43 / 2023-08-29 20:50:37
Effect of surface roughness of ceramic substrate on microstructure and electric detonation performance of explosive foil
exploding foil initiator; surface roughness;magnetron sputtering ; Electric detonation performance
终稿
Zhou Mi / Shaanxi Applied Physics-Chemistry Research Institute
Meng Qingying / Shaanxi Applied Physics-Chemistry Research Institute
Li Ming / Science and Technology on Applied Physical Chemistry Laboratory
Li Jiao / Shaanxi Applied Physics-Chemistry Research Institute
Lei Jie / Shaanxi Applied Physics-Chemistry Research Institute
DIWU Minjie / Shaanxi Applied Physics-Chemistry Research Institute
Ren Xiaoming / (Science and Technology on Applied Physical Chemistry Laboratory,Shaanxi Applied Physics-Chemistry Research Institute
Yin Guofu / Science and Technology on Applied Physical Chemistry Laboratory
In order to study the effect of the surface roughness of the ceramic substrate on the microstructure and electric explosion performance of the explosive foil, copper films were prepared by magnetron sputtering on three kinds of alumina ceramic substrates with different surface roughness (surface roughness is 0.01um, 0.12um, 0.25um, respectively), and the corresponding copper explosive foils were successfully obtained by lithography technology. The structure and morphology of the three samples were characterized by scanning electron microscope, confocal microscope, white light interferometer, atomic force microscope and four-probe resistivity tester. The results of the electrical explosion performance test of the three samples showed that when the charging voltage was low, the discharge capacity of the high surface roughness was significantly lower than that of the peak current and burst current of the low surface roughness. Moreover, the explosion time is significantly advanced, and the greater the surface roughness, the more defects of the energy exchange element, which will cause the advance of the electric explosion time, when the charging voltage is larger, the impact caused by the surface roughness will be significantly smaller.

 
重要日期
  • 会议日期

    11月02日

    2023

    11月04日

    2023

  • 12月15日 2023

    初稿截稿日期

  • 12月20日 2023

    注册截止日期

主办单位
IEEE Instrumentation and Measurement Society
Xidian University
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