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Crystal plasticity and phenomenological approaches for the simulation of deformation behavior in thin copper alloy sheets

机译:模拟薄铜合金薄板变形行为的晶体可塑性和现象学方法

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摘要

In the expanding context of device miniaturization, forming processes of ultra thin sheetmetals are gaining importance. Numerical simulation of these processes requires accurate material modeling. In this study, both the phenomenological modeling approach and the crystal plasticity finite element method (CPFEM) are considered. Theoretical definitions of both models, numerical implementation as well as their parameter identification procedures are outlined. Subsequently they are compared on a one to one basis, mainly with regards to their ability to predict mechanical responses for a variety of strain loading paths.
机译:在装置小型化的不断发展的背景下,超薄金属薄板的成型工艺变得越来越重要。这些过程的数值模拟需要精确的材料建模。在这项研究中,同时考虑了现象学建模方法和晶体可塑性有限元方法(CPFEM)。概述了两个模型的理论定义,数值实现及其参数识别过程。随后,在一对一的基础上对它们进行比较,主要是针对它们预测各种应变加载路径的机械响应的能力。

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