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preparation of an ultra fast binding cement from calcium silicate-based mixed oxide nanoparticles

机译:硅酸钙基混合氧化物纳米粒子制备超快粘结水泥

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摘要

Building construction takes time, in part because the binding process of cement is based on the slow re-crystallization and precipitation of calcium silicate species. Since the material's reactivity is surface area limited, a reduction in particle size of Portland cements has been used to prepare faster binding formulations. The present work investigates a new and direct, one-step preparation of calcium silicate-based nanoparticles of a typical Portland cement composition by flame spray synthesis. Isothermal calorimetry revealed that the hardening of this new nano-cement corroborated a more than tenfold increase of initial reactivity with different reaction kinetics if compared to conventionally prepared cements. At present, the unfavourably high porosity of nano-cements, however, underlines the need for additional improvements of chemical composition and formulation to make these highly reactive materials applicable to modern construction work, where load-bearing strength is of importance.
机译:建筑施工需要时间,部分原因是水泥的粘结过程基于硅酸钙物质的缓慢重结晶和沉淀。由于材料的反应性受到表面积的限制,因此降低波特兰水泥的粒径已用于制备更快的粘结配方。本工作研究了一种新的直接一步法,通过火焰喷雾合成法制备典型硅酸盐水泥组合物的硅酸钙基纳米颗粒。等温量热法显示,与常规制备的水泥相比,这种新的纳米水泥的硬化证实了在不同反应动力学下初始反应性提高了十倍以上。然而,目前纳米水泥的孔隙率过高,强调需要进一步改善化学组成和配方,以使这些高反应性材料适用于现代建筑工作,在现代建筑工作中,承重强度至关重要。

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