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2025 | OriginalPaper | Chapter

18. The Application of Magneto-Rheological Elastomer in a Base Insolation System for Seismic Mitigation of Highway Bridges

Authors : Amarildo Tabone Paschoalini, Fernanda Carolina de Almeida, Matheus Silva Proença, Henrique Edno Leoncini de Carvalho, Daniel Henrique de Sousa Obata, Jeferson Camargo Fukushima

Published in: Advances in Structural Vibration

Publisher: Springer Nature Switzerland

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Abstract

The chapter delves into the use of Magneto-Rheological Elastomer (MRE) in bridge bearings to enhance seismic mitigation. It discusses the unique properties of MRE, which allow for controlled stiffness and damping through the application of a magnetic field. The authors present a numerical model of an MRE damper integrated into a bridge structure and simulate its response to earthquake signals. The results demonstrate the effectiveness of MRE in reducing transmissibility and controlling resonance peaks, highlighting its potential as a superior damping system for bridges. The study also explores the influence of magnetic field strength and geometric parameters on the MRE's performance, providing valuable insights for future research and practical applications in civil engineering.

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Literature
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Metadata
Title
The Application of Magneto-Rheological Elastomer in a Base Insolation System for Seismic Mitigation of Highway Bridges
Authors
Amarildo Tabone Paschoalini
Fernanda Carolina de Almeida
Matheus Silva Proença
Henrique Edno Leoncini de Carvalho
Daniel Henrique de Sousa Obata
Jeferson Camargo Fukushima
Copyright Year
2025
DOI
https://doi.org/10.1007/978-3-031-71540-2_18

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