115 results on '"Karamanli, Armagan"'
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2. A Quasi-3D theory for bending, vibration and buckling analysis of FG-CNTRC and GPLRC curved beams
3. Comprehensive analysis of bio-inspired laminated composites plates using a quasi-3D theory and higher order FE models
4. Nonlinear dynamic response of FG-GPLRC beams induced by two successive moving loads
5. Size-dependent behaviours of functionally graded sandwich thin-walled beams based on the modified couple stress theory
6. Finite element formulation of metal foam microbeams via modified strain gradient theory
7. Bending, buckling and free vibration behaviours of 2D functionally graded curved beams
8. Bending, buckling and free vibration analyses of shallow-to-deep FG curved sandwich beams using a global–local refined shear deformation theory
9. Higher order finite element models for transient analysis of strain gradient functionally graded microplates
10. Transient vibration analysis of strain gradient multi-directional functionally graded microplates under a moving concentrated load
11. Transient dynamics of 2D-FG porous microplates under moving loads using higher order finite element model
12. Prediction compressive strength of cement-based mortar containing metakaolin using explainable Categorical Gradient Boosting model
13. Bending, free vibration and buckling finite element analysis of porous functionally graded plates with various porosity distributions using an improved FSDT.
14. Transient analysis of bio-inspired shear and normal deformable laminated composite plates using a higher-order finite element model.
15. Finite element model for free vibration analysis of curved zigzag nanobeams
16. Structural behaviours of zigzag and armchair nanobeams using finite element doublet mechanics
17. Radial basis Taylor series method and its applications
18. Finite element model for carbon nanotube-reinforced and graphene nanoplatelet-reinforced composite beams
19. Vibration behaviors of two-directional carbon nanotube reinforced functionally graded composite plates
20. A comprehensive study on the size-dependent analysis of strain gradient multi-directional functionally graded microplates via finite element model
21. Bending, vibration, buckling analysis of bi-directional FG porous microbeams with a variable material length scale parameter
22. Size-dependent behaviors of three directional functionally graded shear and normal deformable imperfect microplates
23. A quasi-3D theory for functionally graded porous microbeams based on the modified strain gradient theory
24. Size-dependent behaviour of functionally graded sandwich microbeams based on the modified strain gradient theory
25. Bifurcation buckling conditions of FGM plates with different boundaries
26. Vibration of functionally graded shear and normal deformable porous microplates via finite element method
27. Size dependent flapwise vibration analysis of rotating two-directional functionally graded sandwich porous microbeams based on a transverse shear and normal deformation theory
28. On the vibration of size dependent rotating laminated composite and sandwich microbeams via a transverse shear-normal deformation theory
29. Buckling of laminated composite and sandwich beams due to axially varying in-plane loads
30. Size dependent bending analysis of two directional functionally graded microbeams via a quasi-3D theory and finite element method
31. Free vibration analysis of two directional functionally graded beams using a third order shear deformation theory
32. Flexural analysis of laminated composite and sandwich beams using a four-unknown shear and normal deformation theory
33. Bending behaviour of two directional functionally graded sandwich beams by using a quasi-3d shear deformation theory
34. Elastostatic analysis of two-directional functionally graded beams using various beam theories and Symmetric Smoothed Particle Hydrodynamics method
35. Free vibration of axially loaded zigzag and armchair nanobeams using doublet mechanics.
36. Super learner machine‐learning algorithms for compressive strength prediction of high performance concrete
37. Super learner machine‐learning algorithms for compressive strength prediction of high performance concrete
38. Finite element formulation of metal foam microbeams via modified strain gradient theory
39. Super learner machine‐learning algorithms for compressive strength prediction of high performance concrete.
40. Free vibration of axially loaded zigzag and armchair nanobeams using doublet mechanics
41. Radial basis Taylor series method and its applications
42. Free vibration and buckling analysis of laminated composites and sandwich microbeams using a transverse shear-normal deformable beam theory
43. Structural dynamics and stability analysis of 2D-FG microbeams with two-directional porosity distribution and variable material length scale parameter
44. Structural dynamics and stability analysis of 2D-FG microbeams with two-directional porosity distribution and variable material length scale parameter.
45. Free vibration and buckling analysis of laminated composites and sandwich microbeams using a transverse shear-normal deformable beam theory.
46. Evaluation of the Effects of the Chincup Appliance on the Craniofacial Structures by the Finite Element Analysis
47. Static behaviour of two-directional functionally graded sandwich beams using various beam theories
48. Analysis of isotropic tapered beams by using symmetric smoothed particle hydrodynamics method
49. Analysis of Bending Deflections of Functionally Graded Beams by Using Different Beam Theories and Symmetric Smoothed Particle Hydrodynamics
50. Elastostatic Deformation Analysis of Thick Isotropic Beams by Using Different Beam Theories and a Meshless Method
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