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预制拼装钢‑UHPC组合桥面板湿接缝抗弯性能研究
作者:
作者单位:

(湖南大学 土木工程学院风工程与桥梁工程湖南省重点实验室 ,湖南 长沙 410082 )

作者简介:

廖万成,男,硕士研究生.E-mail:1286196164@qq.com

通讯作者:

赵华,男,博士,教授.E-mail:zhaohua@hnu.edu.cn

中图分类号:

U448.27

基金项目:

国家自然科学基金资助项目(编号:51978256)


Study on Flexural Behavior of Wet Joints of Prefabricated Steel‑UHPC Composite Bridge Deck
Author:
Affiliation:

(Key Laboratory for Wind and Bridge Engineering of Hunan Province , School of Civil Engineering , Hunan University , Changsha , Hunan 410082 , China )

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    摘要:

    纵肋上置并形成 PBL 剪力连接件的钢 -UHPC 组合桥面板是一种新型桥面结构。该结构采用预制拼装施工,工厂预制钢 -UHPC 组合梁段,现场进行施工组装,相邻钢梁通过焊接形成一体,而相邻 UHPC 桥面板则通过现浇 UHPC 湿接缝连成一体,湿接缝是其薄弱部位。针对该新型结构其湿接缝相关研究较少的问题,该文以某实际工程为背景,完成钢 -UHPC组合桥面板湿接缝足尺模型抗弯性能试验。建立 Abaqus 有限元模型,并采用试验结果校核有限元模型。在此基础上,进行了湿接缝截面模拟方式、钢面板厚度、UHPC 层厚度和燕尾榫角度的有限元模型参数分析。对比美国土木工程师协会(ASCE )、《美国房屋建筑规范 》 (ACI)以及中国 《混凝土结构设计规范 》 (GB 50010 —2010 )关于构件的刚度计算公式,发现中国规范计算值更接近试验值。基于普通钢筋混凝土梁的抗弯刚度计算公式,结合试验数据进行了参数修正,并用有限元模型结果进行了校核。结果表明:钢-UHPC 组合桥面板湿接缝有着优异的延性和刚度;采用摩擦行为模拟湿接缝界面计算成本小且计算效果良好;增加钢板厚度或 UHPC 层厚度均能有效提高构件刚度和承载力;燕尾榫角度对构件的刚度和承载能力影响很小;参数修正后的抗弯刚度计算公式能较好地计算钢 -UHPC 组合桥面板构件跨中位移。

    Abstract:

    Prefabricated steel-UHPC composite bridge deck is a new deck structure system that places the longitudinal rib at the upper layer and forms PBL shear connectors.This structure can be prefabricated in the factory and assembled on-site.The adjacent steel beams are integrated by welding,and the cast in-situ UHPC wet joints connect the adjacent UHPC bridge decks.However,these wet joints represent the structure's vulnerable segments but with little research.To this end,a full-scale model test has been conducted to study the flexural behavior of the wet joints in a steel-UHPC composite bridge deck in a practical project.The Abaqus finite element model was established and verified based on the test results.With experimental validation,the parameters analysis of the finite element model,including the wet-joint simulation method,steel panel thickness,UHPC thickness,and inclination angle of the dovetail tenon,were analyzed.In comparing the stiffness calculation equation within the American Society of Civil Engineers (ASCE ),Building Code Requirements for Structural Concrete (ACI),and the Chinese Code GB 50010 —2010,it is discerned that the calculated values in the Chinese code are closer to the test values.Based on the flexural stiffness calculation equation for ordinary reinforced concrete beams,the corresponding parameters are modified according to the test data,and the theoretical r esults are verified with the finite element results.The results show that the wet joints of the steel-UHPC composite bridge deck have excellent ductility and stiffness.Using friction behavior to simulate a wet joint interface has low calculation costs and well-agreed results.Increasing the thickness of the steel panel or UHPC can effectively enhance the stiffness and bearing capacity of the structure.In contrast,the impact of the inclination angle of the dovetail tenon on the structure's stiffness and bearing capacity is minimal.After parameter modification,the modified calculation equation of flexural stiffness can more accurately predict the mid-span deflection compared with the results by ordinary concrete specification.

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引用本文

廖万成,赵华,安家禾.预制拼装钢‑UHPC组合桥面板湿接缝抗弯性能研究[J].中外公路,2024,44(1):102-110.
LIAO Wancheng, ZHAO Hua, AN Jiahe. Study on Flexural Behavior of Wet Joints of Prefabricated Steel‑UHPC Composite Bridge Deck[J]. Journal of China and Foreign Highway,2024,44(1):102-110.

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  • 收稿日期:2022-10-24
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  • 在线发布日期: 2024-03-18
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