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Shear strength of reinforced concrete members subjected to monotonic and cyclic loads.

机译:承受单调和循环载荷的钢筋混凝土构件的抗剪强度。

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摘要

The shear capacity of reinforced concrete members subjected to monotonic loads was investigated and used as the basis to formulate an expression to calculate the strength of members subjected to load reversals.; The monotonic shear capacity of slender beams, deep beams, walls, and columns was calculated by superposition of components related to arch-action, truss-action, friction, and from a contribution of the uncracked compression zone, which is related to the tensile strength of concrete. A procedure to calculate the shear strength of members in the transition phase from deep to slender members was formulated, so that the proposed expression can be used for all geometries considered. The shear strength of members with and without web reinforcement was analyzed. The proposed model was calibrated using an extensive database of test results, and was found to give good results compared to other analysis models in an n-fold cross validation.; The resistance to lateral load reversals was investigated for two failure modes: failure due to degradation of the flexural strength, and failure due to degradation of the shear strength. The degradation of flexural strength is expressed in terms of a linear slope derived from the displacement and load at yielding of the tensile reinforcement to the displacement at 80 percent of the yield load. Shear failure was defined by yielding of the transverse reinforcement. The degradation of shear strength was found to be non-linear with respect to the limiting displacement, and is formulated as a reduction factor for the initial shear strength. Degradation functions for the decrease in strength of the contributing arch and compression zone components, and for the truss mechanism are presented.
机译:研究了钢筋混凝土构件在单调荷载作用下的抗剪承载力,并以此为基础,建立了计算荷载反向作用构件强度的表达式。细长梁,深梁,墙和柱的单调抗剪承载力是通过与拱形作用,桁架作用,摩擦力相关的各个分量的叠加以及未破裂的压缩区的贡献(与抗拉强度有关)来计算的混凝土。制定了计算从深到细构件过渡阶段构件抗剪强度的程序,从而使所提出的表达式可用于所有考虑的几何形状。分析了具有和不具有腹板加强件的构件的剪切强度。使用广泛的测试结果数据库对提出的模型进行了校准,发现与其他分析模型相比,该模型在n倍交叉验证中具有良好的结果。研究了两种破坏模式对横向载荷反向的抵抗力:由于抗弯强度降低引起的破坏和由于剪切强度降低引起的破坏。抗弯强度的降低用线性斜率表示,该线性斜率是由抗拉钢筋屈服时的位移和载荷到屈服载荷的80%时的位移引起的。剪切破坏由横向钢筋的屈服定义。发现抗剪强度相对于极限位移是非线性的,并且被公式化为初始抗剪强度的减小因子。给出了降低作用拱和压缩区构件强度以及桁架机制的退化函数。

著录项

  • 作者

    von Ramin, Malte.;

  • 作者单位

    The University of Kansas.;

  • 授予单位 The University of Kansas.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 517 p.
  • 总页数 517
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

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