Design of a variable stiffness bracing system: mathematical modeling, fabrication, and dynamic analysis

This paper presents a new bracing system with variable stiffness springs; this adaptive structural control system is designed to protect buildings against severe vibration and ground movement. The developed variable stiffness bracing (VSB) system comprises four nonlinear steel leaf springs that prov...

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Main Authors: Fateh, Amir, Hejazi, Farzad, Jaafar, Mohd Saleh, Abd Karim, Izian, Adnan, Azlan
Format: Article
Language:English
Published: Elsevier 2016
Online Access:http://psasir.upm.edu.my/id/eprint/55453/1/Design%20of%20a%20variable%20stiffness%20bracing%20system%20mathematical%20modeling%2C%20fabrication%2C%20and.pdf
http://psasir.upm.edu.my/id/eprint/55453/
http://www.sciencedirect.com/science/article/pii/S0267726115002493
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spelling my.upm.eprints.554532017-09-14T09:57:48Z http://psasir.upm.edu.my/id/eprint/55453/ Design of a variable stiffness bracing system: mathematical modeling, fabrication, and dynamic analysis Fateh, Amir Hejazi, Farzad Jaafar, Mohd Saleh Abd Karim, Izian Adnan, Azlan This paper presents a new bracing system with variable stiffness springs; this adaptive structural control system is designed to protect buildings against severe vibration and ground movement. The developed variable stiffness bracing (VSB) system comprises four nonlinear steel leaf springs that provide nonlinear and variable stiffness capacity at different frame displacements. The inelastic actions of the VSB system׳s nonlinear leaf springs keep the energy dissipation characteristics and ductility of moment-resisting frames. At large vibration amplitudes, the VSB device restrains unallowably story drift. Therefore, frames display ductile performance. We developed a mathematical model to simulate the mechanical behavior of the system, including the stiffness nonlinearity of the springs. Moreover, we evaluated the efficiency of the VSB implementation in a single-degree-of-freedom system by dynamically analyzing different models: a moment-resisting frame, a conventional braced frame, and a frame using the VSB system. This article discusses and proves the effectiveness of the proposed system through numerical analysis. Elsevier 2016 Article PeerReviewed application/pdf en http://psasir.upm.edu.my/id/eprint/55453/1/Design%20of%20a%20variable%20stiffness%20bracing%20system%20mathematical%20modeling%2C%20fabrication%2C%20and.pdf Fateh, Amir and Hejazi, Farzad and Jaafar, Mohd Saleh and Abd Karim, Izian and Adnan, Azlan (2016) Design of a variable stiffness bracing system: mathematical modeling, fabrication, and dynamic analysis. Soil Dynamics and Earthquake Engineering, 80 (2015). pp. 87-101. ISSN 0267-7261; ESSN: 1879-341X http://www.sciencedirect.com/science/article/pii/S0267726115002493 10.1016/j.soildyn.2015.10.009
institution Universiti Putra Malaysia
building UPM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Putra Malaysia
content_source UPM Institutional Repository
url_provider http://psasir.upm.edu.my/
language English
description This paper presents a new bracing system with variable stiffness springs; this adaptive structural control system is designed to protect buildings against severe vibration and ground movement. The developed variable stiffness bracing (VSB) system comprises four nonlinear steel leaf springs that provide nonlinear and variable stiffness capacity at different frame displacements. The inelastic actions of the VSB system׳s nonlinear leaf springs keep the energy dissipation characteristics and ductility of moment-resisting frames. At large vibration amplitudes, the VSB device restrains unallowably story drift. Therefore, frames display ductile performance. We developed a mathematical model to simulate the mechanical behavior of the system, including the stiffness nonlinearity of the springs. Moreover, we evaluated the efficiency of the VSB implementation in a single-degree-of-freedom system by dynamically analyzing different models: a moment-resisting frame, a conventional braced frame, and a frame using the VSB system. This article discusses and proves the effectiveness of the proposed system through numerical analysis.
format Article
author Fateh, Amir
Hejazi, Farzad
Jaafar, Mohd Saleh
Abd Karim, Izian
Adnan, Azlan
spellingShingle Fateh, Amir
Hejazi, Farzad
Jaafar, Mohd Saleh
Abd Karim, Izian
Adnan, Azlan
Design of a variable stiffness bracing system: mathematical modeling, fabrication, and dynamic analysis
author_facet Fateh, Amir
Hejazi, Farzad
Jaafar, Mohd Saleh
Abd Karim, Izian
Adnan, Azlan
author_sort Fateh, Amir
title Design of a variable stiffness bracing system: mathematical modeling, fabrication, and dynamic analysis
title_short Design of a variable stiffness bracing system: mathematical modeling, fabrication, and dynamic analysis
title_full Design of a variable stiffness bracing system: mathematical modeling, fabrication, and dynamic analysis
title_fullStr Design of a variable stiffness bracing system: mathematical modeling, fabrication, and dynamic analysis
title_full_unstemmed Design of a variable stiffness bracing system: mathematical modeling, fabrication, and dynamic analysis
title_sort design of a variable stiffness bracing system: mathematical modeling, fabrication, and dynamic analysis
publisher Elsevier
publishDate 2016
url http://psasir.upm.edu.my/id/eprint/55453/1/Design%20of%20a%20variable%20stiffness%20bracing%20system%20mathematical%20modeling%2C%20fabrication%2C%20and.pdf
http://psasir.upm.edu.my/id/eprint/55453/
http://www.sciencedirect.com/science/article/pii/S0267726115002493
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score 13.188404