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 | |
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Format | Patent |
Language | English |
Published |
16.03.2001
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Edition | 7 |
Subjects | |
Online Access | Get full text |
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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. |
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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... |
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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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