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Dr. Mohammad Bagheri

Faculty of Aerospace Engineering, Shahid Satari Air University, Tehran, Iran

Selected Publications:
Jafari, A., & Bagheri, M. (2006). Free vibration of non-uniformly ring stiffened cylindrical shells using analytical, experimental and numerical methods. Thin-Walled Structures,44(1), 82–90.
Jafari, A.A., Bagheri, M.: Free vibration of rotating ring stiffened cylindrical shells with non-uniform stiffener distribution. J Sound Vibr 296, 353-376 (2006)
Bagheri M, Jafari AA. Multi-objective optimization of orthogonally stiffened cylindrical shells for buckling loads. In: First International Conference on Multidisciplinary Design Optimization and Applications (ASMDO Conference), Besancon, France, 2007.
Sh. Torkamani, H.M. Navazi, A.A. Jafari and M. Bagheri, “Structural similitude in free vibration of orthogonally stiffened cylindrical shells”, Thin-Walled StructuresVol. 47, No. 11, November 2009, pp. 1316-1330
Sadeghifar, M., Bagheri, M. and Jafari, A.A., ‘Multiobjective optimization of orthogonally stiffened cylindrical shells for minimum weight and maximum axial buckling load’, Thin-Walled Structures, Volume 48(12), pp 979-988, 2010.
Bagheri, M., Jafari, A.A. and Sadeghifar, M., ‘Multi-objective optimization of ring stiffened cylindrical shells using a genetic algorithm’, Journal of Sound and Vibration, Volume 330(3), pp 374-384, 2011.
Sadeghifar, M., Bagheri, M., Jafari, A.A.: Buckling analysis of stringer-stiffened laminated cylindrical shells with nonuniform eccentricity. Arch. Appl. Mech. 81, 875–886 (2011)
Bagheri, M., Jafari, A.A. and Sadeghifar, M., ‘A genetic algorithm optimization of ring-stiffened cylindrical shells for axial and radial buckling loads’, Archive of Applied Mechanics, Volume 81(11), pp 1639-1649, 2011.
Maraghi, Z.K., Arani, A.G., Kolahchi, R., Amir, S. and Bagheri, M. (2013), “Nonlocal vibration and instability of embedded DWBNNT conveying viscose fluid”, Compos. Part B Eng., 45(1), 423-432.
M Bagheri, AA Jafari, M Sadeghifar, J Fortin-Simpson, “Comparisons of buckling-to-weight behavior of cylindrical shells with composite and metallic stiffeners”, Mechanics of Advanced Materials and Structures, 2016

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