Title of article
Analysis of moderately thin-walled beam cross-sections by cubic isoparametric elements
Author/Authors
Jan H?gsberg، نويسنده , , Steen Krenk، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2014
Pages
14
From page
88
To page
101
Abstract
In technical beam theory the six equilibrium states associated with homogeneous tension, bending, shear and torsion are treated as individual load cases. This enables the formulation of weak form equations governing the warping from shear and torsion. These weak form equations are solved numerically by introducing a cubic-linear two-dimensional isoparametric element. The cubic interpolation of this element accurately represents quadratic shear stress variations along cross-section walls, and thus moderately thin-walled cross-sections are effectively discretized by these elements. The ability of this element to represent curved geometries, and to accurately determine cross-section parameters and shear stress distributions is demonstrated.
Keywords
Finite element method , Cross-section analysis , isoparametric element , Beam stiffness parameter
Journal title
Computers and Structures
Serial Year
2014
Journal title
Computers and Structures
Record number
1211139
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