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Study of a New-Type of Steel Buckling-Restrained Brace

Earthquake Engineering and Engineering Vibration/Earthquake engineering and engineering vibration(2020)

Cited 17|Views11
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Abstract
The rectangle core plate of all-steel buckling-restrained braces(BRBs)usually exhibit obvious local buckling,due to the lack of longitudinal restraint from the encasing tube.To eliminate the undesirable effects,a novel steel BRB is proposed.In this new-type steel BRB,two T-shaped steels are adopted as the minor restraint elements to restrain the core plate instead of infilled concrete or mortar.Meanwhile,the ingot-iron material with low yielding strength and high elongation is applied to the steel core to study the mechanical properties of steel BRBs.To validate the theoretical requirements for the width-to-thickness ratio of the steel core and the thickness of angle steel,quasi-static tests of eight specimens were conducted.The tests focused on the energy dissipation capacity and failure modes of the proposed steel BRBs.Nonlinear finite element analysis was also carried out to validate the experimental results.Both the aforementioned results imply that appropriately designed steel BRBs can meet the performance requirements for BRB components.
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Key words
steel BRB,T-shaped steel,Ingot-iron,energy dissipation capacity,failure modes,nonlinear finite element analysis
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