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Grain Refinement of Mg-Al Alloys Inoculated by MgO Powder

机译:MgO粉末接种的Mg-Al合金的晶粒细化

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摘要

Mg-Al alloys were inoculated by MgO powder. The effects of MgO addition amount, holding time after MgO addition and Al content on the grain refining efficiency were systematically investigated in the present study. The refining mechanism was discussed. MgO cannot serve as the effective substrate of primary -Mg phase. Significant grain refinement of Mg-Al alloys with the Al content over than 2% could be obtained. Al is an indispensable element to ensure the grain refining efficiency of MgO addition on Mg alloys. The optimum MgO powder addition amount and the holding time were about 1.5% and 10min, respectively. MgO could react with Al in Mg melt, resulting in the formation of MgAl2O4 particles. As the comparative experiments, the grain refinement on the pure Mg and Mg-3%Al alloy inoculated by MgAl2O4 powder was proven. Based on theoretical calculation and experimental results, the grain refinement of Mg-Al alloy inoculated by MgO powder is attributed to the newly formed MgAl2O4 particles, which could act as the effective heterogeneous nuclei of primary -Mg phase.
机译:Mg-Al合金被MgO粉末接种。在本研究中,系统地研究了MgO添加量,保持时间和Al含量的晶粒细化效率的影响。讨论了炼油机制。 MgO不能用作初级-MG相的有效基质。可以获得Mg-Al合金的显着晶粒细化以超过2%的含量超过2%。 A1是一种不可或缺的元素,以确保Mg合金的MgO添加晶粒精制效率。最佳MgO粉末添加量和保持时间分别为约1.5%和10min。 MgO可以在Mg熔体中与Al反应,导致形成MgAl2O4颗粒。作为对比实验,已证明纯Mg和Mg-3%Al合金的晶粒细化,被占用MgAl2O4粉末粉末。基于理论计算和实验结果,由MgO粉末接种的Mg-Al合金的晶粒细化归因于新形成的MgAl2O4颗粒,其可以作为初级-MG相的有效异质核。

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