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Constitutive equations for energy balance evaluation in metals under inelastic deformation

机译:非弹性变形下金属能量平衡评估的本构方程

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The work is devoted to the development of constitutive equations for energy balance evaluation in plastically deformed metals. The evolution of the defect system is described by a previously obtained model based on the Boltzmann-Gibbs statistics. In the framework of this model, a collective behavior of mesodefect ensembles is taken into account by the introduction of an internal variable representing additional structural strain. This parameter enables the partition of plastic work into dissipated heat and stored energy. The proposed model is applied to energy balance calculation in a Ti-1Al-1Mn specimen subjected to cyclic loading. Simulation results have shown that the model is able to describe an upward trend in the stored energy value with the increase in the load ratio.
机译:该作品致力于在塑性变形金属中的能量平衡评估的组成方程的发展。基于Boltzmann-Gibbs统计,先前获得的模型描述了缺陷系统的演变。在该模型的框架中,通过引入表示额外的结构应变的内部变量来考虑中间杂交集合的集体行为。该参数使塑料工作的分隔能够变成耗散的热量和储存的能量。所提出的模型应用于经受循环载荷的Ti-1AL-1MN样本中的能量平衡计算。仿真结果表明,该模型能够在负载比率增加时描述储存能量值的上升趋势。

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