Fan Jinbo, Li Penghui, Guo Weiqi, Zhao Xiuguo, Su Chen, Xu Xinxi
Department of Medical Support Technology, Institute of Systems Engineering, Academy of Military Sciences, Tianjin 300161, China.
Department of Building Science, Tsinghua University, Beijing 100084, China.
Polymers (Basel). 2023 Jan 15;15(2):456. doi: 10.3390/polym15020456.
Sandwich panels are often subjected to unpredictable impacts and crashes in applications. The core type and impactor shape affect their impact response. This paper investigates the responses of five tandem Nomex honeycomb sandwich panels with different core-types under low-velocity-impact conditions with flat and hemispherical impactors. From the force response and impact displacement, gradient-tandem and foam-filled structures can improve the impact resistance of sandwich panels. Compared with the single-layer sandwich panel, the first peak of contact force of the foam-gradient-filled tandem honeycomb sandwich panels increased by 34.84%, and maximum impact displacement reduced by 50.98%. The resistance of gradient-tandem Nomex honeycomb sandwich panels under low-velocity impact outperformed uniform-tandem structures. Foam-filled structures change the impact responses of the tandem sandwich panels. Impact damage with a flat impactor was more severe than the hemispherical impactor. The experimental results are helpful in the design of tandem Nomex honeycomb sandwich panels.
夹芯板在应用中经常受到不可预测的冲击和碰撞。芯材类型和冲击器形状会影响其冲击响应。本文研究了五种不同芯材类型的串联Nomex蜂窝夹芯板在低速冲击条件下,分别使用平面冲击器和半球形冲击器时的响应。从力响应和冲击位移来看,梯度串联和泡沫填充结构可以提高夹芯板的抗冲击性。与单层夹芯板相比,泡沫梯度填充串联蜂窝夹芯板的接触力第一峰值提高了34.84%,最大冲击位移降低了50.98%。梯度串联Nomex蜂窝夹芯板在低速冲击下的抗性优于均匀串联结构。泡沫填充结构改变了串联夹芯板的冲击响应。平面冲击器造成的冲击损伤比半球形冲击器更严重。实验结果有助于串联Nomex蜂窝夹芯板的设计。