Effect of Amount of Cutting Fluid on Surface Finish of Turned Parts

This paper presents the experimental and analytical results of the effect that the amount of cutting fluid has on the surface finish of turned parts. The experiments were planned using Taguchi’s orthogonal array methodology. A three-level, four-parameter orthogonal array (L81) was selected for desig...

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Main Author: Islam, Mohammad Nazrul
Format: Journal Article
Published: Trans Tech Publications Ltd. 2011
Subjects:
Online Access:http://hdl.handle.net/20.500.11937/20837
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author Islam, Mohammad Nazrul
author_facet Islam, Mohammad Nazrul
author_sort Islam, Mohammad Nazrul
building Curtin Institutional Repository
collection Online Access
description This paper presents the experimental and analytical results of the effect that the amount of cutting fluid has on the surface finish of turned parts. The experiments were planned using Taguchi’s orthogonal array methodology. A three-level, four-parameter orthogonal array (L81) was selected for designing the experiments. The selected four input parameters are cutting speed, feed rate, depth of cut, and amount of cutting fluid. Mild steel AISI 1030 was chosen as the work material. A total of 81 experimental runs were conducted, and the surface roughness parameter arithmetic average was measured offline using a surface finish analyzer. Subsequently, the results were analyzed applying three methods—traditional analysis, Pareto ANOVA, and the Taguchi method. The results indicate that the amount of cutting fluid has a negligible effect on surface finish. However, the interaction between the two major contributors—cutting speed and feed rate—is influenced noticeably by the amount of cutting fluid.
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publishDate 2011
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spelling curtin-20.500.11937-208372017-09-13T16:07:59Z Effect of Amount of Cutting Fluid on Surface Finish of Turned Parts Islam, Mohammad Nazrul Flood turning dry turning Pareto ANOVA analysis Taguchi method cutting conditions This paper presents the experimental and analytical results of the effect that the amount of cutting fluid has on the surface finish of turned parts. The experiments were planned using Taguchi’s orthogonal array methodology. A three-level, four-parameter orthogonal array (L81) was selected for designing the experiments. The selected four input parameters are cutting speed, feed rate, depth of cut, and amount of cutting fluid. Mild steel AISI 1030 was chosen as the work material. A total of 81 experimental runs were conducted, and the surface roughness parameter arithmetic average was measured offline using a surface finish analyzer. Subsequently, the results were analyzed applying three methods—traditional analysis, Pareto ANOVA, and the Taguchi method. The results indicate that the amount of cutting fluid has a negligible effect on surface finish. However, the interaction between the two major contributors—cutting speed and feed rate—is influenced noticeably by the amount of cutting fluid. 2011 Journal Article http://hdl.handle.net/20.500.11937/20837 10.4028/www.scientific.net/AMM.87.170 Trans Tech Publications Ltd. restricted
spellingShingle Flood turning
dry turning
Pareto ANOVA analysis
Taguchi method
cutting conditions
Islam, Mohammad Nazrul
Effect of Amount of Cutting Fluid on Surface Finish of Turned Parts
title Effect of Amount of Cutting Fluid on Surface Finish of Turned Parts
title_full Effect of Amount of Cutting Fluid on Surface Finish of Turned Parts
title_fullStr Effect of Amount of Cutting Fluid on Surface Finish of Turned Parts
title_full_unstemmed Effect of Amount of Cutting Fluid on Surface Finish of Turned Parts
title_short Effect of Amount of Cutting Fluid on Surface Finish of Turned Parts
title_sort effect of amount of cutting fluid on surface finish of turned parts
topic Flood turning
dry turning
Pareto ANOVA analysis
Taguchi method
cutting conditions
url http://hdl.handle.net/20.500.11937/20837