Vibration wave propagation and band-gap effects in floating slab track: Theoretical analysis and experimental measurements

Author:

Zhang Xinhao12,Geng Mingjing12,Zhao Caiyou12ORCID,Yi Qiang3,Wang Ping12,Lu Tao24ORCID

Affiliation:

1. School of Civil Engineering, Southwest Jiaotong University, Chengdu, China

2. MOE Key Laboratory of High–speed Railway Engineering, Southwest Jiaotong University, Chengdu, China

3. Railway Engineering Research Institute, China Academy of Railway Sciences Corporation Limited, Beijing, China

4. SWJTU-Leeds Joint School, Southwest Jiaotong University, Chengdu, China

Abstract

Steel-spring floating slab track is widely used in special vibration-damping sections of urban rail transit because of its good vibration-damping performance. However, in engineering practice, bottlenecks such as the nature of elastic wave coupling with environmental media and elastic wave modulation have not yet been established as theoretical analysis and experimental measurement methods. In this paper, based on the energy generalized variational principle of the physical properties of elastic waves, a joint analytical model of the three-dimensional steel-spring floating slab track periodic structure is established. The dispersion curves and eight bandgap characteristics in the complex domain are obtained. It is verified that the vibration acceleration response of the track structure is caused by the intersection of the dispersion curve and the load moving line. And the bandgap can effectively suppress the Doppler phenomenon.

Funder

the National Key R&D Program of China

the Natural Science Foundation of Sichuan Province

the National Natural Science Foundation of China

Publisher

SAGE Publications

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