Prediction of surface roughness in hard milling of AISI D2 tool steel
This paper presents a study of the development of a surface roughness model in end milling of hardened steel AISI D2 using PVD TiAIN coated carbide cutting tool. The hardness of AISI D2 tool lies within the range of 56-58 HRe. The independent variables or the primary machining parameters selected...
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iium-268852015-12-28T12:55:05Z http://irep.iium.edu.my/26885/ Prediction of surface roughness in hard milling of AISI D2 tool steel Lajis, M. A. Karim, A.N. Mustafizul Amin, A. K. M. Nurul Hafiz, A.M. Khalid T55.4 Industrial engineering.Management engineering. T58.7 Production capacity. Manufacturing capacity This paper presents a study of the development of a surface roughness model in end milling of hardened steel AISI D2 using PVD TiAIN coated carbide cutting tool. The hardness of AISI D2 tool lies within the range of 56-58 HRe. The independent variables or the primary machining parameters selected for this experiment were the cutting speed, feed, and depth of cut. First and second order models were developed using Response Surface Methodology (RSM). Experiments were conducted within specified ranges of the parameters. Design-Expert 6.0 software was used to develop the surface roughness equations as the predictive models. Analysis of variance (ANOVA) with 95% confidence interval has indicated that the models are valid in predicting the surface roughness of the part machined under specified condition. 2007-11 Conference or Workshop Item PeerReviewed application/pdf en http://irep.iium.edu.my/26885/1/Ra_AISI_D2_%2321.pdf Lajis, M. A. and Karim, A.N. Mustafizul and Amin, A. K. M. Nurul and Hafiz, A.M. Khalid (2007) Prediction of surface roughness in hard milling of AISI D2 tool steel. In: 4th International Conference on Leading Edge Manufacturing in the 21st Century (LEM 21), Noember 7-9, 2007, Fukuoka, Japan. . |
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International Islamic University Malaysia |
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English |
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T55.4 Industrial engineering.Management engineering. T58.7 Production capacity. Manufacturing capacity |
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T55.4 Industrial engineering.Management engineering. T58.7 Production capacity. Manufacturing capacity Lajis, M. A. Karim, A.N. Mustafizul Amin, A. K. M. Nurul Hafiz, A.M. Khalid Prediction of surface roughness in hard milling of AISI D2 tool steel |
description |
This paper presents a study of the development of a surface roughness model in end milling of hardened
steel AISI D2 using PVD TiAIN coated carbide cutting tool. The hardness of AISI D2 tool lies within the
range of 56-58 HRe. The independent variables or the primary machining parameters selected for this experiment were the cutting speed, feed, and depth of cut. First and second order models were developed using Response Surface Methodology (RSM). Experiments were conducted within specified ranges of the parameters. Design-Expert 6.0 software was used to develop the surface roughness equations as the predictive models. Analysis of variance (ANOVA) with 95% confidence interval has indicated that the
models are valid in predicting the surface roughness of the part machined under specified condition. |
format |
Conference or Workshop Item |
author |
Lajis, M. A. Karim, A.N. Mustafizul Amin, A. K. M. Nurul Hafiz, A.M. Khalid |
author_facet |
Lajis, M. A. Karim, A.N. Mustafizul Amin, A. K. M. Nurul Hafiz, A.M. Khalid |
author_sort |
Lajis, M. A. |
title |
Prediction of surface roughness in hard milling of AISI D2 tool steel |
title_short |
Prediction of surface roughness in hard milling of AISI D2 tool steel |
title_full |
Prediction of surface roughness in hard milling of AISI D2 tool steel |
title_fullStr |
Prediction of surface roughness in hard milling of AISI D2 tool steel |
title_full_unstemmed |
Prediction of surface roughness in hard milling of AISI D2 tool steel |
title_sort |
prediction of surface roughness in hard milling of aisi d2 tool steel |
publishDate |
2007 |
url |
http://irep.iium.edu.my/26885/ http://irep.iium.edu.my/26885/1/Ra_AISI_D2_%2321.pdf |
first_indexed |
2023-09-18T20:40:00Z |
last_indexed |
2023-09-18T20:40:00Z |
_version_ |
1777409301221998592 |