Microstructure and High PV Wear Behavior of Novel Amorphous Al 2 O 3 -YAG Ceramic Coating Fabricated by Atmospheric Plasma Spraying

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Abstract

Abstract: The reliability and lifetime of mechanical systems often depend on their capacity to resist to friction and wear under high PV values (P contact pressure; V friction velocity). This study deals with plasma-sprayed amorphous Al 2 O 3 -YAG coatings that could be used under such conditions. Their phase transformation, microstructure stability and high PV wear behavior were investigated. The sprayable Al 2 O 3 /Y 2 O 3 feedstock was obtained by spray-drying nano-sized Al 2 O 3 and Y 2 O 3 powders. In order to elucidate the effect of the original powder particle size on phase composition and anti-wear property of the coatings, micro-sized Al 2 O 3 and Y 2 O 3 powders were also utilized to produce Al 2 O 3 -Y 2 O 3 coating. Simultaneously, Al 2 O 3 coating was also deposited for performance comparison. The combination of coating microstructure analysis, solidification theory of deep eutectic system and practical plasma spraying conditions clarified the formation mechanism of amorphous Al 2 O 3 -YAG coating. Furthermore, amorphous Al 2 O 3 -YAG coating showed better wear-resistant performance than crystalline Al 2 O 3 and Al 2 O 3 -Y 2 O 3 coatings under severe conditions with high PV values, which indicate excellent engineering application potential of the former coating. The relationships between microstructure characteristics and high PV wear behavior of amorphous Al 2 O 3 -YAG coating were established, which contribute to deeply understand corresponding friction and wear mechanisms. Graphical Abstract: The rapid solidification temperature (Te) in plasma spraying process is rather lower than the glass transition temperature (Tg) due to the cooling effects in the coating deposition. Amorphous phase is dominant in as-sprayed Al 2 O 3 -YAG coating. The amorphous Al 2 O 3 -YAG coating has better plastic deformation ability than Al 2 O 3 and Al 2 O 3 -Y 2 O 3 coatings. The amorphous Al 2 O 3 -YAG coating possesses greater crack propagation resistance.[Figure not available: see fulltext.]

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APA

Yang, K., Rong, J., Zhuang, Y., Ni, J., Yang, J., Tao, S., … Ding, C. (2019). Microstructure and High PV Wear Behavior of Novel Amorphous Al 2 O 3 -YAG Ceramic Coating Fabricated by Atmospheric Plasma Spraying. Journal of Thermal Spray Technology, 28(4), 803–825. https://doi.org/10.1007/s11666-019-00846-4

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