Title of article
The effect of microstructural representation on simulations of microplastic ratcheting
Author/Authors
Remi Dingreville، نويسنده , , Corbett C. Battaile، نويسنده , , Luke N. Brewer، نويسنده , , Elizabeth A. Holm، نويسنده , , Brad L. Boyce، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2010
Pages
17
From page
617
To page
633
Abstract
This paper assesses the sensitivity of cyclic plasticity to microstructure morphology by examining and comparing the microplastic ratcheting behavior of different idealized microstructures (square, hexagonal, tessellated, and digitized from experimental data). This analysis demonstrates the sensitivity of computational accuracy to the various approximations in microstructural representation. The methodology used to perform this study relies on a coupling between microstructural characterization, mechanical testing and numerical simulations to investigate the influence of the microstructure on the purely tensile uniaxial microplastic ratcheting behavior of pure nickel polycrystals. The morphology and deformation behavior of polycrystals were characterized using electron back-scatter diffraction (EBSD), while a finite element model (FEM) of crystal plasticity was used in a computational framework. The predicted cyclic behavior is compared to experimental results both at the macroscopic and microstructural scales. The stress–strain response is less sensitive to the details of the microstructural representation than might be expected with all representations displaying similar macroscopic constitutive response. However, the details of the plastic strain distribution at the microstructural scale and the related estimations of damage mechanics vary substantially from one microstructural representation to another.
Keywords
Crystal plasticity , Finite element method , microstructure , Ratcheting , Fatigue
Journal title
International Journal of Plasticity
Serial Year
2010
Journal title
International Journal of Plasticity
Record number
1254805
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