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兵工学报 ›› 2024, Vol. 45 ›› Issue (12): 4283-4294.doi: 10.12382/bgxb.2023.0980

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六硝基六氮杂异伍兹烷基压装炸药爆轰直径效应

何超1, 刘彦1,2,*(), 白帆1,**(), 刘沫言1, 王虹富3, 黄风雷1   

  1. 1 北京理工大学 爆炸科学与安全防护全国重点实验室, 北京 100081
    2 北京理工大学 重庆创新中心, 重庆 401120
    3 中国兵器科学研究院, 北京 100089
  • 收稿日期:2023-09-27 上线日期:2024-02-06
  • 通讯作者:
  • 基金资助:
    国家自然科学基金项目(11872120); 爆炸科学与安全防护全国重点实验室基金项目(QNKT22-01)

Detonation Diameter Effect of CL-20-based Pressed Explosives

HE Chao1, LIU Yan1,2,*(), BAI Fan1,**(), LIU Moyan1, WANG Hongfu3, HUANG Fenglei1   

  1. 1 State Key Laboratory of Explosion Science and Safety Protection, Beijing Institute of Technology, Beijing 100081, China
    2 Chongqing Innovation Center, Beijing Institute of Technology, Chongqing 401120, China
    3 China Research and Development Academy of Machinery Equipment, Beijing 100089, China
  • Received:2023-09-27 Online:2024-02-06

摘要:

为推进六硝基六氮杂异伍兹烷(Hexanitrohexaazaisowurtzitane,CL-20)混合炸药在微小型起爆序列中的应用,准确掌握其传爆特性,开展了CL-20基压装炸药爆轰直径效应研究。针对一种典型的压装CL-20混合炸药(C-1,CL-20/粘结剂=95/5),通过开展冲击起爆实验,标定了该炸药Lee-Tarver冲击起爆模型的反应速率方程参数,为直径效应仿真模拟研究提供模型参数。在此基础上完成圆柱阶梯装药爆轰直径效应的数值模拟及实验验证,建立装药直径与爆轰速度(简称爆速)的关系。采用锥形装药爆轰传播的数值模拟对比分析C-1炸药与PBX9404、PBX9502 两种炸药的爆轰直径效应的差异性,依据爆速对装药直径的关系拟合得到这3种炸药的临界直径,同时掌握不同约束条件对C-1炸药爆轰临界直径的影响规律。研究结果表明:C-1炸药的爆轰临界直径(1.34mm)介于PBX9404(1.27mm)和PBX9502之间(2.3mm),这是因为炸药爆轰直径效应导致的爆速衰减与其冲击起爆特性有关,爆速衰减的不同阶段分别是由不同的反应速率项(点火、低压慢反应、高压快反应)控制;此外,随着约束条件的增强,C-1炸药的临界直径减小,采用周向全约束,可大幅削弱侧向稀疏波的影响,相比无约束装药其临界直径降低51.5%。

关键词: 六硝基六氮杂异伍兹烷基混合炸药, 点火增长模型, 直径效应, 约束条件, 临界直径

Abstract:

The detonation propagation characteristics of hexanitrohexaazaisowurtzitane (CL-20)-based pressed explosives are studied to promote the application of CL-20 mixed explosives in micro-detonation sequences. For a typical pressed CL-20 mixed explosive (C-1, CL-20/binder=95/5), the reaction rate equation parameters of Lee-Tarver shock initiation model for this explosive are calibrated through the shock initiation experiments, providing the model parameters for simulation studies of diameter effect. Based on this, the detonation diameter effect of cylindrical step charges is verified through numerical simulation and experiment, and the relationship between charge diameter and detonation velocity is established. The detonation diameter effects of C-1, PBX9404 and PBX9502 explosives are compared through the numerical simulation of conical charge detonation propagation. The critical diameters of the three explosives are obtained by fitting the relationship between detonation velocity and charge diameter, and the influence rules of different constraint conditions on the critical detonation diameter of C-1 explosive are mastered. The study shows that the critical detonation diameter of C-1 explosive (1.34mm) is between those of PBX9404 (1.27mm) and PBX9502 (2.3mm). This is because the detonation velocity decay caused by the detonation diameter effect of explosive is related to its shock initiation characteristics, and the different stages of detonation velocity decay are controlled by different reaction rate terms (ignition, low-pressure slow reaction, and high-pressure fast reaction). In addition, with the strengthening of constraint conditions, the critical diameter of C-1 explosive decreases. the influence of lateral rarefaction wave can be greatly weakened by using radial full constraint, and its critical diameter is decreased by 51.5% compared with that of unconstrained charge.

Key words: hexanitrohexaazaisowurtzitane-based mixed explosive, ignition growth model, diameter effect, constraint condition, critical diameter

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