题名: |
Bolted Gusset Plate Yielding in Special Concentrically Braced Frames |
正文语种: |
英文 |
作者: |
Matthew D. Elliott;Lip H. Teh, M.ASCE |
作者单位: |
Univ, of Wollongong |
关键词: |
Balanced design; Bolted connection; Block shear; Gusset plate; Special concentrically braced frame; Whitmore section |
摘要: |
Based on the authors' recent findings regarding the Whitmore section and the block shear criteria for determining the ultimate tension resistance of a structural steel-bolted gusset plate, a design equation for determining the yielding resistance of a bolted brace-to-gusset conn ection in a special concentrically braced frame (SCBF) is proposed. The block shear yielding design equati on is intended to replace the Whitmore yielding criterion in seismic design and can be readily applied to the hierarchical seismic design procedure and the balanced design procedure (BDP). Verifications against independeni laboratory test results and the authors' finite-element analysis results are used to justify the proposed yielding criterion. The extent of local ductility afforded by the alternative criteria is also discussed. In addition to providing a rational basis for determining the yielding resista nee of a bolted gusset plate, the block shear yielding criterion affords a secondary ductile yielding mechanism. It is illustrated through a numerical example that, while in many cases the proposed criterion would lead to yielding resistances of gusset plates similar to those given by the Whitmore criterion, in the balanced design procedure, the present approach enables a rational design outcome that is otherwise not possible using the Whitmore criterion. |
出版日期: |
2020 |
出版年: |
2020 |
期刊名称: |
Journal of Structural Engineering |
卷: |
Vol.146 |
期: |
No.04 |
页码: |
04020031 |