消散
坠落(事故)
厚板
机制(生物学)
振动
隔离器
材料科学
磁道(磁盘驱动器)
结构工程
粒子(生态学)
声学
机械
工程类
物理
地质学
机械工程
电气工程
医学
海洋学
环境卫生
量子力学
热力学
作者
Duojia Shi,Xinhao Zhang,Zhenyu Gong,Ying Li,Linlin Xie,Caiyou Zhao,Ping Wang
标识
DOI:10.1177/10775463251338159
摘要
The urban high-speed rail transit system generates excessive environmental vibrations, causing discomfort and damage to contact elements. This study introduces a novel non-obstructive particle damping phononic crystal vibration isolator (NOPD-PCVI) for a floating slab track system. A full-scale falling wheel impact test compared the vibration reduction performance of the NOPD-PCVI to that of a traditional steel spring vibration isolator (SSVI), with accelerometers and strain gauges capturing vibration responses. Numerical simulations and experiments revealed that the NOPD-PCVI was most effective within a 50–160 Hz bandgap, reducing vertical base slab acceleration by 19.7 dB for a 10 mm drop height and 22 dB for a 20 mm drop height. Structural intensity analysis further confirmed the NOPD-PCVI’s efficiency in limiting vibration energy transfer. This study offers a viable solution for track vibration reduction, supporting the sustainable development of high-speed urban rail systems.
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