Multi-band design for one-dimensional phononic crystals

被引:0
|
作者
Pei Zhang
ZhenYu Wang
YongQiang Zhang
Xu Liang
机构
[1] Zhejiang University,College of Civil Engineering and Architecture
关键词
phononic crystals; multi-band design; multi-objective optimization;
D O I
暂无
中图分类号
学科分类号
摘要
Periodic composites with band gaps that prevent the propagation of elastic waves in certain frequency ranges can be used to control waves for a variety of engineering applications. Although studies on the characteristics of these materials, which are called phononic crystals (PCs), have yielded a large number of positive results in recent years, there is still a lack of effective design methods. In this work, a multi-objective optimization approach based on the band gap mechanism and an intelligent algorithm is used to design a one-dimensional (1D) slab construction of PCs. The design aims to fit pre-determined bands by arranging the available materials properly. Obtained by analyzing the wave transmission in periodic layers, the objective functions are linked to the optimization program to obtain a proper solution set. The results of the numerical simulations demonstrate that without constructing complicated structures, the design method is able to produce PCs that overcome the limitations of two-component PCs and hence can feasibly and effectively achieve the design targets. The design approach presented in this paper can be extended to two- or three-dimensional systems and has great potential for the development of sound/ultrasound isolation structures, multiple band frequency filters, and other applications.
引用
收藏
页码:1253 / 1262
页数:9
相关论文
共 50 条
  • [31] Research on Band Structure of One-dimensional Phononic Crystals Based on Wavelet Finite Element Method
    Liu, Mao
    Xiang, Jiawei
    Gao, Haifeng
    Jiang, Yongying
    Zhou, Yuqing
    Li, Fengping
    [J]. CMES-COMPUTER MODELING IN ENGINEERING & SCIENCES, 2014, 97 (05): : 425 - 436
  • [32] Wavelet-based method for computing elastic band gaps of one-dimensional phononic crystals
    YAN ZhiZhong & WANG YueSheng Institute of Engineering Mechanics
    [J]. Science China(Physics,Mechanics & Astronomy), 2007, (05) : 622 - 630
  • [33] Tunability of Bragg band gaps in one-dimensional piezoelectric phononic crystals using external capacitances
    Degraeve, Sebastien
    Granger, Christian
    Dubus, Bertrand
    Vasseur, Jerome O.
    Mai Pham Thi
    Hladky, Anne-Christine
    [J]. SMART MATERIALS AND STRUCTURES, 2015, 24 (08)
  • [34] Design and Optimization of Omnidirectional Band Gap for One-Dimensional Periodic and Quasiperiodic Phononic Heterostructures
    Chen Zhao-Jiang
    [J]. CHINESE PHYSICS LETTERS, 2015, 32 (01)
  • [35] Design and Optimization of Omnidirectional Band Gap for One-Dimensional Periodic and Quasiperiodic Phononic Heterostructures
    陈赵江
    [J]. Chinese Physics Letters, 2015, (01) : 91 - 94
  • [36] Design and Optimization of Omnidirectional Band Gap for One-Dimensional Periodic and Quasiperiodic Phononic Heterostructures
    陈赵江
    [J]. Chinese Physics Letters., 2015, 32 (01) - 94
  • [37] Study on Band Gap Structure of One Dimensional Phononic Crystals
    Yan-Lin, Wang
    Ming-Wen, Chen
    Zi-Dong, Wang
    [J]. NEW MATERIALS AND ADVANCED MATERIALS, PTS 1 AND 2, 2011, 152-153 : 1696 - +
  • [38] A one-dimensional optomechanical crystal with a complete phononic band gap
    Gomis-Bresco, J.
    Navarro-Urrios, D.
    Oudich, M.
    El-Jallal, S.
    Griol, A.
    Puerto, D.
    Chavez, E.
    Pennec, Y.
    Djafari-Rouhani, B.
    Alzina, F.
    Martinez, A.
    Sotomayor Torres, C. M.
    [J]. NATURE COMMUNICATIONS, 2014, 5
  • [39] Three material and four material one-dimensional phononic crystals
    Kriegel, Ilka
    Scotognella, Francesco
    [J]. PHYSICA E-LOW-DIMENSIONAL SYSTEMS & NANOSTRUCTURES, 2017, 85 : 34 - 37
  • [40] Influence of temperature on the properties of one-dimensional piezoelectric phononic crystals
    Nagaty, Ahmed
    Mehaney, Ahmed
    Aly, Arafa H.
    [J]. CHINESE PHYSICS B, 2018, 27 (09)