Innovative Prestressing with FRP Sheets: Mechanics of Short‐Term Behavior
- 1 July 1991
- journal article
- Published by American Society of Civil Engineers (ASCE) in Journal of Engineering Mechanics
- Vol. 117 (7), 1652-1672
- https://doi.org/10.1061/(asce)0733-9399(1991)117:7(1652)
Abstract
The short‐term mechanical behavior of a novel prestressing technique is described. The technique involves external bonding of pretensioned fiber‐reinforced plastic (FRP) composite sheets on the tension zones of structural elements. Analytical models are developed describing the maximum achievable prestress level so that the FRP‐prestressed system does not fail near the anchorage zones. Both adhesive layer and beam material failures are considered. It is found that the method's efficiency is improved by increasing the thickness of the adhesive layer and/ or increasing the area fraction of the composite material, efficiency being defined as the level of prestress at the bottom fiber of the member. Moderate to high prestress levels are achieved depending on whether failure of the system is controlled by the shear strength of the beam material or that of the adhesive layer. The technique is applicable to the rehabilitation/strengthening of existing structures as well as the construction of new ones.Keywords
This publication has 6 references indexed in Scilit:
- Proposal for a Carbon Fibre Reinforced Composite Bridge across the Strait of Gibraltar at its Narrowest SiteProceedings of the Institution of Mechanical Engineers, Part B: Management and engineering manufacture, 1987
- Adhesion and AdhesivesPublished by Springer Nature ,1987
- Bonded Steel Plates for the Reduction of Fatigue Stresses of Coupled Tendons in Multispan BridgesPublished by Springer Nature ,1986
- Resin-bonded glass-fibre tendons for prestressed concreteMagazine of Concrete Research, 1963
- Some tests on beams prestressed by fibre-glass cordsMagazine of Concrete Research, 1960
- A preliminary investigation of the use of fibre-glass for prestressed concreteMagazine of Concrete Research, 1954