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Analysis of free torsional vibration in carbon nanotubes embedded in a viscoelastic medium

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Języki publikacji
EN
Abstrakty
EN
Carbon Nanotubes (CNTs) have a great potential in many areas like electromechanical systems, medical application, pharmaceutical industry etc. The surrounding physical environment of CNT is very important on torsional vibration behavior of CNT. Damp¬ing and elastic effect of medium to the torsional vibration of CNTs are investigated in the present study. Governing equation of motion of nanotube is obtained using Eringen’s Nonlocal Elasticty Theory. The effects of some parameters like nonlocal parameter, stiffness parameter and nanotube length are studied in detail.
Twórcy
autor
  • Trakya University, 22030 Balkan Yerleşkesi, Edirne, Turkey
autor
  • Trakya University, 22030 Balkan Yerleşkesi, Edirne, Turkey
Bibliografia
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  • 2. Eringen A.C. On differential equations of nonlo¬cal elasticity and solutions of screw dislocation and surface waves. J. Appl. Phys. 54, 1983, 4703–4710.
  • 3. Ghavanloo E., Daneshmand F., Rafiei M. Vibra¬tion and instability analysis of carbon nanotubes conveying fluid and resting on a linear viscoelas¬tic Winkler foundation. Phys. E Low-Dimensional Syst. Nanostructures 42, 2010, 2218–2224.
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  • 5. Soltani P., Taherian M.M., Farshidianfar A. Vibration and instability of a viscous-fluid-conveying single-walled carbon nanotube embedded in a visco-elastic medium. J. Appl. Phys. 43, 2010, 401–425.
  • 6. Ghavanloo E., Rafiei M., Daneshmand F. In-plane vibration analysis of curved carbon nanotubes con-veying fluid embedded in viscoelastic medium. Phys. Lett. A, 375, 2011, 1994–1999.
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  • 8. Kazemi-Lari M.A., Fazelzadeh S.A., Ghavanloo E. Non-conservative instability of cantilever carbon nanotubes resting on viscoelastic foundation. Phys. E Low-Dimensional Syst. Nanostructures 44, 2012, 1623–1630.
  • 9. Rafiei M., Mohebpour S.R., Daneshmand F. Small-scale effect on the vibration of non-uniform carbon nanotubes conveying fluid and embedded in viscoelastic medium. Phys. E Low-Dimensional Syst. Nanostructures 44, 2012, 1372–1379.
  • 10. Ghorbanpour Arani A. Nonlocal vibration of embedded coupled cnts conveying fluid under thermo-magnetic fields via ritz method. J. Solid Mech. 5, 2013, 206–215.
  • 11. Kazemi-Lari M.A., Ghavanloo E., Ahmad Fazelzadeh S. Structural instability of carbon nanotubes embedded in viscoelastic medium and subjected to distributed tangential load. J Mech Sci Technol 27, 2013, 2085–2091.
  • 12. Lei Y, Adhikari S, Friswell M.I. Vibration of nonlocal Kelvin-Voigt viscoelastic damped Timoshenko beams. Int. J. Eng. Sci. 66-67, 2013, 1–13.
  • 13. Rezaee M., Maleki V.A. An analytical solution for vibration analysis of carbon nanotube conveying viscose fluid embedded in visco-elastic medium. Proc. Inst. Mech. Eng. Part C, J. Mech. Eng. Sci. 229, 2014, 644–650.
  • 14. Wang Y-Z., Li F-M. 2014, Nonlinear free vibration of nanotube with small scale effects embedded in viscous matrix. Mech Res Commun 60, 45–51.
  • 15. Pang M, Zhang Y.Q, Chen W.Q. Transverse wave propagation in viscoelastic single-walled carbon nanotubes with small scale and surface effects. J. Appl. Phys. 117, 2015, 305–324.
  • 16. Daneshmand F. 2014, Combined strain-inertia gradient elasticity in free vibration shell analysis of single walled carbon nanotubes using shell theory. Appl Math Comput 243, 856–869.
  • 17. Ghorbanpour Arani A., Vossough H., Kolahchi R. Nonlinear vibration and instability of a visco- Pasternak coupled double-DWBNNTs-reinforced microplate system conveying microflow. Proc. Inst. Mech. Eng. Part C, J. Mech. Eng. Sci. 0, 2015, 1–17.
  • 18. Karličić D., Cajić M., Murmu T., Adhikari S. Nonlocal longitudinal vibration of viscoelastic coupled double-nanorod systems. Eur J Mech - A/ Solids 49, 2015, 183–196.
  • 19. Ghorbanpour Arani A., Roudbari M.A. Nonlocal piezoelastic surface effect on the vibration of visco-Pasternak coupled boron nitride nanotube system under a moving nanoparticle. Thin Solid Films 542, 2013, 232–241.
  • 20. Arda M., Aydogdu M. Torsional statics and dynamics of nanotubes embedded in an elastic medium. Compos Struct 114, 2014, 80–91.
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Bibliografia
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