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Acta Armamentarii ›› 2024, Vol. 45 ›› Issue (11): 4119-4132.doi: 10.12382/bgxb.2024.0676

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Stress States of Anisotropic Material Gun Barrel by Firing the Projectiles with Different Jacket Materials

GE Zhongyu, ZHOU Kedong*(), LU Ye, LIU Jinhao   

  1. School of Mechanical Engineering, Nanjing University of Science and Technology, Nanjing 210094, Jiangsu, China
  • Received:2024-08-08 Online:2024-11-26
  • Contact: ZHOU Kedong

Abstract:

The stress field and temperature field of barrel in the firing process of a small caliber rifle are studied. An accurate thermo-mechanical coupling finite element model of the projectile/barrel interaction during the motion of projectile in the barrel is established, in which the effect of temperature on the mechanical properties of barrel and jacket materials and the anisotropy of the mechanical properties of barrel steel are considered. The engraving motion patterns of steel and copper jacketed projectiles, and the change of stress state in the barrel are obtained by the numerical simulation. The simulated results show that the different materials of projectile jacket have great influence on the engraving process,the engraving resistance of steel jacketed projectile is greater than that of copper jacketed projectile, and the in-bore stress of steel jacketed projectile is also greater than that of copper jacketed projectile. The stress distributions at different axial positions of barrel are different, the maximum stress at the chamber throat is on the land driving side, and the maximum in-bore stress at the muzzle is on the groove. This work is conducive to the optimization of projectile/barrel matching.

Key words: gun barrel, thermo-mechanical coupling, bullet jacket material, anisotropic material, material thermophysical property, projectile engraving

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