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Statistical methods of investigation on the compressive strength of high-performance steel fiber reinforced concrete

机译:高性能钢纤维增强混凝土抗压强度研究的统计方法

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摘要

The contribution of steel fibers on the 28-day compressive strength of high-performance steel fiber reinforced concrete was investigated, is presented. An extensive experimentation was carried out over water-cementitious materials (w/cm) ratios ranging from 0.25 to 0.40, with silica fume- cementitious materials ratios from 0.05 to 0.15, and fiber volume fractions (V_f=0.0, 0.5, 1.0 and 1.5%) with the aspect ratios of 80 and 53. Based on the test results of 44 concrete mixes, mathematical model was developed using statistical methods to quantify the effect of fiber content on compressive strength of HPSFRC in terms of fiber reinforcing index. The expression, being developed with strength ratios and not with absolute values of strengths, is independent of specimen parameters and is applicable to wide range of w/ cm ratios, and used in the mix design of steel fiber reinforced concrete. The estimated strengths are within ±3.2% of the actual values. The model was tested for the strength results of 14 mixes having fiber aspect ratio of 53. On examining the validity of the proposed model, there exists a good correlation between the predicted values and the experimental values of different researchers. Equation is also proposed for the size effect of the concrete specimens.
机译:研究了钢纤维对高性能钢纤维增强混凝土28天抗压强度的贡献。对水凝性材料(w / cm)比为0.25至0.40,硅灰-胶凝性材料比值为0.05至0.15和纤维体积分数(V_f = 0.0、0.5、1.0和1.5%)进行了广泛的实验),纵横比分别为80和53。基于44种混凝土配合比的测试结果,使用统计方法建立了数学模型,以根据纤维增强指数量化纤维含量对HPSFRC抗压强度的影响。该表达式是用强度比而不是强度的绝对值开发的,与样品参数无关,适用于宽范围的w / cm比,并用于钢纤维增强混凝土的混合设计。估计强度在实际值的±3.2%之内。测试了该模型的14种纤维纵横比为53的混合物的强度结果。在检验所提出模型的有效性时,不同研究人员的预测值和实验值之间存在良好的相关性。还针对混凝土试样的尺寸效应提出了方程。

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