Analytical and numerical analysis on local and global buckling of sandwich panels with strut-based lattice cores

被引:0
|
作者
Georges, Hussam [1 ]
Becker, Wilfried [2 ]
Mittelstedt, Christian [1 ]
机构
[1] Tech Univ Darmstadt, Inst Lightweight Engn & Struct Mech, Otto Berndt Str 2, D-64287 Darmstadt, Germany
[2] Tech Univ Darmstadt, Inst Struct Mech, Franziska Braun Str 7, D-64287 Darmstadt, Germany
关键词
Sandwich panels; Lattice core; Global buckling; Local buckling; Euler buckling; VIBRATION; BEHAVIOR; PLATES; STRENGTH; BEAMS;
D O I
10.1007/s00419-024-02636-z
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
Additive manufacturing (AM) offers new possibilities to fabricate and design lightweight lattice materials. Due to the superior mechanical properties of these lattice structures, they have the potential to replace honeycombs as cores in sandwich panels. In addition to the advantage of the integral fabrication thanks to AM, additively manufactured lattice core sandwich panels may be also used as heat exchangers, enabling a multifunctional use of the core. To ensure a reliable and safe structure, the mechanical response of lattice core sandwich panels under given load conditions must be predictable. In conventional sandwich panels subjected to compressive loads, the sandwich's global buckling and the face sheets' local buckling are the dominant failure modes. In constrast, core strut buckling may be the critical failure mode in lattice core sandwich panels. Therefore, an analytical 2D model to predict the local buckling of lattice core struts is considered in this study. Furthermore, the critical load for global buckling is obtained based on the first-order shear deformation theory. Thus, the transition from local buckling to global buckling depending on the length-to-thickness ratio is captured by the presented model. The comparison with finite element modeling of the sandwich model with truss cores has proved the accuracy of the derived model.
引用
收藏
页码:2269 / 2283
页数:15
相关论文
共 50 条
  • [1] Structural modeling of sandwich panels with additively manufactured strut-based lattice cores
    Georges, H.
    Grossmann, A.
    Mittelstedt, C.
    Becker, W.
    ADDITIVE MANUFACTURING, 2022, 55
  • [2] Global buckling response of sandwich panels with additively manufactured lattice cores
    Osmanoglu, Serhat
    Mittelstedt, Christian
    JOURNAL OF SANDWICH STRUCTURES & MATERIALS, 2024, 26 (08) : 1569 - 1593
  • [3] Energy-based strut stress analysis of 3D lattice cores in sandwich panels
    Georges, H.
    Mittelstedt, C.
    Becker, W.
    EUROPEAN JOURNAL OF MECHANICS A-SOLIDS, 2023, 100
  • [4] An analytical approach for global buckling of composite sandwich cylindrical shells with lattice cores
    Ghahfarokhi, Davoud Shahgholian
    Rahimi, Gholamhossein
    INTERNATIONAL JOURNAL OF SOLIDS AND STRUCTURES, 2018, 146 : 69 - 79
  • [5] A unified formulation for the biaxial local and global buckling analysis of sandwich panels
    Saoud, Kahina Sad
    Le Grognec, Philippe
    THIN-WALLED STRUCTURES, 2014, 82 : 13 - 23
  • [6] Global buckling behavior of a sandwich beam with graded lattice cores
    Zhang, He
    Liu, Yu-kun
    Wang, Xiao-hong
    Zeng, Tao
    Lu, Zhi-xin
    Xu, Guo-dong
    JOURNAL OF SANDWICH STRUCTURES & MATERIALS, 2024, 26 (03) : 317 - 335
  • [7] Global buckling behavior of a sandwich beam with graded lattice cores
    Zhang, He
    Liu, Yu-Kun
    Wang, Xiao-Hong
    Zeng, Tao
    Lu, Zhi-Xin
    Xu, Guo-Dong
    Journal of Sandwich Structures and Materials, 2024, 26 (03): : 317 - 335
  • [8] Analytical and numerical analysis of composite sandwich structures with additively manufactured lattice cores
    Dereli, Emre
    Mbendou II, Jordy
    Patel, Vidhin
    Mittelstedt, Christian
    COMPOSITES PART C: OPEN ACCESS, 2024, 14
  • [9] On global and local buckling response of structural angle sandwich panels
    Andrade, Pedro
    Lagerqvist, Ove
    Simoes, Rui
    Sas, Gabriel
    THIN-WALLED STRUCTURES, 2022, 180
  • [10] On global and local buckling response of structural angle sandwich panels
    Andrade, Pedro
    Lagerqvist, Ove
    Simões, Rui
    Sas, Gabriel
    Thin-Walled Structures, 2022, 180