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Acta Armamentarii ›› 2015, Vol. 36 ›› Issue (7): 1363-1369.doi: 10.3969/j.issn.1000-1093.2015.07.028

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Influence of Structure Parameters of Forcing Cone on Small Arms Interior Ballistics During Engraving

LU Ye1, ZHOU Ke-dong1, HE Lei1, LI Jun-song2, HUANG Xue-ying3   

  1. (1.School of Mechanical Engineering, Nanjing University of Science and Technology, Nanjing 210094, Jiangsu, China;2.No.208 Research Institute of China Ordnance Industries, Beijing 102202, China; 3.Unit 63856 of PLA,Baicheng 137001, Jilin, China)
  • Received:2014-09-18 Revised:2014-09-18 Online:2015-09-21
  • Contact: LU Ye E-mail:luye_njust@163.com

Abstract: The working condition of barrel forcing cone is worse during the firing process of small arms. To study the influence of the forcing cone angles on the stress of barrel forcing cone, the three-dimensional finite element models of barrel and projectile at different forcing cone angles are established, in which the structures of barrel and projectile, and nonlinear constitutive relations are considered. The effects of different forcing cone angles on the projectile engraving process are analyzed. The data of engraving resistance is obtained under the condition of different forcing cone angles. A response surface model of engraving resistance is established. The formula and the variation rules of projectile engraving resistance along with the forcing cone angle and engraving displacement are calculated based on the above data by using Hermite polynomial. A dynamic model of projectile engraving process is established in consideration of the engraving resistance. The engraving pressure during the projectile engraving process is solved by programming. The forcing cone angles among 0.11° and 1.13°, which satisfy the requirement of muzzle velocity of the projectile, are obtained, and then the best forcing cone angle of 0.56°, which could reduce the barrel stress to ensure the highest velocity and meet the design range of forcing cone angles in case of satisfying the interior ballistic behaviors, is got.

Key words: ordnance science and technology, barrel, projectile engraving, forcing cone, contact, impact

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