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TC11表面缆式焊丝-粉末等离子熔覆技术制备AlCu2(NiCr)2Ti-(WC)x高熵合金复合涂层的显微组织和磨损性能(英文)

Microstructure and Wear Properties of AlCu2(NiCr)2Ti-(WC)x HEA Composite Coatings on TC11 via Coincident CWW-Powder Plasma Cladding

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【作者】 蘧星辰王小荣刘晓琴刘潇潇孟倩何鹏

【Author】 Qu Xingchen;Wang Xiaorong;Liu Xiaoqin;Liu Xiaoxiao;Meng Qian;He Peng;School of Mechanical and Electrical Engineering,Lanzhou Jiaotong University;School of Materials Science and Engineering,Lanzhou Jiaotong University;State Key Laboratory of Advanced Welding and Jointing,Harbin Institute of Technology;

【通讯作者】 王小荣;

【机构】 兰州交通大学机电工程学院兰州交通大学材料科学与工程学院哈尔滨工业大学先进焊接与连接国家重点实验室

【摘要】 采用AlCu2(NiCr)2Ti缆式焊丝(CWW)和碳化钨(WC)粉末混合模式,通过等离子熔覆技术制备了高熵合金复合涂层AlCu2(NiCr)2Ti-(WC)x(x=0,25,50,75 r/min)。研究了WC送粉速度对所制备涂层的显微组织、硬度和磨损性能的影响。结果表明,涂层由体心立方主相和面心立方次相组成,WC的加入形成了碳化物增强相。与基体相比,涂层的硬度和耐磨性能显著提高。当WC送粉速度为50 r/min时,涂层的耐磨性能最佳,体积磨损率最小,为8.5869×10-6 mm3·N-1·m-1,极大地改善了TC11表面的磨损性能。CWW和WC粉末在等离子熔覆中的协同输送为制备耐磨性增强的高熵合金复合涂层提供了一种可行的技术支持。

【Abstract】 The high-entropy alloy composite coatings AlCu2Ti(NiCr)2-(WC)x(x denotes powder feeding speeds, including 0, 25, 50, and 75 r/min) were prepared by plasma cladding using a hybrid mode of AlCu2(NiCr)2Ti cable-type welding wire(CWW) and tungsten carbide(WC) powder. The effect of WC powder feeding speed on the microstructure, hardness, and wear properties of the prepared coatings was investigated. The results show that the coatings consist of body-centered cubic main phases and face-centered cubic secondary phases, with carbide reinforcement phases formed due to the addition of WC. The hardness and wear resistance of the coatings are significantly improved compared to the TC11 substrate. When WC powder feeding speed is set at 50 r/min, the coating exhibits optimal wear resistance, with a minimum volume wear rate of 8.5869×10-6 mm3·N-1·m-1, greatly improving the wear properties of TC11 surface. The coincident CWW-powder plasma cladding provides a viable method for the preparation of highentropy alloy composite coatings with enhanced wear resistance.

【基金】 National Natural Science Foundation of China (51764038);Gansu Science and Technology Planning Project (2022JR5RA314, 22YF7WA151, 22YF7GA138, 23CXGA0151);Gansu Provincial Department of Education:Industrial Support Plan Project (2022CYZC-31);Gansu Provincial Association of Science and Technology Innovation Driving Force Project (GXH20230817-10)
  • 【文献出处】 稀有金属材料与工程 ,Rare Metal Materials and Engineering , 编辑部邮箱 ,2025年08期
  • 【分类号】TG174.4
  • 【下载频次】33
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