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[2] | SONG Fuchen, GUO Hui, CHEN Yu. Study on resistance of UHMWPE thin panels to oblique penetration of small arms ammo[J]. Explosion And Shock Waves, 2024, 44(11): 113301. doi: 10.11883/bzycj-2023-0208 |
[3] | ZHU Chao, ZHANG Xiaowei, ZHANG Qingming, ZHANG Tao. Structural response and failure of projectiles obliquely penetrating into double-layered steel plate targets[J]. Explosion And Shock Waves, 2023, 43(9): 091408. doi: 10.11883/bzycj-2023-0017 |
[4] | WEI Haiyang, ZHANG Xianfeng, XIONG Wei, ZHOU Jiequn, LIU Chuang, FENG Xiaowei. Oblique penetration of elliptical cross-section projectile into metal target[J]. Explosion And Shock Waves, 2022, 42(2): 023304. doi: 10.11883/bzycj-2021-0291 |
[5] | ZHANG Jian, XU Yuxin, LIU Tielei, ZHANG Peng. Oblique penetration effect of a tungsten ball on high hardness steel[J]. Explosion And Shock Waves, 2022, 42(2): 023302. doi: 10.11883/bzycj-2021-0427 |
[6] | ZHANG Xinxin, WU Haijun, HUANG Fenglei, PI Aiguo. Structural response of the concrete target obliquely penetrated by a grooved-tapered projectile[J]. Explosion And Shock Waves, 2019, 39(3): 033301. doi: 10.11883/bzycj-2017-0047 |
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[9] | Xue Jianfeng, Shen Peihui, Wang Xiaoming. Experimental study and numerical simulation of projectile obliquely penetrating into concrete target[J]. Explosion And Shock Waves, 2017, 37(3): 536-543. doi: 10.11883/1001-1455(2017)03-0536-08 |
[10] | Deng Jiajie, Zhang Xianfeng, Qiao Zhijun, Guo Lei, He Yong, Chen Dongdong. An analytic model of penetration for oval-nosed projectile penetrating into pre-drilled target[J]. Explosion And Shock Waves, 2016, 36(5): 625-632. doi: 10.11883/1001-1455(2016)05-0625-08 |
[11] | XIAO Wei-guo, WANG Xiao-jun, ZHU Hao-feng, JIN Ping. Experimentalstudyonseismiccouplingeffectsofundergroundexplosions
indifferentmaterial[J]. Explosion And Shock Waves, 2012, 32(3): 267-272. doi: 10.11883/1001-1455(2012)03-0267-06 |
[12] | WU Hao, FANGQin, GONG Zi-ming. Semi-theoreticalanalysesforpenetrationdepthofrigidprojectiles
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[13] | GE Tao, LIU Bao-Rong, WANG Ming-Yang. perforation of concrete targets with finite thickness by projectiles deceleration[J]. Explosion And Shock Waves, 2010, 30(2): 159-163. doi: 10.11883/1001-1455(2010)02-0159-05 |
[14] | LI De-cong, CHEN Li, DING Yan-sheng. A model of explosion induced by friction in the process of loaded projectiles penetrating into concrete targets[J]. Explosion And Shock Waves, 2009, 29(1): 13-17. doi: 10.11883/1001-1455(2009)01-0013-05 |
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[17] | CHEN Xiao-wei, ZHANG Fang-ju, YANG Shi-quan, XIE Ruo-ze, GAO Hai-ying, XU Ai-ming, JIN Jian-ming, QU Ming. Mechanics of structural design of EPW(Ⅲ): Investigations on the reduced-scale tests[J]. Explosion And Shock Waves, 2006, 26(2): 105-214. doi: 10.11883/1001-1455(2006)02-0105-10 |
[18] | MI Shuang-shan, ZHANG Xi-en, TAO Gui-ming. Finite element analysis of spherical fragments penetrating LY-12 aluminum alloy target[J]. Explosion And Shock Waves, 2005, 25(5): 477-480. doi: 10.11883/1001-1455(2005)05-0477-04 |
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