首页> 外文会议>International Conference on Solid - Solid Phase Transformations in Inorganic Materials 2005 vol.1; 20050529-0603; Phoenix,AZ(US) >STATISTICAL MECHANICS PREDICTION OF SOLID—SOLID TRANSFORMATIONS INDUCED BY PLASTIC DEFORMATION
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STATISTICAL MECHANICS PREDICTION OF SOLID—SOLID TRANSFORMATIONS INDUCED BY PLASTIC DEFORMATION

机译:塑性变形引起的固-固相变的统计力学预测

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摘要

A new two-dimensional model based on statistical mechanics for describing plastic deformation as well as the resulting microstructural changes is presented. The progress in plastic deformation is described by calculating the dislocation configurations, grain boundary sliding and energy dissipation resulting in entropy maximisation for a two-dimensional FCC crystal structure. The model provides a quantitative tool for determining deformation conditions leading to the occurrence of solid—solid microstructural changes such as subgrain nucleation, recovery and recrystallization. The impact of grain size is analysed by highlighting the behaviour of ultra fine grain and nano-grained materials. The model is applied to FCC Fe (austenite) showing good agreement with experimental observations.
机译:提出了一种新的基于统计力学的二维模型,用于描述塑性变形以及由此产生的微观结构变化。通过计算位错构型,晶界滑动和能量耗散导致二维FCC晶体结构的熵最大化来描述塑性变形的进展。该模型提供了一种定量工具,用于确定导致固-固微结构变化(例如亚晶粒形核,回收和再结晶)发生的变形条件。通过突出超细晶粒和纳米晶粒材料的行为来分析晶粒尺寸的影响。该模型应用于FCC Fe(奥氏体),与实验观察结果吻合良好。

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