Project Details
Professor Dr.-Ing. Peter Wriggers
Address
Gottfried Wilhelm Leibniz Universität Hannover
Fakultät für Maschinenbau
Institut für Kontinuumsmechanik
An der Universität 1
30823 Garbsen
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As Applicant
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Current projects
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SP-7: In-silico design of implants based on a multi-scale approach (Research Units)
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Completed projects
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Adaptive Algorithmen für gekoppelte thermomechanische Kontaktprobleme (Research Grants)
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Mortar- and Nitsche methods for nonlinear contact problems (Research Grants)
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Mikrostruktursimulation von zementgebundenen Baustoffen (Priority Programmes)
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Dynamische Kontaktprobleme mit Reibung bei Elastomeren (Research Units)
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Computational multiscale modelling of localized ductile failure (Research Grants)
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Water-induced damage mechanisms of cyclic loaded high-performance concretes (Priority Programmes)
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Current projects
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As Leader
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Completed projects
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Nanoindenter (Major Research Instrumentation)
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Completed projects
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As Spokesperson
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Completed projects
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GRK 1627: Virtual Materials and Structures and their Validation (International Research Training Groups)
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Completed projects
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As Participating Researcher
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Current projects
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EXC 2122: PhoenixD: Photonics, Optics, and Engineering – Innovation Across Disciplines (Clusters of Excellence (ExStra))
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Completed projects
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Current projects
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As Project Head
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Current projects
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Simulation of biofilm growth and drug-induced degradation (CRC/Transregios)
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Modelling and simulation of joint interfaces during tailored forming (Collaborative Research Centres)
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Completed projects
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Adaptive FE-Verfahren zur Simulation der Rißentstehung in inelastischen Schalenstrukturen (Collaborative Research Centres)
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Ein numerisches Modell zur Beschreibung von Bruchvorgängen in Böden (Collaborative Research Centres)
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Magnesium sponges as bioabsorbable implants (Collaborative Research Centres)
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Degradable osteosynthesis systems (Collaborative Research Centres)
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Structures made of magnesium for the stabilization of cardiovascular tissue scaffolds in the high pressure system (Collaborative Research Centres)
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Integrated Research Training Group (Collaborative Research Centres)
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Prediction of crack growth and fatigue strength of repaired components (Collaborative Research Centres)
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Current projects
- As Participating Person
- As Co-Investigator