4.7 Article

Experimental and theoretical modeling for predicting bending moment capacity of T-head square-neck one-side bolted endplate to tube column connection

期刊

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

出版社

ELSEVIER
DOI: 10.1016/j.jobe.2021.103104

关键词

T-head square-neck one-side bolt; Beam-to-column connection; Hollow section steel column; Endplate connection; Design method

资金

  1. National Natural Science Foundation of China [52078280]
  2. Key Project of Research and Development of Shandong Province [2019GSF110011]

向作者/读者索取更多资源

One-side bolting technology is expected to play a crucial role in the bolted connection between H-beam and Hollow Section Steel Column (HSSC). A new type of T-head Squareneck One-side Bolt (TSOB) is proposed, which has simple construction and can adapt to rough installation manners. Experimental studies show that T-head Square-neck One-side Bolted Connections (TSOBCs) have superior bending performance compared to Standard Double-sides Bolted Connection (SDBC). Additionally, yield line patterns and analytical models for calculating bending bearing capacity are proposed.
One-side bolting technology is expected to play an important role in the bolted connection between H-beam and Hollow Section Steel Column (HSSC). By evaluating the possible defects of the existing one-side bolts in terms of cost, installation, and mechanical properties based on plentiful reported studies, a new type of T-head Squareneck One-side Bolt (TSOB) was proposed, which has a simple construction, can adapt to the rough installation manners in the construction site, and no additional auxiliary tools are required. The bending performance of four T-head Square-neck One-side Bolted Connections (TSOBCs) for a beam to a HSSC and a Standard Double-sides Bolted Connection (SDBC) for comparison was experimentally studied, in which two arrangement patterns for the slotted bolt holes and two strengthening measures of stiffeners on the endplate and inner concrete in the HSSC was explored. The results show that the TSOBC with vertical bolt holes has nearly the same yield moment, and the horizontal bolt holes have more excellent post-yield performance, compared with the SDBC. Besides, three yield line patterns and an analytical model for calculating the bending bearing capacity of the HSSC and the concrete strengthened HSSC are proposed, respectively.

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