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Effect of Nozzle Material on Downstream Lateral Injection Cold Spray Performance

机译:喷嘴材料对下游侧喷冷喷性能的影响

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摘要

In cold gas dynamic spraying, the gas nature, process stagnation pressure and temperature, and the standoff distance are known to be important parameters that affect the deposition efficiency and coating quality. This investigation attempts to elucidate the effect of nozzle material on coatings produced using a downstream lateral injection cold spray system. Through experimentation, it is shown that the nozzle material has a substantial effect on deposition efficiency and particle velocity. It is proposed that the effects are related to complex interaction between the particles and the internal nozzle walls. The results obtained lead to the conclusion that during the particleozzle wall contact, a nozzle with higher thermal diffusivity transfers more heat to the particles. This heat transfer results in lower critical velocities and therefore higher deposition efficiencies, despite a noticeable reduction of particle velocities which is also attributed to particle-nozzle interactions.
机译:在冷气动态喷涂中,已知气体性质,工艺停滞压力和温度以及隔离距离是影响沉积效率和涂层质量的重要参数。该研究试图阐明喷嘴材料对使用下游侧向喷射冷喷涂系统生产的涂层的影响。通过实验表明,喷嘴材料对沉积效率和颗粒速度有很大影响。提出这些影响与颗粒和内部喷嘴壁之间的复杂相互作用有关。获得的结果得出这样的结论:在颗粒/喷嘴壁接触期间,具有较高热扩散率的喷嘴会将更多的热量传递给颗粒。尽管颗粒速度显着降低,但是这种热传递导致较低的临界速度,因此具有较高的沉积效率,这也归因于颗粒-喷嘴相互作用。

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