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Influence of surface character change of substrate due to heating on flattening behavior of thermal sprayed particles

机译:加热引起的基材表面特性变化对热喷涂颗粒展平行为的影响

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The authors have confirmed that in the thermal spraying of practical powder materials, the splat shape changes with increasing substrate temperature to a circular disk shape from a fringe shape with splashing at a critical substrate temperature,T t. The increase of the substrate temperature may accompany a kind of essential change on the substrate surface, because the effect is maintained until the substrate is cooled down to room temperature. However, the nature of the substrate surface change due to the heating has not been clearly understood yet. In this study, AISI 304 stainless steel was used as a substrate material, and the substrate was heated in an air at mosphere or laser treated as a pretreatment. Substrate surface topography in nanometer scale was analyzed precisely by atomic force microscope (AFM). The relationship between surface topography in nanometer scale and splat morphology was discussed. Moreover, to evaluate the effect of chemical composition of the substrate surface, gold was coated onto the substrate surface by physical vapor deposition (PVD) after the heat treatment. The effect of adsorbate/condensate on the substrate surface on the flattening behavior of thermal sprayed particles was also verified.
机译:作者已经证实,在实际粉末材料的热喷涂中,飞溅的形状会随着基材温度的升高而从条纹形状转变为圆盘形状,并在临界基材温度T t时发生飞溅。基板温度的升高可以伴随基板表面上的一种本质变化,因为在基板冷却到室温之前一直保持这种效果。但是,由于加热引起的基板表面变化的性质尚未清楚。在这项研究中,使用AISI 304不锈钢作为基材材料,并将基材在大气中的空气中加热或作为预处理进行激光处理。通过原子力显微镜(AFM)精确分析了纳米级的基底表面形貌。讨论了纳米尺度表面形貌与splat形貌的关系。此外,为了评估基板表面的化学组成的效果,在热处理之后,通过物理气相沉积(PVD)将金涂覆在基板表面上。还验证了基材表面上吸附物/冷凝物对热喷涂颗粒变平行为的影响。

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