2015
DOI: 10.1016/j.compstruct.2015.02.033
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A comprehensive study on the vibrational behavior of CNT-reinforced composite beams

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Cited by 57 publications
(18 citation statements)
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“…Indeed, over the last decade, in addition to experimental studies, a large amount of research has been conducted on modeling nanotube and CNT based nanocomposite properties (see e.g. [29][30][31][32][33]), ultimately aiming to control and tailor the final behavior of the nanostructured systems. In reference to mechanical and structural properties, there are three main approaches for the modeling of nanostructures: (a) atomistic modeling, (b) hybrid atomistic-continuum mechanics and (c) continuum mechanics.…”
Section: Introductionmentioning
confidence: 99%
“…Indeed, over the last decade, in addition to experimental studies, a large amount of research has been conducted on modeling nanotube and CNT based nanocomposite properties (see e.g. [29][30][31][32][33]), ultimately aiming to control and tailor the final behavior of the nanostructured systems. In reference to mechanical and structural properties, there are three main approaches for the modeling of nanostructures: (a) atomistic modeling, (b) hybrid atomistic-continuum mechanics and (c) continuum mechanics.…”
Section: Introductionmentioning
confidence: 99%
“…Later, Shen and Xiang (2014) could probe the thermal postbuckling behaviors of CNTRC panels once embedded on an elastic substrate. The effects of the straight or waviness being of CNTs are covered by Heshmati et al. (2015) in order to investigate the dynamic responses of CNTRC beams.…”
Section: Introductionmentioning
confidence: 99%
“…He et al [37] offered the free and forced vibration analysis of viscoelastic CNTs/fiber/polymer multiscale composite beams based on the Euler-Bernoulli beam theory and the movement of carbon-based nonlinear Von Karman nonlinear displacement field. Heshmati et al [38] studied the effect of the wave and conglobation of carbon nanotubes on the vibration behavior of nanocomposite beams with functionally graded nanotubes using the Monte Carlo simulation method. Majid Jamal-Omidi et al [39] studied the nonlinear vibration behavior of nanocomposite beams.…”
Section: Introductionmentioning
confidence: 99%