Minisimposium
Thursday, 14 June 2018 08:30 - 10:30 Phase-field models for cracking in complex materials I Minisymposium organized by Hüsnü Dal, Marc-Andre Keip and Charlotte Kuhn |
MS181A Room: M4 Chair: Hüsnü Dal CoChair: Marc Andre Keip |
A modified Gurson-type plasticity model at finite strains: Formulation, numerical analysis and phase-field coupling (Keynote Lecture)
Modified phase field model for application to materials with anistropic fracture resistance
A multiphase-field model for anisotropic brittle and ductile crack propagation in cast iron brake discs
Variational phase-field formulation of non-linear ductile fracture
A Phase-field model for ductile fracture in frictional materials
A phase-field reliability method for modelling quasi-brittle fracture
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Thursday, 14 June 2018 11:00 - 13:00 Phase-field models for cracking in complex materials II Minisymposium organized by Hüsnü Dal, Marc-Andre Keip and Charlotte Kuhn |
MS181B Room: M4 Chair: Charlotte Kuhn CoChair: Hüsnü Dal |
Topology optimization for maximizing the fracture resistance of quasi-brittle composites (Keynote Lecture)
Rate-dependent phase-field fracture modeling of rubbers
A rate-dependent phase field approach for the failure of rubberlike materials
A phase-field model for crack propagation in fibre-reinforced polymers
Simulation of anisotropic fracture within composite materials by a Phase-Field Method
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Thursday, 14 June 2018 16:30 - 18:30 Phase-field models for cracking in complex materials III Minisymposium organized by Hüsnü Dal, Marc-Andre Keip and Charlotte Kuhn |
MS181C Room: M4 Chair: Marc Andre Keip CoChair: Charlotte Kuhn |
Nonsmooth multigrid methods for phasefield fracture formation problems
Truncated nonsmooth Newton multigrid for nonsmooth minimization problems
Phase-field modelling of interface failure in brittle materials
Modelling damage and fracture in gradient-extended anisotropic brittle solids using a second-order damage tensor
A virtual element method for phase field modeling of brittle fracture
Dynamic crack propagation and crack tip shielding in porous materials analyzed by the phase field method for fracture
A new approach for modeling the normal and tangential contact in phase field cracks
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