Chinese Journal of Applied Chemistry ›› 2022, Vol. 39 ›› Issue (11): 1665-1671.DOI: 10.19894/j.issn.1000-0518.210413
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Received:
2021-08-17
Accepted:
2021-12-11
Published:
2022-11-01
Online:
2022-11-09
Contact:
Yong-Xin TANG
About author:
lijing2178@163.comSupported by:
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Yong-Xin TANG, Li-Wu NIE. Effect of Epoxy Resin Content on the Performance of Luminous Resin Permeable Concrete[J]. Chinese Journal of Applied Chemistry, 2022, 39(11): 1665-1671.
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编号 Serial number | 环氧树脂 w(epoxy resin)/ % | 水泥 w(cement)/ % | 粗骨料 w(coarse aggregate)/ % | 粉煤灰 w(fly ash)/ % | 发光粉 w(luminous powder)/ % | 粒径 Particle size/ mm | 水与水泥的 质量比 Water?cement ratio |
---|---|---|---|---|---|---|---|
1 | 0 | 24.23 | 71.9 | 3.35 | 0.52 | 5~10 | 0.28 |
2 | 2 | 23.76 | 70.37 | 3.35 | 0.52 | 5~10 | 0.28 |
3 | 4 | 23.29 | 70.88 | 3.35 | 0.52 | 5~10 | 0.28 |
4 | 6 | 22.84 | 67.29 | 3.35 | 0.52 | 5~10 | 0.28 |
Table 1 Concrete composition ratio
编号 Serial number | 环氧树脂 w(epoxy resin)/ % | 水泥 w(cement)/ % | 粗骨料 w(coarse aggregate)/ % | 粉煤灰 w(fly ash)/ % | 发光粉 w(luminous powder)/ % | 粒径 Particle size/ mm | 水与水泥的 质量比 Water?cement ratio |
---|---|---|---|---|---|---|---|
1 | 0 | 24.23 | 71.9 | 3.35 | 0.52 | 5~10 | 0.28 |
2 | 2 | 23.76 | 70.37 | 3.35 | 0.52 | 5~10 | 0.28 |
3 | 4 | 23.29 | 70.88 | 3.35 | 0.52 | 5~10 | 0.28 |
4 | 6 | 22.84 | 67.29 | 3.35 | 0.52 | 5~10 | 0.28 |
编号 Serial number | 抗压强度 Compressive strength/MPa | 抗折强度 Flexural strength/MPa | 透水系数 Permeability coefficient/(mm·s-1) | 发光时间 Luminous time/h |
---|---|---|---|---|
1 | 20.6 | 5.62 | 6.1 | 5.8 |
2 | 21.2 | 5.93 | 5.5 | 6.1 |
3 | 21.7 | 6.11 | 5.1 | 5.9 |
4 | 21.3 | 6.07 | 5.3 | 5.7 |
Table 2 Performance test of the luminous resin permeable concrete
编号 Serial number | 抗压强度 Compressive strength/MPa | 抗折强度 Flexural strength/MPa | 透水系数 Permeability coefficient/(mm·s-1) | 发光时间 Luminous time/h |
---|---|---|---|---|
1 | 20.6 | 5.62 | 6.1 | 5.8 |
2 | 21.2 | 5.93 | 5.5 | 6.1 |
3 | 21.7 | 6.11 | 5.1 | 5.9 |
4 | 21.3 | 6.07 | 5.3 | 5.7 |
1 | 王俊兵. 透水混凝土在市政道路施工中的应用[J]. 城市建筑, 2019, 16(15): 174-175. |
WANG J B. Application of permeable concrete in municipal road construction[J]. Urban Archit, 2019, 16(15): 174-175. | |
2 | 石立国, 杜垚, 文韬, 等. 海绵城市建设中的透水混凝土性能及应用效果[J]. 中国给水排水, 2019(12): 39-43. |
SHI L G, DU Y, WEN T, et al. Pervious concrete performance and application effect in sponge city construction[J]. China Water Wastewater, 2019(12): 39-43. | |
3 | 王晓妍, 汤国芳, 孟祥辉, 等. 透水混凝土在"海绵城市"建设中的应用研究[J]. 江苏建材, 2020, 174(1): 21-23. |
WANG X Y, TANG G F, MENG X H, et al. Research on the application of permeable concrete in the construction of “sponge city”[J]. Jiangsu Build Mater, 2020, 174(1): 21-23. | |
4 | KIM B, LEE J Y. Relationships between mechanical and transport properties for fiber reinforced concrete[J]. J Compos Mater, 2012, 46(13): 1607-1615. |
5 | 侯宏新. 透水混凝土路面在市政项目人行道中的应用[J]. 居舍, 2020(8): 39-40. |
HOU H X. Application of permeable concrete pavement in sidewalks of municipal projects[J]. Ju She, 2020(8): 39-40. | |
6 | XU J X, JIANG X L, ZHANG Q. Preparation and proporties research on luminous polymer permeable concrete[J]. China Con Cement Prod, 2017(8): 28-30. |
7 | 戴伟文, 童瑜晔, 费伦. 核磁共振法研究CH2 CHSi(OEt)3的水化反应[J]. 应用化学, 1990, 7(3): 80-82. |
DAI W W, TONG Y Y, FEI L. Nuclear magnetic resonance study on the hydration reaction of CH2 CHSi(OEt)3[J]. Chinese J Appl Chem, 1990, 7(3): 80-82. | |
8 | JANG Y I, KIM Y Y, PARK W S. Mechanical properties of water-permeable concrete using coated recycled aggregates and material for performance improvement[J]. Adv Mater Res, 2013, 831: 258-262. |
9 | 朱燕飞, 李就好, 黄金林, 等. 无砂透水混凝土试验研究[J]. 硅酸盐通报, 2019, 38(4): 83-88, 94. |
ZHU Y F, LI J H, HUANG J L, et al. Experimental study on sand-free pervious concrete[J]. Bull Chinese Ceram Soc, 2019, 38(4): 83-88, 94. | |
10 | BARROQUEIRO T, SILVA P R D, BRITO J D. Fresh-state and mechanical properties of high-performance self-compacting concrete with recycled aggregates from the precast industry[J]. Materials, 2019, 12(21): 3565. |
11 | 杨福俭, 陈晓强, 姚勇, 等. 透水混凝土透水性能正交设计与试验研究[J]. 施工技术, 2020, 49 (3): 75-78. |
YANG F J, CHEN X Q, YAO Y, et al. Orthogonal design and experimental study on water permeability of permeable concrete[J]. Constr Technol, 2020, 9(3): 75-78. | |
12 | 蒋震, 李曦, 冷政, 等. 长余辉发光材料及其在水泥基材料中的应用研究进展[J]. 混凝土, 2019, 351(1): 106-110, 114. |
JIANG Z, LI X, LENG Z, et al. Research progress on long afterglow luminescent materials and their applications in cement-based materials[J]. Concrete, 2019, 351(1): 106-110, 114. | |
13 | 黄鹏飞, 袁大伟. 发光混凝土的研究进展与展望[J]. 江西建材, 2015(17): 2-3. |
HUANG P F, YUAN D W. Research progress and prospects of luminescent concrete[J]. Jiangxi Build Mater, 2015(17): 2-3. | |
14 | 王青印. 发光混凝土的发展与现实应用问题探讨[J]. 引文版: 教育科学, 2015(13): 276. |
WANG Q Y. Discussion on the development and practical application of luminescent concrete[J]. Cit Ed: Educ Sci, 2015(13): 276. | |
15 | 罗一帆, 安保礼, 麦堪成, 等. Na3Eu(DPA)3-PC树脂的制备及其发光性能[J]. 应用化学, 2001, 18(9): 709-712. |
LUO Y F, AN B L, MAI K C, et al. Preparation of Na3Eu(DPA)3-PC resin and its luminescence properties[J]. Chinese J Appl Chem, 2001, 18(9): 709-712. | |
16 | 李地红, 代函函, 高群, 等. 发光树脂透水混凝土的制备及性能研究[J]. 热固性树脂, 2019, 34(6): 40-44. |
LI D H, DAI H H, GAO Q, et al. Preparation and performance of luminescent resin permeable concrete[J]. Thermosetting Resin, 2019, 34(6): 40-44. | |
17 | 许静贤, 姜雪亮, 张倩. 发光聚合物透水混凝土的制备及性能研究[J]. 混凝土与水泥制品, 2017(8): 28-30. |
XU J X, JIANG X L, ZHANG Q. Preparation and performance of luminescent polymer permeable concrete[J]. Concr Cement Prod, 2017(8): 28-30. | |
18 | 张影. 环氧树脂/橡胶混凝土的黏结性能研究[J]. 山西交通科技, 2020, 262(1): 84-87. |
ZHANG Y. Study on the bonding performance of epoxy resin/rubber concrete[J]. Shanxi Transp Sci Technol, 2020, 262(1): 84-87. | |
19 | 张宏宇, 毛艳蕾. 环氧树脂沥青混凝土增柔增韧技术研究[J]. 北方交通, 2020(3): 50-52, 56. |
ZHANG H Y, MAO Y L. Research on the flexibility and toughness technology of epoxy resin asphalt concrete[J]. North Commun, 2020(3): 50-52, 56. | |
20 | 谭哲, 郭思瑶, 赵铁军, 等. 石墨烯增强环氧树脂涂层对混凝土与SHCC的抗渗性能研究[J]. 混凝土, 2020(10): 131-135. |
TAN Z, GUO S Y, ZHAO T J, et al. Research on the impermeability of graphene-reinforced epoxy resin coating to concrete and SHCC[J]. Concrete, 2020(10): 131- 135. |
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