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    惠俊杰, 贾均红, 白甘雨, 岳瑞芳, 张心怡, 李金鑫. (MgCoNiCuZn)O高熵氧化物陶瓷涂层的制备及性能[J]. 机械工程材料, 2023, 47(5): 41-46,54. DOI: 10.11973/jxgccl202305007
    引用本文: 惠俊杰, 贾均红, 白甘雨, 岳瑞芳, 张心怡, 李金鑫. (MgCoNiCuZn)O高熵氧化物陶瓷涂层的制备及性能[J]. 机械工程材料, 2023, 47(5): 41-46,54. DOI: 10.11973/jxgccl202305007
    HUI Junjie, JIA Junhong, BAI Ganyu, YUE Ruifang, ZHANG Xinyi, LI Jinxin. Preparation and Properties of (MgCoNiCuZn)O High Entropy Oxide Ceramic Coating[J]. Materials and Mechanical Engineering, 2023, 47(5): 41-46,54. DOI: 10.11973/jxgccl202305007
    Citation: HUI Junjie, JIA Junhong, BAI Ganyu, YUE Ruifang, ZHANG Xinyi, LI Jinxin. Preparation and Properties of (MgCoNiCuZn)O High Entropy Oxide Ceramic Coating[J]. Materials and Mechanical Engineering, 2023, 47(5): 41-46,54. DOI: 10.11973/jxgccl202305007

    (MgCoNiCuZn)O高熵氧化物陶瓷涂层的制备及性能

    Preparation and Properties of (MgCoNiCuZn)O High Entropy Oxide Ceramic Coating

    • 摘要: 通过高温固相反应烧结法在不同烧结温度(700~1 000 ℃)下制备(MgCoNiCuZn)O高熵氧化物陶瓷粉体,并采用大气等离子喷涂技术在Inconel 718合金基体表面制备了陶瓷涂层,研究了陶瓷涂层的微观结构和性能。结果表明:在900,1 000 ℃烧结温度下均合成了具有单一岩盐相结构的(MgCoNiCuZn)O高熵氧化物陶瓷粉体;用这2种温度烧结陶瓷粉体制备的陶瓷涂层的硬度为5.42~5.94 GPa,结合强度为45.4~48.5 MPa,用1 000 ℃烧结粉体制备的陶瓷涂层的结合强度和硬度较高。陶瓷涂层与氧化铝球对磨时的摩擦因数为0.59~0.69,磨损率为2.59×10-5~4.13×10-5 mm3·N-1·m-1,主要磨损机理为磨粒磨损和疲劳剥落,用1 000 ℃烧结粉体制备的陶瓷涂层的摩擦因数与磨损率较低,磨损表面犁沟细而浅,剥落坑小而少。

       

      Abstract: High entropy oxide (MgCoNiCuZn)O ceramic powders were prepared by high temperature solid state reaction sintering at different temperatures (700-1 000 ℃). The ceramic coating was prepared on the surface of Inconel 718 alloy substrate by atmospheric plasma spraying technique, and the microstructure and properties of ceramic coatings were studied. The results show that (MgCoNiCuZn)O high entropy oxide ceramic powders with a single rock salt phase structure were synthesized at sintering temperatures of 900, 1 000 ℃. The ceramic coatings prepared with the ceraimic powders sintered at the two temperatures had hardness of 5.42-5.94 GPa and bonding strength of 45.4-48.5 MPa. The bonding strength and hardness of the ceramic coating prepared with powders sintered at 1 000 ℃ were relatively high. The friction coefficient of ceramic coating abrasing against alumina balls was 0.59-0.69, and the wear rate was 2.59×10-5-4.13×10-5 mm3·N-1·m-1; the main wear mechanism was abrasive wear and fatigue spalling. The friction coefficient and wear rate of the ceramic coating prepared with powders sintered at 1 000 ℃ were relatively low, and the worn surface had thin and shallow ploughing and small and few spalling pits.

       

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