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In situ visualization of impacting phenomena of plasma-sprayed zirconia: from single splat to coating formation

机译:等离子喷涂氧化锆撞击现象的原位可视化:从单次喷溅到涂层形成

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摘要

Understanding the impacting phenomena of yttria-stabilized zirconia (YSZ) particles and following coating formation in plasma spraying process is of importance to control and design the microstructure of coatings such as thermal barrier coatings. To this aim, recently, the authors have developed a novel in situ monitoring system for particle impacts under atmospheric dc plasma spraying conditions. This system utilized a high-speed video camera coupled with a long-distance microscope and was capable of capturing the particle-impinging phenomena at one million frames per second. To understand the coating formation mechanism, two approaches were attempted, that is, observation of the single splat formation and the following coating formation as the integration of splats. In the former case, the deformation and cooling processes of YSZ droplets impinging on substrates were captured successfully. In the latter case, multiple-droplet-impacting phenomena were observed as an ensemble treatment. Representing coating process, the tower formation (1-dimensional) and bead formation (2-dimensional) were observed under typical plasma spray conditions for thermal barrier coatings. By using a triggering system coupled with the motion of a robot, impact events were recorded for every pass. The obtained images clearly showed the coating formation resulted by the integration of single splats.
机译:了解等离子喷涂过程中氧化钇稳定的氧化锆(YSZ)颗粒的撞击现象以及涂层形成之后,对于控制和设计涂层(如热障涂层)的微观结构非常重要。为了这个目标,最近,作者开发了一种新颖的原位监测系统,用于在大气直流等离子喷涂条件下进行粒子撞击。该系统利用高速摄像机和远距离显微镜,能够以每秒一百万帧的速度捕获粒子撞击现象。为了理解涂层的形成机理,尝试了两种方法,即观察单一的碎片形成和随后的涂层形成碎片的整合。在前一种情况下,成功捕获了撞击在基板上的YSZ液滴的变形和冷却过程。在后一种情况下,观察到多液滴撞击现象作为整体处理。代表涂覆过程,在典型的等离子喷涂条件下,对热障涂层观察到了塔的形成(一维)和珠粒的形成(二维)。通过使用触发系统以及机器人的动作,每次通过都会记录冲击事件。所获得的图像清楚地表明了由单个喷头的整合导致的涂层形成。

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