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dc.contributor.authorNam, DH-
dc.contributor.authorLee, K-
dc.contributor.authorLee, S-
dc.contributor.authorKim, CP-
dc.date.accessioned2016-04-01T01:25:51Z-
dc.date.available2016-04-01T01:25:51Z-
dc.date.created2009-08-24-
dc.date.issued2008-01-
dc.identifier.issn0267-0836-
dc.identifier.other2008-OAK-0000007534-
dc.identifier.urihttps://oasis.postech.ac.kr/handle/2014.oak/22912-
dc.description.abstractIn the present study, surface alloyed materials were fabricated with Fe based metamorphic powders by the high energy electron beam irradiation. A surface alloyed layer was fabricated by depositing metamorphic powders on a carbon steel substrate and by irradiating with high energy electron beam. On top of this surface alloyed layer, metamorphic powders were deposited once again and irradiated with electron beam to fabricate a two layered surface alloyed material. In the surface alloyed layers, 53-64 vol.-%Cr1.65Fe0.35B0.96 borides were densely precipitated in the martensitic matrix. A large amount of hard borides improved the hardness of the surface alloyed layers 2-3 times greater than that of the substrate. In addition, they showed high hardness of similar to 500 VHN even at 450 degrees C, because borides were thermally stable at high temperatures. These results suggested potentials of the fabricated surface alloyed materials for applications requiring good wear and thermal resistance.-
dc.description.statementofresponsibilityX-
dc.languageEnglish-
dc.publisherMANEY PUBLISHING-
dc.relation.isPartOfMATERIALS SCIENCE AND TECHNOLOGY-
dc.subjectsurface alloyed material-
dc.subjectmetamorphic powder-
dc.subjecthardness-
dc.subjectboride-
dc.subjectWEAR-RESISTANCE-
dc.subjectMETALLIC-GLASS-
dc.subjectMICROSTRUCTURE-
dc.subjectCOMPOSITES-
dc.titleHardness improvement of surface alloyed materials fabricated with Fe based metamorphic powders by high energy electron beam irradiation-
dc.typeArticle-
dc.contributor.college신소재공학과-
dc.identifier.doi10.1179/026708307X23-
dc.author.googleNam, DH-
dc.author.googleLee, K-
dc.author.googleLee, S-
dc.author.googleKim, CP-
dc.relation.volume24-
dc.relation.issue1-
dc.relation.startpage10-
dc.relation.lastpage14-
dc.contributor.id10052220-
dc.relation.journalMATERIALS SCIENCE AND TECHNOLOGY-
dc.relation.indexSCI급, SCOPUS 등재논문-
dc.relation.sciSCI-
dc.collections.nameJournal Papers-
dc.type.rimsART-
dc.identifier.bibliographicCitationMATERIALS SCIENCE AND TECHNOLOGY, v.24, no.1, pp.10 - 14-
dc.identifier.wosid000253313000002-
dc.date.tcdate2019-01-01-
dc.citation.endPage14-
dc.citation.number1-
dc.citation.startPage10-
dc.citation.titleMATERIALS SCIENCE AND TECHNOLOGY-
dc.citation.volume24-
dc.contributor.affiliatedAuthorLee, S-
dc.identifier.scopusid2-s2.0-39049167764-
dc.description.journalClass1-
dc.description.journalClass1-
dc.description.wostc1-
dc.type.docTypeArticle-
dc.subject.keywordPlusWEAR-RESISTANCE-
dc.subject.keywordPlusMICROSTRUCTURE-
dc.subject.keywordPlusCOMPOSITES-
dc.subject.keywordAuthorsurface alloyed material-
dc.subject.keywordAuthormetamorphic powder-
dc.subject.keywordAuthorhardness-
dc.subject.keywordAuthorboride-
dc.relation.journalWebOfScienceCategoryMaterials Science, Multidisciplinary-
dc.relation.journalWebOfScienceCategoryMetallurgy & Metallurgical Engineering-
dc.description.journalRegisteredClassscie-
dc.description.journalRegisteredClassscopus-
dc.relation.journalResearchAreaMaterials Science-
dc.relation.journalResearchAreaMetallurgy & Metallurgical Engineering-

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이성학LEE, SUNG HAK
Dept of Materials Science & Enginrg
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