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首页> 外文期刊>International Journal of Technology >Impact Resistance and Strength Reliability of Fiber-reinforced Concrete in Bending under Drop Weight Impact Load
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Impact Resistance and Strength Reliability of Fiber-reinforced Concrete in Bending under Drop Weight Impact Load

机译:落锤冲击载荷作用下纤维增强混凝土弯曲的抗冲击性和强度可靠性

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This paper presents an experimental investigation on the Impact failure energy and strength reliability of fiber reinforced concrete (FRC) by using a simple drop weight test which was based on the testing procedure recommended by ACI committee 544. Two different steel fibers were used as the reinforcing material in various volume fractions such as 0%, 0.5%, 1.0% and 1.5% with a water cement ratio of 0.42. Furthermore, the two-parameter weibull distribution was used to analyze the experimental data in order to sort out a variation of test results. Using the weibull distribution, the impact failure strength reliability, in other words, the probability distribution according to which the concrete will fail, was obtained. The results indicated that the concrete containing a 1.5% volume fraction of fiber gave the best performance followed by 1.0% and 0.5% under impact loading. It was proven that the probabilistic distributions of the impact failure energy of seven types of samples approximately follow two-parameter Weibull distribution.
机译:本文基于ACI委员会544推荐的测试程序,通过简单的落锤试验,对纤维增强混凝土(FRC)的冲击破坏能和强度可靠性进行了实验研究。使用两种不同的钢纤维作为增强材料材料的各种体积分数(例如0%,0.5%,1.0%和1.5%)和水灰比为0.42。此外,使用两参数威布尔分布来分析实验数据,以找出测试结果的变化。使用威布尔分布,获得了冲击破坏强度的可靠性,换句话说,得出了混凝土将根据其破坏的概率分布。结果表明,含有1.5%体积分数纤维的混凝土在冲击载荷下表现出最佳性能,其次是1.0%和0.5%。事实证明,七种样品的冲击破坏能量的概率分布近似服从两参数威布尔分布。

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