Modelling the compaction behaviour of powders with ABAQUS

碩士 === 國立中央大學 === 土木工程研究所 === 94 ===   Many nations take advantage of uniaxial compaction to produce buffer materials. This research aims to discuss the mechanical behavior of powders in compaction with numerical method.   The buffer material blocks usually have three shapes, inculding disk, fan, an...

Full description

Bibliographic Details
Main Authors: Shao-Yuan Lyu, 呂紹垣
Other Authors: Po-Lin Wu
Format: Others
Language:zh-TW
Published: 2006
Online Access:http://ndltd.ncl.edu.tw/handle/veav7h
id ndltd-TW-094NCU05015099
record_format oai_dc
spelling ndltd-TW-094NCU050150992019-05-15T20:21:54Z http://ndltd.ncl.edu.tw/handle/veav7h Modelling the compaction behaviour of powders with ABAQUS 以ABAQUS模擬粉體之壓實行為 Shao-Yuan Lyu 呂紹垣 碩士 國立中央大學 土木工程研究所 94   Many nations take advantage of uniaxial compaction to produce buffer materials. This research aims to discuss the mechanical behavior of powders in compaction with numerical method.   The buffer material blocks usually have three shapes, inculding disk, fan, and ring. With rational consideration and appropriate material parameters in finite elements analysis(ABAQUS), this research attempts to distinguish the diversity among these buffer material blocks. Drucker-Prager/Cap Model was chosen as the yield surface of the medium, which represents the failure and yield behaviors.   In addition, as the buffer material blocks in the process of compaction, it will produce wall friction between the block and the die. The relationship between compaction stress and density cannot reveal the characteristics of the powders in compaction. It’s necessary to find out the friction-free curve that without limited in the experimental conditions. This research use zero as the coefficient of friction and average integral method to get friction-free curve, and make these results to compare with the former researches in order to verify the feasibility of numerical analysis. Po-Lin Wu Yong-Ming Tien 吳柏林 田永銘 2006 學位論文 ; thesis 128 zh-TW
collection NDLTD
language zh-TW
format Others
sources NDLTD
description 碩士 === 國立中央大學 === 土木工程研究所 === 94 ===   Many nations take advantage of uniaxial compaction to produce buffer materials. This research aims to discuss the mechanical behavior of powders in compaction with numerical method.   The buffer material blocks usually have three shapes, inculding disk, fan, and ring. With rational consideration and appropriate material parameters in finite elements analysis(ABAQUS), this research attempts to distinguish the diversity among these buffer material blocks. Drucker-Prager/Cap Model was chosen as the yield surface of the medium, which represents the failure and yield behaviors.   In addition, as the buffer material blocks in the process of compaction, it will produce wall friction between the block and the die. The relationship between compaction stress and density cannot reveal the characteristics of the powders in compaction. It’s necessary to find out the friction-free curve that without limited in the experimental conditions. This research use zero as the coefficient of friction and average integral method to get friction-free curve, and make these results to compare with the former researches in order to verify the feasibility of numerical analysis.
author2 Po-Lin Wu
author_facet Po-Lin Wu
Shao-Yuan Lyu
呂紹垣
author Shao-Yuan Lyu
呂紹垣
spellingShingle Shao-Yuan Lyu
呂紹垣
Modelling the compaction behaviour of powders with ABAQUS
author_sort Shao-Yuan Lyu
title Modelling the compaction behaviour of powders with ABAQUS
title_short Modelling the compaction behaviour of powders with ABAQUS
title_full Modelling the compaction behaviour of powders with ABAQUS
title_fullStr Modelling the compaction behaviour of powders with ABAQUS
title_full_unstemmed Modelling the compaction behaviour of powders with ABAQUS
title_sort modelling the compaction behaviour of powders with abaqus
publishDate 2006
url http://ndltd.ncl.edu.tw/handle/veav7h
work_keys_str_mv AT shaoyuanlyu modellingthecompactionbehaviourofpowderswithabaqus
AT lǚshàoyuán modellingthecompactionbehaviourofpowderswithabaqus
AT shaoyuanlyu yǐabaqusmónǐfěntǐzhīyāshíxíngwèi
AT lǚshàoyuán yǐabaqusmónǐfěntǐzhīyāshíxíngwèi
_version_ 1719098035261145088