We propose a geometrically and materially nonlinear discrete mechanical model of graphene that assigns an energetic cost to changes in bond lengths, bond angles, and dihedral angles. We formulate a variational equilibrium problem for a rectangular graphene sheet with assigned balanced forces and couples uniformly distributed over opposite side pairs. We show that the resulting combination of stretching and bending makes achiral graphene easier to bend and harder (easier) to stretch for small (large) traction loads. Our general developments hold for a wide class of REBO potentials; we illustrate them in detail by numerical calculations performed in the case of a widely used 2nd-generation Brenner potential.

How graphene flexes and stretches under concomitant bending couples and tractions / Favata, Antonino; Micheletti, Andrea; Podio Guidugli, Paolo; Pugno, Nicola M.. - In: MECCANICA. - ISSN 1572-9648. - STAMPA. - 7:52(2017), pp. 1601-1624.

How graphene flexes and stretches under concomitant bending couples and tractions

FAVATA, ANTONINO;
2017

Abstract

We propose a geometrically and materially nonlinear discrete mechanical model of graphene that assigns an energetic cost to changes in bond lengths, bond angles, and dihedral angles. We formulate a variational equilibrium problem for a rectangular graphene sheet with assigned balanced forces and couples uniformly distributed over opposite side pairs. We show that the resulting combination of stretching and bending makes achiral graphene easier to bend and harder (easier) to stretch for small (large) traction loads. Our general developments hold for a wide class of REBO potentials; we illustrate them in detail by numerical calculations performed in the case of a widely used 2nd-generation Brenner potential.
2017
Graphene, Softening, Hardening, Bending stiffness, Stretching stiffness
01 Pubblicazione su rivista::01a Articolo in rivista
How graphene flexes and stretches under concomitant bending couples and tractions / Favata, Antonino; Micheletti, Andrea; Podio Guidugli, Paolo; Pugno, Nicola M.. - In: MECCANICA. - ISSN 1572-9648. - STAMPA. - 7:52(2017), pp. 1601-1624.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/878484
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