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Phase transitions of copper, aluminum, and tungsten wires during underwater electrical explosions

机译:水下电爆炸过程中铜,铝和钨丝的相变

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Using streak images of underwater electrically exploding copper, aluminum, and tungsten wires (current densities of 10(7)-10(8) A/cm(2) and energy density deposition of 10-50 kJ/g) and generated weak shocks, the onset of each phase transition, its duration, and the time when the wire explosion occurred were determined. The measured discharge current and resistive voltage were used to calculate the energy and energy density deposition. Using the discharge current waveform and the onset of the strong shock wave, the specific action integral was calculated and compared with published data. The thermodynamic parameters during the wire explosion were calculated using one-dimensional magneto-hydrodynamic simulations coupled with equations of state for water, copper, and aluminum. It was shown that the onset times of weak shocks, in general, cannot be related to the melting or the evaporation of the entire wire. Published by AIP Publishing.
机译:使用水下电爆炸铜,铝和钨丝的条纹图像(电流密度为10(7)-10(8)A / cm(2)和10-50 kJ / g的能量密度沉积,并产生弱冲击, 确定每个相转变,持续时间和发生线爆炸的时间的开始。 测量的放电电流和电阻电压用于计算能量和能量密度沉积。 使用放电电流波形和强冲击波的开始,计算并将其与已发布数据进行比较。 使用与水,铜和铝的状态方程联接的一维磁动力模拟来计算导线爆炸过程中的热力学参数。 结果表明,一般而言之,弱冲击的发病时间不能与整个电线的熔化或蒸发有关。 通过AIP发布发布。

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