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HVOF喷涂纳米WC-12Co涂层的性能研究 被引量:31

Performance Study of Nano Structured WC–Co Coatings Sprayed by HVOF
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摘要 为促进HVOF喷涂纳米WC–12Co涂层在工业上的应用,采用HVOF喷涂法分别制备了纳米和微米结构WC–12Co涂层。研究了涂层的结合强度,测试了两种涂层的显微硬度及耐冲蚀磨损性能,并利用扫描电镜对喷涂粉末、涂层显微组织、冲蚀表面形貌进行了分析。研究结果表明:两种涂层中纳米涂层显微硬度是普通涂层的1.5倍,最高达到1610HV,纳米涂层中WC颗粒的分布更均匀,冲蚀率是微米级涂层的1/2左右,性能更优越。 Nanostructured and conventional WC-I 2Co coatings were prepared by HVOF spraying. The properties of adhesion, hardness and erosion resistance of two coatings were investigated. The characterizations of spraying powders, microstructure and surface morphology of coatings were analyzed by SEM. The results indicated that nanostructured WC 12Co coating showed better properties not only in density and hardness but also in distribution of WC and resistance of erosion than that of conventional. Micohardness reached to 1610 HV, aboutl.5 times that of conventional coating. Erosion rate reduced about half of the rate of conventional coating.
出处 《中国表面工程》 EI CAS CSCD 2005年第6期25-29,共5页 China Surface Engineering
基金 国家自然基金项目资助(项目批准号:50479016)
关键词 HVOF 纳米结构涂层 WC-12CO HVOF Nanostructured coatings WC-12Co
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参考文献5

  • 1Morks M F, Shoeib M A. Comparative study of Nanostructured and Conventional WC-Co Coatings [C]. Japan. International Thermal Spray Conference &Exposition Proceedings,2004(Ⅰ):731-732.
  • 2师昌绪,徐滨士,张平,刘世参.21世纪表面工程的发展趋势[J].中国表面工程,2001,14(1):2-7. 被引量:82
  • 3Yang Q Q, Senda T, Ohmori A. Effect of carbide grain size on microstructure and sliding wear behavior of HVOF-sprayed WC-12Co coating [J]. Wear, 2003,254: 23-36.
  • 4Leon L Shaw, Daniel Goberman, Ruiming Ren. Thedependency of microstructure and properties of nanostructured coatings on plasma srpray conditions[J]. Sruface and Coating Technology ,2001 (130): 1-8.
  • 5Bai-lin Zha, Han-gong Wang. Nano structured WC-12Co coatings sprayed by HVO/AF [C]. Japan. International Thermal Spray Conference &Exposition Proceedings,2004 (Ⅲ):907-909.

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