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首页> 外文期刊>Journal of the European Ceramic Society >Phase stability of plasma sprayed YAG-YSZ composite beads/coatings at high temperature
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Phase stability of plasma sprayed YAG-YSZ composite beads/coatings at high temperature

机译:等离子喷涂YAG-YSZ复合珠/涂层在高温下的相稳定性

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Beads and coatings of YAG-YSZ composite ceramic were prepared by plasma spray. YAG was applied as an additive in the hope of improving the phase stability and oxygen impermeability of YSZ. To achieve this aim, some basic research about crystallization behavior and chemical compatibility of the composite were carried out. Plasma sprayed YAG tended to form amorphous state. With the different content of YAG in the composite, crystallization of YAG and YSZ was delayed by each other to different extent due to the barrier effect of heavy atoms. The relative low melting point of YAG led to dense coatings without obvious splat structure and further distinctive vertical cracks during crystallization within the coatings. The cracks became less severe when YAG content was lower. With the addition of YAG, the development of monoclinic ZrC>2 was suppressed while Y-rich phases were promoted at higher temperature.
机译:通过等离子喷涂制备了YAG-YSZ复合陶瓷的微珠和涂层。 YAG被用作添加剂,以希望改善YSZ的相稳定性和氧不渗透性。为了达到这个目的,对复合材料的结晶行为和化学相容性进行了一些基础研究。等离子喷涂的YAG倾向于形成非晶态。由于复合物中YAG的含量不同,YAG和YSZ的结晶由于重原子的阻挡作用而彼此延迟的程度不同。 YAG的相对低熔点导致涂层致密,没有明显的飞溅结构,并且在涂层内结晶期间还出现了明显的垂直裂纹。当YAG含量较低时,裂纹变得不太严重。加入YAG可以抑制单斜晶ZrC> 2的发展,而在高温下可以促进富Y相的发展。

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