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Acta Armamentarii ›› 2024, Vol. 45 ›› Issue (S1): 10-19.doi: 10.12382/bgxb.2024.0511

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Simulation on Detonation Transfer/Explosion Interruption Performance of Flyer-type Fuze Micro-explosive Train

KAN Wenxing1, FENG Hengzhen1,*(), LOU Wenzhong1, TIAN Zhongwang2, FAN Chenyang2, SHI Yonghui3   

  1. 1 School of Mechatronical Engineering, Beijing Institute of Technology, Beijing 100081, China
    2 Xi’an Institute of Electromechanical Information Technology, Xi’an 710065, Shaanxi,China
    3 Beijing Institute of Mechanical and Electrical Engineering, Beijing 100074, China
  • Received:2024-06-28 Online:2024-11-06
  • Contact: FENG Hengzhen

Abstract:

The size of micro-charge (copper azide) and the thickness of metal flyer are the key factors affecting the reliability of fuze micro-explosive train. A detonation transfer/explosion-proof energy transfer/suppression model of metal flyer micro-explosive train driven by micro-charge is constructed, and a design method for micro-explosive train with size boundaries, such as micro-charge size and metal flyer thickness, is proposed. The research results indicate that the speed of metal flyer(2200m/s) increases slowly when the diameter of micro-charge is greater than 0.8mm. When the height of micro-charge is greater than 0.5mm, the metal flyer moves at a stable speed, which can reliably detonate the next charge. When the size of micro-charge is constant, the speed of metal flyer decreases with the increase of its thickness. The thickness of the flyer increases from 25μm to 50μm, which can realize the reliable detonation of micro-explosive train. Through the simulation analysis of explosion-proof slider thickness of MEMS fuze security mechanism, it is verified that the 0.2mm-thick nickel-based slider can stably realize the explosion interruption, and the detonation transfer/explosion interruption design boundaries of flyer-type fuze micro-explosive train are finally formed.

Key words: fuze, micro-explosive train, flyer, detonation transfer, explosion interruption

CLC Number: