3D Cubic Buckling Mechanical Metamaterials

被引:0
|
作者
Muenchinger, Alexander [1 ]
Frenzel, Tobias [1 ]
Kadic, Muamer [1 ,2 ,3 ]
Wegener, Martin [1 ,2 ]
机构
[1] KIT, Inst Appl Phys, Karlsruhe, Germany
[2] KIT, Inst Nanotechnol, Eggenstein Leopoldshafen, Germany
[3] Univ Bourgogne Franche Comte, Inst FEMTO ST, Besancon, France
来源
关键词
D O I
10.1007/978-94-024-1544-5_42
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
Current concepts for shock absorbers are based on destructive deformation or viscoelasticity. In the latter case the absorbers are reusable but the amount of absorbed energy heavily depends on the loading speed. Frenzel et al. have introduced a concept using buckling mechanical instabilities to realize a reusable shock absorber working independently of the loading conditions [1]. They presented proof-of-principle structures with a uniaxial hexagonal lattice, being able to absorb shocks along this axis. We extend this idea to a cubic structure, being able to absorb energy from shocks of any direction. The structure is fabricated using three-dimensional directlaser writing. The produced samples show energy absorption along all axes probed, including the principal axes. Unfortunately, it turns out, that the viscoelasticity of the used photoresist is quite large. Hence, we cannot observe the predicted effect in our samples.
引用
收藏
页码:421 / 422
页数:2
相关论文
共 50 条
  • [41] Automated Robotic Assembly of 3D Mesostructure via Guided Mechanical Buckling
    Cai, Ying
    Han, Zhonghao
    Cranney, Trey
    Zhao, Hangbo
    Gupta, Satyandra K.
    2021 IEEE 17TH INTERNATIONAL CONFERENCE ON AUTOMATION SCIENCE AND ENGINEERING (CASE), 2021, : 2098 - 2104
  • [42] Inverse Design of Mechanical Metamaterials That Undergo Buckling
    Oliveri, Giorgio
    Overvelde, Johannes T. B.
    ADVANCED FUNCTIONAL MATERIALS, 2020, 30 (12)
  • [43] Characteristics of mechanical metamaterials based on buckling elements
    Findeisen, Claudio
    Hohe, Joerg
    Kadic, Muamer
    Gumbsch, Peter
    JOURNAL OF THE MECHANICS AND PHYSICS OF SOLIDS, 2017, 102 : 151 - 164
  • [44] 3D Printing of Auxetic Metamaterials with High-Temperature and Programmable Mechanical Properties
    Ren, Lei
    Wu, Wenzheng
    Ren, Luquan
    Song, Zhengyi
    Liu, Qingping
    Li, Bingqian
    Wu, Qian
    Zhou, Xueli
    ADVANCED MATERIALS TECHNOLOGIES, 2022, 7 (09):
  • [45] Compressive Mechanical Behavior of Additively Manufactured 3D Auxetic Metamaterials with Enhanced Strength
    Xue, Yingying
    Shao, Qi
    Mu, Jianhui
    Ji, Xun
    Wang, Xingfu
    PHYSICA STATUS SOLIDI-RAPID RESEARCH LETTERS, 2024, 18 (02):
  • [46] 3D Printing of Flexible Mechanical Metamaterials: Synergistic Design of Process and Geometric Parameters
    Li, Nan
    Xue, Chenhao
    Chen, Shenggui
    Aiyiti, Wurikaixi
    Khan, Sadaf Bashir
    Liang, Jiahua
    Zhou, Jianping
    Lu, Bingheng
    POLYMERS, 2023, 15 (23)
  • [47] Extreme Mechanical Properties of Regular Tensegrity Unit Cells in 3D Lattice Metamaterials
    Al Sabouni-Zawadzka, Anna
    MATERIALS, 2020, 13 (21) : 1 - 17
  • [48] Experiments and parametric studies on 3D metallic auxetic metamaterials with tuneable mechanical properties
    Ren, Xin
    Shen, Jianhu
    Ghaedizadeh, Arash
    Tian, Hongqi
    Xie, Yi Min
    SMART MATERIALS AND STRUCTURES, 2015, 24 (09)
  • [49] Predicting band structure of 3D mechanical metamaterials with complex geometry via XFEM
    Jifeng Zhao
    Ying Li
    Wing Kam Liu
    Computational Mechanics, 2015, 55 : 659 - 672
  • [50] Fluidic control programming for 3D magnetic soft metamaterials with reconfigurable mechanical behaviors
    Wang, Zhuoyue
    Misra, Sarthak
    Venkiteswaran, Venkatasubramanian Kalpathy
    CELL REPORTS PHYSICAL SCIENCE, 2024, 5 (08):