Structural optimization of additively manufactured PETG/CF honeycomb sandwich structures for lightweight applications

被引:0
|
作者
Mellouli, H. [1 ,4 ]
Mallek, H. [2 ,4 ]
Allouch, M. [4 ]
Tlili, H. [4 ]
Wali, M. [3 ,4 ]
Dammak, F. [4 ]
机构
[1] Univ Gafsa, Gafsa Preparatory Engn Inst, IPEI Gafsa, Gafsa, Tunisia
[2] Univ Sousse, Higher Inst Appl Sci & Technol Sousse, ISSAT Sousse, Sousse, Tunisia
[3] Univ Sousse, Higher Sch Sci & Technol Hammam Sousse, ESSTHS, Sousse, Tunisia
[4] Univ Sfax, Natl Engn Sch Sfax ENIS, Lab Electrochem & Environm LEE, Sfax, Tunisia
关键词
FDM; PETG/CF; 3-point bending; Honeycomb sandwiches;
D O I
10.1007/s40964-024-00917-1
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
This research investigates the mechanical properties of 3D-printed Polyethylene Terephthalate Glycol (PETG) and PETG reinforced with 15% Carbon Fibers (CF), using fused deposition modeling (FDM) through experimental and numerical analyses. Tensile tests were conducted to compare the tensile strength, modulus of elasticity, and yield strength between pure PETG polymer and PETG/CF composite. The experimental results were complemented by Finite Element Method (FEM) simulations to model and validate the tensile behavior through the implementation of the Voce law of plasticity. Additionally, the study examines the mechanical performance of honeycomb sandwich structures with different core designs: rectilinear, auxetic, and hexagonal. Three-point bending experiments were performed to assess the load-bearing capacity and deformation behavior of these structures, with the experimental results verified through FEM. By integrating experimental data with numerical simulations, this research aims to provide comprehensive insights into optimizing the mechanical properties and structural performance of PETG-based composites and honeycomb sandwich structures for various engineering applications.
引用
收藏
页数:17
相关论文
共 50 条
  • [31] Additively manufactured negative stiffness structures for shock absorber applications
    Corsi, M.
    Bagassi, S.
    Moruzzi, M. C.
    Weigand, F.
    MECHANICS OF ADVANCED MATERIALS AND STRUCTURES, 2022, 29 (07) : 999 - 1010
  • [32] Nonlinear vibrations of doubly curved composite sandwich shells with FDM additively manufactured flexible honeycomb core
    Avramov, K.
    Uspensky, B.
    ACTA MECHANICA, 2023, 234 (03) : 1183 - 1210
  • [33] Additively manufactured lattice and sandwich structure consists of hybrid GFRP-PLA PU-graphite-foam for lightweight structure applications
    Nugroho, Alvin Dio
    Alandro, Daffa
    Muflikhun, Muhammad Akhsin
    PROGRESS IN ADDITIVE MANUFACTURING, 2025, 10 (02) : 1201 - 1216
  • [34] Structural modeling of sandwich structures with lightweight cellular cores
    T.Liu
    Z.C.Deng
    T.J.Lu
    Acta Mechanica Sinica, 2007, (05) : 545 - 559
  • [35] Shingled design lightweight photovoltaic modules using honeycomb sandwich structures as backsheets
    Park, Min-Joon
    Youn, Sungmin
    Kim, Minseob
    Lee, Eunbi
    Jeon, Kiseok
    Jeong, Chaehwan
    SOLAR ENERGY MATERIALS AND SOLAR CELLS, 2024, 278
  • [36] Structural modeling of sandwich structures with lightweight cellular cores
    T. Liu
    Z. C. Deng
    T. J. Lu
    Acta Mechanica Sinica, 2007, 23 : 545 - 559
  • [37] Additively Manufactured Lightweight Automobile Cylinder Head-A New Process for Structural Optimization from Concept to Validated Hardware
    Kayacan, Can
    Pischinger, Stefan
    Ahlborn, Klaus
    Bueltmann, Jan
    SAE INTERNATIONAL JOURNAL OF ENGINES, 2025, 18 (01)
  • [38] Structural modeling of sandwich structures with lightweight cellular cores
    Liu, T.
    Deng, Z. C.
    Lu, T. J.
    ACTA MECHANICA SINICA, 2007, 23 (05) : 545 - 559
  • [39] Compression testing of additively manufactured continuous carbon fiber-reinforced sandwich structures
    Striemann, Patrick
    Eichenhofer, Martin
    Schupp, Daniel
    Niedermeier, Michael
    Huelsbusch, Daniel
    Walther, Frank
    MATERIALS TESTING, 2018, 60 (09) : 801 - 808
  • [40] Honeycomb Molding - Forming Thermoplastic Sandwich Structures for Interior Applications
    Wist, Santino
    Gries, Thomas
    SAMPE JOURNAL, 2024, 60 (06) : 34 - 42