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Effects of Alloying Elements on Mechanical Properties of Mg-Al Alloys

机译:合金元素对镁铝合金力学性能的影响

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摘要

The effects of alloying elements on the micro structure and high temperature mechanical properties of Mg-Al alloys were investigated in this study. In order to improve the high temperature mechanical properties, Sr or Mm was added to the Mg-9Al alloy. The effect of Sn on the Mg-9Al alloy was also examined since Sn was expected to improve the high temperature mechanical properties by forming the thermally stable Mg_2Sn phase. The specimens used in this study were produced on a 320 ton cold chamber high-pressure die casting machine. The microstructures of the specimens were examined by optical and scanning electron microscopy and tensile and creep tests were performed at elevated temperatures. Tensile tests were carried out at room temperature, 150℃ and 200℃ using an initial strain rate of 2x10~(-4)/sec. In addition, tensile creep tests were conducted at the stress levels of 50 MPa and 70 MPa. From the microstructure analyses of the specimens after heat treatment at 400℃ for 12 hours, it was found that most of the Mg_(17)Al_(12) precipitate dissolved into the matrix, while the thermally stable phases continued to exist. The high temperature mechanical properties of the Mg-9Al alloys were found to improve significantly with the additions of Sr, Mm and Sn, due to the formation of the thermally stable precipitates.
机译:本文研究了合金元素对Mg-Al合金微观组织和高温力学性能的影响。为了改善高温机械性能,将Sr或Mm添加到Mg-9Al合金中。还检查了Sn对Mg-9Al合金的影响,因为人们期望Sn可以通过形成热稳定的Mg_2Sn相来改善高温机械性能。本研究中使用的样品是在320吨冷室高压压铸机上生产的。通过光学和扫描电子显微镜检查样品的微观结构,并在升高的温度下进行拉伸和蠕变测试。在室温,150℃和200℃下进行拉伸试验,初始应变率为2x10〜(-4)/ sec。另外,在50 MPa和70 MPa的应力水平下进行了拉伸蠕变试验。从400℃热处理12小时后的试样的显微组织分析发现,大部分Mg_(17)Al_(12)沉淀物溶解在基体中,而热稳定相继续存在。发现由于加入了Sr,Mm和Sn,Mg-9Al合金的高温机械性能会显着改善,这是由于形成了热稳定的沉淀物。

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