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具有CFRP面板的3D重入蜂窝夹层结构的低速抗冲击性

Low-Velocity Impact Resistance of 3D Re-Entrant Honeycomb Sandwich Structures with CFRP Face Sheets.

作者信息

Cui Zhen, Qi Jiaqi, Duan Yuechen, Tie Ying, Zheng Yanping, Yang Jun, Li Cheng

机构信息

School of Mechanical and Power Engineering, Zhengzhou University, Zhengzhou 450001, China.

School of Aerospace and Mechanical Engineering, Changzhou Institute of Technology, Changzhou 213032, China.

出版信息

Polymers (Basel). 2023 Feb 22;15(5):1092. doi: 10.3390/polym15051092.

Abstract

Lightweight sandwich structures have been receiving significant attention. By studying and imitating the structure of biomaterials, its application in the design of sandwich structures has also been found to be feasible. With inspiration from the arrangement of fish scales, a 3D re-entrant honeycomb was designed. In addition, a honeycomb stacking method is proposed. The resultant novel re-entrant honeycomb was utilized as the core of the sandwich structure in order to increase the impact resistance of the sandwich structure under impact loads. The honeycomb core is created using 3D printing. By using low-velocity impact experiments, the mechanical properties of the sandwich structure with Carbon-Fiber-Reinforced Polymer (CFRP) face sheets under different impact energies were studied. To further investigate the effect of the structural parameters on the structural, mechanical properties, a simulation model was developed. Simulation methods examined the effect of structural variables on peak contact force, contact time, and energy absorption. Compared to traditional re-entrant honeycomb, the impact resistance of the improved structure is more significant. Under the same impact energy, the upper face sheet of the re-entrant honeycomb sandwich structure sustains less damage and deformation. The improved structure reduces the upper face sheet damage depth by an average of 12% compared to the traditional structure. In addition, increasing the thickness of the face sheet will enhance the impact resistance of the sandwich panel, but an excessively thick face sheet may decrease the structure's energy absorption properties. Increasing the concave angle can effectively increase the energy absorption properties of the sandwich structure while preserving its original impact resistance. The research results show the advantages of the re-entrant honeycomb sandwich structure, which has certain significance for the study of the sandwich structure.

摘要

轻质夹层结构一直备受关注。通过研究和模仿生物材料的结构,发现其在夹层结构设计中的应用也是可行的。受鱼鳞排列的启发,设计了一种三维凹腔蜂窝结构。此外,还提出了一种蜂窝堆叠方法。所得的新型凹腔蜂窝被用作夹层结构的芯层,以提高夹层结构在冲击载荷下的抗冲击性。蜂窝芯层采用3D打印制造。通过低速冲击实验,研究了具有碳纤维增强聚合物(CFRP)面板的夹层结构在不同冲击能量下的力学性能。为了进一步研究结构参数对结构力学性能的影响,建立了一个模拟模型。模拟方法研究了结构变量对峰值接触力、接触时间和能量吸收的影响。与传统凹腔蜂窝相比,改进结构的抗冲击性更显著。在相同冲击能量下,凹腔蜂窝夹层结构的上表面面板承受的损伤和变形更小。与传统结构相比,改进结构使上表面面板的损伤深度平均降低了12%。此外,增加面板厚度会提高夹层板的抗冲击性,但面板过厚可能会降低结构的能量吸收性能。增加凹角可以有效提高夹层结构的能量吸收性能,同时保持其原有的抗冲击性。研究结果表明了凹腔蜂窝夹层结构的优势所在,这对夹层结构的研究具有一定意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c6ba/10006908/a055ce0f2ca8/polymers-15-01092-g001.jpg

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