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Preliminary Collapse Simulation of a Reinforced Concrete Flat Plate Substructure Using Spring Connection Modelling

机译:弹簧连接建模对钢筋混凝土平板下部结构的初倒塌模拟

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摘要

To investigate progressive collapse behavior of reinforced concrete (RC) flat plate structures, a reliable and efficient numerical approach is developed in this study using spring connection modelling. This connection unit aims to simulate complicate punching shear behavior at critical regions surrounding the columns. Five springs are used as the connection elements: two for flexural and integrity steel bars and three for concrete contributions. The flexural and integrity steel bars embedded in the columns are modeled explicitly, which enables the model to present the structural behavior post punching shear failure. Bending and shear actions are represented by two concrete springs. The third concrete spring is assigned axial action property to restrain two end nodes of the connection on the model. In particular, the punching shear spring controls the connection unit when punching shear failure occurs. To apply the connection unit, the regions of slab-column connections are partitioned from the slab regions according to the critical shear surfaces. Then the connection unit links two corresponding nodes on the two edges formed from the partition. A physical experiment of a RC flat plate substructure under progressive collapse is simulated. Result comparison demonstrates that the numerical model has the capability to capture the structural behavior in progressive collapse. However, further improvement of the modelling technique is necessary to enhance numerical accuracy.
机译:为了研究钢筋混凝土(RC)平板结构的渐进倒塌行为,在本研究中使用弹簧连接模型开发了可靠而有效的数值方法。该连接单元旨在模拟圆柱周围关键区域的复杂冲压剪切行为。五个弹簧用作连接元件:两个用于弯曲和整体性钢筋,三个用于混凝土。显式地模拟了嵌入柱中的弯曲钢筋和整体钢筋,从而使模型能够显示出冲剪破坏后的结构行为。弯曲和剪切作用由两个混凝土弹簧代表。第三混凝土弹簧被赋予轴向作用特性,以约束模型上连接的两个末端节点。特别地,当发生冲剪故障时,冲剪弹簧控制连接单元。为了应用连接单元,根据临界剪切面将平板-柱连接的区域与平板区域分开。然后,连接单元在由分区形成的两个边缘上链接两个对应的节点。模拟了钢筋混凝土平板亚结构在渐进塌陷下的物理实验。结果比较表明,数值模型具有捕获渐进塌陷中结构行为的能力。但是,有必要对建模技术进行进一步改进以提高数值精度。

著录项

  • 作者

    Xue Huizhong; Guan Hong; Li Yi;

  • 作者单位
  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 English
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