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Design and field evaluation of a hybrid FRP composite - Lightweight concrete road bridge

机译:FRP复合轻质混凝土公路桥梁的设计与现场评估。

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The innovative hybrid idea of a FRP composite - lightweight concrete structural system for vehicular bridges has been proposed. Due to the lack of commonly accepted design procedures, the whole designing process was based on FEA and strongly supported by testing. Also, the result - a demonstrative vehicular bridge - was the subject of investigation focused on evaluating the bridge performance under proof load. A prototype hybrid structure with the span length of 21.0 m was subjected to a series of static and dynamic loading tests. The results obtained from the investigation were used to verify the applied design procedure by determining the key behaviour characteristics: stiffness, strength, load transverse distribution, degree of composite action, and dynamic performance and comparing them with design predictions. Linear FEA was found to predict accurately the flexural behaviour of hybrid bridge systems in the elastic range. With respect to the static and dynamic performance, the novel hybrid bridge system fully conformed to design requirements of relevant standards. However, the field test results indicated that the design assumptions seem to be conservative because a significant margin of safety was revealed, particularly in terms of FRP strength. Therefore, some implications of field evaluation results for future designs of hybrid FRP-concrete bridges have been presented in the paper.
机译:已经提出了用于车辆桥梁的FRP复合材料-轻质混凝土结构系统的创新混合思想。由于缺乏普遍接受的设计程序,因此整个设计过程都基于FEA,并得到测试的大力支持。同样,该结果-示范车辆桥梁-是研究的主题,重点是评估在标准载荷下的桥梁性能。跨度为21.0 m的原型混合结构经受了一系列的静态和动态载荷测试。通过确定关键行为特征(刚度,强度,载荷横向分布,复合作用程度和动态性能)并将其与设计预测进行比较,可以将调查所得的结果用于验证应用的设计程序。发现线性有限元分析可准确预测混合桥系统在弹性范围内的弯曲行为。在静态和动态性能方面,新型混合桥系统完全符合相关标准的设计要求。但是,现场测试结果表明,设计假设似乎是保守的,因为揭示了相当大的安全性,特别是在FRP强度方面。因此,本文提出了现场评估结果对混合FRP混凝土桥梁未来设计的一些启示。

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