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Improvements to the analysis of floorbeams with additional web cutouts for orthotropic plated decks with closed continuous ribs

机译:带有附加腹板切口的地板梁分析的改进,用于封闭连续肋的正交异性板

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Department of Civil Engineering, Ghent University, Ghent, Belgium Additional cutouts in the floorbeam webs of orthotropic plated bridge decks relieve the highly stressed lower flange of the ribs passing through these floorbeam webs from possible fatigue damage. Conversely, the floorbeam webs themselves suffer from high stress concentrations, especially along the free edges of the additional cutouts. These stresses result from a combination of direct introduction of vertical traffic loads in the weakened web and from the truss action of the floorbeam. The latter differs from a simple beam action due to the presence of the openings and corresponds more to the behaviour of a Vierendeel truss. Close assessment of the appearing stresses, highly relevant for fatigue resistance, requires the use of elaborate finite element modelling. However, a full finite element analysis merely provides the results of total stresses, leaving the researcher or designer the difficult task of finding the origin of these stress components. This paper presents a calculation method for cutout stresses based on a combination of a framework analysis and a two dimensional finite element analysis of much smaller parts of the floorbeam. This method provides more insight in the origin of the stress components, as well as it simplifies any comparison of different additional cutout geometries, independent of the floorbeam topology.
机译:比利时根特根特大学土木工程系正交各向异性镀层桥面板的楼板腹板中的其他切口可减轻穿过这些楼板腹板的肋骨的高应力下凸缘免受可能的疲劳损坏。相反,地梁腹板本身承受高应力集中,特别是沿着附加切口的自由边缘。这些应力是由于在薄弱的腹板上直接引入垂直交通荷载和地板梁的桁架作用共同导致的。后者由于存在开口而不同于简单的梁作用,并且更对应于Vierendeel桁架的行为。对出现的应力的密切评估与疲劳强度高度相关,因此需要使用精细的有限元建模。但是,完整的有限元分析只能提供总应力的结果,这使研究人员或设计人员很难找到这些应力分量的来源。本文提出了一种基于框架分析和地板梁较小部分的二维有限元分析相结合的切应力计算方法。该方法提供了有关应力分量起源的更多信息,并且简化了不同附加切口几何形状的任何比较,而与楼板梁拓扑无关。

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