弹道极限
夹层结构复合材料
射弹
材料科学
蜂巢
夹芯板
复合材料
复合数
蜂窝结构
芯(光纤)
穿孔
结构工程
铝
有限元法
环氧树脂
冲击能
工程类
冲孔
冶金
作者
Brenda L. Buitrago,Carlos Santiuste,S. Sánchez-Sáez,E. Barbero,C. Navarro
标识
DOI:10.1016/j.compstruct.2009.10.013
摘要
In this study the perforation of composite sandwich structures subjected to high-velocity impact was analysed. Sandwich panels with carbon/epoxy skins and an aluminium honeycomb core were modelled by a three-dimensional finite element model implemented in ABAQUS/Explicit. The model was validated with experimental tests by comparing numerical and experimental residual velocity, ballistic limit, and contact time. By this model the influence of the components on the behaviour of the sandwich panel under impact load was evaluated; also, the contribution of the failure mechanisms to the energy-absorption of the projectile kinetic energy was determined.
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