Static analysis of functionally graded composite shells on elastic foundations with nonlocal elasticity theory
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[1] H. Safarpour,et al. Stability analysis of an electrically cylindrical nanoshell reinforced with graphene nanoplatelets , 2019, Composites Part B: Engineering.
[2] R. Kumar,et al. Stability and vibration analysis of CNT-Reinforced functionally graded laminated composite cylindrical shell panels using semi-analytical approach , 2019, Composites Part B: Engineering.
[3] Mostafa Habibi,et al. Multilayer GPLRC composite cylindrical nanoshell using modified strain gradient theory , 2019, Mechanics Based Design of Structures and Machines.
[4] Yufei Zhang,et al. Vibration and Buckling of Shear Deformable Functionally Graded Nanoporous Metal Foam Nanoshells , 2019, Nanomaterials.
[5] R. Ansari,et al. Vibration analysis of pressurized sandwich FG-CNTRC cylindrical shells based on the higher-order shear deformation theory , 2019, Materials Research Express.
[6] S. Razavi. Magneto-Electro-Thermo-Mechanical Response of a Multiferroic Doubly-Curved Nano-Shell , 2018 .
[7] M. Ghadiri,et al. Cylindrical functionally graded shell model based on the first order shear deformation nonlocal strain gradient elasticity theory , 2018 .
[8] A. Zenkour,et al. Size-dependent thermoelastic analysis of a functionally graded nanoshell , 2018 .
[9] M. Ghadiri,et al. Free Vibration Analysis of a Functionally Graded Cylindrical Nanoshell Surrounded by Elastic Foundation Based on the Modified Couple Stress Theory , 2018 .
[10] Y. Beni,et al. Finite element vibration analysis of nanoshell based on new cylindrical shell element , 2018 .
[11] M. Shishesaz,et al. Applications of higher order shear deformation theories on stress distribution in a five layer sandwich plate , 2017 .
[12] M. Abbasi,et al. A new modified higher-order shear deformation theory for nonlinear analysis of macro- and nano-annular sector plates using the extended Kantorovich method in conjunction with SAPM , 2017 .
[13] Y. Beni,et al. A Nonlocal Strain Gradient Shell Model for Free Vibration Analysis of Functionally Graded Shear Deformable Nanotubes , 2017 .
[14] Yaghoub Tadi Beni,et al. Free vibration of anisotropic single-walled carbon nanotube based on couple stress theory for different chirality , 2017 .
[15] Y. Beni,et al. Free vibration analysis of functionally graded piezoelectric cylindrical nanoshell based on consistent couple stress theory , 2017 .
[16] Y. Beni,et al. Size-dependent torsional buckling analysis of functionally graded cylindrical shell , 2016 .
[17] A. Shooshtari,et al. Vibration Analysis of a Magnetoelectroelastic Rectangular Plate Based on a Higher-Order Shear Deformation Theory , 2016 .
[18] R. Ansari,et al. Exact solution for the vibrations of cylindrical nanoshells considering surface energy effect , 2015 .
[19] M. Asgari,et al. Natural frequency analysis of 2D-FGM thick hollow cylinder based on three-dimensional elasticity equations , 2011 .
[20] M. Eslami,et al. AXISYMMETRIC MECHANICAL AND THERMAL STRESSES IN THICK SHORT LENGTH FGM CYLINDERS , 2009 .
[21] Mahmoud Shakeri,et al. Vibration and radial wave propagation velocity in functionally graded thick hollow cylinder , 2006 .
[22] Weiqiu Chen,et al. 3D free vibration analysis of a functionally graded piezoelectric hollow cylinder filled with compressible fluid , 2004 .
[23] Hui-Shen Shen,et al. Free vibration and parametric resonance of shear deformable functionally graded cylindrical panels , 2003 .
[24] M. Eslami,et al. General Solution for Mechanical and Thermal Stresses in a Functionally Graded Hollow Cylinder due to Nonaxisymmetric Steady-State Loads , 2003 .
[25] M. R. Eslami,et al. Mechanical and thermal stresses in a functionally graded hollow cylinder due to radially symmetric loads , 2002 .
[26] K. Y. Lam,et al. Vibrations of Thick Rotating Laminated Composite Cylindrical Shells , 1999 .