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A Study of Wire Breakup and In-Flight Particle Behavior During Wire Flame Spraying of Aluminum

机译:铝丝丝网喷涂期间的钢丝分离和飞行飞行粒子行为研究

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摘要

Although wire flame spraying has been used for many years, there has been relatively little attention given to understanding the process dynamics. In this work, imaging of the molten wire tip, particle imaging using the Oseir SprayWatch system and particle capture (wipe tests) have all been employed to quantify plume behavior. Aluminum wire feedstock is melted and then breaks up close to the exit of the spray nozzle in a non-axisymmetric manor. The mean velocity and diameter of the particles detected by the SprayWatch system change little with standoff distance with values of approximately 280 m/s and 70 mu m, respectively, for the spray parameters employed. The particle diagnostic system could not detect particles less than or similar to 45 mu m in diameter, and it is estimated that these account for no more than 53% of the sprayed material. Overall, wire flame spraying generates a surprisingly stable particle stream.
机译:虽然多年来已经使用了铁丝火焰喷涂,但是对理解过程动态进行了相对较少的关注。 在这项工作中,熔融线尖端的成像,使用SOSEIR喷雾系统和颗粒捕获(擦拭试验)的颗粒成像已经采用来量化羽流行为。 熔化铝线原料熔化,然后在非轴对称庄园中靠近喷嘴的出口。 喷射系统检测到的颗粒的平均速度和直径几乎可以随着所用的喷射参数分别具有约280m / s和70μm的值的支架距离而变化。 粒子诊断系统无法检测到直径小于或类似于45μm的颗粒,并且估计这些占喷涂材料的不超过53%。 总的来说,电线火焰喷涂产生令人惊讶的稳定颗粒物流。

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