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Dynamic tensile behaviour of fibre reinforced concrete with spiral fibres

机译:螺旋纤维增强纤维混凝土的动态拉伸性能

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摘要

This paper performs drop-weight splitting tests to study the dynamic tensile properties of fibre rein forced concrete (FRC) materials with different steel fibres. A renovated splitting tensile testing method was developed to ensure a more qualified experimental process. The splitting tensile impact tests were conducted with an instrumented drop-weight impact system consisting of a hard steel drop weight, a fast-response load cell, a high-speed video camera and a high-frequency data acquisition system. The quasi-static compressive and splitting tests were also conducted to obtain the static properties of the FRC materials. The commonly used hooked-end steel fibre and a new spiral shaped steel fibre were tested in this study. The high-speed video camera was used to capture the detailed failure process, deformation and cracking process of the tested specimens. Average strain rates and the cracking extension displace ment and velocity under impact loading were estimated by analysing the recorded high-speed images. The strains were also measured by the strain gages on the specimen surface. The dynamic stress-strain and stress-COD (cracking opening displacement) relations, the rate sensitivity of tensile strength and the corresponding energy absorption capacity of plain concrete and FRC with different fibres were obtained, compared and discussed. The advantage and effectiveness of the new spiral fibre in increasing the perfor mance of FRC under dynamic tensile loading were examined. The results show that FRC with spiral fibres outperforms that with hooked-end fibres, and is a promising construction material in resisting dynamic loadings.
机译:本文进行了落锤式劈裂试验,以研究具有不同钢纤维的纤维增强混凝土(FRC)材料的动态拉伸性能。开发了一种改良的劈裂拉伸测试方法,以确保更合格的实验过程。劈裂拉伸冲击试验是用仪器化的落锤冲击系统进行的,该系统由硬钢落锤,快速响应的称重传感器,高速摄像机和高频数据采集系统组成。还进行了准静态压缩和分裂试验,以获得FRC材料的静态性能。在这项研究中,对常用的钩端钢纤维和新型螺旋形钢纤维进行了测试。高速摄像机用于捕获测试样本的详细破坏过程,变形和破裂过程。通过分析记录的高速图像,可以估算出冲击载荷下的平均应变率,裂纹扩展位移和速度。还通过样品表面上的应变计测量应变。比较,讨论了不同纤维对普通混凝土和FRC的动态应力-应变和应力-COD(开裂位移)的关系,抗张强度的速率敏感性以及相应的能量吸收能力。研究了新型螺旋纤维在动态拉伸载荷下提高FRC性能的优势和有效性。结果表明,具有螺旋纤维的FRC优于具有钩端纤维的FRC,是抵抗动态载荷的有前途的建筑材料。

著录项

  • 来源
    《Materials & design》 |2012年第12期|p.72-88|共17页
  • 作者

    Z. Xu; H. Hao; H.N.Li;

  • 作者单位

    School of Civil and Resource Engineering, The University of Western Australia, Crawley, WA 6009, Australia,The State Key Laboratory of Coastal and Offshore Engineering, Dalian University of Technology, Dalian, Liaoning 116023, China;

    School of Civil and Resource Engineering, The University of Western Australia, Crawley, WA 6009, Australia;

    The State Key Laboratory of Coastal and Offshore Engineering, Dalian University of Technology, Dalian, Liaoning 116023, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    A. Fibre reinforced concrete; B. Spiral steel fibre; E. Dynamic split tensile test;

    机译:A.纤维混凝土;B.螺旋钢纤维;E.动态分裂拉伸试验;

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