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Obtaining optimal performance with reinforcement-free concrete highway bridge decks

机译:免加固混凝土公路桥面板获得最佳性能

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摘要

This article describes an application of nonlinear finite element modeling (FEM) and analysis in the selection of design details to provide desirable performance in reinforcement-free concrete highway bridge decks. The FEM approach was used to predict the ultimate capacity and failure modes of decks considered as constrained membranes. Lateral constraint of the deck (membrane) provides extra wheel load capacity for reinforcement-free bridge decks on bulb tee wide flanged concrete girders. The wide flange precast prestressed concrete girder sections currently used in bridges result in a shorter effective span for the bridge deck between the wide girder top flanges. The failure mode of concrete decks on these girders with wheel loading is expected to be punching shear. The shear forces from the vehicle wheel loads in the reinforcement-free bridge deck are designed to be carried by compressive membrane action without using reinforcing in the concrete. The compressive membrane action is enhanced by the natural lateral stiffness of the wide girder flanges and by tying adjacent girders together with steel rods placed between the webs. An experimental study of a restrained deck element was performed to identify the failure mode and to use as a basis for verifying the nonlinear properties used in finite element analysis. A parametric study using nonlinear finite element analysis was performed to investigate the factors affecting the ultimate capacity and the failure modes of reinforcement-free bridge decks on wide flange precast girders and to provide a basis for selecting desirable design details.
机译:本文介绍了非线性有限元建模(FEM)和分析在设计细节选择中的应用,以在无钢筋混凝土公路桥梁桥面中提供理想的性能。有限元方法被用来预测被视为约束膜的甲板的极限承载力和破坏模式。甲板(膜)的侧向约束为球形三通宽法兰混凝土大梁上的免加固桥面板提供了额外的车轮承载能力。当前在桥梁中使用的宽法兰预制预应力混凝土梁截面导致宽梁顶部法兰之间的桥面板的有效跨度缩短。这些带有车轮载荷的大梁上混凝土面板的破坏模式预计为冲剪。免加固桥面板中的车轮载荷所产生的剪力设计为通过压缩膜作用来承载,而无需在混凝土中使用钢筋。宽大梁翼缘的自然横向刚度以及将相邻大梁与放置在腹板之间的钢杆绑在一起,从而增强了压缩膜的作用。进行了约束甲板单元的实验研究,以识别破坏模式并用作验证有限元分析中使用的非线性特性的基础。进行了使用非线性有限元分析的参数研究,以研究影响宽翼缘预制梁上无筋桥面板极限承载力和破坏模式的因素,并为选择理想的设计细节提供依据。

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