Robust setting of Ti-6Al-4V machining using WEDM (High Energy with EF Circuit Off)

The purpose of this project are to optimize process variables of WEDM to obtain maximum MRR and minimum surface roughness in rough cutting. This project started with collecting the information from literature review regarding titanium alloy (Ti-6A1-4V), Wire electrical discharge machining (WEDM) an...

Full description

Saved in:
Bibliographic Details
Main Author: Muhammad Noor Aliyas
Other Authors: Mohd Zahiruddin Md Zain (Advisor)
Format: Learning Object
Language:English
Published: Universiti Malaysia Perlis 2008
Subjects:
Online Access:http://dspace.unimap.edu.my/xmlui/handle/123456789/2394
Tags: Add Tag
No Tags, Be the first to tag this record!
id my.unimap-2394
record_format dspace
spelling my.unimap-23942008-10-13T07:05:36Z Robust setting of Ti-6Al-4V machining using WEDM (High Energy with EF Circuit Off) Muhammad Noor Aliyas Mohd Zahiruddin Md Zain (Advisor) Material Removal Rate Surface roughness Titanium alloys Wire-Electrical Discharge Machine (WEDM) Electric metal-cutting Cutting machine The purpose of this project are to optimize process variables of WEDM to obtain maximum MRR and minimum surface roughness in rough cutting. This project started with collecting the information from literature review regarding titanium alloy (Ti-6A1-4V), Wire electrical discharge machining (WEDM) and design of experiment (DOE) Classical method. The material used in this project is titanium alloy (Ti-6A1-4V). Standard Roughing Intensity power IP range (1206~1212) and others factor (pulse on time, pulse off time and servo speed) have been study. The material was cut on straight line only and 20 observation experiments have been done. Design of Experiment (DOE) Classical method was utilized to find the best combination of the parameters setting to achieve the maximum Material Removal Rate (MRR) and minimum surface roughness by studied the interaction between factors that can affect the response. With the result of analysis using DOE the confirmation process on the material have been done. There are two types of parameter set for both MRR and Ra for confirmation run which is robust and optimization setting. After the confirmation process done we are able to see the percentage of error on the predicted value using DOE and the confirmation actual value. The results on the material removal rate and surface finish have been discussed. However, the estimate error value for the MRR and Ra is not relying 10% because of some factors that affect the data taken during the observation and confirmation experiment. 2008-10-13T07:05:36Z 2008-10-13T07:05:36Z 2008-04 Learning Object http://hdl.handle.net/123456789/2394 en Universiti Malaysia Perlis School of Manufacturing Engineering
institution Universiti Malaysia Perlis
building UniMAP Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaysia Perlis
content_source UniMAP Library Digital Repository
url_provider http://dspace.unimap.edu.my/
language English
topic Material Removal Rate
Surface roughness
Titanium alloys
Wire-Electrical Discharge Machine (WEDM)
Electric metal-cutting
Cutting machine
spellingShingle Material Removal Rate
Surface roughness
Titanium alloys
Wire-Electrical Discharge Machine (WEDM)
Electric metal-cutting
Cutting machine
Muhammad Noor Aliyas
Robust setting of Ti-6Al-4V machining using WEDM (High Energy with EF Circuit Off)
description The purpose of this project are to optimize process variables of WEDM to obtain maximum MRR and minimum surface roughness in rough cutting. This project started with collecting the information from literature review regarding titanium alloy (Ti-6A1-4V), Wire electrical discharge machining (WEDM) and design of experiment (DOE) Classical method. The material used in this project is titanium alloy (Ti-6A1-4V). Standard Roughing Intensity power IP range (1206~1212) and others factor (pulse on time, pulse off time and servo speed) have been study. The material was cut on straight line only and 20 observation experiments have been done. Design of Experiment (DOE) Classical method was utilized to find the best combination of the parameters setting to achieve the maximum Material Removal Rate (MRR) and minimum surface roughness by studied the interaction between factors that can affect the response. With the result of analysis using DOE the confirmation process on the material have been done. There are two types of parameter set for both MRR and Ra for confirmation run which is robust and optimization setting. After the confirmation process done we are able to see the percentage of error on the predicted value using DOE and the confirmation actual value. The results on the material removal rate and surface finish have been discussed. However, the estimate error value for the MRR and Ra is not relying 10% because of some factors that affect the data taken during the observation and confirmation experiment.
author2 Mohd Zahiruddin Md Zain (Advisor)
author_facet Mohd Zahiruddin Md Zain (Advisor)
Muhammad Noor Aliyas
format Learning Object
author Muhammad Noor Aliyas
author_sort Muhammad Noor Aliyas
title Robust setting of Ti-6Al-4V machining using WEDM (High Energy with EF Circuit Off)
title_short Robust setting of Ti-6Al-4V machining using WEDM (High Energy with EF Circuit Off)
title_full Robust setting of Ti-6Al-4V machining using WEDM (High Energy with EF Circuit Off)
title_fullStr Robust setting of Ti-6Al-4V machining using WEDM (High Energy with EF Circuit Off)
title_full_unstemmed Robust setting of Ti-6Al-4V machining using WEDM (High Energy with EF Circuit Off)
title_sort robust setting of ti-6al-4v machining using wedm (high energy with ef circuit off)
publisher Universiti Malaysia Perlis
publishDate 2008
url http://dspace.unimap.edu.my/xmlui/handle/123456789/2394
_version_ 1643787600959373312
score 13.214268