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Study and control of thermoelastic damping of in-plane vibration of the functionally graded nano-plate

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dc.contributor.author Rahimi, Zaher
dc.contributor.author Sumelka, Wojciech
dc.contributor.author Ahmadi, Samrand Rash
dc.contributor.author Baleanu, Dumitru
dc.date.accessioned 2020-02-13T11:14:10Z
dc.date.available 2020-02-13T11:14:10Z
dc.date.issued 2019-12
dc.identifier.citation Rahimi, Zaher...et al. (2019). "Study and control of thermoelastic damping of in-plane vibration of the functionally graded nano-plate", Journal of Vibration and Control, Vol. 25, No. 23-24, pp. 2850-2862. tr_TR
dc.identifier.issn 1077-5463
dc.identifier.uri http://hdl.handle.net/20.500.12416/2438
dc.description.abstract The phenomenon of thermoelastic damping (TED) is a well-known mechanism of structural damping in which a vibrating thermoelastic structure obeys energy dissipation caused by the irreversible heat conduction in its volume. TED can be listed as common intrinsic losses and it cannot be controlled as easily as extrinsic losses thus this subject appears to be a very attractive research field. In this study TED of in-plane vibration of a functionally graded material (FGM) nano-plate has been studied based on the Eringen nonlocal theory. The effects of main parameters such as ambient temperature, length, and width of the nano-plate, the nonlocal parameter and the material gradient on the quality factor (Q) have been investigated. Also, the effect of different combinations of ceramic and metal in an FGM plate on increasing Q and subsequently reduction of the dissipated energy due to thermal effects has been illustrated. tr_TR
dc.language.iso eng tr_TR
dc.publisher Sage Publications LTD tr_TR
dc.relation.isversionof 10.1177/1077546319861009 tr_TR
dc.rights info:eu-repo/semantics/closedAccess tr_TR
dc.subject Thermoelastic Damping tr_TR
dc.subject Nonlocal Theory tr_TR
dc.subject In-Plane Vibration tr_TR
dc.subject Nano-Functionally Graded Material Plate tr_TR
dc.title Study and control of thermoelastic damping of in-plane vibration of the functionally graded nano-plate tr_TR
dc.type article tr_TR
dc.relation.journal Journal of Vibration and Control tr_TR
dc.contributor.authorID 56389 tr_TR
dc.identifier.volume 25 tr_TR
dc.identifier.issue 23-24 tr_TR
dc.identifier.startpage 2850 tr_TR
dc.identifier.endpage 2862 tr_TR
dc.contributor.department Çankaya Üniversitesi, Fen - Edebiyat Fakültesi, Matematik - Bilgisayar Bölümü tr_TR


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