2013•Chinese Journal of High Pressure PhysicsRequires access

Ballistic Trajectory of High-Velocity Projectile Obliquely Penetrating Concrete Target

Wang Ke

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Abstract

The experiments of small scale projectile obliquely penetrating a semi-infinite concrete target with a velocity from 980to 1 870m/s are performed by a two-stage light gas gun.The ballistic trajectory and characteristic parameters are tested and painted.The results show that the trajectory deflection of the penetrator obliquely penetrating a semi-infinite concrete target with high velocity is more obvious than that with intermediate and low velocities,and presents a shape ofJ.The penetration process can be divided into four phases according to the penetration mechanism.In addition,it is found that the terminal gesture of the projectile changes greatly,and the deflection angle at endpoint can reach up to 130°.

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What this paper is about

The experiments of small scale projectile obliquely penetrating a semi-infinite concrete target with a velocity from 980to 1 870m/s are performed by a two-stage light gas gun.The ballistic trajectory and characteristic parameters are tested and painted.The results show that the trajectory deflection of the penetrator obliquely penetrating a semi-infinite concrete target with high velocity is more obvious than that with intermediate and low velocities,and presents a shape ofJ.The penetration process can be divided into four phases according to the penetration mechanism.In addition,it is found that the terminal gesture of the projectile changes greatly,and the deflection angle at endpoint can reach up to 130°.

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Available abstract

The experiments of small scale projectile obliquely penetrating a semi-infinite concrete target with a velocity from 980to 1 870m/s are performed by a two-stage light gas gun.The ballistic trajectory and characteristic parameters are tested and painted.The results show that the trajectory deflection of the penetrator obliquely penetrating a semi-infinite concrete target with high velocity is more obvious than that with intermediate and low velocities,and presents a shape ofJ.The penetration process can be divided into four phases according to the penetration mechanism.In addition,it is found that the terminal gesture of the projectile changes greatly,and the deflection angle at endpoint can reach up to 130°.

Key concepts: Projectile, Penetration (warfare), Deflection (physics), Trajectory of a projectile, Trajectory, Mechanics, Ballistics, Physics

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