Monitoring of cylindrical rod tension force under varying temperature using acoustoelastic effect

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This paper presents the development of a tension force monitoring technique based on bulk wave and acoustoelastic effect for a cylindrical rod in the suspension bridge anchor system under varying temperature. First, a cylindrical rod specimen is fabricated, and macro fiber composites transducers are installed on the specimen. Then, the bulk waves are measured under various tension force levels and temperature conditions. The measured bulk waves are used to estimate the tension force level after compensating the temperature effect. The performance of the developed technique is examined using test data. The uniqueness of the developed technique includes (1) tension force estimation of the mock-up specimen of the real bridge using the acoustoelastic effect and (2) temperature compensation on the tension force monitoring without temperature measurement. © 2021 IABSE Conference, Seoul 2020: Risk Intelligence of Infrastructures - Report. All rights reserved.
Publisher
International Association for Bridge and Structural Engineering (IABSE)
Issue Date
2021-11
Language
English
Citation

IABSE Conference Seoul 2020: Risk Intelligence of Infrastructures, pp.98 - 105

URI
http://hdl.handle.net/10203/288874
Appears in Collection
CE-Conference Papers(학술회의논문)
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