Clays as SCM – Reactivity of Uncalcined Kaolinite and Bentonite, and Impact on Phase Assemblage and Strength Development of PC Mortars

IF 0.7 Q4 CONSTRUCTION & BUILDING TECHNOLOGY
M. Geiker, E. Gallucci
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引用次数: 2

Abstract

Abstract The impact of substitution of cement paste with uncalcined clay (bentonite and kaolinite) in the range of 5% by volume of paste on the development of hydration and properties of mortar was investigated. Two issues were addressed, the expected filler effect of the dispersed sub-micron clay particles, and the possible chemical reactivity of the clay. The study indicated that Portland cement paste may be modified by addition of well dispersed clay and that the impact includes accelerated cement hydration as well as altered distribution of products. Compressive strength development was accelerated, but later age strength was reduced, especially for the bentonite mixes. In contrast, microscopic porosity measurements indicated no detrimental impact on the coarse capillary porosity. The investigation indicates that for durability related engineering properties, the application of uncalcined clay might be a potential means for reduction of the clinker factor in concrete in support of sustainability.
粘土作为SCM -未煅烧高岭土和膨润土的反应性及其对PC砂浆相组合和强度发展的影响
摘要研究了未煅烧粘土(膨润土和高岭土)在膏体体积5%范围内替代水泥浆对砂浆水化发展和性能的影响。讨论了两个问题,即分散的亚微米粘土颗粒的预期填充效果和粘土可能的化学反应性。研究表明,硅酸盐水泥浆体可以通过加入分散良好的粘土进行改性,其影响包括水泥水化加速和产品分布的改变。抗压强度发展加快,但后期强度降低,尤其是膨润土混合料。相比之下,微观孔隙度测量表明,对粗毛管孔隙度没有不利影响。研究表明,对于耐久性相关的工程性能,应用未煅烧粘土可能是降低混凝土熟料因子以支持可持续性的潜在手段。
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来源期刊
Nordic Concrete Research
Nordic Concrete Research CONSTRUCTION & BUILDING TECHNOLOGY-
自引率
20.00%
发文量
8
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