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Study on the Anti-Penetration Performance of Two-Layer Explosively Welded Plates Impacted by a Spherical Projectile

机译:球形弹丸对两层爆炸焊接板抗侵彻性能的影响

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The anti-penetration performance of two-layer explosively welded steel/aluminum plates 5 mm thick impacted by a spherical steel projectile 6 mm in diameter with a velocity of 260-900 m/s is studied in this paper. The effects of the thickness distribution and the incident angle on the anti-penetration performance and damage mechanism are analyzed. At incidence angles of 0-60°, the minimum projectile velocity is needed for penetration at the steel/aluminum thickness ratio equal to 2/3. The good coherence of numerical and experimental results indicates that the finite-element method coupled with the smoothed particle hydrodynamics method can predict the anti-penetration performance of two-layer explosively welded plates well.
机译:研究了直径为6 mm的球形钢弹丸以260-900 m / s的速度撞击5mm厚的两层爆炸焊接钢/铝板的抗侵彻性能。分析了厚度分布和入射角对抗穿透性能和损伤机理的影响。在0-60°的入射角下,钢/铝厚度比等于2/3时需要最小的弹丸速度才能穿透。数值和实验结果的良好一致性表明,有限元方法与光滑粒子流体动力学方法相结合可以很好地预测两层爆炸焊接板的抗侵彻性能。

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