Initial densification strain point's determination of honeycomb structure subjected to out-of-plane compression

被引:0
|
作者
王中钢 [1 ,2 ]
周伟 [1 ]
刘杰夫 [1 ]
机构
[1] School of Traffic & Transportation Engineering,Key laboratory of Traffic Safety on Track of Ministry of Education,Central South University
[2] CRRC Qingdao Sifang Co.Ltd.
基金
中国国家自然科学基金;
关键词
honeycomb; densification strain; full fold element; half-wave length;
D O I
暂无
中图分类号
U467.14 [];
学科分类号
080204 ; 082304 ;
摘要
Compression ratio is significant for cellular structures on energy absorption.In the present work,theoretical formulas to determine the initial densification strain of honeycomb structure were put forward by means of minimum energy principle.Detailed densification strain points were identified,with full fold model for kinds of specimens.To validate,corresponding numerical simulations were carried out with explicit finite element method.Excellent agreement in terms of initial densification stain point has been observed between the theoretical calculation and numerical simulation.The results show that:(1) different honeycomb structure has different initial densification strain point,and its geometric configuration of cells plays an evident role on densification;(2)half-wave length of the wrinkle of honeycomb in folding process significantly influences on the densification strain point;(3) the initial densification point is an decreasing power function of the ratio of foil thickness to cell length,with the exponent 2/3.These achievements provide important references for design in cellular energy absorption devices.
引用
收藏
页码:1671 / 1675
页数:5
相关论文
共 50 条
  • [21] Second order effects in out-of-plane strength of unreinforced masonry walls subjected to bending and compression
    Morandi, P.
    Magenes, G.
    Griffith, M.
    [J]. AUSTRALIAN JOURNAL OF STRUCTURAL ENGINEERING, 2008, 8 (02) : 133 - 144
  • [22] Out-of-plane Quasi-static Compression of Aluminum Hexagonal Honeycomb Cores - a Finite Element Analysis
    Sun, Deqiang
    [J]. ADVANCES IN CIVIL ENGINEERING AND ARCHITECTURE INNOVATION, PTS 1-6, 2012, 368-373 : 339 - 343
  • [23] The Out-of-Plane Compression Response of Woven Thermoplastic Composites: Effects of Strain Rates and Temperature
    Wang, Shiyu
    Wen, Lihua
    Xiao, Jinyou
    Lei, Ming
    Hou, Xiao
    Liang, Jun
    [J]. POLYMERS, 2021, 13 (02) : 1 - 16
  • [24] Failure prediction for high-strain rate and out-of-plane compression of fibrous composites
    Pournoori, Nazanin
    Rodera, Oscar
    Jokinen, Jarno
    Hokka, Mikko
    Kanerva, Mikko
    [J]. COMPOSITES SCIENCE AND TECHNOLOGY, 2022, 218
  • [25] ON THE STRAIN-ENERGY RELEASE RATE FOR A CRACKED PLATE SUBJECTED TO OUT-OF-PLANE BENDING MOMENT
    YOUNG, MJ
    SUN, CT
    [J]. INTERNATIONAL JOURNAL OF FRACTURE, 1993, 60 (03) : 227 - 247
  • [26] Dynamic interface model for masonry walls subjected to high strain rate out-of-plane loads
    Hashemi Rafsanjani, S.
    Lourenco, P. B.
    Peixinho, N.
    [J]. INTERNATIONAL JOURNAL OF IMPACT ENGINEERING, 2015, 76 : 28 - 37
  • [27] Out-of-plane energy absorption and crashing behavior of arc-curved hexagonal honeycomb structure
    Yuan, Wei
    Kou, Yanqing
    Meng, Zhaokang
    Zhu, Shengli
    [J]. MECHANICS OF ADVANCED MATERIALS AND STRUCTURES, 2024, 31 (16) : 3855 - 3860
  • [28] Structure design of reinforced honeycomb paperboard core and characterization of its out-of-plane bearing strength
    Mou, Xin-ni
    Lu, Li-xin
    [J]. PACKAGING TECHNOLOGY AND SCIENCE, 2019, 32 (11) : 567 - 576
  • [29] Optimization of printing parameters and out-of-plane compression performance of 316L stainless steel ribbed honeycomb
    Zhou, Guangming
    Yu, Tao
    Cheng, Yuanguang
    Hu, Fuchao
    Jiang, Tianfan
    Ni, Ruiyang
    Cao, Fujun
    Sun, Tao
    Zhou, Yimin
    Shen, Yifu
    [J]. CIRP JOURNAL OF MANUFACTURING SCIENCE AND TECHNOLOGY, 2023, 43 : 71 - 87
  • [30] Strain gradient micromechanical modeling of substrate - supported crystalline microplates subjected to permanent in-plane and out-of-plane tractions
    Darvishvand, Amer
    Zajkani, Asghar
    [J]. MECHANICS BASED DESIGN OF STRUCTURES AND MACHINES, 2021, 49 (07) : 969 - 985