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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Thermodynamics and Kinetics to Alloying Addition on In-Situ AIN/Mg Composites Synthesis via Displacement Reactions in Liquid Mg Melt
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Thermodynamics and Kinetics to Alloying Addition on In-Situ AIN/Mg Composites Synthesis via Displacement Reactions in Liquid Mg Melt

机译:液态镁熔体中置换反应原位合成AIN / Mg复合材料合金化的热力学和动力学

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摘要

Based on the Wilson equation, extended Miedema model, and hard sphere theory, new models are developed theoretically only using the quantities of the pure component and are applied to investigate the thermodynamical and kinetic effect of alloying additions on in-situ AlN formation via displacement reaction in Mg-Al alloy melt. The results show that the alloying additions such as Si, Zn, and Cu can promote the formation of AlN in Mg-Al melt both in thermodynamics and kinetics. Meanwhile, other elements, including Mn, Nd, Ce, Ni, and La, must be matched properly in order to produce the desired reinforcement AlN in liquid Mg-Al melt.
机译:基于Wilson方程,扩展的Miedema模型和硬球理论,理论上仅使用纯组分的量开发了新模型,并将其用于研究合金化添加剂通过置换反应对原位AlN形成的热力学和动力学效应在镁铝合金熔体中。结果表明,Si,Zn和Cu等合金添加物可在热力学和动力学方面促进Mg-Al熔体中AlN的形成。同时,必须适当地匹配其他元素,包括Mn,Nd,Ce,Ni和La,以便在液态Mg-Al熔体中产生所需的增强AlN。

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