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Experimental study on demountable steel-concrete connectors subjected to combined shear and tension

机译:拆卸钢混凝土连接器进行剪切和张力的实验研究

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摘要

Composite beams are being used increasingly in construction due to their benefits over beams consisting of the steel component alone. In some applications such as in composite coupling beams and infill walls, steel-concrete connectors must resist uplift forces in addition to shear forces. Therefore, there is a need to carry out experimental testing to investigate the performance of steel-concrete connectors under combined loading. Furthermore, the separation of the steel and concrete components is a destructive activity and requires remelting of the steel component if it is to be reused. Remelting requires energy that usually comes from unsustainable resources. Hence, research has been carried out in this paper on demountable steel-concrete connectors as they allow demounting and easy separation of the steel and concrete components and reuse.The performance of three types of steel-concrete connectors subjected to combined shear and tensile loading was investigated experimentally. A pull-out test was carried out to determine the tensile resistance of each type of steel-concrete connector. This was followed by a series of modified push tests to determine the interaction between shear and tension loading. Tensile resistance which had been determined from pull-out tests was applied in increments of 25% to each group followed by shear loading until failure of the steel-concrete connector was observed.Based on the experimental investigation carried out, significant reduction in shear resistance was observed when tension was applied. The results are also compared with existing relationships for headed studs under combined shear and tensile loading to determine which relationship is most reliable in predicting the shear-tension resistance interaction of demountable steel-concrete connectors.
机译:由于它们的优势在于单独的钢组分组成的梁,因此复合梁越来越越来越多地使用。在一些应用中,例如复合耦合梁和填充壁,除了剪切力之外,钢混凝土连接器还必须抵抗隆起的力。因此,需要进行实验测试以研究钢混凝土连接器在组合负载下的性能。此外,钢和混凝土部件的分离是一种破坏性的活性,并且如果要重复使用,则需要重熔钢部件。重熔需要通常来自不可持续资源的能量。因此,在本文中进行了研究,可拆卸钢混凝土连接器,因为它们允许拆卸和易于分离钢和混凝土元件和重复使用。三种类型的钢混凝土连接器进行组合剪切和拉伸载荷的性能实验调查。进行了拉出试验以确定每种钢混凝土连接器的拉伸电阻。接下来是一系列改进的推动试验,以确定剪切和张力负载之间的相互作用。从拉出试验中确定的拉伸抗性以25%的增量施用,然后剪切负载,直到观察到钢混凝土连接器的故障。基于进行的实验研究,抗剪切抗性显着降低在应用张力时观察到。结果也将结果与剪切和拉伸负载下的头部螺柱的现有关系进行了比较,以确定可拆卸钢混凝土连接器的剪切张力相互作用最可靠的关系。

著录项

  • 来源
    《Engineering Structures》 |2019年第15期|110-123|共14页
  • 作者单位

    Western Sydney Univ Sch Comp Engn & Math Penrith NSW Australia;

    Western Sydney Univ Sch Comp Engn & Math Penrith NSW Australia;

    Fujian Agr & Forestry Univ Sch Transportat & Civil Engn Fuzhou Fujian Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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