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Numerical simulation and experimental validation of E-Glass/epoxy composite material under ballistic impact of 9 mm soft projectile

机译:E-玻璃/环氧复合材料的数值模拟与实验验证在9 mm软弹丸下的弹道冲击下

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Fabric reinforced polymer composites have been widely used in automotive industry, aerospace industry and in several defence applications due to their lower density and higher specific strengths comparable to metals. In the present study, experimental and numerical simulations of ballistic impact on E-Glass/epoxy composite when subjected to normal and oblique impact by 9 mm soft lead projectile have been reported. Numerical modelling is used to estimate residual velocity and damage patterns of the composite laminate. The simulations are carried out using Abaqus/Explicit code based on finite element analysis. The findings show that the residual velocity decreases with increase in angle of obliquity and thickness. It is also found that the projectile is stopped by 7mm thick sample at normal angle where as it is stopped by 5 mm thick sample at 60° angle. Good correlation between numerical simulation and experimental results was achieved, in terms of residual velocity of the projectile and damage of the laminates.
机译:由于它们的较低密度和与金属相当的更高的特定强度,织物增强聚合物复合材料已广泛用于汽车工业,航空航天工业,以及几种防御应用中。报道,在本研究中,报告了在9mM软铅弹丸对正常和倾斜冲击时对E-玻璃/环氧复合材料对电玻璃/环氧复合材料的实验和数值模拟。数值建模用于估计复合层压板的残余速度和损伤图案。基于有限元分析,使用ABAQUS /显式代码进行模拟。结果表明,残留速度随倾斜角度和厚度的增加而降低。还发现射弹以垂直于7mm厚的样品停止,其中在60°角下达5mm厚的样品。在射弹和层压板损坏的剩余速度方面,实现了数值模拟与实验结果之间的良好相关性。

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