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  4. Development and validation tests of a dual-core self-centering sandwiched buckling-restrained brace (SC-SBRB) for seismic resistance
 
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Development and validation tests of a dual-core self-centering sandwiched buckling-restrained brace (SC-SBRB) for seismic resistance

Journal
Engineering Structures
Journal Volume
121
Pages
30-41
Date Issued
2016
Author(s)
Chou, C.-C.
Tsai, W.-J.
Chung, P.-T.
CHUNG-CHE CHOU  
DOI
10.1016/j.engstruct.2016.04.015
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/435774
URL
https://www.scopus.com/inward/record.uri?eid=2-s2.0-84964939474&doi=10.1016%2fj.engstruct.2016.04.015&partnerID=40&md5=0f01556ce87b598e5b230ccb4565fe25
Abstract
Earthquake-resisting frame systems that are designed based on current seismic provisions provide life safety performance in a large earthquake, but may have significant structural damage or residual drift due to energy dissipation in designated structural members. The damage leads to difficult or expensive repairs after a large earthquake. Therefore, development of a structural system that has both energy dissipation and self-centering properties in earthquakes is needed to improve seismic performances of buildings. This paper presents a viable solution that was validated by multiple cyclic tests of an innovative brace, called a dual-core self-centering sandwiched buckling-restrained brace (SC-SBRB). The proposed brace combines the self-centering property of a dual-core self-centering brace (DC-SCB) and the energy dissipation of a sandwiched buckling-restrained brace (SBRB) together. The dual-core SC-SBRB is essentially a DC-SCB that is positioned concentrically with a SBRB to create both the self-centering and energy dissipation properties in either tension or compression. A 7860 mm-long dual-core SC-SBRB, which uses ASTM A572 Gr. 50 steel as bracing members and ASTM A416 Grade 270 steel tendons as tensioning elements, was cyclically tested six times to validate its kinematics and cyclic performance. The test program demonstrated that the proposed dual-core SC-SBRB provides stable hysteretic responses with appreciable energy dissipation, self-centering behavior and large deformation capacity before low-cycle fatigue failure of the SBRB core.
SDGs

[SDGs]SDG11

[SDGs]SDG12

Type
journal article

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