Influence of Fissure Number on the Mechanical Properties of Layer-Crack Rock Models under Uniaxial Compression

Many case studies have revealed that rock bursts generally occur in the high stress concentration area where layer-crack structures often exist, especially for brittle coal or rock masses. Understanding the mechanical properties of layer-crack rock models is beneficial for rational design and stabil...

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Main Authors: Yun-liang Tan, Wei-yao Guo, Tong-bin Zhao, Feng-hai Yu, Bin Huang, Dong-mei Huang
Format: Article
Language:English
Published: Hindawi Limited 2018-01-01
Series:Advances in Civil Engineering
Online Access:http://dx.doi.org/10.1155/2018/7179831
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spelling doaj-63c2ecf6b2ce432b96258685b199219b2020-11-24T22:39:48ZengHindawi LimitedAdvances in Civil Engineering1687-80861687-80942018-01-01201810.1155/2018/71798317179831Influence of Fissure Number on the Mechanical Properties of Layer-Crack Rock Models under Uniaxial CompressionYun-liang Tan0Wei-yao Guo1Tong-bin Zhao2Feng-hai Yu3Bin Huang4Dong-mei Huang5State Key Laboratory of Mining Disaster Prevention and Control Co-founded by Shandong Province and the Ministry of Science and Technology, Shandong University of Science and Technology, Qingdao 266590, ChinaState Key Laboratory of Mining Disaster Prevention and Control Co-founded by Shandong Province and the Ministry of Science and Technology, Shandong University of Science and Technology, Qingdao 266590, ChinaState Key Laboratory of Mining Disaster Prevention and Control Co-founded by Shandong Province and the Ministry of Science and Technology, Shandong University of Science and Technology, Qingdao 266590, ChinaState Key Laboratory of Mining Disaster Prevention and Control Co-founded by Shandong Province and the Ministry of Science and Technology, Shandong University of Science and Technology, Qingdao 266590, ChinaState Key Laboratory of Mining Disaster Prevention and Control Co-founded by Shandong Province and the Ministry of Science and Technology, Shandong University of Science and Technology, Qingdao 266590, ChinaState Key Laboratory of Mining Disaster Prevention and Control Co-founded by Shandong Province and the Ministry of Science and Technology, Shandong University of Science and Technology, Qingdao 266590, ChinaMany case studies have revealed that rock bursts generally occur in the high stress concentration area where layer-crack structures often exist, especially for brittle coal or rock masses. Understanding the mechanical properties of layer-crack rock models is beneficial for rational design and stability analysis of rock engineering project and rock burst prevention. This study experimentally investigated the influence of fissure number on the mechanical properties of layer-crack rock models through uniaxial compression tests. The digital speckle correlation method (DSCM) and acoustic emission (AE) techniques were applied to record and analyze the information of deformation and failure processes. Test results show the following: the bearing capacity of layer-crack specimen decreases compared with intact specimen, but their failure modes are similar, which are the splitting failure accompanied with local shear failure; the nonuniform deformation phenomenon begins to appear at the elastic deformation stage for layer-crack specimens; the AE behavior of intact specimens consists of three stages, that is, active stage, quiet stage, and major active stage, but for layer-crack specimens, it is characteristic by three peaks without quiet stage. In addition, as the fissure number of layer-crack specimens increases, the bearing capacity of specimens decreases, the appearing time of nonuniform deformation phenomenon in the specimen surface decreases, the AE events are denser and denser in each peak stage, and the risk of dynamic instability of layer-crack structure increases. At last, the failure mechanism of layer-crack structure and the related mitigation advices were discussed based on the test results. In general, the novelty is that this paper focuses on the failure mechanism of layer-crack structure directly.http://dx.doi.org/10.1155/2018/7179831
collection DOAJ
language English
format Article
sources DOAJ
author Yun-liang Tan
Wei-yao Guo
Tong-bin Zhao
Feng-hai Yu
Bin Huang
Dong-mei Huang
spellingShingle Yun-liang Tan
Wei-yao Guo
Tong-bin Zhao
Feng-hai Yu
Bin Huang
Dong-mei Huang
Influence of Fissure Number on the Mechanical Properties of Layer-Crack Rock Models under Uniaxial Compression
Advances in Civil Engineering
author_facet Yun-liang Tan
Wei-yao Guo
Tong-bin Zhao
Feng-hai Yu
Bin Huang
Dong-mei Huang
author_sort Yun-liang Tan
title Influence of Fissure Number on the Mechanical Properties of Layer-Crack Rock Models under Uniaxial Compression
title_short Influence of Fissure Number on the Mechanical Properties of Layer-Crack Rock Models under Uniaxial Compression
title_full Influence of Fissure Number on the Mechanical Properties of Layer-Crack Rock Models under Uniaxial Compression
title_fullStr Influence of Fissure Number on the Mechanical Properties of Layer-Crack Rock Models under Uniaxial Compression
title_full_unstemmed Influence of Fissure Number on the Mechanical Properties of Layer-Crack Rock Models under Uniaxial Compression
title_sort influence of fissure number on the mechanical properties of layer-crack rock models under uniaxial compression
publisher Hindawi Limited
series Advances in Civil Engineering
issn 1687-8086
1687-8094
publishDate 2018-01-01
description Many case studies have revealed that rock bursts generally occur in the high stress concentration area where layer-crack structures often exist, especially for brittle coal or rock masses. Understanding the mechanical properties of layer-crack rock models is beneficial for rational design and stability analysis of rock engineering project and rock burst prevention. This study experimentally investigated the influence of fissure number on the mechanical properties of layer-crack rock models through uniaxial compression tests. The digital speckle correlation method (DSCM) and acoustic emission (AE) techniques were applied to record and analyze the information of deformation and failure processes. Test results show the following: the bearing capacity of layer-crack specimen decreases compared with intact specimen, but their failure modes are similar, which are the splitting failure accompanied with local shear failure; the nonuniform deformation phenomenon begins to appear at the elastic deformation stage for layer-crack specimens; the AE behavior of intact specimens consists of three stages, that is, active stage, quiet stage, and major active stage, but for layer-crack specimens, it is characteristic by three peaks without quiet stage. In addition, as the fissure number of layer-crack specimens increases, the bearing capacity of specimens decreases, the appearing time of nonuniform deformation phenomenon in the specimen surface decreases, the AE events are denser and denser in each peak stage, and the risk of dynamic instability of layer-crack structure increases. At last, the failure mechanism of layer-crack structure and the related mitigation advices were discussed based on the test results. In general, the novelty is that this paper focuses on the failure mechanism of layer-crack structure directly.
url http://dx.doi.org/10.1155/2018/7179831
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