Shear lag in tension member welded connections

Research output: Contribution to Book/Report typesContribution to conference proceedingspeer-review

Abstract

The authors attempt to validate an analytical method proposed recently for calculating the reduction in strength due to shear lag effects in tension member welded connections. The analytical method is based on an assumed distribution of forces along inclined lines in the member ends, somewhat similar to the Whitmore's concept used with gusset plates for bracing members. The stress distributions at the end of a flat bar welded to a gusset plate are examined at various load levels using non-linear finite element analyses. Three different values of the ratio of the weld length to the width of bar are considered. Results are presented regarding the distribution of shear flow along the length of the fillet welds, the von Mises stress distributions and principal stress patterns in the tension flat bars, as well as longitudinal and von Mises stress distributions at various sections along the bars. The strength of the connections predicted using the finite element models is compared to that obtained with the analytical method and from current CAN/CSA-S16-01 design guidelines. Recommendations for further research are made.

Original languageEnglish
Title of host publicationProceedings - 33rd CSCE Annual Conference 2005
Subtitle of host publicationGeneral Conference and International History Symposium
PagesGC-246-1-GC-246-10
Publication statusPublished - 2005
Event33rd CSCE Annual Conference 2005 - Toronto, ON, Canada
Duration: 2 Jun 20054 Jun 2005

Publication series

NameProceedings, Annual Conference - Canadian Society for Civil Engineering
Volume2005

Conference

Conference33rd CSCE Annual Conference 2005
Country/TerritoryCanada
CityToronto, ON
Period2/06/054/06/05

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