2005 · 17 citations · 16 references
Smart Bridge DesignBridge DesignEngineeringFiber-reinforced CompositeCivil EngineeringStructural Health MonitoringContinuous-fibre CompositeStructural PerformanceStructural ApplicationSmart Composite BridgeShortspan ApplicationsStructural MechanicsConstruction EngineeringComposite TubesStructural EngineeringSmart Structure
An all-composite, smart bridge design for shortspan applications is described. The bridge dimensions are 9.14-m (30-ft.) long and 2.74-m (9-ft.) wide. A modular construction based on assemblies of pultruded fiber-reinforced-polymer (FRP) composite tubes is used to meet American Association of State Highway and Transportation Officials (AASHTO) H20 highway load ratings. The hollow tubes are 76 mm (3 in.) square and are made of carbon/vinyl-ester and glass/vinyl-ester. An extensive experimental study was carried out to obtain and compare properties (stiffness, strength, and failure modes) for a quarter portion of the full-sized bridge. The bridge response was measured for design loading, two-million-cycle fatigue loading, and ultimate load capacity. In addition to meeting H20 load criteria, the test article showed almost no reduction in stiffness or strength under fatigue loading and excellent linear elastic behavior up to failure. Fiber optic strain sensors were evaluated on the test article during testing. Sensor characteristics are determined as preparation for permanent field installation.
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Report Card for America's Infrastructure
Sang-Hyeok Gang · Construction Engineering and Management · 2012 · 556 citations
Quadrature phase-shifted, extrinsic Fabry–Perot optical fiber sensors
Kent A. Murphy, Michael F. Gunther, Ashish M. Vengsarkar et al. · Optics Letters · 1991 · 418 citations
Fiber-optic Fabry-Perot interferometer and its sensor applications
Toshihiko Yoshino, Kiyoshi Kurosawa, Kiyohiko Itoh et al. · IEEE Journal of Quantum Electronics · 1982 · 186 citations
Photonics, Engineering, Sensors +9
E. Udd · Proceedings of the IEEE · 1996 · 66 citations