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Effect of lap reinforcement in link slabs of highway bridges

机译:搭接加固在公路桥梁连接板中的作用。

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This paper investigates the influence of lap reinforcement in link slabs of highway bridges under four independent boundary conditions by using a three-dimensional nonlinear finite element code based on the microplane model. Numerical solutions for load-deflection relationships, internal force distribution and failure cracking planes are presented for link slabs with different details of lap reinforcement. A full-scale test was performed on three reinforced concrete long span link slabs with various lap reinforcement details subjected to mid-span loading. The comparison indicates a good agreement between the results from finite element analysis and the experiment. The present model can be used to predict the effective moment of inertia of the link slab under mid-span loading, end rotation and end translation for the development of design criteria for a link slab.
机译:通过基于微平面模型的三维非线性有限元编码,研究了四种独立边界条件下搭接加固对公路桥梁连接板的影响。给出了具有不同搭接加固细节的连接板的荷载-挠度关系,内力分布和破坏裂缝平面的数值解。对三块钢筋混凝土大跨度连接板进行了全面测试,各种跨接钢筋细节经受了中跨载荷。比较表明,有限元分析的结果与实验结果吻合良好。本模型可用于预测中跨载荷,端部旋转和端部平移下链板的有效惯性矩,以制定链板的设计标准。

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