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Flexural Design and Analysis of Composite Beams with Inverted-T Steel Girder with Ultrahigh Performance Concrete Slab

机译:超高性能混凝土板倒T型钢梁组合梁的抗弯设计与分析

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摘要

This study intends to improve the efficiency of the composite beam combining a slab made of steel fiber-reinforced ultrahigh performance concrete (UHPC) and a steel girder without top flange. To that goal, the experiment is conducted on 24 composite beams fabricated with varying compressive strength of UHPC, steel fiber content, stud spacing, and slab thickness to evaluate the behavior of the studs and the flexural behavior of the composite beam combining the UHPC slab and the inverted-T steel girder. The experimental results show the test members developed sufficient ductile behavior with respect to the slip limit of 6 mm stipulated in Eurocode-4 and regardless of the considered test variables. The experimental ultimate horizontal shear force is seen to be clearly larger than the static strengths of the stud predicted by Eurocode-4 and AASHTO-LRFD. Improved design formulae for the composite beam shall be derived to reflect the UHPC slab thickness.
机译:这项研究旨在提高组合梁的效率,该组合梁由钢纤维增强超高性能混凝土(UHPC)制成的平板和无顶部翼缘的钢梁组成。为此,在24根具有不同抗压强度,钢纤维含量,螺柱间距和板坯厚度的复合梁上进行了实验,以评估螺柱的性能以及结合UHPC板和复合板的复合梁的挠曲性能。倒T型钢梁。实验结果表明,与考虑的测试变量无关,测试构件在Eurocode-4中规定的6 mm滑移极限方面具有足够的延展性。可以看出,实验极限水平剪切力明显大于Eurocode-4和AASHTO-LRFD预测的双头螺栓的静态强度。应推导出复合梁的改进设计公式,以反映UHPC板坯的厚度。

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