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The present work demonstrates a practical way to design the piezoelectric superlattices with high piezoelectric coefficient by using the nonlocal effect at nanoscale.
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The vibration characteristics of a simply supported viscoelastic nanoplate are studied using the nonlocal plate theory by including the effect of viscoelastic foundation.
Here, we analyzed the free transverse vibration of a viscoelastic multi-nanoplate system (MNPS) embedded in a viscoelastic medium taking into account small-scale effects by using the nonlocal theory of Eringen.
In this paper, the vibrational frequency of DWCNTs, while accounting for surface effects, is studied using the nonlocal Timoshenko beam model.
This study aims to investigate the postbuckling response of functionally graded (FG) nanoplates by using the nonlocal elasticity theory of Eringen to capture the size effect.
Using the nonlocal continuum theory as well as the Gurtin Murdoch theory, the nonlocality and surface effects are considered in equations of motion.
Small scale effects are taken into consideration using the nonlocal continuum mechanics.
The longitudinal wave propagation in multiwalled carbon nanotubes is investigated using the nonlocal elasticity theory.
Vibration of nanotubes embedded in an elastic matrix is investigated by using the nonlocal Timoshenko beam model.
When the nonlocal effect is neglected, the frequencies reduce to the classical results, in agreement with those using the finite element method.
This table presents new results of the nonlocal effect on the vibration frequencies of DWNT with different boundary conditions between the tubes which can be used as a benchmark for further studies.
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