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Impact of conical tungsten projectiles on flat silicon carbide targets: Transition from interface defeat to penetration

机译:圆锥形钨弹对扁平碳化硅靶的影响:从界面破坏到穿透的转变

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摘要

Normal impact of conical tungsten projectiles on flat silicon carbide targets was studied experimentally and numerically for half apex angles 5° and 5-15°, respectively, and comparisons were made with cylindrical projectiles. A 30 mm powder gun and two 150 kV and four 450 kV X-ray flashes were used in the impact tests. The numerical simulations were run with the Autodyn code in two steps. In the first, the surface loads were determined for different impact velocities under assumed condition of interface defeat. In the second, these surface loads were applied to the targets in order to obtain critical states of damage and failure related to the transition between interface defeat and penetration, and the corresponding critical velocities. In the impact tests, interface defeat occurred below a transition velocity, which was significantly lower for the conical than for the cylindrical projectiles. Above the transition velocity, the initial penetration of conical projectiles differed markedly from that usually observed for cylindrical projectiles. It occurred along a cone-shaped surface crack, qualitatively corresponding to surface failure observed in the simulations. The transition velocity for the conical projectile was found to be close to the critical velocity associated with this surface failure.
机译:分别对半顶角5°和5-15°分别通过实验和数值研究了锥形钨弹丸对扁平碳化硅靶的正常冲击,并与圆柱弹丸进行了比较。在冲击试验中使用了30 mm的粉末枪和两个150 kV和四个450 kV X射线闪光。使用Autodyn代码分两步运行数值模拟。首先,在假定的界面破坏条件下,针对不同的冲击速度确定表面载荷。在第二步中,将这些表面载荷施加到目标上,以获得与界面破坏和穿透之间的过渡以及相应的临界速度有关的破坏和破坏的临界状态。在冲击试验中,界面破坏发生在过渡速度以下,圆锥形的速度明显低于圆柱形弹丸。在过渡速度之上,圆锥形弹丸的初始穿透力与圆柱弹丸通常观察到的明显不同。它沿着圆锥形的表面裂纹发生,定性地对应于模拟中观察到的表面破坏。发现圆锥形弹丸的过渡速度接近与此表面破坏相关的临界速度。

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