Claims
- 1. A method of making a commutator ring having a tubular portion defining an outer tubular diameter, a flange defining an outer flange diameter, and a plurality of segments having connection lugs and anchoring means, said method comprising the steps of:
- providing a tube-shaped blank having
- a tube portion with an inner wall and defining an outer tube diameter,
- a radially outwardly projecting flange portion located at one end of said tube portion, having lug sections and defining an outer initial lug diameter,
- segmental grooves in said inner wall, and
- radially inwardly projecting segments defined by said grooves, located between said grooves and having end portions;
- providing the tube-shaped blank with radially extending separating slits in the flange portion thereby partially separating said flange portion into radially extending connection lugs, while maintaining said flange portion as a connected, slitted structure;
- placing said tube-shaped blank in a first die of a forming apparatus;
- penetrating the separating slits with locking pins thereby retaining said tube-shaped blank in position in the forming apparatus;
- in a single working step, reducing the outer diameter of said tube portion to the outer diameter of the tublar portion and reducing the outer diameter of said flange portion to the outer diameter of the flange by engaging reduction elements with said tube-shaped blank and causing the reduction elements to press radially inwardly against said tube-shaped blank while retaining said tube portion throughout its length as a continuous tubular element and while maintaining said flange as the slitted structure, and forming the anchoring means by deforming the end portions of the radially inwardly projecting segments by axially moving a deforming die element from an initial position through said tube-shaped blank while continuously pressing the reduction elements against said tube-shaped blank;
- withdrawing the deforming die element to the initial position; and then
- ejecting said tube-shaped blank, upon opening of the forming apparatus, by moving the first die to an open position.
- 2. The method of claim 1, wherein the step of reducing the outer diameter of the flange portion and the tube portion comprises moving elements of the apparatus axially and transforming this axially directed movement to a radially directed movement, applying the radially directed movement to the reduction elements, and moving the reduction elements radially inwardly simultaneously against individual segments and to the connection lugs.
- 3. The method of claim 1, wherein said reduction elements are radially movable slides and the segmental grooves define a depth,
- said method further including the steps of
- providing an axially movable punch plate,
- and reducing the depth of the segmental grooves (6) by radially pressing on the segments and lugs, while pressing inner sides of the segments between teeth of the die by radial movement of the slides during axial movement of the punch plate, thereby forming said anchoring means by deforming the segments.
- 4. The method of claim1, wherein the step of reducing the outer diameter of the tube portion is carried out in more than one stage,
- the method further including the steps of
- providing the deforming die with first, second and third sections of different diameters, said first, second and third sections having tooth sections having a profile corresponding to that of the segmental grooves (6),
- pressing the blank (1) onto a section of the first die having a large diameter in a first stage by the slides (73) when the slides act radially as reduction means, and
- subsequently moving the first die in a forming apparatus axially with respect to the blank and a support plate;
- deforming the blank to a next smaller diameter in a second stage, including
- pressing the slides further radially on the segments (7) and lugs (10) by means of a punch plate,
- while further pressing the segments (7) between the teeth of the deforming die element.
- 5. The method of claim 4, further including the steps of
- opening the forming apparatus, and
- ejecting the commutator ring (2) by movement of the deforming die element to its initial position.
- 6. The method of claim 1, wherein the deforming die element includes a gauging apparatus comprising at least one gauging ring fastened on the die having teeth corresponding to the segmental grooves (6) of the commutator ring (6), and
- further including the steps of
- pulling the gauging apparatus through the blank (1) during movement of the deforming die to its initial position, and
- holding said blank by the slides in a support plate while forming the segments (7) formed into dovetails (44).
- 7. The method of claim 1, further including the steps of
- opening the forming apparatus, and
- ejecting said tube-shaped blank during movement of the deforming die element to its intial position.
- 8. The method of claim 1, further including the steps of
- supporting the blank on a lower support plate, which receives the slides (59),
- processing said blank by a one-part, two-stage die with gauging apparatus, while moving a punch plate, fastened to an upper support plate, axially onto the slides, and pressing radially on the segments.
- 9. Method according to claim 1,
- wherein the slitted structure defines connecting cross pieces located, respectively, at radially outward ends of the separating slits in the flange portion;
- and further including the step of bowing the connecting cross pieces and narrowing the slits.
- 10. The method of claim 1, wherein said reduction elements comprise slides which are movable radially inwardly with respect to the tube-shaped blank;
- and wherein the method step of engaging the reduction elements comprises
- applying said radially movable slides inwardly against said tube portion and against the flange portion, while maintaining continuous connecting material of the blank between said tube portion and the flange portion over the entire length of said blank.
- 11. Method according to claim 10, wherein said step of applying said movable slides against said segments further comprises pressing said segments against corresponding, longitudinally running teeth on the outer, cylindrical surface of said die to form the anchoring means.
- 12. Method according to claim 9, wherein said step of applying said movable slides against said segments further comprises pressing said segments against corresponding, longitudinally running teeth on the outer, cylindrical surface of said die to form the anchoring means.
- 13. The method of claim 10, wherein the forming apparatus includes
- a holding element retaining said slides, said slides and said holding element being formed with matching inclined surfaces;
- said forming apparatus further includes a pressure plate;
- and wherein the step of applying said radially movable slides inwardly against said tube portion and against the flange portion comprises
- axially moving the pressure plate with respect to said holding element to cause radial movement of said slides by axial movement of the pressure plate.
- 14. Method according to claim 10,
- wherein the slitted structure defines connecting cross pieces located, respectively, at radially outward ends of the separating slits in the flange portion;
- and further including the step of bowing the connecting cross pieces and narrowing the slits.
Priority Claims (1)
| Number |
Date |
Country |
Kind |
| 3243191 |
Nov 1982 |
DEX |
|
Parent Case Info
Cross reference to related applications, assigned to the assignee of the present application, the disclosures of which are hereby incorporated by references: U.S. Ser. 552,984, filed Nov. 17, 1983, new U.S. Pat. No. 4611,391 FRANZ et al "COMMUTATOR RING MANUFACTURING METHOD, AND APPARATUS"; U.S. Ser. No. 552,977 filed Nov. 17, 1983 now abandoned, BODE et al "METHOD OF MAKING A COMMUTATOR RING HAVING SEGMENTS".
US Referenced Citations (6)
Foreign Referenced Citations (4)
| Number |
Date |
Country |
| 36444 |
Sep 1981 |
EPX |
| 181441 |
Oct 1983 |
JPX |
| 651882 |
Mar 1979 |
SUX |
| 682306 |
Aug 1979 |
SUX |