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Testing an Impedance Non-destructive Method to Evaluate Steel-Fiber Concrete Samples

机译:测试阻抗无损评估钢纤维混凝土样品的方法

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Steel-fiber reinforced concrete is a composite material characterized by outstanding tensile properties and resistance to the development of cracks. The concrete, however, exhibits such characteristics only on the condition that the steel fibers in the final, hardened composite have been distributed evenly. The current methods to evaluate the distribution and concentration of a fiber composite are either destructive or exhibit a limited capability of evaluating the concentration and orientation of the fibers. In this context, the paper discusses tests related to the evaluation of the density and orientation of fibers in a composite material. Compared to the approaches used to date, the proposed technique is based on the evaluation of the electrical impedance Z in the band close to the resonance of the sensor–sample configuration. Using analytically expressed equations, we can evaluate the monitored part of the composite and its density at various depths of the tested sample. The method employs test blocks of composites, utilizing the resonance of the measuring device and the measured sample set; the desired state occurs within the interval of between f=3 kHz and 400 kHz.
机译:钢纤维增强混凝土是一种复合材料,具有出色的拉伸性能和抗开裂性。然而,仅在最终硬化的复合材料中的钢纤维均匀分布的条件下,混凝土才表现出这种特性。目前评估纤维复合材料的分布和浓度的方法具有破坏性,或者评估纤维浓度和取向的能力有限。在这种情况下,本文讨论了与评估复合材料中纤维的密度和取向有关的测试。与迄今为止使用的方法相比,所提出的技术基于对接近传感器-样本配置共振的频带中的电阻抗Z的评估。使用解析表达的方程式,我们可以评估复合材料的受监控部分及其在测试样品不同深度处的密度。该方法利用复合材料的测试块,利用测量装置和被测样品组的共振。期望的状态出现在f = 3 kHz至400 kHz的间隔内。

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