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Sand Penetration: A Near Nose Investigation of a Sand Penetration Event

机译:沙渗透:近鼻子调查沙渗透事件

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This paper presents experimental and computational results of a long-rod penetrating dry granular sand at velocities near 100 m/s. The objective of this work is to develop a fundamental understanding of the formation and transmission of dynamic force chains, and the motion and fracture of the individual sand grains as the projectile passes. This is accomplished by launching a projectile along a view window, backed by sand, in order to directly view and photograph the projectile/sand interactions. Within the sand system, a two-wave structure was observed, composed of a compaction wave (bow shock) that detaches from the dart and moves through the sand at a wave speed near 100 m/s and a damage wave, which remains near the leading edge of the dart. The compaction wave removes porosity and the damage wave fractures grains in the region near the projectile nose. Grain fracture is not observed at dart speeds below 35 m/s. In addition the axial strain to failure of individual sand grains was measured in a quasi-static configuration. These results were used in conjunction with a simple analytic force balance model to predict the depth of penetration. The analytic results compare favorably with experiments until the dart slows below 35 m/s.
机译:本文介绍了在100m / s附近的长杆穿透干燥粒状砂的实验和计算结果。这项工作的目的是制定对动态力链的形成和传播的基本理解,以及作为射弹通过各个砂粒的运动和骨折。这是通过沿着视图窗口推出射弹的射弹,以便直接查看和拍摄射弹/砂互动。在砂系统内,观察到两波结构,由从铲斗中脱离的压实波(弓形冲击)组成,并在100m / s附近的波速下移动沙子和损坏波,这仍然附近飞镖的前缘。压实波去除孔鼻梁附近区域的孔隙率和损伤波裂缝颗粒。在35米/秒以下的飞镖速度下未观察到颗粒骨折。此外,以准静态配置测量单个砂粒的失效的轴向应变。这些结果与简单的分析力平衡模型结合使用,以预测渗透深度。分析结果与实验相比,直到飞镖减慢35米/秒。

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