Matches in SemOpenAlex for { <https://semopenalex.org/work/W1981382331> ?p ?o ?g. }
- W1981382331 endingPage "108" @default.
- W1981382331 startingPage "100" @default.
- W1981382331 abstract "Abstract In this study, σ K α , β production cross-sections, K β / K α , KLM/ K α and KMM/ K β RAE intensity ratios of Ni and σ K α , σ K β 1 , 2 production cross-sections, K β1,3 / K α , K β2,4 / K α , K β2,4 / K β1,3 , KLM/ K α and KMM/ K β RAE intensity ratios of Mo have been measured in pure metals and in superalloy specimens. The samples were excited by 59.5 keV γ-rays from a 241 Am annular radioactive source. K X-rays emitted by samples were counted by an Ultra-LEGe detector with a resolution of 150 eV at 5.9 keV. The effect of alloying on the fluorescence parameters of Ni and Mo, phase structure, and corrosion behavior were investigated. The X-ray fluorescence parameters of Ni and Mo in superalloys indicate significant differences with respect to the pure metals. These differences are attributed to the reorganization of valence shell electrons and/or charge transfer phenomena in superalloys." @default.
- W1981382331 created "2016-06-24" @default.
- W1981382331 creator A5001994061 @default.
- W1981382331 creator A5015900325 @default.
- W1981382331 creator A5052041224 @default.
- W1981382331 creator A5079553108 @default.
- W1981382331 creator A5083857316 @default.
- W1981382331 creator A5087303429 @default.
- W1981382331 date "2010-11-01" @default.
- W1981382331 modified "2023-10-18" @default.
- W1981382331 title "Alloying effect on K X-ray intensity ratios, K X-ray production cross-sections and radiative Auger ratios in superalloys constitute from Al, Ni and Mo elements" @default.
- W1981382331 cites W1578856293 @default.
- W1981382331 cites W1963576964 @default.
- W1981382331 cites W1965050599 @default.
- W1981382331 cites W1978093068 @default.
- W1981382331 cites W1981704871 @default.
- W1981382331 cites W1987677776 @default.
- W1981382331 cites W1995396524 @default.
- W1981382331 cites W1996660675 @default.
- W1981382331 cites W2013511339 @default.
- W1981382331 cites W2021263409 @default.
- W1981382331 cites W2021419344 @default.
- W1981382331 cites W2022192200 @default.
- W1981382331 cites W2025143460 @default.
- W1981382331 cites W2026575513 @default.
- W1981382331 cites W2029729734 @default.
- W1981382331 cites W2030331493 @default.
- W1981382331 cites W2033368319 @default.
- W1981382331 cites W2051317708 @default.
- W1981382331 cites W2058478551 @default.
- W1981382331 cites W2066481731 @default.
- W1981382331 cites W2076968518 @default.
- W1981382331 cites W2080935339 @default.
- W1981382331 cites W2082663110 @default.
- W1981382331 cites W2085827401 @default.
- W1981382331 cites W2086417178 @default.
- W1981382331 cites W2086451246 @default.
- W1981382331 cites W2317539916 @default.
- W1981382331 cites W2319187293 @default.
- W1981382331 cites W4237112142 @default.
- W1981382331 cites W1976245258 @default.
- W1981382331 doi "https://doi.org/10.1016/j.chemphys.2010.08.021" @default.
- W1981382331 hasPublicationYear "2010" @default.
- W1981382331 type Work @default.
- W1981382331 sameAs 1981382331 @default.
- W1981382331 citedByCount "16" @default.
- W1981382331 countsByYear W19813823312013 @default.
- W1981382331 countsByYear W19813823312014 @default.
- W1981382331 countsByYear W19813823312016 @default.
- W1981382331 countsByYear W19813823312017 @default.
- W1981382331 countsByYear W19813823312018 @default.
- W1981382331 countsByYear W19813823312019 @default.
- W1981382331 countsByYear W19813823312020 @default.
- W1981382331 countsByYear W19813823312022 @default.
- W1981382331 countsByYear W19813823312023 @default.
- W1981382331 crossrefType "journal-article" @default.
- W1981382331 hasAuthorship W1981382331A5001994061 @default.
- W1981382331 hasAuthorship W1981382331A5015900325 @default.
- W1981382331 hasAuthorship W1981382331A5052041224 @default.
- W1981382331 hasAuthorship W1981382331A5079553108 @default.
- W1981382331 hasAuthorship W1981382331A5083857316 @default.
- W1981382331 hasAuthorship W1981382331A5087303429 @default.
- W1981382331 hasConcept C107872376 @default.
- W1981382331 hasConcept C113196181 @default.
- W1981382331 hasConcept C120665830 @default.
- W1981382331 hasConcept C121332964 @default.
- W1981382331 hasConcept C178790620 @default.
- W1981382331 hasConcept C184779094 @default.
- W1981382331 hasConcept C185592680 @default.
- W1981382331 hasConcept C207055975 @default.
- W1981382331 hasConcept C2779328170 @default.
- W1981382331 hasConcept C2780026712 @default.
- W1981382331 hasConcept C2780646311 @default.
- W1981382331 hasConcept C74902906 @default.
- W1981382331 hasConcept C93038891 @default.
- W1981382331 hasConceptScore W1981382331C107872376 @default.
- W1981382331 hasConceptScore W1981382331C113196181 @default.
- W1981382331 hasConceptScore W1981382331C120665830 @default.
- W1981382331 hasConceptScore W1981382331C121332964 @default.
- W1981382331 hasConceptScore W1981382331C178790620 @default.
- W1981382331 hasConceptScore W1981382331C184779094 @default.
- W1981382331 hasConceptScore W1981382331C185592680 @default.
- W1981382331 hasConceptScore W1981382331C207055975 @default.
- W1981382331 hasConceptScore W1981382331C2779328170 @default.
- W1981382331 hasConceptScore W1981382331C2780026712 @default.
- W1981382331 hasConceptScore W1981382331C2780646311 @default.
- W1981382331 hasConceptScore W1981382331C74902906 @default.
- W1981382331 hasConceptScore W1981382331C93038891 @default.
- W1981382331 hasIssue "1-3" @default.
- W1981382331 hasLocation W19813823311 @default.
- W1981382331 hasOpenAccess W1981382331 @default.
- W1981382331 hasPrimaryLocation W19813823311 @default.
- W1981382331 hasRelatedWork W1981382331 @default.
- W1981382331 hasRelatedWork W1994960666 @default.
- W1981382331 hasRelatedWork W2052069475 @default.
- W1981382331 hasRelatedWork W2068523984 @default.
- W1981382331 hasRelatedWork W2081766776 @default.
- W1981382331 hasRelatedWork W2382230551 @default.