Novel Hinged Inertial Amplification Seismic Metamaterials with Strong Attenuation Characteristics

衰减 超材料 惯性参考系 声学 物理 结构工程 地质学 地震学 工程类 光学 经典力学
作者
Lixia Li,Chenyang Jiao,Jin Bai,Yuzhen Chang
出处
期刊:International Journal of Structural Stability and Dynamics [World Scientific]
标识
DOI:10.1142/s0219455426501932
摘要

This paper proposes novel hinged inertial amplification seismic metamaterials (NHIA-SM), where the single-cell model consists of a steel column connected to a steel plate via four hinges, designed to achieve strong attenuation of seismic surface waves over an ultra-wide bandgap. By constructing and analyzing the theoretical model of NHIA, it was observed that the first resonance frequency increases with the stiffness [Formula: see text] of the steel plate and the inertia amplification angle [Formula: see text], while it decreases with the increase in the mass [Formula: see text] of the steel column. When the inertial amplification angle [Formula: see text] is less than [Formula: see text], the overall structure is in the inertial amplification mode. Using finite element methods to calculate the band structure of NHIA-SM, results indicated an ultra-wide bandgap in the range of 2.24–13[Formula: see text]Hz, attributed to the strong resonance of the steel column under the inertial amplification mechanism. Additionally, the influence of the hinge’s cross-sectional shape on the bandgap characteristics of NHIA-SM was studied, and [Formula: see text]-shaped hinges exhibited lower initial frequencies due to reduced bending stiffness. Furthermore, by studying the influence of structural parameters on the bandgap characteristics of NHIA-SM, it was observed that as the hinge’s inertia amplification angle [Formula: see text] increases, the starting frequency rapidly rises. The frequency domain and three-dimensional transient wave propagation of the finite periodic structure are calculated. It is found that with the change of the inertial amplification angle [Formula: see text], the intensity of the inertial amplification mechanism of the structure is changed, and the attenuation degree of the frequency domain will change obviously. The maximum attenuation of the transient wave amplitude can exceed 85%. Finally, experimental validation confirmed that the NHIA-SM structure exhibited excellent seismic isolation effects, offering novel approaches for low-frequency ultra-wideband applications in earthquake engineering.
最长约 10秒,即可获得该文献文件

科研通智能强力驱动
Strongly Powered by AbleSci AI
科研通是完全免费的文献互助平台,具备全网最快的应助速度,最高的求助完成率。 对每一个文献求助,科研通都将尽心尽力,给求助人一个满意的交代。
实时播报
刚刚
科研通AI2S应助hhhhh采纳,获得10
1秒前
1秒前
xiao发布了新的文献求助10
1秒前
再吃一颗苹果完成签到,获得积分10
2秒前
2秒前
简简完成签到,获得积分10
2秒前
2秒前
orixero应助勇哥你好采纳,获得10
2秒前
3秒前
3秒前
自觉紫安发布了新的文献求助10
3秒前
咔嚓发布了新的文献求助10
3秒前
魔术师完成签到,获得积分10
3秒前
qingxiaoyi完成签到 ,获得积分10
4秒前
干净的琦应助wa采纳,获得30
4秒前
古致飞关注了科研通微信公众号
4秒前
复杂梦安完成签到,获得积分10
4秒前
共享精神应助huihui采纳,获得10
4秒前
4秒前
酷波er应助飒奥采纳,获得10
4秒前
DG完成签到,获得积分10
5秒前
隐形曼青应助666采纳,获得10
5秒前
aikeyan完成签到,获得积分10
5秒前
齐媛媛发布了新的文献求助10
5秒前
小蘑菇应助繁荣的子默采纳,获得20
6秒前
6秒前
kathy发布了新的文献求助10
6秒前
所所应助sjm采纳,获得10
7秒前
7秒前
深情安青应助Ruby采纳,获得10
7秒前
Lerler完成签到,获得积分10
7秒前
doudou发布了新的文献求助10
7秒前
XHONG完成签到 ,获得积分10
7秒前
思源应助又是这个傻子采纳,获得10
7秒前
8秒前
8秒前
xss完成签到,获得积分10
8秒前
8秒前
LL发布了新的文献求助10
8秒前
高分求助中
Clinical Epidemiology: The Essentials, 6e 10000
(应助此贴封号)【重要!!请各用户(尤其是新用户)详细阅读】【科研通的精品贴汇总】 10000
The Graphene Handbook (2019 Edition) 800
Adhesion Science: Principles & Practice 800
Signals, Systems, and Signal Processing 610
IEST-RP-CC018: Cleanroom Cleaning and Sanitization: Operating and Monitoring Procedures 600
Fundamentals of Pharmaceutical and Biologics Regulations: A Global Perspective, Second Edition 600
热门求助领域 (近24小时)
化学 材料科学 医学 生物 纳米技术 工程类 有机化学 化学工程 生物化学 计算机科学 物理 内科学 复合材料 催化作用 物理化学 光电子学 电极 细胞生物学 基因 无机化学
热门帖子
关注 科研通微信公众号,转发送积分 6540638
求助须知:如何正确求助?哪些是违规求助? 8331792
关于积分的说明 17854516
捐赠科研通 5646361
什么是DOI,文献DOI怎么找? 2936378
邀请新用户注册赠送积分活动 1912453
关于科研通互助平台的介绍 1773370