Cyclic behavior and numerical modelling of a semi-rigid frame
Auteur(s): |
C. Vatansever
N. Yardimci |
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Médium: | article de revue |
Langue(s): | anglais |
Publié dans: | Steel Construction, août 2010, n. 3, v. 3 |
Page(s): | 128-133 |
DOI: | 10.1002/stco.201010018 |
Abstrait: |
It is clear that semi-rigid frames exhibit completely non-linear behaviour under cyclic loading due to gradual yielding of connection components. The current study presents the experimental results from the test of a semi-rigid frame specimen, comprising a single storey and one bay, and the analysis results obtained from a finite element model of the specimen. In this study, semi-rigid joints with header plates are used for beam-tocolumn connections. The initial stiffness and moment-carrying capacity of the connection, designed as a semi-rigid and partial strength connection type, were determined in accordance with Eurocode 3. In the modelling of the semi-rigid beam-to-column connection behaviour, four-parameter non-linear representation of the moment—rotation curve obtained using the Ramberg-Osgood formula was employed. Loading of the test specimen consisted of quasi-static cycles with displacement control. The cyclic response of the specimen is characterized by a stable hysteretic behaviour. When comparing the envelope of the hysteresis loops from the cyclic test of the specimen with the pushover curve achieved by non-linear finite element analysis, the model gives a good prediction of the ultimate strength and initial stiffness of the frame. |
Disponible chez: | Voir chez l'éditeur |
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sur cette fiche - Reference-ID
10058204 - Publié(e) le:
15.11.2010 - Modifié(e) le:
13.08.2014