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首页> 外文期刊>Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing >Distribution of solute elements in AZ61 magnesium alloys under electromagnetic fields
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Distribution of solute elements in AZ61 magnesium alloys under electromagnetic fields

机译:电磁场下AZ61镁合金中溶质元素的分布

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摘要

The solidified microstructures of AZ61 magnesium alloy under different electromagnetic and electric fields were studied. Optical microstructure revealed that when the alloy solidified under single magnetostatic field, the constituent phase consisted of magnesium matrix and continuous cellular Mg-Al-Zn intermetallic compounds; when the alloy solidified under magnetostatic field and alternating current, the constituent phase consisted of magnesium matrix and spotted and cellular Mg-Al-Zn intermetallic compounds; when the alloy solidified under magnetostatic field and direct current, the continuous cellular structure disappeared and a few discontinuous flaky Mg-Al-Zn intermetallic compounds distributed in the magnesium matrix. As compared with the solute content under single magnetostatic field, the solute content in grain interior increased and that in grain boundaries decreased under magnetostatic field and current. Hence, the AZ61 magnesium alloy was strengthened under magnetostatic field and current.
机译:研究了AZ61镁合金在不同电磁和电场作用下的凝固组织。光学显微组织表明,当合金在单一静磁场下凝固时,其组成相由镁基体和连续的蜂窝状Mg-Al-Zn金属间化合物组成。当合金在静磁场和交流电作用下凝固时,其组成相由镁基体和点状多孔Mg-Al-Zn金属间化合物组成。当合金在静磁场和直流电作用下凝固时,连续的孔结构消失,镁基体中分布有一些不连续的片状Mg-Al-Zn金属间化合物。与单静磁场下的溶质含量相比,在静磁场和电流作用下,晶粒内部的溶质含量增加,晶界的溶质含量减少。因此,AZ61镁合金在静磁场和电流作用下得到了强化。

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