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砂浆可印刷性描述符与核磁共振弛豫测量数据之间的关系。

Relations Between the Printability Descriptors of Mortar and NMR Relaxometry Data.

作者信息

Rusu Mihai M, Ardelean Ioan

机构信息

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

EUT+ Institute of Nanomaterials & Nanotechnologies EUTINN, European University of Technology, European Union.

出版信息

Materials (Basel). 2025 Jun 27;18(13):3070. doi: 10.3390/ma18133070.

Abstract

Concrete printing technologies play a key role in the modernization of construction practices. One factor that mitigates their progress is the development of standards and characterization tools for concrete during printing. The aim of this work is to point out correlations between some printability descriptors of mortars and the data obtained from low-field nuclear magnetic resonance (NMR) relaxometry techniques. In this context, the superposed effects of an acrylic-based superplasticizer and calcium nitrate accelerator were investigated. The mortars under study are based on white Portland cement, fine aggregates, and silica fume at fixed ratios. Extrusion tests and visual inspection of the filaments evaluate the extrudability and the printing window. The selected compositions were also investigated via transverse T2 and longitudinal T1 NMR relaxation times. The results indicate that both additives increase the printing window of the mortar, while the accelerator induces a faster increase in specific surface area of capillary pores S/V only after 30-60 min of hydration. Some correlations were found between the printing window and the range where the transverse relaxation rates 1/T2 and the pore surface-to-volume ratios S/V increase linearly. This suggests some promising connections between NMR techniques and the study of structural buildup of cementitious materials.

摘要

混凝土打印技术在建筑施工现代化中起着关键作用。阻碍其发展的一个因素是打印过程中混凝土标准和表征工具的发展。这项工作的目的是指出砂浆的一些可打印性描述符与从低场核磁共振(NMR)弛豫测量技术获得的数据之间的相关性。在此背景下,研究了丙烯酸基高效减水剂和硝酸钙促凝剂的叠加效应。所研究的砂浆基于白色波特兰水泥、细集料和硅灰,比例固定。通过挤出试验和对细丝的目视检查来评估挤出性和打印窗口。还通过横向T2和纵向T1 NMR弛豫时间对选定的组合物进行了研究。结果表明,两种添加剂都增加了砂浆的打印窗口,而促凝剂仅在水化30 - 60分钟后才导致毛细孔比表面积S/V更快增加。在打印窗口与横向弛豫率1/T2和孔表面体积比S/V线性增加的范围之间发现了一些相关性。这表明NMR技术与胶凝材料结构形成研究之间存在一些有前景的联系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ef94/12251319/69d180c985ec/materials-18-03070-g008.jpg

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