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MODELING OF STRENGTH DIFFERENTIAL EFFECTS IN HCP SHEET MATERIALS

机译:HCP板料中强度微分效应的建模

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A simple approach is proposed to employ symmetric yield functions for modeling the tension-compression asymmetry commonly observed in hcp materials. In this work, the strength differential (SD) effect is modeled by choosing separate symmetric plane stress Barlat Yld 2000 yield functions for the tension i.e., in the first quadrant of principal stress space, and compression i.e., third quadrant of principal stress space. In the second and fourth quadrants, the yield locus is constructed by adopting Bezier interpolating functions between uniaxial tensile and compressive stress states. The main advantage of this proposed approach is that the yield locus parameters are deterministic and relatively easy to identify when compared to the Cazacu-Plunkett-Barlat (CPB) family of yield functions commonly used for modeling the SD effect observed in hcp materials. The proposed yield function is implemented as a user material subroutine (UMAT) within the commercial finite element software, LS-DYNA. The predictions of the developed material model are compared with the measured load-displacement and strain distributions from a three-point bend experiment on AZ31B sheet.
机译:提出了一种简单的方法来采用对称屈服函数来建模通常在hcp材料中观察到的拉伸-压缩不对称性。在这项工作中,通过为张力即主应力空间的第一象限和压缩即主应力空间的第三象限选择单独的对称平面应力Barlat Yld 2000屈服函数来模拟强度微分(SD)效应。在第二和第四象限中,屈服轨迹是通过在单轴拉伸和压缩应力状态之间采用贝塞尔插值函数构造的。与通常用于对hcp材料中观察到的SD效应进行建模的Cazacu-Plunkett-Barlat(CPB)系列屈服函数系列相比,该提议方法的主要优点是屈服位点参数是确定性的,并且相对容易识别。提议的屈服函数在商用有限元软件LS-DYNA中作为用户材料子例程(UMAT)实现。将开发的材料模型的预测结果与在AZ31B板材上进行的三点弯曲实验所测得的载荷-位移和应变分布进行了比较。

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