[1] 杜采颐.新型化学结合磷酸盐胶凝材料性能的研究[D].绵阳:西南科技大学,2008:7-8. DU C Y. Study on properties of new chemically bonded phosphate cementitious materials[D]. Mianyang: Southwest University of Science and Technology, 2008: 7-8 (in Chinese). [2] SEEHRA S S, GUPTA S, KUMAR S. Rapid setting magnesium phosphate cement for quick repair of concrete pavements-characterisation and durability aspects[J]. Cement and Concrete Research, 1993, 23(2): 254-266. [3] 姜自超,张时豪,房汉鸣,等.磷酸铵镁水泥修补材料修补性能研究[J].硅酸盐通报,2017,36(1):391-395. JIANG Z C, ZHANG S H, FANG H M, et al. Repair performance of magnesium ammonium phosphate cement (MAPC) mending materials[J]. Bulletin of the Chinese Ceramic Society, 2017, 36(1): 391-395 (in Chinese). [4] 姜洪义,梁 波,张联盟.MPB超早强混凝土修补材料的研究[J].建筑材料学报,2001,4(2):196-198. JIANG H Y, LIANG B, ZHANG L M. Investigation of MPB with super early strength for repair of concrete[J]. Journal of Building Materials, 2001, 4(2): 196-198 (in Chinese). [5] YANG Q B, ZHANG S Q, WU X L. Deicer-scaling resistance of phosphate cement-based binder for rapid repair of concrete[J]. Cement and Concrete Research, 2002, 32(1): 165-168. [6] YANG Q B, WU X L. Factors influencing properties of phosphate cement-based binder for rapid repair of concrete[J]. Cement and Concrete Research, 1999, 29(3): 389-396. [7] WAGH A S, GEORGE W, DROZD V, et al. Inorganic phosphate compositions and methods: US8858702[P]. 2014-10-14. [8] WAGH A S, SINGH D, JEONG S Y. Chemically bonded phosphate ceramics for stabilization and solidification of mixed waste[M]//Hazardous and Radioactive Waste Treatment Technologies Handbook. Boca Raton: CRC Press, 2001: 545-562. [9] 李东旭,李鹏晓,冯春花.磷酸镁水泥耐水性的研究[J].建筑材料学报,2009,12(5):505-510. LI D X, LI P X, FENG C H. Research on water resistance of magnesium phosphate cement[J]. Journal of Building Materials, 2009, 12(5): 505-510 (in Chinese). [10] SARKAR A K. Phosphate cement-based fast-setting binders[J]. American Ceramic Society Bulletin, 1990, 69(2): 234-238. [11] SUGAMA T, KUKACKA L E. Magnesium monophosphate cements derived from diammonium phosphate solutions[J]. Cement and Concrete Research, 1983, 13(3): 407-416. [12] 汪宏涛.高性能磷酸镁水泥基材料研究[D].重庆:重庆大学,2006:81-98. WANG H T. Study on the high performance magnesia-phosphate cement based composites[D]. Chongqing: Chongqing University, 2006: 81-98 (in Chinese). [13] 杨建明,钱春香,周启兆,等.水玻璃对磷酸钾镁水泥性能的影响[J].建筑材料学报,2011,14(2):227-233. YANG J M, QIAN C X, ZHOU Q Z, et al. Effect of waterglass on the performance of potassium and magnesium phosphate cement paste[J]. Journal of Building Materials, 2011, 14(2): 227-233 (in Chinese). [14] CHONG L L, YANG J M, XU Z Z, et al. Freezing and thawing resistance of MKPC paste under different corrosion solutions[J]. Construction and Building Materials, 2019, 212: 663-674. [15] 顾华健,杨建明,吴 庆,等.水玻璃对大流动度磷酸钾镁水泥浆体性能的影响[J].新型建筑材料,2019,46(11):127-130+139. GU H J, YANG J M, WU Q, et al. Effect of sodium silicate on the performance of high fluidity potassium and magnesium phosphate cement paste[J]. New Building Materials, 2019, 46(11): 127-130+139 (in Chinese). [16] 纪荣健,杨建明,吴 庆,等.水玻璃对大流动度的磷酸铵镁水泥浆体性能的影响[J].硅酸盐通报,2020,39(1):28-33. JI R J, YANG J M, WU Q, et al. Effect of water glass on properties of high flowing magnesium ammonium phosphate cement paste[J]. Bulletin of the Chinese Ceramic Society, 2020, 39(1): 28-33 (in Chinese). [17] 杨全兵.混凝土盐冻破坏机理(Ⅱ):冻融饱水度和结冰压[J].建筑材料学报,2012,15(6):741-746. YANG Q B. One of mechanisms on the deicer-frost scaling of concrete(Ⅱ): degree of saturation and ice-formation pressure during freezing-thawing cycles[J]. Journal of Building Materials, 2012, 15(6): 741-746 (in Chinese). [18] SHI C J, YANG J M, YANG N, et al. Effect of waterglass on water stability of potassium magnesium phosphate cement paste[J]. Cement and Concrete Composites, 2014, 53: 83-87. |