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有机流变改性剂(化学外加剂)的进展及其对水泥基材料流变性能的影响

Advances in Organic Rheology-Modifiers (Chemical Admixtures) and Their Effects on the Rheological Properties of Cement-Based Materials.

作者信息

Zhang Qianqian, Chen Jian, Zhu Jiang, Yang Yong, Zhou Dongliang, Wang Tao, Shu Xin, Qiao Min

机构信息

State Key Laboratory of High Performance Civil Engineering Materials, Jiangsu Sobute New Materials Co., Ltd., Nanjing 211103, China.

Shandong Provincial Key Laboratory of Preparation and Measurement of Building Materials, University of Jinan, Jinan 250022, China.

出版信息

Materials (Basel). 2022 Dec 7;15(24):8730. doi: 10.3390/ma15248730.

Abstract

Organic rheology modifiers, especially superplasticizers and viscosity-modifying admixtures (VMAs), have become key components for the workability optimization of modern concrete. The development of these admixtures is crucial to the further performance improvement of modern concrete under different casting and service conditions. Many of the former reviews have summarized research advances in respect of these admixtures from chemical and material perspectives, focusing on the effects of structure and the performance. In this paper, from a rheological perspective, an overview is provided of the microscale behavior of polycarboxylate (PCE) superplasticizers and VMAs (e.g., adsorption, conformation, and bridging) in terms of the evolution of the microstructure of the paste, the effect of chemical structure on the yield stress, the apparent viscosity and thixotropy of cement-based materials, and the structure design of these admixtures. Most importantly, in addition to a general discussion with assumptions (monolayer adsorption of a "flat" conformation, with each molecule on a single particle; statistical polymer composition), special conditions (e.g., preferential adsorption, depletion effects, hydration modification effects, and the polydispersity of the polymer composition) are discussed. Newly developed admixtures, realized through regulation of the microscale behavior, and by the modification of adsorption, topological structure, and molecular frame, are introduced.

摘要

有机流变改性剂,特别是高效减水剂和粘度改性剂(VMA),已成为现代混凝土工作性优化的关键组分。这些外加剂的发展对于现代混凝土在不同浇筑和使用条件下进一步提高性能至关重要。许多先前的综述从化学和材料角度总结了这些外加剂的研究进展,重点关注结构与性能的影响。本文从流变学角度,就聚羧酸系(PCE)高效减水剂和VMA在浆体微观结构演变、化学结构对水泥基材料屈服应力、表观粘度和触变性的影响以及这些外加剂的结构设计方面的微观行为(如吸附、构象和架桥)进行了综述。最重要的是,除了在假设(“扁平”构象的单层吸附,每个分子位于单个颗粒上;统计聚合物组成)下进行一般性讨论外,还讨论了特殊条件(如优先吸附、耗尽效应、水化改性效应和聚合物组成的多分散性)。介绍了通过调控微观行为以及改变吸附、拓扑结构和分子骨架而新开发的外加剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a2ab/9784188/3d5caedeb7ba/materials-15-08730-g005.jpg

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