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PENETRATION OF FINE FOUNDRY SAND BY RIGID PROJECTILES

机译:硬质弹丸穿透精细砂型砂

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摘要

In another paper, the authors presented an approach to penetration of a paniculate target. This theory is based on the friction that the particles of target material present to the entire penetrator surface, including its shank. The shank of the penetrator affords a very large surface area compared to that of the nose. Even modest friction acting on the shank can provide a fairly large retarding force. Normal pressure acting on the projectile is assumed to be velocity-squared dependant, as indicated by a number of methods, including cavity expansion modeling. Penetration of sand and soil has been considered by numerous investigators, e.g.. These investigations did not directly address the frictional component of the net resisting force acting on the penetrator. A series of laboratory scale penetrations tests were performed. Data from these tests was used to evaluate the parameters in the model. Fine foundry sand is a high-density medium (1960 kg/m~3) with a small amount of friction. This contrasts the target used by the authors in, which had a sizable amount of friction. Results from the theory are in excellent agreement with the experiments witfi velocities as high as 630 m/sec.
机译:在另一篇论文中,作者提出了一种穿透圆锥形目标的方法。该理论基于目标材料的颗粒存在于整个穿透器表面(包括其柄)的摩擦。与鼻子相比,穿透器的柄提供了很大的表面积。即使作用在柄上的摩擦很小,也可以提供相当大的阻滞力。如包括空腔膨胀模型在内的多种方法所表明的那样,假定作用在弹丸上的法向压力取决于速度平方。例如,许多研究者已经考虑了沙子和土壤的渗透。这些研究没有直接解决作用在渗透器上的净阻力的摩擦分量。进行了一系列实验室规模的渗透测试。这些测试的数据用于评估模型中的参数。精铸砂是一种高密度介质(1960 kg / m〜3),摩擦力很小。这与作者使用的目标形成了鲜明的对比,后者具有相当大的摩擦力。该理论的结果与实验速度高达630 m / sec的实验非常吻合。

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