Thermal post-buckling improvements of laminated composite plates using the active strain energy tuning approach

Shape memory alloy was firstly used commercially as a hydraulic coupling in the Grumman F14A in 1971. It is today used among others to improve structural behaviours such as buckling of composite plates in the aerospace vehicles. In this paper, finite element model and its source code for thermal pos...

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Main Authors: A. Rasid, Zainudin, Ayob, Amran, Zahari, Rizal, Majid, D. L., Rafie, A.S. M.
Format: Book Section
Published: Scientific.net 2011
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Online Access:http://eprints.utm.my/id/eprint/30101/
http://dx.doi.org/10.4028/www.scientific.net/AMR.311-313.2235
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spelling my.utm.301012017-02-04T06:47:39Z http://eprints.utm.my/id/eprint/30101/ Thermal post-buckling improvements of laminated composite plates using the active strain energy tuning approach A. Rasid, Zainudin Ayob, Amran Zahari, Rizal Majid, D. L. Rafie, A.S. M. TJ Mechanical engineering and machinery Shape memory alloy was firstly used commercially as a hydraulic coupling in the Grumman F14A in 1971. It is today used among others to improve structural behaviours such as buckling of composite plates in the aerospace vehicles. In this paper, finite element model and its source code for thermal post-buckling of shape memory alloy laminated composite plates is presented. The shape memory alloy wires induced stress that improved the strain energy, stiffness and thus the buckling behaviour of the composite plates. The finite element formulation catered the combined properties of the composite and shape memory alloys, the addition of the recovery stress and the temperature dependent properties of the shape memory alloys and the composite matrix. This study showed that by embedding shape memory alloy within layers of composite plates, postbuckling behaviours of composite plates can be improved substantially. Scientific.net 2011 Book Section PeerReviewed A. Rasid, Zainudin and Ayob, Amran and Zahari, Rizal and Majid, D. L. and Rafie, A.S. M. (2011) Thermal post-buckling improvements of laminated composite plates using the active strain energy tuning approach. In: Advanced Materials Research. Scientific.net, Guangzhou, pp. 2235-2238. ISBN 978-303785214-9 http://dx.doi.org/10.4028/www.scientific.net/AMR.311-313.2235 10.4028/www.scientific.net/AMR.311-313.2235
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic TJ Mechanical engineering and machinery
spellingShingle TJ Mechanical engineering and machinery
A. Rasid, Zainudin
Ayob, Amran
Zahari, Rizal
Majid, D. L.
Rafie, A.S. M.
Thermal post-buckling improvements of laminated composite plates using the active strain energy tuning approach
description Shape memory alloy was firstly used commercially as a hydraulic coupling in the Grumman F14A in 1971. It is today used among others to improve structural behaviours such as buckling of composite plates in the aerospace vehicles. In this paper, finite element model and its source code for thermal post-buckling of shape memory alloy laminated composite plates is presented. The shape memory alloy wires induced stress that improved the strain energy, stiffness and thus the buckling behaviour of the composite plates. The finite element formulation catered the combined properties of the composite and shape memory alloys, the addition of the recovery stress and the temperature dependent properties of the shape memory alloys and the composite matrix. This study showed that by embedding shape memory alloy within layers of composite plates, postbuckling behaviours of composite plates can be improved substantially.
format Book Section
author A. Rasid, Zainudin
Ayob, Amran
Zahari, Rizal
Majid, D. L.
Rafie, A.S. M.
author_facet A. Rasid, Zainudin
Ayob, Amran
Zahari, Rizal
Majid, D. L.
Rafie, A.S. M.
author_sort A. Rasid, Zainudin
title Thermal post-buckling improvements of laminated composite plates using the active strain energy tuning approach
title_short Thermal post-buckling improvements of laminated composite plates using the active strain energy tuning approach
title_full Thermal post-buckling improvements of laminated composite plates using the active strain energy tuning approach
title_fullStr Thermal post-buckling improvements of laminated composite plates using the active strain energy tuning approach
title_full_unstemmed Thermal post-buckling improvements of laminated composite plates using the active strain energy tuning approach
title_sort thermal post-buckling improvements of laminated composite plates using the active strain energy tuning approach
publisher Scientific.net
publishDate 2011
url http://eprints.utm.my/id/eprint/30101/
http://dx.doi.org/10.4028/www.scientific.net/AMR.311-313.2235
_version_ 1643648455399178240
score 13.160551