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低场核磁共振低温测孔技术表征硬化水泥浆体孔结构
引用本文:佘安明,马坤,王中平,姚武.低场核磁共振低温测孔技术表征硬化水泥浆体孔结构[J].建筑材料学报,2021,24(5):916-920.
作者姓名:佘安明  马坤  王中平  姚武
作者单位:同济大学先进土木工程材料教育部重点实验室,上海201804
基金项目:十三五国家重点研发计划项目 (2019YFC1906203)
摘    要:采用低场核磁共振低温测孔技术表征了硬化水泥浆体的孔结构,探讨了水灰比、龄期及掺和料对其孔结构的影响.结果 表明:随着水灰比的增大,硬化水泥浆体的毛细孔含量增大,凝胶孔占比逐渐降低,加权平均孔径逐渐增大;龄期延长使凝胶孔占比逐渐增大,加权平均孔径逐渐降低;纳米CaCO3主要增加40 nm左右毛细孔的量,粉煤灰则主要增加60 nm左右毛细孔的量,活性更强的硅灰则有更强的细化孔径的作用.

关 键 词:低场核磁共振  低温测孔技术  水泥  孔结构  表征
收稿时间:2021/3/21 0:00:00
修稿时间:2021/6/3 0:00:00

Characterization of Pore Structure in Hardened Cement Paste by Low Field NMR Cryoporometry
SHE Anming,MA Kun,WANG Zhongping,YAO Wu.Characterization of Pore Structure in Hardened Cement Paste by Low Field NMR Cryoporometry[J].Journal of Building Materials,2021,24(5):916-920.
Authors:SHE Anming  MA Kun  WANG Zhongping  YAO Wu
Affiliation:Key Laboratory of Advanced Civil Engineering Materials (Tongji University), Ministry of Education,Key Laboratory of Advanced Civil Engineering Materials (Tongji University), Ministry of Education,Key Laboratory of Advanced Civil Engineering Materials (Tongji University), Ministry of Education,Key Laboratory of Advanced Civil Engineering Materials (Tongji University), Ministry of Education
Abstract:The pore structure of hardened cement paste was characterized by low-field nuclear magnetic resonance (NMR) cryoporometry. The effects of different water-cement ratios, ages and admixtures on the pore structure were discussed. The results show that with the increase of water-cement ratio, the capillary pore content increases, the proportion of gel pore decreases gradually, and the weighted average pore size increases gradually. With the increase of age, the proportion of gel pore increases gradually and the weighted average pore size decreases gradually. Nano calcium carbonate and fly ash have different effects on different sizes of pores, while silica fume has a stronger role in refining pore size. The results show that low-field NMR cryoporometry is a suitable pore structure measuring method for cement-based materials.
Keywords:low field nuclear magnetic resonance  cryoporometry  cement  pore structure  characterization
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