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Effect of gas temperature on critical velocity and deposition characteristics in kinetic spraying

机译:气体温度对动力喷涂中临界速度和沉积特性的影响

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This study evaluated the effects of particle temperature and substrate material on critical velocity and deposition efficiency in kinetic spraying. A wide range of process gas pressures and temperatures was used in this experiment to vary both particle velocity and temperature. A bronze (Cu-Sn alloy) feedstock was deposited onto aluminum, mild steel and bronze substrates. The experimental results showed that the critical velocity was strongly dependent on the combinations of particle/substrate and particle temperature. The decreasing critical velocity could be obtained at the same particle velocity, due to an increasing particle temperature. In our experiments, the critical velocity decreased by 50 m/s when the process gas temperature increased by 100 ℃. When process conditions are optimized to have good bond strength and deposition efficiency, two critical velocities must be considered; one is that of the particle deposition onto the substrate (Vcr1) and the other is that of particle-particle bonding (Vcr2).
机译:这项研究评估了动力喷涂中颗粒温度和基质材料对临界速度和沉积效率的影响。在该实验中,使用了多种工艺气体压力和温度来改变颗粒速度和温度。将青铜(Cu-Sn合金)原料沉积到铝,低碳钢和青铜基材上。实验结果表明,临界速度在很大程度上取决于颗粒/基质和颗粒温度的组合。由于颗粒温度升高,可以在相同的颗粒速度下获得降低的临界速度。在我们的实验中,当工艺气体温度升高100℃时,临界速度降低了50 m / s。当优化工艺条件以具有良好的粘结强度和沉积效率时,必须考虑两个临界速度。一种是颗粒沉积在基材上的沉积(Vcr1),另一种是颗粒-颗粒结合的沉积(Vcr2)。

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