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Push-out tests and analytical study of shear transfer mechanisms in composite shallow cellular floor beams

机译:组合浅蜂窝楼板梁的推力试验和剪切传递机理分析研究

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摘要

The shear transferring mechanisms of composite shallow cellular floor beams are different with the conventional headed shear studs, and have not been investigated previously. This paper presents the experimental and analytical studies of the shear transferring mechanisms with the aims to provide information on their shear resistance and behaviour. The composite shallow cellular floor beam is a new type of composite floor beam that consists of an asymmetric steel section with circular web openings and concrete slabs incorporated between the top and bottom flange. The unique feature of the web openings allows tie-bars, building services and ducting to pass through the structural depth of the floor beam, creating an ultra-shallow floor beam structure. The shear connection of the composite shallow cellular floor beam is formed innovatively by the web openings, as the in-situ concrete passes through the web openings may or may not include the tie-bars or ducting to transfer the longitudinal shear force. In total, 24 push-out tests were carried out to investigate the shear connection under the direct shear force. The effect of loading cycles on the shear connection was also investigated. The failure mechanisms of the shear connection were extensively studied, which had led to the development of a calculation method of shear resistance for the shear connection.
机译:复合浅蜂窝楼板梁的剪力传递机理与常规的带头剪力柱不同,并且以前尚未进行过研究。本文介绍了剪切传递机理的实验和分析研究,目的是提供有关其剪切强度和性能的信息。蜂窝状浅层复合楼板梁是一种新型的复合楼板梁,它由具有圆形腹板开口的不对称钢型材和顶部和底部法兰之间的混凝土板组成。腹板开口的独特功能允许拉杆,建筑服务和管道穿过地板梁的结构深度,从而形成超浅的地板梁结构。当现场混凝土通过腹板开口时,复合浅蜂窝楼板梁的抗剪连接创新性地由腹板开口形成,因为原位混凝土可能包括也可能不包括连接杆或用于传递纵向剪力的管道。总共进行了24次推出试验,以研究在直接剪切力作用下的剪切连接。还研究了加载循环对剪切连接的影响。对剪切连接的破坏机理进行了广泛的研究,从而导致了剪切连接抗剪力计算方法的发展。

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  • 作者

    Huo, B. Y.; D'Mello, C.;

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  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 en
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