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Protective diffusion coatings on magnesium alloys: A review of recent developments

机译:镁合金上的保护性扩散涂层:最新进展综述

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摘要

This study reviews the recent progress in preparation and properties of diffusion coatings on magnesium alloys. Surface alloying of magnesium alloys by diffusion coatings has been considered as an effective approach to providing the protection of magnesium alloys because of the following distinct potential advantages. Firstly, the diffusion coating has high adhesion strength since there is a strong metallurgical bond between the coating and the substrate. Moreover, the good electrical conductivity of the coated magnesium alloy can be maintained and thus its electromagnetic shielding property will not be lost. In addition, the alloyed layer comprises of intermetallic compounds, which can improved both the corrosion resistance and the mechanical properties. Therefore, various methods have been developed in an effort to fabricate diffusion coatings on magnesium alloys. This review begins with the basic principles and challenges of fabricating diffusion coatings on magnesium alloys. The types and principles of coating methods are next described. The processes of preparing diffusion coatings can be categorized into two groups: (i) one-step processes including pack cementation, vacuum aluminizing, chemical vapor deposition and molten salt bath; (ii) multi-step processes such as surface mechanical attrition treatment plus pack cementation and post heat treatment of the metallic coatings. Based on understanding the principle of each coating process, the varied microstructures depending on the processing methods and parameters, are highlighted. The corrosion and mechanical properties of the coatings are also discussed on the basis of literature data. In particular, the corrosion property especial the passivation behavior of the diffusion coating is strongly influenced by the processing parameters and the subsequent coating microstructure. Through the experimental results obtained by various researchers, the coating process-microstructure-property relationships are discussed. This review closes with an outlook on areas that should be addressed in the future work.
机译:这项研究回顾了镁合金扩散涂层的制备和性能方面的最新进展。由于以下明显的潜在优点,通过扩散涂层对镁合金进行表面合金化已被认为是提供镁合金保护的有效方法。首先,由于在涂层和基底之间存在牢固的冶金结合,因此扩散涂层具有高的粘合强度。而且,可以保持涂覆的镁合金的良好电导率,因此不会损失其电磁屏蔽性能。另外,合金层包括金属间化合物,其可以改善耐腐蚀性和机械性能。因此,已经开发出各种方法来努力在镁合金上制造扩散涂层。这篇综述从在镁合金上制造扩散涂层的基本原理和挑战开始。接下来描述涂覆方法的类型和原理。制备扩散涂层的过程可分为两类:(i)一步法,包括填充胶结,真空渗铝,化学气相沉积和熔盐浴; (ii)多步骤工艺,例如表面机械磨耗处理,包装胶结和金属涂层的后热处理。基于对每种涂层工艺原理的理解,根据加工方法和参数,对不同的微观结构进行了强调。还根据文献数据讨论了涂层的腐蚀和机械性能。特别地,扩散性能的腐蚀性能,特别是钝化性能,受工艺参数和随后的涂层微观结构的强烈影响。通过各种研究人员获得的实验结果,讨论了涂层工艺-微观结构-性能的关系。此次审查以对未来工作中应解决的领域的展望结束。

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