Vibration and damping analysis of smart sandwich nanotubes using surface-visco-piezo-elasticity theory for various boundary conditions
Author:
Publisher
Elsevier BV
Subject
Applied Mathematics,Computational Mathematics,General Engineering,Analysis
Reference38 articles.
1. Mechanical properties of carbon nanotubes: a fiber digest for beginners;Salvetat;Carbon N Y,2002
2. Carbon nanotube reinforced composites: potential and current challenge;Esawi;Material Design,2007
3. The effect of a CNT interface on the thermal resistance of contacting surfaces;Shaikh;Carbon N Y,2007
4. M.S. Hoseinzadeh, S.E. Khadem. A nonlocal shell theory model for evaluation of thermoelastic damping in the vibration of a double-walled carbon nanotube. physica e: low-dimensional systems and nanostructures. 2014: 57; 6–11.
5. J. Payandehpeyman, K. Moradi. Effect of temperature on vibrations and buckling behavior of carbon nanotube-based mass sensors using a new temperature-dependent structural model. physica e: low-dimensional systems and nanostructures. 2019: 106; 258–69.
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