Experimental analysis of process parameters in drilling nimonic C263 alloy under nano fluid mixed MQL environment
Nimonic C263 is a super alloy and it is difficult to cut. As this alloy possess high proportion of chromium, cobalt, and molybdenum, which fortify the material by solution hardening, which inhibits the dislocation movement, resulting in higher plastic deformation. In this research, an attempt has be...
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doaj-4d5edb6bb9bf454ba185157082108e332021-01-15T10:19:45ZengEDP SciencesManufacturing Review2265-42242021-01-018210.1051/mfreview/2020039mfreview200044Experimental analysis of process parameters in drilling nimonic C263 alloy under nano fluid mixed MQL environmentEzilarasan Chakaravarthy0Nagaraj Meenaskshi Sundaram1https://orcid.org/0000-0003-1130-1784Kumar A. John Presin2Velayudham A.3Betala Rishab4Department of Mechatronics Engineering, Chennai Institute of TechnologyDepartment of Mechanical Engineering, MNM Jain Engineering CollegeDepartment of Mechanical Engineering, Hindustan Institute of Technology and Science, PadurFormer Scientist F, CVRDE and Visiting Professor, Department of Manufacturing Engineering, Anna universityARE PEE Polymer, GummidipoondiNimonic C263 is a super alloy and it is difficult to cut. As this alloy possess high proportion of chromium, cobalt, and molybdenum, which fortify the material by solution hardening, which inhibits the dislocation movement, resulting in higher plastic deformation. In this research, an attempt has been made to model, analysis and investigate the machining characteristics such as thrust force, temperature at drill cutting edge, flank wear and surface finish during drilling of this alloy using silver nano fluid mixed Minimum Quantity Lubrication (MQL) environment. Residual stress at various combinations of process parameters was also observed and discussed. RSM based empirical models of the process parameters and optimization of multi response was developed. Thrust force, Temperature at drill cutting edge, surface roughness and tool wear affected by feed rate (percentage of contribution-60%), spindle speed (percentage of contribution-88.63%), spindle speed (percentage of contribution-71.42%) and feed rate (percentage of contribution-67.76%) respectively followed by other parameters.https://mfr.edp-open.org/articles/mfreview/full_html/2021/01/mfreview200044/mfreview200044.htmlnimonic c263thrust forcetemperature at drill cutting edgesurface roughnessflank wearnano fluidmql |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Ezilarasan Chakaravarthy Nagaraj Meenaskshi Sundaram Kumar A. John Presin Velayudham A. Betala Rishab |
spellingShingle |
Ezilarasan Chakaravarthy Nagaraj Meenaskshi Sundaram Kumar A. John Presin Velayudham A. Betala Rishab Experimental analysis of process parameters in drilling nimonic C263 alloy under nano fluid mixed MQL environment Manufacturing Review nimonic c263 thrust force temperature at drill cutting edge surface roughness flank wear nano fluid mql |
author_facet |
Ezilarasan Chakaravarthy Nagaraj Meenaskshi Sundaram Kumar A. John Presin Velayudham A. Betala Rishab |
author_sort |
Ezilarasan Chakaravarthy |
title |
Experimental analysis of process parameters in drilling nimonic C263 alloy under nano fluid mixed MQL environment |
title_short |
Experimental analysis of process parameters in drilling nimonic C263 alloy under nano fluid mixed MQL environment |
title_full |
Experimental analysis of process parameters in drilling nimonic C263 alloy under nano fluid mixed MQL environment |
title_fullStr |
Experimental analysis of process parameters in drilling nimonic C263 alloy under nano fluid mixed MQL environment |
title_full_unstemmed |
Experimental analysis of process parameters in drilling nimonic C263 alloy under nano fluid mixed MQL environment |
title_sort |
experimental analysis of process parameters in drilling nimonic c263 alloy under nano fluid mixed mql environment |
publisher |
EDP Sciences |
series |
Manufacturing Review |
issn |
2265-4224 |
publishDate |
2021-01-01 |
description |
Nimonic C263 is a super alloy and it is difficult to cut. As this alloy possess high proportion of chromium, cobalt, and molybdenum, which fortify the material by solution hardening, which inhibits the dislocation movement, resulting in higher plastic deformation. In this research, an attempt has been made to model, analysis and investigate the machining characteristics such as thrust force, temperature at drill cutting edge, flank wear and surface finish during drilling of this alloy using silver nano fluid mixed Minimum Quantity Lubrication (MQL) environment. Residual stress at various combinations of process parameters was also observed and discussed. RSM based empirical models of the process parameters and optimization of multi response was developed. Thrust force, Temperature at drill cutting edge, surface roughness and tool wear affected by feed rate (percentage of contribution-60%), spindle speed (percentage of contribution-88.63%), spindle speed (percentage of contribution-71.42%) and feed rate (percentage of contribution-67.76%) respectively followed by other parameters. |
topic |
nimonic c263 thrust force temperature at drill cutting edge surface roughness flank wear nano fluid mql |
url |
https://mfr.edp-open.org/articles/mfreview/full_html/2021/01/mfreview200044/mfreview200044.html |
work_keys_str_mv |
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