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A mixed finite element for three-dimensional nonlinear analysis of steel frames

机译:钢框架三维非线性分析的混合有限元

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This paper develops and demonstrates a mixed beam finite element that can represent the inelastic three-dimensional stability behavior of frames composed of open-walled cross-section members. The kinematics of deformation of the element include finite rotation and warping of the cross-section due to torsion. The material inelasticity is based on a two-space model that includes the effect of shear stresses due to uniform torsion in addition to normal stresses due to axial force, biaxial bending, and bimoment. Initial geometric imperfections and residual stresses are accommodated. The formulation is based on a two-field (displacement and generalized stress) Hellinger-Reissner (HR) variational principle. The interpolation of the generalized stresses (i.e., cross-section stress resultants) along the element length is based on the geometrically-exact nonlinear governing differential equations of equilibrium. This leads to significant improvements in the accuracy over conventional displacement-based elements in problems involving highly nonlinear variations in the curvature along the member lengths due to geometric nonlinearity and/or distributed plasticity effects. Several numerical examples involving two- and three-dimensional elastic and inelastic stability behavior are presented to illustrate the capabilities of the formulation.
机译:本文开发并演示了一种混合梁有限元,该有限元可以表示由开放壁截面构件组成的框架的非弹性三维稳定性。元件变形的运动学包括有限旋转和由于扭转而导致的横截面翘曲。材料的非弹性基于两个空间模型,该模型除了由于轴向力,双轴弯曲和双矩引起的法向应力外,还包括由于均匀扭转而产生的剪应力的影响。可以容纳初始的几何缺陷和残余应力。该公式基于两场(位移和广义应力)Hellinger-Reissner(HR)变分原理。沿单元长度的广义应力(即横截面应力合计)的插值基于平衡的几何精确非线性控制微分方程。在涉及由于几何非线性和/或分布可塑性效应引起的沿构件长度的曲率高度非线性变化的问题中,这导致了比常规的基于位移的元件的精度显着提高。提出了几个涉及二维和三维弹性和非弹性稳定性行为的数值示例,以说明该配方的功能。

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