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The Energetic Structure of Plasma Arc Anode under Reduction Melting of Quartz-Leucoxene Concentrate

机译:石英脱苏氧烯浓缩物减少熔化下等离子体弧形阳极的能量结构

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The laboratory plasma arc reduction melting of material on the basis of Ti-Si oxides is described. The melting was carried out in a 75 mm graphite crucible which was the anode of the arc. Agraphite electrode was the cathode. The electrode was 50 mm in diameter and had an axial channel through which argon was fed. The current of the arc was up to 500 A, and the length of the arc was up to 10 mm. The sum of the electrode voltage drops, the resistance of the material, and the capacity of Joule heating were determined. The capacity of resistance heating was up to 70% of total capacity. The resistance of the material was also calculated theoretically on the basis of the heat model of anode spot. The theoretical and experimental data are in good correlation. The resistance of the material and the Joule heating capacity are maximal when the material is cold and decrease to zero upon its melting.
机译:描述了基于Ti-Si氧化物的材料的实验室等离子体弧形熔化。熔化在75mm石墨坩埚中进行,该坩埚是弧的阳极。 AVROWITE电极是阴极。直径为50mm,轴向通道通过该轴向通道。电弧的电流高达500a,电弧的长度高达10 mm。确定电极电压降,材料的电阻和焦耳加热容量的总和。抵抗力加热能力高达总容量的70%。理论上还基于阳极点的热模型理论上计算材料的电阻。理论和实验数据具有良好的相关性。当材料冷却时,材料的电阻和焦耳加热容量是最大的,并且在其熔化时变为零。

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