Matches in SemOpenAlex for { <https://semopenalex.org/work/W2026899283> ?p ?o ?g. }
- W2026899283 endingPage "013002" @default.
- W2026899283 startingPage "013002" @default.
- W2026899283 abstract "It is crucial for the carbon concentration of 9% Cr steel to be reduced to a very low level, so as to promote the formation of MX nitrides rich in vanadium as very fine and thermally stable particles to enable prolonged periods of exposure at elevated temperatures and also to eliminate Cr-rich carbides M23C6. Sub-boundary hardening, which is inversely proportional to the width of laths and blocks, is shown to be the most important strengthening mechanism for creep and is enhanced by the fine dispersion of precipitates along boundaries. The suppression of particle coarsening during creep and the maintenance of a homogeneous distribution of M23C6 carbides near prior austenite grain boundaries, which precipitate during tempering and are less fine, are effective for preventing the long-term degradation of creep strength and for improving long-term creep strength. This can be achieved by the addition of boron. The steels considered in this paper exhibit higher creep strength at 650 °C than existing high-strength steels used for thick section boiler components." @default.
- W2026899283 created "2016-06-24" @default.
- W2026899283 creator A5063378286 @default.
- W2026899283 date "2008-01-01" @default.
- W2026899283 modified "2023-10-16" @default.
- W2026899283 title "Precipitate design for creep strengthening of 9% Cr tempered martensitic steel for ultra-supercritical power plants" @default.
- W2026899283 cites W1971290298 @default.
- W2026899283 cites W1976104436 @default.
- W2026899283 cites W1977872486 @default.
- W2026899283 cites W1981553177 @default.
- W2026899283 cites W1982066467 @default.
- W2026899283 cites W1983631269 @default.
- W2026899283 cites W1989407345 @default.
- W2026899283 cites W1989589074 @default.
- W2026899283 cites W1992142275 @default.
- W2026899283 cites W1999046026 @default.
- W2026899283 cites W2001832428 @default.
- W2026899283 cites W2001985754 @default.
- W2026899283 cites W2007956163 @default.
- W2026899283 cites W2008624442 @default.
- W2026899283 cites W2022367557 @default.
- W2026899283 cites W2024572929 @default.
- W2026899283 cites W2031595120 @default.
- W2026899283 cites W2038474842 @default.
- W2026899283 cites W2039545009 @default.
- W2026899283 cites W2041961436 @default.
- W2026899283 cites W2045046733 @default.
- W2026899283 cites W2046438284 @default.
- W2026899283 cites W2047507728 @default.
- W2026899283 cites W2047934232 @default.
- W2026899283 cites W2049618545 @default.
- W2026899283 cites W2050599964 @default.
- W2026899283 cites W2053560029 @default.
- W2026899283 cites W2054231676 @default.
- W2026899283 cites W2057748584 @default.
- W2026899283 cites W2064707595 @default.
- W2026899283 cites W2065704948 @default.
- W2026899283 cites W2071641912 @default.
- W2026899283 cites W2072185900 @default.
- W2026899283 cites W2090138493 @default.
- W2026899283 cites W2092912834 @default.
- W2026899283 cites W2094808009 @default.
- W2026899283 cites W2138836973 @default.
- W2026899283 cites W2507130822 @default.
- W2026899283 cites W2517847482 @default.
- W2026899283 cites W2518324312 @default.
- W2026899283 cites W2519380389 @default.
- W2026899283 cites W2561385386 @default.
- W2026899283 cites W2607162729 @default.
- W2026899283 cites W2917599337 @default.
- W2026899283 cites W4237262305 @default.
- W2026899283 cites W54851429 @default.
- W2026899283 doi "https://doi.org/10.1088/1468-6996/9/1/013002" @default.
- W2026899283 hasPubMedCentralId "https://www.ncbi.nlm.nih.gov/pmc/articles/5099789" @default.
- W2026899283 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/27877920" @default.
- W2026899283 hasPublicationYear "2008" @default.
- W2026899283 type Work @default.
- W2026899283 sameAs 2026899283 @default.
- W2026899283 citedByCount "385" @default.
- W2026899283 countsByYear W20268992832012 @default.
- W2026899283 countsByYear W20268992832013 @default.
- W2026899283 countsByYear W20268992832014 @default.
- W2026899283 countsByYear W20268992832015 @default.
- W2026899283 countsByYear W20268992832016 @default.
- W2026899283 countsByYear W20268992832017 @default.
- W2026899283 countsByYear W20268992832018 @default.
- W2026899283 countsByYear W20268992832019 @default.
- W2026899283 countsByYear W20268992832020 @default.
- W2026899283 countsByYear W20268992832021 @default.
- W2026899283 countsByYear W20268992832022 @default.
- W2026899283 countsByYear W20268992832023 @default.
- W2026899283 crossrefType "journal-article" @default.
- W2026899283 hasAuthorship W2026899283A5063378286 @default.
- W2026899283 hasBestOaLocation W20268992831 @default.
- W2026899283 hasConcept C118419359 @default.
- W2026899283 hasConcept C149912024 @default.
- W2026899283 hasConcept C159985019 @default.
- W2026899283 hasConcept C178790620 @default.
- W2026899283 hasConcept C185592680 @default.
- W2026899283 hasConcept C18747287 @default.
- W2026899283 hasConcept C191897082 @default.
- W2026899283 hasConcept C192562407 @default.
- W2026899283 hasConcept C194760766 @default.
- W2026899283 hasConcept C207948433 @default.
- W2026899283 hasConcept C2778672287 @default.
- W2026899283 hasConcept C2779227376 @default.
- W2026899283 hasConcept C44255700 @default.
- W2026899283 hasConcept C47908070 @default.
- W2026899283 hasConcept C504678139 @default.
- W2026899283 hasConcept C5335593 @default.
- W2026899283 hasConcept C87976508 @default.
- W2026899283 hasConcept C96288455 @default.
- W2026899283 hasConceptScore W2026899283C118419359 @default.
- W2026899283 hasConceptScore W2026899283C149912024 @default.
- W2026899283 hasConceptScore W2026899283C159985019 @default.
- W2026899283 hasConceptScore W2026899283C178790620 @default.
- W2026899283 hasConceptScore W2026899283C185592680 @default.
- W2026899283 hasConceptScore W2026899283C18747287 @default.