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3D BEAM-COLUMN FINITE ELEMENT UNDER NON-UNIFORM SHEAR STRESS DISTRIBUTION DUE TO SHEAR AND TORSION

机译:由于剪切和扭转,3D光束柱有限元在非均匀剪切应力分布下

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摘要

The paper discusses the application of a 2-node, three-dimensional (3D) beam-column finite element with an enhanced fiber cross-section model to the inelastic response analysis of concrete members. The element accounts for the local distribution of strains and stresses under the coupling of axial, flexural, shear, and torsional effects with an enriched kinematic description that accounts for the out-of-plane deformations of the cross-section. To this end the warping displacements are interpolated with the addition of a variable number of local degrees of freedom. The material response is governed by a 3D nonlinear stress-strain relation with damage that describes the degrading mechanisms of typical engineering materials under the coupling of normal and shear stresses. The element formulation is validated by comparing the numerical results with measured data from the response of two prismatic concrete beams under torsional loading and with standard beam formulations.
机译:本文讨论了2节点,三维(3D)光束列有限元的应用,以增强的光纤横截面模型到混凝土构件的非弹性响应分析。该元素占轴向,弯曲,剪切和扭转效应的耦合下菌株和应力的局部分布,其富集的运动学描述占横截面的平面外变形。为此,通过添加可变数量的局部自由度来插入翘曲位移。材料响应由3D非线性应力 - 应变关系与描述在正常和剪切应力的耦合下的典型工程材料的劣化机制的控制。通过将测量数据与来自扭转加载下的两个棱镜混凝土梁的响应和标准光束配方的响应进行比较来验证元素配方。

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