Formation mechanism of Al 2 O 3 ‐YAG amorphous ceramic coating deposited via atmospheric plasma spraying

材料科学 无定形固体 共晶体系 涂层 结晶 陶瓷 扫描电子显微镜 化学工程 相(物质) 微观结构 大气压等离子体 沉积(地质) 复合材料 等离子体 结晶学 工程类 古生物学 物理 有机化学 化学 生物 量子力学 沉积物
作者
Zheyi Zhang,Yizhaotong Ai,Xinghua Zhong,Yin Zhuang,Jing Sheng,Jinxing Ni,Shunyan Tao,Kai Yang
出处
期刊:International Journal of Applied Ceramic Technology [Wiley]
卷期号:19 (3): 1518-1528 被引量:6
标识
DOI:10.1111/ijac.13950
摘要

Abstract Al 2 O 3 ‐YAG (Al 5 Y 3 O 12 ) amorphous ceramic coatings exhibit excellent crack propagation resistance under harsh wear services due to the amorphous phase contributing to the plastic deformation performance of the coating. However, the formation mechanism of the amorphous phase is ambiguous. This study mainly investigated the formation mechanism of Al 2 O 3 ‐YAG amorphous coating prepared by atmospheric plasma spraying from the perspective of crystallization chemistry. Nano and microsized powders with low eutectic point ratio were selected as feedstock for comparison. X‐ray diffraction, scanning electron microscope, and electron backscattered diffraction were used to analyze the phase composition, morphologies, phase distribution, and structure of the coating. It is concluded that the significant thermodynamically stable structure of polycompound with high coordination numbers of cations prioritized crystallizing in the Al 2 O 3 ‐YAG melt, but it needed more time to crystallize and hardly crystallized in the limited time during plasma spraying. Therefore, the selection of as‐sprayable powder should also be considered the critical factor for preparing amorphous coatings. The nanoscale or submicro scale powder distributed uniformly with low eutectic point ratio was chosen as the feedstock to ensure the powder droplets diffuse sufficiently during deposition.

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