Nonlinear buckling and free vibration analysis of auxetic graphene origami composite beams under nonuniform thermal environment

dc.contributor.authorShashiraj
dc.contributor.authorPitchaimani, J.
dc.contributor.authorKattimani, S.
dc.date.accessioned2026-02-03T13:20:53Z
dc.date.issued2025
dc.description.abstractThis study examines the thermo-mechanical behavior of auxetic metamaterial beams enhanced by graphene origami (GOri) under spatially varying nonuniform temperature distributions (SVTD). Utilizing Timoshenko beam theory considering von-Kármánn type nonlinear strain–displacement relationship, GOri beams are modeled as layered structures. The Ritz method is employed to solve equilibrium equations, analyzing the impact of GOri distribution patterns, content, and folding degree on post-buckling and vibration paths. The effects of five SVTDs, three end conditions, and three GOri distribution patterns on buckling, post-buckling behavior, and nonlinear free vibration characteristics are explored. Findings reveal that the parabolic temperature distribution with peak temperatures at beam ends (P-MAE) results in higher critical temperatures and nonlinear free vibration frequencies. This research provides crucial insights into the design and optimization of GOri-enabled metamaterial structures in complex thermal environments, highlighting the significant influence of nonuniform temperature distributions along the beam’s length. © 2024 Taylor & Francis Group, LLC.
dc.identifier.citationMechanics Based Design of Structures and Machines, 2025, 53, 4, pp. 2870-2901
dc.identifier.issn15397734
dc.identifier.urihttps://doi.org/10.1080/15397734.2024.2415484
dc.identifier.urihttps://idr.nitk.ac.in/handle/123456789/20725
dc.publisherTaylor and Francis Ltd.
dc.subjectBuckling
dc.subjectBuckling loads
dc.subjectBuckling modes
dc.subjectLocal buckling
dc.subjectTemperature distribution
dc.subjectVibration analysis
dc.subjectAuxetic metamaterial
dc.subjectAuxetics
dc.subjectDistribution patterns
dc.subjectGraphene origami
dc.subjectGraphenes
dc.subjectNonuniform spatially varying temperature distribution
dc.subjectNonuniform temperature
dc.subjectRitz methods
dc.subjectThermal environment
dc.subjectVarying temperature
dc.subjectBuckling behavior
dc.titleNonlinear buckling and free vibration analysis of auxetic graphene origami composite beams under nonuniform thermal environment

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