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Evaluation du coefficient d'orientation dans les betons renforces de fibres metalliques.

机译:金属纤维增强混凝土中取向系数的评估。

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摘要

Ultra high performance fiber reinforced concrete's (UHPFRC) offer exceptional mechanical properties and durability. However difficulties predicting the uniaxial tensile performance and the high cost limit its use in the construction industry. Fiber orientation, density and distribution can each influence its mechanical behavior. The goal of the research work presented in this Master's Thesis is to propose a methodology to predict the flexural behavior of UHPFRC beams considering only the fiber orientation factor.;First, an image processing program was developed on MatlabRTM. The program automatically determines the fiber quantity, distribution, and orientation within a concrete section.;Then an initial experimental phase of uniaxial tensile tests with different fiber orientations was performed. The fiber orientation within the tensile specimens was controlled using inclined separators during casting. The uniaxial tensile tests showed that depending on the fiber orientation, the tensile strength can range from 4,5 MPa to 12MPa and the length of hardening behavior can be reduced up to 95%. The results indicate that fiber orientation is the dominant factor affecting the UHPFRC tensile behavior. A direct tensile law for different fiber orientation factors was then developed empirically from this experimental phase.;A second experimental phase on beams in flexure was performed to study the local effects of forms and steel reinforcement on the fiber orientation factor. Core samples of reinforced and unreinforced beams demonstrated that the reinforcement bar and the forms do not affect the fiber orientation. Furthermore, the bending tests were used to validate finite element models where the tensile behavior of the UHPFRC was determined using the measured fiber orientation factor and the empirical formulas developed in the first experimental phase.;The finite element models reproduced the tensile behavior well. The models confirmed that using an average orientation factor is sufficient to predict the flexural capacity of UHFRC beams with 96% accuracy.
机译:超高性能纤维增强混凝土(UHPFRC)具有出色的机械性能和耐用性。然而,难以预测单轴拉伸性能和高成本限制了其在建筑行业中的使用。纤维的取向,密度和分布都会影响其机械性能。本硕士学位论文中提出的研究工作的目的是提出一种仅考虑纤维取向因素来预测UHPFRC梁弯曲行为的方法。首先,在MatlabRTM上开发了图像处理程序。该程序会自动确定混凝土截面内的纤维数量,分布和方向。然后执行具有不同纤维方向的单轴拉伸试验的初始实验阶段。在浇铸过程中,使用倾斜隔板控制拉伸试样中的纤维取向。单轴拉伸试验表明,取决于纤维的取向,拉伸强度的范围可以从4.5 MPa到12 MPa,硬化行为的长度可以减少到95%。结果表明,纤维取向是影响UHPFRC拉伸性能的主要因素。然后,从该实验阶段凭经验得出了针对不同纤维取向因子的直接拉伸定律。;在弯曲梁上进行了第二个实验阶段,以研究形状和钢筋对纤维取向因子的局部影响。钢筋和非钢筋梁的核心样本表明,钢筋和形式不影响纤维取向。此外,弯曲测试被用于验证有限元模型,其中使用测量的纤维取向因子和在第一实验阶段开发的经验公式确定UHPFRC的拉伸行为。有限元模型很好地再现了拉伸行为。这些模型证实,使用平均定向因子足以以96%的精度预测UHFRC梁的抗弯能力。

著录项

  • 作者

    Delsol, Sebastien.;

  • 作者单位

    Ecole Polytechnique, Montreal (Canada).;

  • 授予单位 Ecole Polytechnique, Montreal (Canada).;
  • 学科 Engineering Civil.
  • 学位 M.Sc.A.
  • 年度 2012
  • 页码 229 p.
  • 总页数 229
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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