The influence of sulfate availability on rheology of fresh cement paste

IF 5.8 4区 工程技术 Q1 MECHANICS
W. Mbasha, R. Haldenwang, I. Masalova
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引用次数: 4

Abstract

Abstract Natural gypsum can degenerate into hemihydrate during cement clinker grinding which changes the physical and chemical properties of cement hydration, affecting therefore the fresh and hardened properties of cement based materials. Cement systems containing a constant total amount of calcium sulfate (4%) with relative proportions of hemihydrate and natural gypsum were considered. Rheological measurements were executed on an Anton Paar MCR51 rheometer to evaluate the flow properties of cement pastes. Results show that, the yield stress and the plastic viscosity of cement pastes were affected when the degeneration of natural gypsum exceeded 50%. Above this concentration, the yield stress remarkably increased and a variation in plastic viscosity of about 50% was observed. Using TG-DSC techniques, it was shown that, the amount of formed ettringite could not explain these rheological changes. However, centrifugational packing and SEM-SE measurements confirmed that, more than the amount of ettringite precipitated, ettringite morphology plays a major role in controlling the yield stress and plastic viscosity of fresh cement pastes.
硫酸盐可用量对鲜水泥浆体流变性的影响
天然石膏在水泥熟料研磨过程中会发生半水化,从而改变水泥水化的理化性质,影响水泥基材料的新鲜性能和硬化性能。水泥体系中含有一定量的硫酸钙(4%)和相对比例的半水和天然石膏。在安东帕MCR51流变仪上进行了流变学测量,以评估水泥浆体的流动特性。结果表明,当天然石膏的退化率超过50%时,会影响水泥浆体的屈服应力和塑性粘度。在此浓度以上,屈服应力显著增加,塑性粘度变化约50%。TG-DSC技术表明,钙矾石的形成量不能解释这些流变变化。然而,离心填料和SEM-SE测量证实,钙矾石的形态在控制新水泥浆的屈服应力和塑性粘度方面起着比钙矾石析出量更重要的作用。
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来源期刊
Applied Rheology
Applied Rheology 物理-力学
CiteScore
3.00
自引率
5.60%
发文量
7
审稿时长
>12 weeks
期刊介绍: Applied Rheology is a peer-reviewed, open access, electronic journal devoted to the publication in the field of applied rheology. The journal provides the readers with free, instant, and permanent access to all content worldwide; and the authors with extensive promotion of published articles, long-time preservation, language-correction services, no space constraints and immediate publication.
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