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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >The acceleration of charged nano-particles in gas stream of supersonic De-Lavel-type nozzle coupled with static electric field
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The acceleration of charged nano-particles in gas stream of supersonic De-Lavel-type nozzle coupled with static electric field

机译:超音速De-Lavel型喷嘴与静电场耦合作用下带电纳米​​粒子的加速

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This paper presents a numerical analysis of an innovative method for nano-scale particle deposition, called electrostatic-force-assisted cold gas dynamic spray (ECGDS). The transport characteristics of nano-scale charged particles in supersonic gas stream coupled with electrostatic field are simulated. Outside the nozzle, there exists bow shock near the substrate, which causes steep pressure increase across the shock. When the gas flow penetrates the bow shock and approaches to the substrate, the carrier gas speed decreases to nearly zero. In this study, electrostatic force is used to assist the charged particle to achieve high velocity upon impact of the substrate. The effect of electrostatic field to the velocity distribution of charged particles is investigated. It is found that smaller particles have the higher impact velocities on substrate. The higher particle charge densities can lead to higher particle impact velocities; and the closer the particles approach to the substrate, the stronger the electrostatic forces act on particles. For nano-scale particles the particle density (i.e. different materials) almost has no influence on the velocity profile.
机译:本文介绍了一种创新的纳米级颗粒沉积方法的数值分析,该方法称为静电力辅助冷气动态喷涂(ECGDS)。模拟了超声速气流中纳米级带电粒子与静电场的传输特性。在喷嘴外部,基材附近会产生弓形冲击,这会导致整个冲击的压力急剧上升。当气流穿过弓形冲击并接近基板时,载气速度降低到几乎为零。在这项研究中,静电力被用来辅助带电粒子在基材撞击时达到高速。研究了静电场对带电粒子速度分布的影响。发现较小的颗粒在基材上具有较高的冲击速度。较高的粒子电荷密度可以导致较高的粒子撞击速度。并且颗粒越接近基材,静电力作用于颗粒的力越强。对于纳米级颗粒,颗粒密度(即不同的材料)几乎对速度分布没有影响。

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