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金属矿山 ›› 2025, Vol. 55 ›› Issue (8): 281-288.

• 矿物材料 • 上一篇    下一篇

新型固废基胶结超细尾砂充填体的强度机理研究

任碧琦  万小军  向俊宸  李文润  孙晓刚  邱景平    

  1. 东北大学资源与土木工程学院,辽宁 沈阳 110819
  • 出版日期:2025-09-15 发布日期:2025-09-16
  • 通讯作者: 邱景平(1975—),男,教授,博士,博士研究生导师。
  • 作者简介:任碧琦(1999—),女,博士研究生。
  • 基金资助:
    国家自然科学基金面上项目(编号:52374116);“十四五”国家重点研发计划项目(编号:2023YFC3904303)。 

Strength Mechanism Study of a Novel Solid Waste-Based Binder for Cementing Ultra-Fine Tailings Backfill

REN Biqi  WAN Xiaojun  XIANG Junchen  LI Wenrun  SUN Xiaogang  QIU Jingping    

  1. School of Resources and Civil Engineering,Northeastern University,Shenyang 110819,China
  • Online:2025-09-15 Published:2025-09-16

摘要: 为提高超细尾砂充填体的力学性能并降低采空区充填成本,研发一种新型固废基胶结材料,以代替水 泥制备低成本尾砂充填体。 通过宏观试验和微观结构表征分析,对比研究了新型胶结材料与水泥对充填料浆流动性 能和充填体强度性能的影响规律,分析了新型固废基胶结材料的强度形成机理。 研究表明:新型胶结材料充填料浆 较水泥充填料浆泌水程度更轻,流动性能更好,同配比下坍落度提高了 7. 27% ~ 12. 21%,2 种料浆流动性能均随灰砂 比的增大而减小;新型胶结材料充填体抗压强度明显高于水泥充填体,提升了 24. 497% ~ 138. 931%,两种充填体强度 均与灰砂比和养护龄期正相关;新型胶结材料生成的水化产物(C-S-H 和 AFt)更多,孔隙量较少且基体更致密,对比 水泥有效提高了充填体的强度。 研究结果为新型固废基胶结材料强化超细尾砂充填体的应用提供了重要理论价值 和指导意义。 

关键词: 固废基  尾砂充填体  流动性  抗压强度  强度增强机理

Abstract: In order to enhance the mechanical properties of ultra-fine tailing backfill and reduce the cost of filling minedout areas,a novel solid waste-based binder was developed as a cost-effective alternative to cement. The effects of this new binder and cement on the flowability of backfill slurry and the strength performance of backfill were comparatively analyzed through macroscopic experiments and microstructure characterization. The strength mechanism of the novel binder was also investigated. The results indicated that the slurry prepared with the novel binder exhibited less bleeding and better liquidity compared to cement slurry,with a slump increase of 7. 27%-12. 21% under the same mix proportions. The liquidity of both slurry decreased with increasing binder-to-tailings ratio. The compressive strength of the backfill prepared with the novel binder was significantly higher than that of cement backfill,with an improvement of 24. 497%-138. 931%. The strength of both backfill positively correlated with the binder-to-tailings ratio and curing age. The novel binder produced more hydration products ( C- S -H and AFt),reduced porosity,and formed a denser matrix,effectively improving the strength of the backfill compared to cement. These findings provide critical theoretical insights and practical guidance for the application of novel solid waste-based binders in reinforcing ultra-fine tailings backfill. 

Key words: solid waste base,tailings backfill,liquidity,compressive strength,strength enhancement mechanism 

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