[1] | YE Haiwang, QIAN Zhengkun, LEI Tao, WEN Ying, LI Rui. Bedding effect and macro-micro mechanism of graphite ore dynamic mechanical properties under impact loads[J]. Explosion And Shock Waves, 2023, 43(12): 123102. doi: 10.11883/bzycj-2023-0223 |
[2] | HAN Guoqing, ZHANG Xianfeng, TAN Mengting, BAO Kuo, LI Yi. Failure characteristics of three transparent ceramics materials under the edge-on impact loading[J]. Explosion And Shock Waves, 2022, 42(5): 053102. doi: 10.11883/bzycj-2021-0292 |
[3] | YU Wanqian, YU Rui, CUI Shitang. On ductile fracture of 30CrMnSiNi2A steel considering effects of stress triaxiality[J]. Explosion And Shock Waves, 2021, 41(3): 031404. doi: 10.11883/bzycj-2020-0334 |
[4] | LI Zhijie, YOU Xiaochuan, LIU Zhanli, DU Zhibo, ZHANG Yi, YANG Ce, ZHUANG Zhuo. Numerical simulation of the mechanism of traumatic brain injury induced by blast shock waves[J]. Explosion And Shock Waves, 2020, 40(1): 015901. doi: 10.11883/bzycj-2018-0348 |
[5] | LIN Qindong, FENG Chun, TANG Dehong, LI Shihai, YIN Lingyun, WANG Ranjiang. The settlement and damage characteristics of pavement structure under impulse load[J]. Explosion And Shock Waves, 2019, 39(11): 115103. doi: 10.11883/bzycj-2018-0320 |
[6] | XU Songlin, SHAN Junfang, WANG Pengfei, HU Shisheng. Penetration performance of concrete under triaxial stress[J]. Explosion And Shock Waves, 2019, 39(7): 071101. doi: 10.11883/bzycj-2019-0034 |
[7] | WU Renjie, LI Haibo. Multi-scale failure mechanism analysis of layered phyllite subject to impact loading[J]. Explosion And Shock Waves, 2019, 39(8): 083106. doi: 10.11883/bzycj-2019-0187 |
[8] | Li Ying, Wu Weiguo, Zhang Lei, Du Zhipeng, Zhang Wei, Zhao Pengduo. Mechanism research of thin plate petaling under local loading based on multiaxial stress damage[J]. Explosion And Shock Waves, 2017, 37(3): 554-559. doi: 10.11883/1001-1455(2017)03-0554-06 |
[9] | Wu Feipeng, Liu Hongzhi, Ren Yang, Pu Chunsheng, He Yanlong, Jing Cheng. Formation mechanism and main controlling factors of rock's initial damaged zone under explosive impact effect[J]. Explosion And Shock Waves, 2016, 36(5): 663-669. doi: 10.11883/1001-1455(2016)05-0663-07 |
[10] | ZHANG She-rong, WANG Gao-hui, WANG Chao, SUN Bo. Failuremodeanalysisofconcretegravitydam
subjectedtounderwaterexplosion[J]. Explosion And Shock Waves, 2012, 32(5): 501-507. doi: 10.11883/1001-1455(2012)05-0501-07 |
[11] | ZHANG Qi-ling, LI Duan-you, LI Bo. Damagepropagationandfailuremodeofgravitydam
subjectedtounderwaterexplosion[J]. Explosion And Shock Waves, 2012, 32(6): 609-615. doi: 10.11883/1001-1455(2012)06-0609-07 |
[12] | LI Xu-dong, LIU Kai-xin, YAN Hong-hao, LI Xiao-jie, WANG Shuai. Dynamicdamageprocessofanundergroundprotectivestructure
subjectedtoimpactloading[J]. Explosion And Shock Waves, 2010, 30(5): 541-545. doi: 10.11883/1001-1455(2010)05-0541-05 |
[13] | WANG Qi-Sheng, WAN Guo-Xiang, LI Xi-Bing. Acoustic emission experiment of rock failure under coupled static-dynamic load[J]. Explosion And Shock Waves, 2010, 30(3): 247-253. doi: 10.11883/1001-1455(2010)03-0247-07 |
[14] | YAN Feng, JIANG Fu-xing. Experiment on rock damage under blasting load[J]. Explosion And Shock Waves, 2009, 29(3): 275-280. doi: 10.11883/1001-1455(2009)03-0275-06 |
[15] | CHEN De-chun, MENG Hong-xia, WU Fei-peng, ZHANG Qi. Cracking mechanism of rock by pressure pulses[J]. Explosion And Shock Waves, 2008, 28(4): 304-309. doi: 10.11883/1001-1455(2008)04-0304-06 |
[16] | LIU Hong-yan, QIN Si-qing, YANG Jun. Simulation of rock failure by numerical manifold method under blasting load[J]. Explosion And Shock Waves, 2007, 27(1): 50-56. doi: 10.11883/1001-1455(2007)01-0050-07 |
[17] | LIU Hong-yan, YANG Jun, CHEN Peng-wan. Simulation study on rockmass failure law with numerical manifold method under impact loading[J]. Explosion And Shock Waves, 2005, 25(3): 255-259. doi: 10.11883/1001-1455(2005)03-0255-05 |