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首页> 外文期刊>Journal of Engineering >Dynamic Characteristics of the Rotating Penetrating Missile for Attacking Warship Vertically
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Dynamic Characteristics of the Rotating Penetrating Missile for Attacking Warship Vertically

机译:旋转穿透导弹的动态特性垂直攻击舰艇

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摘要

The paper aimed to analyze the dynamic response of a new type penetrating missile in rotary attacking warship. The dynamic response characteristics of the penetrator become more complex when attacking the ship target due to the special materials of the deck such as stiffeners. Therefore, different from attacking other targets, the article reveals the design rules of precession penetration ammunition and fuze. A physical model of the missile target is established to study the numerical simulation of the penetration process of rotating projectile into a stiffened target based on finite element analysis (FEA) software. We studied the dynamic response characteristics of different projectile positions, rotational speeds, and positions that act in precession penetration. As experimental results show, the residual velocity of the precession penetrator decreases with the distance between the projectile point and stiffener. When the projectile penetrates the second target plate, the acceleration is greater than that in the first layer. It is proved that the deflection angle of the shell body is affected by comprehensive factors. The rotational speed in the projectile has less contribution to precession penetration ammunition. In addition, the change of acceleration in the missile’s central section can be significantly perceived in the direction perpendicular to the penetration direction.
机译:本文旨在分析旋转袭击战舰中新型穿透导弹的动态响应。由于诸如加强件等甲板的特殊材料,穿透器的动态响应特性变得更加复杂。因此,不同于攻击其他目标,文章揭示了先进的渗透弹药和引信的设计规则。建立了导弹目标的物理模型,以研究基于有限元分析(FEA)软件的旋转射弹旋转射孔渗透过程的数值模拟。我们研究了不同射弹位置,转速和在预测渗透的位置的动态响应特征。作为实验结果表明,预流渗透器的剩余速度随射弹点和加强件之间的距离而减小。当射弹穿过第二目标板时,加速度大于第一层中的加速度。事实证明,壳体的挠曲角度受到综合因素的影响。射弹的转速对预测渗透弹药的贡献较少。另外,可以在垂直于渗透方向的方向上显着地感知导弹中央部分的加速度的变化。

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