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Significant influence of carrier gas temperature during the cold spray process

机译:冷喷涂过程中载气温度的重大影响

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摘要

Carrier gas is known as the medium to inject the cold sprayed powders into the main driving flow inside the nozzle. Hence, the properties and conditions of carrier gas should be of great importance to the particle motion behaviour and then particle deposition process. In this study, the effect of carrier gas temperature on the particle acceleration and deposition in cold spray process was investigated by both numerical and experimental methods. It is found that the supersonic driving gas flow and the consequent particle acceleration behaviour are significantly influenced by the carrier gas temperature, more specifically, higher carrier gas temperature results in higher particle impact velocity. In addition, because the carrier gas has additional heating effect on the powder particles before injection, the final impact temperature also increases with the carrier gas temperature, which leads to the reduction in the critical velocity. The increase in particle impact velocity and reduction in critical velocity enable the deposition efficiency and coating bonding strength to significantly improve as the carrier gas temperature increases. The particle impact velocity is found to be more influential than critical velocity reduction.
机译:载气是将冷喷涂粉末注入喷嘴内部主要驱动流的介质。因此,载气的性质和条件对于粒子的运动行为以及随后的粒子沉积过程都至关重要。在这项研究中,通过数值和实验方法研究了载气温度对冷喷涂过程中颗粒加速和沉积的影响。已经发现,载气温度显着影响超声速驱动气流和随之产生的颗粒加速行为,更具体地讲,更高的载气温度导致更高的颗粒碰撞速度。另外,因为载气对注射前的粉末颗粒具有附加的加热作用,所以最终的冲击温度也随载气温度的升高而增加,这导致临界速度的降低。随着载气温度的升高,粒子撞击速度的提高和临界速度的降低使沉积效率和涂层结合强度得以显着提高。发现粒子撞击速度比临界速度降低更具影响力。

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