[1]DAI X G, WEN Y S, HUANG H, et al. Impact response characteristics of a cyclotetramethylene tetranitromine based polymer-bonded explosives under different temperatures [J]. Journal of Applied Physics, 2013, 114(11): 114906.
[2]刘鹏飞, 智小琦, 杨宝良, 等. 六棱钨柱冲击起爆带壳B炸药比动能阈值研究[J]. 高压物理学报, 2017, 31(5): 637-642.
LIU P F, ZHI X Q,YANG B L, et al. Specific kinetic energy threshold of impacting initiation covered explosive B by six-prismed tungsten fragment [J]. Chinese Journal of High Pressure Physics, 2017, 31(5): 637-642.
[3]朱福林, 陈阳, 崔卫超, 等. DU合金破片冲击起爆B炸药研究[J]. 兵器装备工程学报, 2019, 40(3): 69-72.
ZHU F L, CHEN Y, CUI W C, et al. Study on impact initiation of Comp.B by DU alloy fragment [J]. Journal of Ordnance Equipment Engineering, 2019, 40(3): 69-72.
[4]仝远, 李德贵, 聂源, 等. 钨合金破片对屏蔽B炸药撞击起爆数值模拟[J]. 空天防御, 2021, 4(3): 70-75.
TONG Y, LI D G, NIE Y, et al. Numerical simulation of shock initiation of shielded composition B impacted by tungsten alloy fragment [J]. Air & Space Defense, 2021, 4(3): 70-75.
[5]杨洋, 韩勇, 段英良, 等. 双钨球破片同时冲击柱壳装药起爆响应规律[J]. 兵工学报, 2021, 42(增刊1): 46-52.
YANG Y, HAN Y, DUAN Y L, et al. Initiation response law of cylindrical charge subjected to simultaneous impact of two tungsten ball fragments [J]. Acta Armamentarii, 2021, 42(Suppl.1): 46-52.
[6]郭淳, 郭尚生, 钱建平, 等. 双球破片冲击柱壳装药的临界起爆条件[J]. 国防科技大学学报, 2022, 44(2): 188-194.
GUO C, GUO S S, QIAN J P, et al. Critical initiation condition of cylindrical covered charge by double spherical fragments impact [J]. Journal of National University of Defense Technology, 2022, 44(2): 188-194.
[7]郑英, 黎坤海, 赵铮, 等. Comp B炸药枪击数值仿真研究[J]. 兵器装备工程学报, 2022, 43(12): 158-164.
ZHENG Y, LI K H, ZHAO Z, et al. Numerical simulation of gunshot values of Comp B [J]. Journal of Ordnance Equipment Engineering, 2022, 43(12): 158-164.
[8]郭淳, 张先锋, 熊玮. 双EFP冲击引爆带盖板B炸药的累积毁伤效应[J]. 含能材料, 2023, 31(8): 797-807.
GUO C, ZHANG X F, XIONG W. Cumulative damage effect on shock initiation of covered Composition B by dual EFP impacts [J]. Chinese Journal of Energetic Materials, 2023, 31(8): 797-807.
[9]吕鹏博, 王伟力, 刘晓夏, 等. 含裂纹装药缺陷的侵爆战斗部穿甲过程装药安定性的数值模拟研究[J]. 兵器装备工程学报, 2017, 38(11): 26-30.
LU P B, WANG W L, LIU X X, et al. Research on numerical simulation of stability of the charge of invasion of explosive warheads containing seam defects in armor-piercing process [J]. Journal of Ordnance Equipment Engineering, 2017, 38(11): 26-30.
[10]HASKINS P J, COOK M D, ELERT M, et al. On delayed detonation(XDT) under fragment impact:an analysis of experimental data and a simple phenomenological model [J].AIP Conference Proceedings, 2009, 1195(1): 205-208.
[11]金朋刚, 姜夕博, 李鸿斌, 等. 冲击损伤对炸药装药冲击起爆特性的影响[J]. 装备环境工程, 2019, 16(9): 1-4.
JING P G, JIANG X B, LI H B, et al. Effects of shock insults on explosive charges shock wave sensitivity [J]. Equipment Environmental Engineering, 2019, 16(9): 1-4.
[12]孙宝平, 段卓平, 刘彦, 等. 破片撞击损伤装药点火数值模拟[J]. 含能材料, 2019, 27(3): 178-183.
SUN B P, DUAN Z P, LIU Y, et al. Numerical simulation on damaged charge ignition by fragment impact [J]. Chinese Journal of Energetic Materials, 2019, 27(3): 178-183.
[13]屈可朋, 赵志江, 沈飞, 等. 高速破片撞击下带壳装药响应及防护的试验研究[J]. 火炸药学报, 2019, 42(2): 185-190.
QU K P, ZHAO Z J, SHEN F, et al. Experimental study on response and protection of charge with shell under high velocity fragment impact [J]. Chinese Journal of Explosives & Propellants, 2019, 42(2): 185-190.
[14]成丽蓉, 汪德武, 贺元吉. 侵彻单层和多层靶时战斗部装药损伤及热点生成机理研究[J]. 兵工学报, 2020, 41(1): 32-39.
CHENG L R, WANG D W, HE Y J. Research on the damage and hot-spot generation in explosive charges during penetration into single-or multi-layer target[J]. Acta Armamentarii, 2020, 41(1): 32-39.
[15]聂少云, 薛鹏伊, 代晓淦. 模拟多层穿靶过程装药安全性评价方法[J]. 火炸药学报, 2020, 43(5): 537-542.
NIE S Y, XUE P Y, DAI X G. Method of evaluating the safety of charging in a multilayer penetration process[J]. Chinese Journal of Explosives & Propellants, 2020, 43(5): 537-542.
[16]张萌昭, 周涛, 郭洪福, 等. 侵彻多层间隔靶板装药损伤特性研究[J]. 兵器装备工程学报, 2021, 42(12): 92-97.
ZHANG M Z, ZHOU T, GUO H F, et al. Experimental study of charge damage in multi-layer target penetration process [J]. Journal of Ordnance Equipment Engineering, 2021, 42(12): 92-97.
[17]王一鸣, 刘睿, 陈鹏万, 等. 损伤累积下PBX炸药低速撞击点火行为的数值模拟[J]. 火炸药学报, 2023, 46(5): 456-464.
WANG Y M, LIU R, CHEN P W, et al. Numerical simulation on low-velocity impact ignition behavior of PBXs with damage accumulation [J]. Chinese Journal of Explosives & Propellants, 2023, 46(5): 456-464.
[18]LEE E L, TARVER C M. Phenomenological model of shock initiation in heterogeneous explosive [J]. Physics of Fluids, 1980, 23(12): 2362-2372.
[19]URTIEW P A, VANDERSALL K S, TARVER C M ,et al. Shock initiation experiments and modeling of Composition B and C4 [J]. Office of Scientific & Technical Information Technical Reports, 2006.
[20]林莉, 支旭东, 范锋, 等. Q235 B钢Johnson-Cook模型参数的确定 [J]. 振动与冲击, 2014, 33(9): 153-158, 172.
LI L, ZHI X D, FAN F, et al. Determination of parameters of Johnson-Cook models of Q235 B steel [J]. Journal of Vibration and Shock, 2014, 33(9): 153-158, 172.
[21]陈刚, 陈小伟, 陈忠富, 等. A3钢钝头弹撞击45钢板破坏模式的数值分析[J]. 爆炸与冲击, 2007, 27(5): 390-397.
CHEN G, CHEN X W, CHEN Z F, et al. Simulations of A3 steel blunt projectiles impacting 45 steel plates[J]. Explosion and Shock Waves, 2007, 27(5): 390-397.
[22]JOHNSON G R, COOK W H. A constitutive model and data for metals subjected to large strains, high strain rates and high temperatures[J]. Engineering Fracture Mechanics, 1983, 21: 541-548.
[23]LITTLEFIELD D L, ANDERSON C E, PARTOM Y, et al. The penetration of steel targets finite in radial extent [J]. International Journal of Impact Engineering, 1997, 19(1): 49-62.
[24]彭建祥. Johnson-Cook本构模型和Steinberg本构模型的比较研究[D]. 绵阳: 中国工程物理研究院, 2006.
PENG J X. Comparative study of Johnson-Cook constitutive model and Steinberg constitutive model [D]. Mianyang: China Academy of Engineering Physics, 2006.
[25]赵铮, 李晓杰, 闫鸿浩, 等. 爆炸压实过程中颗粒碰撞问题的SPH法数值模拟[J]. 高压物理学报, 2007, 21(4): 373-378.
ZHAO Z, LI X J, YAN H H, et al. Numerical simulation of particles impact in explosive-driven oil process using SPH method [J]. Chinese Journal of High Pressure Physics, 2007, 21(4): 373-378.
[26]陈鹏万, 丁雁生, 何松伟, 等.炸药冲击损伤的实验研究[J]. 含能材料, 2003, 11(1): 13-17.
CHEN P W, DING Y S, HE S W, et al. Experimental study on the impact damage of selected explosives [J]. Chinese Journal of Energetic Materials, 2003, 11(1):13-17.
[27]姚惠生, 黄风雷, 张宝銔. 炸药冲击损伤及损伤炸药冲击起爆实验研究[J]. 北京理工大学学报, 2007(6): 487-490.
YAO H S, HUANG F L, ZHANG B P. Experimental study on the impact damage and shock initiation of damaged explosives [J]. Transactions of Beijing Institute of Technology, 2007(6): 487-490.
[28]李一鸣, 杨晓红, 姚文进, 等.背板材料及炸药厚度对破片冲击起爆8701炸药装药的影响[J]. 火炸药学报, 2020, 43(3): 276-281.
LI Y M, YANG X H, YAO W J, et al. Effects of back plate materials and explosive thickness on the fragment impact initiation of 8701 explosive charge [J]. Chinese Journal of Explosives & Propellants, 2020, 43(3): 276-281.?
[29]高光发. 波动力学基础[M]. 北京: 科学出版社,2019.
GAO G F. Fundamentals of wave dynamics [M]. Beijing: Science Press, 2019.