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不同岩性围压下的变形、破坏及声发射特征

Deformation, Failure, and Acoustic Emission Characteristics under Different Lithological Confining Pressures.

作者信息

Wu Shuo, Qin Guangpeng, Cao Jing

机构信息

College of Resource, Shandong University of Science and Technology, Tai'an 271000, China.

National Engineering Laboratory for Coalmine Backfilling Mining, Shandong University of Science and Technology, Tai'an 271000, China.

出版信息

Materials (Basel). 2022 Jun 15;15(12):4257. doi: 10.3390/ma15124257.

Abstract

When a temporary support is used to control new surrounding rock in a deep mining roadway, the new surrounding rock is supported by the working resistance of the temporary support. In this study, the influence of deep well boring roadway deformation and rock failure characteristics under different surrounding pressure was investigated. In this paper, for each confining pressure, we experimentally identified the stress-strain, strength, and acoustic emission characteristics of the rocks. The results show that: the surrounding pressure has a significant effect on the damage deformation characteristics of the rock, and the change of the surrounding pressure directly affects the strength, damage form and elastic modulus of the rock; the strength limit of the rock increases with the surrounding pressure, and the damage form of the rock gradually changes to ductile damage with increase of the surrounding pressure; the elastic modulus of the rock increases non-linearly with the increase of the surrounding pressure. The acoustic emission signal of a rock can be divided into three stages: calm, sudden increase, and destruction. The acoustic emission ringing count rate increases suddenly and reaches a peak before the main fracture. Therefore, a sudden increase in the acoustic emission value can be considered a precursor to rock destruction.

摘要

当在深部开采巷道中使用临时支护来控制新的围岩时,新的围岩由临时支护的工作阻力来支撑。在本研究中,研究了不同围压下深井掘进巷道变形及岩石破坏特征的影响。本文针对每个围压,通过实验确定了岩石的应力应变、强度和声发射特征。结果表明:围压对岩石的损伤变形特征有显著影响,围压的变化直接影响岩石的强度、破坏形式和弹性模量;岩石的强度极限随围压增加而增大,岩石的破坏形式随围压增加逐渐转变为延性破坏;岩石的弹性模量随围压增加呈非线性增大。岩石的声发射信号可分为平静、突然增加和破坏三个阶段。声发射振铃计数率在主断裂前突然增加并达到峰值。因此,声发射值的突然增加可被视为岩石破坏的前兆。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/181c/9227143/96133f8b40ea/materials-15-04257-g001.jpg

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