Study on the distribution pattern of particle re-crushing in the coal and rock mass crushing process under pressure.

In order to investigate the compaction and re-crushing characteristics of crushed coal gangue with different gradation, the compaction fractal test was carried out for crushed coal gangue with different Talbol power index n. The compaction deformation parameters such as displacement, stress-strain w...

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Main Authors: Shuang Song, Shugang Li, Tianjun Zhang, Hongyu Pan, Nan Liu, Lei Zhang
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2022-01-01
Series:PLoS ONE
Online Access:https://doi.org/10.1371/journal.pone.0262235
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author Shuang Song
Shugang Li
Tianjun Zhang
Hongyu Pan
Nan Liu
Lei Zhang
author_facet Shuang Song
Shugang Li
Tianjun Zhang
Hongyu Pan
Nan Liu
Lei Zhang
author_sort Shuang Song
collection DOAJ
description In order to investigate the compaction and re-crushing characteristics of crushed coal gangue with different gradation, the compaction fractal test was carried out for crushed coal gangue with different Talbol power index n. The compaction deformation parameters such as displacement, stress-strain were analyzed according to the test results. And according to the test results, the compaction deformation relationship of the lateral limit crushed coal rock body considering the gradation is obtained. The test results show that: the crushing of coal rock particles exists in almost the whole compaction process of the crushed coal rock body, and the crushing of coal rock particles has a non-negligible influence on the deformation of the whole crushed rock body; the structural stability of large-size coal rock particles is not as good as that of small-size coal rock particles, and the large-size coal rock is more likely to be crushed under the same stress conditions; the distribution coefficient r of the crushed coal rock body decreases with the increase of axial stress; and before the Before the axial stress reaches 8 MPa, the distribution coefficient r of crushed rock samples tends to increase with n in general, and after reaching 8 MPa and later, the distribution coefficient r of crushed rock samples tends to decrease with n in general; the difference value of particle crushing increases with the increase of axial stress, and the weight value of particle crushing decreases with the increase of axial stress, and the changes of both are non-linear; according to the stress recovery in the compaction process of crushed coal rock body The compaction deformation model of the crushed coal rock body is constructed according to the crushing characteristics of coal rock particles in the stage of compaction, which effectively combines its fine action mechanism with macroscopic physical phenomena in a simple form and has certain practical engineering significance.
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spelling doaj.art-c2fd9b9283c74de498fd116c380e071f2022-12-21T19:32:42ZengPublic Library of Science (PLoS)PLoS ONE1932-62032022-01-01171e026223510.1371/journal.pone.0262235Study on the distribution pattern of particle re-crushing in the coal and rock mass crushing process under pressure.Shuang SongShugang LiTianjun ZhangHongyu PanNan LiuLei ZhangIn order to investigate the compaction and re-crushing characteristics of crushed coal gangue with different gradation, the compaction fractal test was carried out for crushed coal gangue with different Talbol power index n. The compaction deformation parameters such as displacement, stress-strain were analyzed according to the test results. And according to the test results, the compaction deformation relationship of the lateral limit crushed coal rock body considering the gradation is obtained. The test results show that: the crushing of coal rock particles exists in almost the whole compaction process of the crushed coal rock body, and the crushing of coal rock particles has a non-negligible influence on the deformation of the whole crushed rock body; the structural stability of large-size coal rock particles is not as good as that of small-size coal rock particles, and the large-size coal rock is more likely to be crushed under the same stress conditions; the distribution coefficient r of the crushed coal rock body decreases with the increase of axial stress; and before the Before the axial stress reaches 8 MPa, the distribution coefficient r of crushed rock samples tends to increase with n in general, and after reaching 8 MPa and later, the distribution coefficient r of crushed rock samples tends to decrease with n in general; the difference value of particle crushing increases with the increase of axial stress, and the weight value of particle crushing decreases with the increase of axial stress, and the changes of both are non-linear; according to the stress recovery in the compaction process of crushed coal rock body The compaction deformation model of the crushed coal rock body is constructed according to the crushing characteristics of coal rock particles in the stage of compaction, which effectively combines its fine action mechanism with macroscopic physical phenomena in a simple form and has certain practical engineering significance.https://doi.org/10.1371/journal.pone.0262235
spellingShingle Shuang Song
Shugang Li
Tianjun Zhang
Hongyu Pan
Nan Liu
Lei Zhang
Study on the distribution pattern of particle re-crushing in the coal and rock mass crushing process under pressure.
PLoS ONE
title Study on the distribution pattern of particle re-crushing in the coal and rock mass crushing process under pressure.
title_full Study on the distribution pattern of particle re-crushing in the coal and rock mass crushing process under pressure.
title_fullStr Study on the distribution pattern of particle re-crushing in the coal and rock mass crushing process under pressure.
title_full_unstemmed Study on the distribution pattern of particle re-crushing in the coal and rock mass crushing process under pressure.
title_short Study on the distribution pattern of particle re-crushing in the coal and rock mass crushing process under pressure.
title_sort study on the distribution pattern of particle re crushing in the coal and rock mass crushing process under pressure
url https://doi.org/10.1371/journal.pone.0262235
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