Mechanical Behaviour of Photopolymer Cell-Size Graded Triply Periodic Minimal Surface Structures at Different Deformation Rates

被引:1
|
作者
Yilmaz, Yunus Emre [1 ]
Novak, Nejc [1 ]
Al-Ketan, Oraib [2 ]
Erten, Hacer Irem [3 ]
Yaman, Ulas [4 ]
Mauko, Anja [1 ]
Borovinsek, Matej [1 ]
Ulbin, Miran [1 ]
Vesenjak, Matej [1 ]
Ren, Zoran [1 ]
机构
[1] Univ Maribor, Fac Mech Engn, Maribor 2000, Slovenia
[2] New York Univ Abu Dhabi, Core Technol Platforms, POB 129188, Abu Dhabi, U Arab Emirates
[3] Izmir Inst Technol, Fac Engn, Dept Mech Engn, TR-35347 Izmir, Turkiye
[4] Middle East Tech Univ, Fac Engn, Dept Mech Engn, TR-06800 Ankara, Turkiye
关键词
cellular materials; triply periodical minimal surface; photopolymer; mechanical properties; strain rate; experimental compressive testing; computer simulations; HONEYCOMB STRUCTURE; ENERGY-ABSORPTION; FOAM; IMPACT; DESIGN;
D O I
10.3390/ma17102318
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
This study investigates how varying cell size affects the mechanical behaviour of photopolymer Triply Periodic Minimal Surfaces (TPMS) under different deformation rates. Diamond, Gyroid, and Primitive TPMS structures with spatially graded cell sizes were tested. Quasi-static experiments measured boundary forces, representing material behaviour, inertia, and deformation mechanisms. Separate studies explored the base material's behaviour and its response to strain rate, revealing a strength increase with rising strain rate. Ten compression tests identified a critical strain rate of 0.7 s-1 for "Grey Pro" material, indicating a shift in failure susceptibility. X-ray tomography, camera recording, and image correlation techniques observed cell connectivity and non-uniform deformation in TPMS structures. Regions exceeding the critical rate fractured earlier. In Primitive structures, stiffness differences caused collapse after densification of smaller cells at lower rates. The study found increasing collapse initiation stress, plateau stress, densification strain, and specific energy absorption with higher deformation rates below the critical rate for all TPMS structures. However, cell-size graded Primitive structures showed a significant reduction in plateau and specific energy absorption at a 500 mm/min rate.
引用
收藏
页数:20
相关论文
共 50 条
  • [1] Mechanical characteristics and deformation mechanism of functionally graded triply periodic minimal surface structures fabricated using stereolithography
    Zhang, Cheng
    Jiang, Zhaoliang
    Zhao, Li
    Guo, Weiwei
    Jiang, Zongxiang
    Li, Xinde
    Chen, Guopeng
    INTERNATIONAL JOURNAL OF MECHANICAL SCIENCES, 2021, 208
  • [2] QUASI-STATIC AND DYNAMIC MECHANICAL PROPERTIES OF FUNCTIONALLY GRADED TRIPLY PERIODIC MINIMAL SURFACE STRUCTURES
    Cheng, Qian
    Yin, Jianfei
    Wen, Jihong
    Yu, Dianlong
    Lixue Xuebao/Chinese Journal of Theoretical and Applied Mechanics, 2024, 56 (09): : 2646 - 2658
  • [3] Dynamic compressive behavior of functionally graded triply periodic minimal surface cellular structures
    Liang, Yingjing
    He, Huiyi
    Yin, Jun
    Huang, Jianzhang
    Wu, Zhigang
    Yao, Xiaohu
    Liu, Yijie
    ENGINEERING STRUCTURES, 2024, 312
  • [4] Mechanical behaviors regulation of triply periodic minimal surface structures with crystal twinning
    Zhang, Yanhong
    Zhang, Junming
    Zhao, Xiaolong
    Li, Yan
    Che, Shunai
    Yang, Weidong
    Han, Lu
    ADDITIVE MANUFACTURING, 2022, 58
  • [5] Dynamic compressive behavior of functionally graded triply periodic minimal surface meta-structures
    Ma, Xiaofei
    Guo, Ce
    Thin-Walled Structures, 2024, 205
  • [6] Mechanical properties of energy-absorbing structures with triply periodic minimal surface topology
    Sychov, M. M.
    Lebedev, L. A.
    Dyachenko, S. V.
    Nefedova, L. A.
    ACTA ASTRONAUTICA, 2018, 150 : 81 - 84
  • [7] Numerical analysis of the influence of triply periodic minimal surface structures morphometry on the mechanical response
    Belda, Ricardo
    Megias, Raquel
    Marco, Miguel
    Vercher-Martinez, Ana
    Giner, Eugenio
    COMPUTER METHODS AND PROGRAMS IN BIOMEDICINE, 2023, 230
  • [8] Mechanical behavior and deformation mechanism of triply periodic minimal surface sheet under compressive loading
    Wang, Zhonggang
    Wang, Xinxin
    Gao, Tianyu
    Shi, Chong
    MECHANICS OF ADVANCED MATERIALS AND STRUCTURES, 2021, 28 (19) : 2057 - 2069
  • [9] Mechanical properties of hybrid structures generated by additively manufactured triply periodic minimal surface structures and foam
    Miralbes, R.
    Pascual, F. J.
    Ranz, D.
    Gomez, J. A.
    MECHANICS OF ADVANCED MATERIALS AND STRUCTURES, 2023, 30 (21) : 4317 - 4328
  • [10] Mechanical properties of three-dimensional functionally graded triply periodic minimum surface structures
    Qiu, Na
    Zhang, Jiazhong
    Li, Cunyi
    Shen, Yijun
    Fang, Jianguang
    INTERNATIONAL JOURNAL OF MECHANICAL SCIENCES, 2023, 246