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Hot Working of an as-Cast Mg-2Al Alloy

机译:铸态Mg-2%Al合金的热加工

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摘要

Magnesium based alloys are being considered currently as replacements for aluminum alloy components in automobile industry, due to their high specific strength as compared to aluminum alloys. However, the utilization of Mg alloys is restricted due to their poor formability, and consequently these have been used mostly in the as cast condition. In order to increase the utilization of the wrought forms, it is necessary to develop optimum deformation processing conditions for producing defect free wrought products economically from the cast alloys. In the present study, the compressive deformation characteristics of as cast Mg-2wt% Al alloy with an equiaxed initial grain size of 150 +- 10 μm have been studied in the temperature range of 573-723 K and at strain rates ranging from 10~(-2) to 10 s~(-1). The results are analyzed in terms of the existing theoretical hot working models together with the microstructural characteristics of the alloy. Furthermore, optimum conditions for subsequent deformation processing have been identified based on a combination of mechanical data together with the deformed microstructures.
机译:镁基合金由于与铝合金相比具有较高的比强度,因此目前被认为是汽车工业中铝合金部件的替代品。但是,由于镁合金的可成形性差,限制了镁合金的利用,因此,它们大多以铸态使用。为了增加锻造形式的利用率,有必要开发最佳的变形加工条件,以从铸造合金经济地生产无缺陷的锻造产品。在本研究中,已经研究了等轴初始晶粒尺寸为150 +-10μm的Mg-2wt%铸造铝合金的压缩变形特性,其温度范围为573-723 K,应变速率为10〜 (-2)至10 s〜(-1)。根据现有的理论热加工模型以及合金的微观结构特征对结果进行了分析。此外,基于机械数据与变形的微结构的组合,已经确定了后续变形处理的最佳条件。

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