, 71, 232–237. doi:10.1016/j.procir.2018.05.065
Towards Simulation-Data Science : A Case Study on Material Failures
Trittenbach, H.; Gauch, M.; Böhm, K.; Schulz, K.
2018. IEEE 5th International Conference on Data Science and Advanced Analytics (DSAA), Turin, Italy, 1-3 Oct. 2018, 450–459, Institute of Electrical and Electronics Engineers (IEEE). doi:10.1109/DSAA.2018.00058
Shear melting of silicon and diamond and the disappearance of the polyamorphic transition under shear
Moras, G.; Klemenz, A.; Reichenbach, T.; Gola, A.; Uetsuka, H.; Moseler, M.; Pastewka, L.
2018. Physical review materials, 2 (8), Art. Nr.: 083601. doi:10.1103/PhysRevMaterials.2.083601
Three-Dimensional Phase-Field Investigation of Pore Space Cementation and Permeability in Quartz Sandstone
Prajapati, N.; Selzer, M.; Nestler, B.; Busch, B.; Hilgers, C.; Ankit, K.
2018. Journal of geophysical research / Solid earth, 123 (8), 6378–6396. doi:10.1029/2018JB015618
Simulation of the Effect of Ultrasound on the Dislocation Structure of Deformed Polycrystals
Murzaev, R. T.; Bachurin, D. V.; Nazarov, A. A.
2018. The physics of metals and metallography, 119 (10), 993–1003. doi:10.1134/S0031918X18100101
Discrete dislocation dynamics study of dislocation microstructure during cyclic loading
El-Achkar, T.; Weygand, D.
2018. Fatigue of Materials at Very High Numbers of Loading Cycles. Ed.: H.-J. Christ, 395–416, Springer Fachmedien Wiesbaden. doi:10.1007/978-3-658-24531-3_18
On the transferability of probabilistic fracture mechanics results for scaled 50 Hz and 60 Hz heavy duty gas turbine rotor disks
Amann, C.; Kadau, K.; Gumbsch, P.
2018. ASME Turbo Expo 2018: Turbomachinery Technical Conference and Exposition, GT 2018; Oslo; Norway; 11 June 2018 through 15 June 2018, The American Society of Mechanical Engineers (ASME). doi:10.1115/GT2018-75561
Mechanisms of pearlite spheroidization: Insights from 3D phase-field simulations
Amos, P. G. K.; Bhattacharya, A.; Nestler, B.; Ankit, K.
2018. Acta materialia, 161, 400–411. doi:10.1016/j.actamat.2018.09.043
Friction reduction through biologically inspired scale-like laser surface textures
Schneider, J.; Djamiykov, V.; Greiner, C.
2018. Beilstein journal of nanotechnology, 9, 2561–2572. doi:10.3762/bjnano.9.238
Amorphous nickel nanophases inducing ferromagnetism in equiatomic Ni–Ti alloy
Chellali, M. R.; Nandam, S. H.; Li, S.; Fawey, M. H.; Moreno-Pineda, E.; Velasco, L.; Boll, T.; Pastewka, L.; Kruk, R.; Gumbsch, P.; Hahn, H.
2018. Acta materialia, 161, 47–53. doi:10.1016/j.actamat.2018.09.019
Characterization of the microscopic tribological properties of sandfish (Scincus scincus) scales by atomic force microscopy
Wu, W.; Lutz, C.; Mersch, S.; Thelen, R.; Greiner, C.; Gomard, G.; Hölscher, H.
2018. Beilstein journal of nanotechnology, 9, 2618–2627. doi:10.3762/bjnano.9.243
In Situ Digital Holography for 3D Topography Analysis of Tribological Experiments
Martin Dienwiebel; Pantcho Stoyanov
2018. Advanced Analytical Methods in Tribology, 289–305, Springer
Advanced Analytical Methods in Tribology
Dienwiebel, M.; De Barros Bouchet, M.-I. (Eds.)
2018. Springer. doi:10.1007/978-3-319-99897-8
Microstructure evolution and deformation mechanisms during high rate and cryogenic sliding of copper
Chen, X.; Schneider, R.; Gumbsch, P.; Greiner, C.
2018. Acta materialia, 161, 138–149. doi:10.1016/j.actamat.2018.09.016
Phase-field study of surface irregularities of a cathode particle during intercalation
Santoki, J.; Schneider, D.; Selzer, M.; Wang, F.; Kamlah, M.; Nestler, B.
2018. Modelling and simulation in materials science and engineering, 26 (6), 065013. doi:10.1088/1361-651X/aad20a
Microstructure evolution under tribological loading and its elementary mechanisms. PhD dissertation
Liu, Z.
2018. Karlsruher Institut für Technologie (KIT). doi:10.5445/IR/1000085322
Characterization of a macro porous polymer membrane at micron-scale by Confocal-Laser-Scanning Microscopy and 3D image analysis
Ley, A.; Altschuh, P.; Thom, V.; Selzer, M.; Nestler, B.; Vana, P.
2018. Journal of membrane science, 564, 543–551. doi:10.1016/j.memsci.2018.07.062
Graph-based investigation of three-dimensional microstructure rearrangement during ternary eutectic directional solidification of Al-Ag-Cu
Steinmetz, P.; Hötzer, J.; Dennstedt, A.; Serr, C.; Nestler, B.; Genau, A.
2018. Journal of crystal growth, 498, 230–243. doi:10.1016/j.jcrysgro.2018.06.028
Dislocation multiplication in stage II deformation of fcc multi-slip single crystals
Stricker, M.; Sudmanns, M.; Schulz, K.; Hochrainer, T.; Weygand, D.
2018. Journal of the mechanics and physics of solids, 119, 319–333. doi:10.1016/j.jmps.2018.07.003
Tribology of Wire Arc Spray Coatings under the Influence of Regenerative Fuels
Böttcher, R.; Winkler, H.-J.; Dienwiebel, M.; Scherge, M.
2018. Lubricants, 6 (3), 60. doi:10.3390/lubricants6030060
Tribological Effects in and by Metal Cutting
Segebade, E.; Schneider, J.; Schulze, V.
2018. 8th International Conference on Tribology in Manufacturing Processes and Joining by Plastic Deformation, ICTMP 2018; Elsinore; Denmark; 24 June 2018 through 26 June 2018. Ed.: N. Bay, 3–24, Trans Tech Publications. doi:10.4028/www.scientific.net/KEM.767.3
Effective Thermal Conductivity of Composite Materials Based on Open Cell Foams
August, A.; Reiter, A.; Kneer, A.; Selzer, M.; Nestler, B.
2018. Heat and Mass Transfer Research Journal, 2 (1), 33–45
Computergestütztes Design gradierter Metallschäume
August, A.; Kneer, A.; Nestler, B.
2018. Forschung aktuell, 2018 (März), 56–58
Modeling fracture cementation processes in calcite limestone: a phase-field study
Prajapati, N.; Selzer, M.; Nestler, B.; Busch, B.; Hilgers, C.
2018. Geothermal Energy, 6 (1), 7. doi:10.1186/s40517-018-0093-4
Stages in the tribologically-induced oxidation of high-purity copper
Liu, Z.; Patzig, C.; Selle, S.; Höche, T.; Gumbsch, P.; Greiner, C.
2018. Scripta materialia, 153, 114–117. doi:10.1016/j.scriptamat.2018.05.008
Plastic flow and dislocation strengthening in a dislocation density based formulation of plasticity
Sudmanns, M.; Gumbsch, P.; Schulz, K.
2018. Computational materials science, 151, 317–327. doi:10.1016/j.commatsci.2018.04.065
Entwicklung einer versetzungsbasierten Kontinuumstheorie mittels mechanismusbasierter Homogenisierung. PhD dissertation
Schmitt, S. S.
2018. Karlsruher Institut für Technologie (KIT). doi:10.5445/IR/1000083074
Perspectives on material modelling: Porous and particle-based microstructures
Nestler, B.; August, A.; Selzer, M.; Hötzer, J.; Kellner, M.; Prajapati, N.; Rehn, V.; Seiz, M.
2018. Ceramic applications, 6 (1), 73–77
Friction and Wear Reduction in Copper with a Gradient Nano-grained Surface Layer
Chen, X.; Han, Z.; Lu, K.
2018. ACS applied materials & interfaces, 10 (16), 13829–13838. doi:10.1021/acsami.8b01205
Phase-field simulations of pearlitic divergence in Fe-C-Mn steels
Mushongera, L. T.; Amos, P. G. K.; Nestler, B.; Ankit, K.
2018. Acta materialia, 150, 78–87. doi:10.1016/j.actamat.2018.02.059
Massively Parallel Stencil Code Solver with Autonomous Adaptive Block Distribution
Berghoff, M.; Kondov, I.; Hötzer, J.
2018. IEEE transactions on parallel and distributed systems, 29 (10), 2282–2296. doi:10.1109/TPDS.2018.2819672
Molecular probes reveal deviations from Amontons’ law in multi-asperity frictional contacts
Weber, B.; Suhina, T.; Junge, T.; Pastewka, L.; Brouwer, A. M.; Bonn, D.
2018. Nature Communications, 9 (1), Art.Nr. 888. doi:10.1038/s41467-018-02981-y
Discrete-Continuum Transition: A Discussion of the Continuum Limit
Schulz, K.; Schmitt, S.
2018. Technische Mechanik, 38 (1), 126–134. doi:10.24352/UB.OVGU-2018-012
2017
Anatomizing deformation mechanisms in nanocrystalline Pd90Au10
Grewer, M.; Braun, C.; Deckarm, M. J.; Lohmiller, J.; Gruber, P. A.; Honkimäki, V.; Birringer, R.
2017. Mechanics of materials, 114, 254–267. doi:10.1016/j.mechmat.2017.08.010
A fully-printed, BST MIM varactor for low ISM-band matching networks up to 1000 W
Kienemund, D.; Fink, T.; Abrecht, M.; Bigler, W.; Binder, J. R.; Jakoby, R.; Maune, H.
2017. 2017 47th European Microwave Conference (EuMC), Nuremberg, 10–12 October 2017, 1001–1004, Institute of Electrical and Electronics Engineers (IEEE). doi:10.23919/EuMC.2017.8231015
Phase-field simulation of the microstructure evolution in the eutectic NiAl-34Cr system
Kellner, M.; Sprenger, I.; Steinmetz, P.; Hötzer, J.; Nestler, B.; Heilmaier, M.
2017. Computational materials science, 128, 379–387. doi:10.1016/j.commatsci.2016.11.049
A mechanism-based homogenization strategy for the determination of flow stress and strain hardening
Schulz, K.; Sudmanns, M.
2017. Proceedings in applied mathematics and mechanics, 17 (1), 107–110. doi:10.1002/pamm.201710031
Discussion of crack initiation in metal matrix composites
Sudmanns, M.; Schulz, K.
2017. Proceedings of the 7th GACM Colloquium on Computational Mechanics for Young Scientists from Academia and Industry, Stuttgart, Germany, 11th - 13th October 2017. Ed.: M. von Scheven, 296–299, Institute for Structural Mechanics
Data-driven crack assessment
Schulz, K.; Verrier, V.; Kreis, S.
2017. Proceedings of the 7th GACM Colloquium on Computational Mechanics for Young Scientists from Academia and Industry, Stuttgart, Germany, 11th - 13th October 2017. Ed.: M. von Scheven, 292–295, Institute for Structural Mechanics
Morphological Characterization of the Self-Assembly of Virus Movement Proteins into Nanotubes in the Absence of Virus Particles
Schwan, S.; Ludtka, C.; Friedmann, A.; Cismak, A.; Berthold, L.; Goehre, F.; Kiesow, A.; Heilmann, A.
2017. Advanced biosystems, 1 (12), 1700113. doi:10.1002/adbi.201700113
Analyse geometrieabhängiger Verdunstungsraten in ungesättigter, konvektionsfreier Atmosphäre. PhD dissertation
Schweigler, K. M.
2017. Karlsruher Institut für Technologie (KIT). doi:10.5445/IR/1000077924
Transparent, abrasion-insensitive superhydrophobic coatings for real-world applications
Helmer, D.; Keller, N.; Kotz, F.; Stolz, F.; Greiner, C.; Nargang, T. M.; Sachsenheimer, K.; Rapp, B. E.
2017. Scientific reports, 7, Art.Nr. 15078. doi:10.1038/s41598-017-15287-8
Concepts of modeling surface energy anisotropy in phase-field approaches
Tschukin, O.; Silberzahn, A.; Selzer, M.; Amos, P. G. K.; Schneider, D.; Nestler, B.
2017. Geothermal Energy, 5 (1), Art.Nr. 19. doi:10.1186/s40517-017-0077-9
Phase-field study on the formation of first-neighbour topological clusters during the isotropic grain growth
Perumal, R.; Kubendran Amos, P. G.; Selzer, M.; Nestler, B.
2017. Computational materials science, 140, 209–223. doi:10.1016/j.commatsci.2017.08.043
Meeting the Contact-Mechanics Challenge
Müser, M. H.; Dapp, W. B.; Bugnicourt, R.; Sainsot, P.; Lesaffre, N.; Lubrecht, T. A.; Persson, B. N. J.; Harris, K.; Bennett, A.; Schulze, K.; Rohde, S.; Ifju, P.; Sawyer, W. G.; Angelini, T.; Ashtari Esfahani, H.; Kadkhodaei, M.; Akbarzadeh, S.; Wu, J.-J.; Vorlaufer, G.; Vernes, A.; Solhjoo, S.; Vakis, A. I.; Jackson, R. L.; Xu, Y.; Streator, J.; Rostami, A.; Dini, D.; Medina, S.; Carbone, G.; Bottiglione, F.; Afferrante, L.; Monti, J.; Pastewka, L.; Robbins, M. O.; Greenwood, J. A.
2017. Tribology letters, 65 (4), Art. Nr.: 118. doi:10.1007/s11249-017-0900-2
Computational modeling of calcite cementation in saline limestone aquifers : a phase-field study
Prajapati, N.; Selzer, M.; Nestler, B.
2017. Geothermal Energy, 5 (1), Art. Nr.: 15. doi:10.1186/s40517-017-0072-1
Phasenfeldsimulationen zur Mikrostrukturentwicklung während des Sinterprozesses
Hölzer, J.; Kellner, M.; Rehn, V.; Seiz, M.; Nestler, B.
2017. Forschung aktuell, 8–12
Numerical and experimental investigations on the growth of the intermetallic Mg₂Si phase in Mg infiltrated Si-foams
Wang, F.; Matz, A. M.; Tschukin, O.; Heimann, J.; Mocker, B. S.; Nestler, B.; Jost, N.
2017. Advanced engineering materials, 19 (10), Art.Nr. 1700063. doi:10.1002/adem.201700063
Influence of growth velocity variations on the pattern formation during the directional solidification of ternary eutectic Al-Ag-Cu
Hötzer, J.; Steinmetz, P.; Dennstedt, A.; Genau, A.; Kellner, M.; Sargin, I.; Nestler, B.
2017. Acta materialia, 136, 335–346. doi:10.1016/j.actamat.2017.07.007
Phase-field study on the effects of process and material parameters on the tilt angle during directional solidification of ternary eutectics
Dargahi Noubary, K.; Kellner, M.; Steinmetz, P.; Hötzer, J.; Nestler, B.
2017. Computational materials science, 138, 403–411. doi:10.1016/j.commatsci.2017.07.006
Simulation der martensitischen Transformation in polykristallinen Gefügen mit der Phasenfeldmethode
Schoof, E.; Streichhan, N.; Schneider, D.; Selzer, M.; Nestler, B.
2017. Forschung aktuell, 13–16
Magische Schäume
August, A.; Matz, A. M.; Mocker, B. S.; Heimann, J.; Nestler, B.; Jost, N.; Krug, P.
2017. Horizonte, 49, 3–5
Phase-Field Modelling of Welding and of Elasticity-Dependent Phase Transformations. PhD dissertation
Tschukin, O.
2017. Karlsruher Institut für Technologie (KIT). doi:10.5445/IR/1000072502
Dislocation-density based description of the deformation of a composite material
Schulz, K.; Sudmanns, M.; Gumbsch, P.
2017. Modelling and simulation in materials science and engineering, 25 (6), 064003. doi:10.1088/1361-651X/aa7a88
Interfacial free energy anisotropy driven faceting of precipitates
Roy, A.; Nani, E. S.; Lahiri, A.; Gururajan, M. P.
2017. The philosophical magazine, 1–31. doi:10.1080/14786435.2017.1348633
Data science approaches for microstructure quantification and feature identification in porous membranes
Altschuh, P.; Yabansu, Y. C.; Hötzer, J.; Selzer, M.; Nestler, B.; Kalidindi, S. R.
2017. Journal of membrane science, 540, 88–97. doi:10.1016/j.memsci.2017.06.020
Probabilistic Fracture Mechanics of Forged Rotor Disks. PhD dissertation
Amann, C.
2017. Karlsruher Institut für Technologie (KIT). doi:10.5445/IR/1000071647
The atomic simulation environment - A Python library for working with atoms
Hjorth Larsen, A.; JØrgen Mortensen, J.; Blomqvist, J.; Castelli, I. E.; Christensen, R.; Dułak, M.; Friis, J.; Groves, M. N.; Hammer, B.; Hargus, C.; Hermes, E. D.; Jennings, P. C.; Bjerre Jensen, P.; Kermode, J.; Kitchin, J. R.; Leonhard Kolsbjerg, E.; Kubal, J.; Kaasbjerg, K.; Lysgaard, S.; Bergmann Maronsson, J.; Maxson, T.; Olsen, T.; Pastewka, L.; Peterson, A.; Rostgaard, C.; SchiØtz, J.; Schütt, O.; Strange, M.; Thygesen, K. S.; Vegge, T.; Vilhelmsen, L.; Walter, M.; Zeng, Z.; Jacobsen, K. W.
2017. Journal of physics / Condensed matter, 29 (27), Art. Nr.: 273002. doi:10.1088/1361-648X/aa680e
Analysis of the running-in of thermal spray coatings by time-dependent stribeck maps
Linsler, D.; Kümmel, D.; Nold, E.; Dienwiebel, M.
2017. Wear, 376-377 (Part B), 1467–1474. doi:10.1016/j.wear.2017.02.026
Präparation weichmagnetischer Kompositwerkstoffe für strukturelle und mikromechanische Untersuchungen [Preparing Soft Magnetic Composites for Structural and Micromechanical Investigations]
Schwark, T.; Müller, M.; Mine, Y.; Kreuter, T.; Kraft, O.; Schwaiger, R.
2017. Practical Metallography : Praktische Metallographie, 54 (6), 366–387. doi:10.3139/147.110424
Untersuchung tribologischer Systeme mit Y-TZP-Keramiken. PhD dissertation
Schröder, C.
2017. Fraunhofer Verlag
The interface in molybdenum-copper-composites used for thermal management applications
Seiss, M.; Mrotzek, T.; Jäntsch, U.; Klimenkov, M.; Reiser, J.; Knabl, W.
2017. 33rd Annual Semiconductor Thermal Measurement and Management Symposium, SEMI-THERM 2017, Double Tree Hotel San Jose, United States, 13. - 17. März 2017, 246–251, IEEE Computer Society. doi:10.1109/SEMI-THERM.2017.7896937
Microstructure, mechanical properties and friction behavior of magnetron-sputtered V-C coatings
Stoyanov, P.; Schneider, J.; Rinke, M.; Ulrich, S.; Nold, E.; Dienwiebel, M.; Stüber, M.
2017. Surface and coatings technology, 321, 366–377. doi:10.1016/j.surfcoat.2017.04.050
On the stress calculation within phase-field approaches : a model for finite deformations
Schneider, D.; Schwab, F.; Schoof, E.; Reiter, A.; Herrmann, C.; Selzer, M.; Böhlke, T.; Nestler, B.
2017. Computational mechanics, 60 (2), 203–217. doi:10.1007/s00466-017-1401-8
Characteristics of mechanical metamaterials based on buckling elements
Findeisen, C.; Hohe, J.; Kadic, M.; Gumbsch, P.
2017. Journal of the mechanics and physics of solids, 102, 151–164. doi:10.1016/j.jmps.2017.02.011
Development of Bond-Order Potentials for BCC Transition Metals
Vitek, V.; Lin, Y. S.; Mrovec, M.
2017. 8th International Conference on Materials Structure and Micromechanics of Fracture, MSMF8, Brno, Czech Republic, 27. - 29. July 2016, 3–10, TTP. doi:10.4028/www.scientific.net/SSP.258.3
Main-Group Halide Semiconductors Derived from Perovskite: Distinguishing Chemical, Structural, and Electronic Aspects
Fabini, D. H.; Labram, J. G.; Lehner, A. J.; Bechtel, J. S.; Evans, H. A.; Van der Ven, A.; Wudl, F.; Chabinyc, M. L.; Seshadri, R.
2017. Inorganic chemistry, 56 (1), 11–25. doi:10.1021/acs.inorgchem.6b01539
Integrated Research as Key to the Development of a Sustainable Geothermal Energy Technology
Meller, C.; Bremer, J.; Ankit, K.; Baur, S.; Bergfeldt, T.; Blum, P.; Canic, T.; Eiche, E.; Gaucher, E.; Hagenmeyer, V.; Heberling, F.; Held, S.; Herfurth, S.; Isele, J.; Kling, T.; Kuhn, D.; Mayer, D.; Müller, B.; Nestler, B.; Neumann, T.; Nitschke, F.; Nothstein, A.; Nusiaputra, Y.; Orywall, P.; Peters, M.; Sahara, D.; Schäfer, T.; Schill, E.; Schilling, F.; Schröder, E.; Selzer, M.; Stoll, M.; Wiemer, H.-J.; Wolf, S.; Zimmermann, M.; Kohl, T.
2017. Energy technology, 5 (7), 965–1006. doi:10.1002/ente.201600579
Extraction of reduced-order process-structure linkages from phase-field simulations
Yabansu, Y. C.; Steinmetz, P.; Hötzer, J.; Kalidindi, S. R.; Nestler, B.
2017. Acta materialia, 124, 182–194. doi:10.1016/j.actamat.2016.10.071
Irreversibility of dislocation motion under cyclic loading due to strain gradients
Stricker, M.; Weygand, D.; Gumbsch, P.
2017. Scripta materialia, 129, 69–73. doi:10.1016/j.scriptamat.2016.10.029
Materials response to glancing incidence femtosecond laser ablation
Echlin, M. P.; Titus, M. S.; Straw, M.; Gumbsch, P.; Pollock, T. M.
2017. Acta materialia, 124, 37–46. doi:10.1016/j.actamat.2016.10.055
Phase-field simulations of curvature-induced cascading of Widmanstätten-ferrite plates
Bhattacharya, A.; Ankit, K.; Nestler, B.
2017. Acta materialia, 123, 317–328. doi:10.1016/j.actamat.2016.10.035
Experimental and numerical investigation of drop evaporation depending on the shape of the liquid/gas interface
Schweigler, K. M.; Ben Said, M.; Seifritz, S.; Selzer, M.; Nestler, B.
2017. International journal of heat and mass transfer, 105, 655–663. doi:10.1016/j.ijheatmasstransfer.2016.10.033
Surface rippling during solidification of binary polycrystalline alloy : Insights from 3-D phase-field simulations
Ankit, K.; Xing, H.; Selzer, M.; Nestler, B.; Glicksman, M. E.
2017. Journal of Crystal Growth, 457, 52–59. doi:10.1016/j.jcrysgro.2016.05.033
2016
Validation of the applicability of a creep model for directionally solidified eutectics with a lamellar microstructure
Albiez, J.; Sprenger, I.; Weygand, D.; Heilmaier, M.; Böhlke, T.
2016. Proceedings in applied mathematics and mechanics, 16 (1), 297–298. doi:10.1002/pamm.201610137
Physically motivated model for creep of directionally solidified eutectics evaluated for the intermetallic NiAl-9Mo
Albiez, J.; Sprenger, I.; Seemüller, C.; Weygand, D.; Heilmaier, M.; Böhlke, T.
2016. Acta materialia, 110, 377–385. doi:10.1016/j.actamat.2016.02.024
Application of Large-Scale Phase-Field Simulations in the Context of High-Performance Computing
Hötzer, J.; Jainta, M.; Ben Said, M.; Steinmetz, P.; Berghoff, M.; Nestler, B.
2016. High Performance Computing in Science and Engineering ’15: Transactions of the High Performance Computing Center, Stuttgart (HLRS) 2015. Ed.: W. Nagel, 659–674, Springer International Publishing. doi:10.1007/978-3-319-24633-8_42
Generierung von dreidimensionalen Pulverstrukturen
Hölzer, J.; Serr, C.; Nestler, B.
2016. Forschung aktuell, 32–35
Evolution von Mikroporen in Kristallen mit hexagonaler Gitteranisotropie
Schneider, D.; Langerome, B.; Selzer, M.; Reiter, A.; Nestler, B.
2016. Forschung aktuell, 36–38
Multiscale simulations on the coarsening of Cu-rich precipitates in α-Fe using kinetic monte carlo, molecular dynamics, and phase-field simulations
Molnar, D.; Mukherjee, R.; Choudhury, A.; Mora, A.; Binkele, P.; Selzer, M.; Nestler, B.; Schmauder, S.
2016. Multiscale Materials Modeling : Approaches to Full Multiscaling. Ed.: S. Schmauder, 15–36, De Gruyter. doi:10.1515/9783110412451-004
Miniaturisierung? Ja, bitte!
Piotter, V.; Eberl, C.; Kraft, O.
2016. Forschung, 41 (3), 24–27. doi:10.1002/fors.201690036
Geothermal heat in a heat pump use
Pavlova, A.; Hansen, J.; Obermeyer, H.; Pavlova, I.
2016. IOP conference series / Earth and environmental science, 43, Art.Nr. 012025. doi:10.1088/1755-1315/43/1/012025
Phasenfeldmodellierung mechanisch getriebener Grenzflächenbewegungen in mehrphasigen Systemen. PhD dissertation
Schneider, D.
2016. Karlsruher Institut für Technologie (KIT). doi:10.5445/IR/1000066948
A mesoscale approach for dislocation density motion using a Runge-Kutta discontinuous Galerkin method
Schulz, K.; Wagner, L.; Wieners, C.
2016. Proceedings in applied mathematics and mechanics, 16 (1), 403–404. doi:10.1002/pamm.201610190
Study of complex microstructure evolution in ternary eutectic alloys with massive parallel large-scale phasefield simulations
Hötzer, J.; Jainta, M.; Bauer, M.; Steinmetz, P.; Kellner, M.; Köstler, H.; Rüde, U.; Nestler, B.
2016. High performance computing in science and engineering, Garching/Munich 2016. Ed.: S. Wagner, 194–195, Bayerische Akademie der Wissenschaften
Tribological Performance of Aligned Silicon Nitride Ceramics under Isooctane-Lubricated Oscillating Sliding Conditions
Schneider, J.; Miranzo, P.; Isabel Osendi, M.; Belmonte, M.
2016. Journal of the American Ceramic Society, 99 (1), 241–248. doi:10.1111/jace.13805
Detachment of nanowires driven by capillarity
Wang, F.; Nestler, B.
2016. Scripta materialia, 113, 167–170. doi:10.1016/j.scriptamat.2015.11.002
Analytics for microstructure datasets produced by phase-field simulations
Steinmetz, P.; Yabansu, Y. C.; Hötzer, J.; Jainta, M.; Nestler, B.; Kalidindi, S. R.
2016. Acta materialia, 103, 192–203. doi:10.1016/j.actamat.2015.09.047
Calibration of a multi-phase field model with quantitative angle measurement
Hötzer, J.; Tschukin, O.; Ben Said, M.; Berghoff, M.; Jainta, M.; Barthelemy, G.; Smorchkov, N.; Schneider, D.; Selzer, M.; Nestler, B.
2016. Journal of materials science, 51 (4), 1788–1797. doi:10.1007/s10853-015-9542-7
Microstructures in a ternary eutectic alloy : devising metrics based on neighbourhood relationships
Dennstedt, A.; Choudhury, A.; Ratke, L.; Nestler, B.
2016. IOP conference series / Materials science and engineering, 117, Art.Nr. 012025. doi:10.1088/1757-899X/117/1/012025
Large-scale phase-field simulations of ternary eutectic microstructure evolution
Steinmetz, P.; Hötzer, J.; Kellner, M.; Dennstedt, A.; Nestler, B.
2016. Computational materials science, 117, 205–214. doi:10.1016/j.commatsci.2016.02.001
Phase-field simulations of spiral growth during directional ternary eutectic solidification
Hötzer, J.; Steinmetz, P.; Jainta, M.; Schulz, S.; Kellner, M.; Nestler, B.; Genau, A.; Dennstedt, A.; Bauer, M.; Köstler, H.; Rüde, U.
2016. Acta materialia, 106, 249–259. doi:10.1016/j.actamat.2015.12.052
A general approximation of the exponential Cauchy-Born hypothesis to model arbitrarily shaped shell-like nanostructures within continuum mechanics
Findeisen, C.; Wackerfuß, J.
2016. International journal for numerical methods in engineering, 105 (10), 747–780. doi:10.1002/nme.4992
Influence of substrate interaction and confinement on electric-field-induced transition in symmetric block-copolymer thin films
Mukherjee, A.; Mukherjee, R.; Ankit, K.; Bhattacharya, A.; Nestler, B.
2016. Physical review / E, 93 (3), Art.Nr.: 032504. doi:10.1103/PhysRevE.93.032504
Mesoskopischer Ansatz zur Festigkeitsberechnung von Bremsscheiben. PhD dissertation
Schmid, S.
2016. Karlsruher Institut für Technologie (KIT). doi:10.5445/IR/1000062541
Importance of inclusion of the effect of s electrons into bond-order potentials for transition bcc metals with d-band mediated bonding
Lin, Y.-S.; Mrovec, M.; Vitek, V.
2016. Modelling and simulation in materials science and engineering, 24 (8), Art. Nr.: 085001. doi:10.1088/0965-0393/24/8/085001
The evolving quality of frictional contact with graphene
Li, S.; Li, Q.; Carpick, R. W.; Gumbsch, P.; Liu, X. Z.; Ding, X.; Sun, J.; Li, J.
2016. Nature <London> (0028-0836, 1476-4687), 539 (7630), 541–545. doi:10.1038/nature20135
Hydrogenated vacancies lock dislocations in aluminium
Xie, D.; Li, S.; Li, M.; Wang, Z.; Gumbsch, P.; Sun, J.; Ma, E.; Li, J.; Shan, Z.
2016. Nature Communications, 7, 13341. doi:10.1038/ncomms13341
Heat propagation in computer designed and real metal foam structures
August, A.; Matz, A. M.; Nestler, B.; Jost, N.
2016. Multidiscipline modeling in materials and structures, 12 (4). doi:10.1108/MMMS-03-2016-0012
Applications of the phase-field method for the solidification of microstructures in multi-component systems
Hötzer, J.; Kellner, M.; Steinmetz, P.; Nestler, B.
2016. Journal of the Indian Institute of Science, 96 (3), 235–256
Electric-field-induced lamellar to hexagonally perforated lamellar transition in diblock copolymer thin films: Kinetic pathways
Mukherjee, A.; Ankit, K.; Reiter, A.; Selzer, M.; Nestler, B.
2016. Physical chemistry, chemical physics, 18 (36), 25609–25620. doi:10.1039/c6cp04903f
Ultrasound influence on behavior of disordered dislocation systems in a crystal with non-equilibrium grain boundaries
Bachurin, D. V.; Murzaev, R. T.; Baimova, J. A.; Samigullina, A. A.; Krylova, K. A.
2016. Letters on Materials, 6 (3), 183–188. doi:10.22226/2410-3535-2016-3-183-188
Combining in situ and online approaches to monitor interfacial processes in lubricated sliding contacts
Stoyanov, P.; Shockley, J. M.; Dienwiebel, M.; Chromik, R. R.
2016. MRS communications, 6 (3), 301–308. doi:10.1557/mrc.2016.35
Sequence of Stages in the Microstructure Evolution in Copper under Mild Reciprocating Tribological Loading
Greiner, C.; Liu, Z.; Strassberger, L.; Gumbsch, P.
2016. ACS applied materials & interfaces, 8 (24), 15809–15819. doi:10.1021/acsami.6b04035
A reciprocating optical in situ tribometer with high-speed data acquisition
Becker, S.; Popp, U.; Greiner, C.
2016. Review of scientific instruments, 87 (8), 085101. doi:10.1063/1.4959883
Phase-Field Modeling of Grain-Boundary Grooving Under Electromigration
Mukherjee, A.; Ankit, K.; Mukherjee, R.; Nestler, B.
2016. Journal of electronic materials, 45 (12), 6233–6246. doi:10.1007/s11664-016-4848-z
Flexoelectricity and the polarity of complex ferroelastic twin patterns
Salje, E. K. H.; Li, S.; Stengel, M.; Gumbsch, P.; Ding, X.
2016. Physical review / B, 94 (2), 024114. doi:10.1103/PhysRevB.94.024114
Haften wie ein Gecko
Greiner, C.; Hölscher, H.
2016. Physik in unserer Zeit, 47 (3), 116–122. doi:10.1002/piuz.201601422
3D Synchrotron Imaging of a Directionally Solidified Ternary Eutectic
Dennstedt, A.; Helfen, L.; Steinmetz, P.; Nestler, B.; Ratke, L.
2016. Metallurgical and materials transactions / A, 47 (3), 981–984. doi:10.1007/s11661-015-3294-5
Comparison of analytical methods for the consideration of thermal stresses in the engineering failure assessment
Dittmann, F.; Varfolomeev, I.
2016. 21st European Conference on Fracture, ECF21, 20-24 June 2016, Catania, Italy, 2974–2981, Curran Associates, Inc. doi:10.1016/j.prostr.2016.06.372
Structural lubricity under ambient conditions
Cihan, E.; Ipek, S.; Durgun, E.; Baykara, M. Z.
2016. Nature Communications, 7, Art.Nr.: 12055. doi:10.1038/ncomms12055
First-principles investigation of hydrogen interaction with TiC precipitates in α-Fe
Di Stefano, D.; Nazarov, R.; Hickel, T.; Neugebauer, J.; Mrovec, M.; Elsässer, C.
2016. Physical Review B - Condensed Matter and Materials Physics, 93 (18), 184108/1–14. doi:10.1103/PhysRevB.93.184108
Ultrahigh Tensile Strength Nanowires with a Ni/Ni-Au Multilayer Nanocrystalline Structure
An, B.; Jeon, I.; Seo, J.; Ahn, J.; Kraft, O.; Choi, I.; Kim, Y.
2016. Nano letters, 16 (6), 3500–3506. doi:10.1021/acs.nanolett.6b00275
Phase-field modeling of crack propagation in multiphase Systems
Schneider, D.; Schoof, E.; Huang, Y.; Selzer, M.; Nestler, B.
2016. Computer methods in applied mechanics and engineering, 312, 186–195. doi:10.1016/j.cma.2016.04.009
Modeling of crack propagation on a mesoscopic length scale
Nestler, B.; Schneider, D. M.; Schoof, E.; Huang, Y.; Selzer, M.
2016. GAMM-Mitteilungen, 39 (1), 78–91. doi:10.1002/gamm.201610005
Chronology of the microstructure evolution for pearlitic steel under unidirectional tribological loading
Wolff, K.; Liu, Z.; Braun, D.; Schneider, J.; Greiner, C.
2016. Tribology international, 102, 540–545. doi:10.1016/j.triboint.2016.06.016
Bond-order potential for magnetic body-centered-cubic iron and its transferability
Lin, Y.; Mrověc, M.; Vitek, V.
2016. Physical Review B, 93 (21), 214107. doi:10.1103/PhysRevB.93.214107
Liquid Glass: A Facile Soft Replication Method for Structuring Glass
Kotz, F.; Plewa, K.; Bauer, W.; Schneider, N.; Keller, N.; Nargang, T.; Helmer, D.; Sachsenheimer, K.; Schäfer, M.; Worgull, M.; Greiner, C.; Richter, C.; Rapp, B.
2016. Advanced materials, 28 (23), 4646–4650. doi:10.1002/adma.201506089
The creep behavior of long fiber reinforced thermoplastics examined by microstructural simulations
Fliegener, S.; Hohe, J.; Gumbsch, P.
2016. Composites science and technology, 131, 1–11. doi:10.1016/j.compscitech.2016.05.006
A multiscale approach for thermomechanical simulations of loading courses in cast iron brake discs
Schmid, S.; Schneider, D. M.; Herrmann, C.; Selzer, M.; Nestler, B.
2016. International Journal for Multiscale Computational Engineering, 14 (1), 25–43. doi:10.1615/IntJMultCompEng.2015014764
Contact area of rough spheres : Large scale simulations and simple scaling laws
Pastewka, L.; Robbins, M. O.
2016. Applied physics letters, 108 (22), Art. Nr. 221601. doi:10.1063/1.4950802
In Situ Formation of Nanohybrid Shish-Kebabs during Electrospinning for the Creation of Hierarchical Shish-Kebab Structures
Arras, M. M. L.; Jana, R.; Mühlstädt, M.; Maenz, S.; Andrews, J.; Su, Z.; Grasl, C.; Jandt, K. D.
2016. Macromolecules, 49 (9), 3550–3558. doi:10.1021/acs.macromol.6b00153
Phase-field study of the pattern formation in Al-Ag-Cu under the influence of the melt concentration
Steinmetz, P.; Kellner, M.; Hötzer, J.; Dennstedt, A.; Nestler, B.
2016. Computational Materials Science, 121, 6–13. doi:10.1016/j.commatsci.2016.04.025
Tailored Buckling Microlattices as Reusable Light-Weight Shock Absorbers
Frenzel, T.; Findeisen, C.; Kadic, M.; Gumbsch, P.; Wegener, M.
2016. Advanced materials, 28 (28), 5865–5870. doi:10.1002/adma.201600610
Formation of extended prismatic dislocation structures under indentation
Gagel, J.; Weygand, D.; Gumbsch, P.
2016. Acta Materialia, 111 (1), 399–406. doi:10.1016/j.actamat.2016.04.002
Activation and mechanochemical breaking of C−C bonds initiate wear of diamond (110) surfaces in contact with silica
Peguiron, A.; Moras, G.; Walter, M.; Uetsuka, H.; Pastewka, L.; Moseler, M.
2016. Carbon, 98, 474–483. doi:10.1016/j.carbon.2015.10.098
Elasticity limits structural superlubricity in large contacts
Sharp, T. A.; Pastewka, L.; Robbins, M. O.
2016. Physical Review B - Condensed Matter and Materials Physics, 93 (12), Article Nr. 121402. doi:10.1103/PhysRevB.93.121402
Reibung unter Zugzwang
Pastewka, L.
2016. Physik-Journal, 15 (3), 16–17
Phase-field study of pore-grain boundary interaction
Hötzer, J.; Rehn, V.; Rheinheimer, W.; Hoffmann, M. J.; Nestler, B.
2016. Journal of the Ceramic Society of Japan, 124 (4), 329–339. doi:10.2109/jcersj2.15266
2015
Considering User’s Impact in Validation Activities - An Approach for the Determination of Requirements
Pinner, T.; Jost, F.; Schmid, D.; Albers, A.
2015. Design for life : the 20th International Conference on Engineering Design (ICED 15) ; 27th - 30th July 2015, Politecnico di Milano, Italy. Bd.: Pt. 1, 5–51, The Design Society
Discussion of the Evolution of Micro Cracks by Characterization and Modelling of Metal Matrix Composites Reinforced by Metallic Glass Particles
Schulz, K.; Lichtenberg, K.; Weidenmann, K. A.
2015. Proceedings to the 20th International Conference on Composite Materials, 19-24 July 2015, Copenhagen, Denmark, 1–12, http://www.iccm-central.org/
Die Elite der Maschinenbauer. Professorin Britta Nestler forscht am KIT
Nestler, B.
2015. Stadtgespräche aus Karlsruhe. Hrsg.: M. Kehle, 119–124, Gmeiner
Die Vielfalt der Musterbildung in Metallen - Großskalige Phasenfeldsimulationen zur gerichteten Erstarrung ternärer eutektischer Systeme
Hötzer, J.; Jainta, M.; Steinmetz, P.; Dennstedt, A.; Nestler, B.
2015. Horizonte, 45, 10–13
Elasto-plastic phase-field model accounting for mechanical jump conditions during solid-state phase transformations
Schneider, D.; Tschukin, O.; Choudhury, A.; Selzer, M.; Nestler, B.
2015. Proceedings of the International Conference on Solid-Solid Phase Transformations in Inorganic Materials 2015 (PTM), Whistler, Canada, 28th June - 3rd July 2015. Ed.: M. Militzer, 899–900, PTM
Large scale phase-field simulations of directional ternary eutectic solidification
Hötzer, J.; Jainta, M.; Steinmetz, P.; Nestler, B.; Dennstedt, A.; Genau, A.; Bauer, M.; Köstler, H.; Rüde, U.
2015. Acta materialia, 93, 194–204. doi:10.1016/j.actamat.2015.03.051
Underdamped capillary wave caused by solutal Marangoni convection in immiscible liquids
Wang, F.; Ben Said, M.; Selzer, M.; Nestler, B.
2015. Journal of materials science, 51 (4), 1820–1828. doi:10.1007/s10853-015-9600-1
Compound Droplets on Fibers
Weyer, F.; Ben Said, M.; Hötzer, J.; Berghoff, M.; Dreesen, L.; Nestler, B.; Vandewalle, N.
2015. Langmuir, 31 (28), 7799–7805. doi:10.1021/acs.langmuir.5b01391
Phase-Field Model for Mixed-Mode of Growth Applied to Austenite to Ferrite Transformation
Bhattacharya, A.; Upadhyay, C. S.; Sangal, S.
2015. Metallurgical and materials transactions / A, 46 (2), 926–936. doi:10.1007/s11661-014-2665-7
Diffuse interface method for fluid flow and heat transfer in cellular solids
Ettrich, J.; Nestler, B.
2015. Advances in engineering software, 87, 1–12. doi:10.1016/j.advengsoft.2015.04.012
Reduced tight-binding models for elemental Si and N, and ordered binary Si-N systems
Gehrmann, J.; Pettifor, D. G.; Kolmogorov, A. N.; Reese, M.; Mrovec, M.; Elsaesser, C.; Drautz, R.
2015. Physical review / B, 91 (5), Art. Nr.: 054109. doi:10.1103/PhysRevB.91.054109
Small-Scale Multiaxial Setup for Damage Detection Into the Very High Cycle Fatigue Regime
Straub, T.; Berwind, M. F.; Kennerknecht, T.; Lapusta, Y.; Eberl, C.
2015. Experimental mechanics, 55 (7), 1285–1299. doi:10.1007/s11340-015-0027-z
A method for coupling the phase-field model based on a grand-potential formalism to thermodynamic databases
Choudhury, A.; Kellner, M.; Nestler, B.
2015. Current opinion in solid state & materials science, 19 (5), 287–300. doi:10.1016/j.cossms.2015.03.003
Complex Nanotwin Substructure of an Asymmetric Sigma 9 Tilt Grain Boundary in a Silicon Polycrystal
Stoffers, A.; Ziebarth, B.; Barthel, J.; Cojocaru-Mirédin, O.; Elsässer, C.; Raabe, D.
2015. Physical review letters, 115 (23), Art.Nr.:235502. doi:10.1103/PhysRevLett.115.235502
Theoretical and experimental study of the core structure and mobility of dislocations and their influence on the ferroelectric polarization in perovskite KNbO3
Hirel, P.; Mark, A. F.; Castillo-Rodriguez, M.; Sigle, W.; Mrovec, M.; Elsässer, C.
2015. Physical review / B, 92 (21), Art.Nr.:214101. doi:10.1103/PhysRevB.92.214101
Equivalent plastic strain gradient plasticity with grain boundary hardening and comparison to discrete dislocation dynamics
Bayerschen, E.; Stricker, M.; Wulfinghoff, S.; Weygand, D.; Böhlke, T.
2015. Proceedings of the Royal Society of London / A, 471 (2184), Art.Nr.:20150388. doi:10.1098/rspa.2015.0388
Influence of subsurface plastic deformation on the running-in behavior of a hypoeutectic AlSi alloy
Linsler, D.; Schröckert, F.; Scherge, M.
2015. Tribology International, 100, 224–230. doi:10.1016/j.triboint.2016.01.033
Massively parallel phase-field simulations for ternary eutectic directional solidification
Bauer, M.; Hötzer, J.; Jainta, M.; Steinmetz, P.; Berghoff, M.; Schornbaum, F.; Godenschwager, C.; Köstler, H.; Nestler, B.; Rüde, U.
2015. International Conference for High Performance Computing, Networking, Storage and Analysis, SC 2015; Austin; United States; 15 November 2015 through 20 November 2015, Art.Nr.: 8, Association for Computing Machinery (ACM). doi:10.1145/2807591.2807662
Optimum dimple diameter for friction reduction with laser surface texturing: the effect of velocity gradient
Greiner, C.; Merz, T.; Braun, D.; Codrignani, A.; Magagnato, F.
2015. Surface topography, 3 (4). doi:10.1088/2051-672X/3/4/044001
Internal stresses in a homogenized representation of dislocation microstructures
Schmitt, S.; Gumbsch, P.; Schulz, K.
2015. Journal of the Mechanics and Physics of Solids, 84, 528–544. doi:10.1016/j.jmps.2015.08.012
Stress and strain fluctuations in plastic deformation of crystals with disordered microstructure
Kapetanou, O.; Weygand, D.; Zaiser, M.
2015. Journal of Statistical Mechanics: Theory and Experiment, (8), P08009. doi:10.1088/1742-5468/2015/08/P08009
Microscale study of frictional properties of graphene in ultra high vacuum
Marchetto, D.; Feser, T.; Dienwiebel, M.
2015. Friction, 3 (2), 161–169. doi:10.1007/s40544-015-0080-8
Interstitial iron impurities at cores of dissociated dislocations in silicon
Ziebarth, B.; Mrovec, M.; Elsässer, C.; Gumbsch, P.
2015. Physical Review B, 92, 195308. doi:10.1103/PhysRevB.92.195308
The interaction of dislocations and hydrogen-vacancy complexes and its importance for deformation-induced proto nano-voids formation in α-Fe
Li, S.; Li, Y.; Lo, Y.-C.; Neeraj, T.; Srinivasan, R.; Ding, X.; Sun, J.; Qi, L.; Gumbsch, P.; Li, J.
2015. International Journal of Plasticity, 74, 175–191. doi:10.1016/j.ijplas.2015.05.017
Influence of dislocation strain fields on the diffusion of interstitial iron impurities in silicon
Ziebarth, B.; Mrovec, M.; Elsässer, C.; Gumbsch, P.
2015. Physical Review B, 92, 115309. doi:10.1103/PhysRevB.92.115309
Dislocation injection in strontium titanate by femtosecond laser pulses
Titus, M. S.; Echlin, M. P.; Gumbsch, P.; Pollock, T. M.
2015. Journal of Applied Physics, 118 (7), 075901. doi:10.1063/1.4928772
Multiscale Simulation of Plasticity in bcc Metals
Weygand, D.; Mrovec, M.; Hochrainer, T.; Gumbsch, P.
2015. Annual Review of Materials Research, 45 (1), 369–390. doi:10.1146/annurev-matsci-070214-020852
Polar twin boundaries and nonconventional ferroelectric switching
Salje, E. K. H.; Li, S.; Zhao, Z.; Gumbsch, P.; Ding, X.
2015. Applied Physics Letters, 106 (21), 212907. doi:10.1063/1.4922036
Verbesserung lokaler Spaltbruchmodelle unter Berücksichtigung mikromechanischer Vorgänge. PhD dissertation
Hardenacke, V.
2015. Karlsruher Institut für Technologie (KIT). doi:10.5445/IR/1000051105
Micromechanical finite element modeling of long fiber reinforced thermoplastics. PhD dissertation
Fliegener, S.
2015. Karlsruher Institut für Technologie (KIT). doi:10.5445/IR/1000051015
PECVD Prozessüberwachung - Wiederholbare Nutzung technischer Plasmen. PhD dissertation
Grotjahn, T.
2015. Fraunhofer Verlag
Phase field crystal modeling of ternary solidification microstructures
Berghoff, M.; Nestler, B.
2015. Computational condensed matter, 4, 46–58. doi:10.1016/j.cocom.2015.08.002
Experimental and Numerical Investigation on the Phase Separation Affected by Cooling Rates and Marangoni Convection in Cu-Cr Alloys
Wang, F.; Klinski-Wetzel, K. von; Mukherjee, R.; Nestler, B.; Heilmaier, M.
2015. Metallurgical and materials transactions / A, 46 (4), 1756–1766. doi:10.1007/s11661-015-2745-3
Low Speed Crack Propagation via Kink Formation and Advance on the Silicon (110) Cleavage Plane
Kermode, J. R.; Gleizer, A.; Kovel, G.; Pastewka, L.; Csányi, G.; Sherman, D.; De Vita, A.
2015. Physical Review Letters, 115 (3), Art.Nr. 135501. doi:10.1103/PhysRevLett.115.135501
Microstructural evolution in bitaxial crack-seal veins: A phase-field study
Ankit, K.; Urai, J. L.; Nestler, B.
2015. Journal of geophysical research / Solid earth, 120 (5), 3096–3118. doi:10.1002/2015JB011934
Phase‐field Modeling of Fracture Cementation Processes in 3‐D
Ankit, K.; Selzer, M.; Hilgers, C.; Nestler, B.
2015. Journal of Petroleum Science Research, 4 (2), 79–96. doi:10.12783/jpsr.2015.0402.04
Evolution of mixed cementite morphologies during non-cooperative eutectoid transformation in Fe-C steels
Ankit, K.; Mittnacht, T.; Mukherjee, R.; Nestler, B.
2015. Computational materials science, 108, 342–347. doi:10.1016/j.commatsci.2015.03.002
Quantitative voxel-to-voxel comparison of TriBeam and DCT strontium titanate three-dimensional data sets
Lenthe, W. C.; Echlin, M. P.; Trenkle, A.; Syha, M.; Gumbsch, P.; Pollock, T. M.
2015. Journal of Applied Crystallography, 48 (4), 1034–1046. doi:10.1107/S1600576715009231
Dynamische Lastverteilung auf einem HPC Framework mit nachrichtenbasierter Kommunikation
Heisler, C.; Hötzer, J.; Maier, M.; Reiter, A.; Selzer, M.; Nestler, B.
2015. Forschung aktuell, 2015, 16–18
Modellierung und Simulation der Starrkörperbewegung in Rückschlagventilen
Jainta, M.; Reiter, A.; August, A.; Moik, F.; Nestler, B.
2015. Forschung aktuell, 2015, 13–15
Sonnenbäder am Nordpol: Das Eisbär-Prinzip für Gebäude
August, A.; Nestler, B.; Kneer, A.
2015. Horizonte : Forschung an Fachhochschulen in Baden-Württemberg, (45), 68
Small strain elasto-plastic multiphase-field model
Schneider, D.; Schmid, S.; Selzer, M.; Boehlke, T.; Nestler, B.
2015. Computational Mechanics, 55 (1), 27–35. doi:10.1007/s00466-014-1080-7
Phase-field elasticity model based on mechanical jump conditions
Schneider, D.; Tschukin, O.; Choudhury, A.; Selzer, M.; Böhlke, T.; Nestler, B.
2015. Computational mechanics, 55 (5), 887–901. doi:10.1007/s00466-015-1141-6
Zur Tribologie von strukturierten Skibelägen auf Eis und Schnee. PhD dissertation
Böttcher, R.
2015. Karlsruher Institut für Technologie (KIT)
Entwicklung und Anwendung von Methoden zur Simulation des Trocknens von Suspensionen. PhD dissertation
Breinlinger, T.
2015. Fraunhofer Verlag
Größeneffekte bei strukturierten tribologischen Wirkflächen. PhD dissertation
Braun, D.
2015. Karlsruher Institut für Technologie (KIT). doi:10.5445/IR/1000048548
Interstitial iron impurities at grain boundaries in silicon: A first-principles study
Ziebarth, B.; Mrovec, M.; Elsässer, C.; Gumbsch, P.
2015. Physical Review B - Condensed Matter and Materials Physics, 91 (3). doi:10.1103/PhysRevB.91.035309
Atomistic aspects of fracture
Bitzek, E.; Kermode, J. R.; Gumbsch, P.
2015. International Journal of Fracture. doi:10.1007/s10704-015-9988-2
Energy filtering transmission electron microscopy and atomistic simulations of tribo-induced hybridization change of nanocrystalline diamond coating
De Barros Bouchet, M. I.; Matta, C.; Vacher, B.; Le-Mogne, T.; Martin, J. M.; Von Lautz, J.; Ma, T.; Pastewka, L.; Otschik, J.; Gumbsch, P.; Moseler, M.
2015. Carbon, 87 (C), 317–329. doi:10.1016/j.carbon.2015.02.041
Atomistically enabled nonsingular anisotropic elastic representation of near-core dislocation stress fields in a-iron
Seif, D.; Po, G.; Mrovec, M.; Lazar, M.; Elsässer, C.; Gumbsch, P.
2015. Physical Review B - Condensed Matter and Materials Physics, 91 (18), 184102. doi:10.1103/PhysRevB.91.184102
On slip transmission and grain boundary yielding
Stricker, M.; Gagel, J.; Schmitt, S.; Schulz, K.; Weygand, D.; Gumbsch, P.
2015. Meccanica, 51 (2), 271–278. doi:10.1007/s11012-015-0192-2
Prediction of heat conduction in open-cell foams via the diffuse interface representation of the phase-field method
August, A.; Ettrich, J.; Rölle, M.; Schmid, S.; Berghoff, M.; Selzer, M.; Nestler, B.
2015. International Journal of Heat and Mass Transfer, 84, 800–808. doi:10.1016/j.ijheatmasstransfer.2015.01.052
Phase-field simulations of large-scale microstructures by integrated parallel algorithms
Hötzer, J.; Jainta, M.; Vondrous, A.; Ettrich, J.; August, A.; Stubenvoll, D.; Reichardt, M.; Selzer, M.; Nestler, B.
2015. High Performance Computing in Science and Engineering ’14 : Transactions of the High Performance Computing Center, Stuttgart (HLRS), 2014. Hrsg.: W. E. Nagel, 629–644, Springer. doi:10.1007/978-3-319-10810-0_41
Combined crystal plasticity and phase-field method for recrystallization in a process chain of sheet metal production
Vondrous, A.; Bienger, P.; Schreijäg, S.; Selzer, M.; Schneider, D.; Nestler, B.; Helm, D.; Mönig, R.
2015. Computational mechanics, 55 (2), 439–452. doi:10.1007/s00466-014-1115-0
Surface Softening in Metal - Ceramic Sliding Contacts: An Experimental and Numerical Investigation
Stoyanov, P.; Merz, R.; Romero, P.; Wählisch, F. C.; Abad, O. T.; Gralla, R.; Stemmer, P.; Kopnarski, M.; Moseler, M.; Bennewitz, R.; Dienwiebel, M.
2015. ACS nano, 9 (2), 1478–1491. doi:10.1021/nn505968m
Micro- and Nanotribology of Graphene
Dienwiebel, M.; Bennewitz, R.
2015. Fundamentals of Friction and Wear on the Nanoscale, 453–460, Springer Verlag. doi:10.1007/978-3-319-10560-4_20
Study on micro texturing of uncoated cemented carbide cutting tools for wear improvement and built-up edge stabilisation
Kümmel, J.; Braun, D.; Gibmeier, J.; Schneider, J.; Greiner, C.; Schulze, V.; Wanner, A.
2015. Journal of Materials Processing Technology, 215, 62–70. doi:10.1016/j.jmatprotec.2014.07.032
2014
Internal length scale and grain boundary yield strength in gradient models of polycrystal plasticity: How do they relate to the dislocation microstructure?
Zhang, X.; Aifantis, K. E.; Senger, J.; Weygand, D.; Zaiser, M.
2014. Journal of materials research, 29 (18), 2116–2128. doi:10.1557/jmr.2014.234
Entwicklung eines Latentwärmespeichers für hohe Temperaturen
Oezcan, T.; Koffler, M.; Kauffeld, M.
2014. Forschung aktuell, 8
Ice crystal growth and particle size distribution in ice slurry systems (review)
Koffler, M.; Schaaf, J.; Kauffeld, M.
2014. 11th IIR Gustav Lorentzen Conference on Natural Refrigerants (GL2014). Proceedings. Hangzhou, China, August 31-September 2, 2014
Messverfahren für Adhäsionskräfte von Eiskristallen
Schaaf, J.; Kauffeld, M.
2014. Annual meeting of the Deutscher Kälte- und Klimatechnischer Verein 2013, Deutsche Kälte-Klima-Tagung 2013 Hannover : Hannover, Germany, 20 - 22 November 2013, Deutscher Kälte- und Klimatechnischer Verein e.V. (DKV)
Orientation dependence oft the fracture behavior of single-christal tungsten
Bohnert, C.; Weygand, S. M.; Schmitt, N. J.; Ruth, S.; Kraft, O.
2014. 20th European Conference on Fracture „Fracture at all scales": from the 30th of June to the 4th of July, 2014, Trondheim, Norway
Packungsalgorithmen zur Generierung granularer Partikelstrukturen für die Simulation von Sinterprozessen
Hötzer, J.; Rölle, M.; Nestler, B.
2014. Forschung aktuell, 2014, 57–60
Molecular Dynamics virtual testing of thermally aged Fe–Cu microstructures obtained from multiscale simulations
Molnar, D.; Binkele, P.; Mora, A.; Mukherjee, R.; Nestler, B.; Schmauder, S.
2014. Computational materials science, 81, 466–470. doi:10.1016/j.commatsci.2013.08.057
Growth rate distributions for regular two-dimensional grains with Read–Shockley grain boundary energy
Vondrous, A.; Reichardt, M.; Nestler, B.
2014. Modelling and simulation in materials science and engineering, 22 (2), 025014. doi:10.1088/0965-0393/22/2/025014
Reliability characterization of a soot particle sensor: Analysis of stress- and electromigration in thin-film platinum
Rusanov, R.; Graf, J.; Rank, H.; Fuchs, T.; Mueller-Fiedler, R.; Kraft, O.
2014. 2014 Symposium on Design, Test, Integration and Packaging of MEMS/MOEMS (DTIP 2014); Cannes, France, April 1 - 4, 2014, Art.Nr.: 7056639, Institute of Electrical and Electronics Engineers (IEEE). doi:10.1109/DTIP.2014.7056639
Taming the Untamable - The Art and Science of Diamond Polishing
Moseler, M.; Pastewka, L.; Hird, J.
2014. Comprehensive hard materials / ed.in chief: V.K. Sarin. Vol. 3: Super hard materials. Ed.: Ch. E. Nebel, 81–98, Elsevier. doi:10.1016/B978-0-08-096527-7.00042-8
Contact between rough surfaces and a criterion for macroscopic adhesion
Pastewka, L.; Robbins, M. O.
2014. Proceedings of the National Academy of Sciences of the United States of America, 111 (9), 3298–3303. doi:10.1073/pnas.1320846111
Wear, Plasticity, and Rehybridization in Tetrahedral Amorphous Carbon
Kunze, T.; Posselt, M.; Gemming, S.; Seifert, G.; Konicek, A. R.; Carpick, R. W.; Pastewka, L.; Moseler, M.
2014. Tribology Letters, 53 (1), 119–126. doi:10.1007/s11249-013-0250-7
Atomistic simulation of the deformation of nanocrystalline palladium: the effect of voids
Bachurin, D.; Gumbsch, P.
2014. Modelling and Simulation in Materials Science and Engineering, 22 (2), 025011. doi:10.1088/0965-0393/22/2/025011
Non-Destructive Evaluation of 3D Microstructure Evolution during Sintering of Strontium Titanate
Gumbsch, P.; Syha, M.; Lödermann, B.; Trenkle, A.; Graff, A.
2014. International Journal of Advanced Microscopy and Theoretical Calculations. Special issue: Proceedings of the 4th International Symposium on Advanced Microscopy and Theoretical Calculations (AMTC4). Ed.: T. Hirayama, 80–81, Japan Fine Ceramics Center
Contact Splitting and the Effect of Dimple Depth on Static Friction of Textured Surfaces
Greiner, C.; Schäfer, M.; Popp, U.; Gumbsch, P.
2014. ACS Applied Materials & Interfaces, 6 (11), 7986–7990. doi:10.1021/am500879m
Praxisnahe Versagensbeschreibung bei der Umformung von Feinblechen
Merklein, M.; Gröbel, D. G.; Gumbsch, P.; Butz, A.; Helm, D.
2014. EFB-Verlag
3D microstructure modeling of long fiber reinforced thermoplastics
Fliegener, S.; Luke, M.; Gumbsch, P.
2014. Composites Science and Technology, 104, 136–145. doi:10.1016/j.compscitech.2014.09.009
Phase-field modeling of diffusion coupled crack propagation processes
Schneider, D.; Selzer, M.; Bette, J.; Rementeria, I.; Vondrous, A.; Hoffmann, M. J.; Nestler, B.
2014. Advanced Engineering Materials, 16 (2), 142–146. doi:10.1002/adem.201300073
Atomic scale mechanisms of friction reduction and wear protection by graphene
Klemenz, A.; Pastewka, L.; Balakrishna, S. G.; Caron, A.; Bennewitz, R.; Moseler, M.
2014. Nano Letters, 14 (12), 7145–7152. doi:10.1021/nl5037403
Virtuelle Material- und Prozessentwicklung am Beispiel der Konstrukturausbildung in Schweißnähten
Nestler, B.; Tschukin, O.; Jainta, M.; Daubermann, M.; Selzer, M.; Widak, V.; Hoffmann, J.; Rieth, M.
2014. Forschungsreport für den Maschinenbau in Baden-Württemberg, 2014, 56–58
Three-dimensional phase-field study of crack-seal microstructures - insights from innovative post-processing techniques
Ankit, K.; Selzer, M.; Nestler, B.
2014. Geoscientific model development discussions, 7, 631–658. doi:10.5194/gmdd-7-631-2014
Metallische Schneeflocken
Wesner, E.; August, A.; Nestler, B.
2014. Horizonte : Forschung an Fachhochschulen in Baden-Württemberg, (43), 29–31
Modelling of transient heat conduction with diffuse interface methods
Ettrich, J.; Choudhury, A.; Tschukin, O.; Schoof, E.; August, A.; Nestler, B.
2014. Modelling and simulation in materials science and engineering, 22 (8), Art.Nr. 085006/1–29. doi:10.1088/0965-0393/22/8/085006
Mechanische und Strömungsmechanische Topologieoptimierung mit der Phasenfeldmethode. PhD dissertation
Selzer, M.
2014. Karlsruher Institut für Technologie (KIT). doi:10.5445/IR/1000049243
Carbon nanotubes/silicon nitride nanocomposites for gasoline lubricated high pressure pumps
Pfister, C.; Schneider, J.; Miranzo, P.; Osendi, M. I.; Belmonte, M.
2014. Composites / B, 64, 168–174. doi:10.1016/j.compositesb.2014.04.017
Robust and wear resistant in-situ carbon nanotube/Si3N 4 nanocomposites with a high loading of nanotubes
Gonzalez-Julian, J.; Datye, A.; Wu, K.-H.; Schneider, J.; Belmonte, M.
2014. Carbon, 72, 338–347. doi:10.1016/j.carbon.2014.02.014
Efficiency of laser surface texturing in the reduction of friction under mixed lubrication
Braun, D.; Greiner, C.; Schneider, J.; Gumbsch, P.
2014. Tribology International, 77, 142–147. doi:10.1016/j.triboint.2014.04.012
Origin of anomalous slip in tungsten
Marichal, C.; Srivastava, K.; Weygand, D.; Van Petegem, S.; Grolimund, D.; Gumbsch, P.; Van Swygenhoven, H.
2014. Physical Review Letters, 113 (2), 025501. doi:10.1103/PhysRevLett.113.025501
Dislocation junctions as indicators of elementary slip planes in body-centered cubic metals
Srivastava, K.; Weygand, D.; Gumbsch, P.
2014. Journal of Materials Science, 49 (20), 7333–7337. doi:10.1007/s10853-014-8447-1
Potential-induced degradation in solar cells: Electronic structure and diffusion mechanism of sodium in stacking faults of silicon
Ziebarth, B.; Mrovec, M.; Elsässer, C.; Gumbsch, P.
2014. Journal of applied physics, 116 (9), 093510. doi:10.1063/1.4894007
Dipole formation and yielding in a two-dimensional continuum dislocation model
Dickel, D.; Schulz, K.; Schmitt, S.; Gumbsch, P.
2014. Physical Review B, 90 (9, Art.094118), 1–8. doi:10.1103/PhysRevB.90.094118
Origins of Folding Instabilities on Polycrystalline Metal Surfaces
Beckmann, N.; Romero, P. A.; Linsler, D.; Dienwiebel, M.; Stolz, U.; Moseler, M.; Gumbsch, P.
2014. Applied physics reviews, 2 (6), Art.Nr.: 064004. doi:10.1103/PhysRevApplied.2.064004
Numerical study on solutal Marangoni instability in finite systems with a miscibility gap
Wang, F.; Mukherjee, R.; Selzer, M.; Nestler, B.
2014. Physics of fluids, 26 (12), Art.Nr. 1.4902355. doi:10.1063/1.4902355
Electron microscopic evidence for a tribologically induced phase transformation as the origin of wear in diamond
Zhang, X.; Schneider, R.; Müller, E.; Mee, M.; Meier, S.; Gumbsch, P.; Gerthsen, D.
2014. Journal of Applied Physics, 115 (6), 063508. doi:10.1063/1.4865742
Pentamode metamaterials with independently tailored bulk modulus and mass density
Kadic, M.; Bückmann, T.; Schittny, R.; Gumbsch, P.; Wegener, M.
2014. Physical Review Applied, 2 (5), 054007/1–7. doi:10.1103/PhysRevApplied.2.054007
TEM and STEM/EELS Studies of Diamond-Like Carbon (DLC) Films and Diamond Films. PhD dissertation
Zhang, X.
2014. Karlsruher Institut für Technologie (KIT). doi:10.5445/IR/1000044927
In situ tensile testing of nanoscale Cu/Nb multiliayers
Lohmiller, J.; Polyakov, M. N.; Hodge, A. M.; Doyle, S.; Gruber, P. A.
2014. ANKA User Reports 2012/2013, 90–91, Karlsruher Institut für Technologie (KIT)
KIT Data Manager: The Repository Architecture Enabling Cross-Disciplinary Research
Jejkal, T.; Vondrous, A.; Kopmann, A.; Stotzka, R.; Hartmann, V.
2014. Large-Scale Data Management and Analysis (LSDMA) - Big Data in Science. Hrsg.: Ch. Jung, 9–11, Karlsruher Institut für Technologie (KIT)
Fluid Flow and Heat Transfer in Cellular Solids. PhD dissertation
Ettrich, J.
2014. KIT Scientific Publishing. doi:10.5445/KSP/1000042041
A Continuum Formulation of Stress Correlations of Dislocations in Two Dimensions
Dickel, D.; Schulz, K.; Schmitt, S.; Gumbsch, P.
2014. Technische Mechanik, 34 (3-4), 205–212
Analysis of dislocation pile-ups using a dislocation-based continuum theory
Schulz, K.; Dickel, D.; Schmitt, S.; Sandfeld, S.; Weygand, D.; Gumbsch, P.
2014. Modelling and Simulation in Materials Science and Engineering, 22 (2), 025008. doi:10.1088/0965-0393/22/2/025008
Scale-bridging phase-field simulations of microstructure responses on nucleation in metals and colloids
Berghoff, M.; Nestler, B.
2014. European physical journal special topics, 223 (3), 409–419. doi:10.1140/epjst/e2014-02099-8
A Phase-Field Approach for Wetting Phenomena of Multiphase Droplets on Solid Surfaces
Ben Said, M.; Selzer, M.; Nestler, B.; Braun, D.; Greiner, C.; Garcke, H.
2014. Langmuir, 30 (14), 4033–4039. doi:10.1021/la500312q
Nanoscale sliding friction phenomena at the interface of diamond-like carbon and tungsten
Stoyanov, P.; Romero, P. A.; Merz, R.; Kopnarski, M.; Stricker, M.; Stemmer, P.; Dienwiebel, M.; Moseler, M.
2014. Acta Materialia, 67, 395–408. doi:10.1016/j.actamat.2013.12.029
Free energy of melts and intermetallic compounds of binary alloys determined by a molecular dynamics approach
Guerdane, M.
2014. Physical Review E - Statistical, Nonlinear, and Soft Matter Physics, 89 (2), 023308. doi:10.1103/PhysRevE.89.023308
Continuum dislocation dynamics: Towards a physical theory of crystal plasticity
Hochrainer, T.; Sandfeld, S.; Zaiser, M.; Gumbsch, P.
2014. Journal of the Mechanics and Physics of Solids, 63 (1), 167–178. doi:10.1016/j.jmps.2013.09.012
Parallel computing for phase-field models
Vondrous, A.; Selzer, M.; Hötzer, J.; Nestler, B.
2014. The international journal of high performance computing applications, 28 (1), 61–72. doi:10.1177/1094342013490972