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Rate and Orientation Dependence of Formability in Fine-Grained AZ31B-O Mg Alloy Thin Sheet

机译:细晶粒AZ31B-O镁合金薄板成形性的速率和方向依赖性

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Uniaxial tension and press forming tests were carried out at two different strain rates and temperatures to investigate the formability of fine-grained AZ31B-O Mg alloy thin sheet. Formability parameters were determined by tensile test results. The tensile properties and formability parameters were correlated with the forming limit diagrams. The present work focused on the effects of loading orientation and deformation rate on formability. Anisotropic behaviors were observed in the mechanical properties. Maximum strengths were obtained in the direction perpendicular to the rolling direction (RD). It can be concluded that the formability of the rolled fine-grained AZ31B-O Mg alloy sheet can be influenced by loading orientation and deformation rate. Stretch formability can be enhanced at a higher deformation rate, resulting from a lower anisotropy and a higher work hardening effect. In contrast, the drawing processes can be performed at a lower deformation rate to take advantage of a higher anisotropic behavior. Specimens with the RD parallel to the major strain in the press forming tests can enhance stretch formability, whereas specimens with the RD perpendicular to the major strain can improve deep-drawability.
机译:在两种不同的应变速率和温度下进行了单轴拉伸和压制成型测试,以研究细粒AZ31B-O Mg合金薄板的可成形性。成型性参数由拉伸试验结果确定。拉伸性能和可成形性参数与成形极限图相关。目前的工作集中在加载方向和变形率对可成形性的影响。在机械性能中观察到各向异性行为。在垂直于轧制方向(RD)的方向上获得了最大强度。可以得出结论,轧制细晶AZ31B-O Mg合金薄板的可成形性可能受载荷取向和变形率的影响。由于较低的各向异性和较高的加工硬化效果,可以较高的变形率提高拉伸成形性。相反,可以以较低的变形速率执行拉伸过程以利用较高的各向异性行为。在冲压成型测试中,RD与主应变平行的标本可以增强拉伸成形性,而RD与主应变垂直的标本可以提高深冲性。

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