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Constitutive Model Based on the Multiplicative Decomposition of Deformation Gradient in Arbitrary Orthogonal Coordinate System

机译:正交坐标系中变形梯度乘积分解的本构模型

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According to general crystallographic slip constitutive laws,the stress-strain analysis of nickel based single crystal superalloy (NBSCS) in arbitrary coordinate system were based on material coordinate system (SRCS method).Ignoring the other symmetry of NBSCS,only the symmetry of plane families {001 } were considered,which bring considerable errors into the stress-strain analysis.In this paper,the variation regulation of micro-physical systematical property about this alloy in arbitrary directions was investigated.From the arrangement of atoms in different crystal planes,NBSCS has four symmetry plane families,{001},{110},{112} and {111}.According to these symmetry planes,three reference orthogonal coordinate systems were established.Based on these coordinate systems and the coordinate rotation method (TRCS method),the stress-strain relationship of crystallographic slip constitutive model in arbitrary coordinate system was established.Meanwhile elastic constants in arbitrary directions were obtained.Comparing the results of the tensile stress-strain curves obtained from TRCS method with that from SRCS method,it is found that by the TRCS method the elastoplastic stress-strain simulation error of the NBSCS could be effectively reduced.
机译:根据一般的晶体滑移本构定律,基于材料坐标系(SRCS方法),对镍基单晶高温合金(NBSCS)在任意坐标系中的应力-应变进行了分析。忽略了NBSCS的其他对称性,仅考虑了平面族的对称性考虑到{001},这给应力-应变分析带来了相当大的误差。本文研究了该合金在任意方向上的微观物理系统性质的变化规律。有四个对称平面族{001},{110},{112}和{111}。根据这些对称平面,建立了三个参考正交坐标系。基于这些坐标系和坐标旋转方法(TRCS方法)建立了任意坐标系下的晶体滑动本构模型的应力-应变关系。将TRCS法和SRCS法得到的拉伸应力-应变曲线结果进行比较,发现通过TRCS法可以有效地减小NBSCS的弹塑性应力-应变模拟误差。

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