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Effect of Circuit Parameters and Wire Properties on Exploding a Copper Wire in Water

机译:电路参数和导线特性对水中铜线爆炸的影响

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The physical processes that occur during the initial stages of nanosecond explosion of thin wires play an important role in the development of plasma for nanoparticle preparation. The transition of the wire material from the condensed state to conducting plasma has not yet been fully understood. In this paper, underwater electrical explosions of copper wires were investigated with pulsed voltage in the timescale of a few microseconds. A self-integrating Rogowski coil and a voltage divider were used for the measurements of the current and the voltage on the wire load, respectively. The current rise rate was adjusted by changing the circuit parameters, including the discharge voltage and circuit inductance, and the copper wire properties consisting of the length and the diameter. The effect of the current rise rate on the phase transitions involving melting from solid to liquid and vaporization from superheated liquid to the vapor–drop mixture was obtained by the analysis of the current and voltage waveforms of copper wire explosion. The energy of melting and vaporization was calculated based on experimental waveforms of current and voltage. In addition, the effect of applied voltage, circuit inductance, and the length and diameter of copper wire was acquired on the electrical explosion characteristics of copper wires.
机译:在纳秒级细丝爆炸的初始阶段发生的物理过程在制备纳米粒子的等离子体中起着重要作用。导线材料从凝结状态到导电等离子体的过渡尚未完全了解。本文以脉冲电压在几微秒的时间范围内研究了铜线的水下电爆炸。使用自积分Rogowski线圈和分压器分别测量线负载上的电流和电压。通过改变电路参数(包括放电电压和电路电感)以及包括长度和直径的铜线特性,可以调整电流上升率。通过分析铜线爆炸的电流和电压波形,可以得出电流上升速率对包括从固体到液体的熔化以及从过热的液体到汽滴混合物的汽化的相变的影响。根据电流和电压的实验波形计算出熔化和汽化的能量。另外,获得了施加电压,电路电感以及铜线的长度和直径对铜线的电爆炸特性的影响。

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