Die Design for Extrusion Process of Titanium Seamless Tube Using Finite Element Analysis
In this paper, the extrusion process of titanium seamless tubes was studied using several finite element (FE) analyses. First, the finite element result was compared with experimental extrusion data acquired to validate the current analysis. Then, the effect of design parameters of the die shape was...
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doaj-766e0393837d405eb2e31011d83227e62021-09-26T00:41:12ZengMDPI AGMetals2075-47012021-08-01111338133810.3390/met11091338Die Design for Extrusion Process of Titanium Seamless Tube Using Finite Element AnalysisByung-Jin Choi0In Yong Moon1Young-Seok Oh2Seong-Hoon Kang3Se-Jong Kim4Jaimyun Jung5Ji-Hoon Kim6Dong-Kyu Kim7Ho Won Lee8Technical Support Team, Forge Master Korea, Changwon 51395, KoreaDepartment of Materials AI & Big Data, Korea Institute of Materials Science, Changwon 51508, KoreaDepartment of Materials AI & Big Data, Korea Institute of Materials Science, Changwon 51508, KoreaDepartment of Materials AI & Big Data, Korea Institute of Materials Science, Changwon 51508, KoreaDepartment of Materials AI & Big Data, Korea Institute of Materials Science, Changwon 51508, KoreaDepartment of Materials AI & Big Data, Korea Institute of Materials Science, Changwon 51508, KoreaSchool of Mechanical Engineering, Pusan National University, Busan 46241, KoreaSchool of Mechanical Engineering, University of Ulsan, Ulsan 44610, KoreaDepartment of Materials AI & Big Data, Korea Institute of Materials Science, Changwon 51508, KoreaIn this paper, the extrusion process of titanium seamless tubes was studied using several finite element (FE) analyses. First, the finite element result was compared with experimental extrusion data acquired to validate the current analysis. Then, the effect of design parameters of the die shape was numerically analyzed using commercial FE software, Forge NxT, for the metal forming process. Elastic FE analyses were also conducted for dies to analyze the maximum principal stress that affects the early fracture of dies during the extrusion process and the maximum von Mises stress that causes the severe deformation of dies. Consequently, the effect of the corner radius at the exit and land length on the extrusion load and die stress is negligible compared to that of the corner radius at the entrance and die angle. Finally, we suggested a die angle of 60° and a corner radius at the die entrance between 10 and 15 mm as an optimal design for the current extrusion process.https://www.mdpi.com/2075-4701/11/9/1338tube extrusionfinite elementdie stresshot extrusiontitanium |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Byung-Jin Choi In Yong Moon Young-Seok Oh Seong-Hoon Kang Se-Jong Kim Jaimyun Jung Ji-Hoon Kim Dong-Kyu Kim Ho Won Lee |
spellingShingle |
Byung-Jin Choi In Yong Moon Young-Seok Oh Seong-Hoon Kang Se-Jong Kim Jaimyun Jung Ji-Hoon Kim Dong-Kyu Kim Ho Won Lee Die Design for Extrusion Process of Titanium Seamless Tube Using Finite Element Analysis Metals tube extrusion finite element die stress hot extrusion titanium |
author_facet |
Byung-Jin Choi In Yong Moon Young-Seok Oh Seong-Hoon Kang Se-Jong Kim Jaimyun Jung Ji-Hoon Kim Dong-Kyu Kim Ho Won Lee |
author_sort |
Byung-Jin Choi |
title |
Die Design for Extrusion Process of Titanium Seamless Tube Using Finite Element Analysis |
title_short |
Die Design for Extrusion Process of Titanium Seamless Tube Using Finite Element Analysis |
title_full |
Die Design for Extrusion Process of Titanium Seamless Tube Using Finite Element Analysis |
title_fullStr |
Die Design for Extrusion Process of Titanium Seamless Tube Using Finite Element Analysis |
title_full_unstemmed |
Die Design for Extrusion Process of Titanium Seamless Tube Using Finite Element Analysis |
title_sort |
die design for extrusion process of titanium seamless tube using finite element analysis |
publisher |
MDPI AG |
series |
Metals |
issn |
2075-4701 |
publishDate |
2021-08-01 |
description |
In this paper, the extrusion process of titanium seamless tubes was studied using several finite element (FE) analyses. First, the finite element result was compared with experimental extrusion data acquired to validate the current analysis. Then, the effect of design parameters of the die shape was numerically analyzed using commercial FE software, Forge NxT, for the metal forming process. Elastic FE analyses were also conducted for dies to analyze the maximum principal stress that affects the early fracture of dies during the extrusion process and the maximum von Mises stress that causes the severe deformation of dies. Consequently, the effect of the corner radius at the exit and land length on the extrusion load and die stress is negligible compared to that of the corner radius at the entrance and die angle. Finally, we suggested a die angle of 60° and a corner radius at the die entrance between 10 and 15 mm as an optimal design for the current extrusion process. |
topic |
tube extrusion finite element die stress hot extrusion titanium |
url |
https://www.mdpi.com/2075-4701/11/9/1338 |
work_keys_str_mv |
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