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首页> 外文期刊>Journal of materials in civil engineering >Salt-Frost Resistance Performance of Airfield Concrete Based on Meso-Structural Parameters
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Salt-Frost Resistance Performance of Airfield Concrete Based on Meso-Structural Parameters

机译:基于中学结构参数的机场混凝土盐霜抗性性能

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摘要

Airport cement pavement is prone to severe freeze-thaw damage due to the use of deicing chemicals. There is no unified evaluation parameter for analyzing the relationship between the concrete meso-structure and its salt-frost resistance. Therefore, industrial computed tomography (CT) scanning technology was applied in this study to obtain the meso-structure of concrete and the meso-structural parameters of concrete (air content, air void surface area per unit volume, air void distance factor, air void volume fractal box dimension, air void surface area fractal box dimension) that are introduced to characterize its meso-structure. The relationship between each structural parameter and the salt-frost resistance of concrete were analyzed, and a gray correlation model was established to quantitatively compare the significance of each parameter. In addition, the meso-structural parameters were used to analyze the internal structural changes of concrete under freeze-thaw cycles; this analysis mainly included three aspects. First, changes in concrete meso-structure before and after freeze-thaw cycles were analyzed. Second, changes in each meso-structural parameter of concrete under freeze-thaw cycles were tested and calculated. Third, a damage degree index, based on the air void surface area fractal box dimension, was proposed for characterizing the damage degree of concrete. The results showed that air void distance factor had the most significant influence on the salt-frost resistance of concrete in each structural parameter and could be used as the characterization parameter. The depth of the influence of salt frost on the internal structure of non-air-entrained concrete was deeper than its influence on air-entrained concrete. In addition, the damage degree index can quantify the degree of deterioration in concrete meso-structure well.
机译:由于使用除冰化学品,机场水泥路面易于严重的冻融损坏。没有统一的评估参数,用于分析混凝土中间结构与盐霜抗性之间的关系。因此,在本研究中应用了工业计算的层析造影(CT)扫描技术,以获得混凝土的中间结构和混凝土的中间结构参数(空气含量,每单位体积空隙表面积,空隙距离因子,空隙引入的体积分形箱尺寸,空隙表面积分形箱尺寸,以表征其中间结构。分析了每个结构参数与混凝土的盐 - 冰变抗性的关系,建立了灰色相关模型,以定量比较每个参数的重要性。此外,中间结构参数用于分析混凝土在冻融循环下的内部结构变化;该分析主要包括三个方面。首先,分析了冻融循环前后混凝土中型结构的变化。其次,测试并计算了在冷冻 - 解冻循环下的混凝土中每个中间结构参数的变化。第三,提出了一种基于空隙表面积分形箱尺寸的损伤度指数,用于表征混凝土损坏程度。结果表明,空隙距离因子对每个结构参数中混凝土的盐霜抗性的影响最大,可以用作表征参数。盐霜对非空气夹带混凝土内部结构的影响深度比其对空气夹带混凝土的影响更深。此外,损伤程度指数可以量化混凝土中间结构井中的劣化程度。

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