期刊文献+

Microstructures and erosion resistance of plasma-sprayed WCp/NiCrBSi composite coatings 被引量:2

Microstructures and erosion resistance of plasma-sprayed WCp/NiCrBSi composite coatings
在线阅读 下载PDF
导出
摘要 WCp/NiCrBSi composite coatings have been deposited by plasma spraying with the mixed powders of WC-12Ni and NiCrBSi. The coatings consist mainly of WC, γ-Ni, Ni3B, CrB, Cr2B, M7C3, M23C6 and W2C phases. The W2C content increases with increasing WC mass fraction in the powders. The porosity and microhardness of the coatings are related to the coating WC content. The excessive WC results in decreasing the microhardness due to increasing the porosity. The WCp/ NiCrBSi coating with 35 % WC mass fraction powder has more excellent erosion resistance. With an increase of impact angles from 15° to 90° the erosion rate of the coating increases, the erosion rate at 15° impact angle being approximately two times lower than that at 90° impact angle. Based on the wear morphology of the coatings at different impact angles, the wear mechanisms were discussed. WCp/NiCrBSi composite coatings have been deposited by plasma spraying with the mixed powders of WC-12Ni and NiCrBSi. The coatings consist mainly of WC, γ-Ni, Ni3B, CrB, Cr2B, M7C3, M23C6 and W2C phases. The W2C content increases with increasing WC mass fraction in the powders. The porosity and microhardness of the coatings are related to the coating WC content. The excessive WC results in decreasing the microhardness due to increasing the porosity. The WCp/ NiCrBSi coating with 35 % WC mass fraction powder has more excellent erosion resistance. With an increase of impact angles from 15° to 90° the erosion rate of the coating increases, the erosion rate at 15° impact angle being approximately two times lower than that at 90° impact angle. Based on the wear morphology of the coatings at different impact angles, the wear mechanisms were discussed.
出处 《China Welding》 EI CAS 2010年第2期1-5,共5页 中国焊接(英文版)
关键词 plasma spraying composite coating MICROSTRUCTURE erosion resistance plasma spraying, composite coating, microstructure, erosion resistance
  • 相关文献

参考文献11

  • 1Stewart D A,Shipway P H,McCartney D G.M icrostructural evolution in thermally sprayed WC-Co coatings:comparison between nanocomposite and conventional starting powders.Acta Materialia,2000,48(7):1593-1604.
  • 2Lekatou A,Zois D,Grimanelis D.Corrosion properties of HVOF cermet coatings with bond coats in an aqueous chloride environment.Thin Solid Films,2008,516(16):5700-5705.
  • 3Sahraoui T,Guessasma S,Jeridane M A.HVOF sprayed WC-Co coatings:microstructure,mechanical properties and friction moment prediction.Materials & Design,2010,31 (3):1431-1437.
  • 4Nicoll A R.Self-fluxing coatings for stationary gas turbines.Thin Solid Films,1982,95(3):285-295.
  • 5Han Y W,Sun D Q,Gu X Y,et al.Effects of plasma spray parameters on microstructures and erosion resistance of Ni based coatings.Journal of Jilin University (Engineering and Technology Edition),2010,40(2):461-466.
  • 6Chivavibul P,Watanabe M,Kuroda S,et al.Effect of powder characteristics on properties of warm-sprayed WC-Co coatings.Journal of Thermal Spray Technology,2010,19(12):81-88.
  • 7Chivavibul P,Watanabe M,Kuroda S,et al.Effects of carbide size and Co content on the microstructure and mechanical properties of HVOF-sprayed WC-Co coatings.Surface & Coatings Technology,2007,202(3):509-521.
  • 8Fauchais P,Montavon G,Bertrand G.From powders to thermally sprayed coatings.Journal of Thermal Spray Technology,2010,19(1-2):56-80.
  • 9Morks M F,Gao Y,Fahim N F.Microstructure and hardness properties of cermet coating sprayed by low power plasma.Materials Letters,2006,60(8):1049-1053.
  • 10Tu J P,Liu M S,Mao Z Y,Erosion resistance of Ni-WC self-fluxing alloy coating at high temperature.Wear,1997,209(1-2):43-48.

同被引文献8

引证文献2

二级引证文献8

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部