Please use this identifier to cite or link to this item: https://www.um.edu.mt/library/oar/handle/123456789/86111
Title: Rotation capacity vs demand of steel beams under catastrophic events
Authors: Landolfo, Raffaele
Piluso, V.
Brescia, M.
D'Aniello, M.
Mammana, O.
Tortorelli, S.
Keywords: Steel, Structural -- Earthquake effects -- Testing
Steel framing (Building) -- Design and construction
Structural frames -- Earthquake effects
Buckling (Mechanics)
Earthquake engineering
Issue Date: 2008
Publisher: University of Malta. Department of Building & Civil Engineering
Citation: Landolfo, R., Piluso, V., Brescia., M., D’Aniello, M., Mammana, O., & Tortorelli, S. (2008). Rotation capacity vs demand of steel beams under catastrophic events. In Mazzolani, F. M., Mistakidis, E., Borg, R. P., Byfield, M., De Matteis, G., Dubina.,..Wang, Y. (Eds.), Urban habitat constructions under catastrophic events: COST Action C26 (pp. 146-151). Malta: University of Malta. Dept. of Building & Civil Engineering.
Abstract: A wide ongoing experimental campaign has been planned in order characterize the rotation capacity of steel beams under large deformation demand coming from catastrophic events. To achieve this purpose, a set of steel profiles have been selected as representative specimens of the class of beams usually adopted in the common Moment Resisting Frames (MRFs). Indeed, the choice of this sub-assemblage scheme allows to examine the role of bending moment gradient on the flexural capacity of the tested steel beams. The preliminary experimental results are compared with those ongoing from the numerical analyses. Moreover, having adopted the hysteretic properties calibrated on the basis of experimental results, some MRF structures have been analysed in order to evaluate the rotation demand under catastrophic events.
URI: https://www.um.edu.mt/library/oar/handle/123456789/86111
ISBN: 9789990944402
Appears in Collections:Urban habitat constructions under catastrophic events : COST Action C26

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