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煤样单轴压缩破坏过程能量耗散与应力降关系研究 被引量:2
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作者 娄全 万祥云 +3 位作者 贾炳 邱黎明 宋雨萱 彭德盛 《工矿自动化》 北大核心 2022年第5期72-78,共7页
相较于煤岩破坏能量耗散,更为直观的应力降对辅助研究煤岩破坏特征及地球物理信号变化规律具有一定的现实意义,应力降是能量耗散的宏观表现形式。目前对能量耗散和应力降的研究大多只是针对单方面的研究,未对两者之间的关系开展全面研究... 相较于煤岩破坏能量耗散,更为直观的应力降对辅助研究煤岩破坏特征及地球物理信号变化规律具有一定的现实意义,应力降是能量耗散的宏观表现形式。目前对能量耗散和应力降的研究大多只是针对单方面的研究,未对两者之间的关系开展全面研究,两者之间的关系不明确,制约了应力降指标的应用。针对上述问题,采用YAW-600型微机控制电液伺服压力试验机对煤样进行单轴压缩实验,研究分析了煤样受载破坏全过程能量耗散指标和应力降指标的演化特征及两者之间的关系;基于理论分析,进一步研究了能量耗散指标与应力水平和应力降指标乘积的关系。研究结果表明:煤样单轴压缩破坏过程中能量耗散指标与应力降指标对煤样显著断裂都有较好的响应,且在数值上处于同一数量级,但两者不完全成比例;能量耗散速率与应力水平和应力降速率乘积呈线性关系,能量耗散量与应力水平和应力降乘积呈线性关系,拟合优度分别为1和0.9975;相较于能量耗散指标,更为直观的应力水平和应力降指标乘积对煤样显著破坏更为敏感,且呈阵发特性。该研究结果明确了能量耗散与应力降的关系,为应力降指标的应用提供了一定的理论支撑,可用于深入研究煤岩破坏特征及声发射、电磁辐射、红外辐射等地球物理信号变化规律。 展开更多
关键词 煤岩动力灾害 煤样单轴压缩 煤岩破坏特征 能量 应力降 应力水平 能量耗散速率 应力降速率
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Load-bearing characteristics and energy evolution of fractured rock masses after granite and sandstone grouting
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作者 WU Xu-kun ZHAO Guang-ming +4 位作者 MENG Xiang-rui LIU Chong-yan LIU Zhi-xi HUANG Shun-jie ZHANG Qi-hang 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第8期2810-2825,共16页
Experiments on grouting-reinforced rock mass specimens with different particle sizes and features were carried out in this study to examine the effects of grouting reinforcement on the load-bearing characteristics of ... Experiments on grouting-reinforced rock mass specimens with different particle sizes and features were carried out in this study to examine the effects of grouting reinforcement on the load-bearing characteristics of fractured rock mass.The strength and deformation features of grouting-reinforced rock mass were analyzed under different loading manners;the energy evolution mechanism of grouting-reinforced rock mass specimens with different particle sizes and features was investigated;the energy dissipation ratio and post-peak stress decreasing rate were employed to evaluate the bearing stability of grouting-reinforced rock mass.The results show that the strength and ductility of granite-reinforced rock mass(GRM)under biaxial loading are higher than that of sandstone-reinforced rock mass(SRM)under uniaxial loading.Besides,the energy evolution characteristics of grouting-reinforced rock mass under uniaxial and biaxial loading mainly could be divided into early,middle,and late stages.In the early stage,total,elastic,and dissipation energies were quite small with flatter curves;in the middle stage,elastic energy increased rapidly,whereas dissipation energy increased slowly;in the late stage,dissipation energy increased sharply.The energy dissipation ratio was used to represent the pre-peak plastic deformation.Under uniaxial loading,this ratio increased as the particle size increased and the pre-peak plastic deformation of grouting-reinforced rock mass became larger;under biaxial loading,it dropped as the particle size increased,and the pre-peak plastic deformation of grouting-reinforced rock mass became smaller.The post-peak stress decline rate A_(v) was used to assess the post-peak bearing performance of grouting-reinforced rock mass.Under uniaxial loading,parameter A_(v) exhibited reduction as the particle size kept increasing,and the ability of post-peak of grouting-reinforced rock mass to allow deformation development was greater,and the bearing capacity was greater;under biaxial loading,A_(v) increased with the particle size,and the ability of post-peak of grouting-reinforced rock mass to allow deformation development was low and the bearing capacity was reduced.The findings are considered instrumental in improving the stability of the roadway-surrounding rock by granite and sandstone grouting. 展开更多
关键词 grouting-reinforced rock mass particle size energy dissipation ratio post-peak stress decreasing rate load-bearing characteristics
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