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A Statistical Mechanics Theory of Grain Deformation and its Prediction of Dynamical Recovery and Recrystallization

机译:一种统计力学理论的晶粒变形及动态回收和再结晶预测

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A novel statistical mechanics approach to quantify the effects of hot rolling and deformation on the formation of dislocations in a single grain scenario is presented. The dislocations are dealt as equilibrium defects in the crystal structure, which is assumed to be deformed via the formation of dislocations or single atom displacements at the grain boundary, which involve breaking their bonds and are thus termed "bond breaking atoms". The deformation process is applied to steels of a variety of grain size and dislocations densities. The model has the capacity to describe the grain energy increase as a function of crystallography, grain sizes, temperature and degree of deformation, providing thus an aid in predicting the conditions for dynamic recovery and recrystallization.
机译:提出了一种新颖的统计力学方法,以量化热轧和变形对单粒场景中脱位形成的影响。脱位被处理为晶体结构中的平衡缺陷,假设通过在晶界形成的脱位或单个原子位移的形成变形,这涉及破坏它们的键,因此被称为“粘合破坏原子”。变形过程应用于各种晶粒尺寸和脱位密度的钢。该模型具有描述作为晶体学,晶粒尺寸,变形程度的函数的谷物能量增加的能力,因此提供了一种有助于预测动态回收和重结晶的条件。

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