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Influence of Rolling Routes on Press Formability of a Rolled AZ31 Mg Alloy Sheet

机译:轧制方式对轧制AZ31镁合金薄板冲压成形性的影响

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摘要

Microstructure, tensile properties and press formability of AZ31 Mg alloy sheets processed by unidirectional rolling, reverse rolling and cross rolling were investigated. The intensity in (0002) plane texture for the reverse-rolled and the cross-rolled specimens was lower than that for the unidirectional-rolled specimen. In addition, the Erichsen values of the formers were larger than those of the latter. The superior press formability for the formers could not be explained from the viewpoint of the elongation to failure, n-value, average r-value and planar anisotropy of the r-value, but it was related to a reduction in directional dependence of the thickness-direction strain and width-direction strain normalized by the tensile-direction strain (epsilon_t/epsilon_L and epsilon_(omega)/epsilon_L). Therefore, it is suggested that the minor texture formation due to reverse rolling and cross rolling gives rise to the reduction in anisotropy of strain, resulting in the superior press formability for the reverse-rolled and cross-rolled specimens.
机译:研究了单向轧制,反向轧制和交叉轧制后的AZ31镁合金板材的组织,拉伸性能和压制成形性。反向轧制和交叉轧制试样的(0002)平面织构强度低于单向轧制试样。另外,前者的埃里克森值大于后者的埃里克森值。从断裂伸长率,n值,平均r值和r值的平面各向异性的角度无法解释前者的优越冲压成形性,但这与厚度方向依赖性的减小有关。通过拉伸方向应变(epsilon_t / epsilon_L和epsilon_ω/ epsilon_L)归一化的方向应变和宽度方向应变。因此,建议由于反向轧制和交叉轧制而形成的较小的织构会降低应变的各向异性,从而使反向轧制和交叉轧制的试样具有优异的压制成形性。

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