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Buckling load of seismic isolators affected by flexibility of reinforcement
Institution:1. Department of Construction Engineering, National Taiwan University of Science and Technology, P.O. Box 90-130, Taipei 106, Taiwan;2. Pacific Earthquake Engineering Research Center, University of California, Berkeley, USA;1. Department of Structures for Engineering & Architecture, University of Naples Federico II, Napoli, via Claudio 21, Naples 80125, Italy;2. Department of Civil Engineering & Construction Engineering Management, California State University Long Beach, Long Beach, CA, USA;3. Department of Industrial Engineering, University of Naples Federico II, University of Naples Federico II, Napoli, via Claudio 21, Naples 80125, Italy;1. Faculty of Civil Engineering, Architecture and Urbanism, University of Campinas, Campinas, SP CEP 13083-852, Brazil;2. Intertechne, Av. João Gualberto, 1259 Curitiba, Parana, Brazil;3. Dept. of Civil Engineering, Université de Sherbrooke, Sherbrooke, QC J1K 2R1, Canada;4. Dept. of Civil and Environmental Engineering, Rice University Houston, TX 77005-1827, USA
Abstract:Using the thinner steel reinforcing plates in the elastomeric multilayer isolators could reduce the weight of the isolators but would have a large effect on the buckling load of an isolator, which cannot be analyzed by the Haringx theory, a traditional approach on the stability analysis of rubber bearings. The buckling load of the isolators, which includes the effect of the flexibility of the steel reinforcing plates, is analyzed by a beam theory in which shear deformation and warping of the cross-section are considered. Pressure distributions in the elastomeric layer bonded to flexible reinforcements under compression force, bending moment and warping moment are derived from an assumed displacement field, from which the warping-related parameters used in the beam theory are established. The thickness of the steel reinforcement in the isolators is determined from the buckling load of the isolators, which is solved from a cubic equation established by the beam theory.
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