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Effects of High Temperature on Carbonated Calcium Silicate Cement (CSC) and Ordinary Portland Cement (OPC) Paste

机译:高温对碳酸钙硅酸盐水泥(CSC)和普通硅酸盐水泥(OPC)浆料的影响

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摘要

This paper presents a comparative study on the effects of high temperature (~500°C) on carbonated calcium silicate-based cement (CSC), hydrated ordinary Portland cement (OPC), and hydrated OPC with 20% fly ash (FA) paste samples. The CSC is primarily composed of calcium–silicate minerals with different calcium to silica atomic ratios, such as wollastonite, rankinite, and pseudowollastonite. The major difference between CSC- and OPC-based systems is that the CSC system generates strength from the carbonation reaction, while strength development of OPC-based systems depends on the hydration reaction. The microstructure of the carbonated CSC paste consist mainly of calcium carbonate, polymerized silica gel, and unreacted cement grains. The loss of stiffness due to the high-temperature exposure was found to be substantially lower for CSC samples compared with that of the hydrated OPC and OPC + FA paste samples. This observation was also consistent with the observed mass losses of these paste samples upon their exposure to high temperatures during the thermogravimetric analysis (TGA). The higher resistance of CSC paste samples to high temperature is attributed to the presence of microscopic phases which have higher decomposition temperatures than the phases present in the OPC. For the same reason, the increases in total porosities (measured using helium pycnometer) of the hydrated paste samples after exposure to 510°C were significantly higher than those of the CSC paste samples.
机译:本文比较了高温(〜500°C)对含20%粉煤灰(FA)糊状样品的碳酸硅酸钙基水泥(CSC),水合普通硅酸盐水泥(OPC)和水合OPC的影响。 CSC主要由钙与硅原子比不同的硅酸钙矿物质组成,例如硅灰石,兰金石和假硅灰石。基于CSC的系统和基于OPC的系统之间的主要区别在于CSC系统通过碳酸化反应产生强度,而基于OPC的系统的强度发展取决于水合反应。碳酸化的CSC糊的微观结构主要由碳酸钙,聚合的硅胶和未反应的水泥颗粒组成。与水合的OPC和OPC + FA糊状样品相比,CSC样品由于高温暴露而导致的刚度损失要低得多。该观察结果还与这些糊剂样品在热重分析(TGA)中暴露于高温时观察到的质量损失一致。 CSC糊料样品对高温的较高抵抗力归因于存在微观相,该微观相的分解温度高于OPC中存在的相。出于同样的原因,在暴露于510°C后,水合糊状样品的总孔隙率(使用氦比重瓶测量)的增加显着高于CSC糊状样品。

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