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基于FIMI-Lite指数的煤基充填材料冲击缓释机理与增韧定量表征评价研究

来兴平 王鑫哲 曹建涛 胥海东 崔峰 单鹏飞 张帅

采矿与岩层控制工程学报2026,Vol.8Issue(2):96-114,19.
采矿与岩层控制工程学报2026,Vol.8Issue(2):96-114,19.DOI:10.13532/j.jmsce.cn10-1638/td.2025-1451

基于FIMI-Lite指数的煤基充填材料冲击缓释机理与增韧定量表征评价研究

Impact-mitigation mechanisms and quantitative toughening evaluation of coal-based cemented fill materials based on the FIMI-Lite index

来兴平 1王鑫哲 2曹建涛 1胥海东 3崔峰 1单鹏飞 1张帅1

作者信息

  • 1. 西安科技大学能源与矿业工程学院,陕西西安 710054||西安科技大学西部矿井开采及灾害防治教育部重点实验室,陕西西安 710054
  • 2. 西安科技大学能源与矿业工程学院,陕西西安 710054
  • 3. 西安科技大学能源与矿业工程学院,陕西西安 710054||国家能源集团宁夏煤业有限责任公司麦垛山煤矿,宁夏银川 750408
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摘要

Abstract

Deep mining of coal resources is commonly accompanied by high in-situ stress and progressive energy accumulation,which can readily trigger dynamic disasters such as rock bursts.From the perspective of material toughening,elucidating the impact-mitigation mechanisms of coal-based cemented fill materials and establishing an quantitative characterization and evaluation index system for toughening based on the energy dissipation theory are emerging as promising approaches for achieving impact-mitigation control and optimizing material-oriented design.To clarify the impact-mitigation mechanisms,this study employed coal-based solid wastes as the primary constituents and systematically investigated the coupled effects of aggregate gradation,binder-to-aggregate ratio,curing age,and fiber toughening through uniaxial compression tests,energy evolution analysis,rock burst propensity assessment,and scanning electron microscopy(SEM).The results indicate that aggregate gradation,binder-to-aggregate ratio,and curing age exert significant influences on the mechanical performance of the cemented fill.The uniaxial compressive strength grows with the increase in curing age,and rises first and falls subsequently with the increases in Talbot index n and binder-to-aggregate ratio,reaching an optimum at a curing age of 28 d with n=0.6 and a binder-to-aggregate ratio of 2.5:1.The incorporation of polypropylene fibers markedly enhances the compressive strength and improves post-peak ductility,broadens the energy-dissipation pathways,and enables sustained absorption and dissipation of externally imposed impact energy during the post-peak failure stage.Based on the energy dissipation theory,a FIMI-Lite impact-mitigation evaluation framework comprising five indices(energy dissipation ratio,dynamic toughness index,residual load-bearing ratio,brittleness index,and equivalent vibration isolation coefficient)was proposed to quantitatively characterize the impact-mitigation performance of cemented fill materials.Comparative analyses show that fiber-toughened fills outperform the conventional counterparts across all indices,with the fiber-toughened fill at n=0.4 achieving the highest comprehensive FIMI-Lite score.SEM observations reveal that an appropriate gradation promotes the formation of a dense load-bearing skeleton,whereas the incorporation of fibers conduces to constructing a three-dimensional"particle-cementitious matrix-fiber"network.The synergy of these two factors refines the pore structure,retards crack propagation,and enables stepwise energy absorption and progressive release.The above microstructural findings establish a mechanistic linkage to the macroscopic impact-mitigation performance.The proposed approach provides a scientific basis for optimizing the design of coal-based cemented fill materials and for preventing and controlling coal burst hazards in deep coal mining.

关键词

煤基固废/冲击地压/减冲调控/FIMI-Lite/扫描电镜(SEM)/能量耗散

Key words

coal-based solid wastes/rock burst/impact-mitigation control/FIMI-Lite/SEM/energy dissipation

分类

矿业与冶金

引用本文复制引用

来兴平,王鑫哲,曹建涛,胥海东,崔峰,单鹏飞,张帅..基于FIMI-Lite指数的煤基充填材料冲击缓释机理与增韧定量表征评价研究[J].采矿与岩层控制工程学报,2026,8(2):96-114,19.

基金项目

地球深部探测与矿产资源勘探国家重大科技专项资助项目(2024ZD1004503) (2024ZD1004503)

国家自然科学基金资助项目(52422404) (52422404)

采矿与岩层控制工程学报

2096-7187

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