[1] 左俊卿,房霆宸,陈逸群,等.混凝土收缩开裂性能控制研究[J].建筑施工,2021,43(6):1150-1152+1162. ZUO J Q, FANG T C, CHEN Y Q, et al. Study on control of shrinkage cracking of concrete[J]. Building Construction, 2021, 43(6): 1150-1152+1162 (in Chinese). [2] 韩宇栋,张 君,岳清瑞,等.现代混凝土收缩研究评述[J].混凝土,2019(2):1-12+16. HAN Y D, ZHANG J, YUE Q R, et al. Review on shrinkage of modern concrete[J]. Concrete, 2019(2): 1-12+16 (in Chinese). [3] 陈美祝.水泥基材料组分对早期水化及收缩开裂影响的研究[D].武汉:武汉大学,2004. CHEN M Z. Study on influence of compositions on hydration and shrinkage cracking in cement-based materials at early ages[D]. Wuhan: Wuhan University, 2004 (in Chinese). [4] LEEMANN A, NYGAARD P, LURA P. Impact of admixtures on the plastic shrinkage cracking of self-compacting concrete[J]. Cement and Concrete Composites, 2014, 46: 1-7. [5] ZHU W, WEI J X, LI F X, et al. Understanding restraint effect of coarse aggregate on the drying shrinkage of self-compacting concrete[J]. Construction and Building Materials, 2016, 114: 458-463. [6] QIN Y, YI Z J, WANG W N, et al. Time-dependent behavior of shrinkage strain for early age concrete affected by temperature variation[J]. Advances in Materials Science and Engineering, 2017, 2017: 3627251. [7] 周 凌.自密实混凝土的收缩性能研究[J].路基工程,2017(1):143-145+150. ZHOU L. Study on shrinkage performance of self-compacting concrete[J]. Subgrade Engineering, 2017(1): 143-145+150 (in Chinese). [8] 王国杰,郑建岚.自密实混凝土收缩试验研究及收缩模型的建立[J].福州大学学报(自然科学版),2014,42(6):923-929. WANG G J, ZHENG J L. Experimental study and modeling on shrinkage of self-compacting concrete[J]. Journal of Fuzhou University (Natural Science Edition), 2014, 42(6): 923-929 (in Chinese). [9] 林燕妮.石灰石粉对C30自密实混凝土的性能影响[J].福建建材,2016(2):8-11. LIN Y N. Influence of limestone powder on the performance of C30 self-compacting concrete[J]. Fujian Building Materials, 2016(2): 8-11 (in Chinese). [10] 薛晓芳,尹 军,蒋正武.石粉含量对C50机制砂自密实混凝土性能的影响[J].混凝土世界,2016(1):98-102. XUE X F, YIN J, JIANG Z W. Influence of limestone powder content on the performance of C50 manufactured sand self-compacting concrete[J]. China Concrete, 2016(1): 98-102 (in Chinese). [11] 何民伟.C30人工砂自密实混凝土的配制及性能研究[J].福建建材,2014(6):9-11. HE M W. Study on Preparation and performance of C30 manufactured sand self-compacting concrete[J]. Fujian Building Materials, 2014(6): 9-11 (in Chinese). [12] 曹鹏飞,秦鸿根,庞超明.掺石灰石粉自密实混凝土性能的研究[J].施工技术,2005,34(s2):35-37+43. CAO P F, QIN H G, PANG C M. Study on performance of self-compacting concrete mixed with limestone-powder[J]. Construction Technology, 2005, 34(s2): 35-37+43 (in Chinese). [13] 聂 虎,汪 彬,徐 文.超细石灰石粉高强自密实混凝土的制备[J].商品混凝土,2015(2):33-35. NIE H, WANG B, XU W. Preparation of high strength self-consolidating concrete with ultra-fine limestone powder[J]. Ready-Mixed Concrete, 2015(2): 33-35 (in Chinese). [14] 王成启,张悦然.矿物掺合料对海工自密实高性能混凝土收缩性能的影响[J].中国港湾建设,2012,32(6):24-28. WANG C Q, ZHANG Y R. Effect of mineral admixtures on shrinkage property of high performance self-compacting concrete for marine structures[J]. China Harbour Engineering, 2012, 32(6): 24-28 (in Chinese). [15] 曹国辉,胡佳星,张 锴.混凝土收缩应变预测模型研究[J].中国铁道科学,2013,34(6):73-78. CAO G H, HU J X, ZHANG K. Study on prediction model of concrete shrinkage strain[J]. China Railway Science, 2013, 34(6): 73-78 (in Chinese). [16] 楼 瑛,罗素蓉.混凝土自收缩的测定及若干因素对自收缩影响规律的研究[J].福州大学学报(自然科学版),2015,43(1):100-105. LOU Y, LUO S R. The study of how to measure autogenous shrinkage of concrete and a number of factors that inflence it[J]. Journal of Fuzhou University (Natural Science Edition), 2015, 43(1): 100-105 (in Chinese). [17] NGUYEN Q D, AFROZ S, ZHANG Y D, et al. Autogenous and total shrinkage of limestone calcined clay cement (LC3) concretes[J]. Construction and Building Materials, 2022, 314: 125720. [18] SUN G J, XUE S D, QU X S, et al. Experimental investigation of creep and shrinkage of reinforced concrete with influence of reinforcement ratio[J]. Advances in Concrete Construction, 2019(4): 211-218. [19] ABDALHMID J M, ASHOUR A F, SHEEHAN T. Long-term drying shrinkage of self-compacting concrete: experimental and analytical investigations[J]. Construction and Building Materials, 2019, 202: 825-837. [20] GEDAM B A, BHANDARI N M, UPADHYAY A. An apt material model for drying shrinkage and specific creep of HPC using artificial neural network[J]. Structural Engineering and Mechanics, 2014, 52(1): 97-113. |