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Reaction characteristics and compressive strength of magnesia-phosphate cement at negative temperatures

机译:镁磷酸盐水泥在负温下的反应特性和抗压强度

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Magnesia-phosphate cement (MPC) is considered the most promising inorganic cementing material for the rushrepair construction of concrete structures, pavements, and airport runways in negative-temperature environments. To prepare MPC repair materials that are suitable for negative temperatures, we studied and quantitatively analyzed the influences of dead-burned magnesia/phosphate (M/P), borax/dead-burned magnesia (B/M), and water/MPC (W/C) ratios on the reaction rate, early strength, and long-term strength of MPC prepared and cured at negative temperatures. The ice point of the mixed water decreased to -10 degrees C because of the double hydrolysis role of monoammonium phosphate and borax; therefore, MPC could set and harden at temperatures higher than -10 degrees C, and its 2 h compressive strength was 15 MPa. The setting and reaction rate of MPC decreased steeply with decreasing temperature, and the 2 h compressive strength was as low as 3.0 MPa at - 20 +/- 2 degrees C. The early strength of MPC enhanced on increasing the magnesium ion concentration in the MPC slurry, and the 2 h compressive strength of MPC at - 10 +/- 2 degrees C increased by approximately 50% when the M/P ratio increased from 3 to 5. The early strength of MPC at negative temperatures was more sensitive to changes in the B/M and W/C ratios than at room temperature (20 +/- 2 degrees C). When the temperature of the frozen MPC specimens that were maintained at - 10 +/- 2 degrees C and - 20 +/- 2 degrees C was increased to room temperature, the long-term strength of the MPC increased to approximately 80.9% and 67.6%, respectively, than that of the MPC maintained at room temperature, owing to the secondary reaction in the MPC.
机译:氧化镁 - 磷酸盐水泥(MPC)被认为是混凝土结构,人行道,和机场跑道的在负温度环境rushrepair结构最有前途的无机胶结材料。为了制备MPC修补材料适合于负的温度,我们研究和定量分析死烧氧化镁/磷酸盐(M / P)的影响,硼砂/死烧氧化镁(B / M)和水/ MPC(W制备,并且在负温度下固化/ C)对反应速率,早强,和MPC的长期强度比。混合水的冰点降低到-10摄氏度由于磷酸一铵和硼砂的双水解作用;因此,MPC可以设置和在温度高于-10摄氏度硬化更高,其2小时抗压强度为> 15兆帕。 MPC的设置和反应速率随着温度的降低急剧降低,并且2小时压缩强度低,为3.0兆帕在 - 20 +/- 2℃。MPC的早期强度增强在所述MPC提高镁离子浓度淤浆中,MPC的在2小时抗压强度 - 10 +/- 2℃下增加了大约50%时,M / P比从3增加到5。早期强度MPC中的负的温度是在变化更敏感的B / M和W / C比大于在室温(20 +/- 2℃)。当维持,在冷冻MPC试样的温度 - 10 +/- 2℃和 - 20 +/- 2℃的升高至室温,将MPC的长期强度增加至约80.9%和67.6 %,分别比MPC的保持在室温下,由于在MPC二次反应。

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