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Computational assessment of the microstructure-dependent plasticity of lamellar gray cast iron - Part IV: Assessment of the yield surface after plastic loading

机译:层层灰铸铁微观结构依赖性可塑性的计算评估 - 第四部分:塑料载荷后屈服表面的评估

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In this paper the yield surface of a recently presented microstructure-based volume element of the gray cast iron material GJL-250 is assessed after different plastic loading histories. The evolution of the yield surface is investigated for different volumetric, deviatoric and uniaxial loadings. The micromechanical material properties of the metallic matrix and the graphite inclusions are validated by means experimental stress-strain hysteresis loops. The metallic matrix is modeled as elastic-plastic with a non-linear kinematic hardening law. The graphite inclusions are described by means of a volumetric strain state dependent Young's modulus. The results show that the shape of the yield surface does not change significantly in comparison to the initial yield surface after pure deviatoric loadings. After volumetric loadings, the dependence of the material on the Lode angle is significantly reduced. Uniaxial tensile preloadings result in a deformed yield surface, whereby the magnitude of the deformation depends on the applied load. Uniaxial preloadings to compression do not change the shape of the initial yield surface. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在本文中,在不同的塑料装载历史之后评估最近呈现的灰铸铁材料GJL-250的基于微观结构的体积元件的屈服表面。研究了屈服表面的进化,针对不同的体积,偏离偏离和单轴载荷进行了研究。通过指实验应力 - 应变滞后环验证金属基质和石墨夹杂物的微机械材料特性。金属基质用非线性运动硬化定律为弹性塑料模拟。石墨夹杂物通过体积应变状态依赖性杨氏模量来描述。结果表明,与纯脱模后的初始屈服表面相比,屈服表面的形状不会显着变化。在体积载荷之后,材料对典型值的依赖性显着降低。单轴拉伸预载荷导致变形的屈服表面,从而变形的大小取决于所施加的负载。压缩的单轴预载荷不会改变初始屈服表面的形状。 (c)2018年elestvier有限公司保留所有权利。

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