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承压板式墩梁节点传力机理和适用性研究
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Force Transmission Mechanism and Applicability Research on the Pier-beam Joint with Bearing Plates
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    摘要:

    在箱形组合刚构桥墩梁节点位置的受压区箱梁底部设置承压板,可增大受压面积,避免箱梁底板应力集中和局部屈曲.承压板式墩梁节点传力机理与适用性尚不明确,缺乏相应的节点构造设计方法.鉴于此,本文通过验证后的实体有限元计算模型,开展承压板式箱形组合刚构桥试设计,研究承压板式墩梁节点的传力机理和荷载占比,建立墩梁节点内力计算方法,开展承压板构造参数和适用性分析.研究结果表明:在试设计构造尺寸和材料特性确定基础上,承压板式墩梁节点在轴压力和轴拉力作用时,主要通过箱梁腹板传力,占比分别约为60%和50%.弯矩传力机理与轴力类似,剪力作用下,剪力背向侧主要通过纵向加劲肋传力,占比约为-80%;剪力同向侧主要通过承压板传力,占比约为80%.理论计算结果与有限元计算结果偏差不大于8.8%,可用于承压板式墩梁节点内力计算.建议承压板构造设计中,相对横向间距取1/6、相对板厚取1.当墩高超过15 m,梁墩线刚度比大于0.047,承压板式墩梁节点的钢梁应力小于常规形式墩梁节点的钢梁应力;当墩高超过30 m后,采用承压板构造,可显著降低箱形组合刚构桥墩梁节点位置的钢梁应力.

    Abstract:

    Bearing plates installed at the bottom of the box girder in the compression zone at the pier-beam joint of the box-shaped composite rigid frame bridge can increase the compression area and avoid stress concentration and local buckling of the box girder bottom plate. The force transmission mechanism and applicability of bearing plate typed pier-beam joint are not clear. The design method of the joint construction is lacking. According to the verified solid finite element calculation model, the trial design of the box-shaped composite rigid frame bridge with bearing plates is conducted. The force transmission mechanism and load bearing ratio of the bearing plate typed pier-beam joint are analyzed. A calculation method of the internal force of the pier-beam joint is established, and a parameter analysis of the arrangement of bearing plates is carried out. Results indicate that, on the basis of determining the dimensions and material characteristics of the trial design, axial pressure and axial tension are mainly transmitted through the web plate of the girder, accounting for about 60% and 50%, respectively. The force transmission mechanism of bending moment action is similar to that of axial force. The shear force is mainly transmitted through the longitudinal stiffeners on the back side, accounting for about -80%; The shear force is mainly transmitted through the bearing plate on the same side, accounting for about 80%. The deviation between the theoretical calculation results and the finite element calculation results is less than 8.8%. The theoretical calculation can be applied to the internal force calculation of the bearing plate typed pier-beam joint. It is suggested that the relative transverse spacing should be 1/6 and the relative plate thickness should be 1 in the design of bearing plate. When the pier height exceeds 15 m, the beam-pier linear stiffness ratio is greater than 0.047, and the steel girder stress of the bearing plate typed pier-beam joint is less than that of the conventional pier-beam joint. When the pier height exceeds 30m, the steel girder stress at the pier-beam joint of the box-shaped composite rigid frame bridge can be significantly reduced by using the bearing plates.

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黄育凡 ,陈凌杰 ,吴庆雄 ?,秦志清 .承压板式墩梁节点传力机理和适用性研究[J].湖南大学学报:自然科学版,2025,52(7):118~131

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  • 在线发布日期: 2025-07-31
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