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ATHERMO-ELECTRO-ELASTO-VISCOPLASTIC DAMAGE INTERNAL STATE VARIABLE (ISV) MODEL FOR DUCTILE METALS

机译:球墨金属的热电-弹-粘塑性损伤内部状态变量(ISV)模型

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摘要

A multiphysics Internal State Variable (ISV) theory that couples the thermoelastoviscoplastic damage model of Bammann-Horstemeyer with electricity-related electromagnetic phenomena is presented in which the kinematics, thermodynamics, and kinetics are internally consistent. An extended multiplicative decomposition of the deformation gradient that accounts for elasticity, plasticity, damage, thermal expansion, electricity, and magnetism is introduced. The different geometrically-affected rate equations are given for each phenomenon after the ISV formalism and have a thermodynamic force pair that acts as an internal stress-like quantity. Guidelines for practical implementation, recommendations for simplifying assumptions, and suggestions for future work supplement the theoretical model. The abstraction of the model can capture the full multi-physics described above; however, the robustness of the model is realized when any of the listed phenomena are not included in the boundary value problem, the model reduces to the previous form - the model will revert to the Bammann-Horstemeyer plasticity-damage ISV model.
机译:提出了一种多物理场内部状态变量(ISV)理论,该理论将Bammann-Horstemeyer的热弹塑性粘塑性损伤模型与与电相关的电磁现象耦合在一起,其中运动学,热力学和动力学在内部是一致的。介绍了变形梯度的扩展乘法分解,该分解解释了弹性,可塑性,损伤,热膨胀,电和磁性。在ISV形式主义之后,针对每种现象都给出了不同的几何影响速率方程,并具有一个热力学力对,该热力学对像内部应力一样起作用。实际实施指南,简化假设的建议以及未来工作的建议补充了理论模型。模型的抽象可以捕获上述完整的多物理场;但是,当边界值问题中未包含任何列出的现象时,该模型便会实现鲁棒性,该模型简化为以前的形式-该模型将恢复为Bammann-Horstemeyer塑性损伤ISV模型。

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