Impact fracture analysis and energy absorption optimization of thin-walled composite tubes under axial impact loads

被引:0
|
作者
Li, Zhe [1 ]
Sun, Lingyu [1 ]
机构
[1] School of Transportation Science and Engineering, Beihang University, Beijing 100191, China
关键词
Dynamic fracture process - Explicit finite element method - Fiber reinforced polymers - Orthotropic materials - Sequential quadratic programming algorithm - Specific energy absorption - Strength and stiffness - Thin-walled composites;
D O I
暂无
中图分类号
学科分类号
摘要
In order to design energy-absorption tubes for different impact loadings, the dynamic fracture process of composite tubes under axial crash loads was simulated by nonlinear explicit finite element method. The orthotropic material constants for fiber-reinforced polymer were obtained based on the strength and stiffness theory of composites. According to the principle of orthogonal design, the nonlinear mapping relations between specific energy absorption of tubes and their geometry parameters were established, and corresponding response surfaces were constructed. With the restriction of peak acceleration in frontal vehicle collision, the structural parameters of tubes with high specific energy absorption and low peak impact force were optimized by using sequential quadratic programming algorithm. The simulation results show that the deformation modes, absorbed energy, impact force versus displacement curve as well as the peak impact load agree well with that of experiments. The obtained maximum special energy absorption is 29.231 J/g when the wall thickness, edge length and tube length of square tube are 2.1, 44 and 200 mm, respectively.
引用
收藏
页码:212 / 218
相关论文
共 50 条
  • [1] Energy absorption of aluminum alloy thin-walled tubes under axial impact
    Hongtu Sun
    Jian Wang
    Guozhe Shen
    Ping Hu
    Journal of Mechanical Science and Technology, 2016, 30 : 3105 - 3111
  • [2] Energy absorption of aluminum alloy thin-walled tubes under axial impact
    Sun, Hongtu
    Wang, Jian
    Shen, Guozhe
    Hu, Ping
    JOURNAL OF MECHANICAL SCIENCE AND TECHNOLOGY, 2016, 30 (07) : 3105 - 3111
  • [3] ENERGY ABSORPTION CAPABILITY NUMERICAL ANALYSIS OF THIN-WALLED PRISMATIC TUBES WITH CORNER DENTS UNDER AXIAL IMPACT
    Ferdynus, Miroslaw
    Kotelko, Maria
    Kral, Jan, Jr.
    EKSPLOATACJA I NIEZAWODNOSC-MAINTENANCE AND RELIABILITY, 2018, 20 (02): : 252 - 259
  • [4] Energy absorption of variable stiffness composite thin-walled tubes on axial impacting
    Sun, Hongtu
    Li, Fengxun
    Shen, Kechang
    Gong, Qingtao
    COMPOSITES PART C: OPEN ACCESS, 2023, 12
  • [5] Optimal shape design of thin-walled tubes under high-velocity axial impact loads
    Tanlak, Niyazi
    Sonmez, Fazil O.
    THIN-WALLED STRUCTURES, 2014, 84 : 302 - 312
  • [6] ENERGY ABSORPTION CONTROL CHARACTERISTICS OF AL THIN-WALLED TUBES UNDER IMPACT LOAD
    Lee, Kil-Sung
    Yang, Yong-Jun
    Kim, Sun-Kyu
    Yang, In-Young
    ACTA MECHANICA SOLIDA SINICA, 2008, 21 (04) : 383 - 388
  • [7] Energy Absorption Control Characteristics of Al Thin-Walled Tubes Under Impact Load
    Kil-Sung Lee
    Yong-Jun Yang
    Sun-Kyu Kim
    In-Young Yang
    Acta Mechanica Solida Sinica, 2008, 21 : 383 - 388
  • [8] ENERGY ABSORPTION CONTROL CHARACTERISTICS OF AL THIN-WALLED TUBES UNDER IMPACT LOAD
    Kil-Sung Lee
    Sun-Kyu Kim
    In-Young Yang
    ActaMechanicaSolidaSinica, 2008, (04) : 383 - 388
  • [9] Energy absorption of pressurized thin-walled circular tubes under axial crushing
    Zhang, X. W.
    Yu, T. X.
    INTERNATIONAL JOURNAL OF MECHANICAL SCIENCES, 2009, 51 (05) : 335 - 349
  • [10] AXIAL COLLAPSE OF THIN-WALLED SQUARE TUBES BY IMPACT
    MURASE, K
    KATORI, H
    NISHIMURA, T
    EXPERIMENTAL MECHANICS, 1982, 22 (05) : N54 - N54