All Stories

  1. Influence of porosity distribution on buckling behavior of FG sandwich plates using a quasi-3D refined plate theory
  2. Investigation on Thermomechanical Bending of Functionally Graded Sandwich Plates Using a Novel Combined 2D Integral Plate Model
  3. Static behavior of FG sandwich beams under various boundary conditions using trigonometric series solutions and refined hyperbolic theory
  4. INVESTIGATION ON THERMOMECHANICAL BENDING OF FUNCTIONALLY GRADED SANDWICH PLATES USING A NOVEL COMBINED 2D INTEGRAL PLATE MODEL
  5. Surface Effects and Small-Scale Impacts on the Bending and Buckling of Nanowires Using Various Nonlocal HSDTs
  6. A Novel Refined Plate Theory for Free Vibration Analyses of Single-Layered Graphene Sheets Lying on Winkler-Pasternak Elastic Foundations
  7. Analytical modeling of bending and vibration of thick advanced composite plates using a four-variable quasi 3D HSDT
  8. A nonlocal quasi-3D theory for bending and free flexural vibration behaviors of functionally graded nanobeams
  9. A novel four variable refined plate theory for bending, buckling, and vibration of functionally graded plates
  10. On the bending and stability of nanowire using various HSDTs
  11. Comment on “A four-variable refined plate theory for dynamic stability analysis of S-FGM plates based on physical neutral surface”
  12. A new higher order shear and normal deformation theory for functionally graded beams
  13. A new simple shear and normal deformations theory for functionally graded beams
  14. Bending and buckling analyses of functionally graded material (FGM) size-dependent nanoscale beams including the thickness stretching effect
  15. NONLINEAR BENDING ANALYSIS OF FUNCTIONALLY GRADED PLATES UNDER PRESSURE LOADS USING A FOUR VARIABLE REFINED PLATE THEORY
  16. Nonlinear cylindrical bending analysis of E-FGM plates with variable thickness
  17. A new first shear deformation beam theory based on neutral surface position for functionally graded beams
  18. An Efficient Shear Deformation Beam Theory Based on Neutral Surface Position for Bending and Free Vibration of Functionally Graded Beams#
  19. An efficient and simple refined theory for nonlinear bending analysis of functionally graded sandwich plates
  20. Large deformation analysis for functionally graded carbon nanotube-reinforced composite plates using an efficient and simple refined theory
  21. Mathematical solution for nonlinear cylindrical bending of sigmoid functionally graded plates
  22. A four variable refined plate theory for nonlinear cylindrical bending analysis of functionally graded plates under thermomechanical loadings
  23. Nonlinear cylindrical bending of functionally graded carbon nanotube-reinforced composite plates
  24. Controlling thermal deformation by using composite materials having variable fiber volume fraction