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Optimal design of a cold spray nozzle by numerical analysis of particle velocity and experimental validation with 316L stainless steel powder

机译:基于316L不锈钢粉末颗粒速度数值分析和实验验证的冷喷嘴优化设计。

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摘要

The optimization of exit diameter of a cold spray nozzle under different spray conditions was investigated numerically for the first time. The optimal expansion ratio is influenced by the gas conditions, particle size, nozzle divergent section length and throat diameter. The optimal expansion ratio increases with the increases in gas pressure and nozzle divergent length. It decreases with the increases in gas temperature, particle size and nozzle throat diameter. The optimal expansion ratio using He is less than that using N_2 under the same operating conditions. The experiment with a 316L stainless steel powder indicates that a dense 316L stainless steel coating with a high microhardness can be deposited with an optimized nozzle using air as an accelerating gas owing to the high particle velocity. The good correlation of particle velocity with the coating microstructure and microhardness confirmed the optimal design method.
机译:首次数值研究了不同喷雾条件下冷喷嘴出口直径的优化。最佳膨胀比受气体条件,粒径,喷嘴发散段长度和喉管直径的影响。最佳膨胀比随着气压和喷嘴发散长度的增加而增加。随着气体温度,粒径和喷嘴喉直径的增加,它降低。在相同的工作条件下,使用He的最佳膨胀率小于使用N_2的最佳膨胀率。用316L不锈钢粉末进行的实验表明,由于具有较高的颗粒速度,可以使用空气作为促进气体,通过优化的喷嘴沉积具有高显微硬度的致密316L不锈钢涂层。颗粒速度与涂层组织和显微硬度的良好相关性证实了最佳的设计方法。

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