Optimizing the cutting parameters for better surface quality in 2.5 D cutting utilizing titanium coated carbide ball end mill

The 2.5D cutting operations are intended for creating NC programs for components with pockets, lugs, flat sections etc, for which, it is too time consuming to produce a 3D volume model of the component. A 2.5D machining processes can perform the cutting operation only in two of the three axes at a t...

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Main Authors: Nik Pa, Nik Masmiati, Sarhan, Ahmed Aly Diaa Mohammed, Abd Shukor, Mohd Hamdi
Format: Article
Published: 2012
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Online Access:http://eprints.um.edu.my/7257/
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Institution: Universiti Malaya
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spelling my.um.eprints.72572021-10-01T03:49:56Z http://eprints.um.edu.my/7257/ Optimizing the cutting parameters for better surface quality in 2.5 D cutting utilizing titanium coated carbide ball end mill Nik Pa, Nik Masmiati Sarhan, Ahmed Aly Diaa Mohammed Abd Shukor, Mohd Hamdi TS Manufactures The 2.5D cutting operations are intended for creating NC programs for components with pockets, lugs, flat sections etc, for which, it is too time consuming to produce a 3D volume model of the component. A 2.5D machining processes can perform the cutting operation only in two of the three axes at a time, the movement of the cutter on the main planes before moves to the next depth produced a terrace-like approximation of the required shape. However, adopting the right cutting parameters could be an ideal solution to improve the product quality. This study focused on optimizing the cutting parameters for higher surface quality in 2.5D cutting utilizing titanium coated carbide ball end mill. These parameters include; machined surface inclined angle, axial depth of cut, spindle speed and feed rate. Taguchi optimization method is the most effective method to optimize the cutting parameters, in which the most significant response variables could be identified. The standard orthogonal array of L9 (34) is used, while the signal to noise (S/N), target performance measurement (TPM) response analysis and analysis of variance (Pareto ANOVA) methods are carried out to determine which parameters are statistically significant. Finally, confirmation tests are carried out to investigate the optimization improvements. 2012 Article PeerReviewed Nik Pa, Nik Masmiati and Sarhan, Ahmed Aly Diaa Mohammed and Abd Shukor, Mohd Hamdi (2012) Optimizing the cutting parameters for better surface quality in 2.5 D cutting utilizing titanium coated carbide ball end mill. International Journal of Precision Engineering and Manufacturing, 13 (12). pp. 2097-2102. ISSN 2234-7593
institution Universiti Malaya
building UM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaya
content_source UM Research Repository
url_provider http://eprints.um.edu.my/
topic TS Manufactures
spellingShingle TS Manufactures
Nik Pa, Nik Masmiati
Sarhan, Ahmed Aly Diaa Mohammed
Abd Shukor, Mohd Hamdi
Optimizing the cutting parameters for better surface quality in 2.5 D cutting utilizing titanium coated carbide ball end mill
description The 2.5D cutting operations are intended for creating NC programs for components with pockets, lugs, flat sections etc, for which, it is too time consuming to produce a 3D volume model of the component. A 2.5D machining processes can perform the cutting operation only in two of the three axes at a time, the movement of the cutter on the main planes before moves to the next depth produced a terrace-like approximation of the required shape. However, adopting the right cutting parameters could be an ideal solution to improve the product quality. This study focused on optimizing the cutting parameters for higher surface quality in 2.5D cutting utilizing titanium coated carbide ball end mill. These parameters include; machined surface inclined angle, axial depth of cut, spindle speed and feed rate. Taguchi optimization method is the most effective method to optimize the cutting parameters, in which the most significant response variables could be identified. The standard orthogonal array of L9 (34) is used, while the signal to noise (S/N), target performance measurement (TPM) response analysis and analysis of variance (Pareto ANOVA) methods are carried out to determine which parameters are statistically significant. Finally, confirmation tests are carried out to investigate the optimization improvements.
format Article
author Nik Pa, Nik Masmiati
Sarhan, Ahmed Aly Diaa Mohammed
Abd Shukor, Mohd Hamdi
author_facet Nik Pa, Nik Masmiati
Sarhan, Ahmed Aly Diaa Mohammed
Abd Shukor, Mohd Hamdi
author_sort Nik Pa, Nik Masmiati
title Optimizing the cutting parameters for better surface quality in 2.5 D cutting utilizing titanium coated carbide ball end mill
title_short Optimizing the cutting parameters for better surface quality in 2.5 D cutting utilizing titanium coated carbide ball end mill
title_full Optimizing the cutting parameters for better surface quality in 2.5 D cutting utilizing titanium coated carbide ball end mill
title_fullStr Optimizing the cutting parameters for better surface quality in 2.5 D cutting utilizing titanium coated carbide ball end mill
title_full_unstemmed Optimizing the cutting parameters for better surface quality in 2.5 D cutting utilizing titanium coated carbide ball end mill
title_sort optimizing the cutting parameters for better surface quality in 2.5 d cutting utilizing titanium coated carbide ball end mill
publishDate 2012
url http://eprints.um.edu.my/7257/
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