首页|Study on theoretical model for electrical explosion resistivity of Al/Ni reactive multilayer foil

Study on theoretical model for electrical explosion resistivity of Al/Ni reactive multilayer foil

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Al/Ni reactive multilayer foil(RMF)possesses excellent comprehensive properties as a promising sub-stitute for traditional Cu bridge.A theoretical resistivity model of Al/Ni RMF was developed to guide the optimization of EFIs.Al/Ni RMF with different bilayer thicknesses and bridge dimensions were prepared by MEMS technology and electrical explosion tests were carried out.According to physical and chemical reactions in bridge,the electrical explosion process was divided into 5 stages:heating of condensed bridge,vaporization and diffusion of Al layers,intermetallic combination reaction,intrinsic explosion,ionization of metal gases,which are obviously shown in measured voltage curve.Effects of interface and grain boundary scattering on the resistivity of film metal were considered.Focusing on variations of substance and state,the resistivity was developed as a function of temperature at each stage.Electrical explosion curves were calculated by this model at different bilayer thicknesses,bridge dimensions and capacitor voltages,which showed an excellent agreement with experimental ones.

Al/Ni reactive multilayer foilElectrical explosionResistivity modelPhase transitionCalculation

Zehao Wang、Tao Wang、Pengfei Xue、Mingyu Li、Qingxuan Zeng

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State Key Laboratory of Explosion Science and Technology,Beijing Institute of Technology,Beijing 100081,China

China Ship Development and Design Center,Wuhan 430064,China

National Natural Science Foundation of China

11872013

2024

防务技术
中国兵工学会

防务技术

CSTPCD
影响因子:0.358
ISSN:2214-9147
年,卷(期):2024.32(2)
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