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加速剂对水泥净浆毛细孔的影响:NMR 弛豫研究。

The Effect of an Accelerator on Cement Paste Capillary Pores: NMR Relaxometry Investigations.

机构信息

Physics and Chemistry Department, Technical University of Cluj-Napoca, 400114 Cluj-Napoca, Romania.

出版信息

Molecules. 2021 Sep 2;26(17):5328. doi: 10.3390/molecules26175328.

Abstract

Nuclear Magnetic Resonance (NMR) relaxometry is a valuable tool for investigating cement-based materials. It allows monitoring of pore evolution and water consumption even during the hydration process. The approach relies on the proportionality between the relaxation time and the pore size. Note, however, that this approach inherently assumes that the pores are saturated with water during the hydration process. In the present work, this assumption is eliminated, and the pore evolution is discussed on a more general basis. The new approach is implemented here to extract information on surface evolution of capillary pores in a simple cement paste and a cement paste containing calcium nitrate as accelerator. The experiments revealed an increase of the pore surface even during the dormant stage for both samples with a faster evolution in the presence of the accelerator. Moreover, water consumption arises from the beginning of the hydration process for the sample containing the accelerator while no water is consumed during dormant stage in the case of simple cement paste. It was also observed that the pore volume fractal dimension is higher in the case of cement paste containing the accelerator.

摘要

核磁共振(NMR)弛豫度法是一种研究水泥基材料的有用工具。它允许在水化过程中监测孔演化和水消耗。该方法依赖于弛豫时间与孔径之间的比例关系。然而,需要注意的是,该方法假定在水化过程中孔是被水饱和的。在本工作中,消除了这一假设,并更普遍地讨论了孔演化。在此引入了新方法来提取简单水泥砂浆和含有硝酸钙作为加速剂的水泥砂浆中毛细孔表面演化的信息。实验表明,两种样品在休眠阶段都会增加孔表面,而在加速剂存在的情况下,孔表面的演化速度更快。此外,对于含有加速剂的样品,在水化过程开始时就会消耗水,而在简单水泥砂浆的情况下,在休眠阶段不会消耗水。还观察到,含有加速剂的水泥砂浆的孔体积分形维数更高。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e97/8434223/0c94e5480f3f/molecules-26-05328-g001.jpg

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