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1 Jung, W.Y. and Han, S.C. (2014) "Shear buckling responses of laminated composite shells using a modified 8-node ANS shell element", Compos. Struct., 109, 119-129./   DOI View Article
2 Mantari, J.L. and Soares, C.G. (2014), "Optimized sinusoidal higher order shear deformation theory for the analysis of functionally graded plates and shells", Compos. B Eng., 56(1), 126-136./   DOI View Article
3 Shariyat, M. and Asemi, K. (2014), "Three-dimensional non-linear elasticity-based 3D cubic B-spline finite element shear buckling analysis of rectangular orthotropic FGM plates surrounded by elastic foundations", Compos. B Eng., 56, 934-947./   DOI View Article
4 Sofiyev, A.H. and Kuruoglu, N. (2014), "Buckling and vibration of shear deformable functionally graded orthotropic cylindrical shells under external pressures", Thin-Wall. Struct., 78, 121-130./   DOI View Article
5 Tornabene, F., Fantuzzi, N., Viola, E. and Reddy, J.N. (2014), "Winkler-Pasternak foundation effect on the static and dynamic analyses of laminated doubly-curved and degenerate shells and panels", Compos. B Eng., 57, 269-296./   DOI View Article
6 Sofiyev, A.H., Deniz, A., Ozyigit, P. and Pinarlik, M. (2014), "Stability analysis of clamped nonhomogeneous shells on the elastic foundation", Acta Phys. Pol., 125(2), 459-461./   DOI View Article
7 Adany, S. (2014), "Flexural buckling of simply-supported thin-walled columns with consideration of membrane shear deformations: Analytical solutions based on shell model", Thin-Wall. Struct., 74, 36-48./   DOI View Article
8 Kakar, R. (2014) "Magneto-electro-viscoelastic torsional waves in aeolotropic tube under initial compression stress", Lat. Am. J. Solids Struct., 11(4), 580-597./   DOI View Article
9 Zahrai, S.M. and Jalali, M. (2014), "Experimental and analytical investigations on Seismic behavior of ductile steel knee braced frames", Steel Compos. Struct., Int. J., 16(1), 1-21./   DOI   Ndsl View Article
10 Bayat, M., Pakar, I. and Cveticanin, L. (2014a), "Nonlinear free vibration of systems with inertia and static type cubic nonlinearities: an analytical approach", Mech. Machine Theory, 77, 50-58. DOI: 10.1016/j.mechmachtheory.2014.02.009/   DOI   Ndsl View Article