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Experimental investigation into stud shear connections under combined shear and tension forces

机译:剪力和拉力共同作用下双头螺栓剪切连接的试验研究

摘要

In order to investigate structural behaviour of stud shear connections with both solid and composite slabs under combined shear and tension forces, a systematic experimental investigation with a total of six test series are conducted. These include 11 standard push-out tests where the shear connections are under shear forces, and 11 modified push-out tests where the shear connections are under combined shear and tension forces. It should be noted that the testing method of the standard push-out tests recommended in EN 1994-1-1 is adopted, and headed shear studs are installed in either “favourable” or “unfavourable” positions of decking troughs. Test results of all the 22 push-out tests are fully presented, and these include typical modes of failure, measured load-slippage curves as well as shear resistances of the test specimens. It is found that the shear resistance of the shear connection should be reduced with a factor of 0.84 for the case of a solid concrete slab, and a factor of 0.75 for the case of a composite slab, provided that the tension force Tn is smaller than or equal to 0.267 Qm where Qm is the shear resistance of the shear connection. These data will be adopted in subsequent numerical investigations for calibration of advanced finite element models. These models will then be used to perform parametric studies on stud shear connections with a wide range of geometrical configurations and loading conditions to provide additional data for formulation of design rules.
机译:为了研究在组合剪力和拉力作用下,实心和复合板的双头螺栓剪切连接的结构性能,进行了总共六个测试系列的系统实验研究。其中包括11个标准推顶试验(剪切连接在剪切力作用下)和11个修改后的推挤测试,剪切连接在剪切力和拉力的共同作用下。应该注意的是,采用了EN 1994-1-1中推荐的标准推出试验的测试方法,并且在甲板槽的“有利”或“不利”位置安装了带顶的抗剪螺柱。完整介绍了所有22个推出试验的测试结果,其中包括典型的破坏模式,测得的载荷滑移曲线以及试样的抗剪强度。已发现,如果拉力Tn小于实心混凝土板,则抗剪连接的抗剪强度应降低0.84倍,复合板应降低0.75倍。或等于0.267 Qm,其中Qm是剪切连接的剪切阻力。这些数据将在后续的数值研究中采用,用于高级有限元模型的校准。然后,这些模型将用于对具有多种几何构型和载荷条件的双头螺栓剪切连接进行参数研究,从而为制定设计规则提供更多数据。

著录项

  • 作者

    Shen MH; Chung KF;

  • 作者单位
  • 年度 2017
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  • 原文格式 PDF
  • 正文语种 eng
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