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首页> 外文期刊>Advances in Structural Engineering >Three-dimensional numerical and linearly distributed multi-parameter fitted analytical modeling of hybrid beam-column with partially welded flush end-plate connection
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Three-dimensional numerical and linearly distributed multi-parameter fitted analytical modeling of hybrid beam-column with partially welded flush end-plate connection

机译:具有部分焊接齐平端板连接的混合梁柱的三维数值和线性分布多参数拟合分析模型

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摘要

The flexural behavior of partially welded flush end-plate connections incorporating built-up hybrid beams and columns is analytically and numerically investigated. An experimentally obeying three-dimensional finite element model is first constructed. To circumvent the laborious effort of three-dimensional simulation and experimental work, a new experimentally and numerically complying equation approach is introduced for the construction of a continuous moment-rotation (M-theta) description. For the proposed equation, two essential terms are required: the rotational stiffness, S-j,S-ini obtained by employing the component method and the maximum moment, M-max produced using the proposed linearly distributed multi-parameter fitting technique. To demonstrate the applicability of the proposed equation, a variation in the geometric configuration of connections within the practical range is considered. Excellent agreement is noted when comparing all M-theta relationships produced by the proposed equation to those by the finite element method and experiments. In addition, the stress distribution and main deformation modes are numerically obtained, where the ranking of stress criticality is offered for all structural parts. The depth, width, flange, and web thicknesses, as well as the yield stress of the beam, have a major influence on M-max, as predicted by the proposed equation. Also, bolts have been identified as the most critically stressed component.
机译:分析和数值研究了结合了内置混合梁和圆柱的部分焊接齐平端板连接的挠曲性能。首先构建一个实验服从的三维有限元模型。为了避免费力的三维模拟和实验工作,引入了一种新的符合实验和数值要求的方程方法,用于构造连续矩旋转(M-theta)描述。对于所提出的方程式,需要两个基本术语:采用分量法获得的旋转刚度S-j,S-ini和采用提出的线性分布多参数拟合技术产生的最大矩M-max。为了证明所提出方程的适用性,考虑了在实际范围内连接的几何构型的变化。将拟议方程式产生的所有M-theta关系与有限元方法和实验所产生的所有M-theta关系进行比较时,都获得了极好的一致性。另外,通过数值获得应力分布和主要变形模式,其中为所有结构部件提供了应力临界等级。如所提出的方程式所预测的,深度,宽度,凸缘和腹板厚度以及梁的屈服应力对M-max产生重大影响。同样,螺栓也被认为是应力最大的组件。

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