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Influence of Micro-Arc Oxidation Coatings on Stress Corrosion of AlMg6 Alloy

机译:微弧氧化膜层对AlMg6合金应力腐蚀的影响

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摘要

This paper shows results of a study on the corrosion behavior of micro-arc oxidation (MAO) coatings sampled from the AlMg6 alloy. The alloy was simultaneously subjected to a corrosive environment and static tensile stress. For comparative purposes, the tests were run for both coated samples and samples without coatings. The research was conducted at a properly prepared stand; the samples were placed in a glass container filled with 3.5% NaCl aqueous solution and stretched. Two levels of tensile stress were accepted for the samples: = 0.8 = , and the tests were run for two time intervals: = 480 h and = 1000 h. Prolonged stress corrosion tests (lasting up to 1000 h) showed that the samples covered with ceramic coatings demonstrated significantly higher corrosion resistance than the samples without the coatings. Protective properties of the coating could be explained by its structure. Surface pores were insignificant, and their depth was very limited. The porosity level of the main coating layer was 1%. Such a structure of coating and its phase composition provided high protective properties.
机译:本文显示了对从AlMg6合金中取样的微弧氧化(MAO)涂层的腐蚀行为进行研究的结果。合金同时经受腐蚀环境和静态拉伸应力。为了进行比较,对涂层样品和无涂层样品都进行了测试。该研究在适当准备的展台上进行;将样品放置在装有3.5%NaCl水溶液的玻璃容器中并拉伸。样品接受两种水平的拉应力:= 0.8 =,并且测试以两个时间间隔运行:= 480 h和= 1000 h。长时间的应力腐蚀测试(持续长达1000小时)表明,覆盖有陶瓷涂层的样品比没有涂层的样品具有更高的耐腐蚀性。涂层的保护性能可以通过其结构来解释。表面孔微不足道,并且深度非常有限。主涂层的孔隙度为1%。涂层的这种结构及其相组成提供了高保护性能。

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