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A Numerical Investigation of the Cold Spray Process Using Underexpanded and Overexpanded Jets

机译:扩径和扩径射流冷喷涂过程的数值研究

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The impact velocity of particles during the cold spray process is crucial to the optimisation of coating quality and spraying costs. In the present investigation, both underexpanded and overexpanded impinging jets are employed to accelerate Aluminium particles towards a substrate. The impact velocity and angle statistics are generated by injecting polydisperse particles into the jet and the particle dynamics are characterised using the velocity and trajectories of the particles. The optimum particle size corresponding to the maximum impact speed is recast in terms of the Stokes number and shown to have a value of approximately one. Finally, a normal shock model is proposed which may be employed to estimate the particle impact speed using the nozzle exit conditions. It is shown that owing to artificial viscosity associated with the total variation diminishing scheme, this model tends to underestimate the speed.
机译:冷喷涂过程中颗粒的撞击速度对于优化涂层质量和喷涂成本至关重要。在目前的研究中,未充分利用和过度扩大的撞击射流都被用来将铝颗粒向基板加速。冲击速度和角度统计数据是通过将多分散颗粒注入到射流中生成的,并且使用颗粒的速度和轨迹来表征颗粒动力学。对应于最大冲击速度的最佳粒度将根据斯托克斯数进行重铸,并显示为约1的值。最后,提出了一种正常的冲击模型,该模型可用于使用喷嘴出口条件估算颗粒的撞击速度。结果表明,由于人工黏度与总变化减小方案有关,该模型倾向于低估速度。

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