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Rheological properties and microstructure of fresh cement pastes with varied dispersion media and superplasticizers

机译:多种分散介质和超级塑化剂的新水泥浆料流变性能和微观结构

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摘要

The effects of dispersion media and superplasticizers on the rheological properties and microstructure of fresh cement pastes (FCPs) were investigated to reveal the acting mechanism of tuning rheological properties. Different dispersion media including ethanol, water and their mixtures, and various superplasticizers with varied charge types were considered. Measurements on rheological properties, particle size and zeta potential of FCPs were carried out. Morphologi G3 microscope was adopted to observe the organization structure of cement grains in suspensions. Results indicate that different dispersion media can lead to notable changes on the microstructure and the rheological properties through significantly altering the charge characteristic of cement surface. There is a strong positive relationship between the zeta potential of FCPs and their microstructure and rheological properties, i.e., higher zeta potential influences superior dispersion state of cement grains and stronger rheological properties of the FCPs. On the other hand, superplasticizers can increase the dispersion degree of cement grains and further enhance the rheological properties of the pastes by adsorbing on cement surface. Anionic superplasticizer with the strongest adsorption capability brings about the largest dispersion degree of cement grains and the highest rheological properties of the FCPs. As anionic superplasticizer is included in the mixture of ethanol and water, the microstructure and rheological properties are most evidently improved. (C) 2018 Elsevier B.V. All rights reserved.
机译:研究了分散介质和超增塑料对新鲜水泥浆料(FCP)流变性和微观结构的影响,揭示了调节流变性能的作用机制。考虑了不同的分散介质,包括乙醇,水及其混合物,以及具有不同电荷类型的各种超级塑化剂。进行了FCP的流变性能,粒度和ζ电位的测量。采用了形态学G3显微镜观察悬浮液中水泥粒的组织结构。结果表明,通过显着改变水泥表面的电荷特性,不同的分散介质可以导致微观结构和流变性能的显着变化。 FCP的Zeta电位与其微观结构和流变性质之间存在强烈的正相关性,即,较高的Zeta电位影响水泥晶粒的优异分散状态和FCP的更强流变性能。另一方面,超塑性剂可以通过吸附在水泥表面上,增加水泥晶粒的分散度并进一步增强浆料的流变性质。具有最强的吸附能力的阴离子超级塑化剂带来了水泥颗粒的最大分散度和FCP的最高流变性能。由于阴离子超级塑化剂包括在乙醇和水的混合物中,最显着改善了微观结构和流变性质。 (c)2018 Elsevier B.v.保留所有权利。

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