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Using settling behaviour to study mesostructural organization of cement pastes and superplasticizer efficiency

机译:利用沉降行为研究水泥浆的细观结构组织和高效减水剂的效率

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Superplasticizers are polymer admixtures which have been used for decades in the building industry. Their role is to increase the workability of fresh concrete by dispersing cement particles through an electrostatic or steric repulsion mechanism. Their efficiency is generally related to their adsorption ability and intrinsic rheological behaviour of mineral materials. However, at an intermediate scale, mesostructural organization is a major parameter that controls not only the fluidity but also the homogeneity and the stability of a suspension. The aim of this paper is to highlight the relationship between mesostructure and organo-mineral interactions occurring between superplasticizers and mineral particles. The influence of the molecular structure of polycarboxylates (PCEs) on the destabilization phenomena was characterized. Stability ranges were assessed using Turbiscan MA 2000 and quantified by a Phase Separation Index (PSI) inspired by previous works. A relationship with mesostructural organization was established by correlation with the dispersion state characterized by laser granulometry. The affinity of PCEs with cement particles as a function of molecular structure was characterized by Total Organic Carbon (TOC) measurements.
机译:高效减水剂是在建筑行业中使用了数十年的聚合物外加剂。它们的作用是通过静电或空间排斥机制分散水泥颗粒,从而提高新鲜混凝土的可加工性。它们的效率通常与矿物材料的吸附能力和固有流变行为有关。但是,在中等规模上,介观结构是控制悬浮液的流动性以及均匀性和稳定性的主要参数。本文的目的是强调超塑化剂与矿物颗粒之间发生的介孔结构与有机-矿物相互作用之间的关系。表征了聚羧酸盐(PCE)分子结构对去稳定现象的影响。使用Turbiscan MA 2000评估稳定性范围,并根据以前的工作通过相分离指数(PSI)进行量化。通过与激光粒度分析表征的分散状态的相关性,建立了与介观结构的关系。通过总有机碳(TOC)测量来表征PCE与水泥颗粒的亲和力,作为分子结构的函数。

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