Seismic performance assessment of knee bracing equipped with shape memory alloys

According to current seismic design codes, the serviceability of the building is not necessary after the sever earthquakes but the life safety is important. It is caused to reduce the cost of construction. In recent years, the researchers have proposed the new methods and materials to improve the pu...

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Autores principales: Mussa Mahmoudi, Sajad Montazeri
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Lenguaje:FA
Publicado: Iranian Society of Structrual Engineering (ISSE) 2016
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Acceso en línea:https://doaj.org/article/f12c03f040d94075b33e35b1ff4fde9c
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spelling oai:doaj.org-article:f12c03f040d94075b33e35b1ff4fde9c2021-11-08T15:45:57ZSeismic performance assessment of knee bracing equipped with shape memory alloys2476-39772538-2616https://doaj.org/article/f12c03f040d94075b33e35b1ff4fde9c2016-09-01T00:00:00Zhttps://www.jsce.ir/article_38570_d7ed71162f7823b59c639ea9b40117bb.pdfhttps://doaj.org/toc/2476-3977https://doaj.org/toc/2538-2616According to current seismic design codes, the serviceability of the building is not necessary after the sever earthquakes but the life safety is important. It is caused to reduce the cost of construction. In recent years, the researchers have proposed the new methods and materials to improve the purposes of seismic design and to reduce the cost of construction. For example, the use of materials such as shape memory alloys (SMA) with high elastic property and low residual strain was suggested. In this study the use of these alloys is evaluated for steel knee bracing. The result showed that the structures with SMA remain survival during the sever earthquakes with low retrofitting.Mussa MahmoudiSajad MontazeriIranian Society of Structrual Engineering (ISSE)articleknee bracingshape memory alloystime history analysisresidual strainBridge engineeringTG1-470Building constructionTH1-9745FAJournal of Structural and Construction Engineering, Vol 3, Iss 2, Pp 5-18 (2016)
institution DOAJ
collection DOAJ
language FA
topic knee bracing
shape memory alloys
time history analysis
residual strain
Bridge engineering
TG1-470
Building construction
TH1-9745
spellingShingle knee bracing
shape memory alloys
time history analysis
residual strain
Bridge engineering
TG1-470
Building construction
TH1-9745
Mussa Mahmoudi
Sajad Montazeri
Seismic performance assessment of knee bracing equipped with shape memory alloys
description According to current seismic design codes, the serviceability of the building is not necessary after the sever earthquakes but the life safety is important. It is caused to reduce the cost of construction. In recent years, the researchers have proposed the new methods and materials to improve the purposes of seismic design and to reduce the cost of construction. For example, the use of materials such as shape memory alloys (SMA) with high elastic property and low residual strain was suggested. In this study the use of these alloys is evaluated for steel knee bracing. The result showed that the structures with SMA remain survival during the sever earthquakes with low retrofitting.
format article
author Mussa Mahmoudi
Sajad Montazeri
author_facet Mussa Mahmoudi
Sajad Montazeri
author_sort Mussa Mahmoudi
title Seismic performance assessment of knee bracing equipped with shape memory alloys
title_short Seismic performance assessment of knee bracing equipped with shape memory alloys
title_full Seismic performance assessment of knee bracing equipped with shape memory alloys
title_fullStr Seismic performance assessment of knee bracing equipped with shape memory alloys
title_full_unstemmed Seismic performance assessment of knee bracing equipped with shape memory alloys
title_sort seismic performance assessment of knee bracing equipped with shape memory alloys
publisher Iranian Society of Structrual Engineering (ISSE)
publishDate 2016
url https://doaj.org/article/f12c03f040d94075b33e35b1ff4fde9c
work_keys_str_mv AT mussamahmoudi seismicperformanceassessmentofkneebracingequippedwithshapememoryalloys
AT sajadmontazeri seismicperformanceassessmentofkneebracingequippedwithshapememoryalloys
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