多孔介质中普通水泥浆液可注性时变规律及机理

    TIME-VARYING LAW AND MECHANISM OF INJECTABILITY OF ORDINARY CEMENT SLURRY IN POROUS MEDIA

    • 摘要: 注浆工程中普通水泥浆液应用最广泛,浆液的可注性是核心性能指标之一。提高水泥浆液可注性不仅可以扩大其注浆作用范围,还可以减少注浆材料,降低注浆成本。前期室内试验发现水泥浆液可注性随水化的进行先增加后降低,在水化时间60 min时出现峰值。为了揭示可注性变化机理,本研究运用偏光显微镜持续观测了水泥浆液水化过程中的结构变化,通过声波激光粒度仪测试了水泥浆液内部颗粒变化情况,并且测试了其宏观黏度的变化。在相关注浆理论框架下分析了水泥浆液可注性时变的机理。结果表明:(1)颗粒的溶解和晶体析出使水泥浆液内部结构发生变化,溶解使颗粒减小,晶体析出使颗粒之间连接加强;(2)水化120 min内,水泥颗粒的溶解速率为0.005 μm ·min-1,水泥浆液黏度呈指数增长;(3)水泥浆内颗粒的溶解与聚集、浆液黏度的增长,三者共同决定了水泥浆液的可注性;在水泥水化初期水泥颗粒溶解是导致水泥浆液可注性升高的主因,水化后期颗粒聚集和流动性降低是水泥浆液可注性降低的主因。本研究对于普通水泥浆液的精细化利用具有借鉴价值。

       

      Abstract: In the field of grouting engineering, ordinary cement slurry is most widely used, and the injectability of slurry is one of its core performance indexes. Improving the injectability of cement slurry can not only broaden its application range but also reduce the use of expensive grouting materials and lower the cost of grouting. In the previous indoor experiment, it was found that the injectability of cement slurry increases and then decreases with hydration, with a peak at 60 minutes of hydration time. In order to reveal the mechanism of injectability change, this study used a polarized light microscope to continuously observe the structural change of cement slurry during hydration, tested the change of internal particles by an acoustic laser particle sizing instrument, and tested the change of macroscopic viscosity. The mechanism of time-varying cement slurry injectability was analyzed in the framework of relevant grouting theory. The results showed that: (1)particle dissolution and crystal precipitation caused the internal structure of the cement slurry to change continuously, with particle reduction by dissolution and strengthening of the connection between particles by crystal precipitation; (2)the dissolution rate of cement particles was 0.005 μm ·min-1 within 120 minutes of hydration, while the viscosity of the cement slurry increased exponentially; (3)dissolution of the cement particles, aggregation of the cement particles, and growth of the viscosity of the cement slurry. The three together determine the change of cement slurry injectability; the dissolution of cement particles in the early stage of cement hydration is the main cause of the increase of cement slurry injectability, and the aggregation of particles and the decrease of fluidity in the late stage of hydration are the main causes of the decrease of cement slurry injectability. This study is valuable for the fine utilization of ordinary cement slurry.

       

    /

    返回文章
    返回