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Torsional vibration analysis of nanorods with elastic torsional restraints using non-local elasticity theory

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Yaylı, Mustafa Özgür

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Wiley

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In this work, torsional vibration of nanorods with torsional elastic boundary conditions is presented via non-local elasticity theory. The present model developed based on non-local elasticity theory gives the opportunity to interpret size effect. Two torsional elastic springs are attached to a nanorod at both ends. A mathematical transformation known as Stoke transformation' is utilised to work out the Fourier series for the nanorods with torsional restraints. A coefficient matrix including torsional coefficients is determined by using non-local boundary conditions. A comparison is performed to validate numerical simulations with those given in the literature and the results agree with each other exactly. The non-local effects of torsional end restraints on the free torsional vibration response are investigated for both deformable and rigid boundary conditions.

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Science & technology - other topics, Materials Science, Buckling analysis, Continuum-mechanics, Carbon nanotubes, Boundary conditions, Elastic waves, Fourier series, Machine vibrations, Nanorods, Vibration analysis, A-coefficient, Elastic springs, Engineering and technology, Non-local boundary conditions, Non-local effect, Non-local elasticity theories, Torsional vibration, Torsional vibration analysis, Elasticity

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Yaylı, M. Ö. (2018). ''Torsional vibration analysis of nanorods with elastic torsional restraints using non-local elasticity theory''. Micro and Nano Letters, 13(5), 595-599.

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