Research Progress in the Function Mechanism of Exploding Foil Initiator

被引:0
|
作者
Chen Q.-C. [1 ]
Ma T. [1 ]
Li Y. [1 ]
机构
[1] Institute of Chemical Materials, CAEP, Mianyang
关键词
Electrical explosion; Exploding foil initiators(EFIs); Flyer shape; Flyer velocity; Shock initiation;
D O I
10.11943/CJEM2018055
中图分类号
学科分类号
摘要
From three aspects of metal foil bridge electrical explosion, electrical explosion drive flyer and flyer shock initiation explosive, the research progress in the function mechanism of exploding foil initiators was reviewed. It is considered that the exploding foil initiators have made important progress in the sectional resistivity model, advanced flyer velocity measurement technology, calculation model of the electrical explosion drive flyer velocity based on the energy conversion coefficient and the sensitivity prediction based on the critical initiation criterion etc aspects. Some regular knowledges have been obtained and the low energy design is promoted to some extent. It is pointed out that the quantitative description of energy dissipation and flyer ablation, temporal shape of the flyer in the flight, non-ideal detonation performance prediction at small scale and the micro reaction flow observation technology after the wave front will become the key points in the future research of exploding foil initiators in the electrical explosion drive flyer process under the small size condition. © 2019, Editorial Board of Chinese Journal of Energetic Materials. All right reserved.
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页码:79 / 88
页数:9
相关论文
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  • [1] Nappert L., A exploding foil initiator system, (1996)
  • [2] Yang Z.-Y., Ma S.-X., Chu E.-Y., Et al., Design and influence factors of exploding foil initiators, Initiators & Pyrotechnics, 4, pp. 18-22, (1999)
  • [3] Prinse W., Scholtes G., A Development platform for a microchip EFI, 52nd Annual Fuze Conference, 3, pp. 13-15, (2008)
  • [4] Nguyenc Q., Genberg S., Cheung C., High-G mortar electronic S& A demonstration, 50th Annual Fuze Conference, (2006)
  • [5] Chen Q.-C., Fu Q.-B., Chen L., Et al., Parametric influences on the sensitivity of exploding foil initiators, Propellants, Explosives, Pyrotechnics, 39, 4, pp. 558-562, (2014)
  • [6] Logan J.D., Lee R.S., Weingart R.C., Et al., The calculation of heating and burst phenomena in electrically exploded foils, Journal of Applied Physics, 48, 2, pp. 621-628, (1977)
  • [7] Logan J.D., Lee R.S., EBF1: a computer simulation of the preburst behavior of electrically heated exploding foils, (1976)
  • [8] Baginski M.E., Shaffer E.C., Thomas K.A., Et al., Comparison of the electrodynamics of metals under the action of large electric currents, International Journal of Applied Electromagnetics & Mechanics, 11, 2, pp. 79-93, (2000)
  • [9] Majalee A., Ikkurthi V.R., Doiphode P., Et al., Mixed 3-D/2-D simulation of an exploding foil opening switch, Pulsed Power Conference, 2, pp. 1359-1362, (2003)
  • [10] Zentler J.M., Fuze: a simple simulation model for a flyer-plate detonator system, (1982)