期刊文献+

纳米ZrO_2热障涂层热震性能研究 被引量:10

Thermal Shock Resistance of Plasma Sprayed Nanostructured ZrO_2 Thermal Barrier Coating
在线阅读 下载PDF
导出
摘要 为了研究纳米热障涂层的热震性能,采用等离子喷涂工艺制备了纳米Y2O3-ZrO2(YSZ)热障涂层,并测试了涂层的热震性能。借助扫描电镜和X射线衍射等手段分析了涂层的物相构成和组织结构。结果表明,涂层中保留未完全熔融的小尺寸颗粒,且存在大量的孔径<1μm的微孔,该结构对提高涂层的热震性能极为有利。纳米涂层抗热震性能显著优于常规热障涂层,从室温至1000℃,经800次热循环,涂层无明显的脱落现象。 Yttria stabilized nanostructured zirconia (YSZ) thermal barrier coating was produced using atmospheric plasma spraying. The microstructure, grain size, and phase composition of the resulting coating were analyzed by means of scanning electron microscopy and X-ray diffraction. The thermal shock resistance was evaluated. It was found that there existed a great deal of un-molten particulates of an average size 51.8 nm and many tiny pores of a diameter below 1 μm in the as-prepared YSZ thermal barrier coating. At the same time, the coating was composed of cubic and tetragonal phases of zirconia and had little penetration cracks, which were beneficial to improving the thermal shock resistance of the coating. Namely, no signs of peeling-off were observed in the YSZ thermal barrier coating, after it was heated and held there for 10 min and cooled in air for 5 min within room temperature to 1 000 ℃ for 800 thermal cycles.
出处 《材料保护》 CAS CSCD 北大核心 2006年第7期9-11,共3页 Materials Protection
关键词 Y2O3-ZrO2纳米热障涂层 等离子喷涂 热震性能 yttria stabilized nanostructured zirconia thermal barrier coating plasma spraying thermal shock resistance
  • 相关文献

参考文献6

二级参考文献23

  • 1杨剑,滕凤恩.纳米材料综述[J].材料导报,1997,11(2):6-10. 被引量:74
  • 2李剑锋.博士学位论文[M].上海:中国科学院上海硅酸盐研究所,1999..
  • 3[2]G E Kim, V Provenzano, E J Lavernia. Vacuum Plasma Spray Applications of nanostructure Composite Coatings[A]. Thermal Spraying Processing of Nanoscale Materials[C]. Quebec City,1999.
  • 4[3]Maher Boulos and Francois Gizhofer. Supersonic Induction Plasma Spraying of High Density Nanostructure Ceramics[A]. Thermal Spraying Processing of Nanoscale Materials[C]. Quebec City,1999.
  • 5[4]M L Lau, R Schweinfest, E J Lavernai etc. Microstructure evolution of nanocrystalline Cu-Al particles during HVOF thermal spraying[A]. Thermal Spraying Processing of Nanoscale Materials[C]. Quebec City,1999.
  • 6[5]A H Dent, S Sampath, H Herman etc. The effect of powder processing method on the physical properties of nanocomposite WC/Co thermally sprayed coatings[A]. Thermal Spraying Processing of Nanoscale Materials[C]. Quebec City,1999.
  • 7[6]T D Xiao, S Jiang, Y Wang etc. Thermal spray of nanostructured Alumina/Titania feedstock for improved properties[A]. Thermal Spraying Processing of Nanoscale Materials[C]. Quebec City,1999.
  • 8[7]D G Atteridge, R Davis, M Scholl etc. High-energy plasma spray coating using micrometer- and nanometer-scale Tungsten Carbide-Cobalt powder[A]. Thermal Spraying Processing of Nanoscale Materials[C]. Quebec City,1999.
  • 9[8]D G Atteridge, R Davis, M Becker etc. Twin wire arc and high-energy plasma spray coating using nanometer scale WC/Co in powder-filled cored wire. Thermal Spraying Processing of Nanoscale Materials. Quebec City,1999.
  • 10[9]M Gell and E Jordan. Development and Production Implementation of nanostructured Coatings[A]. Thermal Spraying Processing of Nanoscale Materials[C]. Quebec City,1999.

共引文献140

同被引文献116

引证文献10

二级引证文献56

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