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Accelerated and natural carbonation of concretes with internal curing and shrinkage/viscosity modifiers

机译:使用内部固化和收缩/粘度调节剂的混凝土加速自然碳化

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摘要

Abstract In many parts of the world, corrosion of reinforcing steel in concrete induced by carbonation of the concrete continues to be a major durability concern. This paper investigates the accelerated and natural carbonation resistance of a set of seven concretes, specifically evaluating the effects of internal curing and/or shrinkage/viscosity modifiers on carbonation resistance. In addition to five different ordinary portland cement (OPC) concretes, two concretes containing 20 % of a Class F fly ash as replacement for cement on a mass basis are also evaluated. For all seven concrete mixtures, a good correlation between accelerated (lab) and natural (field) measured carbonation coefficients is observed. Conversely, there is less correlation observed between the specimens’ carbonation resistance and their respective 28 days compressive strengths, with the mixtures containing the shrinkage/viscosity modifier specifically exhibiting an anomalous behavior of higher carbonation resistance at lower strength levels. For both the accelerated and natural exposures, the lowest carbonation coefficients are obtained for two mixtures, one containing the shrinkage/viscosity modifier added in the mixing water and the other containing a solution of the same admixture used to pre-wet fine lightweight aggregate. Additionally, the fly ash mixtures exhibited a significantly higher carbonation coefficient in both exposures than their corresponding OPC concretes.
机译:摘要在世界许多地方,混凝土碳化引起的钢筋对混凝土的腐蚀仍然是主要的耐久性问题。本文研究了七种混凝土的抗加速和自然碳化性能,特别是评估了内部固化和/或收缩/粘度调节剂对抗碳化性能的影响。除了评估五种不同的普通硅酸盐水泥(OPC)混凝土之外,还评估了两种包含20%F级粉煤灰作为水泥替代物的混凝土。对于所有七种混凝土混合物,观察到加速(实验室)和自然(现场)测得的碳化系数之间具有良好的相关性。相反,样品的抗碳化性和它们各自28天的抗压强度之间的相关性较小,而含有收缩/粘度调节剂的混合物在较低的强度水平下表现出较高的抗碳化性。对于加速暴露和自然暴露,两种混合物均获得最低的碳酸化系数,一种混合​​物包含在混合水中添加的收缩/粘度调节剂,另一种包含与用于预润湿细轻质骨料的相同混合物的溶液。此外,粉煤灰混合物在两次暴露中均显示出比其相应的OPC混凝土明显更高的碳化系数。

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