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Self-monitoring of freeze–thaw damage using triphasic electric conductive concrete

机译:三相导电混凝土对冻融损伤的自我监测

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摘要

The effect of freeze–thaw cycles on concrete is of great importance for durability evaluation of concrete structures in cold regions. In this paper, damage accumulation was studied by following the fractional change of impedance (FCI) with number of freeze–thaw cycles (N). The nano-carbon black (NCB), carbonfiber (CF) and steel fiber (SF) were added to plain concrete to produce the triphasic electrical conductive (TEC) and ductile concrete. The effects of NCB, CF and SF on the compressive strength, flexural properties, electrical impedance were investigated. The concrete beams with different dosages of conductive materials were studied for FCI, N and mass loss (ML), the relationship between FCI and N of conductive concretecan be well defined by a first order exponential decay curve. It is noted that this nondestructive and sensitive real-time testing method is meaningful for evaluating of freeze–thaw damage in concrete.
机译:冻融循环对混凝土的影响对于寒冷地区混凝土结构的耐久性评估非常重要。在本文中,通过遵循阻抗-分数变化(FCI)与冻融循环次数(N)来研究损伤累积。将纳米碳黑(NCB),碳纤维(CF)和钢纤维(SF)添加到普通混凝土中,以生产三相导电(TEC)和可延展混凝土。研究了NCB,CF和SF对抗压强度,弯曲性能,电阻抗的影响。研究了不同剂量导电材料的混凝土梁的FCI,N和质量损失(ML),通过一阶指数衰减曲线可以很好地定义导电混凝土的FCI和N之间的关系。注意,这种无损且灵敏的实时测试方法对于评估混凝土的冻融损伤具有重要意义。

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