MANUFACTURING METHOD FOR ANISORTOPIC SINTERED MAGNET AND MANUFACTURING EQUIPMENT THEREFOR

PROBLEM TO BE SOLVED: To mass-produce an anisotropic sintered magnet of a high magnet characteristic by a method wherein a magnetic field pressed Nb-Fe-B based compact is sintered in energization by use of a pulse current without deforming under pressure. SOLUTION: In a manufacturing method of an an...

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Main Author NOMURA TADAO
Format Patent
LanguageEnglish
Published 16.03.2001
Edition7
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Abstract PROBLEM TO BE SOLVED: To mass-produce an anisotropic sintered magnet of a high magnet characteristic by a method wherein a magnetic field pressed Nb-Fe-B based compact is sintered in energization by use of a pulse current without deforming under pressure. SOLUTION: In a manufacturing method of an anisotropic sintered magnet, a magnetic field and a press molding have been beforehand applied to fine powders of a magnet alloy, which are a compact 2 by aligning an axis of easy magnetization. Next, an upper electrode 1 of an energization sintering device is installed on an upper face of the compact 2, and a lower electrode 3 thereof is installed on a lower face thereof. A position of the upper electrode 1 is not fixed, and is installed movably in accordance with contraction. Furthermore, a side face of the compact 2 is set in a state of not coming into contact with a structural member of the energization sintering device. Next, after the interior of the energization sintering device is set in a vacuous or inactive ambience, the compact 2 is energized through both upper and lower electrodes 1, 3. A short rectangular pulse current from a pulse current 4 is used as current, and the energization conditions are in the range of a current density I/A=10 to 1000 A/cm2, a voltage V=1 to 100 V, and a pulse period t=10 to 1000 ms.
AbstractList PROBLEM TO BE SOLVED: To mass-produce an anisotropic sintered magnet of a high magnet characteristic by a method wherein a magnetic field pressed Nb-Fe-B based compact is sintered in energization by use of a pulse current without deforming under pressure. SOLUTION: In a manufacturing method of an anisotropic sintered magnet, a magnetic field and a press molding have been beforehand applied to fine powders of a magnet alloy, which are a compact 2 by aligning an axis of easy magnetization. Next, an upper electrode 1 of an energization sintering device is installed on an upper face of the compact 2, and a lower electrode 3 thereof is installed on a lower face thereof. A position of the upper electrode 1 is not fixed, and is installed movably in accordance with contraction. Furthermore, a side face of the compact 2 is set in a state of not coming into contact with a structural member of the energization sintering device. Next, after the interior of the energization sintering device is set in a vacuous or inactive ambience, the compact 2 is energized through both upper and lower electrodes 1, 3. A short rectangular pulse current from a pulse current 4 is used as current, and the energization conditions are in the range of a current density I/A=10 to 1000 A/cm2, a voltage V=1 to 100 V, and a pulse period t=10 to 1000 ms.
Author NOMURA TADAO
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Snippet PROBLEM TO BE SOLVED: To mass-produce an anisotropic sintered magnet of a high magnet characteristic by a method wherein a magnetic field pressed Nb-Fe-B based...
SourceID epo
SourceType Open Access Repository
SubjectTerms BASIC ELECTRIC ELEMENTS
ELECTRICITY
INDUCTANCES
MAGNETS
SELECTION OF MATERIALS FOR THEIR MAGNETIC PROPERTIES
TRANSFORMERS
Title MANUFACTURING METHOD FOR ANISORTOPIC SINTERED MAGNET AND MANUFACTURING EQUIPMENT THEREFOR
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