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Experimental study of dynamic compressive properties of fibre reinforced concrete material with different fibres

机译:不同纤维的纤维增强混凝土材料动态压缩性能的试验研究

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摘要

This research conducts drop weight impact tests to study the dynamic compressive properties of fibre reinforced concrete (FRC) material with different types of fibres. The impact tests are conducted with an instrumented drop-weight impact system consisting of a hard steel drop weight, two 180t fast response loadcells, a high-speed video camera, and a fast response data acquisition system. Seven fibre types with different shapes and material properties are considered in the study. They are synthetic fibres, undulated, cold rolled, flattened, hooked end, and two new spiral shape steel fibres developed in this study. A volume fraction of 1% fibre is used in all specimens. The concrete matrix for all FRC specimens is mixed to obtain a compressive strength of 35 MPa. The drop-weight impact experiments are conducted with two different drop heights in order to study the dynamic material properties at different strain rates. The impact forces on top and bottom of specimens are measured to investigate the axial inertia effects and the stress wave propagation effect. The high-speed video camera is used to capture the failure pro cess, displacement and velocity responses of specimens, which are used to estimate the strain and strain rates of the specimen under impact loading. Strain gages are also used for direct strain measurements. The dynamic stress-strain relations and impact resistance of the tested specimens are compared. The influence of fibre shapes on the failure modes, strength and energy absorbing capability of FRC is dis cussed. The rate sensitivities of the compressive strength, Young's modulus and toughness of FRC are also examined. The testing results demonstrate that the new spiral steel fibre proposed in this study provides better confinement to concrete matrix and thus better bonding to concrete material, therefore increases the dynamic resistance and energy absorption capacity (toughness) of FRC.
机译:这项研究进行了落锤冲击试验,以研究具有不同类型纤维的纤维增强混凝土(FRC)材料的动态压缩性能。冲击试验是用仪器仪表的落锤冲击系统进行的,该系统包括一个硬钢落锤,两个180t快速响应式称重传感器,一个高速摄像机和一个快速响应数据采集系统。研究中考虑了七种具有不同形状和材料特性的纤维类型。它们是合成纤维,起伏的,冷轧的,扁平的,钩状的末端,以及在本研究中开发的两种新型螺旋形钢纤维。在所有样品中均使用了体积分数为1%的纤维。混合所有FRC标本的混凝土基体,以获得35 MPa的抗压强度。为了研究不同应变速率下的动态材料特性,在两种不同的跌落高度下进行了落锤冲击试验。测量样品顶部和底部的冲击力,以研究轴向惯性效应和应力波传播效应。高速摄像机用于捕获样品的失效过程,位移和速度响应,用于估计冲击载荷下样品的应变和应变率。应变计也用于直接应变测量。比较了试样的动应力-应变关系和抗冲击性。讨论了纤维形状对FRC的破坏模式,强度和能量吸收能力的影响。还研究了FRC的抗压强度,杨氏模量和韧性的速率敏感性。测试结果表明,本研究中提出的新型螺旋钢纤维可以更好地限制混凝土基体,从而更好地与混凝土材料粘结,从而增加了FRC的动态阻力和能量吸收能力(韧性)。

著录项

  • 来源
    《Materials & design》 |2012年第1期|p.42-55|共14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;

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

    A. Frc; B. Spiral steel fibre; E. Drop-weight impact;

    机译:A.Frc;B。螺旋钢纤维;E.落锤影响;

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