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Simulation of Bullet Fragmentation and Penetration in Granular Media

机译:粒状介质中子弹碎片和渗透的模拟

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摘要

The aim of this work is to simulate the fragmentation of bullets impacted through granular media, in this case, sand. In order to validate the simulation, a group of experiments were conducted with the sand contained in two different box prototypes. The walls of the first box were constructed with fiberglass and the second with plywood. The prototypes were subjected to the impact force of bullets fired 15 m away from the box. After the shots, X-ray photographs were taken to observe the penetration depth. Transient numerical analyses were conducted to simulate these physical phenomena by using the smooth particle hydrodynamics (SPH) module of ANSYS® 2019 AUTODYN software. Advantageously, this module considers the granular media as a group of uniform particles capable of transferring kinetic energy during the elastic collision component of an impact. The experimental results demonstrated a reduction in the maximum bullet kinetic energy of 2750 J to 100 J in 0.8 ms. The numerical results compared with the X-ray photographs showed similar results demonstrating the capability of sand to dissipate kinetic energy and the fragmentation of the bullet caused at the moment of impact.
机译:这项工作的目的是模拟通过粒状介质撞击的子弹的碎片,在这种情况下,沙子。为了验证模拟,通过两个不同盒子原型中包含的沙子进行一组实验。第一个盒子的墙壁用玻璃纤维和第二个用胶合板构成。原型受到子弹的冲击力距离箱子的冲击力。在镜头后,X射线照片被采用以观察渗透深度。进行瞬态数值分析以通过使用ANSYS®20Acodyn软件的光滑粒子流体动力学(SPH)模块来模拟这些物理现象。有利地,该模块认为颗粒介质作为一组均匀颗粒,能够在冲击的弹性碰撞部件期间转移动能。实验结果表明,0.8毫秒的最大子弹动能的最大子弹动能降低。与X射线照片相比的数值结果显示出类似的结果,证明了砂的能力散发出动能和在撞击时弹引起的子弹的碎片。

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