[1] TOYOHARU N, TOMOAKI H. Autogenous shrinkage of high-per- formance concrete [C]// Proceeding of the International Workshop on Microstructure and Durability to Predict Service Life of Concrete Structures, Japan: FEB, 2004: 86–95.
[2] TAZAWA E, KONKURīTO KōGAKU KYōKAI N. Autogenous shrinkage of concrete [M]. Hiroshima: Taylor & Francis, 1999: 13–14.
[3] BENTZ D P, JENSEN O M. Mitigation strategies for autogenous shrinkage cracking [J]. Cem Concr Compos, 2004, 26(6): 677–685.
[4] JENSEN O M, HANSEN P F. Water-entrained cement-based materials – I. Principles and theoretical background [J]. Cem Concr Res, 2001, 31(4): 647–654.
[5] HENKENSIEFKEN R, BRIATKA P, NANTUNG T, et al. Plastic shrinkage cracking in internally cured mixtures made with pre-wetted lightweight aggregate [J]. Concr Int, 2010, 32(2): 49–54.
[6] CUSSON D, LOUNIS Z, DAIGLE L. Bene?ts of internal curing on service life and life-cycle cost of high-performance concrete bridge decks – A case study [J]. Cem Concr Comp, 2010, 32(5): 339–350.
[7] BENTZ D P. Influence of internal curing using lightweight aggregates on interfacial transition zone percolation and chloride ingress in mortars [J]. Cem Concr Comp, 2009, 31(5): 285–289.
[8] CHLITTER J, HENKENSIEFKEN R, CASTRO J, et al. Development of internally cured concrete for increased service life [R]. FHWA/IN/ JTRP-2010/10. West Lafayette: Purdue University, 2010.
[9] VILLAREAL V. Internal curing-real world ready mix production and applications: a practical approach to lightweight modified concrete [C]// BENTZ D P, MOHR B ed. Internal Curing of High-Performance Concrete: Laboratory and Field Experiences. Farmington Hills: American Concrete Institute, 2008: 45–56.
[10] FRIGGLE T, REEVES D. Internal curing of concrete paving: laboratory and field experience [C]// BENTZ D P, MOHR B ed. Internal Curing of High-Performance Concrete: Laboratory and Field Experiences. Farmington Hills: American Concrete Institute, 2008: 71–80.
[11] BENTZ D P, SNYDER K. Protected paste volume in concrete: extension to internal curing using saturated lightweight fine aggregate [J]. Cem Concr Res, 1999, 29(11): 1863–1867.
[12] BENTZ D P, LURA P, ROBERTS J. Mixture proportioning for internal curing [J]. Concr Int, 2005, 27(2): 35–40.
[13] 董淑慧, 张宝生, 葛勇, 等. 轻骨料对混凝土自养护减缩效率的影响[J]. 硅酸盐学报, 2009, 37(3): 465–469.
DONG Shuhui, ZHANG Baosheng, GE Yong, et al. J Chin Ceram Soc, 2009, 37(3): 465–469.
[14] TAZAWA E, SHINGO M. Influence of cement and admixture on autogenous shrinkage of cement paste [J]. Cem Concr Res, 1995, 25(2): 281–287.
[15] GEIKER M R, BENTZ D P, JENSEN O M. Mitigating autogenous shrinkage by internal curing [C]// High-performance structural lightweight concrete, ACI SP-218. Farmington Hills: American Concrete Institute, 2004: 143–154.
[16] KOVLER K, JENSEN O M. Internal curing of concrete [R]. State- of-the-art report of RILEM technical committee 196-ICC. Bagneux: RILEM Publications S.A.R.L, 2007: 71–104.
[17] 党玉栋, 钱觉时, 乔墩, 等. 减缩剂预饱和轻骨料对水泥砂浆自收缩的影响及机理[J]. 硅酸盐学报, 2011, 39(1): 47–53.
DANG Yudong, QIAN Jueshi, QIAO Dun, et al. J Chin Ceram Soc, 2011, 39(1): 47–53.
[18] 孔丽娟, 葛勇, 张宝生, 等. 轻骨料的返水作用对粉煤灰二次水化的影响[J]. 硅酸盐学报, 2009, 37(7): 1239–1243.
KONG Lijuan, GE Yong, ZHANG Baosheng, et al. J Chin Ceram Soc, 2009, 37(7): 1239–1243.
[19] WASSERMAN R, BENTUR A. Interfacial interactions in lightweight aggregate concretes and their influence on the concrete strength [J]. Cem Concr Comp, 1996, 18(1): 67–76.
[20] 孔丽娟, 高礼雄, 葛勇. 轻骨料预湿程度对混合骨料混凝土抗冻性能影响[J]. 硅酸盐学报, 2011, 39(01): 35–40.
KONG Lijuan, GAO Lixiong, GE Yong. J Chin Ceram Soc, 2011, 39(01): 35–40.
[21] 胡曙光, 王发洲, 丁庆军. 轻集料与水泥石的界面结构[J]. 硅酸盐学报, 2005, 33(6): 713–717.
HU Shuguang, WANG Fazhou, DING Qingjun. J Chin Ceram Soc, 2005, 33(6): 713–717.
[22] BENTZ D P, JENSEN O M, HAECKER C J. Influence of cement particle-size distribution on early ageautogenous strains and stresses in cement-based materials [J]. J Am Ceram Soc, 2001, 84(1): 129–135.
[23] KUMAR A, ROY D M. Effect of Fineness on Properties of Classified Cements [J]. Cem Concr Aggr, 1984, 6(1): 47–51.
[24] NEMATI K M, PAOLO G. Microstructural and statistical evaluation of interfacial zone percolation in concrete, strength, fracture and complexity [J]. IOS Press, 2005, 3(2–4): 191–197.
[25] BENTZ D P, GARBOCZI E J, HAECKER C J. Effects of cement particle size distribution on performance properties of Portland cement-based materials [J]. Cem Concr Res, 1999(29): 1663–1671.
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