Novel metamaterial wave barrier structure with multiple frequency wide band gaps for rail transit vibration isolation

被引:1
作者
Xiao, Peng [1 ]
Miao, Linchang [1 ]
Zheng, Haizhong [1 ]
Zhang, Benben [1 ]
Lei, Lijian [1 ]
机构
[1] Southeast Univ, Sch Transportat, Nanjing, Jiangsu, Peoples R China
基金
中国国家自然科学基金;
关键词
Metamaterial; locally resonant phononic crystal; multiple primitive cell combination structure; wave barrier; multifrequency wide band gap; vibration isolation; rail transit;
D O I
10.1080/15376494.2024.2442499
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
As a new kind of artificial composite material, locally resonant phononic crystal (LRPC) can attenuate and suppress the propagation of elastic waves in certain frequency range, which has a broad application prospect and value in the field of vibration and noise control. The traditional LRPC can only open one band gap (BG), but the vibration and noise in practical engineering are often multi-band, so the traditional LRPC cannot effectively cover the target frequency range, and the efficiency of vibration and noise reduction is greatly limited. In response to the shortcomings of traditional LRPC, this paper designs a novel locally resonant phononic crystal with multiple primitive cell combination structure (LRPCWMPCCS), which is a locally resonant supercell structure composed of five types of locally resonant single primitive cells. Firstly, the band structure of the LRPCWMPCCS is calculated using the finite element method, and compared with the band structure of traditional LRPC. Secondly, the frequency response function of the LRPCWMPCCS is calculated to evaluate its attenuation effect on elastic waves in the BG frequency range, and the generation mechanism of its locally resonant BG is explored by analyzing the displacement field and energy distribution characteristics at the BG edge. Then, the equivalent model of the LRPCWMPCCS is established for theoretical calculation of the BG range. Finally, the vibration isolation performance of LRPCWMPCCS wave barrier in practical engineering is analyzed, and the application prospects of the LRPCWMPCCS are discussed. The results show that the LRPCWMPCCS designed in this paper can open the multifrequency BGs, and the BGs width is wider. The number of BGs opened is positively correlated with the type of primitive cells inside the LRPCWMPCCS. Within the BG frequency range, the LRPCWMPCCS has a good attenuation effect on vibration waves, with attenuation values exceeding 20 dB. The spring-mass system equivalent model of the LRPCWMPCCS can accurately calculate its BG range and has good accuracy. The LRPCWMPCCS wave barrier has remarkable control and attenuation effect on vibration. Among them, the maximum vibration acceleration of traditional LRPC wave barrier and LRPCWMPCCS wave barrier is reduced by 18.51% and 39.50%, respectively. The relevant research results of this paper have great value and prospects in the design of LRPC with multifrequency and wide BGs, which can also provide a new method and idea for solving vibration and noise problems.
引用
收藏
页数:16
相关论文
共 44 条
[1]   From defect mode to topological metamaterials: A state-of-the-art review of phononic crystals & acoustic metamaterials for energy harvesting [J].
Akbari-Farahani, Fahimeh ;
Ebrahimi-Nejad, Salman .
SENSORS AND ACTUATORS A-PHYSICAL, 2024, 365
[2]   A highly attenuating and frequency tailorable annular hole phononic crystal for surface acoustic waves [J].
Ash, B. J. ;
Worsfold, S. R. ;
Vukusic, P. ;
Nash, G. R. .
NATURE COMMUNICATIONS, 2017, 8
[3]   Amplitude-induced bandgap: New type of bandgap for nonlinear elastic metamaterials [J].
Bae, Myung Hwan ;
Oh, Joo Hwan .
JOURNAL OF THE MECHANICS AND PHYSICS OF SOLIDS, 2020, 139 (139)
[4]   Automatic design of mechanical metamaterial actuators [J].
Bonfanti, Silvia ;
Guerra, Roberto ;
Font-Clos, Francesc ;
Rayneau-Kirkhope, Daniel ;
Zapperi, Stefano .
NATURE COMMUNICATIONS, 2020, 11 (01)
[5]   Amplitude-dependent phononic processes in a diatomic granular chain in the weakly nonlinear regime [J].
Cabaret, Jeremy ;
Tournat, Vincent ;
Bequin, Philippe .
PHYSICAL REVIEW E, 2012, 86 (04)
[6]   A locally resonant phononic crystal structure with low-frequency broad bandgap [J].
Chen, Chen ;
Wang, Danyang ;
Lei, Jincheng ;
Liu, Zishun .
INTERNATIONAL JOURNAL OF COMPUTATIONAL MATERIALS SCIENCE AND ENGINEERING, 2022, 11 (04)
[7]   Resonance-coupling effect on broad band gap formation in locally resonant sonic metamaterials [J].
Chen, Meng ;
Meng, Dan ;
Zhang, Han ;
Jiang, Heng ;
Wang, Yuren .
WAVE MOTION, 2016, 63 :111-119
[8]   Research on local resonance and Bragg scattering coexistence in phononic crystal [J].
Dong, Yake ;
Yao, Hong ;
Du, Jun ;
Zhao, Jingbo ;
Jiang, Jiulong .
MODERN PHYSICS LETTERS B, 2017, 31 (11)
[9]   Ultralow frequency acoustic bandgap and vibration energy recovery in tetragonal folding beam phononic crystal [J].
Gao, Nansha ;
Wu, Jiu Hui ;
Yu, Lie ;
Hou, Hong .
INTERNATIONAL JOURNAL OF MODERN PHYSICS B, 2016, 30 (18)
[10]   Research on bandgaps in two-dimensional phononic crystal with two resonators [J].
Gao, Nansha ;
Wu, Jiu Hui ;
Yu, Lie .
ULTRASONICS, 2015, 56 :287-293