硅酸盐通报 ›› 2023, Vol. 42 ›› Issue (8): 3017-3032.
方学东1,2, 魏江1,2, 冯自立1,2, 杜镇宇1,2, 全轶钊3, 全力新3
收稿日期:
2023-04-12
修订日期:
2023-05-19
发布日期:
2023-08-18
通信作者:
冯自立,博士,副教授。E-mail:1141661344@qq.com
作者简介:
方学东(1969—),男,教授。主要从事机场工程的研究。E-mail:911786685@qq.com
基金资助:
FANG Xuedong1,2, WEI Jiang1,2, FENG Zili1,2, DU Zhenyu1,2, QUAN Yizhao3, QUAN Lixin3
Received:
2023-04-12
Revised:
2023-05-19
Published:
2023-08-18
摘要: 为明确不同注浆材料在机场场道工程中的应用进展,首先介绍了常用注浆材料,并对不同种类注浆材料进行分类,分析了材料的物化特性、反应机理及力学性能,总结了其在机场场道工程中的应用场景。综合分析现有研究表明,水泥基注浆材料、有机高分子材料在机场工程中常用于地基加固和道面病害处理,有机高分子材料具有凝结时间短、强度高等优点,单液水泥浆材料应用广泛,价格合适,但工作性能欠佳。由于不停航施工的原因,机场场道注浆工程要求浆液具有流动性好、快硬早强、固结体强度高等特点,并且具有一定的经济性。掺加其他材料对单液水泥浆进行改性可有效提高其各项性能,目前已广泛应用于机场场道注浆工程。
中图分类号:
方学东, 魏江, 冯自立, 杜镇宇, 全轶钊, 全力新. 注浆材料在机场场道工程中的应用进展[J]. 硅酸盐通报, 2023, 42(8): 3017-3032.
FANG Xuedong, WEI Jiang, FENG Zili, DU Zhenyu, QUAN Yizhao, QUAN Lixin. Application Progress of Grouting Materials in Airport Runway Engineering[J]. BULLETIN OF THE CHINESE CERAMIC SOCIETY, 2023, 42(8): 3017-3032.
[1] 刘 鹏. 建筑工程施工中灌注桩后注浆施工技术应用分析[J]. 工程机械与维修, 2022(2): 201-203. LIU P. Application analysis of post-grouting construction technology of cast-in-place pile in construction engineering[J]. Construction Machinery & Maintenance, 2022(2): 201-203 (in Chinese). [2] 胡少银, 刘泉声, 李世辉, 等. 裂隙岩体注浆理论研究进展及展望[J]. 煤炭科学技术, 2022, 50(1): 112-126. HU S Y, LIU Q S, LI S H, et al. Advance and review on grouting critical problems in fractured rock mass[J]. Coal Science and Technology, 2022, 50(1): 112-126 (in Chinese). [3] ZHANG Q, LI L, MO Y. Grouting technique applications during housing construction[J]. Applied Mechanics and Materials, 2015, 724: 53-56. [4] 扈竹芳. 非碱性水玻璃灌浆材料的研究及其应用[J]. 长江水利教育, 1989, 6(4): 120-134. HU Z F. Research and application of non-alkaline sodium silicate grouting material[J]. Journal of Changjiang Institute of Technology, 1989, 6(4): 120-134 (in Chinese). [5] 季尚行, 张 雄, 管宗甫, 等. 水泥工艺学[M]. 武汉: 武汉理工大学出版社, 2017. JI S X, ZHANG X, GAUN Z F, et al. Technology of cement[M]. Wuhan: Wuhan University of Technology Press, 2017 (in Chinese). [6] 肖文帅. 新型钢纤维灌浆料的试验研究[D]. 济南: 山东建筑大学, 2021. XIAO W S. Experimental study on new steel fiber grouting material[D]. Jinan: Shandong Jianzhu University, 2021 (in Chinese). [7] 谢益盛. 巷道松软破碎构造围岩注浆加固机理研究及应用[D]. 太原: 太原理工大学, 2020. XIE Y S. Research and application of grouting reinforcement mechanism of surrounding rock in soft fractured and tectonics roadway[D]. Taiyuan: Taiyuan University of Technology, 2020 (in Chinese). [8] 王东亮. 裂隙岩体注浆加固浆液扩散规律研究[D]. 太原: 太原理工大学, 2021. WANG D L. Research of slurry diffusion law of grouting reinforcement in fractured rock[D]. Taiyuan: Taiyuan University of Technology, 2021 (in Chinese). [9] 刘佐礼. 兰州中川机场跑道整修工程的施工监理[J]. 民航经济与技术, 1995(5): 68-69. LIU Z L. Construction supervision of Zhongchuan airport runway[J]. Ciuil Aviation Economics & Technology, 1995(5): 68-69 (in Chinese). [10] 胡旭明, 刘万兴. 虹桥机场跑道基础灌浆加固[J]. 岩土力学, 2000, 21(2): 173-176. HU X M, LIU W X. Application of grouting to foundation of runway of Hongqiao airprot[J]. Rock and Soil Mechanics, 2000, 21(2): 173-176 (in Chinese). [11] 冯 磊, 袁 捷, 谭 悦. 机场水泥混凝土道面脱空病害影响及处治对策[J]. 城市道桥与防洪, 2011(9): 40-44+319. FENG L, YUAN J, TAN Y. Cavity fault cause and treatment countermeasures of airport cement concrete pavement[J]. Urban Roads Bridges & Flood Control, 2011(9): 40-44+319 (in Chinese). [12] HE S Y, LAI J X, WANG L X, et al. A literature review on properties and applications of grouts for shield tunnel[J]. Construction and Building Materials, 2020, 239: 117782. [13] JIANG H B, QIU X. Performance assessment of a newly developed and highly stable grouting material for a completely weathered granite dam foundation[J]. Construction and Building Materials, 2021, 299: 123956. [14] MIAO Q Q, ZHU Q Q, JIANG S P. Application of grouting technology in the geotechnical engineering[J]. Applied Mechanics and Materials, 2015, 744/745/746: 442-446. [15] 高 凡. 地下注浆材料的研究现状[J]. 煤, 2017, 26(12): 52-55. GAO F. Research status of underground grouting materials[J]. Coal, 2017, 26(12): 52-55 (in Chinese). [16] 邓尤东, 帅建国, 罗光财. 快硬硫铝盐水泥单液浆性能研究及应用[J]. 铁道科学与工程学报, 2012, 9(3): 99-105. DENG Y D, SHUAI J G, LUO G C. Study and application of fast harden single cement liquid with sulfur and aluminum salt[J]. Journal of Railway Science and Engineering, 2012, 9(3): 99-105 (in Chinese). [17] ESCOBAL-MARCOS I, ÁLVAREZ-FERNÁNDEZ M I, PRENDES-GERO M B, et al. Designing cement-based grouting in a rock mass for underground impermeabilization[J]. Energies, 2021, 14(13): 4062. [18] KHARCHENKO I Y, ALEKSEEV V A, ISRAFILOV K A, et al. Modern technologies of cement grouting[J]. Vestnik MGSU, 2017(5): 552-558. [19] WANG M N, HU Y P, JIANG C, et al. Mechanical characteristics of cement-based grouting material in high-geothermal tunnel[J]. Materials, 2020, 13(7): 1572. [20] 姜 瑜, 郭 飞, 孔 恒, 等. 注浆材料的现状与发展策略[J]. 化工新型材料, 2022, 50(1): 282-286. JIANG Y, GUO F, KONG H, et al. Current situation and development strategy of grouting material[J]. New Chemical Materials, 2022, 50(1): 282-286 (in Chinese). [21] 曹 承, 任 楠. 机场道面板底脱空注浆工艺及效果评价[J]. 工程建设与设计, 2019(23): 232-234+237. CAO C, REN N. Grouting technology and effect evaluation of the empty beneath pavement slab for airfield pavement[J]. Construction & Design for Engineering, 2019(23): 232-234+237 (in Chinese). [22] 杜 浩. 机场水泥道面板脱空注浆现场试验分析[J]. 中外建筑, 2019(6): 274-276. DU H. Field test and analysis of airport cement passage slab vacancy grouting[J]. Chinese & Overseas Architecture, 2019(6): 274-276 (in Chinese). [23] 肖专文, 李连元, 陈文玮. 首都国际机场西跑道注浆加固施工技术[J]. 建筑技术, 2004, 35(11): 838-839. XIAO Z W, LI L Y, CHEN W W. Construction technology of grouting reinforcement for the west runway of the capital international airport[J]. Architecture Technology, 2004, 35(11): 838-839 (in Chinese). [24] 官盛飞. 虹桥机场东跑道基础注浆加固试验研究[J]. 上海空港, 2015, 30(2): 42-46. GUAN S F. Experimental study on foundation grouting reinforcement of the east runway of Hongqiao airport[J]. Shanghai Airport, 2015, 30(2): 42-46 (in Chinese). [25] 王 胜, 陈礼仪, 史茂君. 水泥-水玻璃浆液凝固特性试验研究[J]. 探矿工程(岩土钻掘工程), 2012, 39(4): 35-38. WANG S, CHEN L Y, SHI M J. Experimental study on solidified characters of cement-sodium silicate slurry[J]. Exploration Engineering (Rock & Soil Drilling and Tunneling), 2012, 39(4): 35-38 (in Chinese). [26] 邹 强. 水泥-水玻璃双液注浆材料性能试验研究及劈裂注浆施工[J]. 江西建材, 2012(3): 28-29. ZOU Q. Experimental study on properties of cement-sodium silicate double liquid grouting material and split grouting construction[J]. Jiangxi Building Materials, 2012(3): 28-29 (in Chinese). [27] 庞宗霞, 田利民. 水泥-水玻璃浆液的室内试验与研究[J]. 山西交通科技, 2010(5): 15-16+19. PANG Z X, TIAN L M. The indoor test and research of cement-silicate grout[J]. Shanxi Science & Technology of Communications, 2010(5): 15-16+19 (in Chinese). [28] 陈沅江, 万秀峰. 外加剂对水泥-水玻璃浆液凝固特性的影响[J]. 硅酸盐通报, 2014, 33(7): 1846-1851. CHEN Y J, WAN X F. Effect of admixture on solidified character of admixture for cement-sodium silicate slurry[J]. Bulletin of the Chinese Ceramic Society, 2014, 33(7): 1846-1851 (in Chinese). [29] 闫 勇, 郑秀华. 水泥-水玻璃浆液性能试验研究[J]. 水文地质工程地质, 2004, 31(1): 71-72+81. YAN Y, ZHENG X H. Experimental study on properties of cement-sodium silicate slurry[J]. Hydrogeology and Engineering Geology, 2004, 31(1): 71-72+81 (in Chinese). [30] 陆剑波. 注浆处置机场水泥混凝土道面严重错台技术研究[J]. 城市道桥与防洪, 2013(6): 51-54+20+19. LU J B. Research on grouting disposal technology for serious slab staggering of airport cement concrete pavement[J]. Urban Roads Bridges & Flood Control, 2013(6): 51-54+20+19 (in Chinese). [31] 梁鹏俊. 机场跑道基础不停航注浆加固工程研究与实践[J]. 建设科技, 2015(13): 122-123. LIANG P J. Research and practice of grouting reinforcement project for airport runway foundation without stopping[J]. Construction Science and Technology, 2015(13): 122-123 (in Chinese). [32] 康春霞. 水泥粉煤灰注浆材料特性试验及其应用探究[J]. 科技创新与应用, 2016(33): 56. KANG C X. Experimental study on characteristics of cement fly ash grouting material and its application[J]. Technology Innovation and Application, 2016(33): 56 (in Chinese). [33] 张曼曼, 鲁海峰, 年 宾, 等. 地面注浆加固顶板高掺量粉煤灰水泥浆液材料性能研究[J]. 煤矿安全, 2020, 51(6): 60-65. ZHANG M M, LU H F, NIAN B, et al. Study on performance of cement slurry material with high fly ash content for roof reinforcement by grouting on the ground[J]. Safety in Coal Mines, 2020, 51(6): 60-65 (in Chinese). [34] LIU J Y, CHEN H X. Effects of coal gangue on cement grouting material properties[J]. IOP Conference Series: Materials Science and Engineering, 2018, 359: 012023. [35] LU J F, LING S L, WANG X, et al. Research on Portland cement grouting material in sandy pebble soil[J]. Science of Advanced Materials, 2019, 11(7): 1027-1036. [36] REN J L, ZHAO Z D, XU Y S, et al. High-fluidization, early strength cement grouting material enhanced by nano-SiO2: formula and mechanisms[J]. Materials, 2021, 14(20): 6144. [37] LIU W T, SUN Y D, MENG X X, et al. Experimental analysis of nano-SiO2 modified waterborne epoxy resin on the properties and microstructure of cement-based grouting materials[J]. Energy, 2023, 268: 126669. [38] ZHAO Z D, CHEN J C, WANG J A, et al. Effect mechanisms of toner and nano-SiO2 on early strength of cement grouting materials for repair of reinforced concrete[J]. Buildings, 2022, 12(9): 1320. [39] 马 建, 孙守增, 芮海田, 等. 中国筑路机械学术研究综述·2018[J]. 中国公路学报, 2018, 31(6): 160-164. MA J, SUN S Z, RUI H T, et al. Review of academic research on road construction machinery in China·2018[J]. China Journal of Highway and Transport, 2018, 31(6): 160-164 (in Chinese). [40] YANG X H, ZHENG K L, XU L X, et al. Properties and applications of a new chemical grouting material[J]. Advances in Civil Engineering, 2020, 2020: 1-10. [41] SU Z H, WANG Z Q, ZHANG D, et al. Study on rheological behavior and surface properties of epoxy resin chemical grouting material considering time variation[J]. Materials, 2019, 12(20): 3277. [42] 曾志鹏, 宋小艳, 孙 勇, 等. 聚氨酯/水玻璃注浆材料固化过程中的微观结构和力学性能[J]. 材料研究学报, 2022, 36(11): 855-861. ZENG Z P, SONG X Y, SUN Y, et al. Microstructure and mechanical property of polyurethane/water glass grouting materials during curing process[J]. Chinese Journal of Materials Research, 2022, 36(11): 855-861 (in Chinese). [43] 侯 凯, 王 帅, 姚 顺, 等. 矿用聚氨酯类注浆材料改性研究进展[J]. 煤炭科学技术, 2022, 50(10): 28-34. HOU K, WANG S, YAO S, et al. Research progress on modification of polyurethane grouting materials in mines[J]. Coal Science and Technology, 2022, 50(10): 28-34 (in Chinese). [44] 乔红军. 高分子注浆堵水材料性能试验研究及工程应用[J]. 建材发展导向, 2020, 18(12): 59-60. QIAO H J. Experimental study on properties of polymer grouting water plugging material and its engineering application[J]. Development Guide to Building Materials, 2020, 18(12): 59-60 (in Chinese). [45] 李慎文. 丙烯酰胺浆液在隧道堵漏中的应用[J]. 铁道建筑技术, 1998(1): 22-25. LI S W. Application of acrylamide slurry in tunnel plugging[J]. Railnay Corstruction Technology, 1998(1): 22-25 (in Chinese). [46] 葛家良. 化学灌浆技术的发展与展望[J]. 岩石力学与工程学报, 2006, 25(增刊2): 3384-3392. GE J L. Development and prospect of chemical grouting techniques[J]. Chinese Journal of Rock Mechanics and Engineering, 2006, 25(supplement 2): 3384-3392 (in Chinese). [47] 郝 哲, 母久深, 刘 斌. 三乙醇胺为还原剂的丙烯酰胺材料在壁后注浆的应用[J]. 中国矿业, 1997, 6(3): 45-49. HAO Z, MU J S, LIU B. Experimental analysis allylamide grouting material with triethalkylol reducing agent and its application in wall-back grouting[J]. China Mining Magazine, 1997, 6(3): 45-49 (in Chinese). [48] 贺 文. 丙烯酸盐浆材的研究应用状况[C]. 中国煤炭学会煤矿建设与岩土工程专业委员会. 矿山建设工程技术新进展—2009全国矿山建设学术会议文集(下册). 合肥: 合肥工业大学出版社, 2009. HE W. Research and application of the acrylate grouting materials[C]. Coal Mine Construction and Geotechnical Engineering Professional Committee. New Advances in Mine Construction Engineering Technology: 2009 National Mine Construction Academic Conference Proceedings (next volume). Hefei: Hefei Univerisity of Technology Publishing House, 2009 (in Chinese). [49] 张 健, 魏 涛, 韩 炜, 等. CW520丙烯酸盐灌浆材料交联剂合成及其浆液性能研究[J]. 长江科学院院报, 2012, 29(2): 55-59. ZHANG J, WEI T, HAN W, et al. The synthesis of cross-linking agent of CW520 acrylate grouting material and the properties of its slurry[J]. Journal of Yangtze River Scientific Research Institute, 2012, 29(2): 55-59 (in Chinese). [50] HAN T C. Gel time of calcium acrylate grouting material[J]. Journal of Zhejiang University Science, 2004, 5(8): 928-931. [51] 秦道川. 油溶性聚氨酯灌浆材料的研究综述[J]. 中国建筑防水, 2018(17): 1-5+29. QIN D C. Research summary of oil soluble polyurethane grouting material[J]. China Building Waterproofing, 2018(17): 1-5+29 (in Chinese). [52] 张轩宁. 聚氨酯注浆材料的工程特性与软弱砂层加固性能研究[D]. 太原: 太原理工大学, 2019. ZHANG X N. Study on engineering properties of polyurethane grouting materials and strengthening properties of fine sand[D]. Taiyuan: Taiyuan University of Technology, 2019 (in Chinese). [53] 牛宇涛, 张春静, 杨政鹏, 等. 聚氨酯基有机/无机复合注浆材料的研究进展[J]. 化工新型材料, 2018, 46(3): 42-44. NIU Y T, ZHANG C J, YANG Z P, et al. Recent progress of organic/inorganic composite grouting material based on polyurethane[J]. New Chemical Materials, 2018, 46(3): 42-44 (in Chinese). [54] ZHANG S T, LIU W Y, YANG K J, et al. The influence of fly ash on the foaming behavior and flame retardancy of polyurethane grouting materials[J]. Polymers, 2022, 14(6): 1113. [55] WANG J A, LI X, FANG H Y, et al. Statistical characteristics of polymer grouting material microstructure[J]. Advances in Civil Engineering, 2020, 2020: 1-12. [56] MEI F H, WANG S F, DONG X Y, et al. Preparation and performance enhancements of low-heat-releasing polyurethane grouting materials with epoxy resin and water glass[J]. Applied Sciences, 2022, 12(13): 6397. [57] 周仙奕. 大连机场滑行道病害化学注浆处治研究[J]. 交通科技, 2018(4): 41-44. ZHOU X Y. Study on chemical grouting treatment of diseases in taxiway of Dalian Airport[J]. Transportation Science & Technology, 2018(4): 41-44 (in Chinese). [58] 向会伦, 龙晓丽, 魏文庆, 等. 高聚物注浆在机场道面基层加固中的应用研究[J]. 工程技术研究, 2018(6): 6-7. XIANG H L, LONG X L, WEI W Q, et al. Study on application of polymer grouting in airport pavement base reinforcement[J]. Engineering and Technological Research, 2018(6): 6-7 (in Chinese). [59] GUO C C, CUI C, WANG F M. Case study on quick treatment of voids under airport pavement by polymer grouting[J]. Journal of Materials in Civil Engineering, 2020, 32(7): 05020006. [60] 阮文军. 新型硫木质素复合浆液的研制及其性质研究[J]. 地质与勘探, 2001, 37(3): 75-77. RUAN W J. Development of a new kind of sulphate lignin composite grout and research on its property[J]. Geology and Prospecting, 2001, 37(3): 75-77 (in Chinese). [61] 赵顺升. 高强木素灌浆材料的试验研究[J]. 探矿工程(岩土钻掘工程), 1994, 21(3): 36-37+41. ZHAO S S. Research on high strength lignin grouting material[J]. Exploration Engineering (Drilling & Tunneling), 1994, 21(3): 36-37+41 (in Chinese). [62] 杨 丽. 环氧树脂类材料在桥梁加固工程中的应用[J]. 山西交通科技, 2003(1): 54-56. YANG L. The application of epoxy resin organic binder to bridge strength ening engineering[J]. Shanxi Science & Technology of Communications, 2003(1): 54-56 (in Chinese). [63] 庄恒海. 环氧树脂注浆技术研究[J]. 智能城市, 2021, 7(8): 82-83. ZHUANG H H. Study on epoxy resin grouting technology[J]. Intelligent City, 2021, 7(8): 82-83 (in Chinese). [64] 李 娜, 高小红, 刘 茜, 等. 新型环氧注浆材料的制备与性能研究[J]. 现代技术陶瓷, 2015, 36(3): 5-8. LI N, GAO X H, LIU Q, et al. Study on preparation and performance of epoxy resin grouting materials[J]. Advanced Ceramics, 2015, 36(3): 5-8 (in Chinese). [65] YU T, SU H F, ZHANG X D. Study on influencing factors of leakage of epoxy resin grouting[J]. IOP Conference Series: Earth and Environmental Science, 2021, 769(3): 032061. [66] 苏张妍. 高渗透型灌浆材料的研制及其改性研究[D]. 广州: 广东工业大学, 2008. SU Z Y. Development of high permeability grouting material and their modified research[D]. Guangzhou: Guangdong University of Technology, 2008 (in Chinese). [67] LI S C, WANG P C, YUAN C, et al. Adaptability of polyurethane/water glass grouting reinforcement to subsea tunnels[J]. Construction and Building Materials, 2021, 311: 125354. [68] ZHOU Y, WANG G H, YUAN Y F. Basic properties and engineering application of bentonite-cement-water glass grouting[J]. KSCE Journal of Civil Engineering, 2020, 24(9): 2742-2750. [69] ZHANG Q A, HU X M, WU M Y, et al. Effects of different catalysts on the structure and properties of polyurethane/water glass grouting materials[J]. Journal of Applied Polymer Science, 2018, 135(27): 46460. [70] 韩晓雷, 张 涛, 贺 博, 等. 影响水玻璃-氯化钙加固细砂体强度的因素分析[J]. 陕西煤炭, 2013, 32(5): 8-11. HAN X L, ZHANG T, HE B, et al. Analysis on the factors that influencing fine sand strength by sodium silicate-calcium chloride[J]. Shaanxi Coal, 2013, 32(5): 8-11 (in Chinese). [71] 臧 鹏, 冯杨文, 钟久安, 等. 水玻璃注浆材料性能改善的探索[J]. 西部探矿工程, 2022, 34(1): 20-22+27. ZANG P, FENG Y W, ZHONG J A, et al. Exploration on improving the performance of sodium silicate grouting material[J]. West-China Exploration Engineering, 2022, 34(1): 20-22+27 (in Chinese). [72] 张 豫, 柏广峰, 王玉超, 等. 水玻璃模数对聚氨酯/水玻璃注浆材料性能的影响[J]. 聚氨酯工业, 2021, 36(6): 28-31. ZHANG Y, BAI G F, WANG Y C, et al. The effects of water glass modulus on the properties of polyurethane/water glass grouting material[J]. Polyurethane Industry, 2021, 36(6): 28-31 (in Chinese). [73] 李 夏, 徐军哲, 刘人太, 等. 新型酸性水玻璃注浆材料的研究与应用[J]. 隧道建设, 2017, 37(10): 1296-1302. LI X, XU J Z, LIU R T, et al. Study and application of a new acid water glass grouting material[J]. Tunnel Construction, 2017, 37(10): 1296-1302 (in Chinese). [74] 张高展, 丁庆军. 水玻璃-工业废渣双液注浆材料的研究与应用[J]. 现代隧道技术, 2007, 44(4): 79-84. ZHANG G Z, DING Q J. Research and application of a two-component grouting material with sodium silicate and industrial residue[J]. Modern Tunnelling Technology, 2007, 44(4): 79-84 (in Chinese). [75] XIAO Z Q, XU C Y, WU G D. The research and comparing test on calcium carbonate-acid water glass grouting material[J]. Applied Mechanics and Materials, 2013, 357/358/359/360: 635-640. [76] SUN X, LIU H R, TIAN Z H, et al. Feasibility and economic evaluation of grouting materials containing binary and ternary industrial waste[J]. Construction and Building Materials, 2021, 274: 122021. [77] 郭凌志, 周 梅, 王丽娟, 等. 煤基固废地聚物注浆材料的制备及性能[J]. 建筑材料学报, 2022, 25(10): 1092-1100. GUO L Z, ZHOU M, WANG L J, et al. Preparation and properties of coal-based solid waste geopolymer grouting materials[J]. Journal of Building Materials, 2022, 25(10): 1092-1100 (in Chinese). [78] 刘春原, 庞云泽, 左丽明, 等. 碱渣-粉煤灰注浆材料强度影响因素的试验研究[J]. 四川建筑科学研究, 2017, 43(6): 94-99. LIU C Y, PANG Y Z, ZUO L M, et al. Experimental study on influencing factors of strength of soda residue-fly ash grouting material[J]. Sichuan Building Science, 2017, 43(6): 94-99 (in Chinese). |
[1] | 冯玉钏, 贾小龙, 惠迎新, 韩方元, 万磊. 母岩类型及石粉含量对机制砂混凝土性能影响研究[J]. 硅酸盐通报, 2023, 42(8): 2773-2780. |
[2] | 曾铭乐, 王志祥. 固废基道路地聚物注浆材料的组分优化及机理研究[J]. 硅酸盐通报, 2023, 42(8): 3033-3044. |
[3] | 蒋应军, 王煜鑫, 周传荣, 李明杰, 杨明, 蒋学猛. 垂直振动成型CTB-50水泥稳定碎石抗压强度增长规律及预测模型[J]. 硅酸盐通报, 2023, 42(8): 3045-3054. |
[4] | 张晨剑, 谢嘉磊, 王志豪, 方思怡, 巴明芳. 氯离子含量对中高强混凝土抗压强度和耐久性的影响[J]. 硅酸盐通报, 2023, 42(7): 2382-2391. |
[5] | 彭勇军, 刘娟红, 李华, 李康. 基于RSM-BBD的高原地区桥墩混凝土性能试验研究[J]. 硅酸盐通报, 2023, 42(7): 2401-2408. |
[6] | 房天齐, 黄舒, 乔秀臣. 循环流化床灰蒸压加气混凝土中延迟形成钙矾石的研究[J]. 硅酸盐通报, 2023, 42(7): 2439-2446. |
[7] | 陈盟, 周明凯, 王杰, 陈立顺. 循环流化床飞灰对泡沫混凝土性能的影响[J]. 硅酸盐通报, 2023, 42(7): 2447-2457. |
[8] | 刘进, 韩达, 张增起. 单掺粉煤灰和矿渣粉对磷酸镁水泥水化进程及强度的影响[J]. 硅酸盐通报, 2023, 42(7): 2472-2478. |
[9] | 王聪聪, 刘茂青, 宋红旗, 庚利民, 杜红秀. 赤泥-钢渣粉-水泥固化流态土性能试验研究[J]. 硅酸盐通报, 2023, 42(7): 2488-2496. |
[10] | 刘沛, 姚素玲, 董宪姝, 付元鹏, 李德浩. 矿物掺合料透水混凝土微观结构及性能分析[J]. 硅酸盐通报, 2023, 42(7): 2504-2512. |
[11] | 丁亚红, 邹成路, 郭猛, 张美香, 吕秀文. 钢纤维增强大掺量再生骨料混凝土力学与断裂性能[J]. 硅酸盐通报, 2023, 42(7): 2532-2540. |
[12] | 杨文秀, 赵青林, 周明凯, 吴德凡, 武苗苗, 沈卫国. 复合增稠剂对大流态薄层砂浆性能的影响及其抗裂机理[J]. 硅酸盐通报, 2023, 42(6): 1938-1949. |
[13] | 翁友法, 李沫弦, 王超凡, 陈兵. 硫氧镁水泥改性半水磷石膏试验研究[J]. 硅酸盐通报, 2023, 42(6): 2115-2120. |
[14] | 刘超, 赵德强, 马倩, 陈贵, 黄娅, 沈卫国. 水泥-磷石膏稳定碎石路面基层材料的研究与应用[J]. 硅酸盐通报, 2023, 42(6): 2121-2130. |
[15] | 万子恒, 金子豪, 苏英, 王丽玥, 王斌. 缓凝剂对磷石膏-硫铝酸盐水泥复合胶凝体系性能影响[J]. 硅酸盐通报, 2023, 42(6): 2131-2039. |
阅读次数 | ||||||
全文 |
|
|||||
摘要 |
|
|||||