Fabrication and characteristic study of alumina tool using cold isotatic press

In manufacturing, machining is widely used in the production. The selection of a suitable tool will boost production performance and reduce costs. In this study, alumina cutting tools are fabricated and its characteristics information gained through various experiments. Numbers of previous studies u...

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Main Author: Adam, Abdul Aziz
Format: Thesis
Language:English
English
Published: 2014
Subjects:
Online Access:http://eprints.utem.edu.my/id/eprint/14705/1/Fabrication%20And%20Characteristic%20Study%20Of%20Alumina%20Tool%20Using%20Cold%20Isostatic%20Press%2024pages.pdf
http://eprints.utem.edu.my/id/eprint/14705/2/Fabrication%20and%20characteristic%20study%20of%20alumina%20tool%20using%20cold%20isotatic%20pres.pdf
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spelling my-utem-ep.147052022-10-20T16:06:25Z Fabrication and characteristic study of alumina tool using cold isotatic press 2014 Adam, Abdul Aziz TJ Mechanical engineering and machinery In manufacturing, machining is widely used in the production. The selection of a suitable tool will boost production performance and reduce costs. In this study, alumina cutting tools are fabricated and its characteristics information gained through various experiments. Numbers of previous studies using alumina -based composite cutting tool were done and mostly agreed that the alumina based have the potential to produce a homogeneous ceramic cutting inserts with high performance. However, less research were found for the production of alumina milling cutting insert. Therefore, this study focuses on the application of cold isostatic press to produce alumina cutting insert that has a good microstructure and mechanical properties. The characteristic of cutting insert that has been produced then tested through various experiments and test. The inserts produce accordance to triangle shaped inserts. Alumina powder with purity of 91.4 % was used to produce the cutting tool. The powder then compressed through cold isostatic pressure techniques. The pressure applied is range of 15,000 psi, 20,000psi and 25,000 psi. Green body and then dried and sintered at two different temperatures of and 1400 °C and 1550 °C. The density, hardness and shrinkage of alumina milling insert then were studied. Matrix design method was utilized to build experimental and accurate data. Product which were pressed at 20,000 psi and sintered at 1550 °C shows assured result and shall be tested to identify the cutting performance of the inserts. 2014 Thesis http://eprints.utem.edu.my/id/eprint/14705/ http://eprints.utem.edu.my/id/eprint/14705/1/Fabrication%20And%20Characteristic%20Study%20Of%20Alumina%20Tool%20Using%20Cold%20Isostatic%20Press%2024pages.pdf text en public http://eprints.utem.edu.my/id/eprint/14705/2/Fabrication%20and%20characteristic%20study%20of%20alumina%20tool%20using%20cold%20isotatic%20pres.pdf text en validuser https://plh.utem.edu.my/cgi-bin/koha/opac-detail.pl?biblionumber=92168 mphil masters Universiti Teknikal Malaysia Melaka Faculty of Manufacturing Engineering Abd Aziz, Mohd Sanusi
institution Universiti Teknikal Malaysia Melaka
collection UTeM Repository
language English
English
advisor Abd Aziz, Mohd Sanusi
topic TJ Mechanical engineering and machinery
spellingShingle TJ Mechanical engineering and machinery
Adam, Abdul Aziz
Fabrication and characteristic study of alumina tool using cold isotatic press
description In manufacturing, machining is widely used in the production. The selection of a suitable tool will boost production performance and reduce costs. In this study, alumina cutting tools are fabricated and its characteristics information gained through various experiments. Numbers of previous studies using alumina -based composite cutting tool were done and mostly agreed that the alumina based have the potential to produce a homogeneous ceramic cutting inserts with high performance. However, less research were found for the production of alumina milling cutting insert. Therefore, this study focuses on the application of cold isostatic press to produce alumina cutting insert that has a good microstructure and mechanical properties. The characteristic of cutting insert that has been produced then tested through various experiments and test. The inserts produce accordance to triangle shaped inserts. Alumina powder with purity of 91.4 % was used to produce the cutting tool. The powder then compressed through cold isostatic pressure techniques. The pressure applied is range of 15,000 psi, 20,000psi and 25,000 psi. Green body and then dried and sintered at two different temperatures of and 1400 °C and 1550 °C. The density, hardness and shrinkage of alumina milling insert then were studied. Matrix design method was utilized to build experimental and accurate data. Product which were pressed at 20,000 psi and sintered at 1550 °C shows assured result and shall be tested to identify the cutting performance of the inserts.
format Thesis
qualification_name Master of Philosophy (M.Phil.)
qualification_level Master's degree
author Adam, Abdul Aziz
author_facet Adam, Abdul Aziz
author_sort Adam, Abdul Aziz
title Fabrication and characteristic study of alumina tool using cold isotatic press
title_short Fabrication and characteristic study of alumina tool using cold isotatic press
title_full Fabrication and characteristic study of alumina tool using cold isotatic press
title_fullStr Fabrication and characteristic study of alumina tool using cold isotatic press
title_full_unstemmed Fabrication and characteristic study of alumina tool using cold isotatic press
title_sort fabrication and characteristic study of alumina tool using cold isotatic press
granting_institution Universiti Teknikal Malaysia Melaka
granting_department Faculty of Manufacturing Engineering
publishDate 2014
url http://eprints.utem.edu.my/id/eprint/14705/1/Fabrication%20And%20Characteristic%20Study%20Of%20Alumina%20Tool%20Using%20Cold%20Isostatic%20Press%2024pages.pdf
http://eprints.utem.edu.my/id/eprint/14705/2/Fabrication%20and%20characteristic%20study%20of%20alumina%20tool%20using%20cold%20isotatic%20pres.pdf
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