爆炸膜对等离子体形成的几何影响

J. Zirnheld, K. Burke, P. Strzempka, A. Kraus, M. Donadio, M. Sussmann, H. Moore, H. Singh
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引用次数: 0

摘要

金属化聚丙烯薄膜(MPPF)在许多应用中可以作为爆炸线的替代材料。与电线相比,MPPF在结构上更加坚固,并且可以更容易地针对特定应用进行成型。如果需要长膜,可以对膜进行塑形以适应各种几何形状。在我们的实验中,MPPF和13″都表现出等离子体形成。实验分析了薄膜的几何形状及其取向对瞬态等离子体形成的影响。进行了平面几何和半圆几何的试验。对结果进行了分析并给出了结果。
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Geometrical effects of exploding film on plasma formation
Metallized polypropylene films (MPPF) can serve as an alternate for exploding wires in many applications. Compared to wires, MPPF is more structurally robust and can be shaped more easily for specific applications. If long films are desired, the film can be shaped to fit a variety of geometries. In our experiments, MPPF as along as 13″ have exhibited plasma formation. Experiments were performed to analyze the effect of the geometry of the film, and its orientation on transient plasma formation. Tests with flat geometries and semi-circular geometries were conducted. The results have been analyzed and are presented.
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