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JOURNALS // Prikladnaya Mekhanika i Tekhnicheskaya Fizika

Prikl. Mekh. Tekh. Fiz., 2013, Volume 54, Issue 1, Pages 13–24 (Mi pmtf1214)

Analytical performance study of explosively formed projectiles
G. Hussain, A. Hameed, J. G. Hetherington, A. Q. Malik, Kh. Sanaullah

This publication is cited in the following articles:
  1. Byeong-Kwan So, Hong-Jip Kim, “Study on the Effect of Initiation Points on a Newly Designed Small MEFP Warhead”, Int. J. Aeronaut. Space Sci., 2026  crossref
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  3. Yu. Voitenko, Yu. Sidorenko, V. Boiko, A. Han, A. Pasichnyk, V. Buhaiets, “Physical and material science bases of increasing the efficiency of armor penetration by cumulative charges”, Gidrodin. akust., 3(93):1 (2024), 16  crossref
  4. QUOC VI DO, Nguyen Trang Minh, “Effects of the liner materials on penetration capability of explosively formed projectiles”, JMST, 86 (2023), 144  crossref
  5. Yuan-bo Li, Jin-xiang Wang, Zhao-tao Liu, Kui Tang, Hong-fei Wang, Xing-wang Chen, “Orthogonal optimization design and experiments on explosively formed projectiles with fins”, International Journal of Impact Engineering, 173 (2023), 104462  crossref
  6. I. S. Bondarev, P. V. Kruglov, V. I. Kolpakov, XLV ACADEMIC SPACE CONFERENCE, DEDICATED TO THE MEMORY OF ACADEMICIAN S.P. KOROLEV AND OTHER OUTSTANDING NATIONAL SCIENTISTS — PIONEERS OF SPACE EXPLORATION, 2549, XLV ACADEMIC SPACE CONFERENCE, DEDICATED TO THE MEMORY OF ACADEMICIAN S.P. KOROLEV AND OTHER OUTSTANDING NATIONAL SCIENTISTS — PIONEERS OF SPACE EXPLORATION, 2023, 170001  crossref
  7. Tianbao Ma, Jing Liu, Qi Wang, “Structural Design and Parameter Optimization of Linear Explosive Forming Projectile”, Propellants Explo Pyrotec, 47:4 (2022)  crossref
  8. Heng Fu, Jianwei Jiang, Jianbing Men, Xinfu Gu, “Microstructure Evolution and Deformation Mechanism of Tantalum–Tungsten Alloy Liner under Ultra-High Strain Rate by Explosive Detonation”, Materials, 15:15 (2022), 5252  crossref
  9. Weizhan Wang, Zhigang Chen, Baoliang Yang, Tong Jing, Fangao Meng, Taiyong Zhao, Chang-Ping Yi, “Formation of an Explosively Formed Penetrator Warhead Using a Step-Shaped Charge”, Shock and Vibration, 2022 (2022), 1  crossref
  10. P. V. Kruglov, V. I. Kolpakov, I. A. Bolotina, XLIV ACADEMIC SPACE CONFERENCE: dedicated to the memory of academician S.P. Korolev and other outstanding Russian scientists – Pioneers of space exploration, 2318, XLIV ACADEMIC SPACE CONFERENCE: dedicated to the memory of academician S.P. Korolev and other outstanding Russian scientists – Pioneers of space exploration, 2021, 150003  crossref
  11. P. V. Kruglov, V. I. Kolpakov, I. A. Bolotina, XLIV ACADEMIC SPACE CONFERENCE: dedicated to the memory of academician S.P. Korolev and other outstanding Russian scientists – Pioneers of space exploration, 2318, XLIV ACADEMIC SPACE CONFERENCE: dedicated to the memory of academician S.P. Korolev and other outstanding Russian scientists – Pioneers of space exploration, 2021, 150004  crossref
  12. H. Song, Ch. Li, Yu. Xia, J. Wang, Ya. Zhang, “Study of multi-explosively formed penetrators based on the penetration performance and distribution characteristics”, J. Appl. Mech. Tech. Phys., 61:2 (2020), 181–188  mathnet  mathnet  crossref  crossref
  13. Zhen-gang Liang, Bai-xu Chen, Yu-xiang Nan, Jian-wei Jiang, Li Ding, “Research on the computing method for the forming velocity of circumferential multiple explosive formed projectiles”, Journal of Defense Modeling & Simulation, 17:2 (2020), 125  crossref
  14. Jilong Han, Xi Chen, Zhonghua Du, Huamen Fu, Yidong Jing, Tao Yuan, Chun Cheng, Chengxin Du, Lizhi Xu, “Application of W/Zr amorphous alloy for shaped charge liner”, Mater. Res. Express, 6:11 (2019), 115209  crossref
  15. P.V. Kruglov, V.I. Kolpakov, I.A. Bolotina, “Specifics of generating explosively formed projectiles of variable shape from metal liners”, EJSI, 2019, no. 12 (96)  crossref
  16. V. I. Kolpakov, I. A. Bolotina, P. V. Kruglov, XLIII ACADEMIC SPACE CONFERENCE: dedicated to the memory of academician S.P. Korolev and other outstanding Russian scientists – Pioneers of space exploration, 2171, XLIII ACADEMIC SPACE CONFERENCE: dedicated to the memory of academician S.P. Korolev and other outstanding Russian scientists – Pioneers of space exploration, 2019, 030016  crossref
  17. V. I. Kolpakov, I. A. Bolotina, P. V. Kruglov, XLIII ACADEMIC SPACE CONFERENCE: dedicated to the memory of academician S.P. Korolev and other outstanding Russian scientists – Pioneers of space exploration, 2171, XLIII ACADEMIC SPACE CONFERENCE: dedicated to the memory of academician S.P. Korolev and other outstanding Russian scientists – Pioneers of space exploration, 2019, 130006  crossref
  18. P.V. Kruglov, V.I. Kolpakov, I.A. Bolotina, “Specifics of generating explosively formed projectiles of variable shape from metal liners”, EJSI, 2019, no. 11 (95)  crossref
  19. Adam Kurzawa, Dariusz Pyka, Krzysztof Jamroziak, Miroslaw Bocian, Janusz Sliwinski, AIP Conference Proceedings, 2078, 2019, 020035  crossref
  20. Ricardo Castedo, Anastasio Pedro Santos, José Ignacio Yenes, José Ángel Sanchidrián, Lina María López, Pablo Segarra, “Finite elements simulation of improvised explosively formed projectiles”, EC, 35:8 (2018), 2844  crossref
  21. R. Li, W. B. Li, X. M. Wang, W. B. Li, “Effects of control parameters of three-point initiation on the formation of an explosively formed projectile with fins”, Shock Waves, 28:2 (2018), 191  crossref
  22. Li Ding, Jianwei Jiang, Jianbing Men, Shuyou Wang, Mei Li, “Research on Feasibility of Several High Density Materials for EFP Liner and Material Selection Criteria”, Propellants Explo Pyrotec, 42:4 (2017), 360  crossref
  23. J.I. Yenes, R. Castedo, A.P. Santos, J.R. Simón, “Experimentación, simulación y análisis de artefactos improvisados-proyectiles formados por explosión”, Revista Internacional de Métodos Numéricos para Cálculo y Diseño en Ingeniería, 32:1 (2016), 48  crossref


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