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Effect of Magnetized Water on the Stability and Consolidation Compressive Strength of Cement Grout

机译:磁化水对水泥灌浆稳定性和固结抗压强度的影响

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摘要

In this study, tap water is magnetized by a self-developed device. The conductivity and evaporation of magnetized water (MW) at different temperatures are tested to demonstrate the magnetization mechanism. The results show that the conductivity and evaporation of the magnetized water increase to different degrees compared with regular tap water (RW). The maximum increase in conductivity is 10.6%, and the maximum increase in evaporation is 25.6% and 16.7% at 50 and 80 °C, respectively. Cement grout samples with water-cement ratios (w/c) of 0.5 and 1.0 were prepared with magnetized water. The stability of the cement grout mixed with RW and MW under different magnetic conditions is tested. The compressive strength and SEM images of the hardened cement grout samples mixed with RW and MW (under optimum magnetic conditions) are compared. The cement grout prepared with MW has a higher stability compared to that of the control specimen, and the relative change of bleeding volume of the MW cement grout with w/c = 0.5 and 1 is 67.69% and 24.36%, respectively. MW has a positive effect on the consolidation compressive strength of cement grout. SEM images show that hardened cement grout with MW has more hydrate crystals, more compact filling space between cement particles, more contact points, and fewer voids compared to that of RW. The influence mechanism of MW on the stability of cement grout is analyzed, which provides a theoretical basis for the application of MW in the field of grouting engineering.
机译:在这项研究中,自来水被自发射装置磁化。测试不同温度下磁化水(MW)的电导率和蒸发以证明磁化机制。结果表明,与常规自来水(RW)相比,磁化水的电导率和蒸发增加到不同程度。导电率的最大增加是10.6%,蒸发的最大增加分别为50和80°C的25.6%和16.7%。用磁化水制备水水泥比(W / C)的水泥浆液(W / C)。测试了与不同磁性条件下与RW和MW混合的水泥灌浆的稳定性。比较了与RW和MW(在最佳磁性条件下)混合的硬化水泥灌浆样品的抗压强度和SEM图像。与对照样品相比,用MW制备的水泥灌浆具有较高的稳定性,并且分别具有W / C = 0.5和1的MW水泥灌浆的渗出体积的相对变化分别为67.69%和24.36%。 MW对水泥灌浆的固结抗压强度具有积极影响。 SEM图像表明,与RW相比,具有MW的硬化水泥灌浆具有更多的水合物晶体,水泥颗粒之间更紧凑的填充空间,更少的空隙。分析了MW对水泥灌浆稳定性的影响机理,为灌浆工程领域应用MW提供了理论依据。

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