Texture Evolution During the Biaxial Stretching of FCC SheetMetals

Y. Zhou, K. Neale
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引用次数: 14

Abstract

Using a rate-sensitive crystal plasticity model together with the full constraint Taylor theory, the formation of textures during biaxial stretching of FCC sheet metals is investigated in detail. Three-dimensional lattice rotation fields, orientation evolution and polycrystalline texture development are simulated for the entire range of biaxial strain ratio. The investigation discloses the paths of orientation development and respective stable end orientations, as well as the relation between the evolution paths and the biaxial strain ratio. Our results show that the formation of textures depends mainly on the behaviour of the α- and βρ fibres in biaxial stretching. The strain ratio affects the composition of the βρ-fibre, as well as the flow direction and velocity of orientations towards and along α and βρ, and thus results in different biaxial-stretching textures. The predictions of FCC biaxial-stretching textures are compared with experimental observations reported in literature. Finally, we discuss the influence of complex strain paths on texture formation.
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FCC板材双向拉伸过程中的织构演变
采用速率敏感晶体塑性模型,结合全约束Taylor理论,详细研究了FCC板在双轴拉伸过程中织构的形成。在整个双轴应变比范围内,模拟了三维晶格旋转场、取向演化和多晶织构的发展。研究揭示了取向发展路径和各自的稳定端取向,以及取向发展路径与双轴应变比的关系。我们的结果表明,织构的形成主要取决于α-和βρ纤维在双轴拉伸中的行为。应变比影响了βρ纤维的组成、流向和沿α和βρ取向的流动方向和速度,从而形成了不同的双轴拉伸织构。对FCC双轴拉伸织构的预测结果与文献报道的实验结果进行了比较。最后,讨论了复杂应变路径对织构形成的影响。
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