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Cites:

1

Information Journal Paper

Title

ELECTRO-THERMO-DYNAMIC BUCKLING OF EMBEDDED DWBNNT CONVEYING VISCOUS FLUID

Pages

  15-32

Abstract

 In this paper, the nonlinear DYNAMIC BUCKLING of double-walled boron-nitride nanotube (DWBNNT) conveying viscous fluid is investigated based on Eringen's theory. BNNT is modeled as an Euler-Bernoulli beam and is subjected to combine mechanical, electrical and thermal loading. The effect of viscosity on fluid-BNNT interaction is considered based on Navier-Stokes relation. The van der Waals (vdW) interaction between the inner and outer nanotubes is taken into account and the surrounding elastic medium is simulated as Winkler and Pasternak foundation. Considering the charge equation for coupling of mechanical and electrical fields, Hamilton's principle is utilized to derive the motion equations based on the von Karman theory. DYNAMIC BUCKLING load is evaluated using differential quadrature method (DQM). Results show that DYNAMIC BUCKLING load depends on small scale factor, viscosity, elastic medium parameters and temperature changes. Also, dynamic instability region is discussed for various conditions.

Cites

References

Cite

APA: Copy

GHORBANPOUR ARANI, A., & HASHEMIAN, M.. (2012). ELECTRO-THERMO-DYNAMIC BUCKLING OF EMBEDDED DWBNNT CONVEYING VISCOUS FLUID. JOURNAL OF SOLID MECHANICS, 4(1), 15-32. SID. https://sid.ir/paper/319268/en

Vancouver: Copy

GHORBANPOUR ARANI A., HASHEMIAN M.. ELECTRO-THERMO-DYNAMIC BUCKLING OF EMBEDDED DWBNNT CONVEYING VISCOUS FLUID. JOURNAL OF SOLID MECHANICS[Internet]. 2012;4(1):15-32. Available from: https://sid.ir/paper/319268/en

IEEE: Copy

A. GHORBANPOUR ARANI, and M. HASHEMIAN, “ELECTRO-THERMO-DYNAMIC BUCKLING OF EMBEDDED DWBNNT CONVEYING VISCOUS FLUID,” JOURNAL OF SOLID MECHANICS, vol. 4, no. 1, pp. 15–32, 2012, [Online]. Available: https://sid.ir/paper/319268/en

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