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Vacuum arc and characteristics of arc voltage in curved surface contact

机译:真空电弧和弯曲表面接触中电弧电压的特性

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In this paper, we proposed two novel contact structures for vacuum interrupter. The sine surface contacts (sin-ruled surface contact and sin-revolution surface contact) were experimental studied in the condition of 3mm opening gap. Experiments were carried out in the oscillating circuit with the contact diameter being 40mm, the anode contact material being CuW80 alloy and cathode contact being CuCr25. The vacuum arc appearance and voltage characteristics of butt contact, sine-ruled surface contact and sine-revolution surface contact were analyzed contrastively. Experimental results showed that the diffusion path of cathode spots was along the curved surface. The movement of cathode spots did not be inhibited by the curved surface. Compared to butt contact, arc voltage and voltage noise of curved surface contacts were relatively low. The losing of plasmas was a main reason why voltage noise generated. In arc stability and diffusion stage, plasmas and metal vapor were mainly absorbed by curved surface between contacts but a few of plasmas spread outside of arc gap, for which the service life of the vacuum interrupter chamber was effectively improved.
机译:在本文中,我们提出了两个用于真空断续器的新型接触结构。正弦表面触点(Sin-Ruled表面接触和Sin-Revolutions接触)在3mm开口间隙的条件下进行了实验性研究。实验在振荡电路中进行,接触直径为40mm,阳极接触材料是CuW80合金和阴极接触是CuCr25。对接接触的真空电弧外观和电压特性,正弦统治表面接触和正弦旋转表面接触进行了对比。实验结果表明,阴极斑点的扩散路径沿着弯曲表面。弯曲表面不抑制阴极斑点的运动。与对接接触相比,弯曲表面触点的电弧电压和电压噪声相对较低。丢失等离子体是产生电压噪声的主要原因。在电弧稳定性和扩散阶段,等离子体和金属蒸汽主要通过触点之间的弯曲表面吸收,但是在电弧间隙外部扩散的几种等离子体,有效地改善了真空断路器室的使用寿命。

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