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Intrinsic modification of repair mortars made with EVA and CaO, impacts at the earlier ages

机译:用EVA和CaO制成的修补砂浆的本征改性,对早期产生影响

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Many studies have been realised on polymer-modified mortars (PMMs). Among the polymers used, ethylene vinyl acetate (EVA) has revealed evident interaction between calcium ions and its acetate groups. Most of the studies have shown a positive impact of EVA on mortar performance, which is enhanced by the combination of the EVA with calcium oxide CaO. However, there is still a lack of understanding of the nature of these interactions and no clear link has been established between these interactions and the properties of the cementitious materials at early ages. This article aims to tackle this topic by focusing on the evolution of EVA particles in a pore solution and the properties of a cement modified with EVA and CaO, especially the rheological behaviour. As results, it is observed that the zeta potential of the pore solution decreases when EVA is added. Furthermore, the hydrodynamic radius of this polymer tends to increase over time in the pore solution. On the other hand, the EVA tends to delay the setting time while the CaO accelerates it. For the rheological state, EVA tends to govern the plastic viscosity of the cement paste while CaO governs the yield stress and these parameters are not affected by the mixing time during the first 100 min. Their combination enhances these rheological parameters.
机译:已经对聚合物改性的砂浆(PMM)进行了许多研究。在使用的聚合物中,乙烯乙酸乙烯酯(EVA)已显示出钙离子与其乙酸酯基团之间存在明显的相互作用。大多数研究表明EVA对砂浆性能有积极影响,而EVA与氧化钙CaO的结合可增强EVA。然而,仍然缺乏对这些相互作用的性质的理解,并且在这些相互作用与早期胶凝材料的性质之间还没有建立明确的联系。本文旨在通过关注孔隙溶液中EVA颗粒的演变以及用EVA和CaO改性的水泥的性能(尤其是流变行为)来解决这个问题。结果,观察到当添加EVA时,孔溶液的ζ电位降低。此外,该聚合物的流体力学半径在孔溶液中倾向于随时间增加。另一方面,在CaO加速时,EVA倾向于延迟凝固时间。对于流变状态,EVA趋于控制水泥浆的塑性粘度,而CaO则控制屈服应力,并且这些参数在开始的100分钟内不受混合时间的影响。它们的组合增强了这些流变学参数。

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