Size effects on the mixed modes and defect modes for a nano-scale phononic crystal slab

被引:0
作者
Jun Jin
Ningdong Hu
Hongping Hu
机构
[1] Huazhong University of Science and Technology,Department of Mechanics, School of Aerospace Engineering
[2] Huazhong University of Science and Technology,Hubei Key Laboratory of Engineering Structural Analysis and Safety Assessment
来源
Applied Mathematics and Mechanics | 2023年 / 44卷
关键词
band structure; phononic crystal (PnC); nonlocal strain gradient theory (NSGT); size effect; O343.5; 74J30; 78M16;
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学科分类号
摘要
The size-dependent band structure of an Si phononic crystal (PnC) slab with an air hole is studied by utilizing the non-classic wave equations of the nonlocal strain gradient theory (NSGT). The three-dimensional (3D) non-classic wave equations for the anisotropic material are derived according to the differential form of the NSGT. Based on the the general form of partial differential equation modules in COMSOL, a method is proposed to solve the non-classic wave equations. The bands of the in-plane modes and mixed modes are identified. The in-plane size effect and thickness effect on the band structure of the PnC slab are compared. It is found that the thickness effect only acts on the mixed modes. The relative width of the band gap is widened by the thickness effect. The effects of the geometric parameters on the thickness effect of the mixed modes are further studied, and a defect is introduced to the PnC supercell to reveal the influence of the size effects with stiffness-softening and stiffness-hardening on the defect modes. This study paves the way for studying and designing PnC slabs at nano-scale.
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页码:21 / 34
页数:13
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共 291 条
[1]  
Mehaney A(2019)Phononic crystal as a neutron detector Ultrasonics 93 37-42
[2]  
Khelif A(2004)Guiding and bending of acoustic waves in highly confined phononic crystal waveguides Applied Physics Letters 84 4400-4402
[3]  
Choujaa A(2009)Utilization of phononic-crystal reflective gratings in a layered surface acoustic wave device Applied Physics Letters 94 101913-184
[4]  
Benchabane S(2022)Tunable three-dimensional nonreciprocal transmission in a layered nonlinear elastic wave metamaterial by initial stresses Applied Mathematics and Mechanics (English Edition) 43 167-8
[5]  
Djafari-Rouhani B(2017)Phononic crystal waveguide transducers for nonlinear elastic wave sensing Scientific Reports 7 1-1570
[6]  
Laude V(2004)Acoustic lens design by genetic algorithms Physical Review B 70 214302-1450
[7]  
Wu T T(2004)Focusing of sound in a 3D phononic crystal Physical Review Letters 93 024301-343
[8]  
Wang W S(2009)Experimental and theoretical evidence for subwavelength imaging in phononic crystals Physical Review Letters 102 154301-64
[9]  
Sun J H(2021)Computational analysis of phononic crystal vibration isolators via FEM coupled with the acoustic black hole effect to attenuate railway-induced vibration Construction Building Materials 283 122802-452
[10]  
Hsu J C(2021)Bandgaps and vibration isolation of local resonance sandwich-like plate with simply supported overhanging beam Applied Mathematics and Mechanics (English Edition) 42 1555-843