IP Library › Granted Patent US 9,484,784
Granted Patent B2
US 9,484,784 · App. 14/149,290 · Granted Nov 1, 2016

Electric motor systems and methods

Inventors: Trevor Hardway (Midland, TX); Michael Salerno (Hereford, AZ); Ronald David Wallin (Midland, TX)
Assignee: HENRY RESEARCH AND DEVELOPMENT, LLC
H02K5/132E21B43/128H02K2213/03H02K2213/09
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Quick Facts
Patent No.
US 9,484,784
App. No.
14/149,290
Granted
Nov 1, 2016
Kind
B2
Abstract

Electric motor systems and methods may provide highly efficient operation. The electric motor systems and methods discussed herein provide an oil filled motor that is low speed and utilizes permanent magnets. The electric motor may utilize a large number of poles and fractional slot design. Further, in some embodiments, the electric motor systems and methods may be suitable for use downhole.

Claims (37)

1. An electric motor for operation in a well, the electric motor comprising:

a stator providing a plurality of slots, wherein the stator is formed from laminated stack that are bonded;

a plurality of windings for the plurality of slots of the stator;

a rotor providing a plurality of permanent magnets arranged around the outer circumference of the rotor;

a lubrication chamber containing a lubricant for the electric motor, wherein the lubrication chamber is sealed

wherein further a length of the electric motor is 7 feet or less and an outer diameter of the electric motor is 4½ inches or less, and

the electric motor is capable of providing 50 ft-lb of torque or greater at 1200 rpm.

2. The electric motor of claim 1 , wherein the electric motor provides a fractional slot design.

3. The electric motor of claim 1 , wherein the plurality of slots provide an open slot design.

4. The electric motor of claim 1 , wherein the electric motor provides 27 slots, 8 poles, and 9 coils per phase or 39 slots, 12 poles, and 13 coils per phase.

5. The electric motor of claim 1 , wherein an OD to ID ratio is 1.42 or less, the OD to ID ratio is a ratio of an outside diameter of the stator relative to an inside diameter of the stator.

6. The electric motor of claim 1 , wherein a stator assembly comprising the laminated stack is heat shrunk into a motor housing.

7. The electric motor of claim 1 , wherein slot fill is 50% or greater.

8. The electric motor of claim 1 , wherein the plurality of permanent magnets are samarium cobalt magnets.

9. The electric motor of claim 1 , further comprising a banding surrounding the plurality of permanent magnet to retain and protect the plurality of magnets.

10. The electric motor of claim 1 , wherein the electric motor weighs 100 lbs or less.

11. The electric motor of claim 1 , wherein the electric motor is suitable for operation at depths equal to or between 2,500 to 15,000 feet.

12. The electric motor of claim 11 , wherein the electric motor is suitable for operation in environment temperatures equal to or between 180 to 400° F.

13. An electric motor comprising:

a stator providing a plurality of slots, wherein an OD to ID ratio is 1.42 or less, the OD to ID ratio is a ratio of an outside diameter of the stator relative to an inside diameter of the stator, an outer diameter of the electric motor is 4½ inches or less and a length of the electric motor is 4 feet or less;

a plurality of windings for the plurality of slots of the stator;

a rotor providing a plurality of permanent magnets arranged around the outer circumference of the rotor; and

a lubrication chamber for the electric motor, wherein the lubrication chamber is sealed, wherein further the electric motor is capable of providing 50 ft-lb of torque or greater at 1200 rpm.

14. The electric motor of claim 13 , wherein the electric motor provides a fractional slot design.

15. The electric motor of claim 13 , wherein a length of the electric motor is 7 feet or less.

16. The electric motor of claim 15 , wherein the electric motor is suitable for operation at depths equal to or between 2,500 to 15,000 feet and for operation in environment temperatures equal to or between 180 to 400° F.

17. An electric motor comprising:

a stator providing a plurality of slots;

a plurality of windings for the plurality of slots of the stator;

a rotor providing a plurality of permanent magnets arranged around the outer circumference of the rotor;

a lubrication chamber for the electric motor, wherein the lubrication chamber is sealed;

wherein a length of the electric motor is approximately 4 feet, an outer diameter of the electric motor is 4½ inches or less, and the electric motor is capable of providing 50 ft-lb of torque or greater at 1200 rpm; and

a pressure compensation piston for the electric motor positioned in a tubular chamber, wherein a first end of the pressure compensation piston is exposed to the lubricant and a second end is exposed to external fluids or gases, and the pressure compensation piston is movable within the tubular chamber to minimizes a pressure differential between the lubricant for the electric motor and external fluids or gases.

18. The electric motor of claim 17 , wherein the motor operates with an efficiency of 85% or greater.

19. The electric motor of claim 17 , wherein the electric motor operates at 380 volts and 10-12 amps under load.

20. The electric motor of claim 17 , wherein the electric motor is suitable for operation at depths equal to or between 2,500 to 15,000 feet.

21. The electric motor of claim 20 , wherein the electric motor is suitable for operation in environment temperatures equal to or between 180 to 400° F.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 24, 2014
From: HARDWAY, TREVOR; SALERNO, MICHAEL; WALLIN, RONALD DAVID
To: HENRY RESEARCH AND DEVELOPMENT
Reel/Frame 032513/0088 →
Continuity (2)
Provisional Application 61749475 · Jan 7, 2013
Related Publication 20140191602A1 · Jul 10, 2014