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Plasma-sprayed nickel splats on chromium substrates: The role of substrate preheating and thermal conductivity

机译:铬基底上的等离子喷涂镍片:基底预热和导热性的作用

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The effect of chromium substrate preheating on the spreading behavior of plasma-sprayed nickel splats was characterized. The interfacial features along the splat-substrate interface were analyzed by focused ion beam (FIB) microscopy and transmission electron microscopy (TEM). In addition, the transient droplet spreading process was modelled in a simulation study. The results showed that the presence of a large fraction of surface moisture on the substrates induced splat fragmentation. However, splat fragmentation was completely constrained on chromium preheated to a low temperature (373 K) where a certain amount of surface moisture was still present. The high thermal conductivity of chromium substrates increased droplet solidification rates, decreasing the interaction time between the spreading droplet and the vaporized gas layer. Accordingly, splat fragmentation was suppressed and disk-shaped splats were formed. Fast solidification not only refined the final splat microstructure, but also promoted the formation of finger-splashed disk splats. In addition, the extent of elemental diffusion across the splat-substrate interface was decreased due to the low interfacial temperature.
机译:表征了铬基底预热对等离子喷涂镍片扩散行为的影响。通过聚焦离子束(FIB)显微镜和透射电子显微镜(TEM)分析了沿splat-基板界面的界面特征。此外,在仿真研究中对瞬态液滴扩散过程进行了建模。结果表明,基材上存在很大比例的表面水分会导致碎片破裂。但是,在预热至低温(373 K)的铬(完全存在一定量的表面水分)的情况下,飞溅碎片完全受到限制。铬基板的高导热性提高了液滴的凝固速率,减少了扩散液滴与汽化气体层之间的相互作用时间。因此,抑制了碎片破裂,并且形成了盘状碎片。快速凝固不仅改善了最终的splat微观结构,而且还促进了指状的磁盘splats的形成。此外,由于界面温度低,元素在整个splat-衬底界面上的扩散程度降低了。

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