Comparative Study of Mo and W Bonding Layers on Graphite during Plasma Spraying

S. Kwon, Neo Kang, S. Hyun, J.-K. Kim, I. Kim, Tae-Ho Park, H-M Bong
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Abstract

Graphite is useful in high-temperature applications in many engineering fields, such as heat-treating, brazing, and sintering industries. As the operation becomes severe, carbon experiences degradation leading to failure. In this study, a protective coating of W and Mo as the intermediate layer by air plasma spraying on graphite substrate was investigated to find a better intermediate layer. Their performance was explored as a bonding layer in a protective alumina-YSZ ceramic topcoat. X-ray diffraction and scanning electron microscope were used to observe the cross-section of coatings and the difference in the bonding characteristics between W and Mo, respectively. W was found inferior to Mo as a bonding performance over 1450 °C in view of carbide formation against the thermodynamic data. It seems to be related to the formation of a barrier layer as oxide during air plasma spraying.
等离子喷涂过程中石墨表面Mo和W键合层的对比研究
石墨在许多工程领域的高温应用中很有用,例如热处理,钎焊和烧结工业。当操作变得严酷时,碳经历降解导致失效。本研究采用空气等离子喷涂的方法在石墨基体上制备了W和Mo作为中间层的保护涂层,以寻找较好的中间层。研究了它们作为保护氧化铝- ysz陶瓷面漆的粘结层的性能。利用x射线衍射和扫描电镜分别观察了涂层的截面以及W和Mo之间键合特性的差异。根据热力学数据,在1450°C以上,W的键合性能不如Mo。这似乎与空气等离子喷涂过程中形成的氧化屏障层有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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