Flow-Induced Instability Smart Control of Elastically Coupled Double-Nanotube-Systems
Subject Areas : EngineeringV Atabakhshian 1 , A Ghorbanpour Arani 2 , A.R Shajari 3 , S Amir 4
1 - Department of Mechanical Engineering, Faculty of Engineering, Bu-Ali Sina University
2 - Faculty of Mechanical Engineering, University of Kashan---
Institute of Nanoscience & Nanotechnology, University of Kashan
3 - Faculty of Mechanical Engineering, University of Kashan
4 - Faculty of Mechanical Engineering, University of Kashan
Keywords:
Abstract :
[1] Vaccarini L., Goze C., Henrard L., Herna´ndez E., Bernier P., Rubio A., 2000, Mechanical and electronic properties of carbon and boron–nitride nanotubes, Carbon 38: 1681–1690.
[2] Lahiri D., Rouzaud F., Richard T., Keshri A.K., Bakshi S.R., Kos L., Agarwal A., 2010, Boron nitride nanotube reinforced polylactide–polycaprolactone copolymer composite: Mechanical properties and cytocompatibility with osteoblasts and macrophages in vitro, Acta Biomaterialia 6: 3524-3533.
[3] Ghorbanpour Arani A., Shajari A.R., Atabakhshian V., Amir S., Loghman A., 2013, Nonlinear dynamical response of embedded fluid-conveyed micro-tube reinforced by BNNTs, Composites Part B 44: 424–432.
[4] Ghorbanpour Arani A., Shajari A.R., Amir S., Loghman A., 2012, Electro-thermo-mechanical nonlinear nonlocal vibration and instability of embedded micro-tube reinforced by BNNT, conveying fluid, Physica E 45: 109-121.
[5] Salehi-Khojin A., Jalili N., 2008, Buckling of boron nitride nanotube reinforced piezoelectric polymeric composites subject to combined electro-thermo-mechanical, Loadings Composites Science and Technology 68: 1489-1501.
[6] Ghorbanpour Arani A., Atabakhshian V., Loghman A., Shajari A.R., Amir S., 2012, Nonlinear vibration of embedded SWBNNTs based on nonlocal Timoshenko beam theory using DQ method, Physica B 407: 2549-2555.
[7] Kuang Y.D., He X.Q., Chen C.Y., Li G.Q., 2009, Analysis of nonlinear vibrations of double-walled carbon nanotubes conveying fluid, Computation Materials Science 45: 875-880.
[8] Fu Y.M., Hong J.W., Wang X.Q., 2006, Analysis of nonlinear vibration for embedded carbon nanotubes, Journal of Sound and Vibration 296: 746-756.
[9] Narasimhan M.N.L., 2010, On the flow of an electrically conducting nonlocal viscous fluid in a circular pipe in the presence of a transverse magnetic field in magneto hydro dynamics, International Journal of Fluid Mechanics Research 37 (2): 190-199.
[10] Vu H.V., Ordonez A.M., Karnopp B.H., 2000, Vibration of a double-beam system, Journal of Sound and Vibration 229 (4): 807-822.
[11] Lin Q., Rosenberg J., Chang D., Camacho R., Eichenfield M., Vahala K.J., Painter O., 2010, Coherent mixing of mechanical excitations in nano-opto-mechanicalstructures, Nature Photonics 4: 236-242.
[12] Murmu T., Adhikari S., 2010, Nonlocal effects in the longitudinal vibration of double-nanorod systems, Physica E 43: 415-422.
[13] Ke L.L., Wang Y.Sh., Wang Zh.D., 2012, Nonlinear vibration of the piezoelectric nanobeams based on the nonlocal theory, Composite Structures 94: 2038-2047.
[14] Han J.H., Lee I., 1998, Analysis of composite plates with piezoelectric actuators for vibration control using layerwise displacement theory, Composites Part B 29: 621-632.
[15] Reddy J.N., 2004, Wang C.M., Dynamics of Fluid Conveying Beams: Governing Equations and Finite Element Models, Centre for offshore research and engineering national university of singapore.
[16] Rashidi V., Mirdamadi H.R., Shirani E., 2012, A novel model for vibrations of nanotubes conveying nanoflow, Computation Materials Science 51: 347-352.
[17] Shokouhmand H., Isfahani A.H.M., Shirani E., 2010, Friction and heat transfer coefficient in micro and nano channels filled with porous media for wide range of Knudsen number, International Communications in Heat and Mass Transfer 37: 890-894.
[18] Ke L.L., Yang J., Kitipornchai S., 2010, Nonlinear free vibration of functionally gradedcarbon nanotube-reinforced composite beams, Composite Structures 92: 676-683.
[19] Nirmala V., Kolandaivel P., 2007, Structure and electronic properties of armchair boron nitride nanotubes, Journal of Molecular Structure: Theochem 817: 137-145.
[20] Yang, J. Ke L.L., Kitipornchai S., 2010, Nonlinear free vibration of single-walled carbonnanotubes using nonlocal Timoshenko beam theory, Physica E 42: 1727-1735.
[21] Kaviani F., Mirdamadi H.R., 2012, Influence of Knudsen number on fluid viscosity for analysis of divergencein fluid conveying nano-tubes, Computation Materials Science 61: 270-277.