Damage Detection in External Tendons of Post-Tensioned Bridges

Author:

Tabiatnejad Dariya1ORCID,Tabiatnejad Bardia2,Khedmatgozar Dolati Seyed Saman1ORCID,Mehrabi Armin1ORCID

Affiliation:

1. Department of Civil and Environmental Engineering, Florida International University, Miami, FL 33174, USA

2. Haley & Aldrich, Inc., San Jose, CA 95131, USA

Abstract

This study investigates damage detection in the tendons of post-tensioned segmental box girder bridges, focusing on the vibration-based technique and its application in conjunction with the Precursor Transformation Matrix (PTM). Due to the critical role of bridge tendons in structural integrity, efficient and timely detection methods are essential. The methodology combines theoretical modeling with Finite Element Method (FEM) simulations and empirical data collection to evaluate the PTM’s effectiveness in identifying tendon damage. Key results indicate that the PTM, when paired with vibration analysis, enhances the identification and localization of damage, proving to be a robust method in structural health monitoring. This approach not only speeds up damage detection but also potentially lowers maintenance costs by pinpointing specific damage sites, thereby preventing widespread structural failures. The findings offer a promising tool for ensuring the longevity and safety of post-tensioned bridges.

Publisher

MDPI AG

Reference22 articles.

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