Analysis of the Protection Performance of Face Guard for Large Mining Height Hydraulic Support

With the increase of mining height, the problem of coal wall spalling in the working face gradually worsens. Hydraulic support and its face guard structure are the key pieces of equipment to restrain the coal wall spalling. However, at present, the hydraulic jack is mostly considered as rigid in the...

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Main Authors: Lirong Wan, Shuai Zhang, Zhaosheng Meng, Yunyue Xie
Format: Article
Language:English
Published: Hindawi Limited 2021-01-01
Series:Shock and Vibration
Online Access:http://dx.doi.org/10.1155/2021/6631017
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spelling doaj-b9cb116216384513b42860dbf59bd2e42021-03-22T00:04:38ZengHindawi LimitedShock and Vibration1875-92032021-01-01202110.1155/2021/6631017Analysis of the Protection Performance of Face Guard for Large Mining Height Hydraulic SupportLirong Wan0Shuai Zhang1Zhaosheng Meng2Yunyue Xie3College of Mechanical and Electronic EngineeringCollege of Mechanical and Electronic EngineeringState Key Laboratory of Mining Disaster Prevention and Control Cofounded by Shandong Province and the Ministry of Science and TechnologyCollege of Civil Engineering and ArchitectureWith the increase of mining height, the problem of coal wall spalling in the working face gradually worsens. Hydraulic support and its face guard structure are the key pieces of equipment to restrain the coal wall spalling. However, at present, the hydraulic jack is mostly considered as rigid in the analysis of protection mechanism. This simplification cannot effectively reflect the true bearing state of the face guard. In order to improve the accuracy of analysis, this study considers the face guard jack as a flexible spring and establishes a rigid-flexible coupling analysis model of the face guard mechanism. First, based upon the multibody dynamics software ADAMS®, the multibody numerical model of the face guard of the hydraulic support was established. The influence of the two kinds of structures on the coal wall disturbance was analyzed and compared. Then, the rigid model was meshed. The hydraulic jacks were equivalent to the spring system, and the rigid-flexible coupling model was established. Based upon the application load on different positions of the rigid-flexible model, the load-bearing characteristics and hinge point force transfer characteristics of the two face guards were analyzed. The results show that the support efficiency of the integral type was higher than that of the split type. In the vertical support attitude, the dynamic disturbance of the coal wall, produced by the two kinds of face guards, was small. The four-bar linkage effectively improved the ultimate bearing capacity of the integral face guard. The results provide theoretical support for the design and optimization of the face guard.http://dx.doi.org/10.1155/2021/6631017
collection DOAJ
language English
format Article
sources DOAJ
author Lirong Wan
Shuai Zhang
Zhaosheng Meng
Yunyue Xie
spellingShingle Lirong Wan
Shuai Zhang
Zhaosheng Meng
Yunyue Xie
Analysis of the Protection Performance of Face Guard for Large Mining Height Hydraulic Support
Shock and Vibration
author_facet Lirong Wan
Shuai Zhang
Zhaosheng Meng
Yunyue Xie
author_sort Lirong Wan
title Analysis of the Protection Performance of Face Guard for Large Mining Height Hydraulic Support
title_short Analysis of the Protection Performance of Face Guard for Large Mining Height Hydraulic Support
title_full Analysis of the Protection Performance of Face Guard for Large Mining Height Hydraulic Support
title_fullStr Analysis of the Protection Performance of Face Guard for Large Mining Height Hydraulic Support
title_full_unstemmed Analysis of the Protection Performance of Face Guard for Large Mining Height Hydraulic Support
title_sort analysis of the protection performance of face guard for large mining height hydraulic support
publisher Hindawi Limited
series Shock and Vibration
issn 1875-9203
publishDate 2021-01-01
description With the increase of mining height, the problem of coal wall spalling in the working face gradually worsens. Hydraulic support and its face guard structure are the key pieces of equipment to restrain the coal wall spalling. However, at present, the hydraulic jack is mostly considered as rigid in the analysis of protection mechanism. This simplification cannot effectively reflect the true bearing state of the face guard. In order to improve the accuracy of analysis, this study considers the face guard jack as a flexible spring and establishes a rigid-flexible coupling analysis model of the face guard mechanism. First, based upon the multibody dynamics software ADAMS®, the multibody numerical model of the face guard of the hydraulic support was established. The influence of the two kinds of structures on the coal wall disturbance was analyzed and compared. Then, the rigid model was meshed. The hydraulic jacks were equivalent to the spring system, and the rigid-flexible coupling model was established. Based upon the application load on different positions of the rigid-flexible model, the load-bearing characteristics and hinge point force transfer characteristics of the two face guards were analyzed. The results show that the support efficiency of the integral type was higher than that of the split type. In the vertical support attitude, the dynamic disturbance of the coal wall, produced by the two kinds of face guards, was small. The four-bar linkage effectively improved the ultimate bearing capacity of the integral face guard. The results provide theoretical support for the design and optimization of the face guard.
url http://dx.doi.org/10.1155/2021/6631017
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AT shuaizhang analysisoftheprotectionperformanceoffaceguardforlargeminingheighthydraulicsupport
AT zhaoshengmeng analysisoftheprotectionperformanceoffaceguardforlargeminingheighthydraulicsupport
AT yunyuexie analysisoftheprotectionperformanceoffaceguardforlargeminingheighthydraulicsupport
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