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Distribution of matter in the current-carrying plasma and dense core of the discharge channel formed upon electrical wire explosion

机译:电线爆炸形成的载流等离子体和放电通道的密集芯中的物质分布

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摘要

Distribution of matter in the discharge channel formed upon a nanosecond electrical explosion of a single wire in air and vacuum was studied experimentally. Simultaneous use of optical, UV, and X-ray diagnostics made it possible to distinguish qualitatively different regions of the discharge channel, such as the current-carrying layers and the region occupied by a weakly conducting cold plasma. Several series of experiments with 25-A mu m-diameter 12-mm-long wires made of different materials were performed. The charging voltage and the current amplitude were varied in the ranges of U (0) = 10-20 kV and I (max) similar to 5-10 kA, respectively. Explosion regimes with a current pause and with and without current interruption, as well as with wire preheating in air and vacuum, were studied. Shadow and schlieren images of the discharge channel were obtained using optical probing at the second harmonic of a YAG: Nd+3 laser (lambda = 0.532 A mu m, tau similar to 10 ns). In the experiments carried out in vacuum, X-ray images of the discharge channel were also obtained using an X-pinch as a point source of probing radiation and UV images were recorded using a four-frame MCP camera.
机译:实验研究了单根电线在空气和真空中纳秒级电爆炸形成的放电通道中物质的分布。同时使用光学,紫外线和X射线诊断程序可以区分放电通道的定性不同区域,例如载流层和弱导电冷等离子体所占据的区域。使用由不同材料制成的直径为25 A的直径12毫米的导线进行了一系列的实验。充电电压和电流幅度分别在U(0)= 10-20 kV和I(max)的范围内变化,分别类似于5-10 kA。研究了具有电流暂停,有电流中断和无电流中断以及在空气和真空中导线预热的爆炸状态。使用光学探测在YAG:Nd + 3激光(λ= 0.532 Aμm,tau近似于10 ns)的二次谐波下获得放电通道的阴影和schlieren图像。在真空中进行的实验中,还使用X捏作为探测辐射的点源获得了放电通道的X射线图像,并使用四幅MCP相机记录了UV图像。

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