Finite Element Analysis and Parametric Study of Panel Zones in H-Shaped Steel Beam–Column Joints

Author:

Li Wei123ORCID,Fan Hai-Tao14,Ye Heng1,Lin Xu-Chuan5,Chen Lian-Meng13

Affiliation:

1. College of Civil Engineering and Architecture, Wenzhou University, Wenzhou 325035, China

2. Wenzhou Chengjian Grput Co., Ltd., Wenzhou 325000, China

3. Key Laboratory of Engineering and Technology for Soft Soil Foundation and Tideland Reclamation of Zhejiang Province, Wenzhou 325035, China

4. Wenzhou Engineering Technical Research Center on Building Energy Conservation and Emission Reduction & Diaster Prevention and Mitigation, Wenzhou 325035, China

5. Key Laboratory of Earthquake Engineering and Engineering Vibration, Institute of Engineering Mechanics, China Earthquake Administration, Harbin 150080, China

Abstract

This paper investigates the mechanical properties of a traditional welded rigid joint with a weakened panel zone under seismic load. The created finite element model is calibrated by the high-strength steel joint test, carried out by the team in the early stage, and the effectiveness of the finite element method was verified. The finite element software ABAQUS is used to investigate the influence of different joint web thicknesses on the mechanical properties of middle column joints under a low-cyclic-loading test. Supported by a validated numerical model, the ductility, energy dissipation, and other properties of different thicknesses of panel zone column webs are carefully analyzed. The results indicate that the thickness of the web plate in the panel zone significantly affects the location of the joint plastic hinge. The ultimate loading capacity of the joints increased significantly with an increase in the thickness of the webs in the panel zones. Compared with the joint with a weakened panel zone, the hysteresis curve of the strengthened joint is fuller; meanwhile, it cannot alleviate the stress concentration at the weld holes of the web. When the thickness of the joint domain web is too weak, excessive deformation in the joint domain will lead to a decrease in the bearing capacity of the joint, causing damage. The stiffness degradation coefficient of the web-thickened specimen was found to be dominated and controlled by the stiffness of the beam; however, with an increase in the thickness of the web, the stiffness degradation coefficient remained basically unchanged. Finally, a recommendation for weakened beam–column interior joints based on the steel frame panel zone is made, which will lay a foundation for the simulation and analysis of the seismic performance of this structure.

Funder

Department of Housing and Urban-Rural Development of Zhejiang Province

National Natural Science Foundation of China

Zhejiang Province Public Welfare Technology Application Research Project

Wenzhou Association for Science and Technology

Publisher

MDPI AG

Subject

Building and Construction,Civil and Structural Engineering,Architecture

Reference32 articles.

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3. Program of tests of moment-resistant steel beam-to-column web connections, April 1974;Rentschler;Fritz Engng Lab. Rep.,1974

4. Seismic design of steel buildings: Lessons from the1995 Hyogo-ken Nanbu earthquake;Tremblay;Can. J. Civ. Eng.,1996

5. Analytical modeling of dual panel zone in haunch repaired steel MRFs;Lee;J. Struct. Eng.,1997

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