Vibration response of FG-CNT-reinforced plates covered by magnetic layer utilizing numerical solution
Vibration response in a sandwich plate with a nanocompiste core covered by magnetic layer is presented. The core is armed by functionalyy graded-carbon nanotubes (FG-CNTs) where the Mori-Tanaka law is utilized assuming agglomeration effects. The structure plate is located on elastic medium simulated...
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my.utm.914892021-06-30T12:17:16Z http://eprints.utm.my/id/eprint/91489/ Vibration response of FG-CNT-reinforced plates covered by magnetic layer utilizing numerical solution Cao, Yan Musharavati, Farayi Baharom, Shahrizan Talebizadehsardari, Pouyan Sebaey, Tamer A. Eyvazian, Arameh Mohd. Zain, Azlan QA75 Electronic computers. Computer science Vibration response in a sandwich plate with a nanocompiste core covered by magnetic layer is presented. The core is armed by functionalyy graded-carbon nanotubes (FG-CNTs) where the Mori-Tanaka law is utilized assuming agglomeration effects. The structure plate is located on elastic medium simulated by Pasternak model. The governing equations are derived based on Mindlin theory and Hamilton’s principle. Utilizing diffrential quadrature method (DQM), the frequency of the structure is calculated and the effects of magnetic layer, volume percent and agglomeration of CNTs, elastic medium and geometrical parameters of structure are shown on the frequency of system. Results indicate that with considering magnetic layer, the frequency of structure is increased. Techno-Press 2020-10-25 Article PeerReviewed Cao, Yan and Musharavati, Farayi and Baharom, Shahrizan and Talebizadehsardari, Pouyan and Sebaey, Tamer A. and Eyvazian, Arameh and Mohd. Zain, Azlan (2020) Vibration response of FG-CNT-reinforced plates covered by magnetic layer utilizing numerical solution. Steel and Composite Structures, 37 (2). pp. 253-258. ISSN 1229-9367 http://dx.doi.org/10.12989/scs.2020.37.2.253 DOI:10.12989/scs.2020.37.2.253 |
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QA75 Electronic computers. Computer science Cao, Yan Musharavati, Farayi Baharom, Shahrizan Talebizadehsardari, Pouyan Sebaey, Tamer A. Eyvazian, Arameh Mohd. Zain, Azlan Vibration response of FG-CNT-reinforced plates covered by magnetic layer utilizing numerical solution |
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Vibration response in a sandwich plate with a nanocompiste core covered by magnetic layer is presented. The core is armed by functionalyy graded-carbon nanotubes (FG-CNTs) where the Mori-Tanaka law is utilized assuming agglomeration effects. The structure plate is located on elastic medium simulated by Pasternak model. The governing equations are derived based on Mindlin theory and Hamilton’s principle. Utilizing diffrential quadrature method (DQM), the frequency of the structure is calculated and the effects of magnetic layer, volume percent and agglomeration of CNTs, elastic medium and geometrical parameters of structure are shown on the frequency of system. Results indicate that with considering magnetic layer, the frequency of structure is increased. |
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Article |
author |
Cao, Yan Musharavati, Farayi Baharom, Shahrizan Talebizadehsardari, Pouyan Sebaey, Tamer A. Eyvazian, Arameh Mohd. Zain, Azlan |
author_facet |
Cao, Yan Musharavati, Farayi Baharom, Shahrizan Talebizadehsardari, Pouyan Sebaey, Tamer A. Eyvazian, Arameh Mohd. Zain, Azlan |
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Cao, Yan |
title |
Vibration response of FG-CNT-reinforced plates covered by magnetic layer utilizing numerical solution |
title_short |
Vibration response of FG-CNT-reinforced plates covered by magnetic layer utilizing numerical solution |
title_full |
Vibration response of FG-CNT-reinforced plates covered by magnetic layer utilizing numerical solution |
title_fullStr |
Vibration response of FG-CNT-reinforced plates covered by magnetic layer utilizing numerical solution |
title_full_unstemmed |
Vibration response of FG-CNT-reinforced plates covered by magnetic layer utilizing numerical solution |
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vibration response of fg-cnt-reinforced plates covered by magnetic layer utilizing numerical solution |
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Techno-Press |
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2020 |
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http://eprints.utm.my/id/eprint/91489/ http://dx.doi.org/10.12989/scs.2020.37.2.253 |
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1705056721019338752 |
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13.214268 |