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David Kammer’s research focus is on the mechanics of dynamic phenomena leading to failure of heterogeneous materials, interfaces and structures. His research is interdisciplinary by connecting physics, engineering, material science and scientific computing. He aims at improving our understanding of how complex structures fail and how the interplay between interfaces and small-scale material properties affect the macroscopic behavior of solids. His group develops cutting-edge numerical models and applies high-performance computing (HPC) to obtain high-resolution simulations of these failure mechanisms. He collaborates intensively with experimental groups with the objective of generating synergies between computational and experimental approaches: to make better numerical models and help with interpretation of experimental observations.
David Kammer’s research focus is on the mechanics of dynamic phenomena leading to failure of heterogeneous materials, interfaces and structures. His research is interdisciplinary by connecting physics, engineering, material science and scientific computing. He aims at improving our understanding of how complex structures fail and how the interplay between interfaces and small-scale material properties affect the macroscopic behavior of solids. His group develops cutting-edge numerical models and applies high-performance computing (HPC) to obtain high-resolution simulations of these failure mechanisms. He collaborates intensively with experimental groups with the objective of generating synergies between computational and experimental approaches: to make better numerical models and help with interpretation of experimental observations.
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论文共 78 篇作者统计合作学者相似作者
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Physical review lettersno. 22 (2024): 226102-226102
INTERNATIONAL JOURNAL FOR NUMERICAL METHODS IN ENGINEERINGno. 5 (2024)
NATURE COMMUNICATIONSno. 1 (2024): 3191-3191
Structures (2024): 106501
COMPUTER METHODS IN APPLIED MECHANICS AND ENGINEERING (2024): 116497-116497
crossref(2024)
ArXiv (2024)
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Nicolas Richart,Guillaume Anciaux,Emil R. Gallyamov,Lucas Frérot,David S. Kammer,Mohit Pundir, Marco Vocialta, Aurelia Isabel Cuba Ramos,Mauro Corrado, Philip Müller,Fabian Barras,Shenghan Zhang,
J. Open Source Softw.no. 95 (2024)
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