Exact solution and buckling configuration of nanotubes containing internal flowing fluid

dc.contributor.authorSinir B.G.
dc.contributor.authorUz F.E.
dc.contributor.authorErgun S.
dc.date.accessioned2024-07-22T08:18:50Z
dc.date.available2024-07-22T08:18:50Z
dc.date.issued2013
dc.description.abstractIn this study, the post-divergence behaviour of nanotubes of conveying internal moving fluid with both inner and outer surface layers are analyzed in nonlinear theorical model. The governing equation has the cubic nonlinearity. The source of this nonlinearity is the surface effect and mid-plane stretching in the nanobeam theory. Exact solutions for the post buckling configurations of nanotubes with clamped-hinged with torsionally spring and hybrid boundary conditions is found. The critical flow velocity at which the nanotube is buckled is shown. The effects of various non-dimensional system parameters on the post-buckling behaviour are investigated.
dc.identifier.DOI-ID10.3390/mca18030539
dc.identifier.issn1300686X
dc.identifier.urihttp://akademikarsiv.cbu.edu.tr:4000/handle/123456789/17437
dc.language.isoEnglish
dc.publisherAssociation for Scientific Research
dc.rightsAll Open Access; Gold Open Access
dc.subjectFlow velocity
dc.subjectNanotubes
dc.subjectCritical flow velocity
dc.subjectCubic nonlinearities
dc.subjectExact solution
dc.subjectHybrid boundary conditions
dc.subjectNonlinear
dc.subjectOuter surface layers
dc.subjectPostbuckling
dc.subjectSurface effect
dc.subjectBuckling
dc.titleExact solution and buckling configuration of nanotubes containing internal flowing fluid
dc.typeArticle

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