IP Library Granted Patent US 10,253,676
Granted Patent B2
US 10,253,676 · App. 14/572,018 · Granted Apr 9, 2019

Molded rotor for cooling fan motor

Inventors: Axel Gossling (Alzenau, DE); Michael Ciop (Braunschweig, DE)
Assignee: MAGNA POWERTRAIN BAD HOMBURG GMBH
F01P1/06F04D25/064F04D29/023F04D29/329H02K1/2786H02K5/00H02K5/225H02K7/14H02K21/22F05D2300/43F05D2300/507
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Quick Facts
Patent No.
US 10,253,676
App. No.
14/572,018
Granted
Apr 9, 2019
Kind
B2
Abstract

A cooling fan assembly operable for cooling a radiator of a vehicle includes a brushless motor and a fan element having a plurality of fan blades. The brushless motor includes a stator and a rotor. The fan element is attached at the rotor such that rotation of the rotor by the motor imparts rotation of the fan blades to enhance air flow at the radiator of the vehicle. The rotor is a molded polymeric rotor formed by injection molding a thermoplastic material. During injection molding of the rotor, a plurality of magnetic elements are at least partially overmolded by the thermoplastic material to establish the magnetic elements at the molded polymeric rotor. The rotor may have a bell-like shape, and the magnetic elements may be disposed at an inside facing surface of the rotor.

Claims (39)

1. A cooling fan assembly operable for cooling a radiator of a vehicle, said cooling fan assembly comprising:

a brushless motor, wherein said brushless motor comprises a stator and a molded polymeric rotor;

a fan element comprising a plurality of fan blades;

wherein said fan element comprises a hub;

wherein said hub of said fan element is attached at said rotor such that rotation of said rotor by said motor imparts rotation of said fan blades;

wherein said molded polymeric rotor is and formed by injection molding a thermoplastic material and comprises a plurality of magnetic elements disposed at an inside facing surface; wherein said rotor circumscribes said stator; and

wherein, during injection molding of said molded polymeric rotor, said magnetic elements are at least partially overmolded by said thermoplastic material so as to be in direct contact with said thermoplastic material to establish said magnetic elements at an inside facing surface of said molded polymeric rotor that circumscribes said stator.

2. The cooling fan assembly of claim 1 , wherein said thermoplastic material comprises an engineering resin.

3. The cooling fan assembly of claim 2 , wherein said molded polymeric rotor comprises a magnetic permeable property.

4. The cooling fan assembly of claim 3 , wherein said magnetic permeable property is achieved by mixing magnetic permeable particles into said thermoplastic material.

5. The cooling fan assembly of claim 1 , wherein said molded polymeric rotor has at least one metallic element insert molded therein.

6. The cooling fan assembly of claim 5 , wherein attachment of said fan element to said molded polymeric rotor is made via at least one fastener attaching at said at least one metallic element.

7. The cooling fan assembly of claim 1 , wherein said fan element comprises a molded polymeric fan element.

8. The cooling fan assembly of claim 7 , wherein attachment of said fan element to said molded polymeric rotor is made via unitarily molding said molded polymeric rotor and at least a portion of said molded polymeric fan element as a single molded unit.

9. The cooling fan assembly of claim 1 , wherein said stator of said motor is fixedly attached at a frame of said cooling fan assembly, and wherein said frame is configured for mounting said cooling fan assembly at the vehicle, and wherein a plurality of mounting arms extend from said stator to a perimeter region of said frame to mount said motor at said frame.

10. The cooling fan assembly of claim 9 , wherein said mounting arms are press fit attached at said stator.

11. A cooling fan assembly operable for cooling a radiator of a vehicle, said cooling fan assembly comprising:

a brushless motor, wherein said brushless motor comprises a stator and a rotor;

a fan element comprising a plurality of fan blades, wherein said fan element comprises a molded polymeric fan element;

wherein said fan element comprises a hub;

wherein said hub of said fan element is attached at said rotor such that rotation of said rotor by said motor imparts rotation of said fan blades;

wherein said rotor comprises a molded polymeric rotor formed by injection molding a thermoplastic material;

wherein, during injection molding of said rotor, a plurality of magnetic elements are at least partially overmolded by said thermoplastic material so as to be in direct contact with said thermoplastic material to establish said magnetic elements at said molded polymeric rotor; and

wherein said rotor has a bell shape that circumscribes said stator, and wherein said magnetic elements are disposed in direct contact with an inside facing surface of said rotor that circumscribes said stator.

12. The cooling fan assembly of claim 11 , wherein said molded polymeric rotor has at least one metallic element insert molded therein, and wherein attachment of said fan element to said molded polymeric rotor is made via at least one fastener attaching at said at least one metallic element.

13. The cooling fan assembly of claim 11 , wherein attachment of said fan element to said molded polymeric rotor is made via unitarily molding said molded polymeric rotor and at least a portion of said molded polymeric fan element as a single molded unit.

14. The cooling fan assembly of claim 11 , wherein said stator of said motor is fixedly attached at a frame of said cooling fan assembly, and wherein said frame is configured for mounting said cooling fan assembly at the vehicle.

15. The cooling fan assembly of claim 14 , wherein a plurality of mounting arms extend from said stator to a perimeter region of said frame to mount said motor at said frame, and wherein said mounting arms are press fit attached at said stator.

16. A cooling fan assembly operable for cooling a radiator of a vehicle, said cooling fan assembly comprising:

a brushless motor, wherein said brushless motor comprises a stator and a rotor;

a fan element comprising a plurality of fan blades;

wherein said fan element comprises a hub;

wherein said hub of said fan element is attached at said rotor such that rotation of said rotor by said motor imparts rotation of said fan blades;

wherein said rotor comprises a molded polymeric rotor formed by injection molding a thermoplastic material, and wherein said thermoplastic material comprises an engineering resin;

wherein, during injection molding of said rotor, a plurality of magnetic elements are at least partially overmolded by said thermoplastic material so as to be in direct contact with said thermoplastic material to establish said magnetic elements at said molded polymeric rotor to unitarily form said molded polymeric rotor structure; and

wherein said magnetic elements in direct contact with are disposed an inside facing surface of said rotor that circumscribes said stator.

17. The cooling fan assembly of claim 16 , wherein said molded polymeric rotor has at least one metallic element insert molded therein, and wherein attachment of said fan element to said molded polymeric rotor is made via at least one fastener attaching at said at least one metallic element.

18. The cooling fan assembly of claim 16 , wherein said fan element comprises a molded polymeric fan element, and wherein attachment of said fan element to said molded polymeric rotor is made via unitarily molding said molded polymeric rotor and at least a portion of said molded polymeric fan element as a single molded unit.

19. The cooling fan assembly of claim 16 , wherein said stator of said motor is fixedly attached at a frame of said cooling fan assembly, and wherein said frame is configured for mounting said cooling fan assembly at the vehicle, and wherein a plurality of mounting arms extend from said stator to a perimeter region of said frame to mount said motor at said frame, and wherein said mounting arms are press fit attached at said stator.

Assignments (5)
CHANGE OF NAME Recorded May 19, 2020
From: MAGNA POWERTRAIN BAD HOMBURG GMBH
To: HANON SYSTEMS BAD HOMBURG GMBH
Reel/Frame 052694/0704 →
MERGER Recorded May 19, 2020
From: HANON SYSTEMS BAD HOMBURG GMBH
To: HANON SYSTEMS EFP DEUTSCHLAND GMBH
Reel/Frame 052694/0737 →
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEE'S CITY NAME PREVIOUSLY RECORDED AT REEL: 043320 FRAME: 0638. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Aug 23, 2017
From: MAGNA ELECTRONICS INC.
To: MAGNA POWERTRAIN BAD HOMBURG GMBH
Reel/Frame 043646/0767 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 17, 2017
From: GOSSLING, AXEL; CIOP, MICHAEL
To: MAGNA ELECTRONICS INC.
Reel/Frame 043320/0622 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 17, 2017
From: MAGNA ELECTRONICS INC.
To: MAGNA POWERTRAIN BAD HOMBURG GMBH
Reel/Frame 043320/0638 →
Continuity (3)
Provisional Application 61953969 · Mar 17, 2014
Provisional Application 61919147 · Dec 20, 2013
Related Publication 20150176596A1 · Jun 25, 2015
Cited By (3)
US 12,362,614 US 12,689,249 US 12,738,807