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Shear in Steel Fiber Reinforced Concrete Members without Stirrups.

机译:不带箍筋的钢纤维增强混凝土构件的剪切。

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摘要

Hooked end steel fibers were included between 0∼1% by volume to provide enhanced shear resistance to three different types of steel fiber reinforced concrete (SFRC) namely, a regular concrete mix, a lightweight aggregate mix and a high strength mix. The test results at the material scale showed a substantial increase in the shear strength of regular and high strength concrete, but only limited enhancement in the case of the lightweight aggregate concrete. The steel fibers were most efficient in enhancing the post-peak shear performance in the regular concrete, where the cracks progressed around the coarse aggregate. The fractured surface of the specimens revealed that in the lightweight and high strength mixes, cleavage was through the aggregates.;A total of 18 structural SFRC specimens were designed and constructed to capture the behavior of shear-critical SFRC members. The specimens contained longitudinal reinforcement but no stirrups, and utilized different mixes with 1% fiber content selected from the material scale testing phase. The specimens varied in overall height from 308 to 1000 mm with constant shear span to effective depth ratio of 3. The normalized shear stress at failure decreased with an increase in the specimen total depth, indicating that a size effect exists for SFRC specimens without stirrups. However, adding steel fibers into the concrete matrix considerably enhanced the shear capacity compared to the ACI 318-08 and CSA A23.3-04 predictions for RC members without steel fibers.;An analytical shear capacity model was developed based on mechanical principles and empirical measurements of crack geometry observed in the current study for both normal weight and lightweight SFRC members without stirrups. The analytical model was then further simplified to be suitable for use in design. For validation, shear capacity predictions were examined for a large database and gave reliable and accurate predictions. The prediction quality of the proposed design model was also compared against published SFRC shear models from other researchers. Among the SFRC shear models studied, the proposed design model was the most accurate model in prediction quality and relatively the least sensitive model to different common design variables.
机译:钩端钢纤维的含量在0%至1%之间,以增强对三种不同类型的钢纤维增强混凝土(SFRC)的抗剪切性,即普通混凝土混合物,轻质骨料混合物和高强度混合物。在材料规模上的测试结果表明,普通和高强度混凝土的抗剪强度有了实质性的提高,但是对于轻质集料混凝土而言,只有有限的提高。钢纤维最有效地提高了常规混凝土的峰后剪切性能,在常规混凝土中,裂纹在粗骨料周围发展。试样的断裂表面表明,在轻质和高强度混合物中,劈裂是通过骨料进行的。总共设计和构造了18个结构SFRC试样,以记录剪切临界SFRC构件的行为。样品包含纵向钢筋,但没有箍筋,并使用了从材料规模测试阶段中选择的纤维含量为1%的不同混合物。试样的总高度从308到1000 mm不等,剪切跨度恒定,有效深度比为3。断裂时的归一化剪切应力随试样总深度的增加而减小,这表明无箍筋的SFRC试样存在尺寸效应。但是,与ACI 318-08和CSA A23.3-04对无钢纤维的RC构件的预测相比,向混凝土基体中添加钢纤维显着提高了抗剪强度。基于机械原理和经验建立了解析抗剪模型在当前研究中对正常重量和轻型无箍筋的SFRC构件观察到的裂纹几何尺寸进行了测量。然后,将分析模型进一步简化为适用于设计。为了验证有效性,对大型数据库的剪切能力预测进行了检查,并给出了可靠而准确的预测。拟议的设计模型的预测质量也与其他研究人员发表的SFRC剪切模型进行了比较。在所研究的SFRC剪切模型中,所提出的设计模型是预测质量最准确的模型,并且对不同的常见设计变量的敏感性最低。

著录项

  • 作者

    Shoaib, Abdoladel.;

  • 作者单位

    University of Alberta (Canada).;

  • 授予单位 University of Alberta (Canada).;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 395 p.
  • 总页数 395
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 老年病学;
  • 关键词

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