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Ballistic Resistance of Honeycomb Sandwich Panels under In-Plane High-Velocity Impact

机译:平面内高速冲击下蜂窝夹层面板的抗坏焰抗性

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摘要

The dynamic responses of honeycomb sandwich panels (HSPs) subjected to in-plane projectile impact were studied by means of explicit nonlinear finite element simulations using LS-DYNA. The HSPs consisted of two identical aluminum alloy face-sheets and an aluminum honeycomb core featuring three types of unit cell configurations (regular, rectangular-shaped, and reentrant hexagons). The ballistic resistances of HSPs with the three core configurations were first analyzed. It was found that the HSP with the reentrant auxetic honeycomb core has the best ballistic resistance, due to the negative Poisson’s ratio effect of the core. Parametric studies were then carried out to clarify the influences of both macroscopic (face-sheet and core thicknesses, core relative density) and mesoscopic (unit cell angle and size) parameters on the ballistic responses of the auxetic HSPs. Numerical results show that the perforation resistant capabilities of the auxetic HSPs increase as the values of the macroscopic parameters increase. However, the mesoscopic parameters show nonmonotonic effects on the panels' ballistic capacities. The empirical equations for projectile residual velocities were formulated in terms of impact velocity and the structural parameters. It was also found that the blunter projectiles result in higher ballistic limits of the auxetic HSPs.
机译:通过使用LS-DYNA的显式非线性有限元模拟研究了对面内射弹冲击的蜂窝夹层面板(HSP)的动态响应。 HSP由两种相同的铝合金面板和铝蜂窝芯组成,具有三种单位电池配置(常规,矩形和旋回六边形)。首先分析了HSP与三个核心配置的弹性电阻。结果发现,由于泊松的比率效果负面泊松的比率效应,具有旋流扶透蜂窝芯的HSP具有最佳的抗弹性抵抗力。然后进行参数研究以阐明宏观(面部片材和核心厚度,核心相对密度)和介术(单元电池角和尺寸)参数对辅助HSP的弹道反应的影响。数值结果表明,随着宏观参数的增加,辅助HSP的穿孔能力增加。然而,介观参数显示了对面板的弹性能力的非单调效应。在冲击速度和结构参数方面配制了射弹性速度的经验方程。还发现打孔器射弹导致辅助HSP的更高的弹道限制。

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