Granular metamaterials for vibration mitigation

被引:71
作者
Gantzounis, G. [1 ]
Serra-Garcia, M. [1 ]
Homma, K. [2 ]
Mendoza, J. M. [2 ]
Daraio, C. [1 ,3 ]
机构
[1] CALTECH, Grad Aerosp Labs GALCIT, Pasadena, CA 91125 USA
[2] United Technol Res Ctr, E Hartford, CT 06108 USA
[3] Swiss Fed Inst Technol, Dept Mech & Proc Engn D MAVT, Zurich, Switzerland
关键词
DESIGN;
D O I
10.1063/1.4820521
中图分类号
O59 [应用物理学];
学科分类号
摘要
Acoustic metamaterials that allow low-frequency band gaps are interesting for many practical engineering applications, where vibration control and sound insulation are necessary. In most prior studies, the mechanical response of these structures has been described using linear continuum approximations. In this work, we experimentally and theoretically address the formation of low-frequency band gaps in locally resonant granular crystals, where the dynamics of the system is governed by discrete equations. We investigate the quasi-linear behavior of such structures. The analysis shows that a stopband can be introduced at about one octave lower frequency than in materials without local resonances. Broadband and multi-frequency stopband characteristics can also be achieved by strategically tailoring the non-uniform local resonance parameters. (C) 2013 AIP Publishing LLC.
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页数:6
相关论文
共 37 条
[21]   Locally resonant sonic materials [J].
Liu, ZY ;
Zhang, XX ;
Mao, YW ;
Zhu, YY ;
Yang, ZY ;
Chan, CT ;
Sheng, P .
SCIENCE, 2000, 289 (5485) :1734-1736
[22]   Local detection of electromagnetic energy transport below the diffraction limit in metal nanoparticle plasmon waveguides [J].
Maier, SA ;
Kik, PG ;
Atwater, HA ;
Meltzer, S ;
Harel, E ;
Koel, BE ;
Requicha, AAG .
NATURE MATERIALS, 2003, 2 (04) :229-232
[23]   On modifications of Newton's second law and linear continuum elastodynamics [J].
Milton, Graeme W. ;
Willis, John R. .
PROCEEDINGS OF THE ROYAL SOCIETY A-MATHEMATICAL PHYSICAL AND ENGINEERING SCIENCES, 2007, 463 (2079) :855-880
[24]  
Nesterenko V. F, 2001, HIGH PR SH
[25]   Multi-resonant scatterers in sonic crystals: Locally multi-resonant acoustic metamaterial [J].
Romero-Garcia, V. ;
Krynkin, A. ;
Garcia-Raffi, L. M. ;
Umnova, O. ;
Sanchez-Perez, J. V. .
JOURNAL OF SOUND AND VIBRATION, 2013, 332 (01) :184-198
[26]  
Shamonina E., 2007, Metamaterials, V1, P12
[27]   Metamaterials and negative refractive index [J].
Smith, DR ;
Pendry, JB ;
Wiltshire, MCK .
SCIENCE, 2004, 305 (5685) :788-792
[28]   Impurity bands in photonic insulators [J].
Stefanou, N ;
Modinos, A .
PHYSICAL REVIEW B, 1998, 57 (19) :12127-12133
[29]   Quasi-one-dimensional phononic crystals studied using the improved lumped-mass method: Application to locally resonant beams with flexural wave band gap [J].
Wang, G ;
Wen, JH ;
Wen, XS .
PHYSICAL REVIEW B, 2005, 71 (10)
[30]   Sound transmission loss of metamaterial-based thin plates with multiple subwavelength arrays of attached resonators [J].
Xiao, Yong ;
Wen, Jihong ;
Wen, Xisen .
JOURNAL OF SOUND AND VIBRATION, 2012, 331 (25) :5408-5423