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Microstructure modeling of carbonation of metakaolin blended concrete

机译:Metakaolin混合混凝土碳酸化的微观结构建模

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摘要

Metakaolin (MK), which is increasingly being used to produce high performance concrete, is produced by calcining purified kaolinite between 650 and 700 degrees C in a rotary kiln. The carbonation resistance of metakaolin blended concrete is lower than that of control concrete. Hence, it is critical to consider carbonation durability for rationally using metakaolin in the concrete industry. This study presents microstructure modeling during the carbonation of metakaolin blended concrete. First, based on a blended hydration mo del, the amount of carbonatable substances and porosity are determined. Second, based on the chemical reactions between carbon dioxide and carbonatable substances, the reduction of concrete porosity due to carbonation is calculated. Furthermore, CO2 diffusivity is evaluated considering the concrete composition and exposed environment. The carbonation depth of concrete is analyzed using a diffusion-based model. The proposed microstructure model takes into account the influences of concrete composition, concrete curing, and exposure condition on carbonation. The proposed model is useful as a predetermination tool for the evaluation of the carbonation service life of metakaolin blended concrete.
机译:越来越多地用于生产高性能混凝土的Metakaolin(MK)是通过在旋转窑中煅烧650和700摄氏度之间的净化高岭石来生产的。 Metakaolin混合混凝土的碳化性低于对照混凝土的碳化性。因此,考虑在混凝土行业中使用Metakaolin合理合理的碳酸化耐久性至关重要。本研究介绍了在偏塔林混合混凝土碳酸化过程中的微观结构建模。首先,基于混合水合Mo Del,确定可碳酸盐物质和孔隙率的量。其次,基于二氧化碳与碳酸性物质之间的化学反应,计算碳酸化引起的混凝土孔隙率的降低。此外,考虑混凝土组成和暴露环境,评估CO 2扩散率。使用基于扩散的模型分析混凝土的碳化深度。所提出的微观结构模型考虑了混凝土组成,混凝土固化和暴露条件对碳化的影响。所提出的模型可用作评估Metakaolin混合混凝土碳酸化服务寿命的预定工具。

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