Magneto-Thermo-Elastic Behavior of Cylinder Reinforced with FG SWCNTs Under Transient Thermal Field
Subject Areas : EngineeringA Ghorbanpour Arani 1 , M.R Mozdianfard 2 , V Sadooghi 3 , M Mohammadimehr 4 , R Kolahchi 5
1 - Department of Mechanical Engineering, Faculty of Engineering, University of Kashan----
Institute of Nano science & Nanotechnology, University of Kashan
2 - Department of Chemical Engineering, Faculty of Engineering, University of Kashan
3 - Department of Mechanical Engineering, Faculty of Engineering, University of Kashan
4 - Department of Mechanical Engineering, Faculty of Engineering, University of Kashan
5 - Department of Mechanical Engineering, Faculty of Engineering, University of Kashan
Keywords:
Abstract :
[1] Lau K.T., Hui D., 2002, The revolutionary creation of new advanced materials–carbon nanotube composites, Composite Part B: Engineering 33: 263-277.
[2] Lau K.T., Gu C., Gao G.H., Ling H.Y., Reid S.R., 2004, Stretching process of single-and multi walled carbon nanotubes for nano composite applications, Carbon 42:426-428.
[3] Esawi A.M.K., Farag M.M., 2007, Carbon nanotube reinforced composites: potential and current challenges, Materials and Design 28:2394-2401.
[4] Qian D., Dickey E.C., Andrews R.., Rantell T., 2000, Load transfer and deformation mechanisms in carbon nanotube-polystyrene composites, Applied Physics Letters 76: 2868-2870 .
[5] Fidelus J.D., Wiesel E., Gojny F.H., Schulte K., Wagner H.D., 2005,Thermo-mechanical properties of randomly oriented Carbon/epoxy nano composites, Composite Part A: Applied Science and Manufacturing 36:1555-1561 .
[6] Ghorbanpour Arani A., Maghamikia S.H., Mohammadimehr M., Arefmanesh A., 2011, Buckling analysis of laminated composite rectangular plates reinforced by SWCNTs using analytical and finite element methods, Journal of Mechanical Science and Technology 25: 809-820.
[7] Shen H.S., 2009, Nonlinear bending of functionally graded carbon nanotube-reinforced composite plates in thermal environments, Composite Structures 91: 9-19.
[8] Ke L.L., Yang J., Kitipornchai S., 2010, Nonlinear free vibration of functionally graded carbon nanotube-reinforced composite beams, Composite Structures 92:676-683.
[9] Shen H.S., Zhang C.H., 2010, Thermal buckling and postbuckling behavior of functionally graded carbon nanotube-reinforced composite plates, Materials and Design 31: 3403-3411.
[10] Ding H.J., Wang H.M., Chen W.Q., 2001, A theoretical solution of cylindrically isotropic cylindrical tube for axisym metric plane strain dynamic thermoelastic problem, Acta. Mechanica Solida Sinica. 14: 357-363.
[11] Shi D.L., Feng X.Q., Huang Y.Y., Hwang K.C., Gao H., 2004,The effect of nanotube waviness and agglomeration on the elastic property of carbon nanotube-reinforced composites, ASME Journal of Engineering Materials and Technology 126:250-257.
[12] Polymer Data Hand Book, 1999, Oxford University Press, Oxford, 828-837.
[13] Hetnarski R.B., Eslami M.R., 2009, Thermal Stresses-Advanced Theory and Applications, Springer.
[14] Nan C.W., Shi Z., Lin Y., 2003, A simple model for thermal conductivity of carbon nanotube-based composites, Chemical Physics Letters 375:666-669.
[15] Peters J.E., Papavassiliou D.E., Grady B.P., 2008, Unique thermal conductivity behavior of single-walled carbon nanotube-polystyrene composites, Macromolecule 41: 7274-7277.
[16] Bi K., Chen Y., Yang J., Wang Y., Chen M., 2006, Molecular dynamics simulation of thermal conductivity of single-walled carbon nanotubes, Physics Letters A 350: 150-153.
[17] Dai H.L., Wang X., 2006, The dynamic response and perturbation of magnetic field vector of orthotropic cylinders under various shock loads, International Journal of Pressure Vessels and Piping 83: 55-62.
[18] Lehtinen P.O., Foster A.S., Ayuela A., Vehvilainen T.T., Nieminen R.M., 2004, Structure and magnetic properties of adatoms on carbon nanotubes, Physical Review B 69: 155422.
[19] Kordkheili S.A.H., Naghdabadi R., 2007, Thermoelastic analysis of a functionally graded rotating disk, Composite Structures 79: 508-516.