Achieving desired nodal lines in freely vibrating structures via material-field series-expansion topology optimization

被引:0
|
作者
Yi YAN [1 ]
Xiaopeng ZHANG [1 ]
Jiaqi HE [1 ]
Dazhi WANG [2 ]
Yangjun LUO [3 ]
机构
[1] State Key Laboratory of Structural Analysis for Industrial Equipment,Dalian University of Technology
[2] School ofMechanical Engineering,Dalian University of Technology
[3] School of Science,Harbin Institute of
关键词
nodal line; topology optimization; structural dynamics design; material-field series-expansion;
D O I
暂无
中图分类号
TH113.1 [机械振动学];
学科分类号
摘要
Accurately controlling the nodal lines of vibrating structures with topology optimization is a highly challenging task.The major difficulties in this type of problem include a large number of design variables,the highly nonlinear and multi-peak characteristics of iteration,and the changeable orders of eigenmodes.In this study,an effective material-field series-expansion(MFSE)-based topology optimization design strategy for precisely controlling nodal lines is proposed.Here,two typical optimization targets are established:(1) minimizing the difference between structural nodal lines and their desired positions,and(2) keeping the position of nodal lines within the specified range while optimizing certain dynamic performance.To solve this complex optimization problem,the structural topology of structures is first represented by a few design variables on the basis of the MFSE model.Then,the problems are effectively solved using a sequence Kriging-based optimization algorithm without requiring design sensitivity analysis.The proposed design strategy inherently circumvents various numerical difficulties and can effectively obtain the desired vibration modes and nodal lines.Numerical examples are provided to validate the proposed topology optimization models and the corresponding solution strategy.
引用
收藏
页码:187 / 201
页数:15
相关论文
共 18 条
  • [1] Achieving desired nodal lines in freely vibrating structures via material-field series-expansion topology optimization
    Yi Yan
    Xiaopeng Zhang
    Jiaqi He
    Dazhi Wang
    Yangjun Luo
    Frontiers of Mechanical Engineering, 2023, 18
  • [2] Achieving desired nodal lines in freely vibrating structures via material-field series-expansion topology optimization
    Yan, Yi
    Zhang, Xiaopeng
    He, Jiaqi
    Wang, Dazhi
    Luo, Yangjun
    FRONTIERS OF MECHANICAL ENGINEERING, 2023, 18 (03)
  • [3] A material-field series-expansion method for topology optimization of continuum structures
    Luo, Yangjun
    Bao, Jianwen
    COMPUTERS & STRUCTURES, 2019, 225
  • [4] A MATLAB code for the material-field series-expansion topology optimization method
    Pai Liu
    Yi Yan
    Xiaopeng Zhang
    Yangjun Luo
    Frontiers of Mechanical Engineering, 2021, 16 : 607 - 622
  • [5] A MATLAB code for the material-field series-expansion topology optimization method
    Pai LIU
    Yi YAN
    Xiaopeng ZHANG
    Yangjun LUO
    Frontiers of Mechanical Engineering, 2021, (03) : 607 - 622
  • [6] Topology optimization of structural dynamics based on material-field series-expansion
    Liang K.
    Fu L.
    Zhang X.
    Luo Y.
    Hangkong Xuebao/Acta Aeronautica et Astronautica Sinica, 2022, 43 (09):
  • [7] An adaptive material-field series-expansion method for structural topology optimization
    Fan, Weichun
    Zhang, Zhifei
    Xu, Zhongming
    He, Yansong
    STRUCTURES, 2024, 70
  • [8] A MATLAB code for the material-field series-expansion topology optimization method
    Liu, Pai
    Yan, Yi
    Zhang, Xiaopeng
    Luo, Yangjun
    FRONTIERS OF MECHANICAL ENGINEERING, 2021, 16 (03) : 607 - 622
  • [9] Robust topology optimization of multi-material structures based on the material-field series-expansion method
    Gao, Xingjun
    Li, Longhua
    Li, Yingxiong
    Dai, Meiling
    ENGINEERING OPTIMIZATION, 2024,
  • [10] A multi-material topology optimization method based on the material-field series-expansion model
    Wang, Yaguang
    Luo, Yangjun
    Yan, Yi
    STRUCTURAL AND MULTIDISCIPLINARY OPTIMIZATION, 2022, 65 (01)