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Tresca criterion for plasticity and viscoplasticity: Application to localization in biaxial loading conditions

机译:Tresca塑性和粘塑性准则:在双轴加载条件下的局部化应用

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It has been proved that plastic instabilities in biaxial stretching conditions were better reproduced by using a Tresca yield surface rather than a Von Mises one. The simulation of the phenomenon in an expanding TA6V4 (Ti-6Al-4V alloy) shell experiment is performed using the Tresca criterion and both elasto-plastic and viscoplastic constitutive models: in this aim, Tresca flow surfaces had to be defined in viscoplasticity. The two models exhibit localization but, whereas the elastoplastic case develops shear banding in times in agreement with the onset of instabilities in the experiment, the viscoplastic case develops diffuse necking at later times. On the contrary, the viscoplastic simulation exhibits patterns the size of which seems in better agreement with the experimental ones.
机译:业已证明,通过使用Tresca屈服面而不是Von Mises,可以更好地再现双轴拉伸条件下的塑性不稳定性。使用Tresca准则以及弹塑性和粘塑性本构模型对扩展的TA6V4(Ti-6Al-4V合金)壳实验中的现象进行了仿真:为此,必须在粘塑性中定义Tresca流动表面。这两个模型都显示出局部性,但是,与实验中不稳定性的发生相一致,弹塑性情况下会及时产生剪切带,而粘塑性情况下会出现扩散颈缩。相反,粘塑性模拟显示出其大小似乎与实验更好地吻合的模式。

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