Post-buckling of variable stiffness curvilinear fibre-reinforced general lay-up composite beams by sinusoidal shear flexible theory

dc.contributor.authorManickam, G.
dc.contributor.authorPolit, O.
dc.contributor.authorHaboussi, M.
dc.contributor.authorChettiar, A.
dc.contributor.authorKulkarni, V.
dc.contributor.authorGunasekaran, V.
dc.date.accessioned2026-02-04T12:25:16Z
dc.date.issued2024
dc.description.abstractThe mechanical post-buckling behaviour of variable stiffness layered composite beams reinforced by curvilinear fibres subjected to compressive loads is investigated here using a sine function-based shear flexible beam model. The neutral axis stretching force stemming from the axial movement restraints is accounted for through von Karman’s assumption based geometrical nonlinearity. Furthermore, the modified beam constitutive equation arising from the consideration of the Poisson’s effect is introduced in the formulation for the laminated beam analysis with general lay-up or ply sequences. The governing equations incorporating the incremental stiffness matrices are formed through the minimization of total potential energy principle and are solved by numerical method. The solutions for the developed governing equations are evaluated iteratively based on eigenvalue analysis and the characteristics of post-buckling of laminated beams can be inferred through the relationship between the beam deflection level and post-buckling axial load. An in-depth analysis selecting many design parameters for instance lamina’s curvilinear fibre angles, beam slenderness ratio, lay-up and edge conditions, load type and so on is dealt with in bringing out the behaviour of variable stiffness laminated beam in linear and post-buckling regions. Also, the influence of flexible end supports by restraining elastically against ends rotation is studied on the beam elastic stability behaviour. © The Author(s) 2023.
dc.identifier.citationJournal of Reinforced Plastics and Composites, 2024, 43, 46115, pp. 149-168
dc.identifier.issn7316844
dc.identifier.urihttps://doi.org/10.1177/07316844231158063
dc.identifier.urihttps://idr.nitk.ac.in/handle/123456789/21319
dc.publisherSAGE Publications Ltd
dc.subjectComposite beams and girders
dc.subjectControl nonlinearities
dc.subjectEigenvalues and eigenfunctions
dc.subjectFibers
dc.subjectIterative methods
dc.subjectLaminated composites
dc.subjectLaminating
dc.subjectNumerical methods
dc.subjectPoisson equation
dc.subjectPotential energy
dc.subjectReinforcement
dc.subjectStiffness
dc.subjectStiffness matrix
dc.subjectBeam deflection
dc.subjectComposite beam
dc.subjectConstant and variable stiffness composite beam
dc.subjectCritical buckling
dc.subjectCurvilinear fiber angle
dc.subjectCurvilinear fibers
dc.subjectFiber angles
dc.subjectPostbuckling
dc.subjectRotational spring
dc.subjectRotational spring stiffness
dc.subjectSpring stiffness
dc.subjectVariable stiffness
dc.subjectBuckling
dc.titlePost-buckling of variable stiffness curvilinear fibre-reinforced general lay-up composite beams by sinusoidal shear flexible theory

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