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Using image-based computational modeling to study microstructure-yield correlations in metals

机译:使用基于图像的计算建模来研究金属的微观结构-产率相关性

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摘要

The potential of image-based computational modeling for determining the microstructural features that cause initial plastic flow (yield) in metals is investigated using a β-Ti alloy as the focus material. A high-fidelity three-dimensional (3-D) morphological and crystallographic description of approximately 100 metallic grains is embedded into crystal plasticity finite-element models to analyze the microscale heterogeneity of material response under a set of loading conditions applied at the mesoscale. Preliminary results show that regardless of the globally applied loading condition most of the plastic flow initially occurs generally within only one of the two grains at a grain boundary. Additionally, it was determined that initial local plastic slip is suppressed in a compliant grain neighbored by relatively stiff grains under multiple loading conditions. Overall, the analysis demonstrates that the image-based modeling framework should be used in conjunction with sophisticated data-mining tools for identification of microstructure-property correlations in polycrystalline metals provided a statistically relevant number of grains are accommodated in the models. However, smaller volumes may still be used to investigate the local effect of microstructural features on mechanical behavior.
机译:以β-Ti合金为焦点材料,研究了基于图像的计算建模在确定导致金属初始塑性流动(屈服)的微观结构特征方面的潜力。将大约 100 个金属晶粒的高保真三维 (3-D) 形态学和晶体学描述嵌入到晶体塑性有限元模型中,以分析在中尺度施加的一组载荷条件下材料响应的微观非均质性。初步结果表明,无论全球施加的载荷条件如何,大多数塑性流动最初通常只发生在晶界处的两个晶粒中的一个内。此外,还确定在多种加载条件下,在与相对刚性晶粒相邻的顺应晶粒中,初始局部塑性滑移受到抑制。总体而言,分析表明,基于图像的建模框架应与复杂的数据挖掘工具结合使用,以识别多晶金属的微观结构-性能相关性,前提是模型中容纳了统计上相关的晶粒数量。然而,较小的体积仍可用于研究微观结构特征对机械行为的局部影响。

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