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Shear behavior of steel fiber reinforced concrete beams without stirrup reinforcement.

机译:无箍筋的钢纤维混凝土梁的抗剪性能。

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摘要

This research aims to study: (1) the behavior and ultimate shear strength of steel fiber reinforced concrete (SFRC) beams; (2) the possibility of using steel fibers as minimum shear reinforcement in reinforced concrete (RC) beams; and (3) the effectiveness of steel fibers as a means to reduce shear size effect in RC beams. A total of 28 simply-supported beams with a shear span-to-depth ratio of 3.5 were subjected to monotonically-increased, concentrated load. Target concrete compressive strength for all beams was 6000 psi. The studied parameters included fiber type, fiber volume fraction (between 0.75 and 1.5%), longitudinal tension reinforcement ratio, and beam depth (18 in. or 27 in.). Three types of steel fibers were considered, all with hooks at their ends. Two of the fibers evaluated were 1.2 inch long, with aspect ratio of either 55 or 80. The third type of fiber investigated was 2.36 inch long, with an aspect ratio of 80. The 30 mm long fiber with an aspect ratio of 80 was made out of a high-strength (330 ksi) wire, while the other two fiber types were made out of a regular strength (160 ksi) wire. Various longitudinal reinforcement ratios (approximately 1.6, 2.0 and 2.7%) were evaluated to investigate the behavior of SFRC beams failing in shear either prior to or after flexural yielding.;Test results showed that the use of hooked steel fibers in a volume fraction greater than or equal to 0.75% led to a substantial increase in shear strength and significantly reduced the size effect for shear strength of beams with depths of up to 27 in. The results also indicated that hook steel fibers can be used as minimum shear reinforcement in RC beams constructed with normal-strength concrete and within the depth range considered.;A method to predict the shear strength of SFRC beams based on a Pister and Bresler concrete failure criterion and on the average tensile strength of the SFRC obtained from a standard ASTM four-point bending test was proposed. The method proved to provide reasonable predictions of shear strengths for the SFRC beams tested in this experimental program, as well as in previous research reported in the literature. An average tensile strength for the SFRC as a function of fiber volume fraction and aspect ratio was also recommended for the purpose of shear design of SFRC beams.
机译:本研究旨在研究:(1)钢纤维混凝土梁的性能和极限抗剪强度; (2)在钢筋混凝土(RC)梁中使用钢纤维作为最小抗剪钢筋的可能性; (3)钢纤维作为减少RC梁剪切尺寸效应的手段的有效性。总共28条剪切跨度与深度之比为3.5的简支梁承受了单调增加的集中荷载。所有梁的目标混凝土抗压强度为6000 psi。研究的参数包括纤维类型,纤维体积分数(介于0.75和1.5%之间),纵向拉伸增强比和梁深度(18英寸或27英寸)。考虑了三种类型的钢纤维,它们的两端都带有钩子。评估的两条纤维的长为1.2英寸,长宽比为55或80。研究的第三类纤维长为2.36英寸,长宽比为80。制成长30毫米的长宽比为80的纤维。用高强度(330 ksi)的电线制成,而其他两种纤维类型则用常规强度(160 ksi)的电线制成。评估了各种纵向增强比(分别为1.6、2.0和2.7%),以研究SFRC梁在弯曲屈服之前或之后在剪切中失效的行为;测试结果表明,使用钩形钢纤维的体积分数大于等于或等于0.75%会导致抗剪强度的大幅提高,并显着降低深度最大为27 in的梁的抗剪强度的尺寸效应。结果还表明,钩形钢纤维可以用作RC梁的最小抗剪增强材料用正常强度的混凝土构造,并在所考虑的深度范围内。基于Pister和Bresler混凝土破坏准则以及根据标准ASTM四点得出的SFRC的平均抗拉强度,预测SFRC梁抗剪强度的方法提出了弯曲试验。实践证明,该方法可以为在该实验程序以及文献中报道的先前研究中测试的SFRC梁提供合理的抗剪强度预测。还建议将SFRC的平均抗拉强度作为纤维体积分数和纵横比的函数,以用于SFRC梁的抗剪设计。

著录项

  • 作者

    Dinh, Hai H.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 285 p.
  • 总页数 285
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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