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A continuous Fiber Distribution Material Model for Human Cervical Tissue.
In this paper we suggest a new phenomenological material model for shape memory alloys.
The technique employed an elasto-plastic constitutive material model for soil with Drucker Prager yield criterion.
In this paper a material model for shape memory alloys from Seelecke (1999) is investigated.
The material model for the HSC in steel tubes is essential for a successful design.
A material model for the belt, including the rubber compound and the reinforcing cord is developed.
The Chaboche material model for nonlinear isotropic and kinematic hardening was used in the FE simulations.
A three-dimensional nonlinear material model for fiber reinforced polymers is developed.
An elastic plastic material model for the out-of-plane mechanical behaviour of paper is presented.
An improved unified cyclic viscoplastic material model for high temperature fatigue of P91 steel is presented.
A physically based material model for metals, with elastic plastic and damage/failure orthotropy is proposed in this paper.
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