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Effect of Ambient Pressure on the Axial Behavior of Transferred Thermal Arc-Plasma Column

机译:环境压力对传热弧等离子柱轴向行为的影响

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Measurements of axial temperature and electron density have been carried out for Ar-H2 dc transferred arc-plasma columns under varying ambient-pressure conditions (100-760 torr). Optical emission spectroscopy has been used as the diagnostic tool. Temperature was determined by the relative intensity method using atomic hydrogen lines. The electron-density measurements were obtained from the Stark width of the Hß (486.13 nm) line. Possible deviation from local thermodynamic equilibrium (LTE) has been studied by using Hß transitions and by measuring the population factor using ArI (696.5 nm) transition. The nonideality along the plasma column has been studied using the electron-density data. The plasma approaches weakly nonideal conditions near substrate. The maximum deviation from LTE conditions also arises near the transferred anode substrate. With an increase in pressure, the volume of plasma approaches LTE.
机译:已在变化的环境压力条件(100-760托)下对Ar-H2直流转移的电弧等离子体色谱柱进行了轴向温度和电子密度的测量。发光光谱已被用作诊断工具。使用原子氢线通过相对强度法确定温度。电子密度测量值是从Hß(486.13 nm)线的Stark宽度获得的。通过使用HÃ跃迁和通过使用ArI(696.5 nm)跃迁测量人口因子,研究了与局部热力学平衡(LTE)的可能偏差。已经使用电子密度数据研究了沿等离子体柱的非理想性。等离子体接近基板附近的弱非理想条件。与LTE条件的最大偏差也出现在转移的阳极基板附近。随着压力的增加,等离子体的体积接近LTE。

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