Elaboration of Design and Optimization Methods for a Newly Developed CFRP Sandwich-like Structure Validated by Experimental Measurements and Finite Element Analysis

被引:3
|
作者
Kovacs, Gyorgy [1 ]
机构
[1] Univ Miskolc, Inst Mfg Sci, Fac Mech Engn & Informat, H-3515 Miskolc, Hungary
关键词
CFRP laminate; new sandwich-like structure; experimental measurements; finite element method; mass and cost optimization method; COMPOSITE STRUCTURES; MULTIOBJECTIVE OPTIMIZATION; OPTIMUM DESIGN; STIFFNESS; STRENGTH; PLATES;
D O I
10.3390/polym13244348
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
Nowadays, the application of composite materials and light-weight structures is required in those industrial applications where the primary design aims are weight saving, high stiffness, corrosion resistance and vibration damping. The first goal of the study was to construct a new light-weight structure that utilizes the advantageous characteristics of Carbon Fiber Reinforced Plastic (CFRP) and Aluminum (Al) materials; furthermore, the properties of sandwich structures and cellular plates. Thus, the newly constructed structure has CFRP face sheets and Al stiffeners, which was manufactured in order to take experimental measurements. The second aim of the research was the elaboration of calculation methods for the middle deflection of the investigated sandwich-like structure and the stresses that occurred in the structural elements. The calculation methods were elaborated; furthermore, validated by experimental measurements and Finite Element analysis. The third main goal was the elaboration of a mass and cost optimization method for the investigated structure applying the Flexible Tolerance optimization method. During the optimization, seven design constraints were considered: total deflection; buckling of face sheets; web buckling in stiffeners; stress in face sheets; stress in stiffeners; eigenfrequency of the structure and constraints for the design variables. The main added values of the research are the elaboration of the calculation methods relating to the middle deflection and the occurred stresses; furthermore, elaboration of the optimization method. The primary aim of the optimization was the construction of the most light-weighted structure because the new light-weight sandwich-like structure can be utilized in many industrial applications, e.g., elements of vehicles (ship floors, airplane base-plate); transport containers; building constructions (building floors, bridge decks).
引用
收藏
页数:21
相关论文
共 31 条
  • [21] Finite-Element Analysis and Experimental Investigation on the Strength of a Three-Layer Honeycomb Sandwich Structure of the Spacecraft Adapter Module
    Akimov, D. V.
    Gryshchak, V. Z.
    Gomenyuk, S. I.
    Larionov, I. F.
    Klimenko, D. V.
    Sirenko, V. N.
    STRENGTH OF MATERIALS, 2016, 48 (03) : 379 - 383
  • [22] Finite-Element Analysis and Experimental Investigation on the Strength of a Three-Layer Honeycomb Sandwich Structure of the Spacecraft Adapter Module
    D. V. Akimov
    V. Z. Gryshchak
    S. I. Gomenyuk
    I. F. Larionov
    D. V. Klimenko
    V. N. Sirenko
    Strength of Materials, 2016, 48 : 379 - 383
  • [23] Robust shape optimization of electric devices based on deterministic optimization methods and finite-element analysis with affine parametrization and design elements
    Ion, Ion Gabriel
    Bontinck, Zeger
    Loukrezis, Dimitrios
    Roemer, Ulrich
    Lass, Oliver
    Ulbrich, Stefan
    Schoeps, Sebastian
    De Gersem, Herbert
    ELECTRICAL ENGINEERING, 2018, 100 (04) : 2635 - 2647
  • [24] Robust shape optimization of electric devices based on deterministic optimization methods and finite-element analysis with affine parametrization and design elements
    Ion Gabriel Ion
    Zeger Bontinck
    Dimitrios Loukrezis
    Ulrich Römer
    Oliver Lass
    Stefan Ulbrich
    Sebastian Schöps
    Herbert De Gersem
    Electrical Engineering, 2018, 100 : 2635 - 2647
  • [25] An optimization method for implantation parameters of individualized TKA tibial prosthesis based on finite element analysis and orthogonal experimental design
    Yuefu Dong
    Zhen Zhang
    Wanpeng Dong
    Guanghong Hu
    Bing Wang
    Zhifang Mou
    BMC Musculoskeletal Disorders, 21
  • [26] An optimization method for implantation parameters of individualized TKA tibial prosthesis based on finite element analysis and orthogonal experimental design
    Dong, Yuefu
    Zhang, Zhen
    Dong, Wanpeng
    Hu, Guanghong
    Wang, Bing
    Mou, Zhifang
    BMC MUSCULOSKELETAL DISORDERS, 2020, 21 (01)
  • [27] Modal properties investigation of a carbon/ glass fiber-reinforced polymer composite sandwich structure with lozenge-like core: An experimental and finite element simulation
    Eratbeni, Mehdi Gholizadeh
    Rostamiyan, Yasser
    JOURNAL OF VIBRATION AND CONTROL, 2023, 29 (23-24) : 5667 - 5682
  • [28] MASSIVELY-PARALLEL STRUCTURAL DESIGN USING STOCHASTIC OPTIMIZATION AND MIXED NEURALNET FINITE-ELEMENT ANALYSIS-METHODS
    SHIEH, RC
    COMPUTING SYSTEMS IN ENGINEERING, 1994, 5 (4-6): : 455 - 467
  • [29] Comparison of newly proposed test methods to evaluate the bonding quality of Cross-Laminated Timber (CLT) panels by means of experimental data and finite element (FE) analysis
    Betti, Michele
    Brunetti, Michele
    Lauriola, Marco Pio
    Nocetti, Michela
    Ravalli, Francesco
    Pizzo, Benedetto
    CONSTRUCTION AND BUILDING MATERIALS, 2016, 125 : 952 - 963
  • [30] EXPERIMENTAL AND ANALYTICAL STUDY ON ULTIMATE PROPERTY OF RUBBER BEARINGS (PART 4): EXPERIMENTAL STUDY ON VARIOUS PROPERTIES OF HIGH-DAMPING RUBBER BEARINGS WITH FLARE-LIKE STRUCTURE AND COMPARISON WITH THEORETICAL EQUATION AND FINITE ELEMENT ANALYSIS
    Mori, Takahiro
    Kato, Hideaki
    Tani, Yuma
    Akutsu, Satoru
    Ishida, Azumi
    Maruyama, Kenji
    Wakishima, Kenji
    Kato, Koji
    Nakamura, Masahiro
    Murota, Nobuo
    Takeuchi, Sadamitsu
    Journal of Structural and Construction Engineering, 2024, 89 (822): : 850 - 861