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Role of Polycarboxylate-ether superplasticizers on cement hydration kinetics and microstructural development

机译:聚羧酸酯醚高效减水剂对水泥水化动力学和微观结构发展的作用

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Polycarboxylate-ether (PCE) superplasticizers are a fundamental constituent of modern cementbased materials due to their impact on the rheology of the fresh mix and mechanical performance of the hardened material. The effect of PCEs on cement hydration kinetics has been known since their introduction in the early 1980s. However, detailed knowledge of the role played by PCE macromolecules on the basic mechanisms of cement hydration (dissolution, diffusion, precipitation) is still lacking. A better understanding of how such mechanisms are influenced by the addition of PCE is no doubt beneficial to the design of novel superplasticizing admixtures. Here, I report on some recent findings about the role of PCE superplasticizers on cement hydration kinetics and microstructural development. The interaction between PCE and C_(3)S pastes was investigated by an ad-hoc kinetic model based on a combination of generalized forms of the Avrami and BNG (Boundary Nucleation and Growth) models. The model is used to fit the rate of C-S-H precipitation measured by in-situ X-ray powder diffraction combined with mass balance calculations. The results show that a switch from heterogeneous to homogeneous C-S-H nucleation occurs in the presence of PCEs and that the C-S-H growth rate decreases proportionally to the amount of PCE used. The predicted switch to homogeneous nucleation is in agreement with experimental results obtained by XRD-enhanced micro-tomography imaging, showing that, in the presence of PCE, C-S-H preferentially forms in the pore space rather than at the surface of clinker particles.
机译:聚羧酸酯醚(PCE)高效减水剂是现代水泥基材料的基本组成部分,因为它们会影响新鲜混合物的流变性和硬化材料的机械性能。自从1980年代初期引入PCE以来,人们就知道它们对水泥水化动力学的影响。但是,关于PCE大分子在水泥水化的基本机理(溶解,扩散,沉淀)中所起的作用的详细知识仍然缺乏。对PCE的添加如何影响这些机理的更好理解无疑对新型超塑化混合物的设计有益。在这里,我报告有关PCE高效减水剂在水泥水化动力学和微观结构发展中作用的一些最新发现。基于Avrami模型和BNG模型(边界形核和生长)的广义形式的组合,通过临时动力学模型研究了PCE和C_(3)S浆料之间的相互作用。该模型用于拟合通过原位X射线粉末衍射结合质量平衡计算测得的C-S-H沉淀速率。结果表明,在存在PCE的情况下,发生了从异质C-S-H成核的转变,并且C-S-H的生长速率与PCE的使用量成比例地降低。预测的向均匀成核的转变与通过XRD增强显微断层成像获得的实验结果一致,表明在PCE存在下,C-S-H优先在孔隙空间而不是在熟料颗粒表面形成。

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