河南理工大学学报(自然科学版)2026,Vol.45Issue(2):64-75,12.DOI:10.16186/j.cnki.1673-9787.2024100026
功率超声与碱激发协同强化粉煤灰膏体充填材料力学特性实验研究
Experimental study on the mechanical properties of fly ash paste filling material synergistically enhanced by high-power ultrasound and alkali activation
摘要
Abstract
Objectives To address the problem of low early strength of fly ash paste filling material,this study investigates the mechanism and effectiveness of synergistic modification using high-power ultrasound and alkali activation.Methods Single-factor experiments were conducted to analyze the effects of ultrasound time,ultrasound power,Na2SiO3 concentration,and NaOH concentration on the 1 d,3 d,and 7 d peak strengths of fly ash paste filling material.Based on a three-factor,five-level central composite design(CCD)within the response surface methodology,the synergistic modification parameters of ultrasound and alkali activation were optimized.Furthermore,the microstructural changes after modification and the syner-gistic modification mechanism were systematically investigated.Results The results indicate that the peak strength of fly ash paste filling material first increases and then decreases with increasing ultrasound time,ultrasound power,Na2SiO3 concentration,and NaOH concentration.The degree of influence of the four fac-tors on peak strength follows the order:Na₂SiO₃ concentration>ultrasound time>ultrasound power>NaOH concentration.The optimal experimental conditions for the synergistic modification were an ultra-sound time of 28.62 min,an ultrasound power of 700 W,and a Na2SiO3 concentration of 0.57 mol·L-1.The synergistic action of high-power ultrasound and alkali activation significantly enhanced the peak strength of the fly ash paste filling material,in which alkali activation played a dominant role,while high-power ultra-sound exerted a strengthening effect.Conclusions The synergistic effect of high-power ultrasound and alkali activation further accelerates the hydration reaction rate of fly ash paste filling material,increases the for-mation of hydration products,reduces material porosity,and consequently improves its mechanical proper-ties.关键词
粉煤灰膏体充填材料/功率超声/碱激发/协同效应Key words
fly ash paste filling material/high-power ultrasound/alkali activation/synergistic effect分类
矿业与冶金引用本文复制引用
尹博,贾晓磊,黄平平,连全东,周楠,李先峰,吴祥,杨瑞宙,杨晓艳..功率超声与碱激发协同强化粉煤灰膏体充填材料力学特性实验研究[J].河南理工大学学报(自然科学版),2026,45(2):64-75,12.基金项目
国家自然科学基金资助项目(52264009) (52264009)
内蒙古自治区自然科学基金资助项目(2020LH05006) (2020LH05006)
内蒙古自治区"草原英才"工程青年创新创业人才项目(2022年) (2022年)
内蒙古自治区直属高校基本科研业务费项目(ZTY2023062) (ZTY2023062)