Bulletin of the Chinese Ceramic Society, Volume. 43, Issue 6, 2031(2024)
Superhydrophobic Biomimetic Construction and Microscopic Mechanism of Hydraulic Concrete
[1] [1] XIU J D, JIN Z Q, LI N, et al. Progress of chloride ion transport in concrete under marine salt spray environment [J]. Bulletin of the Chinese Ceramic Society, 2023, 42(3): 771-785 (in Chinese).
[2] [2] XU W S, WU X G, FENG Z B, et al. Analysis of deterioration of concrete durability performance under multi-factor coupling in complex environment [J]. Modern Tunnelling Technology, 2022, 59(6): 239-249 (in Chinese).
[3] [3] CAO Y F. Deterioration mechanism and life prediction of concrete under freeze-thaw-sulfate dry and wet erosion composite[D]. Wuhan: Wuhan University, 2019 (in Chinese).
[4] [4] PENG Z C, ZHOU Y, CHEN L C, et al. Study on salt freezing resistance and enhancement of supersulfur cement concrete[J]. Bulletin of the Chinese Ceramic Society, 2022, 41(2): 415-424 (in Chinese).
[5] [5] LI Q, YANG K, YANG C H. An alternative admixture to reduce sorptivity of alkali-activated slag cement by optimising pore structure and introducing hydrophobic film[J]. Cement and Concrete Composites, 2019, 95: 183-192.
[6] [6] MA Z M, ZHU F Z, ZHAO T. Effects of surface modification of silane coupling agent on the properties of concrete with freeze-thaw damage[J]. KSCE Journal of Civil Engineering, 2018, 22(2): 657-669.
[7] [7] YE J X. Superhydrophobic textiles with lotus leaf effect [J]. Advanced Textile Technology, 2010, 18(2): 52-54 (in Chinese).
[8] [8] TIAN W J, ZHANG X W, WANG J Y, et al. Surface properties of hydrophobic side by side water strider legs[J]. Chemical Journal of Chinese Universities, 2014, 35(8): 1726-1730 (in Chinese).
[9] [9] JIANG L. From natural to biomimetic superhydrophobic nanofacial materials[J]. New Materials Industry, 2004(3): 60-65 (in Chinese).
[10] [10] JIANG L. Design and development of binary collaborative nanointerface materials[J]. Advanced Materials Industry, 2001(1): 14-15 (in Chinese).
[11] [11] HUSNI H, NAZARI M R, YEE H M, et al. Superhydrophobic rice husk ash coating on concrete[J]. Construction and Building Materials, 2017, 144: 385-391.
[12] [12] HORGNIES M, CHEN J J. Superhydrophobic concrete surfaces with integrated microtexture[J]. Cement and Concrete Composites, 2014, 52: 81-90.
[13] [13] HAN Z J. Research on the preparation of high-strength superhydrophobic concrete and its performance[D]. Dalian: Dalian University of Technology, 2017 (in Chinese).
[14] [14] WANG F J, LEI S, OU J F, et al. Effect of PDMS on the waterproofing performance and corrosion resistance of cement mortar[J]. Applied Surface Science, 2020, 507: 145016.
[15] [15] MUZENSKI S, FLORES-VIVIAN I, SOBOLEV K. Durability of superhydrophobic engineered cementitious composites[J]. Construction and Building Materials, 2015, 81: 291-297.
[16] [16] LIANG Y X. Preparation and retanning performance of silane coupling agent modified TiO2/polyacrylic resin composite[J]. Leather and Chemicals, 2021, 38(2): 1-9 (in Chinese).
[17] [17] MENG S Q. Research on the mechanism of the effect of nanomaterials on cement hydration [D]. Guangzhou: Guangzhou University, 2022 (in Chinese).
[18] [18] LI X P. Strength and fluidity of alkali slag concrete[J]. Henan Science, 2019, 37(9): 1422-1426 (in Chinese).
[19] [19] HU X Y. Study on engineering performance of super hydrophobic concrete improved by new coupling agent[J]. Technical Supervision in Water Resources, 2022, 30(4): 194-195+234 (in Chinese).
[20] [20] LU Z Z, HE Y, WANG J, et al. Initiative anti-icing performance and deicing ability of epoxy/SiO2 coating concrete surface[J]. Surface Technology, 2020, 49(10): 169-175 (in Chinese).
[21] [21] SHE W, ZHENG Z H, ZHANG Q C, et al. Predesigning matrix-directed super-hydrophobization and hierarchical strengthening of cement foam[J]. Cement and Concrete Research, 2020, 131: 106029.
[22] [22] ZHAO J Y. Kinetics and catalytic distillation simulation of acetone dehydration condensation to isopropylacetone[D]. Tianjin: Tianjin University, 2019 (in Chinese).
[23] [23] XIANG T F, LIU J, LV Z, et al. The effect of silicon-based waterproof agent on the wettability of superhydrophobic concrete and enhanced corrosion resistance[J]. Construction and Building Materials, 2021, 313: 125482.
[24] [24] GAO Y L, HE B, JIANG Z W, et al. Properties and micro-structure of super-hydrophobic modified self-luminous cement-based materials[J]. Journal of Building Materials, 2020, 23(1): 192-199+209 (in Chinese).
[25] [25] WENZEL R N. Resistance of solid surfaces to wetting by water[J]. Industrial & Engineering Chemistry, 1936, 28(8): 988-994.
[26] [26] WENZEL R N. Surface roughness and contact angle[J]. The Journal of Physical and Colloid Chemistry, 1949, 53(9): 1466-1467.
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WANG Bo, QIAN Jun, LUO Jie, XU Yi, CHU Hongqiang, JIANG Linhua. Superhydrophobic Biomimetic Construction and Microscopic Mechanism of Hydraulic Concrete[J]. Bulletin of the Chinese Ceramic Society, 2024, 43(6): 2031
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Received: Nov. 10, 2023
Accepted: --
Published Online: Aug. 28, 2024
The Author Email: Yi XU (xuyihhu@163.com)
CSTR:32186.14.