Mechanics of Solids (about journal) Mechanics of Solids
A Journal of Russian Academy of Sciences
 Founded
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IssuesArchive of Issues2025-3pp.2289-2303

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Jun Liang, Xuanhua Fan, Shifu Xiao, Tao Li, and Feng Ma, "Theoretical Study of the Effect of the Penetration Parameters on Projectile Response," Mech. Solids. 60 (3), 2289-2303 (2025)
Year 2025 Volume 60 Number 3 Pages 2289-2303
DOI 10.1134/S0025654425600345
Title Theoretical Study of the Effect of the Penetration Parameters on Projectile Response
Author(s) Jun Liang (Mianyang Teachers’ College, Mianyang, Sichuan, 621000 China; Institute of Systems Engineering, China Academy of Engineering Physics, Mianyang, Sichuan, 621900 China, liangjuntomato@163.com)
Xuanhua Fan (Institute of Systems Engineering, China Academy of Engineering Physics, Mianyang, Sichuan, 621900 China, fanpku@pku.org.cn)
Shifu Xiao (Institute of Systems Engineering, China Academy of Engineering Physics, Mianyang, Sichuan, 621900 China, shifuxiao@caep.cn)
Tao Li (Mianyang Teachers’ College, Mianyang, Sichuan, 621000 China, 297259350@qq.com)
Feng Ma (Southwest University of Science and Technology, Mianyang, Sichuan, 621010 China, 183787084@qq.com)
Abstract In order to obtain the response characteristics of the projectile under dynamic load, this paper constructs a theoretical model of the projectile structure reflecting the basic connection characteristics of the charge and shell based on the concentrated mass method. The 4th order Runge-Kutta method is used for numerical solution. The influence law of the projectile response under the multipulse cycle load in the target penetration process is analysed. The results show that: there is indeed a ‘small load, large response’ response of the projectile structure. The influencing factors that lead to the amplification of the projectile structure response are more numerous and complex. In the actual projectile structure design, the need to comprehensively consider the role of each parameter condition, in order to better reduce the risk of local response amplification, to avoid the occurrence of early ignition and early detonation of the projectile.
Keywords theoretical model, projectile structure, influence law, multi-pulse cycle load, amplification
Received 21 January 2025Revised 29 April 2025Accepted 30 April 2025
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