Finite element analysis on drawing of copper wire containing an inclusion and a cavity

In this paper the influence of an eccentric inclusion and cavity on copper shaped-wire drawing were investigated. An experimental investigation for optimal die half-angle was conducted. Based on experimental data of optimal die half-angle, the deformations, the mean normal stress and the plastic...

Full description

Saved in:
Bibliographic Details
Main Authors: Somchai Norasethasopon,, Kazunari Yoshida,
Format: Article
Published: 2003
Online Access:http://journalarticle.ukm.my/1404/
http://www.ukm.my/jkukm/index.php/jkukm
Tags: Add Tag
No Tags, Be the first to tag this record!
id my-ukm.journal.1404
record_format eprints
spelling my-ukm.journal.14042011-10-11T03:45:18Z http://journalarticle.ukm.my/1404/ Finite element analysis on drawing of copper wire containing an inclusion and a cavity Somchai Norasethasopon, Kazunari Yoshida, In this paper the influence of an eccentric inclusion and cavity on copper shaped-wire drawing were investigated. An experimental investigation for optimal die half-angle was conducted. Based on experimental data of optimal die half-angle, the deformations, the mean normal stress and the plastic strain of both copper shapedwires containing an eccentric inclusion and cavity were calculated by finite element analysis. The same parameters for both copper shaped-wires containing a centric inclusion and cavity were also calculated using the same method. Necking, bending and misalignment were observed during drawing of a wire containing an eccentric inclusion. However only necking was observed during drawing of a wire containing a centric inclusion. It was found that the inclusion rotated during drawing and extremely compressive stress occurred on the die contact surface during drawing of wire containing eccentric inclusion. For the same inclusion size, the drawing stress was strongly .influenced by inclusion size and slightly influenced by eccentric length. The drawing stress of wire containing centric inclusion was greater than that of wire containing eccentric inclusion. It was found that the drawing stress decrement was due to- a cavity and the deformation behaviour of a wire containing a cavity was opposite to that of a wire containing an inclusion 2003 Article PeerReviewed Somchai Norasethasopon, and Kazunari Yoshida, (2003) Finite element analysis on drawing of copper wire containing an inclusion and a cavity. Jurnal Kejuruteraan, 15 . http://www.ukm.my/jkukm/index.php/jkukm
institution Universiti Kebangsaan Malaysia
building Perpustakaan Tun Sri Lanang Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Kebangsaan Malaysia
content_source UKM Journal Article Repository
url_provider http://journalarticle.ukm.my/
description In this paper the influence of an eccentric inclusion and cavity on copper shaped-wire drawing were investigated. An experimental investigation for optimal die half-angle was conducted. Based on experimental data of optimal die half-angle, the deformations, the mean normal stress and the plastic strain of both copper shapedwires containing an eccentric inclusion and cavity were calculated by finite element analysis. The same parameters for both copper shaped-wires containing a centric inclusion and cavity were also calculated using the same method. Necking, bending and misalignment were observed during drawing of a wire containing an eccentric inclusion. However only necking was observed during drawing of a wire containing a centric inclusion. It was found that the inclusion rotated during drawing and extremely compressive stress occurred on the die contact surface during drawing of wire containing eccentric inclusion. For the same inclusion size, the drawing stress was strongly .influenced by inclusion size and slightly influenced by eccentric length. The drawing stress of wire containing centric inclusion was greater than that of wire containing eccentric inclusion. It was found that the drawing stress decrement was due to- a cavity and the deformation behaviour of a wire containing a cavity was opposite to that of a wire containing an inclusion
format Article
author Somchai Norasethasopon,
Kazunari Yoshida,
spellingShingle Somchai Norasethasopon,
Kazunari Yoshida,
Finite element analysis on drawing of copper wire containing an inclusion and a cavity
author_facet Somchai Norasethasopon,
Kazunari Yoshida,
author_sort Somchai Norasethasopon,
title Finite element analysis on drawing of copper wire containing an inclusion and a cavity
title_short Finite element analysis on drawing of copper wire containing an inclusion and a cavity
title_full Finite element analysis on drawing of copper wire containing an inclusion and a cavity
title_fullStr Finite element analysis on drawing of copper wire containing an inclusion and a cavity
title_full_unstemmed Finite element analysis on drawing of copper wire containing an inclusion and a cavity
title_sort finite element analysis on drawing of copper wire containing an inclusion and a cavity
publishDate 2003
url http://journalarticle.ukm.my/1404/
http://www.ukm.my/jkukm/index.php/jkukm
_version_ 1643735009497972736
score 13.18916