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Structural behaviour of self consolidating steel fiber reinforced concrete beams.

机译:自固结钢纤维增强混凝土梁的结构性能。

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摘要

When subjected to a combination of moment and shear force, a reinforced concrete (RC) beam with either little or no transverse reinforcement can fail in shear before reaching its full flexural strength. This type of failure is sudden in nature and usually disastrous because it does not give sufficient warning prior to collapse. To prevent this type of shear failure, reinforced concrete beams are traditionally reinforced with stirrups. However, the use of stirrups is not always cost effective since it increases labor costs, and can make casting concrete difficult in situations where closely-spaced stirrups are required. The use of steel fiber reinforced concrete (SFRC) could be considered as a potential alternative to the use of traditional shear reinforcement. Concrete is very weak and brittle in tension, SFRC transforms this behaviour and improves the diagonal tension capacity of concrete and thus can result in significant enhancements in shear capacity. However, one of the drawbacks associated with SFRC is that the addition of fibers to a regular concrete mix can cause problems in workability. The use of self-consolidating concrete (SCC) is an innovative solution to this problem and can result in improved workability when fibers are added to the mix.;The thesis presents the experimental results from tests on twelve slender self-consolidating fiber reinforced concrete (SCFRC) beams tested under four-point loading. The results demonstrate the combined use of SCC and steel fibers can improve the shear resistance of reinforced concrete beams, enhance crack control and can promote flexural ductility. Despite extensive research, there is a lack of accurate and reliable design guidelines for the use of SFRC in beams. This study presents a rational model which can accurately predict the shear resistance of steel fiber reinforced concrete beams. The thesis also proposes a safe and reliable equation which can be used for the shear design of SFRC beams.
机译:当受到弯矩和剪力的共同作用时,几乎没有横向钢筋或没有横向钢筋的钢筋混凝土(RC)梁在达到其全部抗弯强度之前可能会发生剪切破坏。这种类型的故障本质上是突然的,通常是灾难性的,因为它在崩溃之前没有给出足够的警告。为了防止这种类型的剪切破坏,传统上用箍筋来加固钢筋混凝土梁。然而,箍筋的使用并不总是具有成本效益的,因为它增加了人工成本,并且在需要紧密间隔的箍筋的情况下会使浇筑混凝土变得困难。钢纤维增强混凝土(SFRC)的使用可以被认为是传统抗剪增强的潜在替代方法。混凝土非常脆弱且拉伸脆,SFRC改变了这种行为并提高了混凝土的对角拉伸能力,因此可以显着提高剪切能力。但是,SFRC的缺点之一是在常规混凝土混合物中添加纤维会导致可加工性问题。自固结混凝土(SCC)的使用是一种创新的解决方案,当将纤维添加到混合物中时可以提高可加工性。;本文介绍了十二种细长的自固结纤维增强混凝土的试验结果( SCFRC)梁在四点荷载下进行了测试。结果表明,SCC和钢纤维的组合使用可以提高钢筋混凝土梁的抗剪强度,增强裂缝控制能力,并提高挠曲延性。尽管进行了广泛的研究,但在梁中使用SFRC仍缺乏准确而可靠的设计准则。这项研究提出了一个可以准确预测钢纤维增强混凝土梁抗剪强度的合理模型。本文还提出了安全可靠的方程,可用于SFRC梁的抗剪设计。

著录项

  • 作者

    Cohen, Michael.;

  • 作者单位

    University of Ottawa (Canada).;

  • 授予单位 University of Ottawa (Canada).;
  • 学科 Engineering Civil.
  • 学位 M.A.Sc.
  • 年度 2012
  • 页码 231 p.
  • 总页数 231
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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