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Electromagnetic quality control of steel fiber concrete

机译:钢纤维混凝土的电磁质量控制

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Introducing steel fiber to concrete materials enhances the performance of concrete structures in terms of their flexural strength, impact load resistance and limited crack propagation. The fiber concrete performance depends on the fiber content, dispersion and orientation. No standard method is currently available to evaluate these three parameters, especially in situ. This paper describes the feasibility of using a surface electromagnetic sensor as nondestructive radio wave test system to determine the concentration, dispersion and orientation of steel fibers in the concrete. The system needs to contact the concrete material and requires only one face of the concrete material for testing. The surface electromagnetic sensor can slide on the fiber concrete surface and measure the dielectric properties at various locations to assess the fiber distribution. In addition, the sensor can rotate to polarize the electric field to various angles and evaluate the fiber orientation. The mean and standard deviation of the measured dielectric properties increase with increasing fiber content and fiber dispersion. The results indicate that the dielectric properties are maximal when the fiber is oriented in the direction of the electric field and minimal when perpendicular. A simple linear model was established to determine the fiber content and flexural strength from the measured electromagnetic properties.
机译:在混凝土材料中引入钢纤维可提高混凝土结构的抗弯强度,抗冲击负荷和有限的裂纹扩展性能。纤维混凝土的性能取决于纤维含量,分散度和方向。当前没有标准方法可用于评估这三个参数,尤其是在现场。本文介绍了使用表面电磁传感器作为无损无线电波测试系统来确定混凝土中钢纤维的浓度,分散度和方向的可行性。该系统需要接触混凝土材料,并且只需要测试混凝土材料的一个面即可。表面电磁传感器可以在纤维混凝土表面上滑动,并在各个位置测量介电性能,以评估纤维分布。此外,传感器可以旋转以将电场极化为各种角度,并评估纤维的方向。所测介电性能的平均值和标准偏差随纤维含量和纤维分散度的增加而增加。结果表明,当纤维沿电场方向取向时,介电性能最大,而当垂直时,介电性能最小。建立了一个简单的线性模型,以根据测得的电磁性能确定纤维含量和抗弯强度。

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