Prediction of Fatigue Life in Cold Forging Punch Design for Fastener by Using Integrated FEA and Stress Life Approach

This research was conducted to analyze the potential fatigue area in term of stress distribution, punch elastic deformation and forging load and the number of life cycles of the punch were calculated by using the integrated system combined a finite element analysis (DEFORMTM F3 version 6.0) and stre...

Full description

Saved in:
Bibliographic Details
Main Authors: A. R. Ab-Kadir, A. R. Othman, A. B. Abdullah, Mohd Riduan Ibrahim, Mohd Suyerdi Omar, Mohd Hairizal Osman, UniKL MSI
Format: Article
Language:English
Published: Elsevier 2014
Subjects:
Online Access:http://localhost/xmlui/handle/123456789/8987
Tags: Add Tag
No Tags, Be the first to tag this record!
id my.unikl.ir-8987
record_format eprints
spelling my.unikl.ir-89872014-12-12T02:03:02Z Prediction of Fatigue Life in Cold Forging Punch Design for Fastener by Using Integrated FEA and Stress Life Approach A. R. Ab-Kadir, A. R. Othman A. B. Abdullah, Mohd Riduan Ibrahim Mohd Suyerdi Omar, Mohd Hairizal Osman UniKL MSI Fatigue analysis Cold forging Punch design FE analysis Stress life approach This research was conducted to analyze the potential fatigue area in term of stress distribution, punch elastic deformation and forging load and the number of life cycles of the punch were calculated by using the integrated system combined a finite element analysis (DEFORMTM F3 version 6.0) and stress-life approach are presented. The fatigue life analysis was utilized by taking into account the modification factors and to improve punch performance where case studies are performed with the modification in corner radius of punch design. There are four punches with different corner of radius sizes were modeled; sharp edge, 1.0 mm, 2.0 mm and 3.0 mm. The number of life cycles of the punch has be successfully predicted and improved, as discussed in the result discussion of the cold forging of a fastener, through changes in punch design (corner radius). The sizes of corner radius of punch were optimized to obtain the maximum number of fatigue life. Corner radius 3.0 mm was found to be the optimum punch to obtain maximum number of fatigue life with minimum stress concentration while enhancing punch performance. 2014-12-12T02:03:02Z 2014-12-12T02:03:02Z 2012 Article http://localhost/xmlui/handle/123456789/8987 en Elsevier
institution Universiti Kuala Lumpur
building UniKL Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Kuala Lumpur
content_source UniKL Institutional Repository
url_provider http://ir.unikl.edu.my/
language English
topic Fatigue analysis
Cold forging
Punch design
FE analysis
Stress life approach
spellingShingle Fatigue analysis
Cold forging
Punch design
FE analysis
Stress life approach
A. R. Ab-Kadir, A. R. Othman
A. B. Abdullah, Mohd Riduan Ibrahim
Mohd Suyerdi Omar, Mohd Hairizal Osman
UniKL MSI
Prediction of Fatigue Life in Cold Forging Punch Design for Fastener by Using Integrated FEA and Stress Life Approach
description This research was conducted to analyze the potential fatigue area in term of stress distribution, punch elastic deformation and forging load and the number of life cycles of the punch were calculated by using the integrated system combined a finite element analysis (DEFORMTM F3 version 6.0) and stress-life approach are presented. The fatigue life analysis was utilized by taking into account the modification factors and to improve punch performance where case studies are performed with the modification in corner radius of punch design. There are four punches with different corner of radius sizes were modeled; sharp edge, 1.0 mm, 2.0 mm and 3.0 mm. The number of life cycles of the punch has be successfully predicted and improved, as discussed in the result discussion of the cold forging of a fastener, through changes in punch design (corner radius). The sizes of corner radius of punch were optimized to obtain the maximum number of fatigue life. Corner radius 3.0 mm was found to be the optimum punch to obtain maximum number of fatigue life with minimum stress concentration while enhancing punch performance.
format Article
author A. R. Ab-Kadir, A. R. Othman
A. B. Abdullah, Mohd Riduan Ibrahim
Mohd Suyerdi Omar, Mohd Hairizal Osman
UniKL MSI
author_facet A. R. Ab-Kadir, A. R. Othman
A. B. Abdullah, Mohd Riduan Ibrahim
Mohd Suyerdi Omar, Mohd Hairizal Osman
UniKL MSI
author_sort A. R. Ab-Kadir, A. R. Othman
title Prediction of Fatigue Life in Cold Forging Punch Design for Fastener by Using Integrated FEA and Stress Life Approach
title_short Prediction of Fatigue Life in Cold Forging Punch Design for Fastener by Using Integrated FEA and Stress Life Approach
title_full Prediction of Fatigue Life in Cold Forging Punch Design for Fastener by Using Integrated FEA and Stress Life Approach
title_fullStr Prediction of Fatigue Life in Cold Forging Punch Design for Fastener by Using Integrated FEA and Stress Life Approach
title_full_unstemmed Prediction of Fatigue Life in Cold Forging Punch Design for Fastener by Using Integrated FEA and Stress Life Approach
title_sort prediction of fatigue life in cold forging punch design for fastener by using integrated fea and stress life approach
publisher Elsevier
publishDate 2014
url http://localhost/xmlui/handle/123456789/8987
_version_ 1644485031152844800
score 13.214268