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Computational assessment of the microstructure-dependent plasticity of lamellar gray cast iron - Part I: Methods and microstructure-based models

机译:层状灰口铸铁微观结构相关塑性的计算评估-第一部分:方法和基于微观结构的模型

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This paper focuses on the microstructure-dependent inelastic behavior of lamellar gray cast iron. It comprises the reconstruction of three dimensional volume elements by use of the serial sectioning method for the materials GJL-150, GJL-250 and GJL-350. The obtained volume elements are prepared for the numerical analyses by means of finite-element method. In the finite-element analysis, the metallic matrix is modeled with an elastic-plastic deformation law. The graphite inclusions are modeled nonlinear elastic with a decreasing value of Young's modulus for increasing tensile loading. Thus, the typical tension-compression asymmetry of this material class can be described. The stress-strain curves obtained with the microstructure-based finite-element models agree well with experimental curves of tension and compression tests. Besides the analysis of the whole volume element, the scatter of the stress-strain response in smaller statistical volume elements is investigated. Furthermore, numerical studies are performed to reduce computational costs. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文重点研究层状灰铸铁的微观组织相关的非弹性行为。它包括通过对材料GJL-150,GJL-250和GJL-350进行连续切片的方法来重建三维体元。利用有限元方法为数值分析准备了所获得的体积元。在有限元分析中,利用弹塑性变形定律对金属基体进行建模。石墨夹杂物被建模为非线性弹性,其杨氏模量减小,以增加拉伸载荷。因此,可以描述这种材料类别的典型的拉伸-压缩不对称性。通过基于微结构的有限元模型获得的应力-应变曲线与拉伸和压缩试验的实验曲线吻合得很好。除了分析整个体积单元外,还研究了较小统计体积单元中应力-应变响应的分散性。此外,进行了数值研究以减少计算成本。 (C)2015 Elsevier Ltd.保留所有权利。

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