Thermal behavior of cylindrical buckling restrained braces at elevated temperatures

The primary focus of this investigation was to analyze sequentially coupled nonlinear thermal stress, using a three-dimensional model. It was meant to shed light on the behavior of Buckling Restraint Brace (BRB) elements with circular cross section, at elevated temperature. Such bracing systems were...

Full description

Saved in:
Bibliographic Details
Main Authors: Talebi, Elnaz, Mahmood, Md. Tahir, Zahmatkesh, Farshad, Yasreen, Airil, Mirza, Jahangir
Format: Article
Published: 2014
Subjects:
Online Access:http://eprints.utm.my/id/eprint/63048/
http://dx.doi.org/10.1155/2014/672629
Tags: Add Tag
No Tags, Be the first to tag this record!
Institution: Universiti Teknologi Malaysia
id my.utm.63048
record_format eprints
spelling my.utm.630482017-07-06T05:56:45Z http://eprints.utm.my/id/eprint/63048/ Thermal behavior of cylindrical buckling restrained braces at elevated temperatures Talebi, Elnaz Mahmood, Md. Tahir Zahmatkesh, Farshad Yasreen, Airil Mirza, Jahangir TA Engineering (General). Civil engineering (General) The primary focus of this investigation was to analyze sequentially coupled nonlinear thermal stress, using a three-dimensional model. It was meant to shed light on the behavior of Buckling Restraint Brace (BRB) elements with circular cross section, at elevated temperature. Such bracing systems were comprised of a cylindrical steel core encased in a strong concrete-filled steel hollow casing. A debonding agent was rubbed on the core's surface to avoid shear stress transition to the restraining system. The numerical model was verified by the analytical solutions developed by the other researchers. Performance of BRB system under seismic loading at ambient temperature has been well documented. However, its performance in case of fire has yet to be explored. This study showed that the failure of brace may be attributed to material strength reduction and high compressive forces, both due to temperature rise. Furthermore, limiting temperatures in the linear behavior of steel casing and concrete in BRB element for both numerical and analytical simulations were about 196°C and 225°C, respectively. Finally it is concluded that the performance of BRB at elevated temperatures was the same as that seen at room temperature; that is, the steel core yields prior to the restraining system. 2014 Article PeerReviewed Talebi, Elnaz and Mahmood, Md. Tahir and Zahmatkesh, Farshad and Yasreen, Airil and Mirza, Jahangir (2014) Thermal behavior of cylindrical buckling restrained braces at elevated temperatures. Scientific World Journal, 2014 . ISSN 1537-744X http://dx.doi.org/10.1155/2014/672629 DOI:10.1155/2014/672629
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic TA Engineering (General). Civil engineering (General)
spellingShingle TA Engineering (General). Civil engineering (General)
Talebi, Elnaz
Mahmood, Md. Tahir
Zahmatkesh, Farshad
Yasreen, Airil
Mirza, Jahangir
Thermal behavior of cylindrical buckling restrained braces at elevated temperatures
description The primary focus of this investigation was to analyze sequentially coupled nonlinear thermal stress, using a three-dimensional model. It was meant to shed light on the behavior of Buckling Restraint Brace (BRB) elements with circular cross section, at elevated temperature. Such bracing systems were comprised of a cylindrical steel core encased in a strong concrete-filled steel hollow casing. A debonding agent was rubbed on the core's surface to avoid shear stress transition to the restraining system. The numerical model was verified by the analytical solutions developed by the other researchers. Performance of BRB system under seismic loading at ambient temperature has been well documented. However, its performance in case of fire has yet to be explored. This study showed that the failure of brace may be attributed to material strength reduction and high compressive forces, both due to temperature rise. Furthermore, limiting temperatures in the linear behavior of steel casing and concrete in BRB element for both numerical and analytical simulations were about 196°C and 225°C, respectively. Finally it is concluded that the performance of BRB at elevated temperatures was the same as that seen at room temperature; that is, the steel core yields prior to the restraining system.
format Article
author Talebi, Elnaz
Mahmood, Md. Tahir
Zahmatkesh, Farshad
Yasreen, Airil
Mirza, Jahangir
author_facet Talebi, Elnaz
Mahmood, Md. Tahir
Zahmatkesh, Farshad
Yasreen, Airil
Mirza, Jahangir
author_sort Talebi, Elnaz
title Thermal behavior of cylindrical buckling restrained braces at elevated temperatures
title_short Thermal behavior of cylindrical buckling restrained braces at elevated temperatures
title_full Thermal behavior of cylindrical buckling restrained braces at elevated temperatures
title_fullStr Thermal behavior of cylindrical buckling restrained braces at elevated temperatures
title_full_unstemmed Thermal behavior of cylindrical buckling restrained braces at elevated temperatures
title_sort thermal behavior of cylindrical buckling restrained braces at elevated temperatures
publishDate 2014
url http://eprints.utm.my/id/eprint/63048/
http://dx.doi.org/10.1155/2014/672629
_version_ 1643655602246778880