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陈枭, 王洪涛, 纪岗昌, 白小波, 董增祥, 杨凤根. 不同尺度碳化物粉末冷喷沉积WC-17%Co涂层的组织及性能[J]. 焊接学报, 2013, (7): 38-42.
引用本文: 陈枭, 王洪涛, 纪岗昌, 白小波, 董增祥, 杨凤根. 不同尺度碳化物粉末冷喷沉积WC-17%Co涂层的组织及性能[J]. 焊接学报, 2013, (7): 38-42.
CHEN Xiao, WANG Hongtao, JI Gangchang, BAI Xiaobo, DONG Zengxiang, YANG Fenggen. Microstructure and properties of WC-17% Co coating by cold spraying deposition with carbide powder at different scales[J]. TRANSACTIONS OF THE CHINA WELDING INSTITUTION, 2013, (7): 38-42.
Citation: CHEN Xiao, WANG Hongtao, JI Gangchang, BAI Xiaobo, DONG Zengxiang, YANG Fenggen. Microstructure and properties of WC-17% Co coating by cold spraying deposition with carbide powder at different scales[J]. TRANSACTIONS OF THE CHINA WELDING INSTITUTION, 2013, (7): 38-42.

不同尺度碳化物粉末冷喷沉积WC-17%Co涂层的组织及性能

Microstructure and properties of WC-17% Co coating by cold spraying deposition with carbide powder at different scales

  • 摘要: 采用团聚烧结和机械混合工艺制备的4种纳米与微米碳化物比例的WC-17%Co粉末,运用冷喷涂进行涂层定点沉积试验,通过扫描电镜和X-射线衍射分别分析了涂层的组织结构和相结构,并测定了涂层的显微硬度和磨粒磨损失重量.结果表明,4种碳化物尺度粉末沉积涂层具有致密的组织结构,喷涂态涂层保持与原始粉末相同的相结构,涂层显微硬度随碳化物尺度在12 897~15 925 MPa范围变化,粉末中纳米碳化物与微米碳化物颗粒重量比为50∶50时,沉积涂层具有较好的磨粒磨损性能.涂层磨损表面分析表明,涂层的磨损行为表现为涂层的磨粒磨损失重量在2.67~5.53 mg范围变化.

     

    Abstract: Four kinds of WC-17%Co powders with different proportional of nano and micro carbides were fabricated by agglomerate-sintering and mechanical mixing method,and were deposited on the stainless steel substrate.The microstructure, phase composition and microhardness of coatings were investigated by means of scanning electron microscopy,X-ray diffraction and microhardness tester.Abrasive wear test was carried out on coatings and weight loss of coatings was tested.The results showed that four kinds of coatings have dense structure and WC and cobalt phases were retained in the coatings from powders.The microhardness of coatings was in 12897-15925 MPa with the change of carbide size.Deposition coating with weight ratio 50/50 of nano and micro WC particles has higher abrasive wear resistance,and weight loss of coatings was in the scope of 2.67-5.53 mg after abrasive wear test.

     

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