ANALYSIS OF CUTTING FLUID ON MASS LOSS OF CARBIDE INSERT IN THE MILLING PROCESS

The Machining process is manufacturing in the world industry that is widely used. The coolant in the machining process functions to lower the temperature and lubricate and clean the gram in the cutting process. The application of coolant in the cutting process is to maintain the quality of the workp...

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Main Authors: Nasution, Arya Rudi, Affandi, Affandi, Umurani, Khairul, Rahmatullah, Rahmatullah, Refan, Muhammad
Format: UMS Journal (OJS)
Language:eng
Published: Universitas Muhammadiyah Surakarta 2024
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Online Access:https://journals2.ums.ac.id/index.php/mesin/article/view/2896
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author Nasution, Arya Rudi
Affandi, Affandi
Umurani, Khairul
Rahmatullah, Rahmatullah
Refan, Muhammad
author_facet Nasution, Arya Rudi
Affandi, Affandi
Umurani, Khairul
Rahmatullah, Rahmatullah
Refan, Muhammad
author_sort Nasution, Arya Rudi
collection OJS
description The Machining process is manufacturing in the world industry that is widely used. The coolant in the machining process functions to lower the temperature and lubricate and clean the gram in the cutting process. The application of coolant in the cutting process is to maintain the quality of the workpiece during the cutting process and also serves to improve tool life so that the tool does not wear out easily. This study aims to determine the effect of a chemical-based coolant based on dromus oil and vegetable CPO on tool wear in the face milling process and to determine whether or not the liquid is effective in reducing and slowing down tool wear. In this research, the face milling process used a grey cast iron specimen as the workpiece specimen used and also used a carbide insert chisel cutting tool with the TPKN 22 VC2 type. The research was carried out by varying the engine speed and also the coolant variation, the engine speed variations used were 80, 360 and 720 Rpm. In the process of administering coolant using the method, it is sprayed directly onto the workpiece area which is cut continuously, in the milling process with a response variable that can be in the form of data or tool wear values that have been observed and tested using a microscope test tool, using the weight (mass) method to see the wear value. This research aims to see how effective the use of vegetable- based coolant (CPO) during experiments as a coolant in the machining process aims to ensure that the final value of tool insert wear must be smaller with (CPO) compared to chemical coolant (dromus).
format UMS Journal (OJS)
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institution Universitas Muhammadiyah Surakarta
language eng
publishDate 2024
publisher Universitas Muhammadiyah Surakarta
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spelling oai:ojs2.journals2.ums.ac.id:article-2896 ANALYSIS OF CUTTING FLUID ON MASS LOSS OF CARBIDE INSERT IN THE MILLING PROCESS Nasution, Arya Rudi Affandi, Affandi Umurani, Khairul Rahmatullah, Rahmatullah Refan, Muhammad Milling Coolant Tool Wear Carbide Insert The Machining process is manufacturing in the world industry that is widely used. The coolant in the machining process functions to lower the temperature and lubricate and clean the gram in the cutting process. The application of coolant in the cutting process is to maintain the quality of the workpiece during the cutting process and also serves to improve tool life so that the tool does not wear out easily. This study aims to determine the effect of a chemical-based coolant based on dromus oil and vegetable CPO on tool wear in the face milling process and to determine whether or not the liquid is effective in reducing and slowing down tool wear. In this research, the face milling process used a grey cast iron specimen as the workpiece specimen used and also used a carbide insert chisel cutting tool with the TPKN 22 VC2 type. The research was carried out by varying the engine speed and also the coolant variation, the engine speed variations used were 80, 360 and 720 Rpm. In the process of administering coolant using the method, it is sprayed directly onto the workpiece area which is cut continuously, in the milling process with a response variable that can be in the form of data or tool wear values that have been observed and tested using a microscope test tool, using the weight (mass) method to see the wear value. This research aims to see how effective the use of vegetable- based coolant (CPO) during experiments as a coolant in the machining process aims to ensure that the final value of tool insert wear must be smaller with (CPO) compared to chemical coolant (dromus). Universitas Muhammadiyah Surakarta 2024-01-30 info:eu-repo/semantics/article info:eu-repo/semantics/publishedVersion Peer-reviewed Article application/pdf https://journals2.ums.ac.id/index.php/mesin/article/view/2896 Media Mesin: Majalah Teknik Mesin; Vol. 25 No. 1 (2024); 31-40 2541-4577 1411-4348 eng https://journals2.ums.ac.id/index.php/mesin/article/view/2896/1062 Copyright (c) 2024 Arya Rudi Nasution, Affandi Affandi, Khairul Umurani, Rahmatullah Rahmatullah, Muhammad Refan https://creativecommons.org/licenses/by/4.0
spellingShingle Milling
Coolant
Tool Wear
Carbide Insert
Nasution, Arya Rudi
Affandi, Affandi
Umurani, Khairul
Rahmatullah, Rahmatullah
Refan, Muhammad
ANALYSIS OF CUTTING FLUID ON MASS LOSS OF CARBIDE INSERT IN THE MILLING PROCESS
title ANALYSIS OF CUTTING FLUID ON MASS LOSS OF CARBIDE INSERT IN THE MILLING PROCESS
title_full ANALYSIS OF CUTTING FLUID ON MASS LOSS OF CARBIDE INSERT IN THE MILLING PROCESS
title_fullStr ANALYSIS OF CUTTING FLUID ON MASS LOSS OF CARBIDE INSERT IN THE MILLING PROCESS
title_full_unstemmed ANALYSIS OF CUTTING FLUID ON MASS LOSS OF CARBIDE INSERT IN THE MILLING PROCESS
title_short ANALYSIS OF CUTTING FLUID ON MASS LOSS OF CARBIDE INSERT IN THE MILLING PROCESS
title_sort analysis of cutting fluid on mass loss of carbide insert in the milling process
topic Milling
Coolant
Tool Wear
Carbide Insert
topic_facet Milling
Coolant
Tool Wear
Carbide Insert
url https://journals2.ums.ac.id/index.php/mesin/article/view/2896
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AT umuranikhairul analysisofcuttingfluidonmasslossofcarbideinsertinthemillingprocess
AT rahmatullahrahmatullah analysisofcuttingfluidonmasslossofcarbideinsertinthemillingprocess
AT refanmuhammad analysisofcuttingfluidonmasslossofcarbideinsertinthemillingprocess