IP Library › Granted Patent US 10,958,144
Granted Patent B2
US 10,958,144 · App. 16/141,281 · Granted Mar 23, 2021

Method of manufacturing an induction rotor

Inventors: John S. Agapiou (Rochester Hills, MI); Thomas A. Perry (Bruce Township, MI)
Assignee: GM GLOBAL TECHNOLOGY OPERATIONS LLC
H02K15/09H02K3/04H02K15/0012H02K15/02H02K17/28Y10T29/49012
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,958,144
App. No.
16/141,281
Granted
Mar 23, 2021
Kind
B2
Abstract

A method for manufacturing an induction rotor includes placing a lamination stack into a fixture in which the first end of the lamination stack is rotated in an opposite rotational direction from the second end of the lamination stack to skew the conduction bars to an angle α. Vertical members are fixed to an outer perimeter of each of the plurality of laminates of the lamination stack. Hoop members are fixed to each of the plurality of vertical members and an outer edge of each of the plurality of conduction bars. A conduction ring is fixed on each of the ends of the lamination stack. An outer perimeter of the lamination stack is machined to remove the plurality of vertical members and the plurality of hoop members from the lamination stack.

Claims (31)

1. A method for manufacturing an induction rotor, the method comprising:

providing a lamination stack comprising a plurality of laminates and a plurality of conduction bars, the lamination stack having a first end and a second end opposite the first end;

installing a retainer ring on each of the first end and the second end of the lamination stack;

placing the lamination stack into a fixture;

rotating the first end of the lamination stack in an opposite rotational direction from the second end of the lamination stack to skew the conduction bars to an angle α;

fixing a plurality of vertical members to a first outer perimeter of each of the plurality of laminates of the lamination stack;

fixing a plurality of hoop members to each of the plurality of vertical members and an outer edge of each of the plurality of conduction bars;

fixing a conduction ring on each of the first end and the second end of the lamination stack;

machining a second outer perimeter of the lamination stack to remove the plurality of vertical members and the plurality of hoop members from the lamination stack.

2. The method of claim 1 wherein providing the lamination stack comprising the plurality of laminates and the plurality of conduction bars, the lamination stack having the first end and the second end opposite the first end further comprises providing the lamination stack comprising the plurality of laminates and the plurality of conduction bars, the lamination stack having the first end and the second end opposite the first end, and wherein each of the laminates of the plurality of laminates include a plurality of slots equally spaced on an outside perimeter of the laminates forming a plurality of elongated grooves and one of the plurality of conduction bars are disposed in each of the elongated grooves of the plurality of elongated grooves.

3. The method of claim 1 wherein installing the retainer ring on each of the first end and the second end of the lamination stack further comprises installing the retainer ring in a groove formed by a notch on an inner edge of each of the plurality of conduction bars on each of the first end and the second end of the lamination stack.

4. The method of claim 1 wherein installing the retainer ring on each of the first end and the second end of the lamination stack further comprises installing the retainer ring in a groove formed by a notch on an outer edge of each of the plurality of conduction bars on each of the first end and the second end of the lamination stack.

5. The method of claim 1 wherein fixing the plurality of vertical members to the outer perimeter of the plurality of laminates of the lamination stack further comprises fixing the plurality of vertical members to the outer perimeter of the plurality of laminates of the lamination stack by welding.

6. The method of claim 1 wherein fixing the plurality of hoop members to the plurality of vertical members and the outer edge of the plurality of conduction bars further comprises fixing the plurality of hoop members to the plurality of vertical members and the outer edge of the plurality of conduction bars by welding.

7. The method of claim 1 wherein fixing the conduction ring on each of the first end and the second end of the lamination stack further comprises fixing the conduction ring on each of the first end and the second end of the lamination stack by forming the conduction ring on each of the first end and the second end of the lamination stack by an over mold casting process.

8. The method of claim 1 wherein fixing the conduction ring on each of the first end and the second end of the lamination stack further comprises fixing the conduction ring on each of the first end and the second end of the lamination stack by one of welding and brazing the conduction ring on each of the first end and the second end of the lamination stack.

9. A method for manufacturing an induction rotor, the method comprising:

providing a lamination stack comprising a plurality of laminates and a plurality of conduction bars, the lamination stack having a first end and a second end opposite the first end, and wherein each of the laminates of the plurality of laminates include a plurality of slots equally spaced on an outside perimeter of the laminates forming a plurality of elongated grooves and one of the plurality of conduction bars are disposed in each of the elongated grooves of the plurality of elongated grooves;

installing a retainer ring on each of the first end and the second end of the lamination stack;

placing the lamination stack into a fixture;

rotating the first end of the lamination stack in an opposite rotational direction from the second end of the lamination stack to skew the conduction bars to an angle α;

fixing a plurality of vertical members to a first outer perimeter of each of the plurality of laminates of the lamination stack;

fixing a plurality of hoop members to each of the plurality of vertical members and an outer edge of each of the plurality of conduction bars;

fixing a conduction ring on each of the first end and the second end of the lamination stack;

machining a second outer perimeter of the lamination stack to remove the plurality of vertical members and the plurality of hoop members from the lamination stack.

10. The method of claim 9 wherein installing the retainer ring on each of the first end and the second end of the lamination stack further comprises installing the retainer ring in a groove formed by a notch on an inner edge of each of the plurality of conduction bars on each of the first end and the second end of the lamination stack.

11. The method of claim 9 wherein installing the retainer ring on each of the first end and the second end of the lamination stack further comprises installing the retainer ring in a groove formed by a notch on an outer edge of each of the plurality of conduction bars on each of the first end and the second end of the lamination stack.

12. The method of claim 9 wherein fixing the plurality of vertical members to the outer perimeter of the plurality of laminates of the lamination stack further comprises fixing the plurality of vertical members to the outer perimeter of the plurality of laminates of the lamination stack by welding.

13. The method of claim 12 wherein fixing the plurality of hoop members to the plurality of vertical members and the outer edge of the plurality of conduction bars further comprises fixing the plurality of hoop members to the plurality of vertical members and the outer edge of the plurality of conduction bars by welding.

14. The method of claim 13 wherein fixing the conduction ring on each of the first end and the second end of the lamination stack further comprises fixing the conduction ring on each of the first end and the second end of the lamination stack by forming the conduction ring on each of the first end and the second end of the lamination stack by an over mold casting process.

15. The method of claim 13 wherein fixing the conduction ring on each of the first end and the second end of the lamination stack further comprises fixing the conduction ring on each of the first end and the second end of the lamination stack by one of welding and brazing the conduction ring on each of the first end and the second end of the lamination stack.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 28, 2018
From: AGAPIOU, JOHN S.; PERRY, THOMAS A.
To: GM GLOBAL TECHNOLOGY OPERATIONS LLC
Reel/Frame 047571/0324 →
Continuity (1)
Related Publication 20200099280A1 · Mar 26, 2020
Cited By (2)
US 12,416,673 US 12,656,204