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Consistent matrices for steel framed structures with semi-rigid connections accounting for shear deformation and rotary inertia effects

机译:半刚性连接的钢框架结构的一致矩阵考虑了剪切变形和旋转惯性效应

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Estimation of vibration characteristics and thus the seismic loads acted on steel framed structures are influenced by the presence of semi-rigid connections and accurate modeling of shear deformations and rotary inertia effects. This paper presents a finite element model that takes into account all these effects in order to calculate consistent stiffness and mass matrices. The formulation of the element utilizes three fields Hu-Washizu-Barr principle, where the need for displacement shape function approximation is eliminated through the use of force-based approach. The proposed model does not require extra discretization to capture localized connection response. An accurate shear correction coefficient for I shaped steel sections is implemented to represent shear deformation and rotary inertia along steel beams and columns. Numerical examples on single member, portal frame and multi-story steel framed structures verify the accuracy and robustness of the proposed element with and without semi-rigid connections. (C) 2017 Elsevier Ltd. All rights reserved.
机译:半刚性连接的存在以及剪切变形和旋转惯性效应的精确建模会影响振动特性的估计,从而影响作用在钢框架结构上的地震荷载。本文提出了一种考虑所有这些影响的有限元模型,以便计算一致的刚度和质量矩阵。元素的公式利用了Hu-Washizu-Barr原理的三个字段,其中通过使用基于力的方法消除了对位移形状函数逼近的需要。提出的模型不需要额外的离散化即可捕获本地连接响应。对I形钢截面实施了精确的剪切校正系数,以表示沿钢梁和柱的剪切变形和旋转惯性。单构件,门框和多层钢框架结构上的数值示例验证了所提出的具有和不具有半刚性连接的构件的准确性和坚固性。 (C)2017 Elsevier Ltd.保留所有权利。

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