钝弹与穿孔板碰撞的实验与数值研究

Masoud Farahmand, K. Vahedi, A. N. Oskouei, R. Hosseini
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摘要

本文通过实验和数值研究了钝弹对穿孔钢靶的冲击。在本研究中,弹丸由AISI 52100制成,穿孔板由AISI 1045制成。为了研究孔洞直径对弹丸的影响,考虑了三种不同直径的孔洞,以及弹丸与孔洞重叠的影响。通过对不同命中状态的检测,弹丸在命中孔洞后偏离其运动方向,由垂直命中变为倾斜命中。随着孔洞直径的增大或与孔洞重叠量的增大,弹丸的偏差增大。利用ABAQUS软件对弹丸撞击过程进行了数值模拟,并与实验结果进行了对比,验证了模型的准确性。利用该模型研究了弹丸初速对弹丸偏差的影响,结果表明,冲击初速的增大会导致弹丸偏差的增大。
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Experimental and Numerical Investigation of the Impact of a Blunt Projectile with a Perforated Plate
This paper experimentally and numerically investigated the impact of a blunt projectile to perforated steel targets. In this study, projectiles were made of AISI 52100 and perforated plates were made of AISI 1045. In order to investigate the effect of the hole diameter on the projectile, three different diameters of the hole were considered, along with the effect of the projectile overlap with the hole. After examining different hitting states, the projectile was deviated from its movement direction after hitting the hole and changed from vertical hit to skew. The deviation of the projectile increased when the diameter of the hole increased or the amount of projectile overlap with the hole increased. Then, numerical modeling of impacting the projectile was performed by ABAQUS software and the results were compared with experimental results and the accuracy of the model was confirmed. And this model was used to investigate the effect of initial projectile speed on deviation of the projectile, accordingly, an increase in the initial velocity of the impact led to an increase in the deviation of the projectile.
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