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dc.contributor.authorPushin, V.en
dc.contributor.authorKuranova, N.en
dc.contributor.authorMarchenkova, E.en
dc.contributor.authorPushin, A.en
dc.date.accessioned2020-09-29T09:47:41Z-
dc.date.available2020-09-29T09:47:41Z-
dc.date.issued2019-
dc.identifier.citationDesign and development of Ti-Ni, Ni-Mn-Ga and Cu-Al-Ni-based alloys with high and low temperature shape memory effects / V. Pushin, N. Kuranova, E. Marchenkova, A. Pushin. — DOI 10.3390/ma12162616 // Materials. — 2019. — Vol. 16. — Iss. 12. — 2616.en
dc.identifier.issn1996-1944-
dc.identifier.otherhttps://www.mdpi.com/1996-1944/12/16/2616/pdfpdf
dc.identifier.other1good_DOI
dc.identifier.other7cfa1932-48c2-400b-a599-b9ac840858d2pure_uuid
dc.identifier.otherhttp://www.scopus.com/inward/record.url?partnerID=8YFLogxK&scp=85071005243m
dc.identifier.urihttp://elar.urfu.ru/handle/10995/90522-
dc.description.abstractIn recent years, multicomponent alloys with shape memory effects (SMEs), based on the ordered intermetallic compounds B2-TiNi, L21-Ni2MnGa, B2- and D03-Cu-Me (Me = Al, Ni, Zn), which represent a special important class of intelligent materials, have been of great interest. However, only a small number of known alloys with SMEs were found to have thermoelastic martensitic transformations (TMTs) at high temperatures. It is also found that most of the materials with TMTs and related SMEs do not have the necessary ductility and this is currently one of the main restrictions of their wide practical application. The aim of the present work is to design and develop multicomponent alloys with TMTs together with ways to improve their strength and ductile properties, using doping and advanced methods of thermal and thermomechanical treatments. The structure, phase composition, and TMTs were investigated by transmission- and scanning electron microscopy, as well as by neutron-, electron- and X-ray diffraction. Temperature measurements of the electrical resistance, magnetic susceptibility, as well as tests of the tensile mechanical properties and special characteristics of SMEs were also used. Temperature-concentration dependences for TMTs in the binary and ternary alloys of a number of quasi-binary systems were determined and discussed. It is shown that the ductility and strength of alloys required for the realization of SMEs can be achieved through optimal alloying, which excludes decomposition in the temperature range of SMEs' usage, as well as via various treatments that ensure the formation of their fine- (FG) and ultra-fine-grained (UFG) structure. © 2019 by the authors.en
dc.description.sponsorshipFunding: This work was performed within the framework of state task “Structure”, grant no. AAAA-A18-118020190116-6 and the cooperative laboratory of the Ural Federal University n.a. the First President of Russia B.N. Yeltsin and the Mikheev Institute of Metal Physics of the Ural Branch of the Russian Academy of Sciences.en
dc.format.mimetypeapplication/pdfen
dc.language.isoenen
dc.publisherMDPI AGen
dc.rightsinfo:eu-repo/semantics/openAccessen
dc.rightscc-byother
dc.sourceMaterialsen
dc.subjectCU-AL-NI ALLOYSen
dc.subjectNI2MNGAen
dc.subjectPARAMETERS OF MICROSTRUCTUREen
dc.subjectSHAPE MEMORY EFFECTen
dc.subjectSTRENGTH AND DUCTILITYen
dc.subjectSTRUCTURE TYPESen
dc.subjectTHERMOELASTIC MARTENSITIC TRANSFORMATIONen
dc.subjectTINIen
dc.subjectULTRA-FINE GRAIN SIZEen
dc.subjectBINARY ALLOYSen
dc.subjectCOPPER ALLOYSen
dc.subjectDUCTILITYen
dc.subjectGALLIUM ALLOYSen
dc.subjectINTELLIGENT MATERIALSen
dc.subjectMAGNETIC SUSCEPTIBILITYen
dc.subjectMANGANESE ALLOYSen
dc.subjectMARTENSITIC TRANSFORMATIONSen
dc.subjectNICKEL ALLOYSen
dc.subjectSCANNING ELECTRON MICROSCOPYen
dc.subjectSHAPE MEMORY EFFECTen
dc.subjectTEMPERATUREen
dc.subjectTEMPERATURE MEASUREMENTen
dc.subjectTERNARY ALLOYSen
dc.subjectTHERMOELASTICITYen
dc.subjectTHERMOMECHANICAL TREATMENTen
dc.subjectTITANIUM ALLOYSen
dc.subjectCUALNI ALLOYen
dc.subjectNI2MNGAen
dc.subjectSTRENGTH AND DUCTILITIESen
dc.subjectSTRUCTURE TYPEen
dc.subjectTHERMOELASTIC MARTENSITIC TRANSFORMATIONSen
dc.subjectTINIen
dc.subjectULTRA-FINE GRAIN SIZEen
dc.subjectALUMINUM ALLOYSen
dc.titleDesign and development of Ti-Ni, Ni-Mn-Ga and Cu-Al-Ni-based alloys with high and low temperature shape memory effectsen
dc.typeReviewen
dc.typeinfo:eu-repo/semantics/reviewen
dc.typeinfo:eu-repo/semantics/publishedVersionen
dc.identifier.doi10.3390/ma12162616-
dc.identifier.scopus85071005243-
local.affiliationLaboratory of Non-Ferrous Alloys, M.N. Miheev Institute of Metal Physics of Ural Branch of Russian Academy of Sciences, Ekaterinburg, 620108, Russian Federationen
local.affiliationLaboratory of Structural and Functional Steels and Alloys, Institute of New Materials and Technologies, Ural Federal University, Yekaterinburg, 620002, Russian Federationen
local.contributor.employeePushin, V., Laboratory of Non-Ferrous Alloys, M.N. Miheev Institute of Metal Physics of Ural Branch of Russian Academy of Sciences, Ekaterinburg, 620108, Russian Federation, Laboratory of Structural and Functional Steels and Alloys, Institute of New Materials and Technologies, Ural Federal University, Yekaterinburg, 620002, Russian Federationru
local.contributor.employeeKuranova, N., Laboratory of Non-Ferrous Alloys, M.N. Miheev Institute of Metal Physics of Ural Branch of Russian Academy of Sciences, Ekaterinburg, 620108, Russian Federation, Laboratory of Structural and Functional Steels and Alloys, Institute of New Materials and Technologies, Ural Federal University, Yekaterinburg, 620002, Russian Federationru
local.contributor.employeeMarchenkova, E., Laboratory of Non-Ferrous Alloys, M.N. Miheev Institute of Metal Physics of Ural Branch of Russian Academy of Sciences, Ekaterinburg, 620108, Russian Federationru
local.contributor.employeePushin, A., Laboratory of Non-Ferrous Alloys, M.N. Miheev Institute of Metal Physics of Ural Branch of Russian Academy of Sciences, Ekaterinburg, 620108, Russian Federation, Laboratory of Structural and Functional Steels and Alloys, Institute of New Materials and Technologies, Ural Federal University, Yekaterinburg, 620002, Russian Federationru
local.issue12-
local.volume16-
dc.identifier.wos000484464800117-
local.identifier.pure10467518-
local.description.order2616-
local.identifier.eid2-s2.0-85071005243-
local.identifier.wosWOS:000484464800117-
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