微弧氧化
材料科学
镁合金
冶金
涂层
镁
合金
复合材料
作者
Xuejie Yue,Kaicheng Xu,Shuyi Wang,Hengyan Liu,Shiyue Guo,Rusheng Zhao,Gaopeng Xu,Hao Wang,Xuezheng Yue
出处
期刊:Materials
[MDPI AG]
日期:2024-10-12
卷期号:17 (20): 4988-4988
摘要
In this study, we utilized Selective Laser Melting (SLM) technology to fabricate a magnesium alloy, and subsequently subject it to micro-arc oxidation treatment. We analyzed and compared the microstructure, elemental distribution, wetting angle, and corrosion resistance of the SLM magnesium alloy both before and after the micro-arc oxidation process. The findings indicate that the SLM magnesium alloy exhibits surface porosity defects ranging from 2% to 3.2%, which significantly influence the morphology and functionality of the resulting film layer formed during the micro-arc oxidation process. These defects manifest as pores on the surface, leading to an uneven distribution of micropores with varying sizes across the layer. The surface roughness of the 3D-printed magnesium alloy exhibits a high roughness value of 180 nanometers. The phosphorus (P) content is lower within the film layer compared to the surface, suggesting that the Mg
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