Full-scale structural tests of five precast, prestressed concrete bridge deck panels have been carried out in simple bending to failure at the San Diego State University Structural Engin'/> Structural Tests of Precast, Prestressed Concrete Deck Panels for California Freeway Bridges
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Structural Tests of Precast, Prestressed Concrete Deck Panels for California Freeway Bridges

机译:加利福尼亚高速公路桥梁的预制,预应力混凝土桥面板的结构测试

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align="left">Full-scale structural tests of five precast, prestressed concrete bridge deck panels have been carried out in simple bending to failure at the San Diego State University Structural Engineering Laboratory in? San Diego, Calif. The purpose of the tests was to demonstrate to Caltrans that the precast concrete panels act compositely in flexure with a cast-in-place topping slab so that they can be used for? California bridges. To ensure that the full deck width was active in resisting the applied loads, steel I-beams the width of the deck were used under the load and at the reaction points. Neoprene bearing? pads were incorporated at the supports to allow free rotations at the deck ends. Each bridge deck consisted of a precast, prestressed concrete deck panel with a? cast-in-place topping slab, with no reinforcing bars crossing the interface between slabs. Of particular interest was the verification that no horizontal shear slip occurred between the two slabs and that the deck acted as a fully composite????? member to failure. One test featured the precast concrete slab by it self, three of the tests investigated the deck behavior? in positive bending with different roughening levels applied to the top of the precast concrete slab, and the fifth test was performed in negative bending (upside down). Nonlinear prediction analyses were? conducted for each of the tests, including the formation and spreading of fiexural cracking along the deck and plastic hinging at the critical section in the center of the span. Test results, supported by detailed? structural analyses, demonstrated that there was no horizontal shear slip between the precast concrete panels and cast-in-place slabs, allowing them to respond in flexure as a single composite slab.?
机译:align =“ left”>在圣地亚哥州立大学结构工程实验室,以简单的弯曲到破坏的方式对五个预制的预应力混凝土桥面板进行了全面的结构测试。该测试的目的是向Caltrans证明预制混凝土面板与现浇浇筑顶板在弯曲作用下的复合作用,因此可用于?加州桥梁。为了确保整个甲板宽度能够有效抵抗施加的载荷,在载荷和反作用点处使用钢板宽度的钢工字梁。氯丁橡胶轴承?支架上装有防滑垫,以允许甲板末端自由旋转。每个桥面甲板均由预制的预应力混凝土面板组成,并带有?现浇浇铸板,没有钢筋穿过板之间的界面。特别令人感兴趣的是,验证在两个平板之间没有发生水平剪切滑移,并且甲板充当了完全复合材料的角色。失败的成员。一项测试以预制混凝土板为特色,其中三项测试了甲板的性能?在预制混凝土板的顶部施加不同粗化度的正弯曲,然后进行负弯曲(倒置)进行第五次测试。非线性预测分析是?为每个测试进行了测试,包括沿甲板的裂缝性裂纹的形成和扩展以及跨度中心关键部分的塑性铰。测试结果,辅以详细?结构分析表明,预制混凝土板和现浇板之间没有水平剪切滑移,从而使它们在弯曲时可以作为单个复合板响应。

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