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The temperature effect onviscoplastic constitutive spins

机译:温度对粘塑性本构旋转的影响

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Within the framework of anisotropic combined viscoplastic hardening formulation, accounting macroscopically for residual stress as well as texture development at finite deformations of metals, simple shear analyses for the simulation of fixed-end torsion experiments for Al and Cu at different strain rates are reviewed with an emphasis on the role of constitutive spins. Complicated responses of the axial stresses with monotonically increasing shear deformations can be successfully described by the flexibility of orthotropic hardening part, featuring tensile axial stresses either smooth or oscillatory. Temperature effect on viscoplastic constitutive spins is investigated via the variations of ratio of plastic to total spins with shear deformations. The distortion and orientation of yield surface is also discussed with temperatures.
机译:在各向异性组合粘塑性硬化配方的框架内,宏观地考虑了残余应力以及金属有限变形下的织构发展,回顾了用于模拟不同应变速率下的Al和Cu固定端扭转实验的简单剪切分析。强调本构自旋的作用。正交各向异性硬化零件的柔韧性可以成功地描述轴向应力随剪切变形单调增加的复杂响应,其特征在于轴向拉伸应力既平滑又振荡。通过改变塑性与总自旋比与剪切变形,研究了温度对粘塑性本构自旋的影响。还讨论了屈服面的变形和取向随温度的变化。

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