高级检索

    水泥–粉煤灰基高水胶结材料制备及性能研究

    Study on preparation and properties of high water cementing material with large amount of fly ash

    • 摘要: 为解决矿山充填开采过程中普通高水材料存在的易堵管、反应温度高、材料成本高等问题,通过在高水材料中掺入粉煤灰,研究不同水固比以及不同掺量粉煤灰条件下高水材料的初凝时间、析水率、结实率、抗压强度及反应温度的变化情况,并对硬化浆体进行扫描电镜分析,观测其微观结构。结果表明,水固比固定,高水材料初凝时间随粉煤灰掺量增大而增大,增大幅度排序为水固比1.5∶1>1∶1>2∶1;粉煤灰掺量固定,高水材料初凝时间随水固比增大而增大,增大幅度近似呈线性相关;不同水固比、粉煤灰掺量主要影响硬化浆体的强度和内部温度,其中水固比1∶1,粉煤灰掺量60%,材料强度随养护时间由2.1 MPa增加至2.8 MPa,硬化浆体内部反应温度对比不掺粉煤灰降低了12.3 ℃,降幅31.77%;强度相当的硬化浆体,最低成本相对空白组下降了54.6%。研究成果能够为掺粉煤灰高水材料性能研究和工程应用经济性提供参考依据。

       

      Abstract: In order to solve the problems of easy plugging, high reaction temperature and high material cost of ordinary high-water materials in the process of mine filling and mining, fly ash was mixed into high-water materials to study the initial setting time, water precipitation rate, seed setting rate, compressive strength and reaction temperature of high-water materials under different water-solid ratios and different fly ash contents. The hardened slurry was analyzed by scanning electron microscopy and its microstructure was observed. The results show that when the water-solid ratio is fixed, the initial setting time of high-water material increases with the increase of fly ash content, and the order of increase is water-solid ratio 1.5∶1 > 1∶1 > 2∶1; when the content of fly ash is fixed, the initial setting time of high water material increases with the increase of water-solid ratio, and the increase amplitude is approximately linearly related. Different water-solid ratio and fly ash content mainly affect the strength and internal temperature of hardened slurry. Among them, the water-solid ratio is 1∶1 and the fly ash content is 60 %. The strength of the material increases from 2.1 MPa to 2.8 MPa with the curing time. The internal reaction temperature of hardened slurry is reduced by 12.3 ℃ compared with that without fly ash, a decrease of 31.77%; the minimum cost of hardened paste with comparable strength decreased by 54.6% compared with the blank group. The research results can provide reference for the performance research and engineering application economy of high water material with fly ash.

       

    /

    返回文章
    返回