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Effect of the Expansion Ratio and Length Ratio on a Gas-Particle Flow in a Converging-Diverging Cold Spray Nozzle

机译:扩径和长径比对渐扩式冷喷喷嘴中气体颗粒流动的影响

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摘要

A cold spray process is a relatively new process that uses high velocity metallic particles for surface modifications. Metallic powder particles are injected into a converging-diverging nozzle and accelerated to supersonic velocities. Gas accelerates in the throat of the nozzle and reaches a maximum speed at the nozzle exit. Due to compression shocks just outside the nozzle, the gas jet has an irregular shape. Experiments on the expansion ratio and the length ratio of the nozzle, particularly in terms of their relation to the gas pressure, temperature and nozzle length, were conducted for the purpose of reducing the Shockwave [1].
机译:冷喷涂工艺是一种相对较新的工艺,它使用高速金属颗粒进行表面改性。将金属粉末颗粒注入到会聚-发散喷嘴中,并加速至超音速。气体在喷嘴的喉部加速并在喷嘴出口达到最大速度。由于喷嘴外的压缩冲击,气体射流的形状不规则。为了减少冲击波[1],进行了喷嘴的膨胀比和长度比的实验,特别是与气体压力,温度和喷嘴长度的关系。

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