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Recent Advances in the Dynamic Analysis of Stiffened Plates - Application to Concrete or to Composite Steel-Concrete Structures

机译:加筋板动力分析的最新进展-在混凝土或钢-混凝土组合结构中的应用

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摘要

In this paper, an improved model for the dynamic analysis of reinforced concrete plates stiffened by arbitrarily placed parallel reinforced concrete or steel beams with deformable connection taking into account the influence of creep and shrinkage effects relative with the time of the casting and the time of the loading of the plate and the beams is presented. According to the proposed model, the stiffening beams are isolated from the plate by sections in the lower outer surface of the plate, making the hypothesis that the plate and the beams can slip in all directions of the connection without separation (i.e. uplift neglected) and taking into account the arising tractions in all directions at the fictitious interfaces. These tractions are integrated with respect to each half of the interface width resulting two interface lines, along which the loading of the beams as well as the additional loading of the plate is defined. Their unknown distribution is established by applying continuity conditions in all directions at the interfaces taking into account their relation with the interface slip through the shear connector stiffness. The utilization of two interface lines for each beam enables the nonuniform distribution of the interface transverse shear forces and the nonuniform torsional response of the beams to be taken into account describing better in this way the actual response of the plate - beams system. The analysis of both the plate and the beams is accomplished on their deformed shape taking into account second-order effects. Six boundary value problems are formulated and solved using the Analog Equation Method (AEM), a BEM based method. The solution of the aforementioned plate and beam problems, which are nonlinearly coupled, is achieved using iterative numerical methods. The adopted model permits the evaluation of the shear forces at the interfaces in both directions, the knowledge of which is very important in the design of prefabricated ribbed plates. Both free and forced damped or undamped transverse vibrations are considered and numerical examples with great practical interest with patent discussion are presented.
机译:在本文中,考虑到蠕变和收缩效应相对于浇筑时间和浇筑时间的影响,建立了一种改进的模型,该模型用于对任意放置的平行钢筋混凝土或具有可变形连接的钢梁加筋的钢筋混凝土板进行动力分析。介绍了板和梁的载荷。根据提出的模型,加劲梁通过板下部外表面中的截面与板隔离,从而提出了以下假设:板和梁可以在连接的所有方向上滑动而不会分离(即,不考虑隆起),并且考虑到虚拟接口在各个方向上出现的牵引力。这些牵引力相对于界面宽度的每一半都集成在一起,从而形成两条界面线,沿着这两条界面线可以定义梁的载荷以及板的附加载荷。考虑到它们与通过剪切连接器刚度的界面滑移之间的关系,可以通过在界面的所有方向上应用连续性条件来建立它们的未知分布。对于每个梁使用两条界面线,可以考虑界面横向剪切力的不均匀分布和梁的不均匀扭转响应,从而更好地描述了板梁系统的实际响应。考虑到二阶效应,对板和梁的变形形状进行了分析。使用基于BEM的方法Analog Equation Method(AEM)制定并解决了六个边值问题。使用迭代数值方法可以实现上述非线性耦合的板梁问题的解决方案。所采用的模型可以评估两个方向上的界面处的剪力,有关这些知识对于预制肋板的设计非常重要。考虑了自由和强制阻尼或无阻尼的横向振动,并通过专利讨论给出了许多具有实际意义的数值示例。

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