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Experimental Investigation of the Shear Behavior of Slender Continuous Steel–Concrete Composite Girders in Hogging Moment

机译:细长连续钢-混凝土组合梁在弯矩作用下的剪切行为试验研究

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Abstract Predicting the shear strength of composite girders is critical in improving the efficiency of bridge engineering. To investigate the shear behavior of slender continuous steel–concrete composite girders commonly employed in bridge structures in hogging moment regions, experiments were conducted on three slender two-span continuous composite girders with the moment/shear ratio of the section at the interior support as the test parameter. The test results showed that all three continuous girders experienced web shear buckling and shear failure of the concrete slabs. As the moment/shear ratio increased from 0.59 to 0.89, the shear strength decreased by 12.5. The shear strengths of the specimens were evaluated using the design methods in the existing AASHTO and Eurocode 4 codes, as well as the one proposed by Liang et?al. They were 21–38 and 33–50 higher than those calculated by the existing AASHTO and EC4 codes, respectively, indicating that the two codes yielded very conservative results. A numerical study was conducted using the nonlinear finite element model validated by the test results. The results showed that the moment/shear ratio, concrete slab thickness, and web height-to-thickness ratio all significantly influence the shear strength; the codes will yield increasingly conservative predictions with the increase of concrete slab thickness or web height-to-thickness ratio. Both test and numerical results revealed that the design method proposed by Liang et?al. can better predict the shear strength of continuous composite girders in hogging moment regions.
机译:摘要 预测组合梁的抗剪强度对提高桥梁工程效率至关重要。为研究桥梁结构中常用的细长连续钢-混凝土组合梁的抗剪行为,以内支座截面的弯剪比为试验参数,对3根细长两跨连续组合梁进行了试验。试验结果表明,3根连续梁均发生腹板剪切屈曲和剪切破坏。当弯剪比从0.59增加到0.89时,抗剪强度下降了12.5%。使用现有的AASHTO和欧洲规范4规范中的设计方法以及Liang等人提出的设计方法评估了试样的抗剪强度。它们分别比现有 AASHTO 和 EC4 代码计算的结果高出 21%-38% 和 33%-50%,表明这两个代码产生了非常保守的结果。采用非线性有限元模型进行了数值研究,并经试验结果验证。结果表明:弯剪比、混凝土板厚度和腹板高厚比均对抗剪强度有显著影响;随着混凝土板厚度或腹板高度厚度比的增加,这些规范将产生越来越保守的预测。试验和数值结果表明,梁等人提出的设计方法能够较好地预测连续组合梁在弯矩区域的抗剪强度。

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