混凝土收缩开裂的原因及减少收缩开裂的措施

来源:世展网 分类:混凝土行业资讯 2023-08-31 15:17 阅读:7414
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参考文献

[1] 陈萌. 混凝土结构收缩裂缝的机理分析与控制[D]. 武汉武汉理工大学, 2006.[2] Holt, E, Leivo, M. Cracking risks associated with early age shrinkage[J]. Cement & Concrete Composites, 2004, 26(5): 521-530[3] 谢韬. 聚羧酸减水剂掺量对混凝土早期收缩影响的研究[D]. 杭州浙江大学, 2019.[4] 沈雅雯. 高效减水剂对预拌混凝土早期收缩变形的影响研究[D]. 厦门厦门大学, 2014.[5] 田倩. 低水胶比大掺量矿物掺合料水泥基材料的收缩及机理研究[D]. 南京东南大学, 2006.[6] 朱耀台. 混凝土结构早期收缩裂缝的试验研究与收缩应力场的理论建模[D]. 杭州浙江大学, 2005.[7] Hsie Machine, Tu Chijen, Song, P. S. Mechanical properties of polypropylene hybrid fiber-reinforced concrete[J]. Materials Science and Engineering A: Structural Materials: Properties, Microstructure and Processing, 2008, 494(1-2): 153-157.[8] Swamy, RN, Stavrides, H. Influence of Fiber Reinforcement on Restrained Shrinkage and Cracking[J]. Journal of the American Concrete Institute. 1979, 76(3): 443-460[9] Bertelsen, I. M. G, Ottosen, L. M, Fischer, G. Quantitative analysis of the influence of synthetic fibres on plastic shrinkage cracking using digital image correlation[J]. Construction and Building Materianls, 2019, 199: 124-137.[10] Hassan, Afraa Labiba, Billah, A. H. M. Muntasir. Superabsorbent cellulose fibers for reducing shrinkage and microcracking in concrete[J]. Canadian Journal of Civil Engineering, 2022, 49(8): 1379-1391.[11] Gao Shuling, Wang Zhe, Wang Wenchang, et al. Effect of shrinkage-reducing admixture and expansive agent on mechanical properties and drying shrinkage of Engineered Cementitious Composite (ECC)[J]. Construction and Building Materianls, 2018, 179: 172-185.[12] Shen Peiliang, Lu Linnu, He Yongjia, et al. Investigation on expansion effect of the expansive agents in ultra-high performance concrete[J]. Cement & Concrete Composites, 2020, 105(103425).[13] Lin Yanmei. Preparation and research of concrete shrinkage reducing agent[M]. International Conference on Optoelectronic Materials and Devices (ICOMD), 2020, 11767: 117670P. 1-117670P.6.[14] Zhang, Wenyan, Lin, Huaxia, Xue, Mengfen, et al. Influence of shrinkage reducing admixtures on the performance of cementitious composites: A review[J]. Construction and Building Materials, 2022, 325(126579). [15] 葛好升, 孙振平, 杨海静, . 减缩型聚羧酸系减水剂的制备及机理[J]. 硅酸盐学报, 2023, 51(5): 1293-1301.[16] Nakanishi, H., Tamaki, S., Yaguchi, M., et al. Performance of a multifunctional and multipurpose superplasticizer for concrete[M]. 2003 7th CANMET/ACI International Conference on Superplasticizers and Other Chemical Admixtures in Concrete, 2003, SP-217: 327-341.[17] Zhang, Jian, Ma, YueFeng,Wang, Jun, et al. A novel shrinkage-reducing polycarboxylate superplasticizer for cement-based materials: Synthesis, performance and mechanisms[J]. Construction and Building Materials, 2022, 321(126342).[18] Palacios, M, Houst, Y. F, Bowen, P, et al. Adsorption of superplasticizer admixtures on alkali-activated slag pastes[J]. Cement and Concrete Research, 2009, 39(8): 670-677.[19] Hasholt, Marianne Tange, Jensen, Ole Mejlhede, Kovler, Konstantin, et al. Can superabsorent polymers mitigate autogenous shrinkage of internally cured concrete without compromising the strength [J]. Construction and Building Materials, 2012, 31: 226-230.

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