您好,欢迎来到中国测试科技资讯平台!

首页> 《中国测试》期刊 >本期导读>两种二级铝蜂窝结构缓冲吸能特性研究

两种二级铝蜂窝结构缓冲吸能特性研究

2783    2016-11-11

免费

全文售价

作者:李翔城, 林玉亮, 卢芳云, 李志斌

作者单位:国防科学技术大学理学院工程物理研究所, 湖南 长沙 410073


关键词:组合式铝蜂窝;串联式蜂窝;缓冲吸能;异面压缩


摘要:

该文对二级串联式铝蜂窝结构和二级组合式铝蜂窝结构的缓冲吸能特性进行比较,从而实现对铝蜂窝缓冲吸能结构装置优化设计。通过准静态异面压缩实验,对两种不同正六边形胞元的铝蜂窝进行测试,分别得到这两种二级铝蜂窝结构的压缩变形过程和应力响应曲线,并对其变形机理进行分析。实验结果表明,二级串联式铝蜂窝和二级组合式铝蜂窝均能实现梯度平台应力响应,这有利于二级缓冲吸能结构的工程应用。此外,对于单轴压缩,二级组合式铝蜂窝的嵌入过程只有一个应力峰值并且其能达到更高的压实程度,但是峰值应力值较大,有待进一步优化。在吸能特性方面,与同一尺寸的二级串联式铝蜂窝缓冲器相比,组合式铝蜂窝缓冲结构的单位体积吸能效果稍强,尤其是单位质量吸能效果更好,可为缓冲吸能结构的优化设计提供新的选择方式。


Studies on buffering and energy-absorption of two bilayer aluminum honeycomb structures

LI Xiangcheng, LIN Yuliang, LU Fangyun, LI Zhibing

Institute of Engineering Physics, College of Science, NUDT, Changsha 410073, China

Abstract: Aimed to optimize multi-layer aluminum hexagonal honeycomb buffer and energy-absorption structures,related properties between bilayer combined aluminum hexagonal honeycomb and series aluminum honeycomb were compared.The authors carried out on two types of hexagonal honeycomb with different sizes of cells under quasi-static out-of-plane compression.As a result,stress-strain curves of combined aluminum honeycomb and series aluminum honeycomb were gotten.Results show that both bilayer aluminum honeycomb structures can realize gradient plateau stress response,which is beneficial in the practical applications.Besides,it also shows that the insertion process of combined honeycomb structure can erase the initial peak stress,but a higher peak stress is left and it can also realize higher compaction degree.In a word,the ability of buffering and energy-absorption is better than series honeycomb structures.

Keywords: combined aluminum honeycomb;series honeycomb structure;energy-absorption;out-of-plane compression

2016, 42(10): 100-106  收稿日期: 2016-4-9;收到修改稿日期: 2016-5-20

基金项目: 国家自然科学基金项目(11672329,11132012)

作者简介: 李翔城(1992-),男,湖南隆回县人,硕士研究生,专业方向为材料动态力学性能。

参考文献

[1] 王飞,李剑荣,虞吉林. 铝蜂窝结构单向压缩、失稳和破坏机制研究[J]. 力学学报,2001,33(60):741-748.
[2] BAKER E W, TOGAMI T C, WEYDERT J C. Static and dynamic properties of high-density metal honeycombs[J]. International Journal of Impact Engineering,1998,219(3):149-163.
[3] YAMASHITA M, GOTOH M. Impact behavior of honeycomb structures with various cell specifications-numerical simulation and experiment[J]. International Journal of Impact Engineering,2005,32(s1-4):618-630.
[4] 曾福民,杨建中,朱汪,等. 月球着陆器着陆缓冲性能研究[J]. 航天器工程,2010,19(5):43-49.
[5] 杨建中,满剑锋,曾福民,等. 一种着陆探测器变形缓冲器:ZL201120551968.5[P]. 2011-12-23.
[6] 钱立军,杨士钦,马恒永. 具有诱导结构的汽车薄壁杆件的耐撞性研究[J]. 汽车技术,2001(6):9-11.
[7] 杨建中. 航天器着陆缓冲结构[M].北京:宇航出版社,2015:27-28.
[8] 李萌. 腿式着陆器用泡沫铝和铝蜂窝缓冲器仿真与试验研究[D]. 哈尔滨:哈尔滨工业大学,2009.
[9] 李萌,刘荣强,罗昌杰,等. 铝蜂窝串联缓冲结构静态压缩仿真与试验研究[J]. 振动与冲击,2013,32(9):50-56.
[10] YASUI Y. Dynamic axial crushing of multi-layer honeycomb panels and impact tensile behavior of the component members[J]. International Journal of Impact Engineering,2000,24(6-7):659-671.
[11] LIN Y L, ZHANG Z F, CHEN R, et al. Cushing and energy absorbing property of combined aluminum honeycomb[J]. Advanced Engineering Materials,2015,17(10):1434-1441.
[12] 文学军,卢芳云,林玉亮,等. 组合铝蜂窝结构的异面压缩响应及减冲击性能分析[C]//全国冲击动力学学术会议,2013.
[13] CAO L, LIN Y L, LU F Y, et al. Experimental study on the shock absorption performance of combined aluminum honeycombs under impact loading[J]. Shock and Vibration,2015:1-8.
[14] WIERZBICKI T. Crushing analysis of metal honeycombs[J]. International Journal of Impact Engineering,1983,1(2):157-174.
[15] 王中钢,鲁寨军. 铝蜂窝异面压缩吸能特性试验评估[J]. 中南大学学报(自然科学版),2013,44(3):1246-1251.
[16] MILTZ J, GRUENBAUM G. Evaluation of cushion properties of plastic foams compressive measurements[J]. Polymer Engineer Science,1981,21(15):1010-1014.
[17] 曾裴,潘艺,胡时胜. 泡沫铝缓冲吸能效率评估及其特性[J].爆炸与冲击,2002,22(4):358-362.
[18] 尹汉锋. 着陆缓冲系统中吸能结构的耐撞性优化[D]. 长沙:湖南大学,2011.
[19] 张新春,刘颖,章梓茂. 组合蜂窝材料面内冲击性能的研究[J]. 工程力学,2009,26(6):220-225.
[20] 杨建中. 航天器着陆缓冲结构[M]. 北京:宇航出版社,2015:87-89.