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Modelling Steady State Deformation in Metals by a Novel Themostatistical Approach

机译:一种新型专题统计方法在金属中建模稳态变形

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A novel model based on linear non-equilibrium thermodynamics and statistical mechanics to describe the microstructure evolution during steady state deformation in metals is presented. Steady state is treated as a stationary non-equilibrium state in the framework of linear non-equilibrium thermodynamics. It is modelled by equating the entropy production inside the bulk to the entropy flow towards the surroundings, so that total entropy remains constant. Based on this assumption, the saturation flow stress, dislocation density and subgrain size are computed as a function of temperature and strain rate. The model is applied to pure Al, Cu, Ni, and Ag showing good agreement with experimental results.
机译:提出了一种基于线性非平衡热力学和统计力学来描述金属稳态变形期间微观结构演变的新型模型。在线性非平衡热力学框架中,稳态被视为静止的非平衡状态。它通过将块体内的熵产生等同于朝向周围环境的熵产生来建模,因此总熵保持不变。基于该假设,计算饱和流应力,位错密度和子粒尺寸作为温度和应变率的函数计算。该模型应用于纯Al,Cu,Ni和Ag,显示与实验结果良好的一致性。

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