[1] 奚飞达.水泥混凝土制品标准化在我国国民经济建设中的地位、作用及发展趋势分析[C]//中国硅酸盐学会混凝土与水泥制品分会七届二次理事会议暨学术交流会论文集.宁波,2007:105-112. XI F D. Analysis on the position, function and development trend of standardization of cement concrete products in my country’s national economic construction[C]//The Second Council Meeting and Academic Exchange Meeting of the Seventh Session of the Concrete and Cement Products Branch of the Chinese Ceramic Society. Ningbo, 2007: 105-112 (in Chinese). [2] 黄 伟.矿物掺合料对超高性能混凝土的水化及微结构形成的影响[D].南京:东南大学,2017. HUANG W. Effect of supplementary cementitious materials on the hydration and microstructural development of ultra-high performance concrete[D]. Nanjing: Southeast University, 2017 (in Chinese). [3] RONG Z D, SUN W, XIAO H J, et al. Effects of nano-SiO2 particles on the mechanical and microstructural properties of ultra-high performance cementitious composites[J]. Cement and Concrete Composites, 2015, 56: 25-31. [4] LI W G, HUANG Z Y, CAO F L, et al. Effects of nano-silica and nano-limestone on flowability and mechanical properties of ultra-high-performance concrete matrix[J]. Construction and Building Materials, 2015, 95: 366-374. [5] 朱鹏飞.大掺量矿物掺合料胶凝材料体系水化放热规律研究[D].乌鲁木齐:新疆农业大学,2017. ZHU P F. Research on hydration exothermic regularity of high volume mineral admixtures cementitious systems[D]. Urumqi: Xinjiang Agricultural University, 2017 (in Chinese). [6] 李虹燕,丁 铸,邢 锋,等.粉煤灰、矿渣对水泥水化热的影响[J].混凝土,2008(10):54-57. LI H Y, DING Z, XING F, et al. Effect of fly ash and slag on hydration heat evolution of cement[J]. Concrete, 2008(10): 54-57 (in Chinese). [7] 谢友均.超细粉煤灰高性能混凝土的研究与应用[D].长沙:中南大学,2006. XIE Y J. The study on high performance concrete with ultrafine fly ash and its application[D]. Changsha: Central South University, 2006 (in Chinese). [8] 杨立军.矿渣超细粉在水泥中的应用研究[D].长沙:中南大学,2005. YANG L J. Research on application of superfine slag powder in cement[D]. Changsha: Central South University, 2005 (in Chinese). [9] 何智海.蒸养粉煤灰混凝土若干问题研究[D].长沙:中南大学,2007. HE Z H. Research on several problems of steam curing fly ash concrete[D]. Changsha: Central South University, 2007 (in Chinese). [10] 于 方,熊建波,邓春林,等.养护方式对C100超高强混凝土抗压强度的影响规律研究[J].硅酸盐通报,2017,36(s1):194-198+218. YU F, XIONG J B, DENG C L, et al. Study on the influence of curing methods on compressive strength of C100 ultra-high strength concrete[J]. Bulletin of the Chinese Ceramic Society, 2017, 36(s1): 194-198+218 (in Chinese). [11] 熊蓉蓉,龙广成,宋军伟.蒸养条件下掺矿物掺合料水泥复合浆体的水化特性研究[J].硅酸盐通报,2018,37(11):3630-3636. XIONG R R, LONG G C, SONG J W. Study of mineral admixtures on the hydration characteristic of complex binder under steam curing condition[J]. Bulletin of the Chinese Ceramic Society, 2018, 37(11): 3630-3636 (in Chinese). [12] 张 丰,白 银,蔡跃波,等.混凝土低温早强剂研究现状[J].材料导报,2017,31(21):106-113. ZHANG F, BAI Y, CAI Y B, et al. Research status of low temperature early strength agents for concrete[J]. Materials Review, 2017, 31(21): 106-113 (in Chinese). [13] 姜梅芬,吕宪俊.混凝土早强剂的研究与应用进展[J].硅酸盐通报,2014,33(10):2527-2533. JIANG M F, LV X J. Research and application progresses of concrete early strength agent[J]. Bulletin of the Chinese Ceramic Society, 2014, 33(10): 2527-2533 (in Chinese). [14] 余 鑫,于 诚,姜 骞,等.采用原位XRD研究早强剂对水泥早期水化的影响[J].材料导报,2020,34(2):2058-2062. YU X, YU C, JIANG Q, et al. In-situ X-ray diffraction analysis on the role of hardening accelerator in early hydration of cement[J]. Materials Reports, 2020, 34(2): 2058-2062 (in Chinese). |