Acknowledgement
This work was supported by National Science Foundation of China (51808208).
References
- Allahkarami, F., Nikkhah-bahrami, M. and Ghassabzadeh Saryazdi, M. (2018) "Nonlinear forced vibration of FG-CNTsreinforced curved microbeam based on strain gradient theory considering out-of-plane motion", Steel Compos. Struct., 26(6), 10.12989/scs.2018.26.6.673.
- Al-Furjan, M.S.H., Farrokhian, A., Keshtegar, B., Kolahchi, R. and Trung, N.T. (2020), "Higher order nonlocal viscoelastic strain gradient theory for dynamic buckling analysis of carbon nanocones", Aerosp. Sci. Technol., 107, 106259, https://doi.org/10.1016/j.ast.2020.106259.
- Al-Furjan, M.S.H., Farrokhian, A., Keshtegar, B., Kolahchi, R. and Trung, N.T. (2021), "Dynamic stability control of viscoelastic nanocomposite piezoelectric sandwich beams resting on Kerr foundation based on exponential piezoelasticity theory", Europ. J. Mech. / A Solids, 86, 104-169. https://doi.org/10.1016/j.euromechsol.2020.104169.
- Abdulrazzaq, M.A., Fenjan, R.M., Ahmed, R.A. and Faleh, N.M. (2020), "Thermal buckling of nonlocal clamped exponentially graded plate according to a secant function based refined theory", Steel Compos. Struct., 35(1), 147-157. https://doi.org/10.12989/scs.2020.35.1.147.
- Bellal, M., Hebali, H., Heireche, H., Bousahla, A.A., Abdeldjebb., Tounsi, ar., Bourada, Mahmoud, F.S.R., Adda Bedia, E.A. and Tounsi, A. (2020), "Buckling behavior of a single-layered graphene sheet resting on viscoelastic medium via nonlocal four-unknown integral model", Steel Compos. Struct, 34(5),643-655. https://doi.org/10.12989/scs.2020.34.5.643.
- Civalek, O., Uzun, B. and M. Yayli O. (2020), "Frequency, bending and buckling loads of nanobeams with different cross sections", Adv. Nano Res., 9(2), 91-104. https://doi.org/10.12989/anr.2020.9.2.091.
- Dai, H. and Safarpour, H. (2021), "Frequency and thermal buckling information of laminated composite doubly curvedopen nanoshell", Adv. Nano Res., 10(1), 1-14, https://doi.org/10.12989/anr.2021.10.1.001.
- Farrokhian, A. (2020), "Buckling response of smart plates reinforced by nanoparticles utilizing analytical method", Steel Compos. Struct., 35(1), 1-12. https://doi.org/10.12989/scs.2020.35.1.001.
- Gao, K., Gao, W., Chen, D. and Yang, J. (2018) "Nonlinear free vibration of functionally graded graphene platelets reinforced porous nano composite plates resting on elastic foundation", Compos. Struct., 204, 831-846., https://doi.org/10.1016/j.compstruct.2018.08.013.
- Halpin Affdl, J.C. and Kardos, J.L. (1976), "The Halpin-Tsai equations: A review", Polym. Eng. Sci., 16, 344-352, https://doi.org/10.1002/pen.760160512.
- Halpin, J. (1969), "Effect of environmental factors on composite materials", US Air Force Mat. Laborat., Technical Report AFML-TR-67-423.
- Hosseini, S.M. and Zhang, C.H. (2018) "Elastodynamic and wave propagation analysis in a FG Graphene platelets-reinforced nanocomposite cylinder using a modified nonlinear micromechanical model", Steel Compos. Struct., 27., https://doi.org/10.12989/scs.2018.27.3.255.
- Jafari, P. and Kiani, Y. (2021), "Free vibration of functionally graded graphene platelet reinforced plates: A quasi 3D shear and normal deformable plate model", Compos. Struct., 275(1), 114409, https://doi.org/10.1016/j.compstruct.2021.114409.
- Al-Furjan, M.S.H., Farrokhian, A., Mahmoud, S.R. and Kolahchi, R. (2021), "Dynamic deflection and contact force histories of graphene platelets reinforced conical shell integrated with magnetostrictive layers subjected to low-velocity impact", Thin-Wall. Struct., 163, 107706. https://doi.org/10.1016/j.tws.2021.107706
- Kolahchi, R. and Cheraghbak, A. (2017), "Agglomeration effects on the dynamic buckling of visco elastic micro plates reinforced with SWCNTs using Bolotin method", Nonlinear Dyn., 90, 479-492. https://doi.org/10.1007/s11071-016-3085-6.
- Kolahchi, R., Keshtegar, B. and Trung, N.T. (2021), "Optimization of dynamic properties for laminated multiphase nanocomposite sandwich conical shell in thermal and magnetic conditions", Int. J. Sandw. Struc., https://doi.org/10.1177/10996362211020388.
- Kolahchi, R., Zarei, M.S.H., Hajmohammad, M.H. and Naddaf Oskouei, A. (2017), "Visco-nonlocal-refined Zigzag theories for dynamic buckling of laminated nanoplates using differential cubature-Bolotin methods", Thin-Wall. Struct., 113, 162-169, https://doi.org/10.1016/j.tws.2017.01.016.
- Kolahdouzan, F., Mosayyebi, M., Ashenai F., Ghasemi,Kolahchi R. and Mousavi Panah S.R. (2020), "Free vibration and buckling analysis of elastically restrained FG-CNTRC sandwich annular nanoplates", Adv. Nano Res., 9(4), 237-250. https://doi.org/10.12989/anr.2020.9.4.237.
- Kumar, A., Chakrabarti, A. and Bhargava, P. (2014), "Accurate dynamic response of laminated composites and sandwich shells using higher order zigzag theory", Thin-Wall. Struct., 77, 174-186. https://doi.org/10.1016/j.tws.2013.09.026
- Li, K., Wu, D., Chen, X., Cheng, J., Liu, Z., Gao, W. and Liu, M. (2018), "Isogeometric analysis of functionally graded porous plates reinforced by graphene platelets", Compos. Struct., 204, 114-130. https://doi.org/10.1016/j.compstruct.2018.07.05977,174186.
- Liu, J., Wu, M., Yang, Y., Yang, G., Yan, H. and Jiang, K. (2018), "Preparation and mechanical performance of graphene platelet reinforced titanium nanocomposites for high temperature applications", J. Alloys Compd., 765, 1111-1118. https://doi.org/10.1016/j.jallcom.2018.06.148.
- Loja, M.A.R. (2017), "Dynamic response of soft core sandwich beams with metal-graphene nanocomposite skins", Shock Vib., 22, 7842413. https://doi.org/10.1155/2017/7842413.
- Matsunaga, H. (2000), "Vibration and stability of cross-ply laminated composite plates according to a global higher-order plate theory", Compos. Struct., 48, 231-244. https://doi.org/10.1016/S0263-8223(99)00110-5
- Moradi-Dastjerdi, R. and Payganeh, G.H. (2018), "Transient heat transfer analysis of functionally graded CNT reinforced cylinders with various boundary conditions", Steel Compos. Struct., 24(3), 359-367. https://doi.org/10.12989/scs.2017.24.3.359.
- Noor, A.K. (1975), "Stability of multilayered composite plates", Fibre. Sci. Tech., 8, 81-89. https://doi.org/10.1016/0015-0568(75)90005-6
- Polit, O., Anant, C., Anirudh, B. and Ganapathi, M. (2019), "Functionally graded graphene reinforced porous nanocomposite curved beams: Bending and elastic stability using a higher-order model with thickness stretch effect", Compos. Struct., 166, 310-327. https://doi.org/10.1016/j.compositesb.2018.11.074.
- Putcha, N.S. and Reddy, J.N. (1986), "Stability and natural vibration analysis of laminated plates by using a mixed element based on a refined plate theory", J. Sound Vib., 104, 285-300. https://doi.org/10.1016/0022-460X(86)90269-5
- Qin, Y., Luo, Ke, R. and Yan, X. (2020), "Buckling analysis of steel plates in composite structures with novel shape function", Steel Compos. Struc.t, 35(3), 405-413. https://doi.org/10.12989/scs.2020.35.3.405.
- Reddy, J.N. (1984), "A simple higher-order theory for laminated composite plates", J. Appl. Mech., 51, 745-752. https://doi.org/10.1115/1.3167719.
- Rout, M., Hot, S.S. and Karmakar, A. (2019), "Thermoelastic free vibration response of graphene reinforced laminated composite shells", Eng. Struct., 178, 179-190. https://doi.org/10.1016/j.engstruct.2018.10.029.
- Simsek, M. and Reddy. J.N. (2013), "Bending and vibration of functionally graded microbeams using a new higher order beam theory and the modified couple stress theory", Int. J. Eng. Sci., 64, 37-53. https://doi.org/10.1016/j.ijengsci.2012.12.002.
- Shokravi, M. (2017), "Buckling of sandwich plates with FG-CNTreinforced layers resting on orthotropic elastic medium using Reddy plate theory", Steel Compos. Struct., 23(6), 623-631. https://doi.org/10.12989/scs.2017.23.6.623.
- Thai, H. and Vo, T. (2013), "A new sinusoidal shear deformation theory for bending, buckling and vibration of functionally graded plates", Appl. Math. Model., 37, 3269-3281. https://doi.org/10.1016/j.apm.2012.08.008.
- Thai, H., Park, M. and Choi, D. (2013), "A simple refined theory for bending, buckling, and vibration of thick plates resting on elastic foundation", Int. J. Mech. Sci., 73, 40-52. https://doi.org/10.1016/j.ijmecsci.2013.03.017.
- Wang, Y., Feng, C., Zhao, Z. and Yang, J. (2018), "Eigenvalue buckling of functionally graded cylindrical shells reinforced with graphene platelets (GPL)", Compos. Struct., 202, 38-46. https://doi.org/10.1016/j.compstruct.2017.10.005.
- Zhang, L.W. and Selim, B.A. (2017), "Vibration analysis of CNTreinforced thick laminated composite plates based on Reddy's higher-order shear deformation theory", Compos. Struct., 160(15), 689-705. https://doi.org/10.1016/j.compstruct.2016.10.102.