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Penetration Resistance Of Steel Fiber Reinforced Concrete Containment Structure To High Velocity Projectile

机译:钢纤维混凝土围护结构对高速弹丸的抗侵彻性

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Containment structures not only are leak-tight barriers, but also may be subjected to impacts caused by tornado-generated projectiles, aircraft crashes or the fragments of missile warhead. This paper presents the results of an experimental study of the impact resistance of steel fiber-reinforced concrete against 45 g projectiles at velocity around 2500 m/s. An explosively formed projectile (EFP) was designed to generate an equivalent missile fragment. The formation and velocity of EFP are measured by flash x-ray. A switch made of double-layered thin copper sheets controlled the exposure time of each flash x-ray. The influence of the fiber volume fraction on the crater diameter of concrete slab and the residual velocity of the projectile were studied. The residual velocity of the projectile decreased as the fiber volume fractions increased. In this work, the residual velocity of the projectile was to 44% that of plain concrete when the fiber volume fraction exceeded 1.5%. Based on the present finding, steel fiber reinforced concrete with the fiber volume fraction exceeding 1.5% appear to be more efficient in protection against high velocity fragment impact.
机译:围护结构不仅是密封的屏障,而且还可能受到龙卷风产生的弹丸,飞机坠毁或导弹弹头碎片的撞击。本文介绍了在2500 m / s左右的速度下,钢纤维增强混凝土对45 g弹丸的抗冲击性的实验研究结果。爆炸形成的弹丸(EFP)设计为产生等效的导弹碎片。 EFP的形成和速度通过X射线闪光测量。由双层薄铜片制成的开关控制每个X射线闪光灯的曝光时间。研究了纤维体积分数对混凝土板弹坑直径和弹丸残余速度的影响。随着纤维体积分数的增加,弹丸的残余速度降低。在这项工作中,当纤维体积分数超过1.5%时,弹丸的残余速度为普通混凝土的残余速度的44%。根据目前的发现,纤维体积分数超过1.5%的钢纤维增强混凝土似乎在抵抗高速碎片冲击方面更有效。

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