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Publikationen (17 zum Suchbegriff: "kochmann" )

 

  • S. Wulfinghoff, A. Alipour, S. Rezaei, J. Kochmann, S. Reese; "Generalized interface models with damage in gradient plasticity"; Proceedings in Applied Mathematics and Mechanics; Wiley; 2016; ISSN: 1617-7061; Vol. 16(1), 411-412, DOI: 10.1002/pamm.201610194; Details;
  • S. Rezaei, J. Kochmann, S. Wulfinghoff, S. Reese; "Cohesive zone-based modeling of nano-coating layers for the purpose of establishing process signatures"; GAMM-Mitteilungen; Wiley; 2017; Vol. 40, 71-88, DOI: 10.1002/gamm.201710006; Details;
  • C. Gierden, J. Kochmann, K. Manjunatha, J. Waimann, S. Wulfinghoff, B. Svendsen, S. Reese; "A model order reduction method for finite strain FFT solvers using a compressed sensing technique"; Proceedings in Applied Mathematics and Mechanics; 2019; accepted (April 5, 2019); ;
  • C. Gierden, J. Kochmann, J. Waimann, B. Svendsen, S. Reese; "Microstructural convergence analysis as basis for an efficient and accurate two-scale FE-FFT-based simulation approach"; Proceedings of the 8th GACM Colloquium on Computational Mechanics for Young Scientists from Academia and Industry; 2019; ISBN: 978-3-86219-5093-9; GACM, Kassel (Germany), August 28-30, 2019; Details;
  • S. Felder, J. Kochmann, S. Wulfinghoff, S. Reese; "Multiscale FE-FFT-based thermo-mechanically coupled modeling of viscoplastic polycrystalline materials"; Proceedings of the 7th GACM Colloquium on Computational Mechanics for Young Scientists from Academia and Industry; 2017; 799-802; GACM, Stuttgart (Germany), October 11-13, 2017; Details;
  • J. Kochmann, S. Wulfinghoff, B. Svendsen, S. Reese; "Phase-field modeling of martensitic phase transformations in polycrystals coupled with crystal plasticity - a spectral-based approach"; Proceedings in Applied Mathematics and Mechanics; Wiley; 2015; ISSN: 1617-7061 (online); Vol. 15 (1), 317-318, DOI: 10.1002/pamm.201510149; 86th Annual Meeting of the International Association of Applied Mathematics and Mechanics, Lecce (Italy), March 23-27, 2015; Details;
  • J. Kochmann, S. Wulfinghoff, B. Svendsen, S. Reese; "Computational phase-field modeling of bulk microstructure evolution and direct FE-FFT-based micro-macro transition"; Proceedings of the 3rd ECCOMAS Young Investigators Conference on Computational Methods in Applied Sciences and 6th GACM Colloquium on Computational Mechanics; 2015; Details;
  • J. Kochmann, L. Ehle, S. Wulfinghoff, B. Svendsen, S. Reese; "Linking macroscopic deformation processes to microstructure evolution using an FE-FFT-based micro-macro transition and non-conserved phase-fields"; Proceedings in Applied Mathematics and Mechanics; Wiley; 2016; ISSN: 1617-7061; Vol. 16, 535-536, DOI: 10.1002/pamm.201610256; Details;
  • S. Gladkov, J. Kochmann, M. Hütter, S. Reese, B. Svendsen; "Thermodynamic model formulations for inhomogeneous solids with application to non-isothermal phase-field modeling"; Journal of Non-Equilibrium Thermodynamics; de Gruyter; 2016; Vol. 41 (2), 131-139, DOI: 10.1515/jnet-2015-0062; Details;
  • J. Kochmann, S. Wulfinghoff, S. Reese, B. Svendsen, L. Ehle, J. Mayer; "Efficient and accurate two-scale FE-FFT-based prediction of the effective material behavior of elasto-viscoplastic polycrystals"; Computational Mechanics; Springer; 2017; Vol. 61 (6), 751-764, DOI: 10.1007/s00466-017-1476-2; Details;
  • J. Kochmann, S. Wulfinghoff, B. Svendsen, S. Reese; "Efficient and accurate two-scale simulation of non-linear heterogeneous microstructures"; Proceedings in Applied Mathematics and Mechanics; Wiley; 2018; Vol. 17 (1), 803-804, DOI: 10.1002/pamm.201710369; 88th Annual Meeting of the International Association of Applied Mathematics and Mechanics, Weimar (Germany), March 6-10, 2017; Details;
  • J. Kochmann, T. Brepols, S. Wulfinghoff, B. Svendsen, S. Reese; "On the computation of the exact overall consistent algorithmic tangent moduli for non-linear finite strain homogenization problems using six finite perturbations"; Proceedings of the 6th European Conference on Computational Mechanics (ECCM6) and 7th European Conference on Computational Fluid Dynamics (ECFD7); 2018; ISBN: 978-84-947311-6-7; ECCM6 and ECFD7, Glasgow (UK), June 11-15, 2018; Details;
  • J. Kochmann, S. Wulfinghoff, B. Svendsen, S. Reese; "Numerically robust two-scale full-field finite strain crystal plasticity simulations of polycrystalline materials"; Proceedings in Applied Mathematics and Mechanics; Wiley; 2018; ISSN: 1617-7061; Vol. 18:e201800278, DOI: 10.1002/pamm.201800278; Details;
  • J. Kochmann, L. Ehle, S. Wulfinghoff, J. Mayer, B. Svendsen, S. Reese; "Erratum to: Efficient multiscale FE-FFT-based modeling and simulation of macroscopic deformation processes with non-linear heterogeneous microstructures"; Multiscale Modeling of Heterogeneous Structures; In: Lecture Notes in Applied and Computational Mechanics (Eds: J. Soric, P. Wriggers, O. Allix); Springer; 2018; ISBN: 978-3-319-65462-1 (print), 978-3-319-65463-8 (online); DOI: 10.1007/978-3-319-65463-8_7; Details;
  • J. Kochmann, K. Manjunatha, C. Gierden, S. Wulfinghoff, B. Svendsen, S. Reese; "A simple and flexible model order reduction method for FFT-based homogenization problems using a sparse sampling technique"; Computer Methods in Applied Mechanics and Engineering; Elsevier; 2018; Vol. 347, 622-638, DOI: 10.1016/j.cma.2018.11.032; Details;
  • J. Kochmann, J. Rezaeimianroodi, S. Reese, B. Svendsen; "Two-dimensional elastic phase-field simulation of fcc to bcc martensitic phase transformations in polycrystals"; Proceedings in Applied Mathematics and Mechanics; Wiley; 2014; Online ISSN: 1617-7061; Vol 14 (1), 397–398. doi: 10.1002/pamm.201410186; 85th Annual Meeting of the International Association of Applied Mathematics and Mechanics, Erlangen (Germany), March 10-14, 2014; Details;
  • J. Kochmann, J. R. Mianroodi, S. Wulfinghoff, S. Reese, B. Svendsen; "Two-scale FE-FFT and phase-field-based computational modeling of bulk microstructural evolution and macroscopic material behavior"; Computer Methods in Applied Mechanics and Engineering; Elsevier; 2016; Vol. 305, 89-110, DOI: 10.1016/j.cma.2016.03.001; Details;

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