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Correlations between compressive, flexural, and tensile behavior of self-consolidating fiber reinforced concrete.

机译:自固结纤维增强混凝土的压缩,挠曲和拉伸性能之间的相关性。

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摘要

Self-consolidating fiber reinforced concrete (SCFRC) is a hybrid concrete that is both self-compacting and fiber reinforced. Use of SCFRC in reinforced concrete members has been shown to result in improved behavior under shear, flexure, and compression relative to conventional reinforced concrete. The aim of this study was to investigate relationships between the compressive and tensile responses of SCFRC as well as relationships between measured compressive and flexural behavior. Such relationships would simplify characterization of the mechanical behavior of SCFRCs based on a relatively limited number of standard tests. A secondary objective was to quantify and report the effect of introducing different volume fractions of four types of steel fiber to SCCs with compressive strengths of 6 and 10 ksi. Four different hooked-end steel fibers were used in this study at volume fractions between 0.5% and 1.5%.;Results showed that the post-peak slope in compression and the post-cracking flexural and tensile strengths all increased as fiber volume fraction increased, whereas properties up to development of cracking (or peak strength in the case of compression) were not affected by use of fibers. Among the parameters investigated, it was shown that the post-peak compressive response was most closely correlated with the post-crack peak strength in flexure and the flexural strength corresponding to a mid-span deflection of 0.04 in. It was also found that the within-batch coefficient of variation of post-crack peak tensile and flexural loads decreased significantly when T50 was at least 1.0 second, from an average of 40% to 13%. Of the fibers investigated, the RC-80/30-BP had the greatest impact on mechanical performance for a given volume fraction and the 3D RC-55/30-BG fiber had the least.
机译:自固结纤维增强混凝土(SCFRC)是一种既自密实又纤维增强的混合混凝土。与常规的钢筋混凝土相比,在钢筋混凝土构件中使用SCFRC已显示出在剪切,挠曲和压缩作用下可改善其性能。这项研究的目的是调查SCFRC的压缩和拉伸响应之间的关系以及测得的压缩和弯曲行为之间的关系。基于相对有限数量的标准测试,这种关系将简化SCFRC的机械性能表征。第二个目标是量化和报告将四种类型的钢纤维的不同体积分数引入抗压强度分别为6和10 ksi的SCC中的效果。本研究中使用了四种不同的钩端钢纤维,其体积分数在0.5%至1.5%之间;结果表明,随着纤维体积分数的增加,压缩后的峰后斜率以及裂化后的抗折强度和抗张强度均增加,而使用纤维不会影响直至产生裂纹的性能(或在压缩情况下达到峰值强度)。在所研究的参数中,表明峰后压缩响应与裂纹后的弯曲峰值强度以及与0.04 in的跨度挠度相对应的弯曲强度最密切相关。当T50至少为1.0秒时,裂纹后峰值拉伸和挠曲载荷的变化量系数显着降低,从平均值的40%降至13%。在所研究的纤维中,对于给定的体积分数,RC-80 / 30-BP对机械性能的影响最大,而3D RC-55 / 30-BG纤维的影响最小。

著录项

  • 作者

    Tameemi, Waleed.;

  • 作者单位

    University of Kansas.;

  • 授予单位 University of Kansas.;
  • 学科 Civil engineering.
  • 学位 M.S.
  • 年度 2015
  • 页码 398 p.
  • 总页数 398
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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