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首页> 外文期刊>International Journal of Damage Mechanics >Ballistic performance and damage simulation of fiber metal laminates under high-velocity oblique impact
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Ballistic performance and damage simulation of fiber metal laminates under high-velocity oblique impact

机译:高速倾斜冲击下纤维金属层压板的弹道性能及损伤模拟

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摘要

Fiber metal laminates have been successfully applied in military aircrafts, armor vehicles and other modern engineering industries as protective structures due to their outstanding impact resistant properties. Prediction of the ballistic performance and investigation on the damage mechanism of the fiber metal laminates under general oblique impact conditions still remain a very challenging issue. In this study, a nonlinear dynamic finite element model in terms of continuum damage mechanics including intra- and inter-layer failure modes is presented. The accuracy of this model is validated with available experimental data. The damage and ballistic performance of two different structural fiber metal laminates subjected to high-velocity oblique impact by rigid hemispherical nose projectile with angles of 0 degrees, 30 degrees, 45 degrees and 60 degrees are studied. The numerical results show that the projectile deflects when the oblique impact occurs and the deflection angle decreases with increasing the impact velocity. The residual velocity of the projectile and the energy absorption of the target are related to the initial impact velocity and impact angle of the projectile. The proposed simulation approach offers a new proper reference for numerical investigations of common oblique impact problems in other fiber metal laminates.
机译:由于其出色的抗冲击性能,纤维金属层压板已成功应用于军用飞机,装甲车和现代工程行业,作为防护结构。在一般倾斜抗冲条件下纤维金属层压板损伤机理的预测仍然是一个非常具有挑战性的问题。在本研究中,提出了一种在连续损伤力学方面的非线性动态有限元模型,包括层内或层间故障模式。该模型的准确性验证了可用的实验数据。研究了两种不同的结构纤维金属层压板的损伤和弹道性能,对高速倾斜的刚性半球形鼻射入具有0度,30度,45度和60度的角度。数值结果表明,当倾斜冲击发生时,射弹偏转,并且随着冲击速度的增加而降低偏转角度。射弹的残余速度和目标的能量吸收与射弹的初始冲击速度和冲击角有关。所提出的仿真方法为其他纤维金属层压板中的共同倾斜冲击问题的数值研究提供了新的适当参考。

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