辅助
材料科学
复合材料
射弹
变形(气象学)
参数统计
复合数
抗冲击性
芯(光纤)
夹层结构复合材料
结构工程
消散
材料性能
统计
物理
数学
工程类
冶金
热力学
作者
Gabriele Imbalzano,Phuong Tran,Tuan Ngo,Peter Vee Sin Lee
标识
DOI:10.1177/1099636215618539
摘要
Sandwich panels with auxetic lattice cores confined between metallic facets are proposed for localised impact resistance applications. Their performance under localised impact is numerically studied, considering the rate-dependent effects. The behaviour of the composite structure material at high strain rates is modelled with the Johnson-Cook model. Parametric analyses are conducted to assess the performance of different designs of the hybrid composite structures. The results are compared with monolithic panels of equivalent areal mass and material in terms of deformations and plastic energy dissipation. Design parameters considered for the parametric analyses include the auxetic unit cell effective Poisson’s ratio, thickness of the facet, material properties and radius of the unit cell’s struts. Significant reduction in computational time is achieved by modelling a quarter of the panel, with shell elements for facets and beam elements for the auxetic core. With projectile impacts up to 200 m/s, the auxetic composite panels are found to be able to absorb a similar amount of energy through plastic deformation, while the maximum back facet displacements are reduced up to 56% due to localised densification and plastic deformation of the auxetic core.
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