Approximate Closed-Form Solutions for Vibration of Nano-Beams of Local/Non-local Mixture

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Date

2022

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Springer

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Yes

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Abstract

This paper presents an approach to natural vibration of nano-beams by a linear elastic constitutive law based on a mixture of local and non-local contributions, the latter based on Eringen's model. A perturbation in terms of an evolution parameter lets incremental field equations be derived; another perturbation in terms of the non-local volume fraction yields the variation of the natural angular frequencies and modes with the 'small' amount of non-locality. The latter perturbation does not need to comply with the so-called constitutive boundary conditions, the physical interpretation of which is still debated. The possibility to find closed-form solutions is highlighted following a thorough discussion on the compatibility conditions needed to solve the steps of the perturbation hierarchy; some paradigmatic examples are presented and duly commented.

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Keywords

Natural vibration, Constitutive boundary conditions, Nano-beams, Perturbation methods, Non-local elasticity, Nano-beams; Non-local elasticity; Perturbation methods; Constitutive boundary conditions; Natural vibration, Natural vibration, Non-local elasticity, Nano-beams, Perturbation methods, Constitutive boundary conditions

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Fields of Science

0203 mechanical engineering, 02 engineering and technology

Citation

Eroğlu, U., & Ruta, G. (2022). Approximate closed-form solutions for vibration of nano-beams of local/non-local mixture. Meccanica, 57(12), 3033–3049. https://doi.org/10.1007/s11012-022-01612-7‌

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Q3

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Source

Meccanica

Volume

57

Issue

57

Start Page

3033-3049

End Page

3049
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225

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