Numerical Investigation of the Seismic Performance of an Innovative Type of Buckling-Restrained Brace (BRB)

Author:

Naghshineh Ali1,Fischer Oliver1,Pathan Nasreen B.2,Couch Logan2,Tehrani Fariborz M.2ORCID

Affiliation:

1. School of Engineering and Design, Concrete and Masonry Structures, Technical University of Munich (TUM), 80290 Munich, Germany

2. Department of Civil & Geomatics Engineering, California State University, Fresno, CA 93740, USA

Abstract

Previous studies have demonstrated that the inclusion of tire-derived aggregate (TDA) enhances the damping, ductility, and toughness of concrete mixtures. The effectiveness of tire-derived aggregate as a ductile material with a higher damping ratio and lower density in buckling-restrained braces has been examined at California State University’s Structures Laboratory (CSU). Through experimental and theoretical investigations, this study compares the structural application of buckling-restrained braces with TDA and with conventional concrete infill subjected to various ground motions as well as artificial excitations. The evaluations include modeling a full-scale experimental setup equipped with a single-leg BRB utilizing ETABS 2016 and OpenSees 2000 software. The effectiveness of the application is demonstrated through a comparison of accelerations, displacements, stiffness, and damping ratios between TDA and concrete filling. Additionally, a design guideline for TDA-filled buckling-restrained braced frames is provided.

Publisher

MDPI AG

Subject

General Earth and Planetary Sciences

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