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Experimental study on long spanning composite cellular beam under flexure and shear

机译:大跨度组合蜂窝梁受弯剪试验研究

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摘要

This paper describes a sequence of experiments on a long-span asymmetric composite cellular beam. This type of beam has become very popular, combining the composite action between the steel and concrete with the increased section depth, compared with more commonly used solid-web I sections. Openings in the steel web also reduce the self-weight and can accommodate the passage of service ducts. Eurocode 4 recommends a high degree of shear connection for asymmetric composite beams despite the practical difficulties in achieving this. Recent research suggests that the required degree of shear connection could be reduced, particularly for beams that are unpropped during construction. However, little test data exists to verify the behaviour of unpropped composite cellular beams. Therefore two series of testswere conducted on a 15.26mlong asymmetric composite cellular beamwith regular circular openings and an elongated opening at themid-span. The degree of shear connection was 36%, less than half of that recommended in Eurocode 4, and the beam was unpropped during construction. The beam was subjected to uniformly distributed loading and shear load during the tests. The end-slip, mid-span vertical deflection, shear connector capacity and strain distribution were examined. The beam failed at an applied uniform load of 17.2 kN/m2 (3.4× design working load 5.0 kN/m2). The member withstood an applied shear load that was 45% higher than predicted, and exhibited a Vierendeel mechanism at the elongated opening. Overall, these tests demonstrated the potential of unpropped composite cellular beams with low degrees of shear connection.
机译:本文描述了大跨度不对称复合蜂窝梁的一系列实验。与更常用的实心腹板I型截面相比,这种类型的梁已经非常流行,将钢和混凝土之间的复合作用与增大的截面深度相结合。钢腹板上的开口也减少了自重,可以容纳维修管道的通道。尽管在实现这一目标方面存在实际困难,但欧洲规范4建议对非对称组合梁采用高剪切力连接。最近的研究表明,可以减少所需的剪切连接度,特别是对于在施工过程中未支撑的梁。但是,几乎没有测试数据可以验证无支撑复合蜂窝梁的行为。因此,在15.26m长的不规则复合蜂窝梁上进行了两个系列的测试,该梁具有规则的圆形开口和中跨处的细长开口。剪力连接的程度为36%,不到欧洲规范4推荐的一半,并且在施工过程中梁没有支撑。在测试过程中,梁承受了均匀分布的载荷和剪切载荷。检查了端滑,中跨竖向挠度,抗剪连接器的能力和应变分布。梁在施加的17.2 kN / m2的均匀载荷(3.4倍设计工作载荷5.0 kN / m2)下失效。该构件承受的施加的剪切载荷比预期的高45%,并且在细长的开口处表现出Vierendeel机理。总体而言,这些测试证明了具有低剪切连接度的无支撑复合蜂窝梁的潜力。

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