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Implementing image analysis to assess the variability in flexural response of SFRC

机译:实施图像分析以评估SFRC弯曲响应的变化

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In this paper, the high variability generally associated with Fibre-Reinforced Concrete (FRC) is investigated by evaluating the fibre spatial inhomogeneity in a composite section. A photometric image analysis technique was implemented to quantify fibre inhomogeneity and the results were related to the flexural performance obtained from notched three-point bending tests. The experimental framework considered two different hook-ended steel fibres with different lengths incorporated into a 50 MPa concrete mixture at volume contents ranging from 40 kg/m~3 to 120 kg/m~3. Spatial distribution is explored by assessing the uniformity of fibre distribution across a section and defining the inter-batch spatial variability as the variation in uniformity. The findings highlight the role of fibre length and fibre dosage on the spatial distribution of fibres and it is revealed that sectional uniformity and inter-batch variability reduces as the number of fibres intersecting the cutting plane increases. Furthermore, the results demonstrate the substantial influence of fibre distribution on the flexural response of SFRC and it is concluded that the variability in flexural strength reduces as the variation in fibre spatial distribution reduces.
机译:在本文中,通过评估复合材料截面中纤维的空间不均匀性,研究了通常与纤维增强混凝土(FRC)相关的高变异性。实施了光度图像分析技术以量化纤维的不均匀性,其结果与通过缺口三点弯曲测试获得的弯曲性能有关。实验框架考虑了将两种不同长度的不同钩端钢纤维掺入50 MPa混凝土混合物中,其体积含量为40 kg / m〜3至120 kg / m〜3。通过评估整个截面上纤维分布的均匀性并将批间空间变异性定义为均匀性变异,来探索空间分布。这些发现突出了纤维长度和纤维用量对纤维空间分布的影响,并且揭示了截面均匀性和批间变异性随与切割平面相交的纤维数量的增加而降低。此外,结果证明了纤维分布对SFRC弯曲响应的实质性影响,并得出结论,随着纤维空间分布变化的减小,弯曲强度的变化性减小。

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