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一种创新的负泊松比蜂窝夹芯管:制造与力学性能

An Innovative Auxetic Honeycomb Sandwich Tube: Fabrication and Mechanical Properties.

作者信息

Wu Jianqin, Zhou Jiannan, Kong Xinli, Xu Ying, Chen Yishun, Zhu Juyan, Jin Fengnian, Wang Peng

机构信息

State Key Laboratory of Disaster Prevention & Mitigation of Explosion & Impact, Army Engineering University of PLA, Nanjing 210007, China.

JiangSu Cicil Air Defence Works Quality Supervision Station, Nanjing 210036, China.

出版信息

Polymers (Basel). 2022 Oct 17;14(20):4369. doi: 10.3390/polym14204369.

Abstract

In this study, based on the free-rolling mechanism of the auxetic honeycomb, a honeycomb cylindrical shell was successfully prepared to overcome the fracture problem of the hexagonal honeycomb during rolling. Auxetic honeycomb sandwich tubes (AHSTs) with a variable Poisson's ratio were fabricated by molding and bonding. A Poisson's ratio model of the auxetic honeycomb core was developed based on the strain increment ratio of the deformed honeycomb and validated using computed tomography (CT). Four failure modes (progressive stable fold mode I, unstable local buckling mode II, transverse shearing mode III, and mid-length collapse mode IV) of the AHST were summarized by comparing the deformation behavior and force-displacement curves with different geometric parameters. When the aspect ratio R is greater than 3, the AHST will be more easily damaged in instability (Mode IV). Static compression tests showed that the peak force (PF) and crushing force efficiency (CFE) of the AHST were higher than those of the CFRP thin-walled tube of the same diameter by 78% and 115%, respectively. Therefore, the AHST has excellent mechanical properties and it is feasible to use the auxetic honeycomb as a core for sandwich structures.

摘要

在本研究中,基于负泊松比蜂窝的自由滚动机制,成功制备了一种蜂窝圆柱壳,以克服六边形蜂窝在轧制过程中的断裂问题。通过模塑和粘结制造了具有可变泊松比的负泊松比蜂窝夹芯管(AHST)。基于变形蜂窝的应变增量比建立了负泊松比蜂窝芯的泊松比模型,并使用计算机断层扫描(CT)进行了验证。通过比较不同几何参数下的变形行为和力-位移曲线,总结了AHST的四种失效模式(渐进稳定折叠模式I、不稳定局部屈曲模式II、横向剪切模式III和中间长度坍塌模式IV)。当长宽比R大于3时,AHST在失稳(模式IV)时更容易受损。静态压缩试验表明,AHST的峰值力(PF)和抗压效率(CFE)分别比相同直径的CFRP薄壁管高78%和115%。因此,AHST具有优异的力学性能,将负泊松比蜂窝用作夹芯结构的芯材是可行的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/605f/9606870/6e8388fce040/polymers-14-04369-g001.jpg

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