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Arman Mamazizi

Arman Mamazizi

Academic rank: Assistant Professor
ORCID: https://orcid.org/my-orcid?orcid=0000-0003-0440-8495
Education: PhD.
ScopusId: 987
HIndex:
Faculty: Faculty of Engineering
Address: No.209 at Department of Civil Engineering, University of Kurdistan, Sanandaj, Iran. P.O.Box: 66177-15175
Phone: +98 (0)87 33660073

Research

Title
Experimental investigation on stiffened steel plate shear walls with two rectangular openings
Type
JournalPaper
Keywords
Steelplateshearwall Opening Stiffeners Ultimate shear strength Energy dissipation
Year
2015
Journal THIN-WALLED STRUCTURES
DOI
Researchers saeid sabouri ghomi ، Arman Mamazizi

Abstract

One of the most important advantages of steel plate shear wall (SPSW) is to create openings with different sizes and arbitrary locations on the infill plate depending on their application. In this research, the effects of two openings on the structural behavior of SPSWs were studied experimentally. Experimental testing was performed on three one-third scaled single-story SPSW specimens with two rectangular openings under quasi-static cyclic loading. The differences between the three perforated experimental specimens were the interval between two openings and their closeness to the frame columns. The structural parameters of perforated specimens were compared to the similar specimen without any opening. The experimental results were utilized (a) to compare the ultimate shear strength, stiffness and energy absorption of specimens;(b)to evaluate the performance of central, lateral, top and bottom panels;(c)to investigate the effect of distance between the openings and the columns on the formation of plastic hinges on the column flanges;(d)to study the behavior of stiffeners around the openings. Test results showed that the ultimate shear strength, stiffness and energy absorption were the same in all three perforated specimens and the interval between the two openings had no effect on these values. Moreover, existence of openings will lead to reduction in values of structural parameters.