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dc.contributor.authorLawongkerd, Jintara
dc.contributor.authorRoodgar Saffari, Peyman
dc.contributor.authorJearsiripongkul, Thira
dc.contributor.authorThongchom, Chanachai
dc.contributor.authorIsmail, Sikiru Oluwarotimi
dc.contributor.authorSaffari, Pouyan Roodgar
dc.contributor.authorKeawsawasvong, Suraparb
dc.date.accessioned2024-03-25T13:33:22Z
dc.date.available2024-03-25T13:33:22Z
dc.date.issued2024-05
dc.identifier.citationLawongkerd , J , Roodgar Saffari , P , Jearsiripongkul , T , Thongchom , C , Ismail , S O , Saffari , P R & Keawsawasvong , S 2024 , ' Vibration characteristics of multilayer functionally graded microplates with variable thickness reinforced by graphene platelets resting on the viscoelastic medium under thermal effects ' , International Journal of Thermofluids , vol. 22 , 100611 , pp. 1-32 . https://doi.org/10.1016/j.ijft.2024.100611
dc.identifier.issn2666-2027
dc.identifier.otherJisc: 1766197
dc.identifier.otherJisc: 1798144
dc.identifier.otherORCID: /0000-0003-1451-1736/work/155560135
dc.identifier.urihttp://hdl.handle.net/2299/27605
dc.description© 2024 The Authors. Published by Elsevier Ltd. This is an open access article under the Creative Commons Attribution-NonCommercial-NoDerivatives CC BY-NC-ND licence, https://creativecommons.org/licenses/by-nc-nd/4.0/
dc.description.abstractDue to their improved mechanical properties and adaptability, microplates with tailored variable thickness profiles are becoming essential parts of advanced micro- and nanoelectromechanical systems (MEMS and NEMS). This study conducts a thorough analytical analysis of the vibration properties of thermally loaded, multilayer functionally graded graphene platelet-reinforced composite (FG-GPLRC) microplates of linearly or parabolically varying thickness resting on viscoelastic medium under different boundary conditions. The Halpin-Tsai micromechanical model and the law of mixtures are employed to calculate the effective material characteristics for various reinforcement distributions in the microplate. These distributions encompass uniformly symmetric and asymmetric arrangements. The study utilized the first-order shear deformation theory (FSDT) in conjunction with the modified strain gradient theory (MSGT) and Hamilton's principle to generate the dynamic governing equations for the structure, accounting for size-dependent effects. The resulting equations are afterwards solved using the utilization of the Galerkin technique. This enables the evaluation of the proposed solution's correctness and precision. The impact of various factors on vibration behavior is investigated through numerical analysis. These factors encompass length scale parameters, temperature fluctuations, temperature distribution profiles, boundary conditions, the distribution pattern of the GPL, taper constants in both unidirectional and bidirectional scenarios, the weight fraction of the GPL.en
dc.format.extent32
dc.format.extent5881288
dc.language.isoeng
dc.relation.ispartofInternational Journal of Thermofluids
dc.subjectFree vibration
dc.subjectFunctionally graded microplates
dc.subjectGraphene platelet
dc.subjectModified strain gradient theory
dc.subjectVariable thickness
dc.subjectCondensed Matter Physics
dc.subjectMechanical Engineering
dc.subjectFluid Flow and Transfer Processes
dc.titleVibration characteristics of multilayer functionally graded microplates with variable thickness reinforced by graphene platelets resting on the viscoelastic medium under thermal effectsen
dc.contributor.institutionCentre for Future Societies Research
dc.contributor.institutionCentre for Climate Change Research (C3R)
dc.contributor.institutionDepartment of Engineering and Technology
dc.contributor.institutionSchool of Physics, Engineering & Computer Science
dc.contributor.institutionMaterials and Structures
dc.contributor.institutionCentre for Engineering Research
dc.description.statusPeer reviewed
dc.identifier.urlhttp://www.scopus.com/inward/record.url?scp=85186521498&partnerID=8YFLogxK
rioxxterms.versionofrecord10.1016/j.ijft.2024.100611
rioxxterms.typeJournal Article/Review
herts.preservation.rarelyaccessedtrue


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