Smart Sensing of PSC Girders Using a PC Strand with a Built-in Optical Fiber Sensor

Author:

Kim Sung Tae,Yoon HyejinORCID,Park Young-HwanORCID,Jin Seung-SeopORCID,Shin Soobong,Yoon Suk-Min

Abstract

This paper presents a multi-functional strand capable of introducing prestressing force in prestressed concrete (PSC) girders and sensing their static and dynamic behavior as well. This innovative strand is developed by replacing the core steel wire of the strand used in PSC structures with a carbon fiber-reinforced polymer (CFRP) wire with a built-in optical Fiber Bragg Grating (FBG) sensor. A full-scale girder specimen was fabricated by applying this multi-function strand to check the possibility of tracking the change of prestressing force at each construction stage. Moreover, dynamic data could be secured during dynamic loading tests without installing accelerometers and made it possible to obtain the natural frequencies of the structure. The results verified the capability to effectively manage the prestressing force in the PSC bridge structure by applying the PC strand with a built-in optical sensor known for its outstanding practicability and durability.

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

Reference18 articles.

1. Rebuilding Collapsed Taiwan Bridge Estimated to Cost NT$520 Millionhttps://www.taiwannews.com.tw/en/news/3792431

2. New Design for Genoa’s Collapsed Morandi Bridgehttps://www.geoengineer.org/news/new-design-for-genoa-collapsed-morandi-bridge

3. FBG Sensors Encapsulated into 7-Wire Steel Strand for Tension Monitoring of a Prestressing Tendon

4. A Smart Steel Strand for the Evaluation of Prestress Loss Distribution in Post-tensioned Concrete Structures

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