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首页> 外文期刊>Tribology International >Microstructure and tribological characteristics of ZrO{sub}2-Y{sub}2O{sub}3 ceramic coatings deposited by laser-assisted plasma hybrid spraying
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Microstructure and tribological characteristics of ZrO{sub}2-Y{sub}2O{sub}3 ceramic coatings deposited by laser-assisted plasma hybrid spraying

机译:激光辅助等离子体混合喷涂ZrO {sub} 2-Y {sub} 2O {sub} 3陶瓷涂层的组织和摩擦学性能

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ZrO{sub}2-Y{sub}2O{sub}3 ceramic coatings were deposited on AISI 304 stainless steel by both a low-pressure plasma spraying (LPPS) and a laser-assisted plasma hybrid spraying (LPHS). Microstructure and tribological characteristics of ZrO{sub}2-Y{sub}2O{sub}3 coatings were studied using an optical microscope, a scanning electron microscope, and an SRV high-temperature friction and wear tester. The LPHS coatings exhibit distinctly reduced porosity, uniform microstructure, high hardness and highly adhesive bonding, although more microcracks and even vertical macrocracks seem to be caused in the LPHS coatings. The ZrO{sub}2 lamellae in the LPHS coatings before and after 800℃ wear test consist mainly of the metastable tetragonal (t') phase of ZrO{sub}2 together with small amount of c phase. The t' phase is very stable when it is exposed to the wear test at elevated temperatures up to 800℃ for 1 h. The friction and wear of the LPHS coatings shows a strong dependence on temperature, changing from a low to a high wear regime with the increase of temperature. At low temperatures, friction and wear of the LPHS coatings is improved by laser irradiation because of the reduced connected pores and high hardness in contrary to the LPPS coating. However, at elevated temperatures, the friction and wear of the LPHS coatings is not reduced by laser irradiation. At room temperature, mild scratching and plastic deformation of the LPHS coatings are the main failure mechanism. However, surface fatigue, microcrack propagation, and localized spallation featured by intersplat fracture, crumbling and pulling-out of ZrO{sub}2 splats become more dominated at elevated temperatures.
机译:通过低压等离子体喷涂(LPPS)和激光辅助等离子体混合喷涂(LPHS)将ZrO {sub} 2-Y {sub} 2O {sub} 3陶瓷涂层沉积在AISI 304不锈钢上。使用光学显微镜,扫描电子显微镜和SRV高温摩擦磨损测试仪研究了ZrO {sub} 2-Y {sub} 2O {sub} 3涂层的组织和摩擦学特性。 LPHS涂层显示出明显降低的孔隙率,均匀的微观结构,高硬度和高度粘合性,尽管似乎在LPHS涂层中引起了更多的微裂纹甚至垂直的大裂纹。 LPHS涂层在800℃磨损试验前后的ZrO {sub} 2薄片主要由ZrO {sub} 2的亚稳四方相(t')和少量c相组成。当t'相在最高800℃的高温下进行1小时的磨损测试时,它非常稳定。 LPHS涂层的摩擦和磨损表现出对温度的强烈依赖性,随着温度的升高,磨损程度从低到高变化。在低温下,与LPPS涂层相反,由于减少了连接孔并具有较高的硬度,因此通过激光辐照改善了LPHS涂层的摩擦和磨损。但是,在高温下,激光照射不会降低LPHS涂层的摩擦和磨损。在室温下,LPHS涂层的轻微刮擦和塑性变形是主要的失效机理。但是,在高温下,以板间断裂,ZrO {sub} 2板的破碎和拔出为特征的表面疲劳,微裂纹扩展和局部剥落变得更加明显。

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