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Use of plane-strain tension and shear tests to evaluate yield surfaces for AA1050 aluminium sheet

机译:使用平面应变拉伸和剪切试验评估AA1050铝板的屈服面

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Plane-strain tension and shear tests were carried out for a fully annealed AA1050 sheet. The tests were simulated numerically with a commercial finite element method (FEM) code using an anisotropic plasticity model including the Yld2004-18p yield function, the associated flow rule and isotropic hardening. The advanced yield function was calibrated by three different methods: using uniaxial tension data combined with FC-Taylor model predictions of the equibiaxial yield stress and r-value, using 201 virtual yield points in stress space, and using a combination of experimental data and virtual yield points (i.e., a hybrid method). The virtual stress points at yielding were provided by the recently proposed Alamel model with the so-called Type III relaxation (Alamel Type HI model). FEM simulations of the tests were then made with parameters of Yld2004-18p identified by these three methods. Predicted force-displacement curves were compared to the experimental data, and the accuracy of the parameter identification methods for Yld2004-18p was evaluated based on these comparisons.
机译:对完全退火的AA1050板材进行了平面应变拉伸和剪切试验。使用包括Yld2004-18p屈服函数,相关流规则和各向同性硬化的各向异性塑性模型,使用商业有限元方法(FEM)代码对测试进行了数值模拟。先进的屈服函数通过三种不同的方法进行校准:使用单轴拉伸数据结合FC-Taylor模型对等双轴屈服应力和r值的预测,使用应力空间中的201个虚拟屈服点,以及使用实验数据和虚拟方法的组合屈服点(即混合法)。刚提出的具有所谓的III型弛豫的Alamel模型(Alamel HI模型)提供了屈服时的虚拟应力点。然后使用通过这三种方法确定的Yld2004-18p参数进行测试的FEM仿真。将预测的力-位移曲线与实验数据进行比较,并根据这些比较评估Yld2004-18p参数识别方法的准确性。

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