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Texture Evolution in Nanocomposite Nd_2Fe_(140B/α-Fe Magnets Prepared by Direct Melt Spinning 被引量:1

Texture Evolution in Nanocomposite Nd_2Fe_(140B/α-Fe Magnets Prepared by Direct Melt Spinning
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摘要 Texture evolution in nanocomposite Nd_2Fe_ 14B/α-Fe magnets prepared by direct melt spinning was investigated. The free surface and wheel-contacted surface exhibit different texture direction. Modification of composition not only enhances magnetic properties, but also changes texture direction of the ribbon. Low temperature heat treatment can increase the magnetic properties to some extent, and high temperature annealing decreases the magnetic properties. Both low and high temperature heat treatment have effects on grain orientation, but the difference still exists between the two surfaces of the ribbon. So it is infeasibility to prepare anisotropic Nd_2Fe_ 14B/α-Fe nanocomposite magnets by direct melt spinning. Texture evolution in nanocomposite Nd_2Fe_ 14B/α-Fe magnets prepared by direct melt spinning was investigated. The free surface and wheel-contacted surface exhibit different texture direction. Modification of composition not only enhances magnetic properties, but also changes texture direction of the ribbon. Low temperature heat treatment can increase the magnetic properties to some extent, and high temperature annealing decreases the magnetic properties. Both low and high temperature heat treatment have effects on grain orientation, but the difference still exists between the two surfaces of the ribbon. So it is infeasibility to prepare anisotropic Nd_2Fe_ 14B/α-Fe nanocomposite magnets by direct melt spinning.
机构地区 Institute of Materials
出处 《Journal of Rare Earths》 SCIE EI CAS CSCD 2005年第S1期298-301,共4页 稀土学报(英文版)
基金 ProjectsupportedbytheNationalAdvancedTechnologyResearchandDevelopmentCommitteeofChina(2002AA3026022)andtheScientificandTechnologicalCommitteeofShanghai(03QF14018)
关键词 nanocomposite magnet Nd_2Fe_ 14B/α-Fe melt spinning anisotropic magnets rare earths nanocomposite magnet Nd_2Fe_ 14B/α-Fe melt spinning anisotropic magnets rare earths
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