操作参数对不同操作压力下阴极气体注入坩埚内转移电弧行为影响的数值研究

IF 1.3 Q3 ORTHOPEDICS Plasma Research Express Pub Date : 2020-04-24 DOI:10.1088/2516-1067/ab89c9
Lintu G Laly, K. Ramachandran
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引用次数: 1

摘要

空心阴极气体注入转移电弧等离子体系统已被用于高温材料加工。数值研究了在1atm工作压力下,气体流量、电极间隙、电弧电流等工作参数对电弧行为的影响。在低于和高于大气压的工作压力下,电弧行为的知识是非常有限的。本文建立了一个二维轴对称模型,模拟了在不同工作压力下空心阴极注气与坩埚阳极之间形成的氩弧的行为以及等离子体向阳极的传热。研究了不同工作压力下气体流量和电极间隙对电弧行为和加热效率的影响。电弧电压受操作压力和电极间隙的强烈影响。在较高的工作压力下,气体流量对电弧电压的影响更大。电弧根部从阳极中心的移动或脱离受操作压力和气体流量的强烈影响。与在更高的操作压力下形成的电弧相比,在0.2大气压下形成的电弧具有独特的特征。电弧根附着处的阳极热流密度较高,在0.2 atm的工作压力、15 mm的电极间隙和5 lpm的气体流速下,电弧加热效率最高,达到68.1%。
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Numerical studies on the effects of operating parameters on the behaviour of transferred arc inside the crucible with gas injection through the cathode at different operating pressures
Hollow cathode with gas injection in transferred arc plasma system has been used for high temperature material processes. The effect of operating parameters such as gas flow rate, electrode gap, arc current, etc on the arc behaviour at an operating pressure of 1 atm is studied numerically. The knowledge on the arc behaviour at operating pressures lower and higher than atmospheric pressure is very limited. In this work, a two dimensional axi-symmetric model is developed to simulate the behaviour of the argon arcs formed between hollow cathode with gas injection and crucible anode as well as heat transfer from the plasma to the anode at different operating pressures. The effects of gas flow rate and electrode gap on the arc behaviour and heating efficiency at different operating pressures are investigated. The arc voltage is strongly influenced by both operating pressure and electrode gap. The effect gas flow rate on the arc voltage is stronger at higher operating pressures. The movement or detachment of the arc root from the centre of the anode is strongly influenced by operating pressure and gas flow rate. Arcs formed at 0.2 atm have unique features compared to the arcs formed at higher operating pressures. The heat flux to the anode is higher where arc root is attached and the highest arc heating efficiency of 68.1% is predicted at an operating pressure of 0.2 atm, electrode gap of 15 mm and gas flow rate of 5 lpm.
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来源期刊
Plasma Research Express
Plasma Research Express Energy-Nuclear Energy and Engineering
CiteScore
2.60
自引率
0.00%
发文量
15
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