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Comparison of different techniques to study the nanostructure and the microstructure of cementitious materials with and without superabsorbent polymers

机译:研究含或不含高吸收性聚合物的胶凝材料的纳米结构和微观结构的不同技术的比较

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摘要

It is difficult to study the microstructural porosity in time without destroying the samples and stopping hydration. Current techniques mainly involve mercury intrusion porosimetry and microscopic analysis. These destructive techniques are able to give information on the microstructure, but the nanostructure is affected due to sample preparation. Dynamic vapour sorption is a technique which is not often used to study the nanostructure of cementitious materials and requires the application of different models. Furthermore, nuclear magnetic resonance can be applied to non-destructive study not only the total water content but also the pore size distribution by comparing the T-2 relaxation times, and can be combined with cryoporometry. In this paper, these different measuring techniques are compared and linked to each other. The obtained nano- and microstructures are compared to different models found in literature. Pore sizes in the range of 1.5-2 nm and of 8-12 nm are found, reflecting the gel pores. In addition, some bigger capillary pores are found. The measuring techniques are complementary to each other as they study different pore size ranges and are based on different phenomena. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在不破坏样品和停止水合作用的情况下,很难及时研究微结构孔隙率。当前的技术主要涉及压汞法和显微分析。这些破坏性技术能够提供有关微观结构的信息,但由于样品制备,纳米结构会受到影响。动态蒸气吸附是一种不常用于研究胶结材料纳米结构的技术,需要应用不同的模型。此外,通过比较T-2弛豫时间,核磁共振不仅可以用于总含水量,而且可以用于孔径分布的无损研究,并且可以与低温计量法结合使用。在本文中,将这些不同的测量技术进行比较并相互链接。将获得的纳米结构和微观结构与文献中发现的不同模型进行比较。发现孔径在1.5-2nm和8-12nm的范围内,反映了凝胶孔。另外,发现了一些较大的毛细孔。由于测量技术研究不同的孔径范围并且基于不同的现象,因此它们相互补充。 (C)2019 Elsevier Ltd.保留所有权利。

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