Optimization of Cutting Parameters for Free Cutting Brass (CuZn35Pb3) Using Taguchi Method

The need of smooth surface finish produced during machining process plays a greater role to reduce wear of the part and corrosion protection. However, the cost of making good surface finish depends on selection of optimized parameters and use of precision machines. Dry turning operation is very imp...

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Main Authors: Kemal Temam Ebrahim, Moera Gutu Jiru, Abdisa Sisay
Format: Article
Language:English
Published: Adama Science and Technology University 2020-08-01
Series:Ethiopian Journal of Science and Sustainable Development
Subjects:
Online Access:https://ejssd.astu.edu.et/index.php/EJSSD/article/view/189
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spelling doaj-4bad9434f16d4f1494b4b4e7db372c132020-11-25T03:39:21ZengAdama Science and Technology UniversityEthiopian Journal of Science and Sustainable Development1998-05312663-32052020-08-017210.20372/ejssdastu:v7.i2.2020.189Optimization of Cutting Parameters for Free Cutting Brass (CuZn35Pb3) Using Taguchi MethodKemal Temam EbrahimMoera Gutu JiruAbdisa Sisay The need of smooth surface finish produced during machining process plays a greater role to reduce wear of the part and corrosion protection. However, the cost of making good surface finish depends on selection of optimized parameters and use of precision machines. Dry turning operation is very important for saving cost of cutting fluid, contribute to clean environment and good for safety of machinist. Pure copper produces a long tubular or tangled chips which makes machining very difficult because chips are rolled on cutting tool causing tool wear. Machining of high ductility work material like copper can create high frictional forces between chip and cutting tool. This creates high tool wear due to poor chip formation. In this work, cutting parameters like cutting speed, depth of cut and feed are optimized for dry turning process using Taguchi Method. The optimum turning parameters in this study was obtained at higher cutting speed, lower feed and higher depth of cut. The minimum surface roughness at optimum turning parameters was obtained as 1.63 µm. Result of variance indicates the contribution of cutting speed, feed and depth of cut were 88.74%, 1.13% and 6.46% respectively. Among which cutting speed was the most significant factor for improving surface roughness. https://ejssd.astu.edu.et/index.php/EJSSD/article/view/189Machining, Turning, Surface Roughness, Taguchi Method
collection DOAJ
language English
format Article
sources DOAJ
author Kemal Temam Ebrahim
Moera Gutu Jiru
Abdisa Sisay
spellingShingle Kemal Temam Ebrahim
Moera Gutu Jiru
Abdisa Sisay
Optimization of Cutting Parameters for Free Cutting Brass (CuZn35Pb3) Using Taguchi Method
Ethiopian Journal of Science and Sustainable Development
Machining, Turning, Surface Roughness, Taguchi Method
author_facet Kemal Temam Ebrahim
Moera Gutu Jiru
Abdisa Sisay
author_sort Kemal Temam Ebrahim
title Optimization of Cutting Parameters for Free Cutting Brass (CuZn35Pb3) Using Taguchi Method
title_short Optimization of Cutting Parameters for Free Cutting Brass (CuZn35Pb3) Using Taguchi Method
title_full Optimization of Cutting Parameters for Free Cutting Brass (CuZn35Pb3) Using Taguchi Method
title_fullStr Optimization of Cutting Parameters for Free Cutting Brass (CuZn35Pb3) Using Taguchi Method
title_full_unstemmed Optimization of Cutting Parameters for Free Cutting Brass (CuZn35Pb3) Using Taguchi Method
title_sort optimization of cutting parameters for free cutting brass (cuzn35pb3) using taguchi method
publisher Adama Science and Technology University
series Ethiopian Journal of Science and Sustainable Development
issn 1998-0531
2663-3205
publishDate 2020-08-01
description The need of smooth surface finish produced during machining process plays a greater role to reduce wear of the part and corrosion protection. However, the cost of making good surface finish depends on selection of optimized parameters and use of precision machines. Dry turning operation is very important for saving cost of cutting fluid, contribute to clean environment and good for safety of machinist. Pure copper produces a long tubular or tangled chips which makes machining very difficult because chips are rolled on cutting tool causing tool wear. Machining of high ductility work material like copper can create high frictional forces between chip and cutting tool. This creates high tool wear due to poor chip formation. In this work, cutting parameters like cutting speed, depth of cut and feed are optimized for dry turning process using Taguchi Method. The optimum turning parameters in this study was obtained at higher cutting speed, lower feed and higher depth of cut. The minimum surface roughness at optimum turning parameters was obtained as 1.63 µm. Result of variance indicates the contribution of cutting speed, feed and depth of cut were 88.74%, 1.13% and 6.46% respectively. Among which cutting speed was the most significant factor for improving surface roughness.
topic Machining, Turning, Surface Roughness, Taguchi Method
url https://ejssd.astu.edu.et/index.php/EJSSD/article/view/189
work_keys_str_mv AT kemaltemamebrahim optimizationofcuttingparametersforfreecuttingbrasscuzn35pb3usingtaguchimethod
AT moeragutujiru optimizationofcuttingparametersforfreecuttingbrasscuzn35pb3usingtaguchimethod
AT abdisasisay optimizationofcuttingparametersforfreecuttingbrasscuzn35pb3usingtaguchimethod
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