Flexural Performance of Cracked Reinforced Concrete Beams Strengthened with Prestressed CFRP Sheets under Repeated Loads

Author:

Wang Huijuan1,Li Changyong2ORCID,Song Sihao3,Wang Yao4,Meng Qingxin4,Li Fenglan123ORCID

Affiliation:

1. Low-Carbon Eco-Building Materials Technology Innovation Center of Xuchang City, Civil Engineering and Architecture School, Zhongyuan Institute of Science and Technology, Zhengzhou 450046, China

2. International Joint Research Lab for Eco-Building Materials and Engineering of Henan, Collaborative Innovation Center for Efficient Utilization of Water Resources, North China University of Water Resources and Electric Power, Zhengzhou 450045, China

3. School of Civil Engineering and Communications, North China University of Water Resources and Electric Power, Zhengzhou 450045, China

4. China Construction Seventh Engineering Bureau Co., Ltd., Zhengzhou 450004, China

Abstract

Because researchers are aiming to restore the deformation and minimize the crack width of existing concrete structures, the strengthening technology of prestressed carbon-fiber-reinforced plastic (CFRP) is currently the focus of many studies and applications. In terms of the strengthening of a prestressed CFRP sheet on the flexural performance of cracked reinforced concrete beams under repeated loads, a four-point bending test of 12 beams was conducted considering the prestress degree reflected by the amount and the prestress force of the CFRP sheet. The longitudinal strengthened CFRP sheet was bonded on the bottom surface of the test beam and fixed by U-jacket CFRP sheets at the ends after tensioning. The strains of concrete, longitudinal tensile steel bars and CFRP sheets were measured at the pure bending segment of test beams, while the cracks, midspan deflection and failure pattern were recorded. The results show that the normal strain on the mid-span section of the strengthened beams by the prestress CFRP sheets was fitted for the assumption of plane section, the cracks and mid-span deflection decreased with the prestress degree of the CFRP sheets to provide better serviceability for the strengthened beams, the load capacity could be increased by 41.0–88.8% at the yield of longitudinal tensile steel bars and increased by 41.9–74.8% at the ultimate state and the ductility at the failure state was sharply reduced by 54.9–186%. The peeling off of broken CFRP sheets played a role in controlling the failure pattern of the strengthened beams under repeated loads. Finally, methods for predicting the bending performance of reinforced concrete beams strengthened by prestressed CFRP sheets were proposed. This study enriches the knowledge about damaged reinforced concrete beams that were strengthened with prestressed CFRP sheets.

Funder

CSCEC Technology Research and Development Project, China

Special Joint Research Project of Zhengzhou City and NCWU, China

Publisher

MDPI AG

Subject

Building and Construction,Civil and Structural Engineering,Architecture

Reference48 articles.

1. (2021). General Code for Appraisal and Strengthening of Existing Buildings. Standard No. GB 55021-2021.

2. (2021). General Code for Maintenance and Renovation of Existing Buildings. Standard No. GB 55022-2021.

3. (2013). Code for Design of Strengthening Concrete Structures. Standard No. GB 50367-2013.

4. (2008). Carbon Fiber Sheet for Strengthening and Restoring Structures. Standard No. GB/T 21490-2008.

5. (2011). Basalt Fiber Composites for Strengthening and Restoring Structures. Standard No. GB/T 26745-2011.

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