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Negative Poisson’s ratio locally resonant seismic metamaterials vibration isolation barrier

负泊松比局域共振型地震超材料隔震屏障

作     者:Haibin Ding Nianyong Huang Muhammad Changjie Xu Lihong Tonog 丁海滨;黄年勇;Muhammad;徐长节;童立红

作者机构:State Key Laboratory of Performance Monitoring and Protecting of Rail Transit InfrastructureNanchang330013China Institute of Geotechnical EngineeringSchool of Civil Engineering and ArchitectureEast China Jiaotong UniversityNanchang330013China Department of MechanicalManufacturing and Biomedical EngineeringTrinity College DublinDublinD02PN40Ireland Department of Mechanical EngineeringUniversity of GalwayUniversity RoadGalwayH91 HX31Ireland 

出 版 物:《Acta Mechanica Sinica》 (力学学报(英文版))

年 卷 期:2024年第40卷第8期

页      面:239-252页

核心收录:

学科分类:070801[理学-固体地球物理学] 07[理学] 0708[理学-地球物理学] 0837[工学-安全科学与工程] 

基  金:supported by the National Natural Science Foundation(Grant Nos.52208344 and 52278350) the Natural Science Foundation of Jiangxi Province(Grant Nos.20224BAB214068 and 20212BDH81034) Education Department of Jiangxi Province(Grant No.GJJ2200673) Open Project of State Key Laboratory(Grant No.HJGZ2022204) 

主  题:Seismic metamaterials Locally resonant Negative Poisson ratio(NPR) Seismic waves Frequency bandgap Vibration isolation barrier 

摘      要:In recent decades,the application of seismic metamaterials to protect civil infrastructures being free of the damage of earthquakes has been attracting extensive ***,the proposed locally resonant seismic metamaterials provide the probability of isolating the low-frequency seismic wave using a small-size isolation ***,in previous studies,the energy absorption properties of locally resonant seismic metamaterials remain one of the least understood aspects of *** from the fascinating energy absorption characteristic of negative Poisson ratio(NPR)metamaterial,we creatively design a new seismic metamaterial structure by assembling the locally resonant seismic metamaterial and NPR metamaterial,to isolate seismic *** sound cone technique combining the transmission spectrum is employed to identify the surface wave from the hybrid *** generation mechanism of frequency bandgap and the isolation effectiveness of the proposed seismic metamaterial are discussed in *** results indicate that the generation of ultra-low and ultra-wide frequency bandgap with the range of 0.65 Hz–18.9 Hz is attributed to the locally resonant and energy absorption of the proposed seismic metamaterial structure and the excellent isolation effect is achieved by transforming the surface wave into the bulk *** frequency bandgap narrows as the distance increases between each *** addition,the mechanical properties of the NPR bearing,such as the Poisson ratio,mass density,and elastic modulus,have remarkable impact on the frequency bandgap,especially on the upper bound *** practical engineering,the NPR bearing with a low Poisson ratio,small mass density,and high elastic modulus is suggested for the design of the NPR locally resonant seismic metamaterial *** domain analysis for the practical seismic wave verifies that the proposed seismic metamaterial has a promising application in isolating ultra-low and ultra-wi

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