IP Library Granted Patent US 9,768,658
Granted Patent B2
US 9,768,658 · App. 14/391,135 · Granted Sep 19, 2017

Casing for a rotary electric machine, and rotary electric machine comprising a casing

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 9,768,658
App. No.
14/391,135
Granted
Sep 19, 2017
Kind
B2
Abstract

A casing for a rotary electric machine and a rotating electric machine includes an inner casing part made of a metal or a metal alloy and which encloses a stator and a rotor of the rotary electric machine, an outer casing part made of plastic and which at least partially surrounds the inner casing part, and at least one connection point located between the inner casing part and the outer casing part and which mechanically connects the outer casing part to the inner casing part, wherein the at least one connection point has a first flange on the outer casing part and a second flange on the inner casing part.

Claims (31)

1. A casing for a rotary electric machine, the casing comprising:

an inner casing formed from a metal or a metal alloy, the inner casing including a base, a jacket, and an end shield combining to enclose a stator and a rotor of the rotary electric machine;

an outer casing part and a cover both formed from a plastic, the outer casing part and cover combining to at least partially surround the inner casing;

at least one connection point located between the inner casing jacket and the outer casing part, wherein the outer casing part is mechanically connected to the inner casing jacket via the at least one connection point;

wherein the at least one connection point comprises a first flange formed on the outer casing part and a second flange formed on the inner casing jacket; and

a set of flange screws passing through the first flange and the second flange to fixedly connect the inner casing jacket to the outer casing part and transmit torque from the rotor to the outer casing part.

2. The casing of claim 1 , wherein the end shield is mechanically connected to the inner casing jacket and the outer casing part via the at least one connection point, wherein the at least one connection point comprises a third flange formed on the end shield.

3. The casing of claim 2 , wherein the first, the second, and the third flange are arranged on the outer casing part in a manner overlapping one another and are interconnected in a form-fitting or force-locked manner in order to transmit force from at least one of the inner casing jacket and the end shield to the outer casing part.

4. The casing of claim 2 , wherein the casing comprises at least one air gap in the region of the connection point and between at least one of the outer casing part, the inner casing jacket, and the end shield, said air gap being configured to compensate for manufacturing tolerances between the at least one of the outer casing part, the inner casing jacket, and the end shield.

5. The casing of claim 4 , wherein the casing, in the at least one air gap, comprises at least one second O-ring, which is configured to compensate for manufacturing tolerances between the at least one of the outer casing part, the inner casing jacket, and the end shield and to center the at least one of the outer casing part, the inner casing jacket, and the end shield relative to one another.

6. The casing of claim 1 , wherein the inner casing jacket comprises a first cylindrical wall and the outer casing part comprises a second cylindrical wall, wherein the second cylindrical wall of the outer casing part surrounds the first cylindrical wall of the inner casing jacket.

7. The casing of claim 1 , wherein the casing comprises at least one cavity between the outer casing part and the inner casing jacket for accommodating a cooling liquid.

8. The casing of claim 7 , wherein the cavity is formed between the first cylindrical wall of the inner casing jacket and the second cylindrical wall of the outer casing part.

9. The casing of claim 7 , wherein the casing comprises at least one first O-ring between the outer casing part and the inner casing jacket in order to seal the cavity in a watertight manner.

10. The casing of claim 1 , wherein the inner casing jacket consists of a metal alloy containing iron, chromium and nickel, wherein chromium is contained in a percentage by weight from 18 to 19 and nickel is contained in a percentage by weight from 12 to 13.

11. The casing of claim 1 , further comprising a set of electromagnetic compatibility foils disposed in the outer casing part.

12. A rotary electric machine comprising:

a casing comprising:

an inner casing formed from a metal or a metal alloy, the inner casing including a base, a jacket, and an end shield combining to enclose a stator and a rotor of the rotary electric machine;

an outer casing part and a cover both formed from a plastic, the outer casing part and the cover combining to at least partially surround the inner casing;

at least one connection point located between the inner casing jacket and the outer casing part, wherein the outer casing part is mechanically connected to the inner casing jacket via the at least one connection point;

wherein the at least one connection point comprises a first flange formed on the outer casing part and a second flange formed on the inner casing jacket; and

a set of flange screws passing through the first flange and the second flange to fixedly connect the inner casing jacket to the outer casing part and transmit torque from the rotor to the outer casing part.

13. The rotary electric machine of claim 12 , wherein the end shield is mechanically connected to the inner casing jacket and the outer casing part via the at least one connection point, wherein the at least one connection point comprises a third flange formed on the end shield.

14. The rotary electric machine of claim 13 , wherein the first, the second, and the third flange are arranged on the outer casing part in a manner overlapping one another and are interconnected in a form-fitting or force-locked manner in order to transmit force from at least one of the inner casing jacket and the end shield to the outer casing part.

15. The rotary electric machine of claim 12 , wherein the inner casing jacket comprises a first cylindrical wall and the outer casing part comprises a second cylindrical wall, wherein the second cylindrical wall of the outer casing part surrounds the first cylindrical wall of the inner casing part.

16. The rotary electric machine of claim 12 , wherein the casing comprises at least one cavity between the outer casing part and the inner casing jacket for accommodating a cooling liquid.

17. The rotary electric machine of claim 16 , wherein the cavity is formed between the first cylindrical wall of the inner casing jacket and the second cylindrical wall of the outer casing part.

18. The rotary electric machine of claim 16 , wherein the casing comprises at least one first O-ring between the outer casing part and the inner casing jacket in order to seal the cavity in a watertight manner.

19. The rotary electric machine of claim 12 , wherein the inner casing jacket consists of a metal alloy containing iron, chromium and nickel, wherein chromium is contained in a percentage by weight from 18 to 19 and nickel is contained in a percentage by weight from 12 to 13.

20. The rotary electric machine of claim 12 , further comprising a set of electromagnetic compatibility foils disposed in the outer casing part.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 23, 2020
From: CONTINENTAL AUTOMOTIVE GMBH
To: VITESCO TECHNOLOGIES GMBH
Reel/Frame 053302/0633 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 27, 2014
From: BULATOW, MICHAEL
To: CONTINENTAL AUTOMOTIVE GMBH
Reel/Frame 034273/0909 →