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首页> 外文期刊>Materials Science and Engineering >A three-scale crystal plasticity model accounting for grain refinement in fcc metals subjected to severe plastic deformations
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A three-scale crystal plasticity model accounting for grain refinement in fcc metals subjected to severe plastic deformations

机译:一种三级晶体可塑性模型,用于解释fcc金属在严重塑性变形下的晶粒细化

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摘要

A new three-scale model of polycrystal accounting for grain refinement is proposed. The model is embedded into the crystal plasticity framework. With the experimental reference to the development of the dislocation induced cell substructure, a single crystallite in the representative grain aggregate is initially subdivided into subdomains with the crystallographic orientations slightly misoriented with respect to the nominal orientation of a parent grain. The predicted misorientation evolution of subgrains with respect to the reference orientation of a crystallite is an indicator of grain refinement. The correlation between the increase of a misorientation angle and a slip activity pattern is analyzed. The model predictions are compared with available experimental data.
机译:提出了一种新的多尺度三晶模型,用于晶粒细化。该模型已嵌入晶体可塑性框架中。通过对位错诱导的细胞亚结构发展的实验性参考,代表性晶粒聚集体中的单个微晶最初被细分为多个子域,其晶体学取向相对于母体晶粒的标称取向略有误取向。相对于微晶的参考取向,预测的亚晶粒取向差演变是晶粒细化的指标。分析了取向差角的增加与滑动活动模式之间的相关性。将模型预测与可用的实验数据进行比较。

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