Review of Research on Volume Shrinkage Regulation Mechanism of Ultra-high Performance Concrete
DOI:
https://doi.org/10.54097/jejmmc95Keywords:
Autogenous shrinkage; drying shrinkage; mineral admixture; admixture.Abstract
Ultra-high performance concrete (UHPC) is a cement-based composite building material with excellent durability and mechanical properties, but its autogenous shrinkage and drying shrinkage phenomenon have become a common problem in practical engineering. In order to solve this practical problem, new mineral admixtures and admixtures are usually added to UHPC, and the shrinkage of UHPC is effectively improved.
Downloads
References
Li Y, Li Y, Li H, et al. The role of carbon nanotubes to reduce autogenous shrinkage of cement paste at different ages [J]. Journal of Building Engineering, 2023: 107927.
Amin M N, Hissan S, Shahzada K, et al. Pozzolanic reactivity and the influence of rice husk ash on early-age autogenous shrinkage of concrete [J]. Frontiers in Materials, 2019, 6: 150.
Ma Dong, Wang Chengsheng, Zhou Jianguo, etc. Experimental study on the effect of fly ash content on the mechanical and shrinkage properties of HDCC [J]. Journal of Hebei University of Engineering ( Natural Science Edition ), 2023,40 ( 04 ) : 60-66.
Zhang Jincheng, Li Guangyin, Bai Jingfu.Study on the effect of different steel slag content on the performance of UHPC [J].China Building Materials Technology, 2023,32 ( 02 ) : 18-21.
Chen Mei, Han Yixuan, Zhang Yunsheng, etc. Study on the evolution law of autogenous shrinkage performance of granite stone powder mortar [J]. Silicate Bulletin, 2023,42 ( 12 ) : 4360-4367.
Wu Xian. Analysis of the influence of mineral admixtures on the performance of ultra-high performance hydraulic concrete [J].Heilongjiang Water Conservancy Science and Technology, 2023,51 ( 09 ) : 25-27.
Han Hongwei. Effect of fly ash on volume stability of low water-binder ratio concrete [J].Low temperature building technology, 2020,42 ( 08 ) : 32-34 + 52.
Mehrnosh A, Tarik O, Nihat K. Effect of microfibers or SRA on the shrinkage and mechanical properties of alkali activated slag fly ash-based mortars incorporating recycled fine aggregate [J]. Construction and Building Materials, 2023, 373: 130883.
Estensen K A, Terjk K. The effect of shrinkage reducing admixtures on drying shrinkage, autogenous deformation, and early age stress development of concrete [J]. Structural Concrete, 2020, 22:E596-E606.
Guo Y, Yikai W, Hua L, et al. Effect of shrinkage-reducing polycarboxylate admixture on cracking behavior of ultra-high strength mortar [J]. Cement and Concrete Composites, 2021, 102:104117.
Zhang Zhanqiang.Preparation of expansive agent ( MEA ) and its effect on the performance of UHPC [D].Guilin : Guilin University of Technology, 2023.
Cao F, Yan P. The influence of the hydration procedure of MgO expansive agent on the expansive behavior of shrinkage-compensating mortar[J]. Construction and Building Materials, 2019, 202: 162-168.
Zhao Shunzeng, Li Changcheng, Jia Fujie, Wu Xunan.Study on self-healing of shrinkage cracks in HCSA shrinkage-compensating concrete [J].Concrete, 2018 ( 09 ) : 1-3 + 8.
Drying shrinkage characteristics of SAP internal curing cement mortar [J].Road Traffic Technology ( Applied Technology Edition ), 2020,16 ( 04 ) : 48-51.
Zheng Hongjian. Experimental study on concrete cured in shale pottery sand [D]. Dalian : Dalian University of Technology, 2020.
Yu Congdi. Study on the mechanism of increasing the early shrinkage of cement-based materials by the type and content of water reducing agent [D]. Hangzhou : Zhejiang University, 2020.
Liu L, Fang Z, Huang Z, et al. Solving shrinkage problem of ultra-high-performance concrete by a combined use of expansive agent, super absorbent polymer, and shrinkage-reducing agent [J]. Composites Part B: Engineering, 2022, 230: 109503.
Zhao H, Li J, Sun G, et al. Effects of pre-soaked zeolite and CaO-based expansive agent on mechanical properties and autogenous deformation of early-age concrete[J]. Construction and Building Materials, 2020, 261: 120370.
Cheng S, Wu Z, Wu Q, et al. Mitigation on the shrinkage properties of ultra-high strength concrete via using porous coral sand and shrinkage reducing agent [J]. Journal of Building Engineering, 2022, 57: 104861.
Gong Jianqing, Luo Hongkui, Zhang Yang, et al. The effects of shrinkage reducing agent and HCSA expansive agent on the mechanical properties and shrinkage properties of UHPC [J].Material Bulletin, 2021,35 ( 08 ) : 8042-8048 + 8063.
Xu Binbin, Ou Zhongwen, Luo Wei, et al. The effects of water-saturated lightweight aggregate and shrinkage reducing agent on the hydration process and autogenous shrinkage of UHPC[J].Material Bulletin, 2020,34 (22):22065-22069.
Zhang Zhen. Effect of shrinkage reducing agent and internal curing on autogenous shrinkage of cement stone with low water-cement ratio and their synergistic effect [D].Chongqing : Chongqing University, 2017.
Downloads
Published
Issue
Section
License
Copyright (c) 2024 Academic Journal of Science and Technology

This work is licensed under a Creative Commons Attribution 4.0 International License.








