全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...

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

DOI: 10.14062/j.issn.0454-5648.2015.05.03

Full-Text   Cite this paper   Add to My Lib

Abstract:

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

References

[1]  ? DEMOULIAN E, VERNET C, HAWTHORN F, et al. Slag content
[2]  determination in cements by selective dissolution [C]//Proceedings of
[3]  the 7th International Congress on the Chemistry of Cement, Paris,
[4]  France, 1980: 151–156.
[5]  LUMLEY J S, GOLLOP R S, MOIR G K, et al. Degrees of reaction of
[6]  the slag in some blends with Portland cements [J]. Cem Concr Res,
[7]  1996, 26(1): 139–151.
[8]  LUKE K, GLASSER F P. Selective dissolution of hydrated blastfurnace slag cements[J]. Cem Concr Res, 1987, 17(2): 273–282.
[9]  WANG Peiming, FENG Shuxia, LIU Xianping. J Chin Ceram Soc,
[10]  2011, 39(10): 92–98.
[11]  FENG Shuxia, WANG Peiming, LIU Xianping. SEM-backscattered
[12]  electron imaging and image processing for evaluation of unhydrated
[13]  cement volume fraction in slag blended Portland cement pastes[J]. J
[14]  Wuhan Univ Technol Mater: Sci Ed, 2013, 28(5): 968–972.
[15]  王培铭, 丰曙霞, 刘贤萍. 用于背散射电子图像分析的水泥浆体抛
[16]  光样品制备[J]. 硅酸盐学报, 2013, 41(2): 211–217.
[17]  WANG Peiming, FENG Shuxia, LIU Xianping. J Chin Ceram Soc,
[18]  2013, 41(2): 211–217.
[19]  王培铭, 吴丹琳, 刘贤萍. 两种不同C3S含量硅酸盐水泥的水化过
[20]  程研究[C]//中国硅酸盐学会水泥分会首届学术年会, 焦作, 2009:
[21]  16–23.
[22]  WANG Peiming, WU Danlin, LIU Xianping. Investigation of
[23]  hydration on hydration of two Portland cements with different C3S
[24]  content[C] (in Chinese)//1st Symposium of Chinese Ceramic Society,
[25]  Jiaozuo, 2009: 16–23.
[26]  YIO M H N, PHELAN J C, WONG H S, et al. Determining the slag
[27]  fraction, water/binder ratio and degree of hydration in hardened cement
[28]  pastes[J]. Cem Concr Res,, 2014, 56: 171–181.
[29]  FENG X, GARBOCZI E J, BENTZ D P, et al. Estimation of the degree
[30]  of hydration of blended cement pastes by a scanning electron
[31]  microscope point-counting procedure[J]. Cem Concr Res, 2004, 34(10):
[32]  1787–1793.
[33]  MILLER M, BOBKO C, VANDAMME M, et al. Surface roughness
[34]  criteria for cement paste nanoindentation[J]. Cem Concr Res, 2008,
[35]  38(4): 467–476.
[36]  陈培鑫.BEI-GSR分析技术在复合水泥浆体结构中的应用研究[D].
[37]  广州: 华南理工大学, 2013.
[38]  CHEN Penxin. The application of BEI-GSR analysis on the
[39]  microstructure of the blended cement paste (in Chinese, dissertation).
[40]  Guangzhou: South China University of Technology, 2013.
[41]  SCRIVENER K L. Backscattered electron imaging of cementitious
[42]  microstructures: understanding and quantification [J]. Cem Concr
[43]  Compos, 2004, 26(8): 935–945.
[44]  HAHA M B, DE WEERDT K, LOTHENBACH B. Quantification of the
[45]  degree of reaction of fly ash[J]. Cem Concr Res, 2010, 40(11): 1620–1629.
[46]  HAHA M B, GALLUCCI E, GUIDOUM A, et al. Relation of
[47]  expansion due to alkali silica reaction to the degree of reaction
[48]  measured by SEM image analysis[J]. Cem Concr Res, 2007, 37(8):
[49]  1206–1214.
[50]  YANG R, BUENFELD N R. Binary segmentation of aggregate in
[51]  SEM image analysis of concrete [J]. Cem Concr Res, 2001, 31(3):
[52]  437–441.
[53]  PHILIPP M. Mechanisms of improved transport phenomena in mature
[54]  portland cement concrete pavements; A macro and microstructural
[55]  evaluation[D]. USA: UMich, 2004.
[56]  POWERS T C, BROWNYARD T L. Studies of the physical properties
[57]  of hardened Portland cement paste [J]. ACI J Proceed, 1946, 43(9):
[58]  249–336.
[59]  PAPADAKIS V G, FARDIS M N, VAYENAS C G. Hydration and
[60]  carbonation of pozzolanic cements [J]. ACI Mater J, 1992, 89(2): 119–130.
[61]  刘仍光, 阎培渝.水泥–矿渣复合胶凝材料中矿渣的水化特性[J].硅
[62]  酸盐学报, 2012, 40(8): 1112–1118.
[63]  LIU Renguang, YAN Peiyu. J Chin Ceram Soc, 2012, 40(8):
[64]  1112–1118.
[65]  BATTAGIN A F. Influence of degree of hydration of slag on slag
[66]  cements[C]//Proc. 9th ICCC, Vol. III, National Council for Cement
[67]  and Building Materials, New Delhi, India, 1992: 166–172.
[68]  PANE I, HANSEN W. Investigation of blended cement hydration by
[69]  isothermal calorimetry and thermal analysis [J]. Cem Concr Res, 2005,
[70]  35(6): 1155–1164.
[71]  DARQUENNES A, ESPION B, STAQUET S. How to assess the
[72]  hydration of slag cement concretes? [J]. Construct Build Mater, 2013,
[73]  40: 1012–1020.
[74]  TOTANI Y, SAITO Y, KAGEYAMA M, et al. The hydration of blast
[75]  furnace slag cement[C]//Proceedings of the 7th International Congress
[76]  on the Chemistry of Cement, Paris, France, 1980: 95–98.
[77]  WU X, ROY D M, LANGTON C A. Early hydration of slag-cement
[78]  [J]. Cem Concr Res, 1983, 13 (2): 277–286.
[79]  GEIKER M. Studies of Portland cement hydration by measurements of
[80]  chemical shrinkage [D]. Denmark: Technical University of Denmark,
[81]  1983.
[82]  GOMES J C, CABRERA J, JALALI S. The degree of cement
[83]  hydration determined by backscattered electron imaging[C]//Materials
[84]  Science of Concrete—The Sidney Diamond Symposium, American
[85]  Ceramic Society, Westerville, OH, 1998: 109–126.
[86]  ASH J E, HALL M G, LANGFORD J I, et al. Estimations of degree of
[87]  hydration of portland cement pastes [J]. Cem Concr Res, 1993, 23(2):
[88]  399–406.
[89]  KJELLSEN K O, DETWILER R J, GJORV O E. Backscattered
[90]  electron imaging of cement pastes hydrated at different temperatures
[91]  [J]. Cem Concr Res, 1990, 20(2): 308–311.
[92]  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
[93]  筑材料学报, 2005, 8(6): 646–652.
[94]  WANG Peiming, FENG Shuxia, LIU Xianping. J Build Mater (in
[95]  Chinese), 2005, 8(6): 646–652.
[96]  王培铭, 丰曙霞, 刘贤萍. 背散射电子图像分析在水泥基材料微观
[97]  结构研究中的应用[J]. 硅酸盐学报, 2011, 39(10): 92–98.

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133