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Design and optimization of rectangular cold spray nozzle: Radial injection angle, expansion ratio and traverse speed

机译:矩形冷雾喷嘴的设计与优化:径向注射角,膨胀比和横向速度

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摘要

A cold spray nozzle with radially injected powder was numerically modeled and experimentally validated. The gas flow field and particle trajectories were simulated for various injection angles and expansion ratios. Injection angle was seen to affect particle distribution and injection pressures. The effect of expansion ratio was numerically studied and experimentally verified with stainless steel powders. For this material system, highest deposition efficiency was observed at an overexpanded flow regime. High deposition rate was accompanied by strain rate induced phase change. In addition, the effect of traverse speed (between 1 and 6 mm/s) was assessed experimentally. While the speed did not affect bond strength and coating hardness, an optimum speed was found where there was a substantial increase in deposition rate. (C) 2017 Elsevier B.V. All rights reserved.
机译:具有径向注入粉末的冷喷嘴是数值建模和实验验证的。 模拟气体流场和粒子轨迹,用于各种喷射角度和膨胀比。 看到注射角度影响颗粒分布和注射压力。 用不锈钢粉末进行数值研究和实验验证膨胀比的效果。 对于该材料系统,在过度的流动状态下观察到最高沉积效率。 高沉积速率伴有应变率诱导相变。 此外,通过实验评估横向速度(1至6mm / s之间)的效果。 虽然速度不影响粘合强度和涂层硬度,但发现最佳速度在沉积速率大幅增加的情况下。 (c)2017年Elsevier B.V.保留所有权利。

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