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Erosion and corrosion resistance of plasma electrolytic oxidized 6082 aluminum alloy surface at low and high temperatures

机译:等离子电解氧化6082铝合金在低温和高温下的冲蚀和耐蚀性

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This paper embodies the findings of a study on improving the surface tribology of Al alloy 6082-T6 through plasma electrolytic oxidation (PEO) process. The surface macro/microstructure and composition were investigated. Electrochemical measurements were performed at temperatures of 20 and 80°C using an inductively coupled plasma and open circuit potential tests after immersion in 3.5%NaCl solution. The erosion tests were performed with water carrying sand particles at different sand loadings (200 and 1000mg/l) and temperatures (20 and 80°C). After erosion experiments, the weight loss measurements were recorded, and the worn surfaces were assessed through SEM study and profilometry analysis. The micro-hardness of the coated layer and the substrate were measured before and after the erosion test. The formed PEO layer of 40μm thick was almost sound, uniform, well adhered to the substrate and consisted mainly of alumina phases (α-Al2O3, γ-Al2O3). The relative proportions of α-Al2O3to γ-Al2O3were 31: 79%. The PEO coating shows much better corrosion and erosion resistance and less surface damage compared to the aluminum substrate, especially at elevated temperature and high sand loading. The PEO hardness increases as the distance from the substrate increases until near the middle of the coating.
机译:本文体现了通过等离子电解氧化(PEO)工艺改善铝合金6082-T6表面摩擦学的研究成果。研究了表面宏观/微观结构和组成。浸入3.5%NaCl溶液后,使用感应耦合等离子体和开路电势测试在20和80°C的温度下进行电化学测量。腐蚀试验是在不同沙量(200和1000mg / l)和温度(20和80°C)下用载水沙颗粒进行的。经过腐蚀实验后,记录了失重测量值,并通过SEM研究和轮廓分析法评估了磨损的表面。在腐蚀试验之前和之后测量涂层和基材的显微硬度。所形成的厚度为40μm的PEO层几乎完整,均匀,良好地粘附在基材上,并且主要由氧化铝相(α-Al2O3,γ-Al2O3)组成。 α-Al2O3与γ-Al2O3的相对比例为31%:79%。与铝基材相比,PEO涂层具有更好的耐腐蚀和侵蚀性能,并且表面损伤较小,尤其是在高温和高砂载下。 PEO硬度随着与基材之间的距离的增加而增加,直到接近涂层中间为止。

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