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丙烯酸系超塑化剂和纤维素醚对硅酸三钙水化反应动力学的影响。

Influence of acrylic superplasticizer and cellulose-ether on the kinetics of tricalcium silicate hydration reaction.

机构信息

Department of Chemistry Ugo Schiff and CSGI, University of Florence, Florence, Italy.

出版信息

J Colloid Interface Sci. 2013 Apr 1;395:68-74. doi: 10.1016/j.jcis.2012.12.048. Epub 2013 Jan 3.

Abstract

This paper reports on the analysis of the hydration kinetics of a tricalcium silicate paste cured in presence of polymers industrially used in the extrusion process of mortars. In particular, we investigated the effect of a rheology-modifying additive (a methyl hydroxy ethyl cellulose) and a superplasticizer (a polyacrylic polymer). These polymers have been added to tricalcium silicate paste, both separately and together, to understand their distinct influence on the tricalcium silicate hydration and their possible synergies. The kinetic curves have been monitored from 10 to 40°C by means of Differential Scanning Calorimetry and fitted using the generalized Boundary Nucleation and Growth Model combined to a diffusion-limited model, to extract: induction times, reaction rates, activation energies and diffusion coefficients. As a main result, this paper contributes to the advancement of the knowledge in the field of the extrusion process of cementitious materials, providing a thermodynamic support to the empirical evaluations of the additives performances.

摘要

本文报告了在聚合物存在下养护的硅酸三钙浆体的水化动力学分析,这些聚合物在砂浆挤出过程中被工业使用。具体而言,我们研究了流变性改性添加剂(甲基羟乙基纤维素)和超塑化剂(聚丙烯酸聚合物)的影响。这些聚合物已被添加到硅酸三钙浆体中,分别和一起,以了解它们对硅酸三钙水化的不同影响及其可能的协同作用。通过差示扫描量热法从 10 到 40°C 监测动力学曲线,并使用广义边界成核和生长模型与扩散限制模型拟合,以提取诱导时间、反应速率、活化能和扩散系数。作为主要结果,本文为水泥基材料挤出过程的知识进展做出了贡献,为添加剂性能的经验评估提供了热力学支持。

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