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Investigation on the large strain elastoplastic constitutive model with logarithmic stress rate based on torsion experiments

机译:基于扭转实验的对数应力率大应变弹塑性本构模型的研究

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A complete analysis was made for an isotropic hardening rate-type elastoplastic constitutive model with the logarithmic stress rate utilizing solid shafts torsion test in the large strain range. The deformation rate, the logarithmic spin, the Kirchhoff stress and the logarithmic stress rate of the Kirchhoff stress were obtained for the free-end solid shaft torsion test when considering Swift effect. Utilizing the results obtained from the solid shaft torsion test, the plastic rigidity function in the isotropic hardening elastoplastic constitutive model was determined at finite strain range. It was shown that the influence of Swift effect on finite strain constitutive model was related to the varying rate of axial deformation and the varying rate of radius deformation to shear strain, and the plastic rigidity function corresponding to the logarithmic stress rate was the same as that corresponding to the Jaumann stress rate when neglecting Swift effect.
机译:通过在大应变范围内利用固体轴扭转试验,对各向同性的硬化速率型弹性塑料组成型模型进行了完全分析。在考虑SWIFT效应时,获得了基于固体轴扭转试验的自由端固轴扭转试验的变形速率,对数旋转,Kirchhoff应力和对数应力。利用从固体轴扭转试验获得的结果,在有限菌株范围内测定各向同性硬化弹性塑料组成型模型中的塑性刚性功能。结果表明,Swift对有限菌株组成型模型的影响与轴向变形的不同速率和剪切应变的半径变形的变形率和变形率,并且对对数应力速率对应的塑料刚性函数与该塑料刚性函数相同忽视迅速效应时对应jaumann压力率。

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