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A continuous Fiber Distribution Material Model for Human Cervical Tissue.
This paper adopts a bilinear material model.
A linear poroelastic material model is utilized.
A material model is proposed for ice.
A material model from a previous study25 was embedded into Abaqus with the user-defined subroutine UMAT.
This material model has to be accurate and fast.
A continuum material model is applied to the masonry panels.
A damage indicator is implemented in the material model.
The material model and proposed resistance functions are then described.
An elastic-thermoviscoplastic material model was employed in the simulations.
The proposed material model is an orthotropic hypoplastic model.
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