The Impact Behavior between Coal Gangue Particles and the Tail Beam Based on Rock Failure

In top coal caving mining, common impact occurs between coal gangue particles and tail beam. Little attention has been paid to the effects of coal gangue particles failure on impact force and tail beam response theoretically, numerically, and experimentally. This paper aims to reveal the influence o...

Full description

Saved in:
Bibliographic Details
Main Authors: Zhengyuan Xin, Qingliang Zeng, Yang Yang
Format: Article
Language:English
Published: Wiley 2021-01-01
Series:Shock and Vibration
Online Access:http://dx.doi.org/10.1155/2021/5829239
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1832565665867759616
author Zhengyuan Xin
Qingliang Zeng
Yang Yang
author_facet Zhengyuan Xin
Qingliang Zeng
Yang Yang
author_sort Zhengyuan Xin
collection DOAJ
description In top coal caving mining, common impact occurs between coal gangue particles and tail beam. Little attention has been paid to the effects of coal gangue particles failure on impact force and tail beam response theoretically, numerically, and experimentally. This paper aims to reveal the influence of coal gangue particles failure on the impact effect of tail beam. First, this paper incorporates the theory of rock failure and energy consumption to assess the impact process of coal gangue particles on the tail beam. A new model to simulate the actual failure conditions of rock particles was developed: the brittle damage-fracture particle model. By comparing damage phenomena and simulation data, the brittle damage-fracture particle model was proved to be correct. Based on this model, a dynamic simulation of brittle coal gangue particles impacting the tail beam was conducted. Then, the dynamic responses of the particles and tail beam were analyzed. The results show that particle failure significantly affects the impact force and dynamic response of the tail beam. The impact effects of coal and gangue particles on the tail beam and their failure energy consumption also differed significantly. This paper stresses the importance of coal gangue particle failure conditions for research on top coal caving mining. Theoretical support is provided for the research of coal gangue identification technology based on the tail beam vibration signal.
format Article
id doaj-art-a8be009afccc404d84bc7a25edc788da
institution Kabale University
issn 1875-9203
language English
publishDate 2021-01-01
publisher Wiley
record_format Article
series Shock and Vibration
spelling doaj-art-a8be009afccc404d84bc7a25edc788da2025-02-03T01:07:06ZengWileyShock and Vibration1875-92032021-01-01202110.1155/2021/5829239The Impact Behavior between Coal Gangue Particles and the Tail Beam Based on Rock FailureZhengyuan Xin0Qingliang Zeng1Yang Yang2College of Mechanical and Electronic EngineeringCollege of Mechanical and Electronic EngineeringCollege of Mechanical and Electronic EngineeringIn top coal caving mining, common impact occurs between coal gangue particles and tail beam. Little attention has been paid to the effects of coal gangue particles failure on impact force and tail beam response theoretically, numerically, and experimentally. This paper aims to reveal the influence of coal gangue particles failure on the impact effect of tail beam. First, this paper incorporates the theory of rock failure and energy consumption to assess the impact process of coal gangue particles on the tail beam. A new model to simulate the actual failure conditions of rock particles was developed: the brittle damage-fracture particle model. By comparing damage phenomena and simulation data, the brittle damage-fracture particle model was proved to be correct. Based on this model, a dynamic simulation of brittle coal gangue particles impacting the tail beam was conducted. Then, the dynamic responses of the particles and tail beam were analyzed. The results show that particle failure significantly affects the impact force and dynamic response of the tail beam. The impact effects of coal and gangue particles on the tail beam and their failure energy consumption also differed significantly. This paper stresses the importance of coal gangue particle failure conditions for research on top coal caving mining. Theoretical support is provided for the research of coal gangue identification technology based on the tail beam vibration signal.http://dx.doi.org/10.1155/2021/5829239
spellingShingle Zhengyuan Xin
Qingliang Zeng
Yang Yang
The Impact Behavior between Coal Gangue Particles and the Tail Beam Based on Rock Failure
Shock and Vibration
title The Impact Behavior between Coal Gangue Particles and the Tail Beam Based on Rock Failure
title_full The Impact Behavior between Coal Gangue Particles and the Tail Beam Based on Rock Failure
title_fullStr The Impact Behavior between Coal Gangue Particles and the Tail Beam Based on Rock Failure
title_full_unstemmed The Impact Behavior between Coal Gangue Particles and the Tail Beam Based on Rock Failure
title_short The Impact Behavior between Coal Gangue Particles and the Tail Beam Based on Rock Failure
title_sort impact behavior between coal gangue particles and the tail beam based on rock failure
url http://dx.doi.org/10.1155/2021/5829239
work_keys_str_mv AT zhengyuanxin theimpactbehaviorbetweencoalgangueparticlesandthetailbeambasedonrockfailure
AT qingliangzeng theimpactbehaviorbetweencoalgangueparticlesandthetailbeambasedonrockfailure
AT yangyang theimpactbehaviorbetweencoalgangueparticlesandthetailbeambasedonrockfailure
AT zhengyuanxin impactbehaviorbetweencoalgangueparticlesandthetailbeambasedonrockfailure
AT qingliangzeng impactbehaviorbetweencoalgangueparticlesandthetailbeambasedonrockfailure
AT yangyang impactbehaviorbetweencoalgangueparticlesandthetailbeambasedonrockfailure