Structure and Microscopic Wear Analysis of Lining Material Based on EDEM

The microscopic influence of sliding distance and load on the wear of cone crusher liner is studied. The main factors that affect the hardness of the liner and the material are clearly put forward, and the hardness of the liner is verified according to the national standard to ensure the correctness...

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Main Authors: Wang Zhongsheng, Wang Rujie, Fei Qiou, Li Jianguo, Tang Jiachen, Shi Boqiang
Format: Article
Language:English
Published: EDP Sciences 2017-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201712803001
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author Wang Zhongsheng
Wang Rujie
Fei Qiou
Li Jianguo
Tang Jiachen
Shi Boqiang
author_facet Wang Zhongsheng
Wang Rujie
Fei Qiou
Li Jianguo
Tang Jiachen
Shi Boqiang
author_sort Wang Zhongsheng
collection DOAJ
description The microscopic influence of sliding distance and load on the wear of cone crusher liner is studied. The main factors that affect the hardness of the liner and the material are clearly put forward, and the hardness of the liner is verified according to the national standard to ensure the correctness of the lining and the ore material. Simulation experiments were carried out with EDEM. When the material was certain, the positive pressure and sliding distance between the ore and liner were changed, and the micro wear of the liner was quantitatively calculated by the number of bond keys of the lining plate. The results show that when the liner moves at the same distance, the pressure is greater and the lining plate is seriously worn. When the lining plate is subjected to the same pressure, the moving distance increases, and the lining plate is seriously worn. This method has some reference value for cavity design of new crusher and other material wear research.
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spelling doaj.art-e7a2053cb2674cfba6ce91c117faeed32022-12-21T18:12:15ZengEDP SciencesMATEC Web of Conferences2261-236X2017-01-011280300110.1051/matecconf/201712803001matecconf_eitce2017_03001Structure and Microscopic Wear Analysis of Lining Material Based on EDEMWang ZhongshengWang RujieFei QiouLi JianguoTang JiachenShi BoqiangThe microscopic influence of sliding distance and load on the wear of cone crusher liner is studied. The main factors that affect the hardness of the liner and the material are clearly put forward, and the hardness of the liner is verified according to the national standard to ensure the correctness of the lining and the ore material. Simulation experiments were carried out with EDEM. When the material was certain, the positive pressure and sliding distance between the ore and liner were changed, and the micro wear of the liner was quantitatively calculated by the number of bond keys of the lining plate. The results show that when the liner moves at the same distance, the pressure is greater and the lining plate is seriously worn. When the lining plate is subjected to the same pressure, the moving distance increases, and the lining plate is seriously worn. This method has some reference value for cavity design of new crusher and other material wear research.https://doi.org/10.1051/matecconf/201712803001
spellingShingle Wang Zhongsheng
Wang Rujie
Fei Qiou
Li Jianguo
Tang Jiachen
Shi Boqiang
Structure and Microscopic Wear Analysis of Lining Material Based on EDEM
MATEC Web of Conferences
title Structure and Microscopic Wear Analysis of Lining Material Based on EDEM
title_full Structure and Microscopic Wear Analysis of Lining Material Based on EDEM
title_fullStr Structure and Microscopic Wear Analysis of Lining Material Based on EDEM
title_full_unstemmed Structure and Microscopic Wear Analysis of Lining Material Based on EDEM
title_short Structure and Microscopic Wear Analysis of Lining Material Based on EDEM
title_sort structure and microscopic wear analysis of lining material based on edem
url https://doi.org/10.1051/matecconf/201712803001
work_keys_str_mv AT wangzhongsheng structureandmicroscopicwearanalysisofliningmaterialbasedonedem
AT wangrujie structureandmicroscopicwearanalysisofliningmaterialbasedonedem
AT feiqiou structureandmicroscopicwearanalysisofliningmaterialbasedonedem
AT lijianguo structureandmicroscopicwearanalysisofliningmaterialbasedonedem
AT tangjiachen structureandmicroscopicwearanalysisofliningmaterialbasedonedem
AT shiboqiang structureandmicroscopicwearanalysisofliningmaterialbasedonedem