Matches in SemOpenAlex for { <https://semopenalex.org/work/W1996751177> ?p ?o ?g. }
Showing items 1 to 72 of
72
with 100 items per page.
- W1996751177 endingPage "27" @default.
- W1996751177 startingPage "18" @default.
- W1996751177 abstract "In recent years, nanocrystalline materials have drawn the attention of researchers in the field of materials science engineering due to its enhanced mechanical properties such as high strength and high hardness. However, the cost of nanocrystalline materials is prohibitively high, primarily due to the expensive equipments used and the low output. Recently, researchers have attempted to produce nanocrystalline materials through machining. This research work focuses on the production of nanocrystalline materials through machining and high energy ball milling route. Nanocrystalline materials were generated through oblique machining by the large strain plastic deformation imposed by the cutting tool during machining. Stainless Steel 316L (SS) bar of 50mm diameter and length 300mm was chosen for this study. Machining parameters such as speed, feed depth of cut and rake angle were chosen under different cutting conditions. Taguchi L16 orthogonal array was adopted and optimized the machining parameters. Coated tungsten carbide cutting tool was used for the study. Machined chips were collected and cleaned using ultrasonic machine for microstructure analysis. These chips were characterized using Scanning electron microscope (SEM) and X-ray Diffraction (XRD) analysis. From the optimized machining conditions chips were generated and further processed using the high energy ball mill for preparing nanocrystalline powders. High energy ball mill parameters such as milling speed, milling time and ball to powder ratio were optimized using taguchi method. The milled powders were then characterized using Transmission electron microscope (TEM), SEM and XRD. Results show that the milled powders were in the range of 20 – 50 nm.Keywords: Nanocrystalline materials, Machining, High energy ball milling, Optimization" @default.
- W1996751177 created "2016-06-24" @default.
- W1996751177 creator A5027400680 @default.
- W1996751177 creator A5031132440 @default.
- W1996751177 creator A5042275339 @default.
- W1996751177 date "2018-03-28" @default.
- W1996751177 modified "2023-10-16" @default.
- W1996751177 title "Parametric optimization for the low cost production of nanostructure stainless steel powder" @default.
- W1996751177 cites W2005092366 @default.
- W1996751177 cites W2020287405 @default.
- W1996751177 cites W2023778608 @default.
- W1996751177 cites W2040849601 @default.
- W1996751177 cites W2051217777 @default.
- W1996751177 cites W2092997980 @default.
- W1996751177 cites W2115193614 @default.
- W1996751177 cites W2126960548 @default.
- W1996751177 cites W2150768641 @default.
- W1996751177 doi "https://doi.org/10.4314/ijest.v5i1.2" @default.
- W1996751177 hasPublicationYear "2018" @default.
- W1996751177 type Work @default.
- W1996751177 sameAs 1996751177 @default.
- W1996751177 citedByCount "0" @default.
- W1996751177 crossrefType "journal-article" @default.
- W1996751177 hasAuthorship W1996751177A5027400680 @default.
- W1996751177 hasAuthorship W1996751177A5031132440 @default.
- W1996751177 hasAuthorship W1996751177A5042275339 @default.
- W1996751177 hasBestOaLocation W19967511771 @default.
- W1996751177 hasConcept C132186339 @default.
- W1996751177 hasConcept C140676511 @default.
- W1996751177 hasConcept C159985019 @default.
- W1996751177 hasConcept C171250308 @default.
- W1996751177 hasConcept C191897082 @default.
- W1996751177 hasConcept C192562407 @default.
- W1996751177 hasConcept C26771246 @default.
- W1996751177 hasConcept C2779571069 @default.
- W1996751177 hasConcept C2781422231 @default.
- W1996751177 hasConcept C523214423 @default.
- W1996751177 hasConcept C83469408 @default.
- W1996751177 hasConcept C87976508 @default.
- W1996751177 hasConceptScore W1996751177C132186339 @default.
- W1996751177 hasConceptScore W1996751177C140676511 @default.
- W1996751177 hasConceptScore W1996751177C159985019 @default.
- W1996751177 hasConceptScore W1996751177C171250308 @default.
- W1996751177 hasConceptScore W1996751177C191897082 @default.
- W1996751177 hasConceptScore W1996751177C192562407 @default.
- W1996751177 hasConceptScore W1996751177C26771246 @default.
- W1996751177 hasConceptScore W1996751177C2779571069 @default.
- W1996751177 hasConceptScore W1996751177C2781422231 @default.
- W1996751177 hasConceptScore W1996751177C523214423 @default.
- W1996751177 hasConceptScore W1996751177C83469408 @default.
- W1996751177 hasConceptScore W1996751177C87976508 @default.
- W1996751177 hasIssue "1" @default.
- W1996751177 hasLocation W19967511771 @default.
- W1996751177 hasOpenAccess W1996751177 @default.
- W1996751177 hasPrimaryLocation W19967511771 @default.
- W1996751177 hasRelatedWork W1996751177 @default.
- W1996751177 hasRelatedWork W2054243438 @default.
- W1996751177 hasRelatedWork W2058945371 @default.
- W1996751177 hasRelatedWork W2068113961 @default.
- W1996751177 hasRelatedWork W2351679394 @default.
- W1996751177 hasRelatedWork W2483054628 @default.
- W1996751177 hasRelatedWork W2555630114 @default.
- W1996751177 hasRelatedWork W2774807147 @default.
- W1996751177 hasRelatedWork W4281724516 @default.
- W1996751177 hasRelatedWork W4284958880 @default.
- W1996751177 hasVolume "5" @default.
- W1996751177 isParatext "false" @default.
- W1996751177 isRetracted "false" @default.
- W1996751177 magId "1996751177" @default.
- W1996751177 workType "article" @default.