Cargando…

A novel study on the influence of graphene-based nanofluid concentrations on the response characteristics and surface-integrity of Hastelloy C-276 during minimum quantity lubrication

In present investigation, the impact of nanoparticle concentration on the machining accomplishment of Hastelloy C-276 has been examined in turning operation. The outputs like temperature, surface roughness, chip reduction coefficient (CRC), tool wear, and friction coefficient along with angle of she...

Descripción completa

Detalles Bibliográficos
Autores principales: Singh, Gurpreet, Sharma, Shubham, Seikh, A.H., Li, Changhe, Zhang, Yanbin, Rajkumar, S., Kumar, Abhinav, Singh, Rajesh, Eldin, Sayed M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10558325/
https://www.ncbi.nlm.nih.gov/pubmed/37809367
http://dx.doi.org/10.1016/j.heliyon.2023.e19175
_version_ 1785117250390327296
author Singh, Gurpreet
Sharma, Shubham
Seikh, A.H.
Li, Changhe
Zhang, Yanbin
Rajkumar, S.
Kumar, Abhinav
Singh, Rajesh
Eldin, Sayed M.
author_facet Singh, Gurpreet
Sharma, Shubham
Seikh, A.H.
Li, Changhe
Zhang, Yanbin
Rajkumar, S.
Kumar, Abhinav
Singh, Rajesh
Eldin, Sayed M.
author_sort Singh, Gurpreet
collection PubMed
description In present investigation, the impact of nanoparticle concentration on the machining accomplishment of Hastelloy C-276 has been examined in turning operation. The outputs like temperature, surface roughness, chip reduction coefficient (CRC), tool wear, and friction coefficient along with angle of shear have been estimated. The graphene nanoparticles (GnP) have been blended into soybean oil in distinct weight/volume ratio of 0.5, 1 and 1.5%. The experimental observations revealed that higher concentration of nanoparticles has enhanced the heat carrying capacity of amalgamation by 12.28%, surface roughness (27.88%), Temperature (16.8%), tool wear (22.5%), CRC (17.5%), coefficient of friction (46.36%) and shear angle (15%). Scanning electron microscopy identified nose wear, abrasion, adhesion and loss of tool coating. Further, lower tool wear has been noticed at 1.5% concentration, while the complete failure of insert has been reported during 116 m/min, 0.246 mm/rev having 0.5% concentration. ANOVA results exhibited that surface roughness is highly influenced by speed rate (41.66%) trailed by feed rate (28.16%) and then after concentration (13.68%). Temperature is dominated by cutting speed (69.31%), concentration (14.53%) and feed rate (13.25%). Likewise, tool wear was majorly altered by cutting speed (67.2%) accompanied by feed rate (23.90%) and thirdly concentration of GnP (5.03%).
format Online
Article
Text
id pubmed-10558325
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-105583252023-10-08 A novel study on the influence of graphene-based nanofluid concentrations on the response characteristics and surface-integrity of Hastelloy C-276 during minimum quantity lubrication Singh, Gurpreet Sharma, Shubham Seikh, A.H. Li, Changhe Zhang, Yanbin Rajkumar, S. Kumar, Abhinav Singh, Rajesh Eldin, Sayed M. Heliyon Research Article In present investigation, the impact of nanoparticle concentration on the machining accomplishment of Hastelloy C-276 has been examined in turning operation. The outputs like temperature, surface roughness, chip reduction coefficient (CRC), tool wear, and friction coefficient along with angle of shear have been estimated. The graphene nanoparticles (GnP) have been blended into soybean oil in distinct weight/volume ratio of 0.5, 1 and 1.5%. The experimental observations revealed that higher concentration of nanoparticles has enhanced the heat carrying capacity of amalgamation by 12.28%, surface roughness (27.88%), Temperature (16.8%), tool wear (22.5%), CRC (17.5%), coefficient of friction (46.36%) and shear angle (15%). Scanning electron microscopy identified nose wear, abrasion, adhesion and loss of tool coating. Further, lower tool wear has been noticed at 1.5% concentration, while the complete failure of insert has been reported during 116 m/min, 0.246 mm/rev having 0.5% concentration. ANOVA results exhibited that surface roughness is highly influenced by speed rate (41.66%) trailed by feed rate (28.16%) and then after concentration (13.68%). Temperature is dominated by cutting speed (69.31%), concentration (14.53%) and feed rate (13.25%). Likewise, tool wear was majorly altered by cutting speed (67.2%) accompanied by feed rate (23.90%) and thirdly concentration of GnP (5.03%). Elsevier 2023-08-22 /pmc/articles/PMC10558325/ /pubmed/37809367 http://dx.doi.org/10.1016/j.heliyon.2023.e19175 Text en © 2023 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Singh, Gurpreet
Sharma, Shubham
Seikh, A.H.
Li, Changhe
Zhang, Yanbin
Rajkumar, S.
Kumar, Abhinav
Singh, Rajesh
Eldin, Sayed M.
A novel study on the influence of graphene-based nanofluid concentrations on the response characteristics and surface-integrity of Hastelloy C-276 during minimum quantity lubrication
title A novel study on the influence of graphene-based nanofluid concentrations on the response characteristics and surface-integrity of Hastelloy C-276 during minimum quantity lubrication
title_full A novel study on the influence of graphene-based nanofluid concentrations on the response characteristics and surface-integrity of Hastelloy C-276 during minimum quantity lubrication
title_fullStr A novel study on the influence of graphene-based nanofluid concentrations on the response characteristics and surface-integrity of Hastelloy C-276 during minimum quantity lubrication
title_full_unstemmed A novel study on the influence of graphene-based nanofluid concentrations on the response characteristics and surface-integrity of Hastelloy C-276 during minimum quantity lubrication
title_short A novel study on the influence of graphene-based nanofluid concentrations on the response characteristics and surface-integrity of Hastelloy C-276 during minimum quantity lubrication
title_sort novel study on the influence of graphene-based nanofluid concentrations on the response characteristics and surface-integrity of hastelloy c-276 during minimum quantity lubrication
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10558325/
https://www.ncbi.nlm.nih.gov/pubmed/37809367
http://dx.doi.org/10.1016/j.heliyon.2023.e19175
work_keys_str_mv AT singhgurpreet anovelstudyontheinfluenceofgraphenebasednanofluidconcentrationsontheresponsecharacteristicsandsurfaceintegrityofhastelloyc276duringminimumquantitylubrication
AT sharmashubham anovelstudyontheinfluenceofgraphenebasednanofluidconcentrationsontheresponsecharacteristicsandsurfaceintegrityofhastelloyc276duringminimumquantitylubrication
AT seikhah anovelstudyontheinfluenceofgraphenebasednanofluidconcentrationsontheresponsecharacteristicsandsurfaceintegrityofhastelloyc276duringminimumquantitylubrication
AT lichanghe anovelstudyontheinfluenceofgraphenebasednanofluidconcentrationsontheresponsecharacteristicsandsurfaceintegrityofhastelloyc276duringminimumquantitylubrication
AT zhangyanbin anovelstudyontheinfluenceofgraphenebasednanofluidconcentrationsontheresponsecharacteristicsandsurfaceintegrityofhastelloyc276duringminimumquantitylubrication
AT rajkumars anovelstudyontheinfluenceofgraphenebasednanofluidconcentrationsontheresponsecharacteristicsandsurfaceintegrityofhastelloyc276duringminimumquantitylubrication
AT kumarabhinav anovelstudyontheinfluenceofgraphenebasednanofluidconcentrationsontheresponsecharacteristicsandsurfaceintegrityofhastelloyc276duringminimumquantitylubrication
AT singhrajesh anovelstudyontheinfluenceofgraphenebasednanofluidconcentrationsontheresponsecharacteristicsandsurfaceintegrityofhastelloyc276duringminimumquantitylubrication
AT eldinsayedm anovelstudyontheinfluenceofgraphenebasednanofluidconcentrationsontheresponsecharacteristicsandsurfaceintegrityofhastelloyc276duringminimumquantitylubrication
AT singhgurpreet novelstudyontheinfluenceofgraphenebasednanofluidconcentrationsontheresponsecharacteristicsandsurfaceintegrityofhastelloyc276duringminimumquantitylubrication
AT sharmashubham novelstudyontheinfluenceofgraphenebasednanofluidconcentrationsontheresponsecharacteristicsandsurfaceintegrityofhastelloyc276duringminimumquantitylubrication
AT seikhah novelstudyontheinfluenceofgraphenebasednanofluidconcentrationsontheresponsecharacteristicsandsurfaceintegrityofhastelloyc276duringminimumquantitylubrication
AT lichanghe novelstudyontheinfluenceofgraphenebasednanofluidconcentrationsontheresponsecharacteristicsandsurfaceintegrityofhastelloyc276duringminimumquantitylubrication
AT zhangyanbin novelstudyontheinfluenceofgraphenebasednanofluidconcentrationsontheresponsecharacteristicsandsurfaceintegrityofhastelloyc276duringminimumquantitylubrication
AT rajkumars novelstudyontheinfluenceofgraphenebasednanofluidconcentrationsontheresponsecharacteristicsandsurfaceintegrityofhastelloyc276duringminimumquantitylubrication
AT kumarabhinav novelstudyontheinfluenceofgraphenebasednanofluidconcentrationsontheresponsecharacteristicsandsurfaceintegrityofhastelloyc276duringminimumquantitylubrication
AT singhrajesh novelstudyontheinfluenceofgraphenebasednanofluidconcentrationsontheresponsecharacteristicsandsurfaceintegrityofhastelloyc276duringminimumquantitylubrication
AT eldinsayedm novelstudyontheinfluenceofgraphenebasednanofluidconcentrationsontheresponsecharacteristicsandsurfaceintegrityofhastelloyc276duringminimumquantitylubrication