To determine the appropriate stone powder content in tuff manufactured sand, we prepared concrete specimens mixed with tuff manufactured sand which contains three levels of stone powder content at Xiamen pumped storage power station, and investigated the effects of stone powder content on the rheological properties, mechanical properties, early cracking resistance, and drying shrinkage of hydraulic pumped concrete. Results showed that an increase in tuff stone powder content from 8% to 18% caused an increase in unit water consumption, yield stress, and plastic viscosity of hydraulic pump concrete, as well as a decrease in early-age cracking resistance and an increased dry shrinkage, while the compressive strength and splitting tensile strength were only slightly affected. When the content of tuff stone powder was reduced to 8%, the hydraulic pumped concrete exhibited inferior cohesion and water retention. The optimal tuff stone powder content was found to be around 13% to improve the overall properties of the hydraulic pumped concrete.
Key words
hydraulic pump concrete /
rheological properties /
early cracking resistance /
drying shrinkage /
stone power content /
tuff
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References
[1] 阮光华. 混凝土骨料制备工程[M]. 北京: 中国电力出版社, 2014.
[2] ALEXANDER M, MINDESS S. Aggregates in Concrete[M]. London: Routledge, 2005.
[3] 蔡胜华, 孙明伦, 王海生, 等. 石粉含量对碾压混凝土性能的影响[J]. raybet体育在线
院报, 2007, 24(5): 76-78.
[4] 石 妍, 彭尚仕, 董 芸, 等. 骨料品种对等强度水工混凝土的性能影响研究[J]. raybet体育在线
院报, 2013, 30(11): 83-85, 90.
[5] 汤 炀, 李 昂, 乐科迪, 等. 宁波地区凝灰岩机制砂石粉的活性激发研究[J]. 宁波工程学院学报, 2018, 30(2): 34-38, 84.
[6] 张恒春, 季锡贤, 唐方宇, 等. 凝灰岩石粉作为混凝土掺和料可行性试验研究[J]. 施工技术, 2017, 46(增刊1): 282-285.
[7] 杨 建. 凝灰岩粉作为水工混凝土掺和料的可行性研究[D]. 杭州: 浙江大学, 2018.
[8] 张 思. 凝灰岩粉掺和料对水工混凝土性能影响研究[D]. 武汉: raybet体育在线
, 2016.
[9] 宋少民, 程 成, 杨 楠. 机制砂岩性对胶砂和混凝土性能影响的研究[J]. 混凝土, 2018(11): 22-25.
[10] 李新宇, 谢国帅, 任金明, 等. 人工砂高云母石粉对抗冲磨混凝土性能影响研究[J]. 水力发电, 2016, 42(2): 106-110.
[11] 王立华, 刘 佳, 钟 华. 人工砂岩性和石粉含量对混凝土性能的影响[J]. 水力发电学报, 2014, 33(1): 166-170.
[12] 郭文康, 李先高, 缪详辅, 等. 灰岩人工砂石粉含量试验检测方法探讨[J]. raybet体育在线
院报, 2017, 34(8): 144-148.
[13] 黄大能, 沈 威. 新拌混凝土的结构和流变特征[M]. 北京: 中国建筑工业出版社, 1983.
[14] BANFILL G. Experimental Investigations of the Rheology of Fresh Mortar[M]//Properties of Fresh Concrete. Boca Raton: CRC Press, 1990: 155-163.
[15] SETZE J. Control of Consistency in Computer Aided Concrete Manufacture[M]//Properties of Fresh Concrete. Boca Raton: CRC Press, 1990: 303-310.
[16] 蔡基伟. 石粉对机制砂混凝土性能的影响及机理研究[D]. 武汉: 武汉理工大学, 2006.
[17] 刘义峰. 机制砂水泥砂浆流变性能研究[D]. 重庆: 重庆交通大学, 2014.
[18] 刘数华, 阎培渝. 石灰石粉对水泥浆体填充效应和砂浆孔结构的影响[J]. 硅酸盐学报, 2008, 36(1): 69-72, 77.
[19] A·M·内维尔(Adam Neville). 混凝土的性能[M]. 4版. 刘数华, 冷发光, 李新宇,等译.北京: 中国建筑工业出版社, 2011.