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Short- and long-term analyses of composite beams with partial interaction stiffened by a longitudinal plate

机译:带有纵向板加强部分相互作用的复合梁的短期和长期分析

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This paper presents a novel analytical formulation for the analysis of composite beams with partial shear interaction stiffened by a bolted longitudinal plate accounting for time effects, such as creep and shrinkage. The model is derived by means of the principle of virtual work using a displacement-based formulation. The particularity of this approach is that the partial interaction behaviour is assumed to exist between the top slab and the joist as well as between the joist and the bolted longitudinal stiffening plate, therefore leading to a three-layered structural representation. For this purpose, a novel finite element is derived and presented. Its accuracy is validated based on short-and long-term analyses for the particular cases of full shear interaction and partial shear interaction of two layers for which solutions in closed form are available in the literature. A parametric study is earned out considering different stiffening arrangements to investigate the influence on the short-and long-term behaviour of the composite beam of the shear connection stiffness between the concrete slab and the steel joist, the stiffness of the plate-to-beam connection, the properties of the longitudinal plate and the concrete properties. The values of the deflection obtained from the finite element simulations are compared against those calculated using the effective flexural rigidity in accordance with EC5 guidelines for the behaviour of elastic multi-layered beams with flexible connection and it is shown how the latter well predicts the structural response. The proposed numerical examples highlight the ease of use of the proposed approach in determining the effectiveness of different retrofitting solutions at service conditions.
机译:本文提出了一种新的分析公式,用于分析具有部分剪力相互作用的复合梁,该组合梁由螺栓固定的纵板加强,考虑了时间效应,例如蠕变和收缩。该模型是通过基于位移的虚拟工作原理导出的。这种方法的特殊性在于,假定顶板和托梁之间以及托梁和螺栓纵向加强板之间存在部分相互作用行为,因此导致了三层结构表示。为此,派生并提出了一种新颖的有限元。在短期和长期分析的基础上,针对两层的全剪力相互作用和部分剪力相互作用的特殊情况验证了其准确性,在文献中可获得封闭形式的溶液。通过考虑不同的加劲布置进行参数研究,以研究混凝土板与钢托梁之间的抗剪连接刚度,板梁的刚度对复合梁的短期和长期性能的影响。连接,纵向板的性能和混凝土性能。将根据有限元模拟获得的挠度值与使用有效挠性刚度(根据EC5准则)对具有挠性连接的弹性多层梁的性能所计算的挠度值进行比较,并显示了后者如何很好地预测结构响应。所提出的数值示例强调了所提出的方法在确定使用条件下不同改造解决方案的有效性方面的易用性。

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