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首页> 外文期刊>CERAMICS INTERNATIONAL >Phase transition and interface evolution of Al2O3/ZrO2 particles in plasma-sprayed coatings
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Phase transition and interface evolution of Al2O3/ZrO2 particles in plasma-sprayed coatings

机译:等离子体喷涂涂料中Al2O3 / ZrO2颗粒的相转变和界面演化

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摘要

Alumina and zirconia ceramic particles exhibit high hardness and excellent wear resistance at high temperature, and hence are used as ceramic reinforcement phases in some plasma sprayed coatings. In this study, the interface evolution of a zirconia/alumina eutectic ceramic and the phase transition of zirconia in a plasma-sprayed coating were investigated. Scanning electron microscopy and transmission electron microscopy combined with focused-ion beam and energy dispersive X-ray were used to analyze the microstructure and composition of the ceramic interface. The results showed that the eutectic ceramic particles consisted of alumina (outer) and columnar zirconia (inner) before and after the plasma spraying process. The inner zirconia part showed the martensitic transformation of t-type zirconia to stripe-like m-type zirconia. After the plasma spraying, the interface between alumina and zirconia changed significantly, which formed a new oxide layer. The phase transition mechanism in the ceramic particle and oxide layer formation mechanism at the alumina/zirconia interface were investigated.
机译:氧化铝和氧化锆陶瓷颗粒在高温下表现出高硬度和优异的耐磨性,因此在一些等离子体喷涂涂层中用作陶瓷增强阶段。在该研究中,研究了氧化锆/氧化铝共晶陶瓷的界面演化和氧化锆在等离子体喷涂涂层中的相转变。扫描电子显微镜和透射电子显微镜与聚焦离子束和能量分散X射线相结合,用于分析陶瓷界面的微观结构和组成。结果表明,共晶陶瓷颗粒由等离子体喷涂过程之前和之后和之后的氧化铝(外)和柱状氧化锆(内部)组成。内氧化锆部分显示T型氧化锆的马氏体转化为条纹状M型氧化锆。在等离子体喷涂之后,氧化铝和氧化锆之间的界面显着变化,形成了新的氧化物层。研究了氧化铝/氧化锆界面处的陶瓷颗粒和氧化物层形成机制的相转变机理。

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