US2013149185A1PendingUtilityA1

Fe-Co Based Target Material and Method for Producing the Same

Assignee: SANYO SPECIAL STEEL CO LTDPriority: May 2, 2006Filed: Feb 11, 2013Published: Jun 13, 2013
Est. expiryMay 2, 2026(expired)· nominal 20-yr term from priority
B22F 3/15C22C 38/10H01F 41/0246H01F 10/14C22C 33/0257C23C 14/3414B22F 2998/10C22C 38/14C22C 19/07C22C 38/12C22C 2202/02H01F 10/16H01F 1/22B22F 3/12
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Claims

Abstract

A method for producing a Fe—Co based target material for forming a soft magnetic thin-film comprising the steps of: preparing a first raw-material powder having an Fe:Co weight ratio ranging from 8:2 to 7:3 and a second raw-material powder having an Fe—Co weight ratio ranging from 2:8 to 0:10; mixing the first raw-material powder and the second raw-material powder together to obtain a powder mixture having an Fe:Co weight ratio ranging from 8:2 to 2:8; and applying a pressure of not less than 100 MPa to the powder mixture at a temperature ranging from 1073 to 1473 K for consolidation. At least one additional element selected from the group consisting of Nb, Zr, Ta and Hf is added to either one or both of the first and second raw-material powders in a total amount of 3 to 15 atom % with respect to the total amount of the powder mixture.

Claims

exact text as granted — not AI-modified
1 . A method for producing a Fe—Co based target material, comprising the steps of:
 preparing a first raw-material powder having an Fe:Co weight ratio ranging from 8:2 to 7:3 and a second raw-material powder having an Fe—Co weight ratio ranging from 2:8 to 0:10; 
 mixing the first raw-material powder and the second raw-material powder together to obtain a powder mixture having an Fe:Co weight ratio ranging from 8:2 to 2:8; and 
 applying a pressure of not less than 100 MPa to the powder mixture at a temperature ranging from 1073 to 1473 K for consolidation, 
 wherein at least one additional element selected from the group consisting of Nb, Zr, Ta and Hf is added to either one or both of the first and second raw-material powders in a total amount of 3 to 15 atom % with respect to the total amount of the powder mixture. 
 
     
     
         2 . The method according to  claim 1 , wherein, prior to the mixing step, the additional element is added to the first raw-material powder in a total amount of not less than 1 atom % with respect to the total amount of the first raw-material powder. 
     
     
         3 . The method according to  claim 1 , wherein, prior to the mixing step, the additional element is added to the second raw-material powder in a total amount of not less than 1 atom % with respect to the total amount of the second raw-material powder. 
     
     
         4 . The method according to  claim 2 , wherein, prior to the mixing step, the additional element is added to the second raw-material powder in a total amount of not less than 1 atom % with respect to the total amount of the second raw-material powder.

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