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首页> 外文期刊>Cement and Concrete Research >A new approach in quantitative in-situ XRD of cement pastes: Correlation of heat flow curves with early hydration reactions
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A new approach in quantitative in-situ XRD of cement pastes: Correlation of heat flow curves with early hydration reactions

机译:水泥浆定量原位XRD的新方法:热流曲线与早期水化反应的相关性

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摘要

XRD measurements of the hydration of synthetical cement (SyCem) were used to calculate the resulting heat flow from changes in the phase content. Calculations were performed by application of thermodynamic data. The comparison with data recorded from heat flow calorimetry was in good agreement with the calculated heat flow. The initial maximum of heat flow mainly is caused by the aluminate reaction. During the entire main period the silicate reaction dominates hydration with a high and long first maximum of heat flow. The second but less intense heat flow maximum - only visible as a shoulder in most of the technical cements - can be attributed to an acceleration of the aluminate reaction with the enhanced dissolution of C_3A and the final formation of ettringite. Moreover, the investigation showed that the dissolution process of C_3A is directly controlled by the availability of the calcium sulfate phases.
机译:合成水泥水合的XRD测量(SyCem)用于计算相含量变化产生的热流。通过应用热力学数据进行计算。与从热流量量热法记录的数据进行的比较与计算的热流量非常吻合。最初最大的热流主要是由铝酸盐反应引起的。在整个主要时期中,硅酸盐反应以高和长的第一最大热流量主导水合作用。第二个但强度不高的热流最大值(在大多数工业用水泥中仅在肩部可见)可归因于铝酸盐反应的加速,C_3A的溶解增强和钙矾石的最终形成。此外,研究表明,C_3A的溶解过程直接受硫酸钙相的可用性控制。

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