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Experimental and theoretical investigation of column-flat slab joint ductility

机译:平板柱平板延性的试验和理论研究

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摘要

Most modern seismic codes use ductility as one of the basic design parameters. Actually, ductility defines the ability of a structure or its elements to absorb energy by plastic deformations. Until the end of the previous century ductility was defined qualitatively. Most research works related to ductility are focused on structural elements' sections. This study was aimed at complex experimental and theoretical investigation of flat slab-column joints ductility. It is one of the first attempts to obtain quantitative values of joint's ductility for the case of high strength concrete columns and normal strength concrete slabs. It was shown that the flat slab-column joint is a three-dimension (3D) element and its ductility in horizontal and vertical directions are different. This is the main difference between ductility of elements and joint ductility. In case of flat slab-column joints, essential contribution to joint's ductility can be obtained due to the slab's confining effect. Based on experimental data, the authors demonstrate that flat slab-column joint's ductility depends on the joint's confining effect in two horizontal and vertical directions. Furthermore, the influence of slab-load intensity and slab reinforcement ratio on the joint's ductility is performed in this study. It is also demonstrated that the effect of the ratio between the slab thickness and the column's section dimension on the ductility parameter is significant. Equations for obtaining a quantitative value of a flat slab-column joint's ductility parameter were developed.
机译:大多数现代地震法规将延性用作基本设计参数之一。实际上,延展性定义了结构或其元素通过塑性变形吸收能量的能力。直到上个世纪末,延性一直是定性的。大多数与延性有关的研究工作都集中在结构单元的截面上。这项研究的目的是对平板-圆柱节点延性的复杂实验和理论研究。对于高强度混凝土柱和普通强度混凝土板,这是首次获得接头延性定量值的尝试之一。结果表明,平板平板柱节点是三维(3D)元素,其水平和垂直方向的延展性不同。这是元素延性和关节延性之间的主要区别。在平板平板-柱节点的情况下,由于平板的约束作用,可以对节点的延展性做出重要贡献。基于实验数据,作者证明了平板平板-柱节点的延性取决于节点在两个水平和垂直方向上的约束作用。此外,在这项研究中,还进行了板载荷强度和板增强比对节点延性的影响。还证明了板厚与柱截面尺寸之比对延性参数的影响是显着的。建立了用于获得平板-柱接头延性参数定量值的方程。

著录项

  • 来源
    《Materials & design》 |2009年第8期|3158-3164|共7页
  • 作者

    I. Iskhakov; Y. Ribakov; A. Shah;

  • 作者单位

    Department of Civil Engineering, Ariel University Center of Samaria, Ariel, Israel;

    Department of Civil Engineering, Ariel University Center of Samaria, Ariel, Israel;

    Graduate School of Information Science and Engineering, Tokyo Institute of Technology, Tokyo, Japan;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    A. Concrete; F. Plastic behavior; G. Destructive testing;

    机译:A.混凝土;F.可塑性行为;G.破坏性测试;

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