Interfacial Bond Performance of Concrete-Filled Steel Tubes under Fire and Postfire Conditions: State-of-the-Art Review
The critical influencing factors of the interface bonding properties of concrete-filled steel tubes (CFSTs) under fire and postfire conditions are analyzed. This paper analyzes and summarizes the existing research related to the bonding performance of CFST interfaces under fire and postfire conditio...
Main Authors: | , , , |
---|---|
Format: | Article |
Language: | English |
Published: |
Hindawi Limited
2021-01-01
|
Series: | Advances in Civil Engineering |
Online Access: | http://dx.doi.org/10.1155/2021/9969966 |
id |
doaj-8a7840b6dc384c16941e0b247659efcc |
---|---|
record_format |
Article |
spelling |
doaj-8a7840b6dc384c16941e0b247659efcc2021-10-04T01:58:17ZengHindawi LimitedAdvances in Civil Engineering1687-80942021-01-01202110.1155/2021/9969966Interfacial Bond Performance of Concrete-Filled Steel Tubes under Fire and Postfire Conditions: State-of-the-Art ReviewYuanyuan Xue0Jun Chen1Zurong Cai2Yanhua Zou3Department of Architectural EngineeringSchool of Civil Engineering and MechanicHunan Construction Engineering Real Estate Investment Co., Ltd.Department of Architectural EngineeringThe critical influencing factors of the interface bonding properties of concrete-filled steel tubes (CFSTs) under fire and postfire conditions are analyzed. This paper analyzes and summarizes the existing research related to the bonding performance of CFST interfaces under fire and postfire conditions at home and abroad, which includes the bonding mechanism of CFST structures, the bonding strength of CFSTs during and after fire exposure, and the main factors influencing bond strength. The analysis results indicate that the temperature has noticeable influences on the bond strength of a CFST during and after fire exposure. The bond strengths of the specimens are reduced more severely under high-temperature conditions than after high-temperature cooling. Shear connectors can significantly improve the bonding performance of CFSTs and effectively reduce the relative slip between steel tubes and concrete. The paper concludes with an analysis of the deficiencies in bond-slip research on the bonding properties of the CFST interface during and after fire exposure and future research directions. First, we can study the use of new technologies and materials to solve the problem of bonding and slipping of CFSTs during and after fire exposure. Second, we can perform extensive experimental research and theoretical simulation analysis to enrich the research in this field, which can provide a reference for engineering practice.http://dx.doi.org/10.1155/2021/9969966 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Yuanyuan Xue Jun Chen Zurong Cai Yanhua Zou |
spellingShingle |
Yuanyuan Xue Jun Chen Zurong Cai Yanhua Zou Interfacial Bond Performance of Concrete-Filled Steel Tubes under Fire and Postfire Conditions: State-of-the-Art Review Advances in Civil Engineering |
author_facet |
Yuanyuan Xue Jun Chen Zurong Cai Yanhua Zou |
author_sort |
Yuanyuan Xue |
title |
Interfacial Bond Performance of Concrete-Filled Steel Tubes under Fire and Postfire Conditions: State-of-the-Art Review |
title_short |
Interfacial Bond Performance of Concrete-Filled Steel Tubes under Fire and Postfire Conditions: State-of-the-Art Review |
title_full |
Interfacial Bond Performance of Concrete-Filled Steel Tubes under Fire and Postfire Conditions: State-of-the-Art Review |
title_fullStr |
Interfacial Bond Performance of Concrete-Filled Steel Tubes under Fire and Postfire Conditions: State-of-the-Art Review |
title_full_unstemmed |
Interfacial Bond Performance of Concrete-Filled Steel Tubes under Fire and Postfire Conditions: State-of-the-Art Review |
title_sort |
interfacial bond performance of concrete-filled steel tubes under fire and postfire conditions: state-of-the-art review |
publisher |
Hindawi Limited |
series |
Advances in Civil Engineering |
issn |
1687-8094 |
publishDate |
2021-01-01 |
description |
The critical influencing factors of the interface bonding properties of concrete-filled steel tubes (CFSTs) under fire and postfire conditions are analyzed. This paper analyzes and summarizes the existing research related to the bonding performance of CFST interfaces under fire and postfire conditions at home and abroad, which includes the bonding mechanism of CFST structures, the bonding strength of CFSTs during and after fire exposure, and the main factors influencing bond strength. The analysis results indicate that the temperature has noticeable influences on the bond strength of a CFST during and after fire exposure. The bond strengths of the specimens are reduced more severely under high-temperature conditions than after high-temperature cooling. Shear connectors can significantly improve the bonding performance of CFSTs and effectively reduce the relative slip between steel tubes and concrete. The paper concludes with an analysis of the deficiencies in bond-slip research on the bonding properties of the CFST interface during and after fire exposure and future research directions. First, we can study the use of new technologies and materials to solve the problem of bonding and slipping of CFSTs during and after fire exposure. Second, we can perform extensive experimental research and theoretical simulation analysis to enrich the research in this field, which can provide a reference for engineering practice. |
url |
http://dx.doi.org/10.1155/2021/9969966 |
work_keys_str_mv |
AT yuanyuanxue interfacialbondperformanceofconcretefilledsteeltubesunderfireandpostfireconditionsstateoftheartreview AT junchen interfacialbondperformanceofconcretefilledsteeltubesunderfireandpostfireconditionsstateoftheartreview AT zurongcai interfacialbondperformanceofconcretefilledsteeltubesunderfireandpostfireconditionsstateoftheartreview AT yanhuazou interfacialbondperformanceofconcretefilledsteeltubesunderfireandpostfireconditionsstateoftheartreview |
_version_ |
1716844668744892416 |