Buckling behaviour of cross-ply laminated plates by a higher-order shear deformation theory
In this article, Carrera’s Unified Formulation (CUF) is combined with a radial basis function collocation technique. A higher-order theory that considers deformations in the thickness direction was developed under CUF to predict the buckling behaviour of
Neves Ana M.A. +6 more
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Analysing the sability of FGM plates by employing higher-order shear deformation theory
In this paper, the finite element method is intergated with the C0-typehigher-order shear deformation theory (HSDT) for mechanical and thermal buckling analyses of functionally graded material plates (FGM). In the FGM, the material properties are assumed
Ngô Phát Đạt +2 more
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A New Higher-Order Shear and Normal Deformation Theory for the Free Vibration Analysis of Laminated Shells [PDF]
In this paper, the free vibration analysis of laminated composite and sandwich, cylindrical and spherical shells is presented using a new higher-order shear and normal deformation theory.
Bharti Shinde, Atteshamuddin Sayyad
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An Intuitive Derivation of Beam Models of Arbitrary Order
This article presents a new beam model that employs a recursive derivation procedure that enables the user to set the order of the governing differential equations as an input parameter, without the need for ad hoc assumptions or methodologies.
Hart Honickman
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Bending Analysis of Thick Isotropic Plates by Using 5th Order Shear Deformation Theory [PDF]
A 5th order shear deformation theory considering transverse shear deformation effect as well as transverse normal strain deformation effect is presented for static flexure analysis of simply supported isotropic plate.
Yuwaraj M. Ghugal, Param D. Gajbhiye
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Unified theory of beam bending within flexoelectricity with including piezoelectricity [PDF]
The behaviour of small size dielectric elastic beams is described within higher-grade theory with including electric polarization. The coupling between strain gradients and polarization is incorporated into the constitutive laws in the form of ...
Sladek Vladimir, Sladek Jan
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A new sinusoidal shear deformation theory for bending, buckling, and vibration of functionally graded plates [PDF]
A new sinusoidal shear deformation theory is developed for bending, buckling, and vibration of functionally graded plates. The theory accounts for sinusoidal distribution of transverse shear stress, and satisfies the free transverse shear stress ...
Ameur +38 more
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A finite element model for a higher-order shear-deformable beam theory [PDF]
The theory for a higher order shear-deformable beam model is first developed. It is based on a higher order displacement model and incorporates linear and quadratic variation of transverse normal strain and transverse shearing strain respectively through the beam thickness.
KANT, T, GUPTA, A
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Flexural Behaviour of Nanocomposite Plate with CNT Distribution and Agglomeration Effect [PDF]
The behavior of various CNT distributions with agglomeration effects on FG plates is investigated in this paper under static loading. Here, to model the FG plate third-order shear deformation theory has been used and a FEM code has been developed. In the
Madan Maurya +2 more
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On Numerical Investigation of Buckling in Two-Directional Porous Functionally Graded Beam Using Higher Order Shear Deformation Theory [PDF]
In functionally graded materials (FGM), pores have a key impact. A variety of properties, such as resistance to mechanical shock, thermal insulation, catalytic efficiency, and the release of thermal stress, can be added by gradually changing pores ...
Pappula Bridjesh +2 more
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