• High Power Laser and Particle Beams
  • Vol. 33, Issue 6, 065010 (2021)
Ruoyu Han1, Chengzhi Deng1, Juan Feng1, Chen Li1, Weibo Yao2, and Jiting Ouyang1
Author Affiliations
  • 1Research Center for Electrostatics and Applications, School of Physics, Beijing Institute of Technology, Beijing 100081, China
  • 2State Key Laboratory of Intense Pulsed Radiation Simulation and Effect, Northwest Institute of Nuclear Technology, Xi’an 710024, China
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    DOI: 10.11884/HPLPB202133.210103 Cite this Article
    Ruoyu Han, Chengzhi Deng, Juan Feng, Chen Li, Weibo Yao, Jiting Ouyang. Discharge characteristics and spatial-temporal evolution of Cu-Ni alloy wire explosion[J]. High Power Laser and Particle Beams, 2021, 33(6): 065010 Copy Citation Text show less
    References

    [1] Chace W G, Moe H K. Exploding wires[M]. New Yk: Plenum Press, 1959.

    [3] Qiu Aici. Pulsed power technology applications[M]. Xi’an: Shaanxi Science Technology Press, 2016).

    [5] Wang Ying, Sun Yuanzhang, Run Jiangjun, et al. Science technology on pulsed power[M]. Shantou: Shantou University Press, 2010).

    [8] Pikuz S A, Sinars D B, Shelkovenko T A, et al. High energy density z-pinch plasma conditions with picosecond time resolution[J]. Physical Review Letters, 89, 035003(2002).

    [9] Ouyang Peixuan, Li Peijie, Leksina E G, et al. Effect of liquid properties on laser ablation of aluminum and titanium alloys[J]. Applied Surface Science, 360, 880-888(2016).

    [10] Liao Qilong, Tannenbaum R, Wang Zhonglin. Synthesis of FeNi3 alloyed nanoparticles by hydrothermal reduction[J]. The Journal of Physical Chemistry B, 110, 14262-14265(2006).

    [11] Chace W G. Liquid behavior of exploding wires[J]. The Physics of Fluids, 2, 230-235(1959).

    [12] Han Ruoyu, Wu Jiawei, Qiu Aici, et al. A platform for exploding wires in different media[J]. Review of Scientific Instruments, 88, 103504(2017).

    [13] Tucker T J, Toth R P. EBW1: a computer code f the prediction of the behavi of electrical circuits containing exploding wire elements[R]. Albuquerque: USDOE, 1975.

    [14] Burtsev V A, Kalinin N V, Luchinski A V. Electrical explosion of conducts its application in electrophysical installations[M]. Moscow: Energoatomizdat, 1990.

    [15] Tkachenko S I, Pikuz S A, Romanova V M, et al. Overvoltage pulse development upon electrical explosion of thin wires[J]. Journal of Physics D: Applied Physics, 40, 1742-1750(2007).

    [16] Bigelmayr M, Pieterse P, Uhrlandt D. Energy dissipation and efficiency of exploding stainless steel wires of various lengths and diameters[J]. Journal of Physics D: Applied Physics, 54, 045202(2020).

    [17] Zhao Junping, Xu Zhuo, Yan Wenyu, et al. Characteristics and diffusion of electrical explosion plasma of aluminum wire in argon gas[J]. IEEE Transactions on Plasma Science, 45, 185-192(2017).

    [18] Han Ruoyu, Zhu Wanying, Wu Jiawei, et al. Spatial–temporal evolution of plasma radiation in electrical wire explosion: a morphological observation[J]. Journal of Physics D: Applied Physics, 53, 345201(2020).

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    Ruoyu Han, Chengzhi Deng, Juan Feng, Chen Li, Weibo Yao, Jiting Ouyang. Discharge characteristics and spatial-temporal evolution of Cu-Ni alloy wire explosion[J]. High Power Laser and Particle Beams, 2021, 33(6): 065010
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