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Preparation and mechanical properties of magnesium phosphate cement for rapid construction repair in ice and snow

机译:冰雪快速施工修复用磷酸镁水泥的制备及力学性能

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In an icy and snowy environment, the rapid construction repair of infrastructure faces many challenges of cold weather and complex technical problems, such as the challenge of mixing water and rapidly preparing repair materials with a high early strength. Some experiments have been carried out to prepare magnesium phosphate cement (MPC) in icy and snowy environments. A small amount of light burnt magnesia (LBM) partially replaced dead burnt magnesia and ice particles completely replaced mixing water to prepare MPC at a negative temperature. The effects of LBM and ice particle content on the fluidity, setting time, early strength and volume stability of the MPC at a negative temperature were studied. Ice particles can be melted by reaction and friction heat that are released during the mixing of MPC, and an appropriate amount of LBM can accelerate ice particle melting and increase the reaction rate of MPC paste. Therefore, the MPC paste condenses and hardens normally at a negative temperature. When the LBM/M ratio is 2%-4%, 4%-6% and 8%-12% at -2 +/- 2 degrees C, -10 +/- 2 degrees C and -20 +/- 2 degrees C, respectively, the 2-h compressive strength of the MPC reached 20-40 MPa. When the ambient temperature returned to a normal temperature, the 28-day compressive strength of the MPC that was prepared at -20 degrees C reached similar to 70% of that of the MPC that was prepared at a normal temperature because of the secondary reaction of MPC and the growth of struvite. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在冰冷多雪的环境中,基础设施的快速施工修复面临许多寒冷气候和复杂技术问题的挑战,例如混合水和快速制备具有较高早期强度的修复材料的挑战。已经进行了一些实验以在冰冷多雪的环境中制备磷酸镁水泥(MPC)。少量的轻质燃烧氧化镁(LBM)可以部分替代死燃烧的氧化镁,而冰粒可以完全替代混合水,从而在负温度下制备MPC。研究了LBM和冰粒含量对MPC在负温度下的流动性,凝固时间,早期强度和体积稳定性的影响。 MPC混合过程中释放的反应和摩擦热会使冰粒融化,适量的LBM可以加速冰粒融化并提高MPC糊料的反应速率。因此,MPC浆料通常在负温度下凝结并硬化。当LBM / M比为-2 +/- 2摄氏度,-10 +/- 2摄氏度和-20 +/- 2摄氏度时为2%-4%,4%-6%和8%-12% C,MPC的2-h抗压强度分别达到20-40MPa。当环境温度恢复到常温时,由于-20的二次反应,在-20摄氏度下制备的MPC的28天抗压强度达到在常温下制备的MPC的70%。 MPC和鸟粪石的生长。 (C)2019 Elsevier Ltd.保留所有权利。

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