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(e.g, plasticity, damage, fracture), which emerges from the physics and mechanics of the underlying multi-phase microstructure. An integrated numerical-experimental approach is generally adopted for
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the dynamic in vivo environment of bone healing, leading to significant in vitro-in vivo discrepancies (IVIVD). Project background Osteosynthesis systems are designed to stabilize fractured bones in
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based at “OrthoLab ”, where we focus on developing materials for clinical use in cases with bone loss due to injury or disease. Examples include bone defects following open fractures or in revision
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fracture recently proposed by other members of the Computational Mechanics Group and develop it further from both the theoretical and the computational point of view. Job description You will have the unique
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master's degree in materials science, mechanical engineering, physics or a related field. Knowledge of fracture process of materials, high-strain rate mechanical testing Experience with microstructural
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increasing prevalence of bone fractures among the elderly. This not only affects the quality of life for millions of individuals but also places a tremendous economic burden on healthcare systems, as the costs
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computational mechanics or multiphysics modeling, with particular interest in fracture mechanics and chemo-mechanical degradation. Knowledge of solid-state defect chemistry (advantageous). You will join a dynamic
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to their excellent structural performance and relatively low weight. However, their laminated structure results in low fracture toughness and limited impact resistance, influenced by the type of polymer used
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and Environmental Engineering (CEE) and Mechanical and Materials Engineering (MME) seek to hire a research assistant professor who will be closely affiliated with the Midwest Roadside Safety Facility