참고문헌
- Al-Basyouni, K.S., Tounsi, A. and Mahmoud, S.R. (2015), "Size dependent bending and vibration analysis of functionally graded micro beams based on modified couple stress theory and neutral surface position", Compos. Struct., 125 621-630. https://doi.org/10.1016/j.compstruct.2014.12.070
- Ansari, R. and Gholami, R. (2016), "Size-dependent buckling and postbuckling analyses of first-order shear deformable magnetoelectro-thermo elastic nanoplates based on the nonlocal elasticity theory", Int. J. Struct. Stab. Dyn., 17(1), 1750014. https://doi.org/10.1142/S0219455417500146
- Attia, A., Anis Bousahla, A., Tounsi, A., Hassan, S. and Alwabli, A.S. (2018), "A refined four variable plate theory for thermoelastic analysis of FGM plates resting on variable elastic foundations", Struct. Eng. Mech., Int. J., 65(4), 453-464. https://doi.org/10.12989/sem.2018.65.4.453
- Baseri, V., Soleimani Jafari, G. and Kolahchi, R. (2016), "Analytical solution for buckling of embedded laminated plates based on higher order shear deformation plate theory", Steel Compos. Struct., Int. J., 21(4), 883-919. https://doi.org/10.12989/scs.2016.21.4.883
- Chemi, A., Heireche, H., Zidour, M., Kaddour, R. and Bousahla, A.A. (2015), "Critical buckling load of chiral double-walled carbon nanotube using non-local theory elasticity", Adv. Nano Res., Int. J., 3(4), 193-206. https://doi.org/10.12989/anr.2015.3.4.193
- Ebrahimi, F. and Barati, M.R. (2016a), "Analytical solution for nonlocal buckling characteristics of higher-order inhomogeneous nanosize beams embedded in elastic medium", Adv. Nano Res., Int. J., 4(3), 229-249. https://doi.org/10.12989/anr.2016.4.3.229
- brahimi, F. and Barati, M.R. (2016b), "An exact solution for buckling analysis of embedded piezo- electro-magnetically actuated nanoscale beams", Adv. Nano Res., Int. J., 4(2), 65-84. https://doi.org/10.12989/anr.2016.4.2.065
- Elmerabet, A.H., Heireche, H., Tounsi, A. and Semmah, A. (2017a), "Buckling temperature of a single-walled boron nitride nanotubes using a novel nonlocal beam model", Adv. Nano Res., Int. J., 5(1), 1-12. https://doi.org/10.12989/anr.2017.5.1.001
- Elmerabet, A.H., Heireche, H., Tounsi, A. and Semmah, A. (2017b), "Buckling temperature of a single-walled carbon nanotube using nonlocal Timoshenko beam model", J. Computat. Theor. Nanosci., 7(11), 2367-2371. https://doi.org/10.1166/jctn.2010.1621
- Eringen, A.C. (2002), Nonlocal Continuum Field Theories, Springer Science and Business Media.
- Ghorbanpour Arani, A., Jamali, M., Mosayyebi, M. and Kolahchi, R. (2015), "Analytical modeling of wave propagation in viscoelastic functionally graded carbon nanotubes reinforced piezoelectric microplate under electro-magnetic field", Proceedings of the Institution of Mechanical Engineers, Part N: Journal of Nanoengineering and Nanosystems, 231(1), 17-33. https://doi.org/10.1177/0954406215627830
- Ghorbanpour Arani, A., Jamali, M., Ghorbanpour-Arani, A.H., Kolahchi, R. and Mosayyebi, M. (2016a), "Electro-magneto wave propagation analysis of viscoelastic sandwich nanoplates considering surface effects", Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science, 231(2), 387-403. https://doi.org/10.1177/0954406215627830
- Ghorbanpour Arani, A., Jamali, M., Mosayyebi, M. and Kolahchi, R. (2016b), "Wave propagation in FG-CNT-reinforced piezoelectric composite micro plates using viscoelastic quasi-3D sinusoidal shear deformation theory", Compos. Part B, 95, 209-224. https://doi.org/10.1016/j.compositesb.2016.03.077
- Ghugal, Y.M. and Sayyad, A.S. (2010), "A static flexure of thick isotropic plates using trigonometric shear deformation theory", J. Solid Mech., 2(1), 79-90.
- Golmakani, M.E. and Vahabi, H. (2017), "Nonlocal buckling analysis of functionally graded annular nanoplates in an elastic medium with various boundary conditions", Microsyst. Technol. 23(8), 3613-3628. https://doi.org/10.1007/s00542-016-3210-y
- Jafari Mehrabadi, S., Sobhani Aragh, B., Khoshkhahesh, V. and Taherpour, A. (2012), "Mechanical buckling of nanocomposite rectangular plate reinforced by aligned and straight single-walled carbon nanotubes", Compos. Part B, 43, 2031-2040. https://doi.org/10.1016/j.compositesb.2012.01.067
- Jamali, M., Shojaee, T., Kolahchi, R. and Mohammadi, B. (2016), "Buckling analysis of nanocomposite cut out plate using domain decomposition method and orthogonal polynomials", Steel Compos. Struct., Int. J., 22(3), 691-712. https://doi.org/10.12989/scs.2016.22.3.691
- Jamali, M., Arani, A.G., Mosayyebi, M., Kolahchi, R. and Esfahani, R.T. (2017), "Wave propagation behavior of coupled viscoelastic FG-CNTRPC micro plates subjected to electromagnetic fields surrounded by orthotropic visco-Pasternak foundation", Microsyst. Technol., 23(8), 3791-3816. https://doi.org/10.1007/s00542-016-3232-5
- Karami, B., Janghorban, M. and Tounsi, A. (2017), "Effects of triaxial magnetic field on the anisotropic nanoplates", Steel Compos. Struct., Int. J., 25(3), 361-374. https://doi.org/10.12989/scs.2017.25.3.361
- Kolahchi, R. and Cheraghbak, A. (2017), "Agglomeration effects on the dynamic buckling of viscoelastic microplates reinforced with SWCNTs using Bolotin method", Nonlinear Dyn., 90(1), 479-492. https://doi.org/10.1007/s11071-017-3676-x
- Lam, K.Y., Hung, K.C. and Chow, S.T. (1989), "Vibration analysis of plates with cutouts by the modified Rayleigh-Ritz method", Appl. Acoust., 28(1), 49-60. https://doi.org/10.1016/0003-682X(89)90030-3
- Liew, K.M., Hung, K.C. and Lim, M.K. (1993), "Method of domain decomposition in vibrations of mixed edge anisotropic plates", Int. J. Solids Struct., 30(23), 3281-3301. https://doi.org/10.1016/0020-7683(93)90114-M
- Liew, K.M., Ng, T.Y. and Kitipornchai, S. (2001), "A semianalytical solution for vibration of rectangular plates with abrupt thickness variation", Int. J. Solids Struct., 38(28), 4937-4954. https://doi.org/10.1016/S0020-7683(00)00329-2
- Liew, K.M., Kitipornchai, S., Leung, A.Y.T. and Lim, C.W. (2003), "Analysis of the free vibration of rectangular plates with central cut-outs using the discrete Ritz method", Int. J. Mech. Sci., 45(5), 941-959. https://doi.org/10.1016/S0020-7403(03)00109-7
- Liew, K.M., Lei, Z.X., Yu, J.L. and Zhang, L.W. (2014), "Postbuckling of carbon nanotube-reinforced functionally graded cylindrical panels under axial compression using a meshless approach", Comput. Methods Appl. Mech. Eng., 268, 1-17. https://doi.org/10.1016/j.cma.2013.09.001
- Liu, C., Ke, L.-L., Yang, J., Kitipornchai, S. and Wang, Y.-S. (2016), "Buckling and post-buckling analyses of size-dependent piezoelectric nanoplates", Theor. Appl. Mech. Lett., 6(6), 253-267. https://doi.org/10.1142/S0219455413500673
- Mohammadi, H., Mahzoon, M., Mohammadi, M. and Mohammadi, M. (2014), "Postbuckling instability of nonlinear nanobeam with geometric imperfection embedded in elastic foundation", Nonlinear Dyn., 76(4), 2005-2016. https://doi.org/10.1007/s11071-014-1264-x
- Naderi, A. and Saidi, A.R. (2014), "Nonlocal postbuckling analysis of graphene sheets in a nonlinear polymer medium", Int. J. Eng. Sci., 81, 49-65. https://doi.org/10.1016/j.ijengsci.2014.04.004
- Pan, Z., Cheng, Y. and Liu, J. (2013), "A semi-analytical analysis of the elastic buckling of cracked thin plates under axial compression using actual non-uniform stress distribution", Thin-Wall. Struct., 73, 229-241. https://doi.org/10.1016/j.tws.2013.08.007
- Rafiee, M., He, X.Q., Mareishi, S. and Liew, K.M. (2015), "Nonlinear response of piezoelectric nanocomposite plates: Large deflection, post-buckling and large amplitude vibration", Int. J. Appl. Mech., 7(5), 1550074. https://doi.org/10.1142/S175882511550074X
- Sahmani, S., Aghdam, M.M. and Bahrami, M. (2016), "Sizedependent axial buckling and postbuckling characteristics of cylindrical nanoshells in different temperatures", Int. J. Mech. Sci., 107, 170-179. https://doi.org/10.1016/j.ijmecsci.2016.01.014
- Sekkal, M., Fahsi, B., Tounsi, A. and Hassan, S. (2017), "A novel and simple higher order shear deformation theory for stability and vibration of functionally graded sandwich plate", Steel Compos. Struct., Int. J., 25(4), 389-401. https://doi.org/10.12989/scs.2017.25.4.389
- Shen, H.-S. and Zhang, C.-L. (2010), "Thermal buckling and postbuckling behavior of functionally graded carbon nanotubereinforced composite plates", Mater. Des., 31(7), 3403-3411. https://doi.org/10.1016/j.matdes.2010.01.048
- Soleimani, A., Naei, M.H. and Mashhadi, M.M. (2017), "Nonlocal postbuckling analysis of graphene sheets with initial imperfection based on first order shear deformation theory", Results Phys., 7, 1299-1307. https://doi.org/10.1016/j.rinp.2017.03.003
- Tagrara, S.H., Benachour, A., Bachir Bouiadjra, M. and Tounsi, A. (2015), "On bending, buckling and vibration responses of functionally graded carb on nanotube-reinforced composite beams", Steel Compos. Struct., Int. J., 19(5), 1259-1277. https://doi.org/10.12989/scs.2015.19.5.1259
- Thai, S., Thai, H.-T., Vo, T.P. and Lee, S. (2018), "Postbuckling analysis of functionally graded nanoplates based on nonlocal theory and isogeometric analysis", Compos. Struct., 201, 13-20. https://doi.org/10.1016/j.compstruct.2018.05.116
- Tounsi, A., Benguediab, S., Bedia, E.A.A., Semmah, A. and Zidour, M. (2013), "Nonlocal effects on thermal buckling properties of double-walled carbon nanotubes", Adv. Nano Res., Int. J., 1(1), 1-11. https://doi.org/10.12989/anr.2013.1.1.001
- Tung, H.V. (2017), "Thermal buckling and postbuckling behavior of functionally graded carbon-nanotube-reinforced composite plates resting on elastic foundations with tangential-edge restraints", J. Therm. Stresses, 40(5), 641-663. https://doi.org/10.1080/01495739.2016.1254577
- Wang, K.F. and Wang, B.L. (2013), "Effect of surface energy on the non-linear postbuckling behavior of nanoplates", Int. J. Non-Linear Mech., 55, 19-24. https://doi.org/10.1016/j.ijnonlinmec.2013.04.004
- Wu, H., Kitipornchai, S. and Yang, J. (2017), "Thermal buckling and postbuckling of functionally graded graphene nanocomposite plates", Mater. Des., 132, 430-441. https://doi.org/10.1016/j.matdes.2017.07.025
- Youcef, D.O., Abdelhakim, K., Benzair, A., Anis Bousahla, A. and Tounsi, A. (2018), "Dynamic analysis of nanoscale beams including surface stress effects", Smart Struct. Syst., Int. J., 21(1), 65-74. https://doi.org/10.12989/sss.2018.21.1.065
- Zenkour, A.M. (2016), "Buckling of a single-layered graphene sheet embedded in visco-Pasternak's medium via nonlocal firstorder theory", Adv. Nano Res., Int. J., 4(4), 309-326. https://doi.org/10.12989/anr.2016.4.4.309
피인용 문헌
- Free vibration analysis of carbon nanotube RC nanobeams with variational approaches vol.11, pp.2, 2021, https://doi.org/10.12989/anr.2021.11.2.157