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  5. Toward buckling free tension-only braces using slack free connections

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Article
English
2015

Toward buckling free tension-only braces using slack free connections

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English
2015
Journal of Constructional Steel Research
Vol 115
DOI: 10.1016/j.jcsr.2015.08.048

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Murat Saatcioglu
Murat Saatcioglu

University of Ottawa

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Seyed Amin Mousavi
Seyed Mehdi Zahrai
Murat Saatcioglu

Abstract

This study introduces a slack free connection (SFC) by which pinching would be removed from hysteretic behavior of tension-only braces (TOBs). SFC through its mono-directional behavior, eliminates undesirable pinching of the tension-only bracing and changes it to a reliable lateral load resisting system with high energy dissipation capability. A Matlab/Simulink-based model, called Macro-Simulink model, is developed to simulate hysteretic behavior of TOBs with or without SFC. Derived Macro-Simulink model is also able to account for hysteretic behavior of the frame. The frame itself can have either deteriorated or non-deteriorated hysteretic behaviors. The Macro-Simulink model is verified through different techniques including earlier experimental results, explicit finite element modeling, and other pre-verified analytical/numerical tools. It is observed that initial pre-tension load only affects initial stiffness of the TOB and has no contribution on its nonlinear hysteretic behavior. Obtained results of this study indicate that energy dissipation capacity of TOBs with SFC would be improved up to 6 times compared with that of conventional TOBs. Moreover contribution of SFC is more pronounced in the case of frames with highly deteriorated behaviors. As a result TOB with SFC can be considered for retrofit purposes as well.

How to cite this publication

Seyed Amin Mousavi, Seyed Mehdi Zahrai, Murat Saatcioglu (2015). Toward buckling free tension-only braces using slack free connections. Journal of Constructional Steel Research, 115, pp. 329-345, DOI: 10.1016/j.jcsr.2015.08.048.

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Publication Details

Type

Article

Year

2015

Authors

3

Datasets

0

Total Files

0

Language

English

Journal

Journal of Constructional Steel Research

DOI

10.1016/j.jcsr.2015.08.048

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