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Experimental and numerical study on an innovative girder-abutment joint in composite bridges with integral abutments

机译:一体式桥台复合桥中新型桥台对接的试验与数值研究

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摘要

For the convenience in the construction of composite bridges with integral abutments, this paper proposes an innovative girder-abutment joint. In this joint, the bottom plate of steel girder is connected to a pre-embedded plate, and the concrete at the girder end is cast after the erection of the girder. Perfobond connectors are also set on the inserted plate and the embedded plate to reduce stress concentration in the concrete abutment. Experimental test and nonlinear FE analysis were conducted to validate the joint performance in the most unfavorable condition in shear force and moment. Results show that, compared to the joint without connectors, the initial stiffness of the proposed joint is higher by 50% and 33% in shear loading and moment loading respectively, and the strength in moment loading is higher by 84%. The initial stiffness of the joint is highly affected by inserted plate connector quantity, while the strength in moment loading is highly affected by the connector quantity on both the inserted plate and the embedded plate. The failure process of the joint in moment loading can be divided with the failure of inserted plate connectors, the yielding of embedded plate edges, and the crushing of the concrete beneath steel girder. Under the design load, the perfobond connectors can take 70% of the shear force and 27% of the moment. (C) 2018 Elsevier Ltd. All rights reserved.
机译:为了方便建造带有整体式桥台的复合桥,本文提出了一种创新的箱梁-桥台节点。在该接头中,钢梁的底板连接到预埋板上,并且在梁的架设之后浇筑梁端的混凝土。 Perfobond连接器也设置在插入板和嵌入式板上,以减少混凝土基台中的应力集中。进行了实验测试和非线性有限元分析,以验证在最不利的剪力和弯矩条件下的接头性能。结果表明,与无连接器的接头相比,所提出的接头的初始刚度在剪切载荷和弯矩载荷下分别提高了50%和33%,在弯矩载荷下的强度提高了84%。接头的初始刚度受插入的板连接器数量的很大影响,而力矩加载的强度则受插入的板和嵌入式板上的连接器数量的很大影响。节点在弯矩荷载下的破坏过程可以分为插入的板式连接器的破坏,嵌入式板边缘的屈服以及钢梁下方混凝土的破碎。在设计载荷下,全粘结连接器可承受70%的剪切力和27%的弯矩。 (C)2018 Elsevier Ltd.保留所有权利。

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