10.24423/engtrans.792.2017
Influence of the Transverse Inhomogeneity on the Nonlinear Post-Buckling Path of Compressed FG Cylindrical Panels
References
Birman V., Byrd L.W., Modeling and analysis of functionally graded materials and structures, Appl. Mech. Rev., 60(5): 195–216, 2007.
Liew K.M., Zhao X., Ferreira A.J.M., A review of meshless methods for laminated and functionally graded plates and shells, Composite Structures, 93(8): 2031–2041, 2011.
Jha D.K., Kant T., Singh R.K., A critical review of recent research on functionally graded plates, Composite Structures, 96: 833–849, 2013.
Swaminathan K., Naveenkumar D.T., Zenkour A.M., Carrera E., Stress, vibration and buckling analyses of FGM plates – A state-of-the-art review, Composite Structures, 120: 10-31, 2015.
Birman V., Stability of functionally graded hybrid composite plates, Compos. Eng., 7(195): 913–921, 1997.
Ma L.S., Wang T.J., Relationships between axisymmetric bending and buckling solutions of FGM circular plates based on third-order plate theory and classical plate theory, Int. J. Solids Struct, 41(1): 85–101, 2004.
Mohammadi M., Saidi A., Jomehzadeh E., Levy solution for buckling analysis of functionally graded rectangular plates, Appl. Composite Materials, 17(2): 81–93, 2010.
Naderi A., Saidi A.R., On pre-buckling configuration of functionally graded Mindlin rectangular plates, Mech. Res. Commun., 37(6): 535–538, 2010.
Bateni M., Kiani Y., Eslami M.R., A comprehensive study on stability of FGM plates, Int. J. Mech. Sci., 75: 134–144, 2013.
Naei M.H., Masoumi A., Shamekhi A., Buckling analysis of circular functionally graded material plate having variable thickness under uniform compression by finite-element method, J. Mech. Eng. Sci., 221(11): 1241–1247, 2017.
Lee C.Y., Kim J.H., Hygrothermal postbuckling behavior of functionally graded plates, Composite Structures, 95: 278-282, 2013.
Yang J., Shen H., Non-linear analysis of functionally graded plates under transverse and in-plane loads, Int. J. Non. Linear Mech., 38(4): 467–482, 2003.
Yang J., Liew K.M., Kitipornchai S., Imperfection sensitivity of the post-buckling behavior of higher-order shear deformable functionally graded plates, Int. J. Solids Struct., 43(17): 5247–5266, 2006.
Lee C.Y., Kim J.H., Hygrothermal postbuckling behavior of functionally graded plates, Composite Structures, 95: 278–282, 2013.
Hui-Shen S., Functionally graded materials – Nonlinear analysis of plates and shells, CRC Press, Taylor & Francis, London, 2009.
Kolakowski Z., Mania R.J., Grudziecki J., Local unsymmetric postbuckling equilibrium path in thin FGM plate, Eksploatacja i Niezawodność – Maintenance and Reliability, 17(1): 135–142, 2015.
Jones R.M., Mechanics of composite materials, 2nd ed., Taylor & Francis, London, 1999.
Krolak M., Mania R.J. (Eds.), Stability of Thin-Walled Plate Structures, Monographs of TUL, pp. 131–153, 2011.
Lykhachova O., Kołakowski Z., Influence of the coupling submatrix B on the nonlinear stability of FG cylindrical panels subjected to compression, TKI-2016, Warsaw, 2016.
Liew K.M., Lei Z.X., Yu J.L., Zhang L.W., Postbuckling of carbon nanotube-reinforced functionally graded cylindrical panels under axial compression using a meshless approach, Comput. Methods Appl. Mech. Engrg., 268: 1–17, 2014.
Kolakowski Z., Kowal-Michalska K. (eds.), Selected problems of instabilities in composite structures, A Series of Monographs, TUL, Lodz 1995.
Reddy J.N., Analysis of functionally graded plates, Int. J. Numer. Meth. Eng., 47: 663–684, 2000.
Thornburgh R.P., Hilburger M.W., Identifying and characterizing discrepancies between test and analysis results of compression-loaded panels, NASA/TM-2005-213932, 2005.
Lykhachova O.V., Numerical simulation of axially compressed cylindrical shells with circular cutouts, Journal of Mechanics and Mechanical Engineering, 20(3): 311–320, 2016.
DOI: 10.24423/engtrans.792.2017