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La bibliographie suivante contient toutes les publications répertoriées dans la base de données qui sont reliées à ce nom en tant qu'auteur, éditeur ou collaborateur.

  1. Sahmani, S. / Aghdam, M. M. (2017): Nonlocal strain gradient beam model for nonlinear vibration of prebuckled and postbuckled multilayer functionally graded GPLRC nanobeams. Dans: Composite Structures, v. 179 (novembre 2017).

    https://doi.org/10.1016/j.compstruct.2017.07.064

  2. Sahmani, S. / Aghdam, M. M. (2017): A nonlocal strain gradient hyperbolic shear deformable shell model for radial postbuckling analysis of functionally graded multilayer GPLRC nanoshells. Dans: Composite Structures, v. 178 (octobre 2017).

    https://doi.org/10.1016/j.compstruct.2017.06.062

  3. Sahmani, S. / Aghdam, M. M. (2017): Size dependency in axial postbuckling behavior of hybrid FGM exponential shear deformable nanoshells based on the nonlocal elasticity theory. Dans: Composite Structures, v. 166 (avril 2017).

    https://doi.org/10.1016/j.compstruct.2017.01.051

  4. Sahmani, S. / Aghdam, M. M. / Bahrami, M. (2015): On the postbuckling behavior of geometrically imperfect cylindrical nanoshells subjected to radial compression including surface stress effects. Dans: Composite Structures, v. 131 (novembre 2015).

    https://doi.org/10.1016/j.compstruct.2015.05.031

  5. Sahmani, S. / Aghdam, M. M. / Bahrami, M. (2015): On the free vibration characteristics of postbuckled third-order shear deformable FGM nanobeams including surface effects. Dans: Composite Structures, v. 121 (mars 2015).

    https://doi.org/10.1016/j.compstruct.2014.11.033

  6. Sahmani, S. / Bahrami, M. / Aghdam, M. M. / Ansari, R. (2014): Surface effects on the nonlinear forced vibration response of third-order shear deformable nanobeams. Dans: Composite Structures, v. 118 (décembre 2014).

    https://doi.org/10.1016/j.compstruct.2014.07.026

  7. Sahmani, S. / Bahrami, M. / Ansari, R. (2014): Surface energy effects on the free vibration characteristics of postbuckled third-order shear deformable nanobeams. Dans: Composite Structures, v. 116 (septembre 2014).

    https://doi.org/10.1016/j.compstruct.2014.05.035

  8. Ansari, R. / Mohammadi, V. / Faghih Shojaei, M. / Gholami, R. / Sahmani, S. (2014): Surface stress effect on the postbuckling and free vibrations of axisymmetric circular Mindlin nanoplates subject to various edge supports. Dans: Composite Structures, v. 112 (juin 2014).

    https://doi.org/10.1016/j.compstruct.2014.02.028

  9. Sahmani, S. / Bahrami, M. / Ansari, R. (2014): Nonlinear free vibration analysis of functionally graded third-order shear deformable microbeams based on the modified strain gradient elasticity theory. Dans: Composite Structures, v. 110 (avril 2014).

    https://doi.org/10.1016/j.compstruct.2013.12.004

  10. Ansari, R. / Gholami, R. / Faghih Shojaei, M. / Mohammadi, V. / Sahmani, S. (2013): Size-dependent bending, buckling and free vibration of functionally graded Timoshenko microbeams based on the most general strain gradient theory. Dans: Composite Structures, v. 100 (juin 2013).

    https://doi.org/10.1016/j.compstruct.2012.12.048

  11. Sahmani, S. / Ansari, R. (2013): On the free vibration response of functionally graded higher-order shear deformable microplates based on the strain gradient elasticity theory. Dans: Composite Structures, v. 95 (janvier 2013).

    https://doi.org/10.1016/j.compstruct.2012.07.025

  12. Ansari, R. / Gholami, R. / Sahmani, S. (2011): Free vibration analysis of size-dependent functionally graded microbeams based on the strain gradient Timoshenko beam theory. Dans: Composite Structures, v. 94, n. 1 (décembre 2011).

    https://doi.org/10.1016/j.compstruct.2011.06.024

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