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Experimental Research on Bending-torsion Characteristics of Steel-Concrete Composite Box Beams

机译:钢混凝土复合箱梁弯曲特性的实验研究

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摘要

Due to the axial curvature and the eccentric vehicle loads, bending-torsion couple effects will be generated in the curved steel-concrete composite box beam bridges. To study the bending-torsion couple characteristics, six steel-concrete composite box model beams are tested under the bending-torsion couple loads, with the initial torsion-bending ratios and shear connection degrees as the design parameters. The ultimate bearing capacity, section strain, and interfacial slip of the steel-concrete composite box beams are measured. The test results show that, the fully connected composite beams mainly express bending or bending-torsion failure modes, but the partially connected composite beams are mainly sliding failure modes. The existence of the torque doesn't have great influence on the ultimate bearing capacity and bending moment of the composite box beams. Under the bending-torsion couple loads, there are not only the longitudinal slip between the steel girder and concrete slab of the composite box beam, but also the transverse slip perpendicular to the beam axis.
机译:由于轴向曲率和偏心车载,弯曲扭转耦合效果将在弯曲的钢混凝土复合盒梁桥中产生。为了研究弯曲扭转耦合特性,在弯曲扭转耦合载荷下测试了六种钢混凝土复合盒模型梁,初始扭转弯曲比和剪切连接度作为设计参数。测量了钢混凝土复合盒梁的极限承载力,截面应变和界面滑动。测试结果表明,完全连接的复合梁主要表达弯曲或弯曲扭转失效模式,但是部分连接的复合梁主要是滑动故障模式。扭矩的存在对复合盒梁的最终承载力和弯矩的影响没有很大影响。在弯曲扭转耦合载荷下,不仅有复合盒梁的钢梁和混凝土板之间的纵向滑动,而且还有垂直于梁轴的横向滑动。

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