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Behaviour of Cavity Formation and Convection in FeOx-SiO_2 Melts under Plasma Arc

机译:等离子弧下FeOx-SiO_2熔体中空穴形成和对流的行为

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The behaviour of oxides melted by plasma arc has been studied. Oxides of FeOx an FeOx-SiO_2 were melted by argon plasma arc. A direct-current-transferred-type plasma generator was employed. Observations of the small surface revealed that a cavity formed in the region where the plasma arc was directed and that surface flow was operative in the direction from the centre toward the edge of the melt. The depth of the cavity was governed by the balance between the hydrostatic pressure and the sum of the pressures caused by the arc and the argon gas flow. The main driving force of convection on the sample surface was the aerodynamic drag force. The temperature distribution was dependent on both the argon gas flow rate and the viscosity of the sample, because the heat from the plasma arc was mostly transported by convection on the sample surface.
机译:已经研究了等离子弧熔化的氧化物的行为。 FeOx和FeOx-SiO_2的氧化物通过氩等离子体弧熔化。使用直流转移型等离子体发生器。对小表面的观察表明,在等离子弧被引导的区域中形成了空腔,并且表面流在从熔体的中心朝向边缘的方向上起作用。腔的深度由静水压力与电弧和氩气流动所引起的压力之和之间的平衡决定。样品表面对流的主要驱动力是气动阻力。温度分布取决于氩气流速和样品粘度,因为等离子弧产生的热量大部分通过对流传递到样品表面。

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