Energy Absorption Performance of Open-Cell Aluminum Foam and Its Application in Landing Buffer System

被引:13
|
作者
Zhang, Xiaotian [1 ]
Wang, Ruiqing [1 ]
Li, Xiaogang [1 ]
Lu, Chengyang [1 ]
Wang, Zhengkang [2 ]
Wang, Wenlong [1 ]
机构
[1] Beihang Univ, Beijing 100191, Peoples R China
[2] Beijing Inst Spacecraft Syst Engn, Beijing 100094, Peoples R China
基金
中国国家自然科学基金;
关键词
aluminum foam; dynamic compression; energy absorption; landing buffer; numerical simulation; MECHANICAL-PROPERTIES; METAL FOAMS;
D O I
10.1007/s11665-021-05823-z
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The outstanding mechanical properties and lightness of aluminum foam make it attractive as buffering and energy absorption material for spacecraft landing in deep space exploration. In this paper, cell-based model of open-cell aluminum foam has been established by Voronoi tessellation method. Through quantitative comparisons of energy absorption performance between different simulation models, it can be found that the improvement of base material properties can lead to significant enhancement of energy absorption ability, and there is an approximate linear relationship between relative density and relative energy absorption at low speeds. Characteristic deformation mode has been discussed under different compression speeds. The isotropic buffering characteristic of aluminum foam materials has been verified by the simulation of a footpad filled with aluminum foam impacting on a sloping ground.
引用
收藏
页码:6132 / 6145
页数:14
相关论文
共 50 条
  • [21] Energy absorption mechanism of open-cell Zr-based bulk metallic glass foam
    Wei, X.
    Chen, J. H.
    Dai, L. H.
    SCRIPTA MATERIALIA, 2012, 66 (10) : 721 - 724
  • [22] Laser welding for joining of open-cell aluminum foam to solid shell
    Phongphisutthinan, Chakkrist
    Wattanapornphan, Paiboon
    Suga, Tetsuo
    Mizutani, Masami
    Katayama, Seiji
    WELDING IN THE WORLD, 2019, 63 (03) : 825 - 839
  • [23] Uniaxial deformation of open-cell aluminum foam: the role of internal damage
    San Marchi, C
    Despois, JF
    Mortensen, A
    ACTA MATERIALIA, 2004, 52 (10) : 2895 - 2902
  • [24] Laser welding for joining of open-cell aluminum foam to solid shell
    Chakkrist Phongphisutthinan
    Paiboon Wattanapornphan
    Tetsuo Suga
    Masami Mizutani
    Seiji Katayama
    Welding in the World, 2019, 63 : 825 - 839
  • [25] Research on energy absorption properties of open-cell copper foam for current collector of Li-ions
    Chen, Jian
    Li, Xiongfei
    Li, Wei
    Li, Cong
    Xie, Baoshan
    Dai, Shuowei
    He, Jian-Jun
    Ren, Yanjie
    MATERIALS SCIENCE-POLAND, 2019, 37 (01): : 8 - 15
  • [26] Dynamic viscous permeability of an open-cell aluminum foam: Computations versus experiments
    Perrot, Camille
    Chevillotte, Fabien
    Panneton, Raymond
    JOURNAL OF APPLIED PHYSICS, 2008, 103 (02)
  • [27] Synergetic effect of reduced graphene oxide and reticulated open-cell aluminum hybrid composite foam for high-performance electromagnetic wave absorption
    Pandey, Ashutosh
    Dubey, Ruchi
    Srivastava, Shashank Kumar
    Jain, Hemant
    Sharma, Anushi
    Raj, Rakesh
    Sriram, S.
    Yadav, B. N.
    Chilla, Venkat
    Gupta, Gaurav Kumar
    Kumar, Rajeev
    Mondal, Dehi Pada
    JOURNAL OF ALLOYS AND COMPOUNDS, 2023, 968
  • [28] Open-Cell Nickel Alloy Foam–Natural Rubber Hybrid: Compression Energy Absorption Behavior Analysis and Experiment
    Abhay Chaturvedi
    Manoj Kumar Gupta
    Shashank Chaturvedi
    Journal of Materials Engineering and Performance, 2021, 30 : 885 - 893
  • [29] Transition Among Flow Regimes in 10-ppi Open-cell Aluminum Foam
    Dukhan, N.
    Ali, M.
    POROUS METALS AND METALLIC FOAMS, METFOAM 2011, 2012, : 387 - 392
  • [30] Preparation of big size open-cell aluminum foam board using infiltration casting
    Wang Lucai
    Chen Yuyong
    Wang Fang
    Wu Jianguo
    You Xiaohong
    CHINA FOUNDRY, 2008, 5 (04) : 240 - 243