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考虑中间主应力影响的花岗岩破坏特性试验与模拟研究

Experimental and simulation investigation on failure characteristic of granite considering the effect of intermediate principal stresses.

作者信息

Sun Feiyue, Zhang Xiaobing, Guo Jiaqi, Liu Xiliang

机构信息

School of Emergency Management, Henan Polytechnic University, Jiaozuo, 454003, China.

School of Civil Engineering, Henan Polytechnic University, Jiaozuo, 454003, China.

出版信息

Heliyon. 2024 Oct 1;10(19):e38753. doi: 10.1016/j.heliyon.2024.e38753. eCollection 2024 Oct 15.

Abstract

This study performs one-sided lateral unloading- and three-way five-sided force-vertical continuous loading experiments with different intermediate principal stresses (IPS) to investigate the effect of the IPS on deformation, strength, failure modes, and acoustic emission (AE) signals of rock and to elucidate the role of the IPS on the rock strength. The inoculation, occurrence, development, and failure of rockburst as well as the AE evolution characteristics are discussed. The findings indicate that the rockburst ejection includes localized ejections of particles, spalling of rocks into plates, shearing of rocks into fragments, and ejections of rock fragments. The formation mechanism of rockburst involves three progressive processes, i.e., tensile, shear, and tensile-shear composite destruction. The peak stress of sample increases with increasing IPS, while the deformation modulus decreases exponentially as the unloading progresses. The sample properties under true triaxial unloading condition with different IPS can be described by the Mogi-Coulomb criterion. The evolution curves of ringing impact ratio ( ) and cumulative absolute energy can be divided into four stages. The crystal-scale refined model that considers mineral components efficiently simulate the rockburst. The simulated stress-strain (SS) curves of samples are in good agreement with those obtained from laboratory tests.

摘要

本研究进行了不同中间主应力(IPS)下的单侧侧向卸载和三向五面力垂直连续加载试验,以研究IPS对岩石变形、强度、破坏模式和声发射(AE)信号的影响,并阐明IPS在岩石强度中的作用。讨论了岩爆的孕育、发生、发展和破坏以及AE演化特征。研究结果表明,岩爆弹射包括颗粒的局部弹射、岩石成板片状剥落、岩石成碎片状剪切以及岩石碎片弹射。岩爆的形成机制涉及拉伸、剪切和拉剪复合破坏三个递进过程。试样的峰值应力随IPS的增加而增大,而变形模量随卸载的进行呈指数下降。不同IPS下真三轴卸载条件下的试样特性可用莫吉-库仑准则描述。振铃冲击比( )和累积绝对能量的演化曲线可分为四个阶段。考虑矿物成分的晶体尺度细化模型能有效模拟岩爆。试样的模拟应力-应变(SS)曲线与实验室试验结果吻合良好。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5916/11490773/1c3df2a41e0f/gr1.jpg

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