Exact static axisymmetric solutions of thick functionally graded cylindrical shells with general boundary conditions
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Jinsheng Feng | Jianyou Feng | Lei Shi | Jun Zhu | Wenfeng Hu | Tao Xu
[1] A. S. Sayyad,et al. A new higher order shear and normal deformation theory for FGM sandwich shells , 2021, Composite Structures.
[2] A. S. Sayyad,et al. Static and free vibration analysis of doubly-curved functionally graded material shells , 2021 .
[3] M. G. Kulikov,et al. High-precision computation in mechanics of composite structures by a strong sampling surfaces formulation: Application to angle-ply laminates with arbitrary boundary conditions , 2021, Composite Structures.
[4] G. Lin,et al. Magneto-electro-elastic semi-analytical models for free vibration and transient dynamic responses of composite cylindrical shell structures , 2020 .
[5] J. Mantari,et al. 3D elasticity numerical solution for the static behavior of FGM shells , 2020 .
[6] I. Ahmadi. A three-dimensional formulation for levy-type transversely loaded cross-ply shell panels , 2020 .
[7] Haichao Li,et al. Vibration analysis of functionally graded porous cylindrical shell with arbitrary boundary restraints by using a semi analytical method , 2019, Composites Part B: Engineering.
[8] Xi Zhu,et al. Three-dimensional vibration analysis of arbitrary angle-ply laminated cylindrical shells using differential quadrature method , 2019, Applied Acoustics.
[9] T. Kant,et al. A critical review of stress and vibration analyses of functionally graded shell structures , 2019, Composite Structures.
[10] Haichao Li,et al. Free vibration analysis of combined composite laminated cylindrical and spherical shells with arbitrary boundary conditions , 2019, Mechanics of Advanced Materials and Structures.
[11] Shranish Kar,et al. Static behavior of arbitrarily supported composite laminated cylindrical shell panels: An analytical 3D elasticity approach , 2019, Composite Structures.
[12] Xuhong Miao,et al. Jacobi-Ritz method for free vibration analysis of uniform and stepped circular cylindrical shells with arbitrary boundary conditions: A unified formulation , 2019, Comput. Math. Appl..
[13] S. Brischetto. A 3D layer-wise model for the correct imposition of transverse shear/normal load conditions in FGM shells , 2018 .
[14] A. Alibeigloo,et al. Static and vibration analysis of sandwich cylindrical shell with functionally graded core and viscoelastic interface using DQM , 2017 .
[15] Salvatore Brischetto,et al. A general exact elastic shell solution for bending analysis of functionally graded structures , 2017 .
[16] A. Alibeigloo,et al. Static and free vibration analysis of sandwich cylindrical shell based on theory of elasticity and using DQM , 2017 .
[17] Salvatore Brischetto,et al. Exact three-dimensional static analysis of single- and multi-layered plates and shells , 2017 .
[18] Gennady M. Kulikov,et al. Assessment of the sampling surfaces formulation for thermoelectroelastic analysis of layered and functionally graded piezoelectric shells , 2017 .
[19] M. Tahani,et al. Interlaminar stresses in thick cylindrical shell with arbitrary laminations and boundary conditions under transverse loads , 2016 .
[20] Chih‐Ping Wu,et al. A review of semi-analytical numerical methods for laminated composite and multilayered functionally graded elastic/piezoelectric plates and shells , 2016 .
[21] Mohammad Talha,et al. Recent development in modeling and analysis of functionally graded materials and structures , 2015 .
[22] Erasmo Carrera,et al. Finite Element Analysis of Structures Through Unified Formulation: Carrera/Finite , 2014 .
[23] Guoyong Jin,et al. Three-dimensional free vibration analysis of thick cylindrical shells with general end conditions and resting on elastic foundations , 2014 .
[24] Zhu Su,et al. Three-dimensional exact solution for the free vibration of arbitrarily thick functionally graded rectangular plates with general boundary conditions , 2014 .
[25] Chih‐Ping Wu,et al. RMVT-based finite cylindrical prism methods for multilayered functionally graded circular hollow cylinders with various boundary conditions , 2013 .
[26] Hsuan-Hsu Chen,et al. Exact solutions of free vibration of simply supported functionally graded piezoelectric sandwich cylinders using a modified Pagano method , 2013 .
[27] C. Soares,et al. Bending and free vibration analysis of isotropic and multilayered plates and shells by using a new accurate higher-order shear deformation theory , 2012 .
[28] Chih‐Ping Wu,et al. A state space differential reproducing kernel method for the 3D analysis of FGM sandwich circular hollow cylinders with combinations of simply-supported and clamped edges , 2012 .
[29] Ebrahim Asadi,et al. Review of Recent Literature on Static Analyses of Composite Shells: 2000-2010 , 2012 .
[30] Ch. Zhang,et al. A high order theory for functionally graded axisymmetric cylindrical shells , 2012 .
[31] Mohamad S. Qatu,et al. Static and vibration analyses of thick deep laminated cylindrical shells using 3D and various shear deformation theories , 2012 .
[32] C. Soares,et al. Static and dynamic analysis of laminated composite and sandwich plates and shells by using a new higher-order shear deformation theory , 2011 .
[33] K. Liew,et al. A review of meshless methods for laminated and functionally graded plates and shells , 2011 .
[34] M. Cinefra,et al. Refined and Advanced Models for Multilayered Plates and Shells Embedding Functionally Graded Material Layers , 2010 .
[35] Akbar Alibeigloo,et al. Static analysis of functionally graded cylindrical shell with piezoelectric layers using differential quadrature method , 2010 .
[36] J. N. Reddy,et al. A semi-analytical finite element model for the analysis of cylindrical shells made of functionally graded materials , 2009 .
[37] Akbar Alibeigloo,et al. Static and vibration analysis of axi-symmetric angle-ply laminated cylindrical shell using state space differential quadrature method , 2009 .
[38] Zhi-yi Huang,et al. Semi-analytical solutions for free vibration of anisotropic laminated plates in cylindrical bending , 2007 .
[39] Chih‐Ping Wu,et al. Three-dimensional solutions of multilayered piezoelectric hollow cylinders by an asymptotic approach , 2007 .
[40] J. N. Reddy,et al. A semi-analytical finite element model for the analysis of laminated 3D axisymmetric shells: Bending, free vibration and buckling , 2005 .
[41] Wei Chen,et al. 3D free vibration analysis of cross-ply laminated plates with one pair of opposite edges simply supported , 2005 .
[42] Weiqiu Chen,et al. State-space approach for statics and dynamics of angle-ply laminated cylindrical panels in cylindrical bending , 2005 .
[43] J. N. Reddy,et al. Shear Deformation Plate and Shell Theories: From Stavsky to Present , 2004 .
[44] W. Q. Chen,et al. Three-dimensional analysis of cross-ply laminated cylindrical panels with weak interfaces , 2004 .
[45] Weiqiu Chen,et al. Three-dimensional vibration analysis of fluid-filled orthotropic FGM cylindrical shells , 2004 .
[46] J. Reddy. Mechanics of laminated composite plates and shells : theory and analysis , 1996 .
[47] J. N. Reddy,et al. A higher-order shear deformation theory of laminated elastic shells , 1985 .
[48] Stanley B. Dong,et al. On a Laminated Orthotropic Shell Theory Including Transverse Shear Deformation , 1972 .
[49] R. D. Mindlin,et al. Influence of rotary inertia and shear on flexural motions of isotropic, elastic plates , 1951 .