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首页> 外文期刊>Journal of Thermal Spray Technology >Effect of Particle Size Distribution on Isothermal Oxidation Characteristics of Plasma Sprayed CoNi- and CoCrAlY Coatings
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Effect of Particle Size Distribution on Isothermal Oxidation Characteristics of Plasma Sprayed CoNi- and CoCrAlY Coatings

机译:粒度分布对等离子喷涂CoNi-和CoCrAlY涂层等温氧化性能的影响

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摘要

The effect of particle size distribution on the degradation behavior of plasma sprayed CoNi- and CoCrAlY coatings during isothermal oxidation was investigated, in terms of the oxygen content, porosity, surface roughness, and oxide scale formation. The results show that the degradation of both coatings was considerably influenced by the starting particle size distribution. It also shows that in the as-sprayed vacuum plasma spray (VPS) coatings the oxygen content on the coating surface increased significantly with decreased average particle size. But after thermal exposure, the difference of the oxygen contents between the coatings with different particle size was decreased. The powder with various particle size resulted in low porosity inside the coatings during the deposition process. The surface roughness of the coatings increased with increased particle size. The small particles produced a relatively smooth surface, and the oxide growth in the coating deposited by small particle was slower than that in the large particle coating.
机译:从氧含量,孔隙率,表面粗糙度和氧化物垢的形成方面,研究了粒径分布对等离子喷涂CoNi-和CoCrAlY涂层在等温氧化过程中的降解行为的影响。结果表明,两种涂层的降解都受到起始粒径分布的显着影响。这也表明,在喷涂的真空等离子喷涂(VPS)涂层中,涂层表面的氧含量随着平均粒径的减小而显着增加。但是在热暴露之后,具有不同粒径的涂层之间的氧含量差异减小了。具有各种粒径的粉末在沉积过程中导致涂层内部的低孔隙率。涂层的表面粗糙度随着粒度的增加而增加。小颗粒产生相对光滑的表面,并且由小颗粒沉积的涂层中的氧化物生长比大颗粒涂层中的氧化物生长慢。

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