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Study of in-flight particle stream and particle behavior for understanding the instability phenomenon in plasma spraying process

机译:研究飞行中的粒子流和粒子行为,以了解等离子喷涂过程中的不稳定性现象

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For understanding the effect of powder feeding fluctuation on coating structure, in-flight particles were investigated by means of image analyzing. Particle behavior was estimated through numerical calculation on the base of force equilibrium. High definition videos were captured focusing on the in-flight particle stream and transparent carrier tube. Yttria-stabilized Zirconia (YSZ) coating was prepared with vacuum plasma spraying for clarifying the effect of powder feeding instability on coating structure. Optic micro-morphology of coating was obtained for porosity ratio estimation. An imaginary ring of bent tube was proposed for understanding particle behavior when unavoidable bends exist. Results indicate that periodic fluctuations exist in in-flight particle trajectory and in powder feeding. A transition region was found for particles with different diameters in regions between 0 degrees and 180 degrees within which particles with large sizes are difficult to transport. As a consequence, accumulation of powder was thus found both on upslope and downslope. The effective cross-section of the carrier tube for powder carrying was found reduced. According to the calculation, reducing equivalent diameter and increasing carrier gas flowrate have the same effect on powder carrying. A threshold was proposed to understand the slug behavior as: growing, maturity and breaking. Due to the break of slug, 'powder flooding' happens and may cause mutation in in-flight particle stream. Obvious increase was found in injected particle quality to induce the three layer structure of coating. An empirical equation was proposed to describe slug behavior as a synthesis of growth rate and loss rate. (C) 2015 Elsevier B.V. All rights reserved.
机译:为了理解供粉波动对涂层结构的影响,通过图像分析研究了飞行中的颗粒。在力平衡的基础上,通过数值计算来估计粒子的行为。捕获了高清视频,重点放在飞行中的粒子流和透明载管上。通过真空等离子喷涂制备氧化钇稳定的氧化锆(YSZ)涂层,以阐明送粉不稳定性对涂层结构的影响。获得了涂层的光学微观形态用于孔隙率比估计。提出了一个假想的弯管环,用于理解不可避免的弯头时的颗粒行为。结果表明,飞行中的颗粒轨迹和送粉过程中存在周期性的波动。在0度至180度之间的区域中发现了具有不同直径的粒子的过渡区域,在该区域中难以传输大尺寸的粒子。结果,因此在上坡和下坡都发现了粉末的堆积。发现用于粉末运送的运送管的有效横截面减小了。根据计算,减小当量直径和增加载气流量对粉末的携带具有相同的效果。提出了一个阈值以了解块状行为:生长,成熟和破裂。由于团块的破裂,会发生“粉末溢流”,并可能导致飞行中的粒子流发生突变。发现注入颗粒的质量明显增加,从而诱导了涂层的三层结构。提出了一个经验方程来描述弹头行为,将其作为增长率和损失率的综合。 (C)2015 Elsevier B.V.保留所有权利。

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