Evaluation of hybrid NSM-CFRP technical bars and FRP sheets for seismic rehabilitation of a concrete bridge pier

Author:

Shokrzadeh Mohamad R.1,Nateghi-Alahi F.2

Affiliation:

1. Department of Civil Engineering, Islamic Azad University, Science and Research Branch, Tehran, Iran

2. International Institute of Earthquake Engineering and Seismology (IIEES), Tehran, Iran

Abstract

Seismic retrofit is a cost-effective and sustainable solution for improving bridge structures in seismic zones. Fiber Reinforced Polymer (FRP) is commonly used to replace steel components in retrofit projects due to their light weight, high strength, and high corrosion resistance. The fabrication of novel hybrid structures from FRP and concrete is the next step researchers are addressing. In this context, the present study focuses on numerical modeling of the experimentally determined response of a hybrid FRP and concrete bridge pier subjected to quasi-static tests. The results from FEM showed strong agreement with the experimental response in terms of load-displacement curve and failure mode. After validating the model, alternative designs (changing the height of the CFRP slab, changing the height and compaction of the CFRP bar, and concrete encasement with and without CFRP slab) were numerically tested to investigate the effects of each model on the load capacity. With the conventional concrete encasement, the bearing capacity of the bridge pier can be rehabilitated, but with the CFRP plate in the above system, the bearing capacity of the bridge pier is increased by more than 60%. Therefore, it can be concluded that seismic strengthening techniques with CFRP sheets and mounted NSM-CFRP bars are suitable for concrete bridge piers.

Publisher

IOS Press

Subject

Building and Construction

Reference54 articles.

1. Seismic performance of RC bridge piers in Japan: anevaluation after the Hyogo-ken nanbu earthquake;Kawashima;Progress inStructural Engineering and Materials,2000

2. Study on seismic strengthening demand of damage concrete bridge piers;Deng;Applied Mechanics and Materials, vol. 178–181, Trans Tech Publications Ltd,2012

3. Seismic damage of highway bridges during the Wenchuan earthquake;Qiang;Earthquake Engineering and Engineering Vibration,2009

4. Performance of railway bridges during the Tōhoku earthquake;Abé;Journal of Performance of Constructed Facilities,2014

5. Billah AHMM , Alam MS . Seismic performance evaluation of multi-column bridge bents retrofitted with different alternatives using incremental dynamic analysis. Engineering Structures. 2014. https://doi.org/10.1016/j.engstruct.2014.01.005.

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