IP Library Granted Patent US 11,522,427
Granted Patent B2
US 11,522,427 · App. 17/006,118 · Granted Dec 6, 2022

Single phase induction motors including aluminum windings and high permeability low coreloss steel

Inventors: Amar Balasaheb Mohol (Kothrud Pune, IN); Vaibhav Audhut Kadam (Thergaon Pune, IN)
Assignee: Emerson Electric Co.
H02K17/04F25B31/02H02K1/16H02K3/02
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Quick Facts
Patent No.
US 11,522,427
App. No.
17/006,118
Granted
Dec 6, 2022
Kind
B2
Abstract

A single phase induction motor includes a stator core having a stator yoke and a plurality of teeth extending toward a central opening. The plurality of teeth are spaced apart from one another and define multiple slots between the teeth for receiving windings of the single phase induction motor. The stator core includes a high permeability low coreloss (HPLC) steel having a relative permeability of greater than or equal to 3000 at 1.5 Tesla and 60 Hertz, and a coreloss of less than or equal to 1.75 watts/lb at 1.5 Tesla and 60 Hertz. The motor also includes multiple windings located within the plurality of slots and wrapped around the plurality of teeth of the stator core. Each of the multiple windings include aluminum wire. The motor further includes a rotor body located concentrically within the stator core and including an external surface that faces the stator core.

Claims (41)

1. A single phase induction motor comprising:

a stator core including a stator yoke and a plurality of teeth extending from the stator yoke toward a central opening, the central opening extending from a first end of the stator core to a second end of the stator core opposite the first end, the plurality of teeth spaced apart from one another and defining a plurality of slots between the plurality of teeth for receiving windings of the single phase induction motor, the stator core comprising a high permeability low coreloss (HPLC) steel having a relative permeability of greater than or equal to 3000 at 1.5 Tesla and 60 Hertz, and a coreloss of less than or equal to 1.75 watts/lb at 1.5 Tesla and 60 Hertz;

multiple windings located within the plurality of slots and wrapped around the plurality of teeth of the stator core, each of the multiple windings comprising aluminum wire; and

a rotor body located concentrically within the stator core, the rotor body including an external surface that faces the stator core.

2. The motor of claim 1 , wherein the multiple windings comprise a hybrid of aluminum and copper.

3. The motor of claim 1 , wherein the multiple windings comprise only aluminum.

4. The motor of claim 1 , wherein a peak flux density of the motor is greater than or equal to 1.5 Tesla.

5. The motor of claim 1 , wherein a volume of the motor is less than or equal to 133.43 cubic inches, as measured by multiplying a length of the motor with the motor diameter squared.

6. The motor of claim 1 , wherein an outer diameter of the stator core is less than or equal to 5.3 inches.

7. The motor of claim 1 , wherein a stack height of the stator core is less than or equal to 4.75 inches.

8. The motor of claim 1 , wherein the relative permeability of the steel of the stator core is greater than or equal to 9000 at 1.25 Tesla and 60 Hertz.

9. The motor of claim 1 , wherein the relative permeability of the steel of the stator core is greater than or equal to 3500 at 1.5 Tesla and 60 Hz.

10. The motor of claim 1 , wherein a coreloss of the steel of the stator core is less than or equal to 1.25 watts/lb at 1.25 Tesla and 60 Hertz.

11. The motor of claim 1 , wherein a coreloss of the steel of the stator core is less than or equal to 1.6 watts/lb at 1.5 Tesla and 60 Hertz.

12. The motor of claim 1 , wherein a thickness of the steel is between 0.0141 inches and 0.030 inches.

13. The motor of claim 1 , wherein the rotor body comprises the high permeability low coreloss (HPLC) steel having a relative permeability of greater than or equal to 3000 at 1.5 Tesla and 60 Hertz, and a coreloss of less than or equal to 1.75 watts/lb at 1.5 Tesla and 60 Hertz.

14. A compressor apparatus comprising:

a compression unit; and

the motor of claim 1 coupled to drive the compression unit.

15. The compressor apparatus of claim 14 , wherein the compression unit comprises a scroll compressor.

16. A pump apparatus comprising:

a pump; and

the motor of claim 1 coupled to drive the pump.

17. A single phase induction motor comprising:

a stator core including a stator yoke and a plurality of teeth extending from the stator yoke toward a central opening, the central opening extending from a first end of the stator core to a second end of the stator core opposite the first end, the plurality of teeth spaced apart from one another and defining a plurality of slots between the plurality of teeth for receiving windings of the single phase induction motor, the stator core comprising a high permeability low coreloss (HPLC) steel having a coreloss of less than or equal to 1.6 watts/lb at 1.5 Tesla;

multiple windings located within the plurality of slots and wrapped around the plurality of teeth of the stator core, each of the multiple windings comprising aluminum wire; and

a rotor body located concentrically within the stator core, the rotor body including an external surface that faces the stator core.

18. The motor of claim 17 , wherein a coreloss of the steel of the stator core is less than or equal to 1.25 watts/lb at 1.25 Tesla.

19. The motor of claim 17 , wherein the rotor body comprises the high permeability low coreloss (HPLC) steel having a coreloss of less than or equal to 1.6 watts/lb at 1.5 Tesla and 60 Hertz.

20. A single phase induction motor comprising:

a stator core including a stator yoke and a plurality of teeth extending from the stator yoke toward a central opening, the central opening extending from a first end of the stator core to a second end of the stator core opposite the first end, the plurality of teeth spaced apart from one another and defining a plurality of slots between the plurality of teeth for receiving windings of the single phase induction motor, the stator core comprising a high permeability low coreloss (HPLC) steel having a relative permeability of greater than or equal to 3500 at 1.5 Tesla and 60 Hz;

multiple windings located within the plurality of slots and wrapped around the plurality of teeth of the stator core, each of the multiple windings comprising aluminum wire; and

a rotor body located concentrically within the stator core, the rotor body including an external surface that faces the stator core.

21. The motor of claim 20 , wherein the relative permeability of the steel of the stator core is greater than or equal to 9000 at 1.25 Tesla and 60 Hertz.

22. The motor of claim 20 , wherein the rotor body comprises the high permeability low coreloss (HPLC) steel having a relative permeability of greater than or equal to 3500 at 1.5 Tesla and 60 Hertz.

23. A compressor apparatus comprising:

a scroll compression unit; and

a single phase induction motor coupled to drive the scroll compression unit, the single phase induction motor comprising:

a stator core including a stator yoke and a plurality of teeth extending from the stator yoke toward a central opening, the central opening extending from a first end of the stator core to a second end of the stator core opposite the first end, the plurality of teeth spaced apart from one another and defining a plurality of slots between the plurality of teeth for receiving windings of the single phase induction motor;

multiple windings located within the plurality of slots and wrapped around the plurality of teeth of the stator core, each of the multiple windings comprising aluminum wire; and

a rotor body located concentrically within the stator core, the rotor body including an external surface that faces the stator core, the rotor body and the stator core comprising a high permeability low coreloss (HPLC) steel having a relative permeability of greater than or equal to 3000 at 1.5 Tesla and 60 Hertz, and a coreloss of less than or equal to 1.75 watts/lb at 1.5 Tesla and 60 Hertz, wherein an outer diameter of the stator core is less than or equal to 5.3 inches and a stack height of the stator core is less than or equal to 4.75 inches.

Assignments (6)
SECURITY INTEREST Recorded Jul 9, 2024
From: COPELAND SCROLL COMPRESSORS LP
To: U.S. BANK TRUST COMPANY, NATIONAL ASSOCIATION, AS NOTES COLLATERAL AGENT
Reel/Frame 068240/0699 →
SECURITY INTEREST Recorded Jul 17, 2023
From: COPELAND SCROLL COMPRESSORS LP
To: ROYAL BANK OF CANADA, AS COLLATERAL AGENT
Reel/Frame 064278/0879 →
SECURITY INTEREST Recorded Jul 17, 2023
From: COPELAND SCROLL COMPRESSORS LP
To: U.S. BANK TRUST COMPANY, NATIONAL ASSOCIATION, AS NOTES COLLATERAL AGENT
Reel/Frame 064279/0001 →
SECURITY INTEREST Recorded Jul 17, 2023
From: COPELAND SCROLL COMPRESSORS LP
To: WELLS FARGO BANK, NATIONAL ASSOCIATION, AS COLLATERAL AGENT
Reel/Frame 064280/0549 →
TRANSFER AGREEMENT Recorded May 30, 2023
From: EMERSON ELECTRIC CO.
To: HERMETIC MOTORS LP
Reel/Frame 063804/0682 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 4, 2020
From: MOHOL, AMAR BALASAHEB; KADAM, VAIBHAV AUDHUT
To: EMERSON ELECTRIC CO.
Reel/Frame 053698/0285 →
Continuity (1)
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