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Rate sensitivity and tension–compression asymmetry in AZ31B magnesium alloy sheet

机译:AZ31B镁合金薄板的速率敏感性和拉伸压缩不对称性

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摘要

The constitutive response of a commercial magnesium alloy rolled sheet (AZ31B-O) is studied based on room temperature tensile and compressive tests at strain rates ranging from 10−3 to 103 s−1. Because of its strong basal texture, this alloy exhibits a significant tension–compression asymmetry (strength differential) that is manifest further in terms of rather different strain rate sensitivity under tensile versus compressive loading. Under tensile loading, this alloy exhibits conventional positive strain rate sensitivity. Under compressive loading, the flow stress is initially rate insensitive until twinning is exhausted after which slip processes are activated, and conventional rate sensitivity is recovered. The material exhibits rather mild in-plane anisotropy in terms of strength, but strong transverse anisotropy (r-value), and a high degree of variation in the measured r-values along the different sheet orientations which is indicative of a higher degree of anisotropy than that observed based solely upon the variation in stresses. This rather complex behaviour is attributed to the strong basal texture, and the different deformation mechanisms being activated as the orientation and sign of applied loading are varied. A new constitutive equation is proposed to model the measured compressive behaviour that captures the rate sensitivity of the sigmoidal stress–strain response. The measured tensile stress–strain response is fit to the Zerilli–Armstrong hcp material model.
机译:基于室温拉伸和压缩试验,研究了商品镁合金轧制板材(AZ31B-O)在10 -3 至10 3 应变速率下的本构响应。 s -1 。由于其强大的基础纹理,该合金表现出显着的拉伸-压缩不对称性(强度差),这在拉伸与压缩载荷下的应变速率敏感性差异很大时更为明显。在拉伸载荷下,这种合金表现出常规的正应变速率敏感性。在压缩载荷下,流动应力最初对速率不敏感,直到孪晶耗尽后才激活滑动过程,并恢复了常规速率敏感性。该材料在强度方面表现出相当温和的平面各向异性,但横向各向异性(r值)却很强,并且沿不同板材取向的测量r值高度变化,这表明各向异性程度较高比仅基于应力变化所观察到的结果要高。这种相当复杂的行为归因于强大的基础纹理,并且随着施加载荷的方向和符号的变化,激活了不同的变形机制。提出了一个新的本构方程来对测得的压缩行为进行建模,该模型捕获了S形应力-应变响应的速率敏感性。测得的拉伸应力-应变响应符合Zerilli-Armstrong hcp材料模型。

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