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Displacement modes of a thin-walled beam model with deformable cross sections

机译:截面可变形的薄壁梁模型的位移模式

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A novel one dimensional beam model for analysis of prismatic thin-walled beams with deformable cross sections is introduced and a novel cross section mode determination procedure, which leads to the three dimensional beam displacement modes, is derived. The first order beam model for linear analysis includes: shear deformations related to both Timoshenko and Mindlin-Reissner type shear deformations, the warping effects of torsion, cross section distortion with related warping effects, as well as the Poisson effect with transverse displacements due to normal stress. The generality of the model allows it to handle open, closed and multi-cell cross sections with branched walls. The cross section analysis procedure leads to two types of beam displacement modes referred to as distortional beam modes and fundamental beam modes, with exponential and polynomial variations along the beam axis, respectively. It turns out that each of the beam deformation modes consists of a sum of one to four cross section displacement fields each with an individual axial variation. The displacement modes can facilitate the formulation of an advanced thin-walled beam element. The beam displacement modes will be illustrated for an open and a closed cross section.
机译:介绍了一种新颖的一维光束模型,用于分析截面可变形的棱柱形薄壁光束,并推导了导致三维光束位移模式的新型截面模式确定程序。用于线性分析的一阶梁模型包括:与Timoshenko型和Mindlin-Reissner型剪切变形相关的剪切变形,扭转的翘曲效应,具有相关翘曲效应的横截面畸变以及由于法向引起的横向位移的泊松效应强调。该模型的通用性使其可以处理带有分支壁的开放式,封闭式和多单元横截面。横截面分析过程导致两种类型的光束位移模式,分别称为畸变光束模式和基本光束模式,沿光束轴分别具有指数和多项式变化。事实证明,每个梁变形模式都由一个到四个截面位移场的总和组成,每个截面位移场都有各自的轴向变化。位移模式可以促进高级薄壁梁单元的制定。将针对开放和封闭横截面说明光束位移模式。

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