Experimental study on mechanical response and crack evolution law of coal and sandstone under different stress environments.

IF 2.9 3区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES PLoS ONE Pub Date : 2024-11-25 eCollection Date: 2024-01-01 DOI:10.1371/journal.pone.0313230
Wenbao Shi, Qingzhao Xu, Zhuang Miao, Chao Qi, Jucai Chang, Chuanming Li, Aoyun Yan
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Abstract

In order to study the mechanical response and crack evolution law of different lithologic rock bodies under different stress environments in deep stress mines, based on the deviator stress theory, the actual triaxial disturbance unloading rock test system was used to simulate the stress occurrence environment of the original rock. The mechanical characteristics of different σ2 coal rock masses were studied, and the crack evolution law of coal and sandstone under different stress environments was analyzed. The results show that the increase of σ2 inhibits the deformation in the σ2 direction of coal and sandstone, promotes the expansion and deformation in the σ3 direction, and enhances its peak strength and elastic modulus. The development characteristics of internal cracks in rock mass are directly related to the stress environment, and the increase of σ2 promotes the increase of the proportion of coal RA value, weakens the proportion of sandstone RA value, aggravates the development of coal internal shear cracks, and inhibits the development of internal shear cracks in sandstone. The larger σ2, the greater the initial AE ringing count of coal and sandstone, and the greater the AE cumulative energy when the rock mass is finally damaged. At the same time, due to the self-organizing behavior in the process of crystal failure in sandstone, the cumulative energy curve of sandstone fluctuates in a step-like manner. The ringing count and cumulative energy increase suddenly, which can predict the imminent instability and failure of the rock, and the research results can provide an experimental basis for the sudden instability of deep high-stress roadways.

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煤和砂岩在不同应力环境下的力学响应和裂缝演变规律的实验研究。
为了研究深部应力矿井中不同岩性岩体在不同应力环境下的力学响应和裂缝演化规律,以偏差应力理论为基础,采用实际三轴扰动卸荷岩石试验系统模拟原岩的应力发生环境。研究了不同σ2煤岩体的力学特性,分析了不同应力环境下煤与砂岩的裂缝演化规律。结果表明,σ2的增加抑制了煤和砂岩σ2方向的变形,促进了σ3方向的膨胀变形,提高了其峰值强度和弹性模量。岩体内部裂缝的发育特征与应力环境直接相关,σ2的增大促进煤RA值比例的增大,削弱砂岩RA值比例,加剧煤内部剪切裂缝的发育,抑制砂岩内部剪切裂缝的发育。σ2越大,煤和砂岩的初始AE振铃数越大,岩体最终破坏时的AE累积能量越大。同时,由于砂岩晶体破坏过程中的自组织行为,砂岩的累积能量曲线呈阶梯状波动。振铃次数和累积能量突然增加,可以预测岩石即将失稳和破坏,研究成果可为深层高应力巷道的突然失稳提供实验依据。
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来源期刊
PLoS ONE
PLoS ONE 生物-生物学
CiteScore
6.20
自引率
5.40%
发文量
14242
审稿时长
3.7 months
期刊介绍: PLOS ONE is an international, peer-reviewed, open-access, online publication. PLOS ONE welcomes reports on primary research from any scientific discipline. It provides: * Open-access—freely accessible online, authors retain copyright * Fast publication times * Peer review by expert, practicing researchers * Post-publication tools to indicate quality and impact * Community-based dialogue on articles * Worldwide media coverage
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