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首页> 外文期刊>Journal of Thermal Spray Technology >Simulation of Arc Root Fluctuation in a DC Non-Transferred Plasma Torch with Three Dimensional Modeling
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Simulation of Arc Root Fluctuation in a DC Non-Transferred Plasma Torch with Three Dimensional Modeling

机译:直流非传递式等离子炬中电弧根部波动的三维建模模拟

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摘要

It is well known that the coating quality of plasma spraying is strongly influenced by the instability of jets in the plasma spray, which is due to arc root fluctuation. Three dimensional (3D) unsteady-state modeling was employed in this research to analyze the arc root fluctuation in a DC non-transferred plasma torch. Numerical calculations on the distributions of gas temperature and velocity in the plasma torch were carried out using argon as the plasma gas. The electrical current density and potential were also discussed. The results indicate that the fluctuation of arc inside the plasma torch is mainly induced by the movement of the arc root on the anode surface. The arc root moves downstream with the flow of gas, and simultaneously the arc is bent by electromagnetic force. When the arc bends close enough to the anode boundary, a new arc root is formed somewhere upstream of the current attachment. In this paper the nature of the arc root fluctuation is presented, and also it is demonstrated that the voltage-drop calculated is larger than that measured experimentally because the plasma inside the torch has some deviation from the local thermodynamic equilibrium state hypothesis used in the current study.
机译:众所周知,等离子喷涂的涂层质量受到等离子喷涂中射流不稳定的强烈影响,这是由于电弧根部波动引起的。这项研究中使用了三维(3D)非稳态建模来分析直流非转移等离子炬中的弧根波动。以氩气为等离子气体,对等离子炬中气体温度和速度的分布进行了数值计算。还讨论了电流密度和电势。结果表明,等离子炬内部电弧的波动主要是由电弧根在阳极表面的运动引起的。电弧根部随着气流向下游移动,同时电弧被电磁力弯曲。当电弧弯曲到足够接近阳极边界时,在电流附件上游的某个地方会形成新的电弧根。本文介绍了电弧根波动的性质,并且证明了由于火炬内部的等离子体与电流中使用的局部热力学平衡状态假设存在一定偏差,因此计算得出的压降大于实验测量的压降。研究。

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