Application and Effect of Loading Rates on Coal Sample Failure

In order to evaluate the coal pillar stability in recovery of residual room pillars under different mining rates, this paper studies the influence of loading rate on the mechanical properties of the coal body. The uniaxial compression tests of coal samples in Yangcheng area at different loading rate...

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Main Authors: Genwei Li, Shuaifeng Lu, Sifei Liu, Jing Liu, Peng Shi, Bowen Fan
Format: Article
Language:English
Published: Hindawi Limited 2021-01-01
Series:Shock and Vibration
Online Access:http://dx.doi.org/10.1155/2021/6681082
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spelling doaj-fd50267c344548bda2fbcf9823dc82e72021-03-29T00:08:59ZengHindawi LimitedShock and Vibration1875-92032021-01-01202110.1155/2021/6681082Application and Effect of Loading Rates on Coal Sample FailureGenwei Li0Shuaifeng Lu1Sifei Liu2Jing Liu3Peng Shi4Bowen Fan5College of Energy EngineeringSchool of MinesSchool of MinesDepartment of Mining EngineeringSchool of MinesSchool of MinesIn order to evaluate the coal pillar stability in recovery of residual room pillars under different mining rates, this paper studies the influence of loading rate on the mechanical properties of the coal body. The uniaxial compression tests of coal samples in Yangcheng area at different loading rates were carried out with the MTS815 electrohydraulic servo rock mechanics test system. The stress-strain curves and the evolution characteristics of AE signals were analyzed. At same time, the mechanism of damage and failure of specimens are also discussed. The results show the following. (1) With the increase in loading rate, the ultimate stress and ultimate strain of specimens decrease first and then increase. (2) Loading rate has a significant effect on the stability adjustment of specimens. With the decrease in loading rate, the earlier the stress adjustment is, the larger the adjustment range is, and the failure mode changes from shear failure to tensile failure. (3) In addition, when the loading rate increases, the AE evolves from continuous dense to discrete catastrophe, which indicates that the failure of the sample at a larger loading rate is sudden, which is not conducive to the maintenance of the stability of the coal pillar. (4) Finally, the failure mechanism of the specimen structure under different loading rates is obtained, and the improvement measures for the effect of mining velocity of working face on the stability of coal pillar are put forward. The results reveal the loading rate effect of mechanical properties of coal and provide a reference for controlling the stability of the residual coal pillar.http://dx.doi.org/10.1155/2021/6681082
collection DOAJ
language English
format Article
sources DOAJ
author Genwei Li
Shuaifeng Lu
Sifei Liu
Jing Liu
Peng Shi
Bowen Fan
spellingShingle Genwei Li
Shuaifeng Lu
Sifei Liu
Jing Liu
Peng Shi
Bowen Fan
Application and Effect of Loading Rates on Coal Sample Failure
Shock and Vibration
author_facet Genwei Li
Shuaifeng Lu
Sifei Liu
Jing Liu
Peng Shi
Bowen Fan
author_sort Genwei Li
title Application and Effect of Loading Rates on Coal Sample Failure
title_short Application and Effect of Loading Rates on Coal Sample Failure
title_full Application and Effect of Loading Rates on Coal Sample Failure
title_fullStr Application and Effect of Loading Rates on Coal Sample Failure
title_full_unstemmed Application and Effect of Loading Rates on Coal Sample Failure
title_sort application and effect of loading rates on coal sample failure
publisher Hindawi Limited
series Shock and Vibration
issn 1875-9203
publishDate 2021-01-01
description In order to evaluate the coal pillar stability in recovery of residual room pillars under different mining rates, this paper studies the influence of loading rate on the mechanical properties of the coal body. The uniaxial compression tests of coal samples in Yangcheng area at different loading rates were carried out with the MTS815 electrohydraulic servo rock mechanics test system. The stress-strain curves and the evolution characteristics of AE signals were analyzed. At same time, the mechanism of damage and failure of specimens are also discussed. The results show the following. (1) With the increase in loading rate, the ultimate stress and ultimate strain of specimens decrease first and then increase. (2) Loading rate has a significant effect on the stability adjustment of specimens. With the decrease in loading rate, the earlier the stress adjustment is, the larger the adjustment range is, and the failure mode changes from shear failure to tensile failure. (3) In addition, when the loading rate increases, the AE evolves from continuous dense to discrete catastrophe, which indicates that the failure of the sample at a larger loading rate is sudden, which is not conducive to the maintenance of the stability of the coal pillar. (4) Finally, the failure mechanism of the specimen structure under different loading rates is obtained, and the improvement measures for the effect of mining velocity of working face on the stability of coal pillar are put forward. The results reveal the loading rate effect of mechanical properties of coal and provide a reference for controlling the stability of the residual coal pillar.
url http://dx.doi.org/10.1155/2021/6681082
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