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Effect of Dry-ice Blasting on the Microstructure and Properties of Plasma-sprayed CoNiCrAlY Coating

机译:干冰爆破对等离子体喷涂的显微结构和性能的影响

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Depending on the oxidation extent and the surface roughness after coating manufacturing, CoNiCrAlY coating displays different performance in thermal barrier coating systems. In this study, plasma-sprayed CoNiCrAlY coatings were treated by dry-ice blasting. Various treatment approaches of dry-ice blasting were assessed by means of comparing the coating quality in terms of cross-sectional structure, oxide concentration, surface morphology and roughness, and microhardness. The results showed that CoNiCrAlY coating including decreased oxides and smoother internal texture can be obtained in comparison with that deposited by conventional APS, no matter what type of treatment. The oxidation content differs after using different jet angle and installation location of dry-ice blasting. To some extent, dry-ice blasting has some cleaning effect on those splashed particles. However, no much change can be recognized in the top-surface morphology and surface roughness, because of the relatively small hardness of dry-ice pellets. There is a slight decrease in hardness probably resulting from the decrease in the oxide.
机译:根据涂布制造后的氧化范围和表面粗糙度,同色性涂层在热障涂层系统中显示出不同的性能。在该研究中,通过干冰爆破处理血浆喷涂的同色涂层。通过在横截面结构,氧化物浓度,表面形态和粗糙度和微硬度方面进行比较涂层质量来评估干冰爆破的各种处理方法。结果表明,与常规APS沉积的含量相比,可以获得包括降低的氧化物和光滑的内部质地的同色性涂层,无论什么类型的治疗方法都可以获得。在使用不同的喷射角度和干冰爆破的安装位置之后,氧化含量不同。在某种程度上,干冰爆破对那些溅颗粒具有一些清洁效果。然而,由于干冰颗粒的硬度相对较小,因此不能在顶表面形态和表面粗糙度中识别多大的变化。硬度略有降低,可能是由于氧化物的降低而导致。

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