首页> 外文会议>The Third International Conference on Mechanical Engineering and Mechanics(第三届国际机械工程与力学会议)论文集 >A Study on the Projectile-barrel Coupling Problem Considering the Initial Deflection Due to Gravity of Tube
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A Study on the Projectile-barrel Coupling Problem Considering the Initial Deflection Due to Gravity of Tube

机译:考虑管重力的初始挠度的弹管耦合问题研究

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摘要

In this paper,the deflection curve of a barrel's axis due to gravity is obtained by finite element method (FEM).Compared to approximation method,FEM can improve the precision.Based on plasto-elasticity and dynamic contact/impact theory,a contact/impact finite element model of rifled tube-projectile coupling system considering the initial deflection of the tube is established by use of mapped hexahedral elements and morphing technique.The band of the projectile is simulated with bilinear elastoplastic material model,together with the consideration of elastic and plastic deformation.Muzzle disturbance and projectile motion in bore are computed applying parallel arithmetic on SGI.The numerical results show that the initial bending deformation of the tube exacerbates vertical vibration and horizontal vibration of the projectile.
机译:本文通过有限元方法(FEM)求得了重力作用下桶身轴的挠度曲线。与近似法相比,FEM可以提高精度。利用映射的六面体单元和变形技术,建立了考虑管子初始挠度的带膛线的弹丸耦合系统的冲击有限元模型。利用双线性弹塑性材料模型对弹丸的带进行了模拟,并同时考虑了弹性和弹塑性。在SGI上使用并行算法计算了炮口的扰动和弹丸运动,数值结果表明,管子的初始弯曲变形会加剧弹丸的垂直振动和水平振动。

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