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首页> 外文期刊>Journal of Thermal Spray Technology >Advancement of In-Flight Alumina Powder Spheroidization Process with Water Droplet Injection Using a Small Power DC-RF Hybrid Plasma Flow System
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Advancement of In-Flight Alumina Powder Spheroidization Process with Water Droplet Injection Using a Small Power DC-RF Hybrid Plasma Flow System

机译:小功率DC-RF混合等离子体流系统的水滴注入飞行中氧化铝粉末球化工艺的研究进展

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The correlation between plasma thermofluid characteristics and alumina powder spheroidization processes with water droplet injection using a small power DC-RF hybrid plasma flow system was experimentally clarified. Micro-sized water droplets with a low water flow rate were injected into the tail of thermal plasma flow so as not to disturb the plasma flow directly. Injected water droplets were vaporized in the thermal plasma flow and were transported upstream in the plasma flow to the torch by the backflow. After dissociation of water, the production of hydrogen was detected by the optical emission spectroscopy in the downstream RF plasma flow. The emission area of the DC plasma jet expanded and elongated in the vicinity of the RF coils. Additionally, the emission area of RF plasma flow enlarged and was visible as red emission in the downstream RF plasma flow in the vicinity below the RF coils due to hydrogen production. Therefore, the plasma flow mixed with produced hydrogen increased the plasma enthalpy and the highest spheroidization rate of 97% was obtained at a water flow rate of 15 Sml/min and an atomizing gas flow rate of 8 Sl/min using a small power DC-RF hybrid plasma flow system.
机译:通过实验阐明了使用小功率DC-RF混合等离子流系统进行的液滴注入过程中,等离子体热流体特性与氧化铝​​粉末球化过程之间的相关性。将低流速的微细水滴注入热等离子流的尾部,以免直接干扰等离子流。注入的水滴在等离子热流中蒸发,并通过逆流在等离子流的上游传输到割炬。水离解后,通过下游的射频等离子体流中的光发射光谱法检测到氢气的产生。 DC等离子体射流的发射区域在RF线圈附近扩展和拉长。另外,由于氢的产生,RF等离子体流的发射面积扩大,并且在下游的RF等离子体流中在RF线圈下方附近附近可见为红色发射。因此,与产生的氢混合的等离子体流增加了等离子体的焓,在使用小功率直流电的情况下,水流速为15 Sml / min,雾化气体流速为8 Sl / min时,球化率最高,达到97%。射频混合等离子体流系统。

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