Radial anisotropic sintered magnet and its production...

Metal treatment – Process of modifying or maintaining internal physical... – Magnetic materials

Reexamination Certificate

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C148S101000, C419S005000, C419S006000, C419S019000, C419S038000

Reexamination Certificate

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06984270

ABSTRACT:
A radial anisotropic sintered magnet formed into a cylindrical shape includes a portion oriented in directions tilted at an angle of 30° or more from radial directions, the portion being contained in the magnet at a volume ratio in a range of 2% or more and 50% or less, and a portion oriented in radial directions or in directions tilted at an angle less than 30° from radial directions, the portion being the rest of the total volume of the magnet. The radial anisotropic sintered magnet has excellent magnet characteristics without occurrence of cracks in the steps of sintering and cooling for aging, even if the magnet has a shape of a small ratio between an inner diameter and an outer diameter.

REFERENCES:
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patent: 2000-116089 (2000-04-01), None
patent: 2000-116090 (2000-04-01), None
patent: 2000-175387 (2000-06-01), None
patent: 2004-153867 (2004-05-01), None
patent: WO93/22778 (1993-11-01), None
Shimizu et al., “Anisotropic Ring Shape Sintered Nd-Fe-B Magnets”, Hitachi Kinzoku Gilhou, vol. 6, pp. 33-36.
Kools, “Complications in Firing Oriented Hexaferrites Due to Anisotropic Effects,” “Cracking of Radially Oriented Rings During Firing,” Science of Ceramics, vol. 7, pp. 29-44, (1973).
Takahashi et al., “Multi-Pole Magnetization of Permanent Magnet with Only One Easy Direction of Magnetization,” MAG-85-120-133, pp. 1-9, with abstract (1985).
English language abstract of JP 2000116089 (Apr. 21, 2000).
English language abstract of JP 2000175387 (Jun. 23, 2000).
English language abstract of JP 2000116090 (Apr. 21, 2000).

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