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Numerical investigation of internal force transfer mechanism in push-out tests

机译:推出试验中内力传递机理的数值研究

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摘要

The case of a push-out test specimen made of prefabricated slabs connected by means of grouped headed studs is investigated in this study. In order to analyse the behaviour of such a shear connection, an experimental study and a numerical analysis have been developed. This paper deals with the presentation of numerical results linked to the parametric study of several layout and loading conditions. The specific 2D nonlinear finite element model developed by two first authors has been presented in a previous paper. This specific finite element model has been developed in order to avoid convergence problems that sometimes occur with the introduction of contact-friction elements in 3D models. In addition, this simplified 2D model allows reducing considerably the time computation when the model concerns the study of a structure at real scale. This 2D nonlinear model is supposed to approach the 3D problem using a "zone-equivalence" methodology which we briefly recall the theoretical background. Material nonlinear constitutive laws, 4-noded plane elements and frictional contact finite elements were introduced in the model at the steel concrete interface between the girder flange and the concrete slab and between the studs and the filling concrete. Numerical simulations concerned by this work lead to highlight the internal force transfer mechanisms through the specimen for several layouts and loading conditions, such as the stud arrangements, the filling concrete performance, the reinforcement percentage of the slab, the restrain slab conditions and especially the combination of axial and shear loads. These results could be helpful to have a better interpretation of the push-out test measurements in accordance with the specimen arrangement and the test procedure.
机译:在本研究中,研究了由预制板通过成组的带头螺柱连接的推出试件的情况。为了分析这种剪切连接的行为,已经进行了实验研究和数值分析。本文介绍了与几种布局和加载条件的参数研究相关的数值结果的表示。先前的论文介绍了由两位第一作者开发的特定2D非线性有限元模型。开发这种特定的有限元模型是为了避免在3D模型中引入接触摩擦元素时有时会出现的收敛问题。另外,当该简化的2D模型涉及实际结构的研究时,该模型可以大大减少时间计算。该2D非线性模型应该使用“区域等效性”方法来解决3D问题,我们简要回顾了理论背景。在该模型中,在大梁翼缘与混凝土板之间以及双头螺栓与填充混凝土之间的钢混凝土界面处,引入了材料非线性本构律,四节点平面单元和摩擦接触有限元。这项工作所涉及的数值模拟导致突出了在几种布局和载荷条件下,通过试件的内力传递机制,例如螺柱布置,填充混凝土的性能,板的增强百分比,约束板的条件,尤其是组合轴向和剪切载荷。这些结果可能有助于更好地解释根据样本布置和测试程序的推出测试结果。

著录项

  • 来源
    《Engineering Structures》 |2013年第7期|140-152|共13页
  • 作者单位

    National Institute of Applied Sciences (INSA), Rennes, France LGCCM - Structural Engineering Research Croup, France;

    National Institute of Applied Sciences (INSA), Rennes, France LGCCM - Structural Engineering Research Croup, France;

    National Institute of Applied Sciences (INSA), Rennes, France LGCCM - Structural Engineering Research Croup, France;

  • 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
  • 关键词

    Contact-friction; 2D/3D FE; Group of studs; Push-out test; Composite structures;

    机译:接触摩擦;2D / 3D FE;组螺柱;推出测试;复合结构;

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