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  4. Feasibility of iron-based shape memory alloy strips for prestressed strengthening of steel plates
 
conference paper not in proceedings

Feasibility of iron-based shape memory alloy strips for prestressed strengthening of steel plates

Izadi, Mohammadreza
•
Ghafoori, Elyas
•
Hosseini, Ardalan  
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2017
Fourth Conference on Smart Monitoring, Assessment and Rehabilitation of Civil Structures (SMAR 2017)

Iron-based shape memory alloys (Fe-SMAs) are advanced materials that can be used as prestressing elements for strengthening and rehabilitation of civil structures. In this paper, the results of a feasibility study on the application of shape memory effect (SME) of Fe-SMA strips for prestressed strengthening of steel plates are provided and discussed. The Fe-SMA strips were anchored to the steel plates using a pair of mechanical anchorage system. Electrical resistance heating (ERH) technique was then used to heat up the Fe-SMA strips to 260 °C, resulting in activation of the Fe-SMA material. The activated Fe-SMA strips apply a prestressing force to the steel plate. The Fe-SMA-strengthened steel plates were then subjected to static tensile load to simulate the external loading on the retrofitted member. Based on the preliminary experimental results, it can be concluded that strengthening of steel plates with activated Fe-SMA strips can considerably decrease the tensile stress level in such members.

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Type
conference paper not in proceedings
Author(s)
Izadi, Mohammadreza
Ghafoori, Elyas
Hosseini, Ardalan  
Motavalli, Masoud  
Maalek, Shahrokh
Czaderski, Christoph
Shahverdi, Moslem
Date Issued

2017

URL

URL

http://www.smar-conferences.org/smar/SMAR_2017_Proceedings/papers/260.pdf
Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
RESSLAB  
Event nameEvent placeEvent date
Fourth Conference on Smart Monitoring, Assessment and Rehabilitation of Civil Structures (SMAR 2017)

ETHZ, Zurich, Switzerland

September 13-15, 2017

Available on Infoscience
September 16, 2017
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/140661
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