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基于背散射电子图像的矿渣-水泥复合体系反应程度的定量分析 被引量:11

Quantitative Analysis on Reaction Degree of Slag-Cement Composite System Based on Back-Scattered-Electron Image
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摘要 采用基于背散射电子图像(BSE)的物相灰度定量分析法研究了矿渣-水泥复合体系中水泥、矿渣各自反应程度及总体反应程度。结果表明:表面足够平滑的样品,其BSE图像可以清晰地展示出复合体系中水化产物及未反应颗粒的微观形貌及其差异,并可通过灰度统计定量分析得到水泥、矿渣各自的反应程度;对于低水胶比(0.3)的矿渣-水泥复合体系,矿渣掺量为50%和70%时,矿渣反应程度接近。由BSE图像分析法计算得到的矿渣-水泥复合体系总体反应程度比基于化学结合水的热重分析法所测数据偏低,但两种方法揭示出的规律一致:对于低水胶比的矿渣-水泥复合体系,高矿渣掺量会减小矿渣-水泥复合体系的总体反应程度。 A quantitative analysis on the gray scale of the different phases of the back-scattered-electron(BSE) images was carried out for the purpose of investigating the reaction degree in slag-cement composite system. The results show that the BSE images of the samples with sufficiently smooth surfaces can clearly display the different microstructure of hydration products and the unreacted grain in the intricate composite system. In addition, the statistics of the gray scale can also give the quantitative information regarding the degree of hydration of the slag and the cement. For a low water-binder ratio(0.3) slag-cement composite system, there is little difference between the degrees of hydration reaction of slag at the slag contents of 50% and 70%. The calculated degree of hydration of the slag-cement composite system based on the BSE image analysis is lower than that from the thermal gravity analysis based on the chemically-bond water in the system. A great content of slag content cannot enhance the overall hydration reaction of the slag-cement composite system for a low water-to-binder ratio composite system.
作者 张倩倩 魏亚
出处 《硅酸盐学报》 EI CAS CSCD 北大核心 2015年第5期563-569,共7页 Journal of The Chinese Ceramic Society
基金 国家自然科学基金项目(51108246)
关键词 背散射电子图像 矿渣-水泥复合体系 反应程度 物相灰度 back-scattered-electron image slag-cement composite system reaction degree gray of phase
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  • 1王培铭,丰曙霞,刘贤萍.水泥水化程度研究方法及其进展[J].建筑材料学报,2005,8(6):646-652. 被引量:107
  • 2王培铭,吴丹琳,刘贤萍.两种不同CsS含量硅酸盐水泥的水化过程研究[C]//中国硅酸盐学会水泥分会首届学术年会,焦作,2009.
  • 3FMMY C, SCRIVNER K L, CRUMBLE A K. What causes differences of C-S-H gel grey levels in backscattered electron images? [J]. Cem Concr Res, 2002, 32: 1465-1471.
  • 4SCRIVNER K L, PRATT P L. Characterisation of Portland cement hydration by electron optical techniques [J]. Electron Microscopy of Materials, 1983, 31: 351-356.
  • 5SCRIVNER K L, PRATT P L. Backscattered electron images of polished cement sections in the scanning electron microscope [C]//Proceeding of the 6th International Conference on Cement Microscopy, New Mexico, 1984:145-155.
  • 6FENG X, GRABOCZI E J, BENTZ D P, et al. Estimation of the degree of hydration of blended cement paste by a scanning electron microscope point-counting procedure [J]. Cem Concr Res, 2004, 34(10):1787-1793.
  • 7LAM L, WONG Y L, POON C S. Degree of hydration and gel/space ratio of high-volume fly ash/cement systems [J]. Cem Concr Res, 2000, 30(5): 747-756.
  • 8POON C S, QIAO C S, LIN Z S. Pozzolanic properties of reject fly ash in blended cement pastes [J]. Cem Concr Res, 2003, 33(11): 1857- 1865.
  • 9ZHANG Y M, SUN W, YAN H D. Hydration of high-volume fly ash cement pastes [J]. Cem Concr Comp, 2000, 22(6): 445-452.
  • 10HAHA M B, WEERDT K D, LOTHENBACH B. Quantification of the degree of reaction of fly ash [J]. Cem Concr Res, 2010, 40: 1620- 1629.

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