Force transmission mechanism of a new joint of concrete-filled rectangular steel tubular column under axial compression

In this study, a new joint of concrete-filled rectangular steel tube column was proposed and analyzed. The force transmission components include distribution beams and inner periphery ribs in the floor node area. The stress behavior of the new proposed concrete-filled rectangular steel tube column u...

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Main Authors: Na Xu, Dujian Zou, Xueyi Fu
Format: Article
Language:English
Published: SAGE Publishing 2018-08-01
Series:International Journal of Distributed Sensor Networks
Online Access:https://doi.org/10.1177/1550147718795556
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spelling doaj-4d9ff4dbb6c04a01a62193e530f1f9752020-11-25T03:28:29ZengSAGE PublishingInternational Journal of Distributed Sensor Networks1550-14772018-08-011410.1177/1550147718795556Force transmission mechanism of a new joint of concrete-filled rectangular steel tubular column under axial compressionNa Xu0Dujian Zou1Xueyi Fu2Shenzhen Graduate School, Harbin Institute of Technology, Shenzhen, ChinaShenzhen Graduate School, Harbin Institute of Technology, Shenzhen, ChinaShenzhen Graduate School, Harbin Institute of Technology, Shenzhen, ChinaIn this study, a new joint of concrete-filled rectangular steel tube column was proposed and analyzed. The force transmission components include distribution beams and inner periphery ribs in the floor node area. The stress behavior of the new proposed concrete-filled rectangular steel tube column under axial compressive load was investigated. It was found that the force transmission components coordinate the force and deformation of external steel tube and internal concrete. This indicates that the steel tube and concrete can work together to bear external load. Our previous test results also show that arranging force transmission components in the floor node area can improve the mechanical behavior of a concrete-filled rectangular steel tube column. Finally, a design method of force transmission component distribution beam is proposed, which provides a reference for the structural designer to use the new concrete-filled rectangular steel tube joint in actual engineering.https://doi.org/10.1177/1550147718795556
collection DOAJ
language English
format Article
sources DOAJ
author Na Xu
Dujian Zou
Xueyi Fu
spellingShingle Na Xu
Dujian Zou
Xueyi Fu
Force transmission mechanism of a new joint of concrete-filled rectangular steel tubular column under axial compression
International Journal of Distributed Sensor Networks
author_facet Na Xu
Dujian Zou
Xueyi Fu
author_sort Na Xu
title Force transmission mechanism of a new joint of concrete-filled rectangular steel tubular column under axial compression
title_short Force transmission mechanism of a new joint of concrete-filled rectangular steel tubular column under axial compression
title_full Force transmission mechanism of a new joint of concrete-filled rectangular steel tubular column under axial compression
title_fullStr Force transmission mechanism of a new joint of concrete-filled rectangular steel tubular column under axial compression
title_full_unstemmed Force transmission mechanism of a new joint of concrete-filled rectangular steel tubular column under axial compression
title_sort force transmission mechanism of a new joint of concrete-filled rectangular steel tubular column under axial compression
publisher SAGE Publishing
series International Journal of Distributed Sensor Networks
issn 1550-1477
publishDate 2018-08-01
description In this study, a new joint of concrete-filled rectangular steel tube column was proposed and analyzed. The force transmission components include distribution beams and inner periphery ribs in the floor node area. The stress behavior of the new proposed concrete-filled rectangular steel tube column under axial compressive load was investigated. It was found that the force transmission components coordinate the force and deformation of external steel tube and internal concrete. This indicates that the steel tube and concrete can work together to bear external load. Our previous test results also show that arranging force transmission components in the floor node area can improve the mechanical behavior of a concrete-filled rectangular steel tube column. Finally, a design method of force transmission component distribution beam is proposed, which provides a reference for the structural designer to use the new concrete-filled rectangular steel tube joint in actual engineering.
url https://doi.org/10.1177/1550147718795556
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