期刊文献+

微硅粉的物化特性及对混凝土孔结构的影响 被引量:6

Physicochemical properties of silica fume and its effect to pore-structures of concrete
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摘要 研究了微硅粉的BET氮吸附特性、胶凝特性、水化机理,以及作为矿物掺合料对混凝土孔结构的影响。BET氮吸附测试显示微硅粉为两端开口管状介孔结构,平均孔径7.78 nm,比表面积36.52 m2/g;微硅粉在水泥胶砂中掺量以5%为宜,在混凝土中掺量为10%时,制备的混凝土强度可达95 MPa以上。XRD表明微硅粉与水泥水化生成的Ca(OH)2发生二次火山灰反应可以加快水化速率、明显提高了混凝土强度;MIP分析结果表明,微硅粉可以改善混凝土内部孔结构:减少有害孔、降低孔隙率,平均孔径由20.0 nm减小至13.8 nm,孔隙率从7.74%降低至4.89%。 The BET nitrogen adsorption characteristics, gelling properties, hydration mechanism of silica fume would be studied in this article, and the effect to pore-structures of concrete would be researched when silica fume was used as mineral admixture.BET nitrogen ad- sorption test shows that silica fume has tubular mesoporous structure which both ends are opening,its average pore size is 7.78 nm, specif- ic surface area is 36.52 m2/g;the perfect proportion of silica fume in cement mortar is 5% ,and 10% in concrete ,the strength of concrete could reach 95 MPa.XRD show that silica fume accelerate hydration rate, improve strength by reacting with Ca(OH)2 which generated in cement hydration;MIP test show that silica finne can improve pore structure of concrete by reducing the harmful holes and the porosity, the average pore diameter decreased fi'om 20.0 nm to 13.8 nm, the porosity decreased from 7.74% to 4.89% in this experiment.
出处 《混凝土》 CAS CSCD 北大核心 2013年第12期77-81,共5页 Concrete
基金 大宗工业固废处理与资源化技术及示范(第二批)--"863"计划项目(2012AA06A112)
关键词 微硅粉 BET氮吸附 MIP 火山灰反应 silica fume BET nitrogen adsorption mercury intrusion porosimetry pozzolanic reaction
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参考文献15

  • 1WEI Yongqi,YAO Wu,XING Xiaoming. Quantitative evaluation of hydrated cement modified by silica fume using QXRD,Al MAS NMR,TG-DSC and selective dissolution techniques[J].{H}Construction and Building Materials,2012,(36):925-932. 被引量:1
  • 2KADRI E H,DUVAL R. Hydration heat kinetics of concrete with silica fume[J].{H}Construction and Building Materials,2009,(23):3388-3392. 被引量:1
  • 3BARBHUIYA S A,GBAGBO J K. Properties of fly ash concrete modified with hydrated lime and silica fume[J].{H}Construction and Building Materials,2009,(23):3233-3239. 被引量:1
  • 4SONG H W,PACK S W. Estimation of the permeability of silica fume cement concrete[J].{H}Construction and Building Materials,2010,(24):315-321. 被引量:1
  • 5BHANJA S,SENGUPTA B. Influence of silica fume on the tensile strength of concrete[J].{H}Cement and Concrete Research,2005,(35):743-747. 被引量:1
  • 6SEZER G I. Comprehensive strength and Sulfate resistance of limestone and/or silica fume mortars[J].{H}Construction and Building Materials,2012,(26):613-618. 被引量:1
  • 7VIKAN H,JUSTNES H. Rheology of cementitious paste with silica fume or limestone[J].{H}Cement and Concrete Research,2007,(37):1512-1517. 被引量:1
  • 8ZHANG M H,TAM C T. Effect of water-to-cementitious materials ratio and silica fume on the autogenous shrinkage of concrete[J].{H}Cement and Concrete Research,2003,(33):1687-1694. 被引量:1
  • 9段广云,巩建国.微硅粉增密仓料位实时监测系统的设计与实现[J].仪表技术与传感器,2011(8):61-63. 被引量:4
  • 10陈奇..SFB喷动流化床应用于微硅粉增密中试研究[D].四川大学,2003:

二级参考文献30

  • 1袁晓红,姚源,唐永良.活性炭吸附剂的孔结构表征[J].中国粉体技术,2000,6(z1):190-191. 被引量:17
  • 2卢柯.纳米孪晶纯铜的强度和导电性研究[J].中国科学院院刊,2004,19(5):352-354. 被引量:31
  • 3李玉琳,钱选青,廉慧珍.北京航华科贸中心C_(60)泵送混凝土的冬季施工[J].低温建筑技术,1996,19(3):5-8. 被引量:2
  • 4中国土木工程协会高强混凝土委员会.高强混凝土设计与施工指南[M].中国建工出版社,1995.. 被引量:2
  • 5COX L,van DUK S.Foam concrete:A different kind of mix[J].Concrete,2002,36(2):54-55. 被引量:1
  • 6JONES R,McCARTHY A,KHARIDU S,et al.Foamed concrete developments and applications[J].Concrete,2005,39(8):41-43. 被引量:1
  • 7NARAYANAN N,RAMAMURTHY K.Structure and pro-perties of aerated concrete:A review[J].Cement and Concrete Composites,2000,22(5):321-329. 被引量:1
  • 8WEE T-H,BABU D S,TAMILSELVAN T,et al.Air-void system of foamed concrete and its effect on mechanical pro-perties[J].ACI Materials Journal,2006,103(1):45-52. 被引量:1
  • 9TAM C T,LIM T Y,SRI R R,et al.Relationship between strength and volumetric composition of moist-cured cellular concrete[J].Magazine of Concrete Research,1987,39(138):12-18. 被引量:1
  • 10JONES R,McCARTHY A.Preliminary views on the potential of foamed concrete as a structural material[J].Magazine of Concrete Research,2005,57(1):21-31. 被引量:1

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