Experimental Study on Mechanic Behavior of Flange Joint for Steel Tube Under Axial Tension

Author:

Si Jinyan1,Liu Wei2ORCID,Zhu Li2ORCID,Zhu Yaoyu3,Zhao Guanyuan2,Hong Jian2,Zhang Chenmin2

Affiliation:

1. Beijing Municipal Engineering Research Institute, Beijing 100037, China

2. School of Civil Engineering, Beijing Jiaotong University, Beijing 100044, China

3. CCCC Highway Bridges National Engineering Research Center Co., Ltd., Beijing 100120, China

Abstract

The flange joint is an important connection in steel tube structures. In this paper, 11 groups of flange joint tests were conducted to investigate the influences of tube diameter, flange plate thickness, the distance from the bolt to the tube centroid, bolt numbers and material strength on the mechanical behavior. One of two failure modes in tests is that the excessive plastic deformation on the flange plate makes the flange plate lose the bearing capacity; the other is that the steel tube yield makes the joints fail. The results show that the calculating method for flange joint in Chinese design code is so safe that amplifying the calculating results of the code by 1.2 times would be closer to the bearing capacity of specimens. For a flange joint with different tube diameters, thickening the flange plate of thinner tube or thinning the flange plate of another tube are effective to ensure the deformations on both sides of the flange plates are equivalent. The ratio of the bearing capacity of the steel tube to that of flange plate should be greater than 1.7. And the thickness of the flange plate should be thicker than 14mm to reduce the deformation caused by cutting, drilling and welding during manufacturing.

Funder

Eighth National “Ten Thousand Talents Plan for Top Young Talents” and the National Natural Science Foundation of China

Publisher

MDPI AG

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