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The constitutive relation and small scale parameter of nonlocal continuum mechanics for modelling carbon nanotubes

Nanotechnology · 2007 · Vol. 18(7) · pp. 075702–075702
Quan WangC.M. Wang

Abstract

In this paper, the constitutive relations of nonlocal elasticity theory are presented for application in the analysis of carbon nanotubes (CNTs) when modelled as Euler-Bernoulli beams, Timoshenko beams or as cylindrical shells. In particular, the shear stress and strain relation for the nonlocal Timoshenko beam theory is discussed in great detail due to a misconception by some researchers that the nonlocal effect should appear in this constitutive relation. Different theories for proposing the value of the small scale parameter are also introduced and a recommendation for the value from the standpoint of wave propagation of CNTs is given.

Nonlocal and gradient elasticity in micro/nano structuresThermoelastic and Magnetoelastic PhenomenaNumerical methods in engineeringConstitutive equationTimoshenko beam theoryCarbon nanotubeMaterials scienceContinuum mechanicsElasticity (physics)Classical mechanicsMechanicsBeam (structure)Physics
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References
GRADIENT ENHANCED DAMAGE FOR QUASI-BRITTLE MATERIALS
International Journal for Numerical Methods in Engineering · 1996 · 1,414 citations
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