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Calcium sulfoaluminate and alkali-activated fly ash cements as alternative to Portland cement: study on chemical, physical-mechanical, and durability properties of mortars with the same strength class

机译:磺碱酸钙和碱活化的粉煤灰水泥作为波特兰水泥的替代品:研究迫击力等级的迫击炮的化学,物理机械和耐久性

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摘要

There is an increasing interest towards the development of alternative binders for the manufacture of sustainable mortars and concretes. Ordinary Portland cement (OPC) is the most commonly used material in construction, even if its production process is highly polluting. Both calcium sulfoaluminate (CSA) and alkali-activated cements (AAC) are potential alternative binders to be used in both structural (R3 class, with R-c = 25 MPa) and non-structural applications (R1 and R2 classes, with R-c = 10 MPa and R-c = 15 MPa, respectively) according to UNI EN 1504-3. This paper reports the hydration mechanisms and the evolution of porosity of OPC-, CSA- and AAC-based binders. The properties of fresh and hardened mortars, belonging to the above-mentioned mechanical strength classes, were evaluated and compared with particular emphasis on durability properties in terms of capillary water absorption, drying shrinkage, and resistance to sulfate attack. The results show that CSA-based mortars exhibit the lowest drying shrinkage due to their highest elasticity modulus. AAC mortars are characterized by the highest water vapor permeability and the lowest capillary water absorption for the highest presence of large pores (3000 nm). (C) 2020 Elsevier Ltd. All rights reserved.
机译:对制造可持续砂浆和混凝土的替代粘合剂的发展越来越兴趣。普通波特兰水泥(OPC)是施工中最常用的材料,即使其生产过程高度污染。磺钙酸钙(CSA)和碱活化的水泥(AAC)是潜在的替代粘合剂,用于结构(R3类,RC> = 25MPa)和非结构应用(R1和R2类,RC> =根据UNI EN 1504-3,分别为10MPa和RC> = 15MPa。本文报道了水化机制和孔隙,CSA和AAC基粘合剂的孔隙率的演变。在毛细管吸水,干燥收缩和耐硫酸盐发作方面,评估了属于上述机械强度等级的新鲜和硬化砂浆的性质,并特别强调耐久性性质。结果表明,由于其最高弹性模量,基于CSA的灰浆表现出最低的干燥收缩。 AAC砂浆的特征在于水蒸气渗透性最高,毛细管吸水最低,用于大孔隙的最高存在(> 3000nm)。 (c)2020 elestvier有限公司保留所有权利。

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