首页> 外文期刊>Journal of Thermal Spray Technology >Wire Composition: Its Effect on Metal Disintegration and Particle Formation in Twin-Wire Arc-Spraying Process
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Wire Composition: Its Effect on Metal Disintegration and Particle Formation in Twin-Wire Arc-Spraying Process

机译:焊丝成分:对双焊丝电弧喷涂过程中金属崩解和颗粒形成的影响

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摘要

The wire tips in twin-wire arc-spraying (TWAS) are heated in three different zones. A high-speed camera was used to observe the melting behavior, metal breakup, and particle formation under different operating conditions. In zone (I), the wire tips are melted (liquidus metal) and directly atomized in the form of smaller droplets. Their size is a function of the specific properties of the molten metal and the exerting aerodynamic forces. Zone (II) is directly beneath zone (I) and the origin of the extruded metal sheets at the wire tips. The extruded metal sheets in the case of cored wires are shorter than those observed while using solid wires. In this study, the effects of adjustable parameters and powder filling on melting behavior, particle formation, and process instability were revealed, and a comparison between solid and cored wires was made. The findings can improve the accuracy of the TWAS process modeling.
机译:双丝电弧喷涂(TWAS)中的丝头在三个不同的区域中加热。使用高速相机观察在不同操作条件下的熔融行为,金属破碎和颗粒形成。在区域(I)中,焊丝尖端熔化(液相线金属),并以较小的液滴形式直接雾化。它们的尺寸取决于熔融金属的特殊性能和施加的空气动力。区域(II)直接位于区域(I)下方,并且是挤出金属薄板的原点在焊丝尖端。带芯线的挤压金属板比使用实心线的挤压金属板短。在这项研究中,揭示了可调参数和粉末填充对熔融行为,颗粒形成和工艺不稳定性的影响,并比较了实芯线和芯线。这些发现可以提高TWAS流程建模的准确性。

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