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The generation of triggered shock-waves in shock-tubes with exploding wires

机译:带爆炸线的冲击管中触发冲击波的产生

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The University of Missouri-Columbia Center for Physical and Power Electronics has implemented the use of exploding wires to trigger the diaphragm in a 20.3 cm diameter PVC shock tube. The shock tube is partitioned into two segments: the driver side and the driven side. The high pressure driver side is partitioned from the low pressure side by a 0.127 mm thick Mylar sheet with an exploding wire attached to it. The shock wave is generated in the tube by pressurizing the driver side of the shock tube to 30.5 psig and discharging the energy from an 11uF capacitor bank into a 30 AWG copper wire. The 9.8 cm long wire vaporizes as 4.95 kJ of stored energy is discharged into it at a peak current of 3 kA. The wire, which is attached to the Mylar, behaves like a fuse; puncturing the Mylar diaphragm as it vaporizes. This catastrophic failure results in the low jitter generation of a shock wave whereby experiments can be timed to the arrival of the shock wave. The key benefit to minimizing the jitter of shock-wave generation allows for better timing for shock-wave diagnostics and functionality. Through experimentation, shock-wave jitter times of approximately 32 μs have been observed. This jitter provides sufficient timing capabilities to efficiently capture data, as well as synchronize external events designed to interact with the shock wave. The diagnostic suite used to analyze the characteristics of the shock wave and the exploding wire includes: a schlieren setup, a phantom V7.3 high speed camera, Kistler 603B1 pressure transducers, a Tektronix TDS2024C oscilloscope, a Northstar PVM-6 high voltage probe, and a Stangenes SI-5009 current probe. The characteristics of the shock tube, as well as the exploding wire for these experiments, are reported.
机译:密苏里大学-哥伦比亚大学物理和电力电子中心已实施了爆炸导线的使用,以触发直径为20.3厘米的PVC减震管中的振动膜。减震管分为两部分:驱动器侧和从动侧。高压驱动器侧与低压侧之间隔开一个0.127毫米厚的聚酯薄膜片,并附有一根爆炸丝。通过将冲击管的驱动器侧加压至30.5 psig,并将能量从11uF电容器组释放到30 AWG铜线中,在管中产生冲击波。 9.8厘米长的导线会蒸发,因为以3 kA的峰值电流将4.95 kJ的存储能量释放到其中。连接到聚酯薄膜的电线的行为就像保险丝。蒸发聚酯薄膜隔膜时将其刺破。这种灾难性的故障会导致冲击波的抖动降低,从而可以将实验定时到冲击波的到来。最小化冲击波产生的抖动的主要好处是可以为冲击波诊断和功能提供更好的时序。通过实验,观察到约32μs的冲击波抖动时间。这种抖动提供了足够的计时功能,可以有效地捕获数据,并同步旨在与冲击波相互作用的外部事件。用于分析冲击波和爆炸丝特性的诊断套件包括:齐列二极管装置,幻像V7.3高速摄像机,奇石乐603B1压力传感器,泰克TDS2024C示波器,Northstar PVM-6高压探头,和Stangenes SI-5009电流探头。报告了这些实验的冲击管以及爆炸线的特性。

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