4.7 Article

Behavior of T-shaped CFST column to steel beam connection with U-shaped diaphragm

期刊

JOURNAL OF BUILDING ENGINEERING
卷 43, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.jobe.2021.102518

关键词

Special-shaped concrete-filled steel tubular column; Connection; U-shaped diaphragm; Seismic behavior; Mechanical model

资金

  1. National Natural Science Foundation of China [51878098]
  2. NaturalScience Foundation Project of CQ CSTC [cstc2019jcyj-msxmX0580]
  3. Foundation of Key Laboratory of Structures Dynamic Behavior and Control (Ministry of Education) in Harbin Institute of Technology [30620180333]
  4. Research on bridge con-struction risk and control technology under complicated environment of Sichuan-Tibet Railway [2019YJ036]

向作者/读者索取更多资源

A novel U-shaped diaphragm connection was introduced to transfer moment between special-shaped CFST columns and steel beams, meeting design code requirements. Experimental and finite element analysis provided insights into strength, ductility, and strain distribution of the connections, as well as the influence of U-shaped diaphragm size, tube thickness, and axial load ratio of the column.
The connection between special-shaped concrete-filled steel tubular (CFST) column and steel beam is a particular concern to engineers. A novel U-shaped diaphragm connection is introduced in this paper to transfer the moment at beam ends in the frame with special-shaped CFST columns and steel beams. Five T-shaped CFST column to Hsection steel beam connections were tested under low-cycle horizontal loading. U-shaped diaphragm was used as the connection to transfer loads from beam to joint panel zone. The experimental parameters include the size of U-shaped diaphragm and the axial load ratio of column. Based on the experimental results, the strength, ductility and strain distribution of the connections were calculated. Test results show that the connection can develop plastic bending capacity in the beam, satisfying the design code requirements of America, Great Britain, and China. Furthermore, a parametric analysis was conducted using the finite element method. The influences of Ushaped diaphragm size, tube thickness, and axial load ratio of column were analyzed. Based on the parametric analysis results, a mechanical model is proposed to calculate the yield strength and ultimate strength of U-shaped diaphragm connections. In conclusion, with a proper design, the T-shaped CFST column to H-section steel beam connection using the U-shaped diaphragm can be effectively used in practical applications.

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