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首页> 外文期刊>Journal of Thermal Spray Technology >Splat microstructure of plasma sprayed cast iron with different chamber pressures
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Splat microstructure of plasma sprayed cast iron with different chamber pressures

机译:不同腔室压力下等离子喷涂铸铁的Splat显微组织

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Achieving a plasma sprayed cast iron coating containing graphite requires stringent control on spray parameters that synergistically influence the coating properties and thus the performance. The microstructure of cast iron splats greatly depends on spray parameters such as substrate temperature, chamber pressure, and spray distance. This paper presents the effect of chamber pressure on the splat microstructure, including oxides and graphite. At low chamber pressures, most splats exhibit a disk shape with high flattening ratios, whereas star-shaped splats extensively appear at high chamber pressures. Spraying at high chamber pressures causes the formation of pores and thick oxide zones at the splat/substrate interface, mainly due to the atmospheric gases, which are responsible for a decrease in splat adhesion. Spraying in Ar atmosphere reduces the splat oxidation due to a decrease in the oxygen partial pressure. Small-deformed substrate ridges are observed adjacent to the periphery of splats sprayed at low chamber pressures whereas no ridges are detected at high chamber pressures. Ridge formation generates a kind of mechanical bond, which increases the adhesive strength. Since the molten droplets impinge with high velocity and thus high flattening ratio at low chamber pressures, the solidification rate becomes faster, and graphite formation is resultantly hindered.
机译:实现包含石墨的等离子喷涂铸铁涂层需要严格控制喷涂参数,以协同影响涂层性能,进而影响性能。铸铁片的微观结构在很大程度上取决于喷涂参数,例如基材温度,腔室压力和喷涂距离。本文介绍了腔室压力对splat微观结构(包括氧化物和石墨)的影响。在低腔压力下,大多数splats呈现出具有较高扁平率的圆盘形状,而在高腔压力下星状splats广泛出现。在高腔室压力下进行喷涂会导致在splat /基板界面处形成孔和较厚的氧化物区域,这主要是由于大气导致了splat附着力的降低。由于氧气分压的降低,在Ar气氛中进行喷涂可减少飞溅氧化。在低腔室压力下喷出的短片边缘附近会观察到小变形的基体脊,而在高腔室压力下未检测到脊。脊的形​​成会产生一种机械粘合,从而增加粘合强度。由于熔融液滴在低腔室压力下以高速碰撞并因此以较高的扁平率碰撞,因此固化速率变得更快,并且因此阻碍了石墨的形成。

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