Title of article :
Adding transverse normal stresses to layered shell finite elements for the analysis of composite structures
Author/Authors :
Romil Tanov، نويسنده , , Ala Tabiei، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2006
Pages :
7
From page :
338
To page :
344
Abstract :
This work presents a formulation developed to add capabilities for representing the through thickness distribution of the transverse normal stresses, σz, in first and higher order shear deformable shell elements within a finite element (FE) scheme. The formulation is developed within a displacement based shear deformation shell theory. Using the differential equilibrium equations for two-dimensional elasticity and the interlayer stress and strain continuity requirements, special treatment is developed for the transverse normal stresses, which are thus represented by a continuous piecewise cubic function. The implementation of this formulation requires only C0 continuity of the displacement functions regardless of whether it is added to a first or a higher order shell element. This makes the transverse normal stress treatment applicable to the most popular bilinear isoparametric 4-noded quadrilateral shell elements. To assess the performance of the present approach it is included in the formulation of a recently developed third order shear deformable shell finite element. The element is added to the element library of the general nonlinear explicit dynamic FE code DYNA3D. Some illustrative problems are solved and results are presented and compared to other theoretical and numerical results.
Keywords :
Transverse normal stress in shell elements , First and higher order shear deformation shell finite elements , Layered shells , Refined shell theories , Finite element shell formulations
Journal title :
COMPOSITE STRUCTURES
Serial Year :
2006
Journal title :
COMPOSITE STRUCTURES
Record number :
1341263
Link To Document :
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