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大跨混合连续箱梁桥钢混结合段传力机理试验与分析
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Testing and Analysis on Force Transmission Mechanism of Steel-Concrete Joint of Large-span Hybrid Continuous Girder Bridge
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    摘要:

    依托福州马尾大桥设计制作了几何缩尺比为1∶3.5的钢混结合段大比例模型,采用精细化实体有限元方法,开展不同设计荷载组合工况下的静力加载分析,以揭示此类新型钢混结合段在大跨混合连续箱梁桥中的传力机理. 结果表明:承载能力极限最大弯矩组合工况下,试验模型混凝土梁段全截面受压,结合面处顶板混凝土最大压应力为-23.6 MPa、底板钢板最大拉应力为115.8 MPa,均小于材料的设计强度;加载至1.4倍承载能力极限状态工况,钢混结合段试验模型并未出现明显破坏,各关键截面测点的荷载-位移/应变曲线基本呈线性关系,结构始终处于弹性工作状态,表明该钢混结合段的设计具有充足的安全储备;同时钢混结合段沿纵桥向分布的各截面竖向变形没有明显突变,说明该钢混结合段传力平顺,可保证主梁刚度从混凝土箱梁段到钢箱梁段的平稳过渡. 相关研究成果可为今后此类混合连续箱梁桥的设计与施工提供参考.

    Abstract:

    To reveal the force transmission mechanism of a novel steel-concrete joint in the large-span hybrid continuous girder bridges, a large-scale model of a steel-concrete joint with a geometric scaling ratio of 1∶3.5 was designed and fabricated based on the Fuzhou Mawei Bridge. And a refined solid finite element method was also used for static loading analysis under different design load combinations. The results show that, under the load-bearing capacity limit state condition, the concrete girder section of the joint model was fully compressed. The maximum compressive stress of the top-plate concrete at the joint surface was -23.6 MPa, while the maximum tensile stress of the bottom-plate steel was 115.8 MPa. These values were much smaller than the design value of material strength. When under 1.4 times the load-bearing capacity limit state condition, the test model of the steel-concrete joint exhibited no marked damage during the static loading process. The load-displacement/strain curves of measuring points on each control section basically showed a linear relationship, and the structure was always in an elastic working state, indicating that the joint had sufficient safety reserves. The vertical deformation of each section of the steel-concrete joint had no sudden change along the longitudinal direction, indicating that the force transmission of the joint was smooth, which can ensure that the rigidity of the main girder was steadily transitioned from the concrete to the steel box girder section. The relevant research findings can provide a reference for the design and construction of such hybrid continuous girder bridges in the future.

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袁辉辉 ?,黄珍珍 ,吴庆雄 ,林镇海 .大跨混合连续箱梁桥钢混结合段传力机理试验与分析[J].湖南大学学报:自然科学版,2023,(7):44~56

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  • 在线发布日期: 2023-07-31
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