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Microstructure and plastic anisotropy of fine grained AZ31 magnesium alloy fabricated by differential speed rolling at 473 and 573 K

机译:473和573 K差速轧制AZ31镁细晶粒合金的组织与塑性各向异性。

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摘要

Differential speed rolling (DSR) was used to deform AZ31 Mg alloy samples at the two rolling temperatures of 473 and 573 K so as to investigate the effects of temperature on the microstructure and plastic anisotropy. The anisotropies in the mechanical properties of the deformed samples were examined by tension tests with respect to three directions (0 degrees, 45 degrees, and 90 degrees) from the DSR deformation direction. A homogeneous and equiaxed microstructure with a mean grain size of similar to 14 degrees mu m was achieved after DSR deformation at 573 K. Thus, anisotropic behaviour in the mechanical properties was mostly observed in the samples processed by DSR at 473 K. The maximum strength was observed in the 90 degrees direction, and the elongation in the 45 degrees direction was higher than those in other directions. A good combination of high elongation and strength together with the homogenous microstructure was attained on the sample deformed at 573 K.
机译:采用差速轧制(DSR)在473和573 K的两个轧制温度下使AZ31 Mg合金样品变形,从而研究温度对组织和塑性各向异性的影响。通过从DSR变形方向开始的三个方向(0度,45度和90度)的拉伸测试,检查了变形样品的力学性能的各向异性。在573 K的DSR变形后,获得了平均晶粒尺寸近似于14度的均匀等轴微结构。因此,在473 K的DSR处理的样品中,大多数观察到了力学性能的各向异性行为。最大强度在90度方向上观察到了伸长率,在45度方向上的伸长率高于其他方向上的伸长率。在573 K变形的样品上,获得了高伸长率和强度以及均匀的微观结构的良好组合。

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