Powder metallurgy processes – Powder metallurgy processes with heating or sintering – Powder shape or size characteristics
Patent
1993-06-24
1995-06-27
Walsh, Donald P.
Powder metallurgy processes
Powder metallurgy processes with heating or sintering
Powder shape or size characteristics
419 26, 419 35, 419 36, 419 37, 419 38, 419 39, 419 44, 419 45, 419 46, 419 54, B22F 102, B22F 316
Patent
active
054277345
ABSTRACT:
The object of the invention is to provide a manufacturing method of a complex shaped R--Fe--B type sintered anisotropic magnet improved the moldability of injection molding and preventing the reaction between R ingredients and binder and controlled the degradation of magnetic characteristics due to residual carbon and oxygen. Utilizing the R--Fe--B type alloy powder or the resin coated said alloy powder, and methylcellulose and/or agar and water, instead of the usual thermoplastic binder, it is mixed and injection molded. The molded body is dehydrated by the freeze vacuum dry method to control the reaction between R ingredients and of the R--Fe--B alloy powder and water; furthermore, by administering the de-binder treatment in the hydrogen atmosphere, and sintering it after the dehydrogen treatment, residual oxygen and carbon in the R--Fe--B sintered body is drastically reduced, improving the moldability during the injection molding to obtain a three dimensionally complex shape sintered magnet.
REFERENCES:
patent: 4113480 (1978-09-01), Rivers
patent: 4770723 (1988-09-01), Sagawa et al.
patent: 4902361 (1990-02-01), Lee et al.
Asano Masahiro
Saigo Tsunekazu
Yamashita Osamu
Carroll Chrisman D.
Sumitomo Special Metals Co. Ltd.
Walsh Donald P.
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