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首页> 外文期刊>International journal of structural stability and dynamics >Penetration of Rigid Projectile into Concrete Target with Effect of Attack Angle: Theory and Experiment
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Penetration of Rigid Projectile into Concrete Target with Effect of Attack Angle: Theory and Experiment

机译:刚性射弹将攻击角效应的混凝土目标:理论与实验

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摘要

The existing prediction methods of penetration depth do not take the influence of attack angle or angular velocity of projectile (i.e. erect of attack angle) into account. The main purpose of this work is to develop an approximate approach to predict the penetration depth for a rigid projectile into concrete target covered with yaw-inducing overlays. A quasi-static, elastic-plastic contact model of projectile impacting on irregular barrier is built based on Hertz's contact theory, and the expression of effect of attack angle are also presented. The stress on projectile-target interface is derived according to spherical cavity expansion model and mechanical property of target, where reduction coefficient is introduced to consider the effect of free surface, and the penetration resistances are further obtained. Differential equations of motion for projectile arbitrarily oblique into target covered with yaw-inducing overlays are given by employing the initial conditions of projectile striking on irregular barrier. Then a simplified formula of depth-of-penetration (DOP) with effect of attack angle is presented by introducing an influence coefficient of oblique impact and an influence coefficient of yaw-inducing overlays into the depth of normal penetration. Predictions from the simplified formula are validated by comparison with ballistic experimental data for a 57mm diameter, 4.44 kg, and ogive-nose, semi-armor-piercing with striking velocities between 320 and 705 m/s.
机译:渗透深度的现有预测方法不会考虑射击角度或射弹(即攻击角)的角速度的影响。这项工作的主要目的是开发一种近似的方法来预测刚性射弹的穿透深度进入有偏航诱导覆盖的混凝土目标。基于赫兹的接触理论,建立了对不规则屏障的射弹冲突的准静态弹性塑料接触模型,并且还提出了攻击角效果的表达。根据球形腔膨胀模型和靶的力学性地得出射弹 - 目标界面的应力,其中引入降低系数以考虑自由表面的效果,进一步获得渗透抗性。通过采用在不规则屏障上的射弹撞击的初始条件,给出了射弹动作的差动方程被任意倾斜地倾斜地倾斜地倾斜地覆盖着偏移偏移的目标。然后通过引入倾斜撞击的影响系数和横摆覆盖的影响系数来提出具有攻击角度的抗攻角效果的简化公式的渗透角度(DOP)的简化公式,并偏移偏移将覆盖层置于正常渗透深度。通过与直径为57mm的弹道实验数据,4.44kg和ogive-鼻子,半铠装枢纽的弹道实验数据进行验证。

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