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Numerical Simulation of Penetrating Effects of Projectile at High Speed

Yue Xiao, Pla Uni

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Abstract

In order to provide the theoretical foundation for design and construction improvement of the projectile, numerical simulation of projectile penetration at high speed was implemented with lagrange algorithm. According to the analysis of several effects on penetration in simulation results, the penetrating capability of the projectile is not decided by its kinetic energy but the kinetic energy vs its cross section area, when the other conditions are the same. The simulation results conform relatively well to some experience formula.

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What this paper is about

In order to provide the theoretical foundation for design and construction improvement of the projectile, numerical simulation of projectile penetration at high speed was implemented with lagrange algorithm. According to the analysis of several effects on penetration in simulation results, the penetrating capability of the projectile is not decided by its kinetic energy but the kinetic energy vs its cross section area, when the other conditions are the same. The simulation results conform relatively well to some experience formula.

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Available abstract

In order to provide the theoretical foundation for design and construction improvement of the projectile, numerical simulation of projectile penetration at high speed was implemented with lagrange algorithm. According to the analysis of several effects on penetration in simulation results, the penetrating capability of the projectile is not decided by its kinetic energy but the kinetic energy vs its cross section area, when the other conditions are the same. The simulation results conform relatively well to some experience formula.

Key concepts: Projectile, Penetration (warfare), Computer simulation, Kinetic energy, Mechanics, Ammunition, Computer science, Structural engineering

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