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Numerical and experimental studies on DC plasma spray torch

机译:直流等离子体喷枪的数值与实验研究

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摘要

One of the challenging problems in the plasma spray technique is reproducibility of the coating quality. This problem is mainly associated with arc fluctuations, which affect the plasma jet temperature and velocity, inside the plasma torch. In this study, 3D numerical models are developed to study the arc behavior inside the torch and effect of arc fluctuations on plasma jet temperature and velocity. Plasma arc is simulated for different operating parameters. Different arc sizes are predicted by using thermo-dynamical principle of minimum entropy production for given torch power. The influence of arc current and gas flow rate on the Ar-N_2 plasma arc characteristics, plasma jet and torch efficiency is presented. Predicted torch efficiencies and arc voltages are comparable with measurements. At the nozzle exit, velocity shows stronger three-dimensional effect than temperature. Plasma jets are simulated using different nozzle exit profiles obtained from the plasma arc model and their temperature and velocity distributions are clarified.
机译:等离子喷涂技术中具有挑战性的问题之一是涂层质量的可再现性。此问题主要与电弧波动有关,电弧波动会影响等离子炬内部的等离子流温度和速度。在这项研究中,开发了3D数值模型来研究割炬内部的电弧行为以及电弧波动对等离子喷射温度和速度的影响。针对不同的操作参数模拟了等离子弧。对于给定的焊炬功率,通过使用最小熵产生的热力学原理来预测不同的电弧尺寸。提出了电弧电流和气体流量对Ar-N_2等离子体电弧特性,等离子体射流和焊炬效率的影响。预测的焊炬效率和电弧电压与测量结果相当。在喷嘴出口处,速度显示出比温度更强的三维效果。使用从等离子弧模型获得的不同喷嘴出口轮廓来模拟等离子流,并阐明它们的温度和速度分布。

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