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Effects of Gun Scanning Pattern on the Structure and Corrosion Resistance of Plasma Sprayed YSZ Coatings

机译:枪扫描图案对等离子喷涂YSZ涂层结构和耐腐蚀的影响

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Due to the non-symmetric distribution of sprayed particle plume in conventional plasma spraying caused by the radial injection of feedstock powder into a plasma jet, significant influence of the gun scanning pattern can appear in the structure of the sprayed coatings. Especially, the portion of poorly treated powder flux can be a cause of horizontal cracking as well as poor coating adhesion. In this study, three different scanning patterns of an air plasma spray (APS) gun were adopted with a commercial ZrO_2-8mass% Y_2O_3 (YSZ) powder. The cross sections of the obtained YSZ coatings were observed by SEM while interfacial fracture toughness was measured by the indentation method and hot corrosion testing was conducted. It was found that by modification of the gun scanning pattern, it is possible to decrease the possibility of horizontal weak bonding between spray passes and improve the coating adhesion and corrosion resistance.
机译:由于常规等离子体喷涂中喷射颗粒羽流的非对称分布引起的原料粉末引起的径向喷射到等离子体射流中,枪扫描图案的显着影响可以出现在喷涂涂层的结构中。特别是,经过较差的粉末通量的部分可以是水平裂缝的原因以及涂层粘附不良。在该研究中,使用商业ZrO_2-8mass%Y_2O_3(YSZ)粉末采用三种不同扫描的空气等离子体喷雾(APS)喷枪。通过SEM观察所获得的YSZ涂层的横截面,而通过压痕法测量界面断裂韧性,并进行热腐蚀测试。结果发现,通过改变枪扫描图案,可以降低喷雾通过之间水平弱键合的可能性,并改善涂层粘附和耐腐蚀性。

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