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Effect of Calcium Carbonate Fineness on Calcium Sulfoaluminate-Belite Cement

机译:碳酸钙细度对硫铝酸钙-贝利特水泥的影响

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摘要

This study investigated the hydration characteristics and strength development of calcium sulfoaluminate-belite (CSAB) cements incorporating calcium carbonate (CC) powders with various particle size distributions and different gypsum amounts. In general, the CSAB hydration was accelerated by the CC powder, but the acceleration and resulting strength improvement were more effective with finer CC powder. Regardless of the fineness of the CC powder, it took part in the hydration of CSAB cement, forming hemicarboaluminate and monocarboaluminate phases. These hydration and nucleation effects compensated for the strength reduction from decreased cementing components (i.e., dilution effect) when finer CC powders were used, while they did not overcome the strength reduction when coarser CC powder was used. On the other hand, increasing the amount of gypsum for a given CC content improved the strength. The strength of CSAB cement had a clear inverse relationship with its total pore volume measured by mercury intrusion porosimetry (MIP). Thermodynamic modeling for CSAB cement hydration showed that the use of CC powder increased total volume of solid phases up to 6 wt % at a given amount of gypsum.
机译:这项研究调查了掺入具有不同粒径分布和不同石膏含量的碳酸钙(CC)粉末的磺基铝酸盐-钙铁矿(CSAB)水泥的水化特性和强度发展。通常,CC粉可促进CSAB的水合作用,但使用更细的CC粉可促进CSAB的水合作用并提高强度。无论CC粉的细度如何,它都参与了CSAB水泥的水合作用,形成了半碳铝酸盐和单碳铝酸盐相。当使用较细的CC粉末时,这些水合作用和成核作用补偿了由于胶结组分减少引起的强度降低(即,稀释作用),而当使用较粗的CC粉末时,它们没有克服强度降低。另一方面,对于给定的CC含量,增加石膏的量可以提高强度。 CSAB水泥的强度与通过压汞法(MIP)测量的总孔体积有明显的反比关系。 CSAB水泥水化的热力学模型表明,在给定的石膏量下,使用CC粉可将固相的总体积增加至6 wt%。

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