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不同应变率下具有冲击倾向的煤岩能量演化机制研究

Study on the energy evolution mechanism of coal and rock with impact tendency under different strain rates.

作者信息

Zhang Kun, Zhang Yichen, Zhang Sen, Ren Jianxi, Zhang Liang, Zhang Renjie, Cui Yuanquan

机构信息

School of Architecture and Civil Engineering, Xi'an University of Science and Technology, Xi'an, 710054, China.

出版信息

Sci Rep. 2023 Aug 23;13(1):13773. doi: 10.1038/s41598-023-41094-5.

Abstract

To explore the strain rate effect of deformation and failure of impact prone coal rock, uniaxial compression tests and triaxial compression tests with different strain rates were carried out. The mechanical properties and impact tendency of impact-prone coal rock were studied, and the energy evolution law and pre-peak energy self-promotion-inhibition mechanism of impact-prone coal rock were obtained. The results show that with the increase of strain rate, the peak strength of coal rock under uniaxial compression decreases gradually, and the peak strength of coal rock under triaxial compression increases first and then decreases, and the impact tendency of coal rock increases first and then decreases. The energy evolution of coal rock under uniaxial compression is mainly divided into four stages: initial energy damage, energy hardening, energy softening and failure. With the increase of strain rate, the total energy and elasticity at the peak point of coal rock under uniaxial compression decrease gradually, and the total energy, elastic energy and dissipation energy at the peak point under triaxial compression increase first and then decrease. The elastic energy promotion coefficient of impact-prone coal rock is much larger than the inhibition coefficient, and the increase of strain rate will promote the generation of elastic energy inside coal rock. The research results can provide reference for the prevention and early warning of dynamic disasters of coal and rock mass with impact tendency.

摘要

为探究冲击倾向性煤岩变形破坏的应变率效应,开展了不同应变率下的单轴压缩试验和三轴压缩试验。研究了冲击倾向性煤岩的力学特性及冲击倾向性,得到了冲击倾向性煤岩的能量演化规律及峰值前能量自促进-抑制机制。结果表明:随着应变率的增加,单轴压缩下煤岩的峰值强度逐渐降低,三轴压缩下煤岩的峰值强度先增大后减小,煤岩的冲击倾向性先增大后减小。单轴压缩下煤岩的能量演化主要分为初始能量损伤、能量强化、能量弱化和破坏四个阶段。随着应变率的增加,单轴压缩下煤岩峰值点的总能量和弹性能逐渐降低,三轴压缩下峰值点的总能量、弹性能和耗散能先增大后减小。冲击倾向性煤岩的弹性能促进系数远大于抑制系数,应变率的增加会促进煤岩内部弹性能的产生。研究成果可为具有冲击倾向性的煤岩体动力灾害防治及预警提供参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7f74/10447556/bdd30b22ec8b/41598_2023_41094_Fig1_HTML.jpg

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