Experimental Research on Passive Control of Steel Frame Structure Using SMA Wires
Mechanical properties of shape memory alloy (SMA) wires were experimentally researched in this paper, and an energy dissipater made of SMA wire cable was designed and applied in a steel frame structure model by using superelasticity characteristics of SMAs to passively reduce dynamic responses of th...
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Series: | Mathematical Problems in Engineering |
Online Access: | http://dx.doi.org/10.1155/2013/416282 |
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doaj-6e3050370df84568a86e29ed7c9abfdf2020-11-25T00:53:38ZengHindawi LimitedMathematical Problems in Engineering1024-123X1563-51472013-01-01201310.1155/2013/416282416282Experimental Research on Passive Control of Steel Frame Structure Using SMA WiresShi Yan0Jian Niu1Peng Mao2Gangbing Song3Wei Wang4School of Civil Engineering, Shenyang Jianzhu University, Shenyang 110168, ChinaSchool of Civil Engineering, Shenyang Jianzhu University, Shenyang 110168, ChinaSchool of Civil Engineering, Shenyang Jianzhu University, Shenyang 110168, ChinaFaculty of Infrastructure Engineering, Dalian University Technology, Dalian 116024, ChinaSchool of Civil Engineering, Shenyang Jianzhu University, Shenyang 110168, ChinaMechanical properties of shape memory alloy (SMA) wires were experimentally researched in this paper, and an energy dissipater made of SMA wire cable was designed and applied in a steel frame structure model by using superelasticity characteristics of SMAs to passively reduce dynamic responses of the steel frame structure under seismic load. For the characteristics of large relative displacements between the stories of the steel frame structure on both diagonal ends and the consideration of initial prestrain effects of the SMA cables, three kinds of the whole control, the part control, and no control of the shaking table tests and numerical simulations were carried, respectively. Through the results of the shaking table test and numerical simulation analysis, the dynamic responses such as the maximum displacement, velocity, and acceleration at the top layer of the steel frame structure applied with SMA cables are significantly decreased compared with the no control case. However, considering the premise of both effectiveness and efficiency, the part control effect is superior to the whole control. In many cases, it can meet the control requirement of reducing the maximum displacement and acceleration, while the superelasticity of SMAs can be sufficiently played, realizing the passive control purposes of the steel frame structure based on the energy dispassion through the application of the SMA cables. The proposed method has broad application prospects in the passive control field of building structures.http://dx.doi.org/10.1155/2013/416282 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Shi Yan Jian Niu Peng Mao Gangbing Song Wei Wang |
spellingShingle |
Shi Yan Jian Niu Peng Mao Gangbing Song Wei Wang Experimental Research on Passive Control of Steel Frame Structure Using SMA Wires Mathematical Problems in Engineering |
author_facet |
Shi Yan Jian Niu Peng Mao Gangbing Song Wei Wang |
author_sort |
Shi Yan |
title |
Experimental Research on Passive Control of Steel Frame Structure Using SMA Wires |
title_short |
Experimental Research on Passive Control of Steel Frame Structure Using SMA Wires |
title_full |
Experimental Research on Passive Control of Steel Frame Structure Using SMA Wires |
title_fullStr |
Experimental Research on Passive Control of Steel Frame Structure Using SMA Wires |
title_full_unstemmed |
Experimental Research on Passive Control of Steel Frame Structure Using SMA Wires |
title_sort |
experimental research on passive control of steel frame structure using sma wires |
publisher |
Hindawi Limited |
series |
Mathematical Problems in Engineering |
issn |
1024-123X 1563-5147 |
publishDate |
2013-01-01 |
description |
Mechanical properties of shape memory alloy (SMA) wires were experimentally researched in this paper, and an energy dissipater made of SMA wire cable was designed and applied in a steel frame structure model by using superelasticity characteristics of SMAs to passively reduce dynamic responses of the steel frame structure under seismic load. For the characteristics of large relative displacements between the stories of the steel frame structure on both diagonal ends and the consideration of initial prestrain effects of the SMA cables, three kinds of the whole control, the part control, and no control of the shaking table tests and numerical simulations were carried, respectively. Through the results of the shaking table test and numerical simulation analysis, the dynamic responses such as the maximum displacement, velocity, and acceleration at the top layer of the steel frame structure applied with SMA cables are significantly decreased compared with the no control case. However, considering the premise of both effectiveness and efficiency, the part control effect is superior to the whole control. In many cases, it can meet the control requirement of reducing the maximum displacement and acceleration, while the superelasticity of SMAs can be sufficiently played, realizing the passive control purposes of the steel frame structure based on the energy dispassion through the application of the SMA cables. The proposed method has broad application prospects in the passive control field of building structures. |
url |
http://dx.doi.org/10.1155/2013/416282 |
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