INORGANIC MATERIALS AND CERAMIC MATRIX COMPOSITES |
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Dispersion of Thermally Reduced Graphene Oxide in Simulated Hydrated Cement Environment and Study on Performance and Mechanism of Graphene Reinforced Mortar |
YUAN Xiaoya1, PENG Yihao1, SUN Litao1, ZHENG Xuxu1, QIN Zehai2
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1 School of Materials Science and Engineering, Chongqing Jiaotong University, Chongqing 400074, China; 2 Chongqing Yonggu New Building Material, Chongqing 400000, China |
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Abstract Graphene nanosheets can greatly improve the properties of cement-based materials, but how to improve the dispersion of graphene nano-sheets in calcium and alkaline-abundant cement hydration environment is a key problem. In this study, a polyaromatic water reducer (JS) was used as a dispersant to study the dispersion of reduced graphene oxide (rGO) prepared by high temperature thermal reduction in saturated calcium hydroxide (CH) solution used to simulate hydrated cement system rich in calcium and alkaline environment. The study showed that when the mass ratio of JS to cement was 1.5%, rGO could be well-dispersed in CH solution. The mechanical test of graphene-mixed cement mortar showed that when the mass content of rGO to cement was 0.05%, the 3 d flexural and compressive strength were increased by 9.5% and 11.1%, respectively and the 28 d flexural and compressive strength were increased by 6.74% and 26.5% respectively. The chemical bonded water and microscopic tests showed that JS could effectively disperse rGO in hardened cement motar, accelerate the hydration process of cement paste and regulate the crystal growth of hydrated products.
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Published: 12 March 2020
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Fund:This work was financially supported by the National Natural Science Foundation of China (51402030); Natural Science Foundation of Chongqing Scienceand Technology Commission (cstc2017jcyjBX0028) and Science and Technology Research Program of Chongqing Municipal Education Commission (KJZD-K201800703). |
About author:: Xiaoya Yuanreceived his Ph.D. in macromolecular chemistry and physics in 2006 from Nankai University and joined Chongqing Jiaotong University (CQJTU) in July of this year. Starting from 2013, he is a full-time professor of materials science and engineering at CQJTU. He has published more than 50 papers, among which over 30 SCI or EI are indexed. His research interest includes nanocomposites, functional building and construction materials, high-performance concrete-based materials. As the principle investigator, Prof. Yuan have over 10 national and municipal-level projects and 6 Chinese patents of invention. He wins 2 provincial-level awards; Yihao Pengis now a graduate student under the supervision of Professor Xiaoya Yuan at Chongqing Jiaotong University. His research is focused on the research of graphene-mixed cement-based composites. |
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1 Jiang R S. Aqueous dispersion of graphene and its mechanical properties of cement-based composite. Master's Thesis, Dalian University of Technology, China, 2017 (in Chinese). 姜瑞双. 石墨烯水性分散及水泥基复合材料力学性能. 硕士学位论文, 大连理工大学, 2017. 2 Lv S H, Ma Y J, Qiu C C, et al. Concrete, 2013 (8), 51 (in Chinese). 吕生华, 马宇娟, 邱超超, 等.混凝土, 2013 (8), 51. 3 Wang Q, Li S Y, Wang J, et al. Journal of the Chinese Ceramic Society, 2018, 46 (2), 163 (in Chinese). 王琴, 李时雨, 王健, 等.硅酸盐学报, 2018, 46 (2), 163. 4 Wang B M, Jiang R S, Zhao R Y. Concrete, 2016 (12), 68 (in Chinese). 王宝民, 姜瑞双, 赵汝英.混凝土, 2016 (12), 68. 5 Lotya M, King P J, Khan U, et al. ACS Nano, 2010, 4 (6), 3155. 6 Khan U, O'Neill A, Lotya M, et al. Small, 2010, 6 (7), 864. 7 Wei W, Lv W, Yang Q H, et al. New Carbon Materials, 2011, 26 (1), 36 (in Chinese). 魏伟, 吕伟, 杨全红. 新型炭材料, 2011, 26 (1), 36. 8 Wang J. Study of the effect of graphene oxide on cement performance and its mechanism. Master's Thesis, Beijing University of Civil Engineering and Architecture, China, 2017 (in Chinese). 王健. 氧化石墨烯对水泥的性能影响及作用机理研究. 硕士学位论文, 北京建筑大学,2017. 9 Chen W Q. Analysis of graphene band gap modulation and Raman spectroscopy. Master's Thesis, Xi'an University of Technology, China, 2018 (in Chinese). 陈文强. 基于石墨烯带隙调控及拉曼光谱的分析研究. 硕士学位论文, 西安理工大学, 2018. 10 Mokhtar, Abo-El-Enein, Hassaan, et al. Construction and Building Materials, 2017, 138 (complete),333. 11 Jing G J. Research on preparation and mechanism of graphene modified cement. Master's Thesis,University of Jinan, China, 2017 (in chinese). 景国建. 石墨烯改性水泥材料的制备及其机理研究. 硕士学位论文, 济南大学, 2017. 12 Yuan X Y, Zeng J J, Niu J W, et al. Journal of Functional Material, 2018,49 (10), 10184 (in Chinese). 袁小亚, 曾俊杰, 牛佳伟, 等.功能材料, 2018, 49 (10), 10184. 13 Zhao H L, Cai W H, Wang L, et al.Journal of Yanshan University, 2018, 42 (5), 377 (in chinese). 赵洪力, 蔡文豪, 王丽, 等.燕山大学学报, 2018, 42 (5), 377. 14 Yin L. Study on salt corrosion resistance performance of cement mortar with thermal reduced graphene. Master's Thesis, Chongqing Jiaotong University, China, 2017 (in Chinese). 殷璐. 热还原石墨烯改性水泥砂浆抗盐腐蚀性能研究. 硕士学位论文, 重庆交通大学, 2017. |
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