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Stress-driven two-phase integral elasticity for torsion of nano-beams

Articolo
Data di Pubblicazione:
2018
Abstract:
Size-dependent structural behavior of nano-beams under torsion is investigated by two-phase integral elasticity. An effective torsional model is proposed by convexly combining the purely nonlocal integral stress-driven relation with a local phase. Unlike Eringen's strain-driven mixture, the projected model does not exhibit singular behaviors and leads to well-posed elastostatic problems in all cases of technical interest. The new theory is illustrated by studying torsional responses of cantilever and doubly-clamped nano-beams under simple loading conditions. Specifically, the integral convolution of the two-phase mixture is done by considering the special bi-exponential kernel. With this choice, the stress-driven two-phase model is shown to be equivalent to a differential problem equipped with higher-order constitutive boundary conditions. Exact solutions are established and comparisons with pertinent results obtained by the Eringen strain-driven two-phase mixture and by the strain gradient theory of elasticity are carried out. The outcomes could be useful for the design and optimization of nano-devices and provide new benchmarks for numerical analyses.
Tipologia CRIS:
1.1 Articolo in rivista
Elenco autori:
Barretta, ; Ali, Faghidianb; Luciano, ; Medaglia, C; Penna,
Link alla scheda completa:
https://iris.unilink.it/handle/20.500.14085/506
Pubblicato in:
COMPOSITES. PART B, ENGINEERING
Journal
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URL

https://www.sciencedirect.com/science/article/abs/pii/S1359836818301264
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