首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Kinetics and mechanism of multilayer Mg-Al intermetallic compound coating formation of magnesium alloy by AlCl_3-NaCl molten salt bath treatment
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Kinetics and mechanism of multilayer Mg-Al intermetallic compound coating formation of magnesium alloy by AlCl_3-NaCl molten salt bath treatment

机译:AlCl_3-NaCl熔盐浴处理形成镁合金多层Mg-Al金属间化合物涂层的动力学和机理

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摘要

The interaction between the Mg substrate and AlCl_3-NaCl molten salt at 573-673 K was investigated. The interaction resulted in the formation of a multilayered structure, consisting of δ (Mg), α (Al) solid solution and Al_(12)Mg_(17), Al_(0.58)Mg_(0.42) , Al_3Mg_2 Mg-Al intermetallic compound layers. The multilayer coating was found to grow by a parabolic law with apparent activation energy of about 46 ± 2 kj/mol for diffusion process. Then, an approach to study the interdiffusion coefficient of each phase layer, the phase growth and the interface displacement based on the solutions of the diffusion equations is presented. A qualitative model describing the formation of such a multilayered structure in the Mg/molten salt system is exhibited.
机译:研究了Mg基质与AlCl_3-NaCl熔融盐在573-673 K之间的相互作用。相互作用导致形成多层结构,该多层结构由δ(Mg),α(Al)固溶体和Al_(12)Mg_(17),Al_(0.58)Mg_(0.42),Al_3Mg_2 Mg-Al金属间化合物层。发现该多层涂层通过抛物线定律生长,具有约46±2 kj / mol的表观活化能用于扩散过程。然后,提出了一种基于扩散方程解研究各相层互扩散系数,相增长和界面位移的方法。展示了描述镁/熔融盐体系中这种多层结构形成的定性模型。

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