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Full bridge testing at scale constructed with novel FRP stay-in-place structural forms for concrete deck

机译:使用新颖的FRP固定结构模板进行混凝土桥面规模的全桥测试

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摘要

A system of FRP stay-in-place (SIP) formwork for concrete bridge deck is tested within a full bridge setting, including multiple girders, diaphragms and monolithic connections between components. The 4350×3250 mm footprint of the test bridge represents a 1:2.75 scale of a 12.5 m span full scale bridge. It includes four simulated precast concrete girders, supported at both ends on neoprene bearing pads with integral concrete end diaphragms. The deck is cast compositely on the girders using a novel configuration of FRP SIP forms, except for a control portion constructed using traditional steel reinforcement. Fifteen tests were carried out to investigate the effects of girder spacing, interior versus exterior spans, end- versus middle-sections, loading on versus loading off splices of FRP panels, FRP surface treatment, and splice method. Results show the FRP SIP form system exceeded code requirements, exhibiting safety factors between 2.8 and 4.3 over factored loads. Location of test pads (interior versus exterior span) had a substantial impact on performance, leading to a difference of up to 32% in capacity, with exterior and edge pads exhibiting the lowest loads. Using adhesive bond at concrete-FRP interface mitigated this reduction. Lack of panel-to-panel splice detailing reduced strength by 21% if loading was between splices, but no reduction occurred when loading was directly above splice.
机译:在完整的桥梁环境中测试了用于混凝土桥梁桥面的FRP模板(SIP)模板系统,包括多个大梁,隔板和组件之间的整体连接。测试桥的4350×3250 mm占地面积为12.5 m满量程桥的1:2.75比例。它包括四个模拟的预制混凝土大梁,两端均支撑在带有整体混凝土端隔板的氯丁橡胶承压垫上。除了使用传统钢筋加固的控制部分外,甲板还采用新颖的FRP SIP模板结构在梁上复合浇铸而成。进行了15个测试,以研究大梁间距,内部与外部跨度,端部与中间部分,FRP面板拼接的加载与卸载,FRP表面处理以及拼接方法的影响。结果表明,FRP SIP表单系统超出了代码要求,在分解负荷下的安全系数在2.8到4.3之间。测试垫的位置(内部跨度与外部跨度)对性能有重大影响,导致容量差异高达32%,其中外部和边缘垫的负载最低。在混凝土-FRP界面处使用粘合剂可以减轻这种情况。如果在拼接之间加载,缺少面板到面板的拼接细节会使强度降低21%,但是当加载直接在拼接上方时,强度不会降低。

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