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首页> 外文期刊>Russian physics journal >PECULIARITIES OF AN ELECTRICAL EXPLOSION OF FLAT CONDUCTORS IN THE CURRENT SKINNING MODE
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PECULIARITIES OF AN ELECTRICAL EXPLOSION OF FLAT CONDUCTORS IN THE CURRENT SKINNING MODE

机译:当前剥皮模式下扁平导体电气爆炸的特性

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The propagation of a nonlinear magnetic-field diffusion wave generated under the condition of an electrical explosion of flat conductors is investigated in the current skinning mode. Using a MIG terrawatt generator, a number of experiments are performed on electrical explosion of a copper foil, 100 mu m in thickness and 5 mm in width, at the current amplitude up to 2.5 MA and its rise rate 100 ns. It is shown that under these conditions a plasma channel is formed by approximately 75-th ns from the current onset. The estimations, made considering the magnetic field enhancement on the foil edges, demonstrate that about 70-80 ns are required for the nonlinear magnetic-field diffusion wave to propagate from the foil edge to its center. A good agreement of the experimental data and the estimates suggested a conclusion that the plasma channel formation is due to the convergence of the nonlinear diffusion wave towards the longitudinal foil axis.
机译:在当前的剥皮模式下研究了在扁平导体的电爆炸条件下产生的非线性磁场扩散波的传播。 使用MIG Terrawatt发电机,在铜箔的电爆炸,100μm的厚度和5mm的电流幅度下进行多个实验,在电流幅度高达2.5 mA,其上升速率100ns。 结果表明,在这些条件下,等离子体通道由来自电流发作的大约75个NS形成。 考虑箔边缘上的磁场增强的估计证明了非线性磁场扩散波需要约70-80ns,以从箔边缘传播到其中心。 实验数据的良好一致性和估计表明了等离子体通道形成是由于非线性扩散波朝向纵向箔轴线的收敛性的结论。

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