IP Library Patent Application 18717751
Patent Application
App. No. 18/717,751

A ROTOR ASSEMBLY METHOD

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Quick Facts
Patent No.
US None
App. No.
18/717,751
Abstract

A rotor assembly method includes an assembly step configured to install a stack of laminations on a rotor shaft of a rotor, wherein the stack of laminations includes an inner portion and an outer portion which is, compared to the inner portion, more distant to the rotor shaft. A compression step includes compressing the inner portion to provoke accordingly a fan-out of the outer portion, so as to form a compact inner portion and a fan-out outer portion. A compacting step includes compacting the fan-out outer portion to form a compact outer portion, a compact lamination package including the compact inner portion and the compact outer portion being thus formed.

Claims (23)

1 . A rotor assembly method, comprising:

an assembly step configured to install a stack of laminations on a rotor shaft of a rotor, wherein the stack of laminations comprises an inner portion and an outer portion which is, compared to the inner portion, more distant to the rotor shaft;

compression step consisting of compressing the inner portion to provoke accordingly a fan-out of the outer portion, so as to form a compact inner portion and a fan-out outer portion; and

a compacting step consisting of compacting the fan-out outer portion to form a compact outer portion; a compact lamination package comprising the compact inner portion and the compact outer portion being thus formed.

2 . The rotor assembly method according to claim 1 , wherein the compacting step comprises applying an axial force on two axial ends of the fan-out outer portion.

3 . The rotor assembly method according to claim 2 , wherein the compacting step comprises using a pressing device to apply the axial force, the pressing device being in contact with the two axial ends of the fan-out outer portion.

4 . The rotor assembly method according to claim 3 , wherein after the compact outer portion is obtained and the field coil is wound on the compact outer portion, the pressing device is removed.

5 . The rotor assembly method according to claim 1 , wherein the compacting step comprises using a tension applied by the field coil being wound on the fan-out outer portion during a winding step.

6 . The rotor assembly method according to claim 1 , wherein the compression step comprises using two compression elements to apply a pre-defined compression force on two axial ends of the inner portion in order to form the compact inner portion, wherein the compression elements are not in contact with the axial ends of the outer portion.

7 . The rotor assembly method according to claim 6 , wherein one of the compression elements is a shoulder extending from the rotor shaft, and the other one of the compression elements is a lock-nut.

8 . The rotor assembly method according to claim 1 , wherein a distance between two axial ends of the fan-out outer portion is greater than a distance between two axial ends of the compact inner portion.

9 . The rotor assembly method according to claim 1 , wherein the compact lamination package comprises teeth projecting radially, and a pretension of the field coil ensures that the field coil is precisely and firmly wound on each of the tooth of the teeth.

10 . A rotor being manufactured by using a rotor assembly method according to claim 1 .

11 . The rotor according to the preceding claim 10 , being a separately excited rotor for an electrically excited synchronous motor (EESM).

12 . The rotor assembly method according to claim 2 , wherein the compacting step comprises using a tension applied by the field coil being wound on the fan-out outer portion during a winding step.

13 . The rotor assembly method according to claim 2 , wherein the compression step comprises using two compression elements to apply a pre-defined compression force on two axial ends of the inner portion in order to form the compact inner portion, wherein the compression elements are not in contact with the axial ends of the outer portion.

14 . The rotor assembly method according to claim 2 , wherein a distance between two axial ends of the fan-out outer portion is greater than a distance between two axial ends of the compact inner portion.

15 . The rotor assembly method according to claim 2 , wherein the compact lamination package comprises teeth projecting radially, and a pretension of the field coil ensures that the field coil is precisely and firmly wound on each of the tooth of the teeth.

16 . A rotor being manufactured by using a rotor assembly method according to claim 2 .

17 . The rotor assembly method according to claim 3 , wherein the compacting step comprises using a tension applied by the field coil being wound on the fan-out outer portion during a winding step.

18 . The rotor assembly method according to claim 3 , wherein the compression step comprises using two compression elements to apply a pre-defined compression force on two axial ends of the inner portion in order to form the compact inner portion, wherein the compression elements are not in contact with the axial ends of the outer portion.

19 . The rotor assembly method according to claim 3 , wherein a distance between two axial ends of the fan-out outer portion is greater than a distance between two axial ends of the compact inner portion.

20 . The rotor assembly method according to claim 3 , wherein the compact lamination package comprises teeth projecting radially, and a pretension of the field coil ensures that the field coil is precisely and firmly wound on each of the tooth of the teeth.

Assignments (2)
CHANGE OF NAME Recorded Jul 22, 2026
From: VALEO EAUTOMOTIVE GERMANY GMBH; VALEO SIEMENS EAUTOMOTIVE GERMANY GMBH; SIEMENS AUTOMOTIVE EPOWERTRAIN SYSTEMS GMBH; BLITZ E16-802 GMBH
To: VALEO ELECTRIFICATION
Reel/Frame 076028/0968 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 5, 2024
From: WOLF, NICO; SCHLERETH, ALEXANDER
To: VALEO EAUTOMOTIVE GERMANY GMBH
Reel/Frame 069490/0400 →