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Splash Splat to Disk Splat Transition Behavior in Plasma-Sprayed Metallic Materials

机译:等离子喷涂金属材料中的飞溅Splat到磁盘Splat过渡行为

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摘要

A variety of metallic powder particles were thermally sprayed onto the mirror polished metallic substrate surface and the effect of both substrate temperature and ambient pressure on the flattening behavior of the particle was systematically investigated. In the flattening behavior of the sprayed particle onto the substrate surface, critical conditions were recognized both in the substrate temperature and ambient pressure. That is, the flattening behavior changed transitionally on that critical temperature and pressure range, respectively. A transition temperature, T t, and transition pressure, P t, were defined and introduced, respectively for those critical conditions. The fact that the dependence of both transition temperature and transition pressure on the sprayed particle material had similar tendency indicated that the wetting of the substrate by the molten particles seemed to be a domination in the flattening. Three-dimensional transition curvature by combining both transition temperature and transition pressure dependence was proposed as a practical and effective controlling principle of the thermal spray process.
机译:将各种金属粉末颗粒热喷涂到镜面抛光的金属基材表面上,并系统地研究了基材温度和环境压力对颗粒扁平化行为的影响。在将喷涂颗粒压平到基材表面上的扁平行为中,在基材温度和环境压力中都发现了临界条件。也就是说,扁平化行为分别在该临界温度和压力范围内过渡变化。分别针对这些临界条件定义和引入了转变温度T t 和转变压力P t 。转变温度和转变压力对喷涂颗粒材料的依赖性具有相似趋势的事实表明,熔融颗粒对基材的润湿似乎是扁平化的主导。提出了结合过渡温度和过渡压力依赖性的三维过渡曲率,作为热喷涂过程的实用有效控制原理。

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