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Analysis methodology of XCT results for testing ingress of substances in hardened cement paste: Explained with chloride immersion test

机译:用于测试硬化水泥浆中物质侵入的XCT结果分析方法:用氯化物浸入试验解释

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摘要

X-ray computed tomography (XCT) can non-destructively detect microstructure of cement-based material. However, its raw results involve errors induced by the equipment and external factors. Once studying changes taken place in a sample, such as durability related studies, which need testing on a same sample at intervals, these errors will result in misleading conclusions. At the moment, in literature, no method focusing on effectively and reasonably eliminating or minimising these errors has not been observed. After testing and analysing ten series of XCT results for samples experiencing various types of exposures, authors established a rational data-processing method to minimise the influence of these errors on test results, and is introduced in this paper. To assist readers' understanding, the method and relevant information are illustrated with a case of immersion of hardened cement pastes in NaCl solution. Obtained results prove that diffusion of substances in the hardened cement paste can be properly revealed with the data processing method introduced; trend and depth of microstructure change caused by the exposure can be determined; the immersion of samples in NaCl solution led to a gradual decrease in density and a further hydration of cement particles, which should be related to leaching of Calcium from the sample into immersion solution; once immersed in same NaCl solution, the change of microstructure in the 0.35 w/c was slower than that in the 0.5 w/c sample and the influence depth had an approximate linear relationship with square root of immersion duration. (C) 2019 Elsevier Ltd. All rights reserved.
机译:X射线计算机断层扫描(XCT)可以无损检测水泥基材料的微观结构。但是,其原始结果涉及由设备和外部因素引起的误差。一旦研究了样品中发生的变化(例如,与耐久性相关的研究),这些变化就需要定期对同一样品进行测试,则这些错误将导致令人误解的结论。目前,在文献中,还没有观察到侧重于有效和合理地消除或最小化这些错误的方法。在对十种XCT结果进行了一系列测试和分析之后,作者建立了一种合理的数据处理方法,以最大程度地减少这些误差对测试结果的影响,并在本文中进行介绍。为了帮助读者理解,在将硬化的水泥浆浸入NaCl溶液的情况下,说明了方法和相关信息。所得结果证明,采用所介绍的数据处理方法可以适当地揭示硬化水泥浆中物质的扩散;可以确定由暴露引起的微观结构变化的趋势和深度;将样品浸入NaCl溶液中会导致密度逐渐降低,水泥颗粒进一步水化,这应与将钙从样品中浸出到浸液中有关。一旦浸入相同的NaCl溶液中,0.35 w / c的显微组织的变化要慢于0.5 w / c的样品,并且影响深度与浸入持续时间的平方根呈近似线性关系。 (C)2019 Elsevier Ltd.保留所有权利。

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