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Evolution of the plastic anisotropy with straining and its implication on formability for sheet metals

机译:塑性各向异性随应变的演变及其对钣金可成形性的影响

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The plastic anisotropy r-value is an important material parameter in sheet metal forming. The length and width strains are measured conventionally in the uniaxial tensile test using two extensometers and the r-value is fitted within a certain strain range by linear regression according to the international standard. In this study, the physical character of the plastic anisotropy is analyzed for several forming steels and an aluminium alloy. In principle, the plastic anisotropy r-value is not a material constant. It is a fitted parameter within a given strain range and its value is dependent on the strain range chosen. More accurate approximation of the current state of anisotropy of a material is given by the incremental r-value that is defined in this study. Furthermore, this parameter can be predicted well by the VPSC code for materials in the as-received and deformed state. Contrary to previous studies elsewhere, the evolution of this incremental r-value does not correlate with anisotropic work hardening and the magnitude of the r-value. It is however closely related to texture evolution during plastic deformation. Texture evolution can have remarkable effect on the plastic anisotropy r-value, the yield locus and ultimately formability.
机译:塑性各向异性r值是钣金成形中的重要材料参数。长度和宽度应变通常是使用两个引伸计在单轴拉伸试验中测量的,并且根据国际标准通过线性回归将r值拟合在特定应变范围内。在这项研究中,分析了几种成形钢和铝合金的塑性各向异性的物理特性。原则上,塑性各向异性r值不是材料常数。它是给定应变范围内的拟合参数,其值取决于所选的应变范围。通过研究中定义的增量r值,可以更准确地近似材料的各向异性当前状态。此外,对于处于接收和变形状态的材料,该参数可以通过VPSC代码很好地预测。与之前的其他研究相反,此增量r值的演变与各向异性加工硬化和r值的大小无关。但是,它与塑性变形过程中的纹理演变密切相关。织构演变对塑性各向异性r值,屈服轨迹和最终成形性具有显着影响。

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