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dc.contributor.authorAlvi, Sajid
dc.contributor.authorWaseem, Owais Ahmed
dc.contributor.authorAkhtar, Farid
dc.date.accessioned2020-11-30T20:51:31Z
dc.date.available2020-11-30T20:51:31Z
dc.date.issued2020-11
dc.date.submitted2020-11
dc.identifier.issn2075-4701
dc.identifier.urihttps://hdl.handle.net/1721.1/128697
dc.description.abstractThe phase stability, compressive strength, and tribology of tungsten alloy containing low activation elements, W0.5(TaTiVCr)0.5, at elevated temperature up to 1400 °C were investigated. The spark plasma sintered W0.5(TaTiVCr)0.5 alloy showed body centered cubic (BCC) structure, which was stable up to 1400 °C using in-situ high temperature XRD analysis and did not show formation of secondary phases. The W0.5(TaTiVCr)0.5 alloy showed exceptionally high compressive yield strength of 1136 ± 40 MPa, 830 ± 60 MPa and 425 ± 15 MPa at 1000 °C, 1200 °C and 1400 °C, respectively. The high temperature tribology at 400 °C showed an average coefficient of friction (COF) and low wear rate of 0.55 and 1.37 × 10−5 mm3/Nm, respectively. The superior compressive strength and wear resistance properties were attributed to the solid solution strengthening of the alloy. The low activation composition, high phase stability, superior high temperature strength, and good wear resistance at 400 °C of W0.5(TaTiVCr)0.5 suggest its potential utilization in extreme applications such as plasma facing materials, rocket nozzles and industrial tooling.en_US
dc.publisherMDPI AGen_US
dc.relation.isversionofhttp://dx.doi.org/10.3390/met10111512en_US
dc.rightsCreative Commons Attributionen_US
dc.rights.urihttps://creativecommons.org/licenses/by/4.0/en_US
dc.sourceMultidisciplinary Digital Publishing Instituteen_US
dc.titleHigh Temperature Performance of Spark Plasma Sintered W0.5(TaTiVCr)0.5 Alloyen_US
dc.typeArticleen_US
dc.identifier.citationAlvi, Sajid et al. "High Temperature Performance of Spark Plasma Sintered W0.5(TaTiVCr)0.5 Alloy." Metals 10, 11 (November 2020): 1512 © 2020 The Authorsen_US
dc.contributor.departmentMassachusetts Institute of Technology. Plasma Science and Fusion Centeren_US
dc.contributor.departmentMassachusetts Institute of Technology. Department of Nuclear Science and Engineeringen_US
dc.relation.journalMetalsen_US
dc.eprint.versionFinal published versionen_US
dc.type.urihttp://purl.org/eprint/type/JournalArticleen_US
eprint.statushttp://purl.org/eprint/status/PeerRevieweden_US
dc.date.updated2020-11-26T14:08:04Z
dspace.date.submission2020-11-26T14:08:04Z
mit.journal.volume10en_US
mit.journal.issue11en_US
mit.licensePUBLISHER_CC
mit.metadata.statusComplete


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