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KH 2 PO 4作为磷酸钾镁水泥主要原材料,与其性能直接相关.研究了 KH 2 PO 4粒度对磷酸钾镁水泥的流动性、凝结时间、抗压强度、粘接强度、水化浆体温度和孔隙率等方面的影响.结果表明,随着KH 2 PO 4粒径的减小,磷酸钾镁水泥的凝结时间缩短,流动度先增加后减小;材料抗压强度和粘接强度逐渐增大,中位粒径为45μm 时,3 h 抗压强度达32 MPa,1 d 粘接强度达4.3 MPa;KH 2 PO 4的粒度对磷酸钾镁水泥的水化热有较大影响,对于100 mm×100 mm×100 mm 的试块,成型后中心最高温度逐渐升高,最高可达79.5℃;随着 KH 2 PO 4粒径降低,磷酸钾镁水泥的平均孔径降低,孔隙率降低,材料致密程度相应提高.同时,粒径的减小也明显减轻了磷酸钾镁水泥所存在的“泛霜”现象.

As the raw material of potassium-magnesium phosphate cement,KH 2 PO 4 was directly associated with performance of as prepared materials.Effects of KH 2 PO 4 size on setting time,compressive strength,fluidity, adhesive strength,slurry temperature and porosity of the potassium-magnesium phosphate cement are studied in this paper.Results showed that as the KH 2 PO 4 particle size decreases,setting time of potassium-magnesium phosphate cement shortened,fluidity of materials increases and then decreases with minimum particle size in this study ,compressive strength and adhesive strength increases with finer KH 2 PO 4 ,when medium particle size was 45 μm,3 h compressive strength of cement was up to 32 MPa,1 d adhesive strength was 4.3 MPa. Particle sizes of KH 2 PO 4 have significant effects on hydration heat of phosphate potassium magnesium cement. For samples with 100 mm×100 mm×100 mm,central temperature gradually increased,the maximum temper-ature was up to 79.5 ℃.As particle size of KH 2 PO 4 was lessen,mean pore size of phosphate potassium magne-sium cement reduced and lower porosity also can be gotten.The paper also found that finer particle size of KH 2 PO 4 can significantly reduce “efflorescence”phenomenon of the potassium-magnesium phosphate cement.

参考文献

[1] Du Lei;Yan Yun;Hu Zhihua .Research and application status of chemically bonded magnesium phosphate bind-ing materials[J].Cement,2007,5:23-25.
[2] Sugama T;Kukacka L E .Characteristics of magnesium polyphosphate cement derived from ammonium polyphos-phate solutions[J].Cement and Concrete Research,1983,13(04):499.
[3] Wagh A;Dileep Singh .Method for stabilizing low-level mixed wastes at room temperature[P].US Patent:56455 18,1997-06-08.
[4] Wagh A;Jeong F Y;Singh D.High strength phosphate ce-ment using industrial by-product ashes[A].Kona,1997:542-533.
[5] 赖振宇,钱觉时,卢忠远,李倩,邹秋林.不同温度处理对磷酸镁水泥性能的影响[J].功能材料,2012(15):2065-2070.
[6] Q.Yang;X.Wu .Factors influencing properties of phosphate cement-based binder for rapid repair of concrete[J].Cement and Concrete Research,1999(3):389-396.
[7] 马保国,王景然,李相国,何超.不同环境条件下磷酸镁水泥对硝酸铅的固化[J].功能材料,2013(21):3183-3185,3189.
[8] Buj I;Torras J .Leaching behavior of magnesium phosphate cements containing high quantities of heavy metals[J].Jour-nal of Hazardous Materials,2010,175:789-794.
[9] 汪宏涛,钱觉时,王建国.磷酸镁水泥的研究进展[J].材料导报,2005(12):46-47,51.
[10] 夏锦红,袁大伟,王立久.磷酸镁水泥水化机理研究[J].武汉理工大学学报,2009(09):25-28.
[11] 杨建明,钱春香,焦宝祥,罗利民,阎晓波.缓凝剂硼砂对磷酸镁水泥水化硬化特性的影响[J].材料科学与工程学报,2010(01):31-35,75.
[12] Ding Zhu;Li Zongjin .High early strength magnesium phosphate cement[J].Chinese Journal of Materials Re-search,2006,20(02):141-147.
[13] 张思宇,施惠生.粉煤灰改性磷酸镁水泥基材料的性能与应用[J].粉煤灰综合利用,2009(01):54-56.
[14] Z. DING;Z. LI .Effect of aggregates and water contents on the properties of magnesium phospho-silicate cement[J].Cement & concrete composites,2005(1):11-18.
[15] 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(05):505-510.
[16] 毛敏,王智,王庆珍,胡倩文,尤超.磷酸镁水泥耐水性的影响因素与改进措施[J].粉煤灰综合利用,2011(06):15-18.
[17] Jiang Jiangbo;Xue Ming;Wang Hongtao et al.Prepa-ration and properties of marine magnesium phosphate cement based materials[J].Journal of Functional Materi-als,2011,42(15):828-830.
[18] 赖振宇,钱觉时,卢忠远,李倩,邹秋林.原料及配比对磷酸镁水泥性能影响的研究[J].武汉理工大学学报,2011(10):16-20.
[19] Fan Shijian;Chen Bing .Experimental study of phos-phate salts influencing properties of magnesium phos-phate cement[J].Construction and Building Materials,2014,65:480-486.
[20] 杨建明,钱春香,张青行,焦宝祥,阎晓波.原料粒度对磷酸镁水泥水化硬化特性的影响[J].东南大学学报(自然科学版),2010(02):373-379.
[21] 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(02):196-198.
[22] Qian Jueshi;You Chao;Wang Qingzhen et al.A meth-od for assessing bond performance of cement-based re-pair materials[J].Construction and Building Materials,2014,68:307-313.
[23] 常远,史才军,杨楠,杨建明.不同细度MgO对磷酸钾镁水泥性能的影响[J].硅酸盐学报,2013(04):492-499.
[24] Stefan Graeser;Walter Postl;Hans-Peter Bojar;Peter Berlepsch;Thomas Armbruster;Thomas Raber;Karl Ettinger;Franz Walter .Struvite-(K), KMgPO4·6H2O, the potassium equivalent of struvite – a new mineral[J].European journal of mineralogy,2008(4):629-633.
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