Thermoelastic Analysis of Rotating Thick Truncated Conical Shells Subjected to Non-Uniform Pressure
Subject Areas : EngineeringM Jabbari 1 , M Zamani Nejad 2 , M Ghannad 3
1 - Mechanical Engineering Department, Yasouj University
2 - Mechanical Engineering Department, Yasouj University
3 - Mechanical Engineering Faculty, Shahrood University
Keywords:
Abstract :
[1] Eipakchi H. R., Khadem S. E., Rahimi, G. H., 2008, Axisymmetric stress analysis of a thick conical shell with varying thickness under nonuniform internal pressure, Journal of Engineering Mechanics 134(8): 601-610.
[2] Ghasemi A. R., Kazemian A., Moradi M., 2014, Analytical and numerical investigation of FGM pressure vessel reinforced by laminated composite materials, Journal of Solid Mechanics 6(1): 43-53.
[3] Witt F.J., 1965, Thermal stress analysis of conical shells, Nuclear Structure Engineering 1(5): 449-456.
[4] Panferov I. V., 1991, Stresses in a transversely isotropic conical elastic pipe of constant thickness under a thermal load, Journal of Applied Mathematics and Mechanics 56(3): 410-415.
[5] Jane K. C., Wu Y. H., 2004, A generalized thermoelasticity problem of multilayered conical shells, International Journal of Solids Structures 41: 2205-2233.
[6] Patel B. P., Shukla K. K., Nath Y., 2005, Thermal postbuckling analysis of laminated cross-ply truncated circular conical shells, Composite Structures 71: 101-114.
[7] Vivio F., Vullo V., 2007, Elastic stress analysis of rotating converging conical disks subjected to thermal load and having variable density along the radius, International Journal of Solids Structures 44: 7767-7784.
[8] Naj R., Boroujerdy M. B., Eslami M. R., 2008, Thermal and mechanical instability of functionally graded truncated conical shells, Thin Walled Structures 46: 65-78.
[9] Eipakchi H. R., 2009, Errata for axisymmetric stress analysis of a thick conical shell with varying thickness under nonuniform internal pressure, Journal of Engineering Mechanics 135(9): 1056-1056.
[10] Sladek J., Sladek V., Solek P., Wen P. H., Atluri A. N., 2008, Thermal analysis of reissner-mindlin shallow shells with FGM properties by the MLPG, CMES: Computer Modelling in Engineering and Sciences 30(2): 77-97.
[11] Nejad M. Z., Rahimi G. H., Ghannad M., 2009, Set of field equations for thick shell of revolution made of functionally graded materials in curvilinear coordinate system, Mechanika 77(3): 18-26.
[12] Ghannad M., Nejad M. Z., Rahimi G. H., 2009, Elastic solution of axisymmetric thick truncated conical shells based on first-order shear deformation theory, Mechanika 79(5): 13-20.
[13] Arefi M., Rahimi G. H., 2010, Thermo elastic analysis of a functionally graded cylinder under internal pressure using first order shear deformation theory, Scientific Research and Essays 5(12): 1442-1454.
[14] Jabbari M., Meshkini M., Eslami M. R., 2011, Mechanical and thermal stresses in a FGPM hollow cylinder due to non-axisymmetric loads, Journal of Solid Mechanics 3(1): 19-41.
[15] Ray S., Loukou A., Trimis D., 2012, Evaluation of heat conduction through truncated conical shells, International Journal of Thermal Sciences 57: 183-191.
[16] Ghannad M., Gharooni H., 2012, Displacements and stresses in pressurized thick FGM cylinders with varying properties of power function based on HSDT, Journal of Solid Mechanics 4(3): 237-251.
[17] Ghannad M., Nejad M. Z., Rahimi G. H., Sabouri H., 2012, Elastic analysis of pressurized thick truncated conical shells made of functionally graded materials, Structural Engineering and Mechanics 43(1): 105-126.
[18] Ghannad M., Rahimi G. H., Nejad M. Z., 2013, Elastic analysis of pressurized thick cylindrical shells with variable thickness made of functionally graded materials, Composite Part B-Engineering 45: 388-396.
[19] Nejad M. Z., Jabbari M., Ghannad M., 2014, A semi-analytical solution of thick truncated cones using matched asymptotic method and disk form multilayers, Archive of Mechanical Engineering 3: 495-513.
[20] Nejad M. Z., Rastgoo A., Hadi A., 2014, Effect of exponentially-varying properties on displacements and stresses in pressurized functionally graded thick spherical shells with using iterative technique, Journal of Solid Mechanics 6(4): 366-377.
[21] Nejad M. Z., Jabbari M., Ghannad M. 2014, Elastic analysis of rotating thick truncated conical shells subjected to uniform pressure using disk form multilayers, ISRN Mechanical Engineering 764837: 1-10.
[22] Nejad M. Z., Jabbari M., Ghannad, M., 2015, Elastic analysis of FGM rotating thick truncated conical shells with axially-varying properties under non-uniform pressure loading, Composite Structures 122: 561-569.
[23] Vlachoutsis S., 1992, Shear correction factors for plates and shells, International Journal for Numerical Methods in Engineering 33: 1537-1552.