Influence mechanism of force chain on jamming behavior in powder compaction based on 3D discrete element model

To simulate the uniaxial powder compacting process, the 3D particle accumulation was generated by 3D discrete element method technology based on the experimental grading ratio. The evolution law and topological properties of the force chains were investigated during the powder compacting process, th...

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Main Authors: ZHANG Wei, XIAO Weijian, YUAN Chuanniu, ZHANG Ning, CHEN Rongxin
Format: Article
Language:zho
Published: Editorial Office of Powder Metallurgy Technology 2024-08-01
Series:Fenmo yejin jishu
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Online Access:https://pmt.ustb.edu.cn/article/doi/10.19591/j.cnki.cn11-1974/tf.2022080005
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author ZHANG Wei
XIAO Weijian
YUAN Chuanniu
ZHANG Ning
CHEN Rongxin
author_facet ZHANG Wei
XIAO Weijian
YUAN Chuanniu
ZHANG Ning
CHEN Rongxin
author_sort ZHANG Wei
collection DOAJ
description To simulate the uniaxial powder compacting process, the 3D particle accumulation was generated by 3D discrete element method technology based on the experimental grading ratio. The evolution law and topological properties of the force chains were investigated during the powder compacting process, the jamming phenomenon was further studied using the velocity and coordination number of particles, and the correlation mechanism between the force chain and jamming behavior was discussed. The results show that, as the compression strength of the upper die gradually increases from 0 to 60 MPa, the number proportion of force chain particles rapidly increases to more than 40.0%, while the number proportion of high stress particles is stable above 12.5%. When the pressure exceeds 60 MPa, the force chains bend and form ring structure, causing the jamming phenomenon. As a result, the jammed point is set to 60 MPa. The jamming phenomenon also effects the powder densification. The axial velocity of the powder particles in the upper area is faster and the rangeability is larger than that of the powder particles in the lower area during the powder compaction process. However, when the compaction process is completed, the densification of the powder particles in the upper area is higher than that of the powder particles in the lower area.
format Article
id doaj-art-1dc49ef3fc3342e7bfccc6779f15470c
institution Kabale University
issn 1001-3784
language zho
publishDate 2024-08-01
publisher Editorial Office of Powder Metallurgy Technology
record_format Article
series Fenmo yejin jishu
spelling doaj-art-1dc49ef3fc3342e7bfccc6779f15470c2024-11-13T05:47:14ZzhoEditorial Office of Powder Metallurgy TechnologyFenmo yejin jishu1001-37842024-08-01424403410, 41710.19591/j.cnki.cn11-1974/tf.2022080005Influence mechanism of force chain on jamming behavior in powder compaction based on 3D discrete element modelZHANG WeiXIAO WeijianYUAN ChuanniuZHANG NingCHEN RongxinTo simulate the uniaxial powder compacting process, the 3D particle accumulation was generated by 3D discrete element method technology based on the experimental grading ratio. The evolution law and topological properties of the force chains were investigated during the powder compacting process, the jamming phenomenon was further studied using the velocity and coordination number of particles, and the correlation mechanism between the force chain and jamming behavior was discussed. The results show that, as the compression strength of the upper die gradually increases from 0 to 60 MPa, the number proportion of force chain particles rapidly increases to more than 40.0%, while the number proportion of high stress particles is stable above 12.5%. When the pressure exceeds 60 MPa, the force chains bend and form ring structure, causing the jamming phenomenon. As a result, the jammed point is set to 60 MPa. The jamming phenomenon also effects the powder densification. The axial velocity of the powder particles in the upper area is faster and the rangeability is larger than that of the powder particles in the lower area during the powder compaction process. However, when the compaction process is completed, the densification of the powder particles in the upper area is higher than that of the powder particles in the lower area.https://pmt.ustb.edu.cn/article/doi/10.19591/j.cnki.cn11-1974/tf.2022080005powder compactiongranular matterdiscrete element modeljammingforce chain
spellingShingle ZHANG Wei
XIAO Weijian
YUAN Chuanniu
ZHANG Ning
CHEN Rongxin
Influence mechanism of force chain on jamming behavior in powder compaction based on 3D discrete element model
Fenmo yejin jishu
powder compaction
granular matter
discrete element model
jamming
force chain
title Influence mechanism of force chain on jamming behavior in powder compaction based on 3D discrete element model
title_full Influence mechanism of force chain on jamming behavior in powder compaction based on 3D discrete element model
title_fullStr Influence mechanism of force chain on jamming behavior in powder compaction based on 3D discrete element model
title_full_unstemmed Influence mechanism of force chain on jamming behavior in powder compaction based on 3D discrete element model
title_short Influence mechanism of force chain on jamming behavior in powder compaction based on 3D discrete element model
title_sort influence mechanism of force chain on jamming behavior in powder compaction based on 3d discrete element model
topic powder compaction
granular matter
discrete element model
jamming
force chain
url https://pmt.ustb.edu.cn/article/doi/10.19591/j.cnki.cn11-1974/tf.2022080005
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