Article (Scientific journals)
Simplified finite element analysis of bolted T-stub connection components
Francavilla, Antonella Bianca; Latour, Massimo; Piluso, Vincenzo et al.
2015In Engineering Structures, 100 (Summer), p. 656-664
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Abstract :
[en] In order to predict the T-stub behaviour, simplified theoretical models are provided by Eurocode 3 that allow to evaluate the T-stub stiffness and strength. Conversely, there are no codified rules to predict the plastic deformation capacity. Therefore, the prediction of the T-stub ductility is still an open issue in the connection modelling. Even though theoretical models are very important in order to recognise the parameters that govern the stiffness, resistance and ductility of bolted T-stubs, they cannot always be applied with confidence, because of the simplifying assumptions usually made for gaining closed form solutions. Therefore, the information coming from simplified theoretical models needs to be integrated with that obtained either by experimental results or by means of finite element simulations. For this reason, in this paper, a simple simplified FEM model of a bolted T-stub with only one bolt row has been developed using SAP2000 computer program aiming to show how even a widespread commercial software can be used to estimate the plastic deformation capacity of bolted joints’ components. The accuracy of the FEM model has been verified by means of a comparison with available experimental results. In particular, all the specimens that were tested at the Material and Structure Laboratory of Salerno University in 2001 have been modelled and the results obtained are presented and discussed.
Disciplines :
Civil engineering
Author, co-author :
Francavilla, Antonella Bianca ;  Université de Liège - ULiège > Form. doct. sc. ingé. & techn. (archi., gén. civ. - paysage)
Latour, Massimo
Piluso, Vincenzo
Rizzano, Gianvittorio
Language :
English
Title :
Simplified finite element analysis of bolted T-stub connection components
Publication date :
15 June 2015
Journal title :
Engineering Structures
ISSN :
0141-0296
eISSN :
1873-7323
Publisher :
Elsevier Science, Oxford, United Kingdom
Volume :
100
Issue :
Summer
Pages :
656-664
Peer reviewed :
Peer Reviewed verified by ORBi
Available on ORBi :
since 07 April 2017

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