IP Library Granted Patent US 9,657,699
Granted Patent B2
US 9,657,699 · App. 14/645,492 · Granted May 23, 2017

Actuator with integrated flux sensor

Inventors: Thomas Wolfgang Nehl (Shelby Township, MI); Chandra S. Namuduri (Troy, MI); Avoki M. Omekanda (Rochester, MI); Suresh Gopalakrishnan (Troy, MI)
Assignee: GM GLOBAL TECHNOLOGY OPERATIONS LLC
F02M51/005F02D41/20F02D41/402F02M51/0671F02M51/0689F02M57/005F02M63/0017H01F7/064F02D41/266F02D41/28F02D2041/2058F02D2041/2072F02M2200/08F02M2200/20F02M2200/24Y02T10/44
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Quick Facts
Patent No.
US 9,657,699
App. No.
14/645,492
Granted
May 23, 2017
Kind
B2
Abstract

An electromagnetic actuator includes an electrical coil and a high permeability magnetic flux path. The magnetic flux path includes a magnetic core, an armature and a flux return structure. The electromagnetic actuator further includes a flux sensor which is integrated within the actuator and is configured to detect a magnetic flux within the high permeability magnetic flux path.

Claims (40)

1. An electromagnetic actuator, comprising:

an electrical coil;

a high permeability magnetic flux path comprising:

a magnetic core;

an armature;

a flux return structure; and

a flux sensor integrated within the actuator and configured to detect a magnetic flux within the high permeability magnetic flux path.

2. The electromagnetic actuator of claim 1 , wherein the flux sensor comprises a search coil immediately adjacent to the electrical coil and surrounding the magnetic core.

3. The electromagnetic actuator of claim 2 , wherein the search coil is radially adjacent the electrical coil.

4. The electromagnetic actuator of claim 2 , wherein the search coil is axially adjacent the electrical coil.

5. The electromagnetic actuator of claim 1 , wherein the flux sensor comprises a hall effect sensor integrated within the high permeability magnetic flux path.

6. The electromagnetic actuator of claim 1 , wherein the flux sensor comprises a magnetoresistive sensor integrated within the high permeability magnetic flux path.

7. The electromagnetic actuator of claim 1 , wherein the flux sensor comprises a magnetic field sensor integrated within the flux return structure.

8. The electromagnetic actuator of claim 1 , wherein the flux sensor comprises a magnetic field sensor integrated at an interface of the flux return structure and the magnetic core.

9. The electromagnetic actuator of claim 1 , wherein the flux sensor comprises a magnetic field sensor integrated at an interface of the magnetic core and armature.

10. The electromagnetic actuator of claim 1 , wherein the flux return structure comprises at least two immediately adjacent high permeability components, and the flux sensor comprises a magnetic field sensor integrated within the flux return structure at an interface of said at least two immediately adjacent high permeability components.

11. The electromagnetic actuator of claim 1 , wherein the high permeability magnetic flux path comprises a region of flux concentration during high frequency excitation of the electrical coil, and the flux sensor comprises a magnetic field sensor integrated within said region of flux concentration during high frequency excitation of the electrical coil.

12. The electromagnetic actuator of claim 11 , wherein the flux return structure comprises at least two immediately adjacent high permeability components, and the flux sensor comprises a magnetic field sensor integrated within the flux return structure at an interface of said at least two immediately adjacent high permeability components that is characterized by said region of flux concentration during high frequency excitation of the electrical coil.

13. An electromagnetic fuel injector, comprising:

an electrical coil;

a high permeability magnetic flux path comprising:

an armature translatable along an axis;

a magnetic core surrounded by the electrical coil, said magnetic core having a first end adjacent said armature for imparting attractive magnetic force thereto and an axially opposite second end;

a flux return structure comprising:

a cylindrous housing surrounding said electrical coil and having an inner wall surface;

an annular member arranged between the inner wall surface of the housing and the second end of the magnetic core such that a first touching interface is between the annular member and the inner wall surface of the housing and a second touching interface is between the annular member and second end of the magnetic core; and

a flux sensor integrated within the fuel injector and configured to detect a magnetic flux within the high permeability magnetic flux path.

14. The electromagnetic actuator of claim 13 , wherein the flux sensor comprises a search coil immediately adjacent to the electrical coil and surrounding the magnetic core.

15. The electromagnetic actuator of claim 14 , wherein the search coil is radially adjacent the electrical coil.

16. The electromagnetic actuator of claim 14 , wherein the search coil is axially adjacent the electrical coil.

17. The electromagnetic actuator of claim 13 , wherein the flux sensor comprises a hall effect sensor integrated within the high permeability magnetic flux path.

18. The electromagnetic actuator of claim 13 , wherein the flux sensor comprises a magnetoresistive sensor integrated within the high permeability magnetic flux path.

19. The electromagnetic actuator of claim 13 , wherein the flux sensor comprises a magnetic field sensor integrated within the flux return structure.

20. The electromagnetic actuator of claim 13 , wherein the flux sensor comprises a magnetic field sensor integrated at one of the first and second touching interfaces of the flux return structure.

21. The electromagnetic actuator of claim 13 , wherein the flux sensor comprises a magnetic field sensor integrated at the first end of the magnetic core.

22. The electromagnetic actuator of claim 13 , wherein the flux return structure comprises a magnetic field sensor integrated within the flux return structure at an interface of two immediately adjacent high permeability components.

23. The electromagnetic actuator of claim 13 , wherein the high permeability magnetic flux path comprises a region of flux concentration during high frequency excitation of the electrical coil, and the flux sensor comprises a magnetic field sensor integrated within said region of flux concentration during high frequency excitation of the electrical coil.

24. The electromagnetic actuator of claim 23 , wherein the magnetic field sensor is integrated at one of the first and second touching interfaces of the flux return structure.

25. The electromagnetic actuator of claim 13 , wherein the second end of the magnetic core comprises a shoulder having a surface normal to the axis and providing a magnetic core surface of the second touching interface between the annular member and second end of the magnetic core, and wherein the flux sensor comprises a magnetic field sensor integrated at the second touching interface between the annular member and second end of the magnetic core.

26. The electromagnetic actuator of claim 13 , wherein the flux return structure further comprises a high permeability structure arranged between the inner wall surface of the housing and the armature such that a first touching interface is between the high permeability structure and the inner wall surface of the housing and a second touching interface is between the high permeability structure and the armature, and wherein the flux sensor comprises a magnetic field sensor integrated at the first touching interface between the high permeability structure and the inner wall surface of the housing.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 26, 2015
From: NEHL, THOMAS WOLFGANG; NAMUDURI, CHANDRA S.; OMEKANDA, AVOKI M.; GOPALAKRISHNAN, SURESH
To: GM GLOBAL TECHNOLOGY OPERATIONS LLC
Reel/Frame 035261/0501 →
Continuity (2)
Provisional Application 61968001 · Mar 20, 2014
Related Publication 20150267669A1 · Sep 24, 2015