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Numerical Implementation of a Multi-physical Fields Coupling Constitute Model

机译:多物理字段耦合构成模型的数值实现

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The objective of this paper provides a numerical implementation procedure of thermo-metallurgical-mechanical constitute equation based on additively decomposition of strain rate. Together with phase transformation kinetics, the macro material properties are determined by assigning temperature dependent material properties to each phase and by applying mixture rule to combine. Then the constitute equation is implemented into general purpose implicit finite element program via user material subroutine. The effectiveness of developed computational method is confirmed by a Satoh test simulation. Simulation of Satoh test demonstrates that transformation induce plasticity has significant effect of the evolution of residual stress and can not be neglected for alloy steel during hot working process.
机译:本文的目的提供了基于菌株率的加剧分解的热冶金机械构成方程的数值实施方法。与相变动力学一起,通过将温度依赖性材料特性分配给每个阶段并通过施加混合规则来确定宏观材料性质。然后,构成等式经由用户材料子例程实现为通用隐含的有限元件。通过SATOH测试模拟确认了开发的计算方法的有效性。 SATOH试验的模拟表明,转化诱导可塑性对残余应力的演变具有显着影响,并且在热工作过程中对于合金钢不能被忽略。

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