简支T梁桥平板型桥面连续受力特性研究
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浙大城市学院

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浙江省自然科学基金资助项目(LTGG23E080001)


WANG Chengquan1,DENG Guoliang1,WANG Kongjie1,WANG Xinquan1*,LI Xiao1,LUO Dajiang2,HUANG Yifang3(1.School of Civil Engineering and Architecture, East China Jiaotong University, Nanchang 330013, China;
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    摘要:

    【目的】本研究旨在解决传统多跨简支梁桥因混凝土开裂和设计缺陷导致的耐久性降低和腐蚀问题,提出了一种新型钢-混凝土组合平板型桥面连续构造(简称平板型桥面连续)。该设计通过使桥面在正弯矩作用下表面混凝土受压,有效避免了表面开裂。【方法】本研究以一座三跨简支梁桥为工程背景,通过建立精细化有限元模型对平板型桥面连续和传统拉杆式桥面连续的简支梁桥在不同车辆荷载下的变形和受力特性进行了有限元数值仿真分析。【结果】结果显示,在跨中荷载和偏载作用下,传统拉杆式桥面连续的最大拉应力分别为1.16MPa和4.5MPa,而新型平板型桥面连续则表现为上表面处于受压受力状态。此外,对比分析表明在超载和抗倾覆条件下,新型平板型桥面连续的简支梁桥主梁跨中横断面挠度差上分别减少了24.50%和13.43%。【结论】结果表明新型平板型桥面连续能够有效防止桥面发生开裂,同时在提高桥梁抗倾覆方面具有明显优势,为多跨简支梁桥设计与改造提供了新思路。

    Abstract:

    【Objective】This study aims to address the reduced durability and corrosion issues of traditional multi-span simply supported beam bridges caused by concrete cracking and design flaws. A novel steel-concrete composite flat slab continuous bridge deck structure (referred to as the flat slab continuous) is proposed. This design effectively prevents surface cracking by subjecting the surface concrete to compression under positive bending moments.【Method】With a three-span simply supported beam bridge as the engineering context, this research conducted finite element numerical simulation analysis on the deformation and force characteristics of the flat slab continuous and the traditional tie-rod continuous simply supported beam bridges under various vehicle loads by establishing a detailed finite element model.【Result】The results indicate that under mid-span load and off-center load, the maximum tensile stresses for the traditional tie-rod continuous were 1.16 MPa and 4.5 MPa, respectively, while the novel flat slab continuous exhibited a state of compression on the upper surface. Furthermore, comparative analysis shows that under overload and anti-tipping conditions, the deflection difference at the mid-span cross-section of the main beam for the flat slab continuous simply supported beam bridge was reduced by 24.50% and 13.43%, respectively.【Conclusion】The findings demonstrate that the flat slab continuous can effectively prevent the occurrence of deck cracking and has a significant advantage in improving the bridge"s anti-tipping performance, offering a new perspective for the design and retrofitting of multi-span simply supported beam bridges.

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  • 收稿日期:2024-11-02
  • 最后修改日期:2024-12-13
  • 录用日期:2025-03-01
  • 在线发布日期: 2026-03-19
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