热处理对富钙矾石水泥力学性能、微观结构和相组成的影响

Sandra Afflerbach , Christian Pritzel , Patrick Hartwich , Manuela Sonja Killian , Wolfgang Krumm
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引用次数: 1

摘要

与硅酸盐水泥相比,硫铝酸盐钙水泥在减少水泥生产碳足迹方面具有巨大潜力,因此近年来受到越来越多的关注。然而,在其加工过程中应用的条件对材料的稳定性和寿命起着至关重要的作用。因此,温度具有决定性的影响,因为从大量研究中已经知道,钙矾石在热诱导脱水时结构发生显著变化。在这种背景下,本研究全面了解了在23°C至100°C的干燥温度下处理7天和28天后,与所含钙矾石脱水相关的商业硫铝酸盐钙水泥的力学、形态、相和结构变化。通过补充方法表明,随着固化温度的升高,力学稳定性降低,总孔隙面积和孔隙率增加,而在100°C下储存的样品的微观结构渗透率较低。水的去除增加了钙矾石晶格内的柱间距离,从而诱导在再水合时释放的应变。尽管在100°C的温度下储存期间,钙矾石转化为X射线无定形产物,但嵌入胶结基质中的晶体的初始形态仍得到保留。
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Effects of thermal treatment on the mechanical properties, microstructure and phase composition of an Ettringite rich cement

Recently calcium sulfoaluminate cements gain increasing attention due to their significant potential to reduce the carbon footprint of cement production compared to Portland cement. However, the conditions applied during its processing play a crucial role for the stability and longevity of the material. Thereby, the temperature has a decisive influence, as it is already known from numerous studies that ettringite structurally changes significantly upon thermal induced dehydration. Within this background, the present study subjects a holistic view of the mechanical, morphological, phase and structural changes of a commercial calcium sulfoaluminate cement related to the dehydration of the contained ettringite upon treatment at drying temperatures from 23 °C to 100 °C for 7 and 28 days. By complementary methods it is shown that with increasing curing temperature, the mechanical stability decreases, the total pore area and porosity increase, while the permeability of the microstructure is lower for samples stored at 100 °C. Removal of water increases the intercolumnar distance within the ettringite lattice, thereby inducing strain which is released upon rehydration. Although during storing at a temperature of 100 °C ettringite is transformed into an X-ray amorphous product, the initial morphology of the crystals embedded in the cementitious matrix is retained.

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