高强轻质混凝土的制备与性能研究任务书

 2021-10-22 21:44:59

1. 毕业设计(论文)的内容和要求

本课题拟采用不同类别轻骨料陶粒进行陶粒混凝土试验。

重点对制备的轻骨料混凝土的立方体抗压强度随龄期发展,以及轻骨料种类、水胶比大小、ScMs掺量对立方体抗压强度影响进行对比分析。

最终得出最优骨料和最佳配合比方案,为高强轻质混凝土的配置提供依据,最后把整个研究内容写成毕业论文。

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2. 参考文献

根据毕业要求指点2.3,毕设期间要进行研究现状调查与总结,要求在开题报告及毕业设计(论文)中涉及的英文文献不少于20篇,其中近5年不少于8篇,英文文献不少于5篇。

以下是与本课题相关的部分文献列表:[1].Hoff, G.C., 'Internal Curing of Concrete Using Lightweight Aggregates'. in 'Theodore Bremner Symposium, Sixth CANMET/ACI, International Conference on Durability of Concrete', Thessaloniki, Greece,2003 (American Concrete Institute, 2003) 185-204. [2].AGNESINI M V C,ROSSIGNOLO J A.Mechanical properties of polymer-modified lightweight aggregate concrete[J].Cement and Concrete Research,2002,32(3):329-334[3].焦楚杰,高俊岳,王龙,等. 轻骨料混凝土的研究进展[J]. 混凝土,2014(8):111-114.[4].KAYALI O,HAQUE M N,ZHU B.Some characteristics of high strength fiber reinforced lightweight aggregate concrete [J].Cement and Concrete Composites,2003,25(2):207-213.[5].Zhang, M.H. and Gjorv, O.E., 'Mechanical properties of high-strength lightweight concrete'. ACI Materials Journal, 88 (3) (1991) 240-247.[6].李继业,刘经强,徐羽白.特殊材料新型混凝土技术[M].北京:化学工业出版社,2007:13-14.[7].Beris, A.N., et al., 'Creeping Motion of a Sphere through a Bingham Plastic'. Journal of Fluid Mechanics 158 (1985) 219-244.[8].高英力,程领,李柯,等.碳化作用下轻骨料混凝土干缩变形及影响规律[J].硅酸盐通报,2012,31(2):440-444.[9].Lopez, M., Kahn, L.F., and Kurtis, K.E., 'Effect of internally stored water on creep of highperformance concrete'. ACI Materials Journal, 105 (2008) 265-273.[10].AGNESINI M V C,ROSSIGNOLO J A.Mechanical properties of polymer-modified lightweight aggregate concrete[J].Cement and Concrete Research,2002,32(3):329-334.[11].宋培晶,丁建彤,郭玉顺,等.高强轻骨料混凝土的收缩及其影响因素的研究[J].建筑材料学报,2004,7(2):138-144.[12].Liu, X., Chia, K.S., and Zhang, M.-H., 'Water absorption, permeability, and resistance to chlorideion penetration of lightweight aggregate concrete'. Construction and Building Materials, 25 (1) (2011) 335-343. [13].Bentz, D.P., 'Fibers, percolation; and spalling of high-performance concrete'. ACI Materials Journal, 97 (2000) 351-359. [14].Bilodeau, A., Malhotra, V.M., and Hoff, G.C., 'Hydrocarbon fire resistance of high-strength normal-weight and lighweight concretes incorporating polypropylene fibres'. in 'International Symposium on High Performance and Reactive Powder Concretes', Sherbrooke, QC,1998 (1998) 271-296. [15].Ozkan Sengul,Senem Azizi,Filiz Karaosmanoglu.Effect of expanded perlite on the mechanical properties and thermal conductivity of lightweight concrete[J].Energy and Buildings,2011,43(2):671-676.[16].Hoff, G.C. 'Fire resistance of high-strength concretes for offshore concrete platforms'. in 'Proceedings, Third CANMET/ACI International Conference on Performance of Concrete in Marine Environment'. ed. SP 163, St. Andrews by-the-Sea, New Brunswick, Canada 1996, (American Concrete Institute, 1996) 53-87.[17].Malhotra, V.M., 'Properties of high-strength lightweight concrete incorporating fly ash and silica fume'. in 'Second International Symposium on High-Strength Concrete,1990 (1990) 645-666.

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