2021
DOI: 10.3390/ma14164480
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Application of Shape Memory Alloys in Retrofitting of Masonry and Heritage Structures Based on Their Vulnerability Revealed in the Bam 2003 Earthquake

Abstract: For decades, one of the most critical considerations of civil engineers has been the construction of structures that can sufficiently resist earthquakes. However, in many parts of the globe, ancient and contemporary buildings were constructed without regard for engineering; thus, there is a rising necessity to adapt existing structures to avoid accidents and preserve historical artefacts. There are various techniques for retrofitting a masonry structure, including foundation isolations, the use of Fibre-Reinfo… Show more

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Cited by 25 publications
(18 citation statements)
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“…Figure 6. SMA stress-strain graphs depicting schematic crystal formations at different temperatures [26] (figure is taken from [47]).…”
Section: Shape Memory Alloysmentioning
confidence: 99%
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“…Figure 6. SMA stress-strain graphs depicting schematic crystal formations at different temperatures [26] (figure is taken from [47]).…”
Section: Shape Memory Alloysmentioning
confidence: 99%
“…Due to its high energy absorption capacity, the suggested model with a 2% pre-strain SMA wire model demonstrates the biggest reduction of the lateral deflections of the church and significantly lowers impact (from destruction to mild damage level) in the event of powerful earthquakes. The schematic of the proposed system with SMA strands for connection bonds [79]; (b) the schematic of the proposed system and SMA strand in the isolation system of masonry constructions [80] (figures are taken from [47]).…”
Section: Masonry Structuresmentioning
confidence: 99%
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