A theoretical model was developed for predicting the flexural load–deflection of simply supported concrete beams internally prestressed with unbonded carbon fibre reinforced polymer (CFRP) tendons under four-point loading. At each state in the load–deflection curve (initial cracking state, initial yielding state (if any) and ultimate load state), three equivalent rectangular curvature blocks, which can closely simulate the beam rotations at the supports and the midspan beam deflection, were determined by iteratively correcting the strain value of the unbonded tendon. The validity of the model was demonstrated by comparing its predictions with the test results of four rectangular beams and two T-beams with different prestressing reinforcement ratios, initial prestressing and type of auxiliary bar. The developed model was used to examine the effects of different parameters on the first cracking and ultimate strengths of the beam and the additional strain of the unbonded tendon to the effective strain.
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July 2015
Research Article|
July 01 2015
Modelling of load–deflection of concrete beams internally prestressed with unbonded CFRP tendons Available to Purchase
Chadon Lee;
Chadon Lee
Professor, School of Architecture and Building Science, Chung-Ang University, Seoul, Republic of Korea
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Sangmin Shin;
Sangmin Shin
PhD Candidate, Architectural Engineering, Graduate School, Chung-Ang University, Seoul, Republic of Korea
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Songhee Lee
Songhee Lee
PhD Candidate, Architectural Engineering, Graduate School, Chung-Ang University, Seoul, Republic of Korea.
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Publisher: Emerald Publishing
Revision Received:
November 04 2014
Revision Requested:
December 08 2014
Accepted:
December 22 2014
Online ISSN: 1751-763X
Print ISSN: 0024-9831
ICE Publishing: All rights reserved
2015
Magazine of Concrete Research (2015) 67 (13): 730–746.
Article history
Revision Received:
November 04 2014
Revision Requested:
December 08 2014
Accepted:
December 22 2014
Citation
Lee C, Shin S, Lee S (2015), "Modelling of load–deflection of concrete beams internally prestressed with unbonded CFRP tendons". Magazine of Concrete Research, Vol. 67 No. 13 pp. 730–746, doi: https://doi.org/10.1680/macr.14.00367
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