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首页> 外文期刊>Journal of bridge engineering >Modeling the Shear Connection in Adjacent Box-Beam Bridges with Ultrahigh-Performance Concrete Joints. I: Model Calibration and Validation
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Modeling the Shear Connection in Adjacent Box-Beam Bridges with Ultrahigh-Performance Concrete Joints. I: Model Calibration and Validation

机译:使用超高性能混凝土接头对相邻箱梁桥的剪力连接建模。 I:模型校准和验证

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Recent research on ultrahigh-performance concrete (UHPC) for connection elements in highway bridges indicates an improvement in the performance of the overall bridge superstructure. However, there is limited information on the effect of the material and bond strength of the UHPC on the load transfer mechanism between adjacent box girders. A three-dimensional finite-element (FE) model was developed to study the interface between UHPC and high-strength concrete (HSC) highway bridge connections. The UHPC-HSC interface was modeled using traction-separation, damage initiation criteria, and damage evolution while taking into account adhesion, friction, and the nonlinear material behavior. Material properties were determined directly from laboratory testing, and the interface parameters were identified through model calibration using direct tension test results and friction coefficients reported in the previous work. The model was validated by simulating the laboratory tests conducted at the Federal Highway Administration (FHWA) Turne-rFairbank Highway Research Center (TFHRC), and good agreement between numerical and experimental results was obtained. Finally, numerical simulations of two adjacent box-girder models using the proposed interface parameters and other interface models from past research were compared, and the results highlight the importance of using a high-fidelity model to accurately represent the system behavior. (C) 2017 American Society of Civil Engineers.
机译:公路桥梁连接元件的超高性能混凝土(UHPC)的最新研究表明,整个桥梁上部结构的性能有所提高。但是,关于UHPC的材料和粘结强度对相邻箱形梁之间荷载传递机制的影响的信息有限。建立了三维有限元(FE)模型,以研究UHPC和高强混凝土(HSC)公路桥梁连接之间的界面。 UHPC-HSC界面使用牵引分离,损伤起始标准和损伤演变建模,同时考虑了附着力,摩擦和非线性材料行为。材料特性是直接从实验室测试中确定的,界面参数是通过使用先前拉伸报告的直接拉伸测试结果和摩擦系数通过模型校准来确定的。该模型通过模拟在美国联邦公路管理局(FHWA)的Turne-rFairbank公路研究中心(TFHRC)进行的实验室测试进行了验证,并且在数值和实验结果之间取得了良好的一致性。最后,比较了使用拟议的接口参数和过去研究中的其他接口模型对两个相邻箱梁模型进行的数值模拟,结果突出了使用高保真模型准确表示系统行为的重要性。 (C)2017年美国土木工程师学会。

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