Matches in SemOpenAlex for { <https://semopenalex.org/work/W2742710974> ?p ?o ?g. }
- W2742710974 endingPage "1061" @default.
- W2742710974 startingPage "1051" @default.
- W2742710974 abstract "Surface alloying is necessary to enhance the surface features of machine elements. In the present study, feasibility of micro-electric discharge machining (micro-EDM) process for surface alloying has been investigated. Experiments are conducted on Nickel sheets using tool of Ti6Al4V with EDM oil and kerosene as dielectric. The surface modification takes place by spark discharges on localized regions of the work piece and the tool surface causing melting of tool and work piece, disassociation of dielectric, alloying, and quenching in the electrolyte. The samples were analyzed by field emission scanning electron microscope equipped with energy-dispersive X-ray spectroscopy, microhardness testing machine, and X-ray diffraction. Recast layers obtained have distinct structure and composition as compared to the work piece. Average recast layer thickness varied from 10.72 to 69.8 µm in case of EDM oil and from 13.5 to 31.6 µm in case of kerosene by varying voltage, pulse duration (on time) and frequency during the experiment. The microhardness of the machined surfaces was obtained in a wide range of 161.61–338.25 HV whereas the microhardness of unaffected base metal was 132.25 HV. Titanium carbide (TiC) was deposited and consequently there was improvement in the hardness of the work piece." @default.
- W2742710974 created "2017-08-17" @default.
- W2742710974 creator A5019560939 @default.
- W2742710974 creator A5027259244 @default.
- W2742710974 creator A5028825891 @default.
- W2742710974 creator A5040586779 @default.
- W2742710974 creator A5064855384 @default.
- W2742710974 creator A5076609758 @default.
- W2742710974 creator A5081741375 @default.
- W2742710974 creator A5091828834 @default.
- W2742710974 date "2017-08-30" @default.
- W2742710974 modified "2023-09-26" @default.
- W2742710974 title "Surface alloying of miniature components by micro-electrical discharge process" @default.
- W2742710974 cites W1966270984 @default.
- W2742710974 cites W1970947501 @default.
- W2742710974 cites W1985944454 @default.
- W2742710974 cites W1995305811 @default.
- W2742710974 cites W1995641417 @default.
- W2742710974 cites W2002024948 @default.
- W2742710974 cites W2004815234 @default.
- W2742710974 cites W2018194676 @default.
- W2742710974 cites W2024457599 @default.
- W2742710974 cites W2026196526 @default.
- W2742710974 cites W2028642400 @default.
- W2742710974 cites W2039039744 @default.
- W2742710974 cites W2041879580 @default.
- W2742710974 cites W2047342804 @default.
- W2742710974 cites W2051387573 @default.
- W2742710974 cites W2056849530 @default.
- W2742710974 cites W2057726796 @default.
- W2742710974 cites W2070928037 @default.
- W2742710974 cites W2071612432 @default.
- W2742710974 cites W2072727290 @default.
- W2742710974 cites W2073907366 @default.
- W2742710974 cites W2074972430 @default.
- W2742710974 cites W2078717945 @default.
- W2742710974 cites W2098538965 @default.
- W2742710974 cites W2124945541 @default.
- W2742710974 cites W2132803603 @default.
- W2742710974 cites W2277172710 @default.
- W2742710974 cites W2299018039 @default.
- W2742710974 cites W2307219947 @default.
- W2742710974 cites W2402057148 @default.
- W2742710974 cites W2437165851 @default.
- W2742710974 cites W2469947780 @default.
- W2742710974 cites W2478848004 @default.
- W2742710974 cites W2506943860 @default.
- W2742710974 cites W2510084439 @default.
- W2742710974 cites W2514567670 @default.
- W2742710974 cites W2528229408 @default.
- W2742710974 cites W2528450335 @default.
- W2742710974 cites W2530189602 @default.
- W2742710974 cites W2549478704 @default.
- W2742710974 cites W4240721084 @default.
- W2742710974 cites W889576465 @default.
- W2742710974 doi "https://doi.org/10.1080/10426914.2017.1364755" @default.
- W2742710974 hasPublicationYear "2017" @default.
- W2742710974 type Work @default.
- W2742710974 sameAs 2742710974 @default.
- W2742710974 citedByCount "30" @default.
- W2742710974 countsByYear W27427109742017 @default.
- W2742710974 countsByYear W27427109742018 @default.
- W2742710974 countsByYear W27427109742019 @default.
- W2742710974 countsByYear W27427109742020 @default.
- W2742710974 countsByYear W27427109742021 @default.
- W2742710974 countsByYear W27427109742022 @default.
- W2742710974 countsByYear W27427109742023 @default.
- W2742710974 crossrefType "journal-article" @default.
- W2742710974 hasAuthorship W2742710974A5019560939 @default.
- W2742710974 hasAuthorship W2742710974A5027259244 @default.
- W2742710974 hasAuthorship W2742710974A5028825891 @default.
- W2742710974 hasAuthorship W2742710974A5040586779 @default.
- W2742710974 hasAuthorship W2742710974A5064855384 @default.
- W2742710974 hasAuthorship W2742710974A5076609758 @default.
- W2742710974 hasAuthorship W2742710974A5081741375 @default.
- W2742710974 hasAuthorship W2742710974A5091828834 @default.
- W2742710974 hasConcept C115537861 @default.
- W2742710974 hasConcept C120665830 @default.
- W2742710974 hasConcept C121332964 @default.
- W2742710974 hasConcept C121745418 @default.
- W2742710974 hasConcept C127413603 @default.
- W2742710974 hasConcept C133386390 @default.
- W2742710974 hasConcept C140075996 @default.
- W2742710974 hasConcept C159985019 @default.
- W2742710974 hasConcept C165720898 @default.
- W2742710974 hasConcept C191897082 @default.
- W2742710974 hasConcept C192562407 @default.
- W2742710974 hasConcept C26771246 @default.
- W2742710974 hasConcept C2776001022 @default.
- W2742710974 hasConcept C2776363543 @default.
- W2742710974 hasConcept C42360764 @default.
- W2742710974 hasConcept C49040817 @default.
- W2742710974 hasConcept C523214423 @default.
- W2742710974 hasConcept C5335593 @default.
- W2742710974 hasConcept C87976508 @default.
- W2742710974 hasConcept C91881484 @default.
- W2742710974 hasConceptScore W2742710974C115537861 @default.
- W2742710974 hasConceptScore W2742710974C120665830 @default.