US969892A - Commutator bar and lead. - Google Patents
Commutator bar and lead. Download PDFInfo
- Publication number
- US969892A US969892A US46862508A US1908468625A US969892A US 969892 A US969892 A US 969892A US 46862508 A US46862508 A US 46862508A US 1908468625 A US1908468625 A US 1908468625A US 969892 A US969892 A US 969892A
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- US
- United States
- Prior art keywords
- grooves
- commutator
- bar
- aperture
- connector
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Expired - Lifetime
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01R—ELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
- H01R39/00—Rotary current collectors, distributors or interrupters
- H01R39/02—Details for dynamo electric machines
- H01R39/04—Commutators
Definitions
- My invention relates to dynamo-electric machines and particularly to the construction of the commutators of such machines and the fastening means between the commutator bars or segments and the armature leads or commutator connectors.
- the object of my invention is to provide a connection bet-ween the commutator bars and connectors which will have the requisite mechanical and electrical properties, and to simplify the method of making the connections.
- this end in view I provide acommutator bar having an aperture and grooves which communicate with said aperture and an integral lug or project-ion in one or each of said grooves, and a connector passing through said aperture and seated or resting in said grooves and riveted to the said bar by said lug or projection.
- in another aspectmy invention comprises the method of fastening a commutator connector to a segment, which consists in forming an aperture in the bar, and grooves on opposite sides of said bar and communicating with said aperture, and a lug in one or each groove, then threading through the aperture and seating in the grooves, a connector having an opening or openings to receive the lug or lugs, and then expanding or riveting the lug or lugs whereby the connector and segment will be held firmly together.
- Figure 1 is an elevation, partially in section, of an armature equipped with my invention
- Fig. 2 is a partial sectional elevation on the line 22 of Fig. 1, and shows a plurality of commutator segments having leads attached in tail section similar to a portion of Fig. 2, on an enlarged scale
- Figs. 1, 5, and 6 are sections similar to Fig. 3 showing modifications of my invention
- Fig. 7 is a section of a commutator segment showing the aperture and communicating grooves and lugs in said grooves
- Fig. 8 is a section of connector showing the rivet holes countersunk.
- the armature 10 is provided with a laminated core 11 and armature coils 12, connected to the commutator segments 13 by the leads or connectors 14.
- the commutator is mounted on the sleeve 15 which is fastened to the shaft 16 in the customary manner.
- Each commutator bar is provided, in a single step or operation, by means of dies, with an aperture 17 and grooves 18, and near the center of one or each groove with a lug, projection, or rivet 19 adapted to fit into an opening in the armature lead.
- the aperture 17 is to be sufliciently large to freely permit the conductor being passed through it.
- the grooves are to be of a depth just equal to the thickness of the lead or connector.
- a connector or lead 14 which is provided with a hole or holes 20, is then passed through the aperture 17 and fitted into the grooves 18 so that each rivet or projection 19 enters its corresponding opening 20.
- the opening 20 is preferably countersunk at its outer face as at 21 to provide for the spreading of the head of the rivet.
- the connector or lead and segment are next riveted together by swaging 01' expanding the end of the projection or rivet.
- the expanded end of the lug or rivet occupies the countersunk portion 21 of the opening 20.
- the connector or lead forms a loop through the commutator bar and both ends of the lead are attached to an armature conductor.
- the adjacent portions of each looped connector or lead To make the structure more rigid I prefer to rivet or clamp together, as at 22, the adjacent portions of each looped connector or lead.
- the construction herein illustrated and described embodies a connection, both electrical and mechanical, which has all the requisiteproperties and which can be thoroughly depended upon to perform its duties in a satisfactory manner. Furthermore, it
- Fig. 3 is a dei will be seen that the method of manufacture is extremely simple and that little time and labor are required.
- a commutator bar having grooves and an aperture communicating therewith, said grooves being on opposite sides of said bar.
- a commutator bar having grooves and an aperture communicating therewith, said grooves being on opposite sides of said bar, and said commutator bar being provided with integral lugs, one in each groove.
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- Motor Or Generator Current Collectors (AREA)
Description
0. a. LORD; GOMMUTATOR BAR AND LEAD.
APPLIOATION FILED DEC. 21, 1908.
Patented Sept.13,1910.
fw Au .4.
J a v 8 UNITED STATES PATENT OFFICE.
CHARLES E. LORD, OF MILWAUKEE, WISCONSIN, ASSIGNOR TO ALLIS-CHALMERS COMPANY, A CORPORATION OF NEW JERSEY.
COMMUTATOR BAR AND LEAD.
Specification of Letters Patent.
Application filed December 21, 1908.
Patented Sept. 13, 1910.
Serial No. 468,625.
To all whom it may concern:
Be it known that I, CHARLES E. LORD, a citizen of the United States, residing at Milwaukee, in the county of Milwaukee and State of Visconsin, have invented certain new and useful Improvements in Commutator Bars and Leads, of which the following is a full, clear, and exact specification.
My invention relates to dynamo-electric machines and particularly to the construction of the commutators of such machines and the fastening means between the commutator bars or segments and the armature leads or commutator connectors.
It is of prime importance in making connections between the commutator bars and the armature coil leads, to secure perfect electrical contact and a considerable degree of mechanical strength. Furthermore, from a commercial standpoint, it is essential that the connections should be made without the expenditures of much time and labor.
The object of my invention is to provide a connection bet-ween the commutator bars and connectors which will have the requisite mechanical and electrical properties, and to simplify the method of making the connections. \Vith this end in view I provide acommutator bar having an aperture and grooves which communicate with said aperture and an integral lug or project-ion in one or each of said grooves, and a connector passing through said aperture and seated or resting in said grooves and riveted to the said bar by said lug or projection.
In another aspectmy invention comprises the method of fastening a commutator connector to a segment, which consists in forming an aperture in the bar, and grooves on opposite sides of said bar and communicating with said aperture, and a lug in one or each groove, then threading through the aperture and seating in the grooves, a connector having an opening or openings to receive the lug or lugs, and then expanding or riveting the lug or lugs whereby the connector and segment will be held firmly together.
In the accompanying drawing, Figure 1 is an elevation, partially in section, of an armature equipped with my invention; Fig. 2 is a partial sectional elevation on the line 22 of Fig. 1, and shows a plurality of commutator segments having leads attached in tail section similar to a portion of Fig. 2, on an enlarged scale; Figs. 1, 5, and 6 are sections similar to Fig. 3 showing modifications of my invention; Fig. 7 is a section of a commutator segment showing the aperture and communicating grooves and lugs in said grooves; and Fig. 8 is a section of connector showing the rivet holes countersunk.
The armature 10 is provided with a laminated core 11 and armature coils 12, connected to the commutator segments 13 by the leads or connectors 14. The commutator is mounted on the sleeve 15 which is fastened to the shaft 16 in the customary manner.
In carrying out my method certain steps or operations are required to fasten the segments to the armature leads or connectors. Each commutator bar is provided, in a single step or operation, by means of dies, with an aperture 17 and grooves 18, and near the center of one or each groove with a lug, projection, or rivet 19 adapted to fit into an opening in the armature lead. The aperture 17 is to be sufliciently large to freely permit the conductor being passed through it. The grooves are to be of a depth just equal to the thickness of the lead or connector. A connector or lead 14 which is provided with a hole or holes 20, is then passed through the aperture 17 and fitted into the grooves 18 so that each rivet or projection 19 enters its corresponding opening 20. The opening 20 is preferably countersunk at its outer face as at 21 to provide for the spreading of the head of the rivet. The connector or lead and segment are next riveted together by swaging 01' expanding the end of the projection or rivet. The expanded end of the lug or rivet occupies the countersunk portion 21 of the opening 20. In the preferred form of my invention the connector or lead forms a loop through the commutator bar and both ends of the lead are attached to an armature conductor. To make the structure more rigid I prefer to rivet or clamp together, as at 22, the adjacent portions of each looped connector or lead. The construction herein illustrated and described embodies a connection, both electrical and mechanical, which has all the requisiteproperties and which can be thoroughly depended upon to perform its duties in a satisfactory manner. Furthermore, it
accordance with my invention; Fig. 3 is a dei will be seen that the method of manufacture is extremely simple and that little time and labor are required.
I aim in the appended claims to cover all modifications and changes which do not involve a departure from the spirit of the invention.
What I claim as new is l. The combination with a commutator bar having grooves and an aperture communicating therewith, of a connector passing through said aperture and setting in said grooves.
2. The combination of a commutator bar having grooves and an aperture communicating therewith and provided with an integral lug in one of said grooves, with a connector provided with an opening into which said lug projects, said lug being upset or expanded, riveting said connector to said bar.
3. The combination of a commutator bar having grooves and an aperture communicating therewith and provided with an integral lug in one of said grooves, and a connector passing through the aperture and setting in said grooves, the connector being provided with an opening, into which said lug projects and in which said lug is expanded to rivet the bar and connector together.
4. A commutator bar having grooves and an aperture communicating therewith, said grooves being on opposite sides of said bar.
5. The combination of a commutator bar having grooves and an aperture communicating therewith, a connector passing through said aperture and setting in said grooves forming a loop, and means for clamping said connector together beyond said loop.
6. A commutator bar having grooves and an aperture communicating therewith, said grooves being on opposite sides of said bar, and said commutator bar being provided with integral lugs, one in each groove.
In testimony whereof I aflix my signature, in the presence of two witnesses.
CHARLES E. LORD.
Witnesses CHAS. L. BYRON, Gno. B. SGHLEY.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US46862508A US969892A (en) | 1908-12-21 | 1908-12-21 | Commutator bar and lead. |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US46862508A US969892A (en) | 1908-12-21 | 1908-12-21 | Commutator bar and lead. |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| US969892A true US969892A (en) | 1910-09-13 |
Family
ID=3038282
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| US46862508A Expired - Lifetime US969892A (en) | 1908-12-21 | 1908-12-21 | Commutator bar and lead. |
Country Status (1)
| Country | Link |
|---|---|
| US (1) | US969892A (en) |
Cited By (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US2521510A (en) * | 1946-10-10 | 1950-09-05 | Gen Electric | Dynamoelectric machine |
| US2602988A (en) * | 1948-11-23 | 1952-07-15 | Kirkwood Commutator Company | Commutator and blank for forming same |
| US3223869A (en) * | 1961-04-28 | 1965-12-14 | Bosch Gmbh Robert | Commutator for an electric motor |
-
1908
- 1908-12-21 US US46862508A patent/US969892A/en not_active Expired - Lifetime
Cited By (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US2521510A (en) * | 1946-10-10 | 1950-09-05 | Gen Electric | Dynamoelectric machine |
| US2602988A (en) * | 1948-11-23 | 1952-07-15 | Kirkwood Commutator Company | Commutator and blank for forming same |
| US3223869A (en) * | 1961-04-28 | 1965-12-14 | Bosch Gmbh Robert | Commutator for an electric motor |
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