煤炭工程 ›› 2024, Vol. 56 ›› Issue (11): 132-139.doi: 10.11799/ce202411020

• 研究探讨 • 上一篇    下一篇

低强度冲击倾向性煤岩相似材料配比试验研究

梁伟康,华心祝,李琛,等   

  1. 1. 安徽理工大学矿业工程学院
    2. 安徽理工大学能源与安全学院
  • 收稿日期:2024-05-10 修回日期:2024-08-02 出版日期:2023-11-20 发布日期:2025-01-03
  • 通讯作者: 华心祝 E-mail:xzhhua7218@sina.com

Development of similar materials for coal and rock with low strength and high impact tendency

  • Received:2024-05-10 Revised:2024-08-02 Online:2023-11-20 Published:2025-01-03

摘要: 物理模拟试验是研究煤岩冲击地压的重要科学手段之一,研制出低强、冲击倾向性的煤岩相似材料,是冲击地压物理模拟研究的关键。针对材料性能要求,引入冲击能量指数和脆性指数,采用正交试验设计法与敏感性分析法,选取碳酸钙含量、重晶石粉含量、石膏水泥质量比和水含量4个因素,设计4因素5水平共25组正交配比方案。开展试样单轴压缩及声发射特征试验,得到试样应力-应变曲线和声发射演化特征并测定每组试样强度、冲击能量指数等性能参数,对比分析各试验参数在4个影响因素不同水平下的变化规律,并以冲击能量指数和脆性指数作为筛选条件挑选相似材料配比方案。试验结果表明:水含量和碳酸钙含量是制备低强度冲击强煤岩相似材料的主导因素,改变石膏水泥质量比能够调节相似材料脆性程度与强度|以冲击能量指数KE≥1.5、脆性指数BIzhou≥0.2为选择标准,共得到6组低强度高冲击倾向材料配比,水含量为19%~25%,碳酸钙含量为26%~32%时制备试样冲击倾向性能够满足试验要求|试样加载过程中,屈服阶段之前声发射事件不活跃,进入屈服阶段后振铃计数陡增,出现高能量破坏,屈服前后呈现“平稳过渡,急剧上升”的趋势。

关键词: 冲击能量指数, 相似材料, 冲击地压, 脆性指数, 声发射

Abstract: Physical simulation test is one of the important scientific means to study rock burst of coal. Developing similar materials with low strength and high impact inclination is the key to physical simulation of rock burst. Aiming at the material performance requirements, the impact energy index and brittleness index were introduced, and four factors including calcium carbonate content, barite powder content, gypsum cement mass ratio and water content were selected by orthogonal experimental design method and sensitivity analysis method. A total of 25 groups of orthogonal ratio schemes with 4 factors and 5 levels were designed. Uniaxial compression and acoustic emission characteristic experiments were carried out to obtain stress-strain curve and acoustic emission evolution characteristics of the samples, determine the performance parameters of each group of samples such as strength and impact energy index, and compare and analyze the variation rules of each test parameter under different levels of four influencing factors. The impact energy index and brittleness index were used as screening conditions to select similar material ratio schemes. The experimental results show that water content and calcium carbonate content are the main factors for the preparation of low-strength, high-impact and strong coal-rock similar materials, and the brittleness degree and strength of similar materials can be adjusted by changing the mass ratio of gypsum to cement. Taking the impact energy index KE ≥1.5 and brittleness index BIzhou ≥0.2 as the selection criteria, six groups of low-strength and high-impact tendency materials are obtained. When the water content is 19%-25% and the calcium carbonate content is 26%-32%, the impact tendency of the prepared sample can meet the test requirements. During sample loading, acoustic emission events were not active before the yield stage, but after entering the yield stage, the ringing count increased sharply and high energy damage occurred, and the trend of "smooth transition and sharp rise" occurred before and after the yield stage.

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