Two dimensional roll forming simulation using plane strain elements with simplified roller contact definition
In the industrial today, roll forming was used for large production run. In the roll forming process, the sheet metal of workpiece was feed into successive pairs or set of roller until the desired cross section profile was achieved. The purpose of this study is to do the simulation of roll forming...
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my.ump.umpir.23242021-06-04T08:45:55Z http://umpir.ump.edu.my/id/eprint/2324/ Two dimensional roll forming simulation using plane strain elements with simplified roller contact definition Muhammad Fikri, Che Manshor TS Manufactures In the industrial today, roll forming was used for large production run. In the roll forming process, the sheet metal of workpiece was feed into successive pairs or set of roller until the desired cross section profile was achieved. The purpose of this study is to do the simulation of roll forming using plane strain element with simplified roller contact definition and also to determine percentage of elastic recovery occur in the roll forming process and design of the roller. This simulation was conducted using ALGOR software which is software for Finite Element Analysis (FEA) to know in deep the relationship between the strain and elastic recovery. This simulation was use five set of roller to shape the sheet metal until it becomes the product. The results of this study show that the strain in the material had give the effect and implication to elastic recovery. From this study also it can help and give the basic idea to designer to control and reduce the elastic recovery in the roll forming process. 2007 Undergraduates Project Papers NonPeerReviewed application/pdf en http://umpir.ump.edu.my/id/eprint/2324/1/MUHAMMAD_FIKRI_BIN_CHE_MANSHOR.PDF Muhammad Fikri, Che Manshor (2007) Two dimensional roll forming simulation using plane strain elements with simplified roller contact definition. Faculty of Mechanical Engineering, Universiti Malaysia Pahang. |
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In the industrial today, roll forming was used for large production run. In the roll forming process, the sheet metal of workpiece was feed into successive pairs or
set of roller until the desired cross section profile was achieved. The purpose of this study is to do the simulation of roll forming using plane strain element with simplified roller contact definition and also to determine percentage of elastic recovery occur in the roll forming process and design of the roller. This simulation was conducted using ALGOR software which is software for Finite Element Analysis (FEA) to know in deep the relationship between the strain and elastic
recovery. This simulation was use five set of roller to shape the sheet metal until it becomes the product. The results of this study show that the strain in the material had give the effect and implication to elastic recovery. From this study also it can help and give the basic idea to designer to control and reduce the elastic recovery in the roll forming process. |
format |
Undergraduates Project Papers |
author |
Muhammad Fikri, Che Manshor |
author_facet |
Muhammad Fikri, Che Manshor |
author_sort |
Muhammad Fikri, Che Manshor |
title |
Two dimensional roll forming simulation using plane strain elements with simplified roller contact definition |
title_short |
Two dimensional roll forming simulation using plane strain elements with simplified roller contact definition |
title_full |
Two dimensional roll forming simulation using plane strain elements with simplified roller contact definition |
title_fullStr |
Two dimensional roll forming simulation using plane strain elements with simplified roller contact definition |
title_full_unstemmed |
Two dimensional roll forming simulation using plane strain elements with simplified roller contact definition |
title_sort |
two dimensional roll forming simulation using plane strain elements with simplified roller contact definition |
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2007 |
url |
http://umpir.ump.edu.my/id/eprint/2324/1/MUHAMMAD_FIKRI_BIN_CHE_MANSHOR.PDF http://umpir.ump.edu.my/id/eprint/2324/ |
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1702170005187067904 |
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13.209306 |