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带销钉钢筋空心板桥力学性能研究

Study on Mechanical Behavior of Hollow-Core Slab Bridge with Pinned Reinforcement.

作者信息

Chen Jihao, Li Xin, Zhu Qian

机构信息

School of Civil Engineering and Communication, North China University of Water Resources and Electric Power, Zhengzhou 450045, China.

School of Civil Engineering and Architecture, Zhengzhou University of Aeronautics, Zhengzhou 450015, China.

出版信息

Materials (Basel). 2023 Jul 11;16(14):4949. doi: 10.3390/ma16144949.

Abstract

Joints connect prefabricated hollow-core slabs, the key elements of force transmission of hollow-core slab bridges. The joints are easily damaged, which affects the integrity and safety of the hollow-core slab bridge. This paper uses MIDAS FEA NX finite element analysis software to simulate the deep hinge joint segment model, comparing and analyzing the finite element simulation analysis results with the test results, and proposes the critical parameters of the hinge joint interface and concrete damage plasticity. Further, an assembled hollow slab bridge model is established to compare and analyze the force transfer performance of conventional and pinned reinforcement bridges and reveal the deep joint damage evolution process. The results showed that the hollow slab bridge damage appeared first at the hinge joint interface at the load location. Cracks in the joints can develop along the longitudinal and height directions, with the longitudinal crack length reaching 40% of the span. The vertical crack height can get the lower edge of the paving layer, increasing the distance from the load position, and the cracking height decreases symmetrically. Under an ultimate load, the hinge concrete of conventional reinforcement and pinned reinforcement hollow-core slab bridges showed significant damage in 30-70% and 40-60% of the span, respectively. Compared with the conventional reinforcement bridges, the cracking load and ultimate load of the pinned reinforcement bridges increase by 28.57% and 58.14%, respectively, and the relative deflection under 420 kN load reduces by 97.95%. The hollow slab bridges have improved the force performance and thus enhanced the integrity of the hollow-core slab bridges.

摘要

接头连接预制空心板,空心板桥力传递的关键构件。接头易受损,影响空心板桥的整体性和安全性。本文采用MIDAS FEA NX有限元分析软件对深铰接头段模型进行模拟,将有限元模拟分析结果与试验结果进行对比分析,提出铰接头界面的关键参数及混凝土损伤塑性。进一步建立装配式空心板桥模型,对比分析常规配筋桥和销接配筋桥的传力性能,揭示深接头损伤演化过程。结果表明,空心板桥损伤首先出现在加载位置处的铰接头界面。接头处的裂缝可沿纵向和高度方向发展,纵向裂缝长度可达跨径的40%。竖向裂缝高度可到达铺装层下缘,随距加载位置距离增大,裂缝高度对称减小。在极限荷载作用下,常规配筋和销接配筋空心板桥的铰部混凝土分别在跨径的30%-70%和40%-60%范围内出现显著损伤。与常规配筋桥相比,销接配筋桥的开裂荷载和极限荷载分别提高了28.57%和58.14%,420kN荷载作用下的相对挠度减小了97.95%。空心板桥改善了受力性能,从而增强了空心板桥的整体性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd0b/10381870/cb84ca1bf5dc/materials-16-04949-g001.jpg

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