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Experimental Study On The Ultimate Bending Resistance Of Steel Tub Girders With Top Lateral Bracing

机译:顶部侧向支撑钢管混凝土梁极限抗弯性能试验研究。

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摘要

This paper presents a series of experimental test results on the flexural resistance of a steel tub girder with top lateral bracing. Three test girders were fabricated with high tensile strength SM570 TMC (nominal yield strength, F_y = 460 MPa) steel plates. The test girders had a half-size cross section of practical bridge girders whose depth and length were approximately 1000 mm and 12,000 mm, respectively. The pure bending test was conducted on the tub girder specimens using a universal test machine. Incremental nonlinear analyses were also performed on the tested girders and compared with the tested results. The incremental nonlinear analysis with finite element modeling was confirmed to be applicable to simulating inelastic buckling behavior and evaluating the ultimate bending strength. The effect of cross-frames and top lateral bracings on flexural strength was then discussed. The flexural resistance capacity specified in the AASHTO LRFD design specifications was compared with the evaluated ultimate strengths, and the validity of the design specifications was verified.
机译:本文介绍了一系列带有顶部侧向支撑的钢管梁抗弯强度的实验测试结果。用高抗拉强度SM570 TMC(标称屈服强度,F_y = 460 MPa)钢板制造了三个测试梁。试验梁的实用桥梁梁的横截面为一半,其深度和长度分别约为1000毫米和12,000毫米。使用万能试验机对桶形梁样本进行纯弯曲试验。还对测试梁进行了增量非线性分析,并将其与测试结果进行了比较。经证实,采用有限元建模的增量非线性分析可用于模拟非弹性屈曲行为和评估极限弯曲强度。然后讨论了横框架和顶部横向支撑对弯曲强度的影响。将AASHTO LRFD设计规范中指定的抗弯强度与评估的极限强度进行比较,并验证了设计规范的有效性。

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