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Wear and Galvanic Corrosion Protection of Mg Alloy via Plasma Electrolytic Oxidation Process for Mg Engine Application

机译:Mg Alloy对Mg电解氧化工艺的磨损和电镀腐蚀保护MG发动机应用

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Sliding wear of magnesium (Mg) engine cylinder bore surfaces and corrosion of Mg engine coolant channels are the two unsolved critical issues that automakers have to deal with in development of magnesium-intensive engines. In this paper, Plasma Electrolytic Oxidation (PEO) process was used to produce oxide coatings on AJ62 Mg alloy to provide wear and corrosion protection. In order to optimize the PEO process, orthogonal experiments were conducted to investigate the effect of PEO process parameters on the wear properties of PEO coatings. The PEO coatings showed a much better wear resistance, as well as a smaller friction coefficient, than the AJ62 substrate. The galvanic corrosion property of AJ62 Mg coupled with stainless steel and aluminum (Al) was investigated via immersion corrosion test in an engine coolant. Applying PEO coating on Mg can effectively prevent the galvanic corrosion attack to Mg. Due to the small thickness of the PEO coating, the thermal conductivity of Mg would not be appreciably affected. The test results showed a great promising in wear and corrosion protection of Mg for Mg engine application.
机译:滑动的镁(Mg)发动机气缸孔表面和镁发动机冷却液通道的腐蚀磨损是两个尚未解决的关键问题是汽车制造商不得不面对的镁密集型发动机的发展。在本文中,等离子体电解氧化(PEO)方法用于在AJ62 Mg合金产生氧化膜,以提供磨损和腐蚀保护。为了优化该PEO过程中,进行了正交实验,调查的PEO工艺参数对PEO涂层的磨损性能的效果。所述PEO涂料表现出更好的耐磨损性,以及更小的摩擦系数,比AJ62衬底。 AJ62 MG的电偶腐蚀属性加上不锈钢和铝(Al)中的发动机冷却剂经由浸入腐蚀试验研究。对镁应用PEO涂层能有效防止电偶腐蚀攻击镁。由于PEO涂层的小的厚度,镁的热导率不会明显影响。测试结果显示有很大的镁发动机应用镁的磨损和腐蚀防护看好。

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