Study on Shearing Behavior of Circular Concrete-Filled CFRP (Carbon Fiber-Reinforced Plastics)-Steel Tube

Concrete-filled CFRP steel tube (CF-CFRP-ST) structures often suffer from shear loading in practical engineering, such as joints with diagonal braces. To study the shear properties of CF-CFRP-ST, we take the concrete strength and the longitudinal CFRP layers as the main parameters, and static shear...

Full description

Bibliographic Details
Main Authors: Qingli Wang, Xiaokang Liu, Kuan Peng
Format: Article
Language:English
Published: MDPI AG 2022-08-01
Series:Polymers
Subjects:
Online Access:https://www.mdpi.com/2073-4360/14/16/3350
_version_ 1797408243935346688
author Qingli Wang
Xiaokang Liu
Kuan Peng
author_facet Qingli Wang
Xiaokang Liu
Kuan Peng
author_sort Qingli Wang
collection DOAJ
description Concrete-filled CFRP steel tube (CF-CFRP-ST) structures often suffer from shear loading in practical engineering, such as joints with diagonal braces. To study the shear properties of CF-CFRP-ST, we take the concrete strength and the longitudinal CFRP layers as the main parameters, and static shear tests of overall 9 circular concrete-filled CFRP-steel tube (C-CF-CFRP-ST) and 3 circular concrete-filled steel tube (C-CFST) are carried out. The research is carried out from two aspects: experiment and finite element. The experimental results show that the shear loading-displacement curves of the specimens can be divided into elastic stage, strengthening stage, and softening stage. The increases of the strength of the concrete and the layers of the transverse CFRP can both enhance the shearing load carrying capacity of the specimen. With the increase of concrete strength, there is no obvious change in the shape of the shear stress-shear strain curves of the specimens, and the shear stress and the stiffness of the curve in the elastic stage of the specimen are slightly increased. The shear loading-displacement curves of the specimens are simulated by using finite element software ABAQUS and it is found that the predicted results agree reasonably well with the test results. Then, the whole process of loading and the parameters of the main influencing factors are analyzed. Finally, the calculation equation of CFRP concrete-filled steel tubular shear capacity is established.
first_indexed 2024-03-09T03:55:36Z
format Article
id doaj.art-6f10ccf8616e4fb9a04e15507d469ae6
institution Directory Open Access Journal
issn 2073-4360
language English
last_indexed 2024-03-09T03:55:36Z
publishDate 2022-08-01
publisher MDPI AG
record_format Article
series Polymers
spelling doaj.art-6f10ccf8616e4fb9a04e15507d469ae62023-12-03T14:20:20ZengMDPI AGPolymers2073-43602022-08-011416335010.3390/polym14163350Study on Shearing Behavior of Circular Concrete-Filled CFRP (Carbon Fiber-Reinforced Plastics)-Steel TubeQingli Wang0Xiaokang Liu1Kuan Peng2School of Civil Engineering, University of Science and Technology Liaoning, Anshan 114051, ChinaSchool of Civil Engineering, University of Science and Technology Liaoning, Anshan 114051, ChinaSchool of Mechatronic Engineering, Southwest Petroleum University, Chengdu 610500, ChinaConcrete-filled CFRP steel tube (CF-CFRP-ST) structures often suffer from shear loading in practical engineering, such as joints with diagonal braces. To study the shear properties of CF-CFRP-ST, we take the concrete strength and the longitudinal CFRP layers as the main parameters, and static shear tests of overall 9 circular concrete-filled CFRP-steel tube (C-CF-CFRP-ST) and 3 circular concrete-filled steel tube (C-CFST) are carried out. The research is carried out from two aspects: experiment and finite element. The experimental results show that the shear loading-displacement curves of the specimens can be divided into elastic stage, strengthening stage, and softening stage. The increases of the strength of the concrete and the layers of the transverse CFRP can both enhance the shearing load carrying capacity of the specimen. With the increase of concrete strength, there is no obvious change in the shape of the shear stress-shear strain curves of the specimens, and the shear stress and the stiffness of the curve in the elastic stage of the specimen are slightly increased. The shear loading-displacement curves of the specimens are simulated by using finite element software ABAQUS and it is found that the predicted results agree reasonably well with the test results. Then, the whole process of loading and the parameters of the main influencing factors are analyzed. Finally, the calculation equation of CFRP concrete-filled steel tubular shear capacity is established.https://www.mdpi.com/2073-4360/14/16/3350concrete-filled CFRP steel tubeshearing behaviorexperimental studyload carrying capacitystiffness
spellingShingle Qingli Wang
Xiaokang Liu
Kuan Peng
Study on Shearing Behavior of Circular Concrete-Filled CFRP (Carbon Fiber-Reinforced Plastics)-Steel Tube
Polymers
concrete-filled CFRP steel tube
shearing behavior
experimental study
load carrying capacity
stiffness
title Study on Shearing Behavior of Circular Concrete-Filled CFRP (Carbon Fiber-Reinforced Plastics)-Steel Tube
title_full Study on Shearing Behavior of Circular Concrete-Filled CFRP (Carbon Fiber-Reinforced Plastics)-Steel Tube
title_fullStr Study on Shearing Behavior of Circular Concrete-Filled CFRP (Carbon Fiber-Reinforced Plastics)-Steel Tube
title_full_unstemmed Study on Shearing Behavior of Circular Concrete-Filled CFRP (Carbon Fiber-Reinforced Plastics)-Steel Tube
title_short Study on Shearing Behavior of Circular Concrete-Filled CFRP (Carbon Fiber-Reinforced Plastics)-Steel Tube
title_sort study on shearing behavior of circular concrete filled cfrp carbon fiber reinforced plastics steel tube
topic concrete-filled CFRP steel tube
shearing behavior
experimental study
load carrying capacity
stiffness
url https://www.mdpi.com/2073-4360/14/16/3350
work_keys_str_mv AT qingliwang studyonshearingbehaviorofcircularconcretefilledcfrpcarbonfiberreinforcedplasticssteeltube
AT xiaokangliu studyonshearingbehaviorofcircularconcretefilledcfrpcarbonfiberreinforcedplasticssteeltube
AT kuanpeng studyonshearingbehaviorofcircularconcretefilledcfrpcarbonfiberreinforcedplasticssteeltube