非转移直流等离子体炬在各种纯气体和混合气体组合下的热特性

T. Beuthe, J. Chang, N. Hayashi, S. Ono, A. Kaliński, D. Galicki, K. Brodowicz
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引用次数: 0

摘要

研究了两种非转移直流电浆火炬在Ar、N/ sub2 /、H/ sub2 /、O/ sub2 /和CO/ sub2 /混合气体组合下,工作功率在10 ~ 80 kW之间的热特性。Acurex火炬包含一个轴向冲击,大约10厘米长的流动稳定等离子弧和一个可拆卸的混合部分。MWR-1火炬包含一个径向击打的等离子弧,长0.5-2 cm,但没有混合段。MWR-1火炬的典型径向温度曲线表明等离子体在进入反应室后迅速淬灭。Acurex火炬的效率远低于MWR-1火炬(通常为50%对75%)。等离子体气体中N/sub - 2/、空气、Ar和H/sub - 2/的含量对火炬的热效率有显著影响。与MWR-1火炬相比,安装了混合腔的Acurex火炬能够实现更好的等离子体气体混合。侧注气体倾向于提高等离子体的下游温度。Ar-H/sub - 2/等离子体中H/sub - 2/浓度的增加降低了火炬出口附近的温度,并提高了火炬下游的温度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thermal characteristics of non-transferred DC plasma torches under various combinations of pure and mixture gases
The thermal characteristics of two nontransferred DC plasma torches have been investigated for operating powers between 10 and 80 kW for various combinations of Ar, N/sub 2/, H/sub 2/, O/sub 2/ and CO/sub 2/ gas mixtures. The Acurex torch contained an axially struck, flow-stabilized plasma arc roughly 10-cm long and a removable mixing section. The MWR-1 torch contained a radially struck plasma arc 0.5-2-cm long but no mixing section. Typical radial temperatures profiles of the MWR-1 torch indicate the rapidity with which the plasma quenches on entering the reaction chamber. The Acurex torch was much less efficient than the MWR-1 torch (typically 50% versus 75%). The thermal efficiency of the torches was significantly affected by the fraction of N/sub 2/, air, Ar, and H/sub 2/ in the plasma gas. The Acurex torch with the mixing plenum in place was able to achieve much better mixing of the plasma gas than the MWR-1 torch. Side injection of gas tended to raise the downstream temperature of the plasma. Increasing concentrations of H/sub 2/ in the Ar-H/sub 2/ plasma decreased the temperature near the exit of the torch and increased the temperature further downstream.<>
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