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Effect of Substrate Thickness on Exploding Films

机译:基板厚度对爆炸膜的影响

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The exploding wire phenomenon is well researched due to its vast and practical applications which include, but are not limited to, shock wave generation, pulsed power, Z pinch physics, plasma ignition, fuses, and fusing applications. However, the focus of this research is on a surrogate for exploding wires. In this research, metallized capacitor grade-polypropylene film was used as an alternative for the traditional wire of a uniform diameter. The films that were studied have a broad variety of thicknesses ranging from 7 micron to 5 mil, lengths ranging from 5.08 cm to 19.05 cm, and sheet resistances of 1 ohm/square and 7 ohms/square. These films were used to study the effect of film properties on the transient plasma generation mechanism when exposed to a rapid high voltage discharge. The effect of these properties can be seen in the current waveform, similar to that of a uniform diameter exploding wire. By precisely understanding how the film properties affect the transient plasma formation, one can fine tune these variables to control the resulting characteristic pulse wave shape to fit a desired application.
机译:由于其包括但不限于冲击波产生,脉冲功率,Z捏合物理,等离子体点火,保险丝和定影应用,因此爆炸线现象很好地研究。然而,这项研究的重点是用于爆炸线的代理。在该研究中,使用金属化电容器级 - 聚丙烯薄膜作为均匀直径的传统电线的替代方案。研究的薄膜具有众多厚度,范围为7微米至5密耳,长度范围为5.08厘米至19.05cm,以及1欧姆/平方和7欧姆/平方的薄层电阻。这些薄膜用于在暴露于快速高压放电时研究膜性能对瞬态等离子体产生机制的影响。可以在电流波形中看到这些性质的效果,类似于均匀直径爆炸线的影响。通过精确了解膜特性如何影响瞬态等离子体形成,可以微调这些变量来控制所产生的特征脉冲波形以适合所需的应用。

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