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A new crystal plasticity scheme for explicit time...
Journal article

A new crystal plasticity scheme for explicit time integration codes to simulate deformation in 3D microstructures: Effects of strain path, strain rate and thermal softening on localized deformation in the aluminum alloy 5754 during simple shear

Abstract

The predominant deformation mode during material failure is shear. In this paper, a crystal plasticity scheme for explicit time integration codes is developed based on a forward Euler algorithm. The numerical model is incorporated in the UMAT subroutine for implementing rate-dependent crystal plasticity model in LS-DYNA/Explicit. The sheet is modeled as a face centered cubic (FCC) polycrystalline aggregate, and a finite element analysis based …

Authors

Rossiter J; Brahme A; Simha MH; Inal K; Mishra R

Journal

International Journal of Plasticity, Vol. 26, No. 12, pp. 1702–1725

Publisher

Elsevier

Publication Date

December 2010

DOI

10.1016/j.ijplas.2010.02.007

ISSN

0749-6419