Optimization of cutting parameters for surface roughness in CNC turning machining with aluminum alloy 6061 material

Machining process involves many process parameters. Achieving accurate dimensions, good surface quality, and maximized metal removal are of utmost importance. This research work describes the optimization of cutting parameters for the surface roughness in CNC turning machining with aluminum alloy...

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Main Author: Ali Abdullah, Mohammed Ahmed
Format: Thesis
Language:English
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Online Access:http://dspace.unimap.edu.my:80/xmlui/bitstream/123456789/62018/1/Page%201-24.pdf
http://dspace.unimap.edu.my:80/xmlui/bitstream/123456789/62018/2/Full%20text.pdf
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spelling my-unimap-620182019-09-26T10:16:03Z Optimization of cutting parameters for surface roughness in CNC turning machining with aluminum alloy 6061 material Ali Abdullah, Mohammed Ahmed Machining process involves many process parameters. Achieving accurate dimensions, good surface quality, and maximized metal removal are of utmost importance. This research work describes the optimization of cutting parameters for the surface roughness in CNC turning machining with aluminum alloy 6061 material. Controlling the required surface quality is necessary. In this study, Taguchi method is used to find the optimal cutting parameters for surface roughness in turning. L-9 orthogonal array, signal-to-noise ratio, and analysis of variance are employed to study the performance characteristics in the turning operations of aluminum alloy 6061 using uncoated inserts. A precise knowledge of these optimum parameters would facilitate reduction of machining costs and improve product quality. The current study on turning process applies a response surface methodology on the most effective process parameters, namely, feed, cutting speed, and depth of cut, which are optimized considering the surface roughness and material removal rate. The results of the machining experiments were used to characterize the main factors affecting surface roughness by the Analysis of Variance (ANOVA) method. Feed rate and speed of cutting founds to be a most influencing parameter for the surface roughness in the shaping process whereas depth of cut is found to be significantly affecting the MRR. Universiti Malaysia Perlis (UniMAP) 2014 Thesis en http://dspace.unimap.edu.my:80/xmlui/handle/123456789/62018 http://dspace.unimap.edu.my:80/xmlui/bitstream/123456789/62018/1/Page%201-24.pdf 7ed18ad36768ef247692a2824365e336 http://dspace.unimap.edu.my:80/xmlui/bitstream/123456789/62018/2/Full%20text.pdf 5cd84c32dae10b4910b5d1a3219cfd42 http://dspace.unimap.edu.my:80/xmlui/bitstream/123456789/62018/3/license.txt 8a4605be74aa9ea9d79846c1fba20a33 Machining process Aluminum alloys Cutting parameters Aluminum machining material Alloys Surface -- Quality School of Manufacturing Engineering
institution Universiti Malaysia Perlis
collection UniMAP Institutional Repository
language English
topic Machining process
Aluminum alloys
Cutting parameters
Aluminum machining material
Alloys
Surface -- Quality
spellingShingle Machining process
Aluminum alloys
Cutting parameters
Aluminum machining material
Alloys
Surface -- Quality
Ali Abdullah, Mohammed Ahmed
Optimization of cutting parameters for surface roughness in CNC turning machining with aluminum alloy 6061 material
description Machining process involves many process parameters. Achieving accurate dimensions, good surface quality, and maximized metal removal are of utmost importance. This research work describes the optimization of cutting parameters for the surface roughness in CNC turning machining with aluminum alloy 6061 material. Controlling the required surface quality is necessary. In this study, Taguchi method is used to find the optimal cutting parameters for surface roughness in turning. L-9 orthogonal array, signal-to-noise ratio, and analysis of variance are employed to study the performance characteristics in the turning operations of aluminum alloy 6061 using uncoated inserts. A precise knowledge of these optimum parameters would facilitate reduction of machining costs and improve product quality. The current study on turning process applies a response surface methodology on the most effective process parameters, namely, feed, cutting speed, and depth of cut, which are optimized considering the surface roughness and material removal rate. The results of the machining experiments were used to characterize the main factors affecting surface roughness by the Analysis of Variance (ANOVA) method. Feed rate and speed of cutting founds to be a most influencing parameter for the surface roughness in the shaping process whereas depth of cut is found to be significantly affecting the MRR.
format Thesis
author Ali Abdullah, Mohammed Ahmed
author_facet Ali Abdullah, Mohammed Ahmed
author_sort Ali Abdullah, Mohammed Ahmed
title Optimization of cutting parameters for surface roughness in CNC turning machining with aluminum alloy 6061 material
title_short Optimization of cutting parameters for surface roughness in CNC turning machining with aluminum alloy 6061 material
title_full Optimization of cutting parameters for surface roughness in CNC turning machining with aluminum alloy 6061 material
title_fullStr Optimization of cutting parameters for surface roughness in CNC turning machining with aluminum alloy 6061 material
title_full_unstemmed Optimization of cutting parameters for surface roughness in CNC turning machining with aluminum alloy 6061 material
title_sort optimization of cutting parameters for surface roughness in cnc turning machining with aluminum alloy 6061 material
granting_institution Universiti Malaysia Perlis (UniMAP)
granting_department School of Manufacturing Engineering
url http://dspace.unimap.edu.my:80/xmlui/bitstream/123456789/62018/1/Page%201-24.pdf
http://dspace.unimap.edu.my:80/xmlui/bitstream/123456789/62018/2/Full%20text.pdf
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