煤炭工程 ›› 2026, Vol. 58 ›› Issue (5): 227-234.doi: 10.11799/ce202605028

• 装备技术 • 上一篇    下一篇

深部充填开采围岩-支架耦合模型及其适应性分析

杨东岳   

  1. 山西煤炭运销集团盛泰煤业有限公司,山西 高平 048400

  • 收稿日期:2025-07-26 修回日期:2025-09-06 出版日期:2026-05-15 发布日期:2026-05-27
  • 通讯作者: 张丽萍 E-mail:15735296098@163.com

Coupling Model and Adaptability Analysis of Surrounding Rock Base in Deep Filling Mining

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  • Received:2025-07-26 Revised:2025-09-06 Online:2026-05-15 Published:2026-05-27
  • Contact: Liping -Zhang E-mail:15735296098@163.com

摘要:

充填开采作为减缓采场矿压、岩层运动和地表沉陷程度的有效手段。针对充填开采岩层移动特征与8种典型覆岩载荷形式,建立了六柱式充填液压支架顶梁的平衡方程,充填液压支架的工作状态。为探究六柱充填液压支架底座的疲劳特性,建立了液压支架整体和底座的受力理论模型,基于有限元法对底座进行了强度分析,获得了底座危险工况下的应力集中位置及应力值。根据强度分析结果,通过Fatigue Tool对底座进行疲劳寿命、疲劳损伤、安全系数和疲劳敏感性分析。结果表明:底座在扭转工况下存在多处应力集中,应力集中处疲劳寿命较短、损伤较大且安全系数较小,极易出现疲劳破坏。研究结果为提高充填液压支架使用寿命提供理论参考,从而降低顶板工作面的冲击地压风险以及提升充填开采效率。

关键词:

充填开采, 充填液压支架, 岩层移动, 疲劳分析

Abstract:

Backfill mining serves as an effective method to mitigate mining-induced pressure, control strata movement, and reduce surface subsidence in underground coal extraction. This paper elaborates the operational mechanisms of backfill hydraulic support. Based on strata movement characteristics in backfill mining and 8 typical overburden load patterns, equilibrium equations for the roof beam of six-columns backfill hydraulic supports are established. To investigate the fatigue characteristics of the six-leg backfill hydraulic support base, mechanical theoretical models for both the complete support structure and the base were established. Strength analysis of the base was conducted using the finite element method, revealing stress concentration locations and corresponding stress values under critical operating conditions. Based on the strength analysis results, fatigue life, fatigue damage, safety factor, and fatigue sensitivity analyses of the base were conducted using the Fatigue Tool. The results indicate that the base exhibits multiple stress concentrations under torsional loading conditions. These stress-concentrated areas demonstrate shorter fatigue life, higher fatigue damage, and lower safety factors, making them particularly prone to fatigue failure. The research results provide theoretical references for enhancing the service life of backfill hydraulic supports, thereby mitigating rockburst risks in roof strata and improving backfill mining efficiency.

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