综述了集料粒径与碱硅酸反应(ASR)膨胀关系的研究现状,指出了ASR膨胀研究存在的局限性,阐述了大粒径、多级配集料ASR膨胀规律研究的必要性.介绍了几种ASR膨胀机理及ASR膨胀预测模型,并指出基于碱硅酸反应活化能的测定预测ASR膨胀将可能成为今后研究的一个热点.
参考文献
[1] | C.Zhang;A.Wang .Influence of aggregate size and aggregate size grading on ASR expansion[J].Cement and Concrete Research,1999(9):1393-1396. |
[2] | 段峰涛,马静.集料粒径对快速砂浆棒法检测准确性的影响研究[J].科学之友,2012(05):20-22. |
[3] | S. Poyet;A. Sellier;B. Capra;G. Foray;J.-M. Torrenti;H. Cognon;E. Bourdarot .Chemical modelling of Alkali Silica reaction: Influence of the reactive aggregate size distribution[J].Materials and structures,2007(2):229-239. |
[4] | S. Multon;M. Cyr;A. Sellier .Coupled effects of aggregate size and alkali content on ASR expansion[J].Cement and Concrete Research,2008(3):350-359. |
[5] | K. Ramyar;A. Topal;O. Andic .Effects of aggregate size and angularity on alkali-silica reaction[J].Cement and Concrete Research,2005(11):2165-2169. |
[6] | 洪翠玲,卢都友.颗粒尺寸对砂岩集料压蒸膨胀行为的影响[J].南京工业大学学报(自然科学版),2007(04):15-20. |
[7] | Stephane Multon;Martin Cyr;Alain Sellier .Effects of aggregate size and alkali content on ASR expansion[J].Cement and Concrete Research,2010(4):508-516. |
[8] | Cyrille F. Dunant;Karen L. Scrivener .Effects of aggregate size on alkali-silica-reaction induced expansion[J].Cement and Concrete Research,2012(6):745-751. |
[9] | 卢都友,许仲梓,唐明述.不同结构构造硅质集料的碱硅酸反应模型[J].硅酸盐学报,2002(02):149-154. |
[10] | Sarka Lukschova;Richard Prikryl;Zdenek Pertold .Petrographic Identification Of Alkali-silica Reactive Aggregates In Concrete From 20th Century Bridges[J].Construction and Building Materials,2009(2):734-741. |
[11] | 周麒雯,杨轶.骨料中活性组分的含量以及粒径对ASR膨胀的影响[J].水电站设计,2008(03):46-49. |
[12] | 庄园,钱春香,徐文.温度和集料对混凝土ASR有效碱的影响规律[J].建筑材料学报,2012(02):184-189. |
[13] | F.A.Rodrigues;Paulo;J.M.Monteiro .The alkali-silica reaction The surface charge density of silica and its effect on expansive pressure[J].Cement and Concrete Research,1999(4):527-530. |
[14] | Flavio A. Rodrigues;Paulo J.M. Monteiro;Garrison Sposito .The alkali-silica reaction: The effect of monovalent and bivalent cations on the surface charge of opal[J].Cement and Concrete Research,2001(11):1549-1552. |
[15] | 尹芪,文梓芸.用溶胶-凝胶膨胀法对碱-硅酸反应机理的研究[J].硅酸盐学报,2003(11):1037-1042. |
[16] | Tsuneki Ichikawa;Masazumi Miura .Modified model of alkali-silica reaction[J].Cement and Concrete Research,2007(9):1291-1297. |
[17] | Tsuneki Ichikawa .Alkali-silica reaction, pessimum effects and pozzolanic effect[J].Cement and Concrete Research,2009(8):716-726. |
[18] | 钱春香,庄园,徐文.骨料粒径与ASR膨胀关系及计算研究进展[J].东南大学学报(自然科学版),2010(05):1121-1128. |
[19] | Z. P. Bazant;A. Steffens .Mathematical model for kinetics of alkali-silica reaction in concrete[J].Cement and Concrete Research,2000(3):419-428. |
[20] | S. Poyet;A. Sellier;B. Capra;G. Foray;J.-M. Torrenti;H. Cognon;E. Bourdarot .Chemical modelling of Alkali Silica reaction: Influence of the reactive aggregate size distribution[J].Materials and structures,2007(2):229-239. |
[21] | 王军,邓敏.碱硅酸反应影响下混凝土结构的寿命预测[J].硅酸盐通报,2006(05):27-30. |
[22] | Predicting ASR aggregate reactivity in terms of its activation energy[J].Construction and Building Materials,2010(7):p.1101. |
[23] | 刘晨霞,陈改新,纪国晋,王秀军,计涛.不同温度下碱-硅酸反应膨胀规律研究[J].混凝土与水泥制品,2012(03):1-4. |
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