Ben Chi, He Yong, Pan Xuchao, He Yuan, Ling Qi. Explosion-driven electromagnetic induction pulse generator[J]. Explosion And Shock Waves, 2016, 36(1): 43-49. doi: 10.11883/1001-1455(2016)01-0043-07
Citation: Chen Lang, Liu Qun, Wy Jun-ying. On shock initiation of heated explosives[J]. Explosion And Shock Waves, 2013, 33(1): 21-28. doi: 10.11883/1001-1455(2013)01-0021-08

On shock initiation of heated explosives

doi: 10.11883/1001-1455(2013)01-0021-08
Funds:

Supported by the National Natural Science Foundation of China (10832003)

the National Basic Research Program of China (973 Program) (61383)

  • Publish Date: 2013-01-25
  • An experimental device with an explosive-driven flyer plate was designed for shock initiation of the explosives at elevated temperatures. This device can heat up the acceptor explosives uniformly and keep the donor explosives out of the heating. Based on this device, the shock initiation tests were conducted for the HMX/TATB composite explosive heated to different temperatures: 14, 100, 140, 160 as well as 180 ℃, and the in-situ pressure histories were measured at various depths of the explosives. The ignition and growth reaction rate equation was used to numerically simulate the shock initiation of the explosive. Based on the experimental results, the parameters were determined for the ignition and growth reaction rate equation of the explosive shock initiation at different temperatures, the relationships were given between the model parameters and temperature, and the Pop relationships of the explosive at different temperatures were given. The results show that the shock sensitivity of the HMX/TATB composite explosive increases with an increase in the temperature, but its dependence on temperature is less than that of the HMX explosive in that the TATB explosive in the composite explosive has good desensitizing effect.
  • Cited by

    Periodical cited type(9)

    1. 郭宗韬,许进升,陈雄,曹欣宇,庞嵩林,王金东. 冲击载荷下NEPE高能固体推进剂响应特性分析及点火增长模型参数标定. 含能材料. 2025(02): 165-177 .
    2. 周静静,李子涵,黄蒙,祝艳龙,丁黎,常海. 炸药热-力耦合响应机制研究进展. 固体火箭技术. 2024(04): 446-455 .
    3. 赵娟,冯博,薛乐星,冯晓军. 不同加载压力下HMX基含铝炸药的冲击起爆特性. 爆破器材. 2021(01): 26-31 .
    4. 赵聘,陈朗,李金河,鲁建英,伍俊英. 聚能射流侵彻隔板形成的前驱冲击波起爆不同温度炸药特性. 兵工学报. 2021(01): 45-55 .
    5. 皮铮迪,陈朗,刘丹阳,伍俊英. CL-20基混合炸药的冲击起爆特征. 爆炸与冲击. 2017(06): 915-923 . 本站查看
    6. 郭红英,王召巴. 基于光纤光栅的高压固体压力传感器研究. 分析化学. 2017(07): 980-986 .
    7. 李硕,袁俊明,刘玉存,覃文志,邢宗仁,唐鑫. 聚黑-14C的传爆装置冲击起爆实验及数值模拟. 火炸药学报. 2016(06): 63-68+79 .
    8. 谭凯元,文尚刚,韩勇. 常温附近温度变化对炸药冲击起爆特征的影响(英文). 含能材料. 2016(09): 905-910 .
    9. 姜颖资,王伟力,黄雪峰,傅磊. 爆炸冲击波对反舰导弹发动机舱的毁伤效应. 海军航空工程学院学报. 2014(04): 341-344+350 .

    Other cited types(13)

  • 加载中

Catalog

    通讯作者: 陈斌, bchen63@163.com
    • 1. 

      沈阳化工大学材料科学与工程学院 沈阳 110142

    1. 本站搜索
    2. 百度学术搜索
    3. 万方数据库搜索
    4. CNKI搜索

    Article Metrics

    Article views (2956) PDF downloads(448) Cited by(22)
    Proportional views
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return