Optimasi Parameter Proses Bubut Material ST 60 dengan Pendinginan Ramah Lingkungan Menggunakan Metode Taguchi-Grey

Every production process always needs to produce high quality with high productivity. However, in machining processes, qualities such as surface roughness and productivity such as material removal rates have different characteristics. Surface roughness has the quality characteristics smaller the bet...

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Main Authors: Dian Ridlo Pamuji, Nuraini Lusi
Format: Article
Language:English
Published: University of Brawijaya 2020-01-01
Series:Rekayasa Mesin
Subjects:
Online Access:https://rekayasamesin.ub.ac.id/index.php/rm/article/view/553
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author Dian Ridlo Pamuji
Nuraini Lusi
author_facet Dian Ridlo Pamuji
Nuraini Lusi
author_sort Dian Ridlo Pamuji
collection DOAJ
description Every production process always needs to produce high quality with high productivity. However, in machining processes, qualities such as surface roughness and productivity such as material removal rates have different characteristics. Surface roughness has the quality characteristics smaller the better, while the material removal rate has larger the better. Therefore, determining the combination of lathe parameters is very important to get optimal results. A study has been carried out to determine the combination of lathe process on ST 60 material with an environmentally friendly cooling method to minimize surface roughness response and maximize material processing rates simultaneously. The coolant (cold soluble oil and air pressure), spindle rotation (550 rpm, 700 rpm and 1200 rpm), feed motion (0.053 mm / rev., 0.103 mm / rev and 0.161 mm / rev) and depth of cut (0.125 mm, 0.25 mm and 0.5 mm) were used as process parameters. The tool used in this study is a CNMG insert tool with a 0.4 mm corner radius. The experimental design was determined using the Taguchi method in the form of orthogonal matrix L18 (21x33). The optimization method used is the grey relational analysis. The results showed that an optimal surface roughness response and material removal rate obtained by setting the coolant process at level 1 of cold soluble oil, spindle rotation was set at level 3 at 1200 rpm, feeding motion was set at level 3 of 0.161 mm / rev. And the depth of cut is set at level 3 of 0.5 mm.
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spelling doaj.art-cbb34cdb3eae43149b4e09e54b1c49172022-12-21T18:52:30ZengUniversity of BrawijayaRekayasa Mesin2338-16632477-60412020-01-0110324525510.21776/ub.jrm.2019.010.03.5372Optimasi Parameter Proses Bubut Material ST 60 dengan Pendinginan Ramah Lingkungan Menggunakan Metode Taguchi-GreyDian Ridlo Pamuji0Nuraini Lusi1Politeknik Negeri BanyuwangiPoliteknik Negeri BanyuwangiEvery production process always needs to produce high quality with high productivity. However, in machining processes, qualities such as surface roughness and productivity such as material removal rates have different characteristics. Surface roughness has the quality characteristics smaller the better, while the material removal rate has larger the better. Therefore, determining the combination of lathe parameters is very important to get optimal results. A study has been carried out to determine the combination of lathe process on ST 60 material with an environmentally friendly cooling method to minimize surface roughness response and maximize material processing rates simultaneously. The coolant (cold soluble oil and air pressure), spindle rotation (550 rpm, 700 rpm and 1200 rpm), feed motion (0.053 mm / rev., 0.103 mm / rev and 0.161 mm / rev) and depth of cut (0.125 mm, 0.25 mm and 0.5 mm) were used as process parameters. The tool used in this study is a CNMG insert tool with a 0.4 mm corner radius. The experimental design was determined using the Taguchi method in the form of orthogonal matrix L18 (21x33). The optimization method used is the grey relational analysis. The results showed that an optimal surface roughness response and material removal rate obtained by setting the coolant process at level 1 of cold soluble oil, spindle rotation was set at level 3 at 1200 rpm, feeding motion was set at level 3 of 0.161 mm / rev. And the depth of cut is set at level 3 of 0.5 mm.https://rekayasamesin.ub.ac.id/index.php/rm/article/view/553lathematerial removal rateoptimizationsurface roughnesstaguchigrey relational analysis
spellingShingle Dian Ridlo Pamuji
Nuraini Lusi
Optimasi Parameter Proses Bubut Material ST 60 dengan Pendinginan Ramah Lingkungan Menggunakan Metode Taguchi-Grey
Rekayasa Mesin
lathe
material removal rate
optimization
surface roughness
taguchi
grey relational analysis
title Optimasi Parameter Proses Bubut Material ST 60 dengan Pendinginan Ramah Lingkungan Menggunakan Metode Taguchi-Grey
title_full Optimasi Parameter Proses Bubut Material ST 60 dengan Pendinginan Ramah Lingkungan Menggunakan Metode Taguchi-Grey
title_fullStr Optimasi Parameter Proses Bubut Material ST 60 dengan Pendinginan Ramah Lingkungan Menggunakan Metode Taguchi-Grey
title_full_unstemmed Optimasi Parameter Proses Bubut Material ST 60 dengan Pendinginan Ramah Lingkungan Menggunakan Metode Taguchi-Grey
title_short Optimasi Parameter Proses Bubut Material ST 60 dengan Pendinginan Ramah Lingkungan Menggunakan Metode Taguchi-Grey
title_sort optimasi parameter proses bubut material st 60 dengan pendinginan ramah lingkungan menggunakan metode taguchi grey
topic lathe
material removal rate
optimization
surface roughness
taguchi
grey relational analysis
url https://rekayasamesin.ub.ac.id/index.php/rm/article/view/553
work_keys_str_mv AT dianridlopamuji optimasiparameterprosesbubutmaterialst60denganpendinginanramahlingkunganmenggunakanmetodetaguchigrey
AT nurainilusi optimasiparameterprosesbubutmaterialst60denganpendinginanramahlingkunganmenggunakanmetodetaguchigrey