[1] | MU Gongyu, LUO Ning, SHEN Tao, LIANG Hanliang, CHAI Yabo, ZHAI Cheng. Mechanism of damage-induced fracture formation in shale reservoir penetrated by shaped charge jet[J]. Explosion And Shock Waves, 2023, 43(3): 033301. doi: 10.11883/bzycj-2022-0182 |
[2] | JIANG Wencan, CHENG Xiangzhen, LIANG Bin, NIE Yuan, LU Yonggang. Numerical simulation and experimental study on the damage of water partitioned structure by a shaped charge warhead with a combined charge liner[J]. Explosion And Shock Waves, 2022, 42(8): 083303. doi: 10.11883/bzycj-2021-0389 |
[3] | JIANG Jianwei, PENG Jiacheng. Research advances in circumferential multiple linear explosively-formed projectile technology[J]. Explosion And Shock Waves, 2021, 41(10): 101102. doi: 10.11883/bzycj-2021-0017 |
[4] | LI Peng, LI Gang, YUAN Baohui, ZHOU Tao, SUN Xingyun. A rod-shaped explosively formed penetrator warhead[J]. Explosion And Shock Waves, 2018, 38(4): 883-890. doi: 10.11883/bzycj-2016-0356 |
[5] | LI Peng, LI Gang, YUAN Baohui, ZHOU Tao, JING Yidong. Influence of rotation on damage power of an explosively-formed rod-like penetrator[J]. Explosion And Shock Waves, 2018, 38(3): 616-621. doi: 10.11883/bzycj-2016-0263 |
[6] | Li Xuejiao, Ma Honghao, Shen Zhaowu. Explosive welding of interface between aluminum alloy and steel plate with dovetail grooves[J]. Explosion And Shock Waves, 2016, 36(5): 640-647. doi: 10.11883/1001-1455(2016)05-0640-08 |
[7] | Chen Chuang, Wang Xiao-ming, Li Wen-bin, Li Wei-bing, Dong Xiao-liang. Effect of matching of detonation waveform with liner configuration on the rod-like jet formation[J]. Explosion And Shock Waves, 2015, 35(6): 812-819. doi: 10.11883/1001-1455(2015)06-0812-08 |
[8] | Wan Wen -qian, Yu Dao-qiang, Peng Fei, Wang Wei -ming, Yang Tian -hai. Formation and terminal effect of an explosively -formed penetrator made by energetic materials[J]. Explosion And Shock Waves, 2014, 34(2): 235-240. doi: 10.11883/1001-1455(2014)02-0235-06 |
[9] | Hou Xiu-cheng, Jiang Jian-wei, Chen Zhi-gang. Numerical simulation on structure modules of effective jet[J]. Explosion And Shock Waves, 2014, 34(1): 35-40. doi: 10.11883/1001-1455(2014)01-0035-06 |
[10] | HuLi-shuang, HuShuang-qi, CaoXiong, SunJian-bing. Initiationcapacityofaspecialshapeboosterpellet[J]. Explosion And Shock Waves, 2013, 33(2): 207-211. doi: 10.11883/1001-1455(2013)02-0207-05 |
[11] | ZHENG Yu, WANG Xiao-ming, LI Wen-bin, MIAO Qin-shu, LI Wei-bing. FormationofshapedchargewithdoublelayerlinersintotandemEFP[J]. Explosion And Shock Waves, 2012, 32(1): 29-33. doi: 10.11883/1001-1455(2012)01-0029-05 |
[12] | GAO Hong-quan, LU Fang-yun, WANG Shao-long, LUO Yong-feng, YAN Peng, YUAN Wei, HU Jian. Influencesofinnershellsoutsidedisperseexplosive
onSEFAEdamagepower[J]. Explosion And Shock Waves, 2011, 31(4): 380-384. doi: 10.11883/1001-1455(2011)04-0380-05 |
[13] | LI Ru-jiang, LIU Tian-sheng, SHEN Zhao-wu, FAN Zi-jian. On stability of jet produced by shaped charge with porous liner[J]. Explosion And Shock Waves, 2009, 29(2): 217-220. doi: 10.11883/1001-1455(2009)02-0217-04 |
[14] | HUANG Feng-lei, ZHANG Lei-lei, DUAN Zhuo-ping. Shaped charge with large cone angle for concrete target[J]. Explosion And Shock Waves, 2008, 28(1): 17-22. doi: 10.11883/1001-1455(2008)01-0017-06 |
[15] | WU Han-ling, DUAN Zhuo-ping, WANG Yong-qing. Simulation investigation of rod-like jets[J]. Explosion And Shock Waves, 2006, 26(4): 328-332. doi: 10.11883/1001-1455(2006)04-0328-05 |
[16] | LI Xiao-jie, ZHAO Zheng, QU Yan-dong, CHEN Tao, WANG Zhan-lei. Producing CuCr alloy by explosive sintering[J]. Explosion And Shock Waves, 2005, 25(3): 251-254. doi: 10.11883/1001-1455(2005)03-0251-04 |