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Effect of groove structure on penetration performance of annular grooved projectiles impacting metal targets

机译:沟槽结构对撞击金属靶的渗透性能的影响

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With the continual development of advanced ammunition,a study on the effect of groove geometry on penetration performance is conducted.Based on ogive nose,an annular grooved projectile (AGP) was proposed and can generally be divided into two types (groove A and B) when considered the transition ways between groove and projectile nose.Difference in groove structures result in various penetration performance.According to dynamic cavity expansion theory and FEM simulation,the nose shape coefficient N*,depth of penetration (DOP) and acceleration curves were analysed comparatively.The results also indicated that the firm embedded behaviour of groove B nose projectile is mainly due to the filling-material in the groove rather than the friction on contact surface,unlike traditional nose shape.Furthermore,a good agreement in calculation and simulation proved the analysis method was reasonable and feasible,and would have application potential in new concept warheads.
机译:随着先进弹药的持续发展,对沟槽几何形状对穿透性能的研究进行了研究。基于初始鼻子,提出了环形凹槽射弹(AGP),一般可分为两种类型(凹槽A和B)当考虑到凹槽和射弹之间的过渡方式时。沟槽结构中的沟槽导致各种穿透性。根据动态腔扩展理论和有限元模拟,鼻形系数n *,相对分析了渗透系数n *,渗透深度(DOP)和加速曲线结果还表明,凹槽B鼻射精的坚固嵌入式行为主要是由于凹槽中的填充材料而不是在接触表面上的摩擦,与传统的鼻子形状不同。在计算和仿真中进行了良好的协议,证明了分析方法是合理的,可行的,并将在新概念弹头中具有应用潜力。

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