ISSN   1004-0595

CN  62-1224/O4

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袁晓静, 查柏林, 陈小虎, 阳能军, 姚春江. 等离子沉积Ni-WSe2-BaF2·CaF2-Y-Ag-hBN涂层的抗Al熔滴粘蚀特性[J]. 摩擦学学报, 2017, 37(1): 99-106. DOI: 10.16078/j.tribology.2017.01.013
引用本文: 袁晓静, 查柏林, 陈小虎, 阳能军, 姚春江. 等离子沉积Ni-WSe2-BaF2·CaF2-Y-Ag-hBN涂层的抗Al熔滴粘蚀特性[J]. 摩擦学学报, 2017, 37(1): 99-106. DOI: 10.16078/j.tribology.2017.01.013
YUAN Xiaojing, ZHA Bailin, CHEN Xiaohu, YANG Nengjun, YAO Chunjiang. Anti-Adhesion Performance of Ni-Ni-WSe2-BaF2·CaF2-Y-Ag-hBN Solid Lubricant Coatings Prepared by Atmospheric Plasma Spray[J]. TRIBOLOGY, 2017, 37(1): 99-106. DOI: 10.16078/j.tribology.2017.01.013
Citation: YUAN Xiaojing, ZHA Bailin, CHEN Xiaohu, YANG Nengjun, YAO Chunjiang. Anti-Adhesion Performance of Ni-Ni-WSe2-BaF2·CaF2-Y-Ag-hBN Solid Lubricant Coatings Prepared by Atmospheric Plasma Spray[J]. TRIBOLOGY, 2017, 37(1): 99-106. DOI: 10.16078/j.tribology.2017.01.013

等离子沉积Ni-WSe2-BaF2·CaF2-Y-Ag-hBN涂层的抗Al熔滴粘蚀特性

Anti-Adhesion Performance of Ni-Ni-WSe2-BaF2·CaF2-Y-Ag-hBN Solid Lubricant Coatings Prepared by Atmospheric Plasma Spray

  • 摘要: 本文作者制备了等离子沉积Ni-WSe2-BaF2·CaF2-Y-Ag-hBN高温固体自润滑涂层, 研究了不同角度金属熔滴Al对该涂层试样表面的粘蚀能力以及在不同温度下的摩擦系数. 研究表明: 等离子沉积Ni-WSe2-BaF2·CaF2-Y-Ag-hBN高温固体自润滑涂层在宽温域(30~800 ℃)的摩擦系数达到0.086~0.299. 金属熔滴Al对涂层的粘蚀速度随沉积角度的增加而增加, 90°时金属熔滴在涂层与基体表面沉积率最大, 此时钢基体的平均沉积率达176.22 mg/(cm2·s), 含hBN的固体自润滑涂层的沉积率为58 mg/(cm2·s). 金属Ni粘蚀物抛磨剥落速率显示, hBN的存在有效降低了金属Al熔滴在涂层表面的粘蚀能力.

     

    Abstract: The micro-structures and anti-adhesion characteristics under different angles of molten metal droplets (Al) were studied for the high temperature self-lubricating Ni-Ni-WSe2-BaF2·CaF2-Y-Ag-hBN coatings prepared by plasma spray. The results show that the friction coefficients of self-lubricant coatings were between 0.086 and 0.299 at 30~800 ℃. The viscosity corrosion rate of molten metal drops on the coating increased with increase of the deposition angle. At 90°, the average deposition rate of the metal droplets (Al) on the coating and the substrate surface reached the highest values, i.e. 176.22 mg/(cm2·s) for the steel substrate. The average deposition rate of self-lubricating coating containing hBN was as low as 58 mg/(cm2·s). The hBN effectively reduced the adhesion of Al drops to the coating as indicated by the rate of the polishing and stripping.

     

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