Matches in SemOpenAlex for { <https://semopenalex.org/work/W2068924806> ?p ?o ?g. }
Showing items 1 to 89 of
89
with 100 items per page.
- W2068924806 endingPage "240" @default.
- W2068924806 startingPage "231" @default.
- W2068924806 abstract "The influence of the microstructural constituents and of the microstructure itself on the wear resistance of cobalt based hardfacing alloys is reviewed. To a first approximation, the hard carbide particles provide resistance to abrasion, whereas the matrix confers cohesion and toughness. Carbide size relative to the width of the abrasive grooves is of great importance: if these dimensions are similar, carbides can be removed completely in the wear debris. The strength of the bonding at the carbide/matrix interface also strongly influences wear. During low stress abrasion, an increase of carbide volume fraction produces a corresponding improvement in wear resistance. The ability of the matrix to work harden and the related fcc → hcp phase transformation strongly affect wear resistance. Alloying elements which reduce the stacking fault energy of the matrix (hcp stabilisers) increase the work hardening rate and thus the resistance to galling and the erosion resistance. Silicon and manganese have been found to be most effective in stabilising topologically close packed hard intermetallic second phases, which provide good metal-metal wear resistance. These principles have been applied in the development of alternative iron based alloys with matrixes similar in composition to duplex stainless steels. Initial trials have indicated a good potential to replace the more expensive cobalt based alloys in some wear and corrosion resistant applications." @default.
- W2068924806 created "2016-06-24" @default.
- W2068924806 creator A5003525970 @default.
- W2068924806 creator A5024988803 @default.
- W2068924806 date "1993-01-01" @default.
- W2068924806 modified "2023-09-27" @default.
- W2068924806 title "MICROSTRUCTURE, WEAR RESISTANCE, AND STABILITY OF COBALT BASED AND ALTERNATIVE IRON BASED HARDFACING ALLOYS" @default.
- W2068924806 cites W1966433666 @default.
- W2068924806 cites W1984214941 @default.
- W2068924806 cites W1985978585 @default.
- W2068924806 cites W2008301729 @default.
- W2068924806 cites W2019565831 @default.
- W2068924806 cites W2021667194 @default.
- W2068924806 cites W2021924303 @default.
- W2068924806 cites W2023556089 @default.
- W2068924806 cites W2025946007 @default.
- W2068924806 cites W2026094229 @default.
- W2068924806 cites W2028176801 @default.
- W2068924806 cites W2030524074 @default.
- W2068924806 cites W2033635015 @default.
- W2068924806 cites W2043461134 @default.
- W2068924806 cites W2045363428 @default.
- W2068924806 cites W2045700656 @default.
- W2068924806 cites W2051416290 @default.
- W2068924806 cites W2054474146 @default.
- W2068924806 cites W2065151970 @default.
- W2068924806 cites W2069675613 @default.
- W2068924806 cites W2078215744 @default.
- W2068924806 cites W2079907063 @default.
- W2068924806 cites W2156474368 @default.
- W2068924806 doi "https://doi.org/10.1179/sur.1993.9.3.231" @default.
- W2068924806 hasPublicationYear "1993" @default.
- W2068924806 type Work @default.
- W2068924806 sameAs 2068924806 @default.
- W2068924806 citedByCount "40" @default.
- W2068924806 countsByYear W20689248062014 @default.
- W2068924806 countsByYear W20689248062016 @default.
- W2068924806 countsByYear W20689248062017 @default.
- W2068924806 countsByYear W20689248062018 @default.
- W2068924806 countsByYear W20689248062019 @default.
- W2068924806 countsByYear W20689248062020 @default.
- W2068924806 countsByYear W20689248062021 @default.
- W2068924806 countsByYear W20689248062022 @default.
- W2068924806 crossrefType "journal-article" @default.
- W2068924806 hasAuthorship W2068924806A5003525970 @default.
- W2068924806 hasAuthorship W2068924806A5024988803 @default.
- W2068924806 hasConcept C159985019 @default.
- W2068924806 hasConcept C191897082 @default.
- W2068924806 hasConcept C192562407 @default.
- W2068924806 hasConcept C22372946 @default.
- W2068924806 hasConcept C2776704300 @default.
- W2068924806 hasConcept C2777240487 @default.
- W2068924806 hasConcept C2780957350 @default.
- W2068924806 hasConcept C515602321 @default.
- W2068924806 hasConcept C5335593 @default.
- W2068924806 hasConcept C87976508 @default.
- W2068924806 hasConcept C99595764 @default.
- W2068924806 hasConceptScore W2068924806C159985019 @default.
- W2068924806 hasConceptScore W2068924806C191897082 @default.
- W2068924806 hasConceptScore W2068924806C192562407 @default.
- W2068924806 hasConceptScore W2068924806C22372946 @default.
- W2068924806 hasConceptScore W2068924806C2776704300 @default.
- W2068924806 hasConceptScore W2068924806C2777240487 @default.
- W2068924806 hasConceptScore W2068924806C2780957350 @default.
- W2068924806 hasConceptScore W2068924806C515602321 @default.
- W2068924806 hasConceptScore W2068924806C5335593 @default.
- W2068924806 hasConceptScore W2068924806C87976508 @default.
- W2068924806 hasConceptScore W2068924806C99595764 @default.
- W2068924806 hasIssue "3" @default.
- W2068924806 hasLocation W20689248061 @default.
- W2068924806 hasOpenAccess W2068924806 @default.
- W2068924806 hasPrimaryLocation W20689248061 @default.
- W2068924806 hasRelatedWork W107147792 @default.
- W2068924806 hasRelatedWork W1964221216 @default.
- W2068924806 hasRelatedWork W1967163153 @default.
- W2068924806 hasRelatedWork W2182837095 @default.
- W2068924806 hasRelatedWork W2292565045 @default.
- W2068924806 hasRelatedWork W2338758440 @default.
- W2068924806 hasRelatedWork W2357267304 @default.
- W2068924806 hasRelatedWork W2358419334 @default.
- W2068924806 hasRelatedWork W3044019627 @default.
- W2068924806 hasRelatedWork W3107442106 @default.
- W2068924806 hasVolume "9" @default.
- W2068924806 isParatext "false" @default.
- W2068924806 isRetracted "false" @default.
- W2068924806 magId "2068924806" @default.
- W2068924806 workType "article" @default.