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镁合金微弧氧化涂层高温磨擦磨损性能
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浙江工业大学材料科学与工程学院,浙江工业大学材料科学与工程学院,浙江工业大学材料科学与工程学院

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国家自然科学基金(51165032);江西省教育厅资助(GJJ13203);江西省高等学校科技创新团队资助(00008713);党外专家博士产学研合作计划(2012-CYH-DW-XCL-002);南昌市科技支撑计划(20110515090004398)


Friction and Wear Behaviors of Micro Arc Oxidation Coatings on Magnesium Alloy at High Temperature
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College of Material Science and Engineering,Zhejiang University of Technology,College of Material Science and Engineering,Zhejiang University of Technology,College of Material Science and Engineering,Zhejiang University of Technology

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    摘要:

    在硅酸盐和磷酸盐复合电解液体系下,通过微弧氧化技术在AZ91D镁合金表面制备一层陶瓷涂层。运用XRD、SEM、激光共聚焦显微镜(LSCM)分别对涂层物相、涂层表面、截面和磨痕形貌进行观察分析。采用UMT-3高温摩擦磨损试验机研究涂层在150℃范围内的摩擦磨损性能。结果表明:涂层的平均摩擦系数随温度的变化先逐渐升高,当环境温度高于100℃时涂层平均摩擦系数开始降低。涂层磨损率远远低于镁合金基体磨损率并且涂层磨损率随温度的升高而降低,这可以说明微弧氧化涂层具有良好的耐磨损性能尤其在高温条件下耐磨损性能更好。通过分析载荷为2N作用时的磨痕微观形貌可知不同温度条件下涂层的磨损机理都主要为磨粒磨损。

    Abstract:

    A ceramic coating was formed on AZ91D magnesium alloy by micro arc oxidation technology in aqueous solution containing silicate and phosphate. The phase compositions, surface, cross-sectional and wear track morphologies of coatings were analyzed by XRD, SEM and Laser Scanning Confocal Microscope (LSCM) respectively. Using the UMT-3 High Temperature Tribometer to study the friction and wear behaviors of coatings within 150 ℃. The results showed that the coatings’ mean friction coefficient firstly increased with temperature, when ambient temperature exceed 100 ℃ it began to reduce. While the coatings’ wear rate was much lower than that of magnesium alloy substrate and it reduced as temperature went up. The results indicated that micro arc oxidation coating had excellent wear resistance particularly at high temperature. Through the analysis of grinding cracks’ micro-structure at the load of 2N, the main wear mechanism of these coatings at different temperatures was all abrasive wear.

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金杰,李欢,李晓涵.镁合金微弧氧化涂层高温磨擦磨损性能[J].稀有金属材料与工程,2017,46(5):1202~1206.[Jin Jie, Li Huan, Li Xiaohan. Friction and Wear Behaviors of Micro Arc Oxidation Coatings on Magnesium Alloy at High Temperature[J]. Rare Metal Materials and Engineering,2017,46(5):1202~1206.]
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  • 收稿日期:2015-03-10
  • 最后修改日期:2015-04-21
  • 录用日期:2015-06-11
  • 在线发布日期: 2017-09-27
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