The analysis and prediction of nonlinear damping characteristics of partially filled all-composite honeycomb-core sandwich panels

被引:0
|
作者
Xu, Zhuo [1 ,3 ]
Yao, Nan [1 ]
Li, Hui [2 ,3 ]
Chu, Chen [1 ]
Sun, Xian-chao [4 ]
Gu, Da-wei [3 ,5 ]
Li, He [2 ,3 ]
Han, Qing-kai [2 ,3 ]
Wen, Bang-chun [2 ,3 ]
机构
[1] Northeast Elect Power Univ, Sch Mech Engn, Jilin 132014, Peoples R China
[2] Northeastern Univ, Sch Mech Engn & Automat, Shenyang 110819, Peoples R China
[3] Northeastern Univ, Key Lab Vibrat & Control Aeroprop Syst, Minist Educ, Shenyang 110819, Peoples R China
[4] Changchun Special Equipment Safety Monitoring Ctr, Changchun Special Equipment Inspection & Res Inst, Changchun, Peoples R China
[5] Zhejiang Univ Technol, Sch Mech Engn, Hangzhou 310014, Peoples R China
关键词
Honeycomb core; All-composite sandwich structure; Partially filled with foam; Nonlinear damping; Finite element modeling; VIBRATIONS; PLATE; IDENTIFICATION; STIFFNESS; BEHAVIOR; BEAMS; MODEL; LAYER;
D O I
10.1016/j.tws.2024.112463
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
In this paper, a comprehensive nonlinear damping prediction model of partially filled all-composite honeycomb- core sandwich panels (PF-ALHCSP) is proposed. Based on integrating high-order shear theory and Hamilton's principle, a theoretical model of the structure is established. Then, the energy equations are deduced by the finite element method. Thus, the nonlinear damping is obtained by the introduced complex modulus method. To validate the overall performance of the material and the accuracy of the theoretical model, the corresponding specimens are fabricated and a self-designed vibration testing platform is established. The results indicate that this material exhibits higher damping capacities compared to traditional metals or composite materials. To further enhance the material optimization, in conjunction with the proposed theoretical model, an investigation on the influence of three variables, filler density, honeycomb cell thickness, and panel thickness, on the structural damping characteristics across three different filling ratios is conducted. The proposed novel composite material and nonlinear damping prediction model can be adjusted according to practical applications for structural parameters, meanwhile effectively reducing material replacement frequency. The theoretical model provides a relatively accurate computational method for studying the nonlinear damping characteristics of partially filled foam honeycomb core sandwich structures, offering valuable insights for research in this field.
引用
收藏
页数:20
相关论文
共 50 条
  • [1] Research on the Damping Characteristics of Partially Filled All-Composite Honeycomb-Core Sandwich Panel
    Xu, Zhuo
    Yao, Nan
    Li, Hui
    Chu, Chen
    Zhang, Yong-Feng
    Gu, Da-Wei
    Li, He
    Han, Qing-Kai
    Wen, Bang-Chun
    INTERNATIONAL JOURNAL OF STRUCTURAL STABILITY AND DYNAMICS, 2024,
  • [2] Analysis of nonlinear vibration characteristics in all-composite honeycomb-core sandwich panel with material and geometric nonlinearity
    Zhuo, Xu
    Chen, Chu
    Hui, Li
    Gu, Da-wei
    Jian, Xiong
    Han, Qing-kai
    Wen, Bang-chun
    NONLINEAR DYNAMICS, 2025, 113 (07) : 6009 - 6030
  • [3] Nonlinear Vibration Characteristics of All-Composite Honeycomb-Core Sandwich Panel: Theoretical and Experimental Investigation
    Xu, Zhuo
    Chu, Chen
    Li, Hui
    Xu, Pei-Yao
    Sun, Peng-Yao
    Zhang, Yong-Feng
    Gu, Da-Wei
    Han, Qing-Kai
    Wen, Bang-Chun
    INTERNATIONAL JOURNAL OF STRUCTURAL STABILITY AND DYNAMICS, 2024,
  • [4] Analysis of vibrational characteristics of all-composite honeycomb core sandwich panels: theoretical and experimental study
    Chen, Chu
    Zhuo, Xu
    Hui, Li
    Xu, Pei-yao
    Sun, Xian-chao
    Gu, Da-wei
    Hu, Chang-cheng
    He, Li
    Wen, Bang-chun
    MECCANICA, 2024, 59 (09) : 1481 - 1498
  • [5] Amplitude-dependent damping characteristics of all-composite sandwich plates with a foam-filled hexagon honeycomb core
    Li, Hui
    Liu, Yang
    Zhang, Haiyang
    Qin, Zhaoye
    Wang, Zhaoyang
    Deng, Yichen
    Xiong, Jian
    Wang, Xiangping
    Ha, Sung Kyu
    MECHANICAL SYSTEMS AND SIGNAL PROCESSING, 2023, 186
  • [6] Nonlinear vibrations of all-composite sandwich plates with a hexagon honeycomb core: Theoretical and experimental investigations
    li, Hui
    Liu, Yang
    Shi, Xianjie
    Wang, Zhaoyang
    Wang, Xiangping
    Xiong, Jian
    Guan, Zhongwei
    COMPOSITE STRUCTURES, 2023, 305
  • [7] Three-point bending characteristics of all-composite sandwich panels with different core configurations
    Zhu, Xiujie
    Xiong, Chao
    Yin, Junhui
    Qin, Yuhang
    Sun, Haitao
    Cui, Kaibo
    Zou, Youchun
    Deng, Huiyong
    MECHANICS OF ADVANCED MATERIALS AND STRUCTURES, 2024, 31 (15) : 3289 - 3308
  • [8] Precise bending stress analysis of corrugated-core, honeycomb-core and X-core sandwich panels
    He, Li
    Cheng, Yuan-Sheng
    Liu, Jun
    COMPOSITE STRUCTURES, 2012, 94 (05) : 1656 - 1668
  • [9] Free vibration analysis of composite sandwich panels with hierarchical honeycomb sandwich core
    Wang, Yong-jing
    Zhang, Zhi-jia
    Xue, Xiao-min
    Zhang, Ling
    THIN-WALLED STRUCTURES, 2019, 145
  • [10] All-composite honeycomb core sandwich structures: Master curves for stiffness-based design
    Papila, Melih
    Atilgan, Ali Rana
    FORCES IN MECHANICS, 2022, 6