IP Library Granted Patent US 7,653,984
Granted Patent B2
US 7,653,984 · App. 11/596,212 · Granted Feb 2, 2010

Method of resin sealing permanent magnets in laminated rotor core

Assignee: Mitsui High-tec, Inc.
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Quick Facts
Patent No.
US 7,653,984
App. No.
11/596,212
Granted
Feb 2, 2010
Kind
B2
Abstract

A method comprising: a first process of placing a laminated rotor core ( 13 ) in a preheating device ( 18 ) to preheat the laminated core ( 13 ); a second process of removing the preheated laminated core ( 13 ) from the preheating device ( 18 ) and disposing the laminated core ( 13 ) between upper and lower dies ( 14, 15 ) of a resin sealing apparatus ( 29 ); a third process of pressing the laminated core ( 13 ) by the upper and lower dies ( 14, 15 ) and liquefying resin material ( 17 ) in resin reservoir pots ( 16 ) by heating; and a fourth process of ejecting the liquefied resin material ( 17 ) from the pots ( 16 ) into the magnet insertion holes ( 12 ) by plungers ( 32 ) inserted and moving vertically in the pots ( 16 ) and thermally curing the resin material ( 17 ). The method improves efficiency of resin sealing the permanent magnets ( 11 ) in the laminated core ( 13 ).

Claims (17)

1. A method of resin sealing permanent magnets in a laminated rotor core, comprising:

a first process of placing and preheating the laminated rotor core in a preheating device, the laminated rotor core being formed by a stack of a plurality of core pieces and having a plurality of magnet insertion holes for insertion of the permanent magnets around a central axial hole;

a second process of removing the preheated laminated rotor core from the preheating device and disposing the laminated rotor core having the permanent magnets inserted therein between upper and lower dies of a resin sealing apparatus;

a third process of pressing the laminated rotor core by the upper and lower dies and liquefying resin material in a plurality of resin reservoir pots by heating, the resin reservoir pots being formed in the upper die so as to extend to a surface thereof that contacts the laminated rotor core; and

a fourth process of ejecting the liquefied resin material from each of the resin reservoir pots by a plunger to fill corresponding one or more of the magnet insertion holes with the resin material and curing the resin material, the plunger being inserted and moving vertically in the each of the resin reservoir pots,

wherein the resin reservoir pots penetrate the upper die.

2. The method of resin sealing permanent magnets in a laminated rotor core as defined in claim 1 , wherein the resin reservoir pots are formed in a region located radially inward or outward with respect to the magnet insertion holes so that the resin material is filled into the magnet insertion holes from the resin reservoir pots via resin passages formed in either one of the resin sealing apparatus and the laminated rotor core.

3. The method of resin sealing permanent magnets in a laminated rotor core as defined in claim 1 , wherein the preheating of the laminated rotor core in the first process is performed with the permanent magnets inserted in the magnet insertion holes.

4. The method of resin sealing permanent magnets in a laminated rotor core as defined in claim 2 , wherein the preheating of the laminated rotor core in the first process is performed with the permanent magnets inserted in the magnet insertion holes.

5. The method of resin sealing permanent magnets in a laminated rotor core as defined in claim 1 , wherein the preheating of the laminated rotor core in the first process is performed without the permanent magnets inserted in the magnet insertion holes, and the permanent magnets are inserted in the magnet insertion holes after completion of the preheating of the laminated rotor core.

6. The method of resin sealing permanent magnets in a laminated rotor core as defined in claim 2 , wherein the preheating of the laminated rotor core in the first process is performed without the permanent magnets inserted in the magnet insertion holes, and the permanent magnets are inserted in the magnet insertion holes after completion of the preheating of the laminated rotor core.

7. The method of resin sealing permanent magnets in a laminated rotor core as defined in claim 1 , wherein the preheating of the laminated rotor core in the first process is performed by any one or more of an electric heater, induction heating and hot air.

8. The method of resin sealing permanent magnets in a laminated rotor core as defined in claim 2 , wherein the preheating of the laminated rotor core in the first process is performed by any one or more of an electric heater, induction heating and hot air.

9. The method of resin sealing permanent magnets in a laminated rotor core as defined in claim 3 , wherein the preheating of the laminated rotor core in the first process is performed by any one or more of an electric heater, induction heating and hot air.

10. The method of resin sealing permanent magnets in a laminated rotor core as defined in claim 4 , wherein the preheating of the laminated rotor core in the first process is performed by any one or more of an electric heater, induction heating and hot air.

11. The method of resin sealing permanent magnets in a laminated rotor core as defined in claim 5 , wherein the preheating of the laminated rotor core in the first process is performed by any one or more of an electric heater, induction heating and hot air.

12. The method of resin sealing permanent magnets in a laminated rotor core as defined in claim 6 , wherein the preheating of the laminated rotor core in the first process is performed by any one or more of an electric heater, induction heating and hot air.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 14, 2006
From: AMANO, KATSUMI; UEDA, KAZUTOSHI
To: MITSUI HIGH-TEC, INC.
Reel/Frame 018611/0625 →
Priority Claims (1)
JP 2006-003867 · Jan 11, 2006 · national
Continuity (1)
Related Publication 20080276446A1 · Nov 13, 2008