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Modelling of one-sided unstiffened beam-to-column joint

  • University of Bielsko-Biala

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

In unstiffened beam-to-column joints and in end-plate joints of beams with a few rows of bolts below the tension flange, as in (Kawecki et al. 2013, Kawecki & Kozłowski 2017), the load capacity of the bolts in the row below the tension flange of the beam may be exceeded at the value of the bending moment Mj,Ed ≤ Mj,Rd,whereMj,Rd – design moment resistance of these joint determined according to the formula (6.25) in EN 1993-1-8. In such cases, there is a need to reduce the design moment resistance according to point 6.2.4.2 of this standard, so that the forces in the internal row of bolts or in the group of rows do not exceed the capacity of the T-stub which imitate this row or group of rows. This work presents the full calculation model of the unstiffened beam-to-column joint, together with numerical example, in which the need of reduction of design moment resistance of such joint, which is not taken into account in the examples published in available literature as well as in computer programs, was demonstrated.

Original languageEnglish
Title of host publicationStability and Ductility of Steel Structures - Proceedings of the International Colloquia on Stability and Ductility of Steel Structures, 2019
EditorsFrantišek Wald, Michal Jandera
PublisherCRC Press/Balkema
Pages1300-1308
Number of pages9
ISBN (Print)9780367335038
Publication statusPublished - 2019
EventInternational Colloquia on Stability and Ductility of Steel Structures, 2019 - Prague, Czech Republic
Duration: 11 Sept 201913 Sept 2019

Publication series

NameStability and Ductility of Steel Structures - Proceedings of the International Colloquia on Stability and Ductility of Steel Structures, 2019

Conference

ConferenceInternational Colloquia on Stability and Ductility of Steel Structures, 2019
Country/TerritoryCzech Republic
CityPrague
Period11/09/1913/09/19

ASJC Scopus subject areas

  • Civil and Structural Engineering
  • Building and Construction
  • Safety, Risk, Reliability and Quality

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