US2509020A - Electrical contact member and method of making the same - Google Patents

Electrical contact member and method of making the same Download PDF

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Publication number
US2509020A
US2509020A US693786A US69378646A US2509020A US 2509020 A US2509020 A US 2509020A US 693786 A US693786 A US 693786A US 69378646 A US69378646 A US 69378646A US 2509020 A US2509020 A US 2509020A
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United States
Prior art keywords
electrical contact
carbonaceous material
brush
terminal
contact
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Expired - Lifetime
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US693786A
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Lynn H Stauffer
Roland H Pashley
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General Electric Co
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General Electric Co
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Publication date
Priority to CA476685A priority Critical patent/CA476685A/en
Application filed by General Electric Co filed Critical General Electric Co
Priority to US693786A priority patent/US2509020A/en
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Publication of US2509020A publication Critical patent/US2509020A/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R39/00Rotary current collectors, distributors or interrupters
    • H01R39/02Details for dynamo electric machines
    • H01R39/36Connections of cable or wire to brush
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T29/00Metal working
    • Y10T29/49Method of mechanical manufacture
    • Y10T29/49972Method of mechanical manufacture with separating, localizing, or eliminating of as-cast defects from a metal casting [e.g., anti-pipe]

Definitions

  • Our invention relates to electrical contact members and particularly to such as are utilized as brushes for rotating electrical machinery and a method of making the same.
  • An object of our invention is to provide an improved electrical contact member.
  • Another object of our invention is to provide an improved method of making an electrical contact member.
  • a further object of our invention is to provide an improved electrical contact brush member having a carbonaceous material portion with a metal terminal clip member attached thereto by an improved securing arrangement and a method of making the same.
  • Fig. 1 is a sectional side elevational View through anend of an electrical contact member, such as a brush, illustrating an embodiment of our invention
  • Fig. 2 is a side sectional elevational view of the arrangement shown in Fig. 1 illustrating the parts adapted to be secured together prior to the assembly thereof.
  • FIGs. 1 and 2 an embodiment of our improved electrical contact member illustrated ascomprising a carbonaceous material portion I which may be formed of any suitable composition, such as graphite, metal-graphite, or other similar materials or combination of materials as are conventionally used for such purposes and commonly used for transferring electric current between stationary electrical conductors and rotating equipment.
  • These electrical contact brush members usually are arranged in brush holders and provide a relatively loose contact with the brush holders so that a separate flexible electrical connection generally is provided between the con tact member and a stationary terminal in order to decrease the resistance of the connection between the contact member and the stationary terminal.
  • This flexible connection may include a stranded electrical conductor 2 which is brazed, welded, or otherwise suitably secured mechanically and in good electrical contact with a metal terminal clip member 3, which may be formed of steel, and adapted to be arranged over an end and in .contact with a surface of the carbonaceous material brush portion I and rigidly secured thereto. It is desirable that the electrical resistance between the terminal clip member 3 and the carbonaceous material brush portion I should be as low as possible to minimize losses therebetween and heating of the contact surfaces.
  • a more secure bond between the terminal clip member and the brush member may be obtained by forming a bonded coating of low electrical resistance metal, such as copper, over the contacting surface of the brush member I which is adapted to be engaged by the terminal clip member 3.
  • This low resistance electrical coating may be formed by spraying a coating 4 of fine particles of molten copper over the surface of the member I adapted to be engaged by the terminal member 3, and a good bond is thereby formed between the copper and the carbonaceous material.
  • the electrical resistance between the terminal member and the brush member portion I is further decreased by applying an adherent coating of an alloying metal, such as tin or zinc, over the surface of the clip 3 and then arranging the clip over the end of the member portion I, as shown in Fig. 1, and alloying the copper coatin on the brush member I with the tin coating on the clip member 3, and at the same time forming a further mechanical connection between the clip member and the carbonaceous material brush portion I by welding a connector between these members.
  • an alloying metal such as tin or zinc
  • this alloying is facilitated by removal of the oxide coating the alloying metals which may be done by the application of a light coating of a noncorrosive flux, such as a mixture of rosin and alcohol, to the surface of one or both of the alloying metals prior to the assembly of the unit.
  • a noncorrosive flux such as a mixture of rosin and alcohol
  • An electrical contact member a terminal member arranged in contact with a surface of said contact member, and means including a rivet-shaped member extending through said contact member With a head on the outer end thereof arranged in contact with the surface of said contact member and with the other end thereof Welded to an innermost surface of said terminal member for forming a unitary terminal member and rivet-shaped member secured to said contact member.
  • An electrical contact brush member having a carbonaceous material portion, a terminal member arranged over one end and in contact with a side face of said carbonaceous material brush portion, and means including a rivetshaped member extending through said carbonaceous material brush portion with a head on the outer end thereof and with the other end thereof butt welded to the adjacent face of said terminal member for forming a unitary terminal member and rivet-shaped member secured to said carbonaceous material brush portion.
  • An electrical contact brush member having a carbonaceous material portion, a metal terminal clip member arranged over one end and in contact with a surface of said carbonaceous material brush portion, a preformed passage in said carbonaceous material brush portion, and means including a rivet extending through said passage with a head on the outer end thereof arranged in contact with the surface of said carbonaceous material brush portion adjacent said passage with the other end thereof butt welded to an inner surface of said terminal clip member for forming a rigid unitary clip and rivet secured to said carbonaceous material brush portion.
  • An electrical contact brush member having a carbonaceous material portion, a metal terminal clip member arranged over one end and along a side of said carbonaceous brush portion, a coating of copper over the surfaces of said brush portion adapted to be engaged by said clip member, a coating of tin over the surfaces of said clip member adapted to be engaged by said brush portion, a preformed passage in said carbonaceous material brush portion, and means including a rivet-like member extending through said passage with a preformed head on the outer end thereof arranged in contact with a surface of said carbonaceous material brush portion and with the other end thereof butt-Welded to the inside face of said terminal clip member.

Description

y 1950 H. STAUFFER ETAL 2,509,020
ELECTRICAL CONTACT MEMBER AND METHOD OF MAKING THE SAME Filed Aug. 29, 1946 Patented May 23, 1950 ELECTRICAL CONTACT MEMBER AND METHOD OF MAKING THE SAME Lynn H. Stauffer, Pattersonville, and Roland H.
Pashley, Indian Lake, N. Y., assignors to General Electric Company, a corporation of New York Application August 29, 1946, Serial No. 693,786
4 Claims.
Our invention relates to electrical contact members and particularly to such as are utilized as brushes for rotating electrical machinery and a method of making the same.
An object of our invention is to provide an improved electrical contact member.
Another object of our invention is to provide an improved method of making an electrical contact member.
A further object of our invention is to provide an improved electrical contact brush member having a carbonaceous material portion with a metal terminal clip member attached thereto by an improved securing arrangement and a method of making the same.
Further objects and advantages of our invention will become apparent and our invention will be better understood from the following descrip tion referring to the accompanying drawing, and the features of novelty which characterize our invention will be pointed out with particularity in the claims annexed to and forming part of this specification.
In the drawing, Fig. 1 is a sectional side elevational View through anend of an electrical contact member, such as a brush, illustrating an embodiment of our invention; and Fig. 2 is a side sectional elevational view of the arrangement shown in Fig. 1 illustrating the parts adapted to be secured together prior to the assembly thereof.
Referring to the drawing, we have shown in Figs. 1 and 2 an embodiment of our improved electrical contact member illustrated ascomprising a carbonaceous material portion I which may be formed of any suitable composition, such as graphite, metal-graphite, or other similar materials or combination of materials as are conventionally used for such purposes and commonly used for transferring electric current between stationary electrical conductors and rotating equipment. These electrical contact brush members usually are arranged in brush holders and provide a relatively loose contact with the brush holders so that a separate flexible electrical connection generally is provided between the con tact member and a stationary terminal in order to decrease the resistance of the connection between the contact member and the stationary terminal. This flexible connection may include a stranded electrical conductor 2 which is brazed, welded, or otherwise suitably secured mechanically and in good electrical contact with a metal terminal clip member 3, which may be formed of steel, and adapted to be arranged over an end and in .contact with a surface of the carbonaceous material brush portion I and rigidly secured thereto. It is desirable that the electrical resistance between the terminal clip member 3 and the carbonaceous material brush portion I should be as low as possible to minimize losses therebetween and heating of the contact surfaces. We have found that this can be attained and that a more secure bond between the terminal clip member and the brush member may be obtained by forming a bonded coating of low electrical resistance metal, such as copper, over the contacting surface of the brush member I which is adapted to be engaged by the terminal clip member 3. This low resistance electrical coating may be formed by spraying a coating 4 of fine particles of molten copper over the surface of the member I adapted to be engaged by the terminal member 3, and a good bond is thereby formed between the copper and the carbonaceous material. The electrical resistance between the terminal member and the brush member portion I is further decreased by applying an adherent coating of an alloying metal, such as tin or zinc, over the surface of the clip 3 and then arranging the clip over the end of the member portion I, as shown in Fig. 1, and alloying the copper coatin on the brush member I with the tin coating on the clip member 3, and at the same time forming a further mechanical connection between the clip member and the carbonaceous material brush portion I by welding a connector between these members. This may be done by arranging a rivet 5 in an opening 6 preformed in the end of the carbonaceous material brush portion I, such that a head I of the rivet engages an outer surface of a countersunk portion 8 of the brush member and an inner end 9 of the rivet contacts the inner surface of the terminal clip member 3, after which an electric current is passed through the rivet 5 and the carbonaceous material brush portion I and through the terminal clip member 3, such that the rivet, which lis made slightly longer than the thickness of the carbonaceous brush material through which it extends, is softened and spreads under the pressure of the welding electrodes and becomes welded to the terminal clip 3, as indicated at In in Fig. 1. The heat of this welding and of the passage of current through the carbonaceous brush material I and the clip 3 raises the temperatur of the engaging alloying metals on the ontacting surfaces of the terminal clip member 3 and the end of the carbonaceous material brush portion I to such a degree as to alloy effectively these metals. In
most instances, it will be found that this alloying is facilitated by removal of the oxide coating the alloying metals which may be done by the application of a light coating of a noncorrosive flux, such as a mixture of rosin and alcohol, to the surface of one or both of the alloying metals prior to the assembly of the unit. This arrangement forms a very good electrical contact between the terminal clip member 3 and a carbonaceous material brush portion I through the steel-to-tin-to-alloy-to-copper-to-carbon joint therebetween, and in addition, forms a very strong reinforced mechanical connection therebetween by the rigid unitary clip and rivet obtained by the weld l8.
While we have illustrated and described a particular embodiment of our invention, modifications thereof will occur to those skilled in the art. We desire it to be understood, therefore, that our invention is not to be limited to the particular arrangement disclosed, and We intend in the appended claims to cover all modifications which do not depart from the spirit and scope of our invention.
What We claim as new and desire to secure by Letters Patent of the United States is:
1. An electrical contact member, a terminal member arranged in contact with a surface of said contact member, and means including a rivet-shaped member extending through said contact member With a head on the outer end thereof arranged in contact with the surface of said contact member and with the other end thereof Welded to an innermost surface of said terminal member for forming a unitary terminal member and rivet-shaped member secured to said contact member.
2. An electrical contact brush member having a carbonaceous material portion, a terminal member arranged over one end and in contact with a side face of said carbonaceous material brush portion, and means including a rivetshaped member extending through said carbonaceous material brush portion with a head on the outer end thereof and with the other end thereof butt welded to the adjacent face of said terminal member for forming a unitary terminal member and rivet-shaped member secured to said carbonaceous material brush portion.
3. An electrical contact brush member having a carbonaceous material portion, a metal terminal clip member arranged over one end and in contact with a surface of said carbonaceous material brush portion, a preformed passage in said carbonaceous material brush portion, and means including a rivet extending through said passage with a head on the outer end thereof arranged in contact with the surface of said carbonaceous material brush portion adjacent said passage with the other end thereof butt welded to an inner surface of said terminal clip member for forming a rigid unitary clip and rivet secured to said carbonaceous material brush portion.
4. An electrical contact brush member having a carbonaceous material portion, a metal terminal clip member arranged over one end and along a side of said carbonaceous brush portion, a coating of copper over the surfaces of said brush portion adapted to be engaged by said clip member, a coating of tin over the surfaces of said clip member adapted to be engaged by said brush portion, a preformed passage in said carbonaceous material brush portion, and means including a rivet-like member extending through said passage with a preformed head on the outer end thereof arranged in contact with a surface of said carbonaceous material brush portion and with the other end thereof butt-Welded to the inside face of said terminal clip member.
LYNN H. STAUFFER. ROLAND H. PASHLEY.
REFERENCES CITED The following references are of record in the file of this patent:
UNITED STATES PATENTS Number Name Date 661,669 Rohrer Nov. 13, 1900 1,210,029 Auel Dec. 26, 1916 1,274,493 Adams Aug. 6, 1918 2,242,014 Martin May 13, 1941
US693786A 1946-08-29 1946-08-29 Electrical contact member and method of making the same Expired - Lifetime US2509020A (en)

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CA476685A CA476685A (en) 1946-08-29 Electrical contact members and methods of making the same
US693786A US2509020A (en) 1946-08-29 1946-08-29 Electrical contact member and method of making the same

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US693786A US2509020A (en) 1946-08-29 1946-08-29 Electrical contact member and method of making the same

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Cited By (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2820534A (en) * 1954-04-22 1958-01-21 Gen Electric Hermetic ceramic-metal seal and method of making the same
US2857663A (en) * 1954-02-09 1958-10-28 Gen Electric Metallic bond
US2927230A (en) * 1957-09-30 1960-03-01 Gen Electric Carbon brush
US3033958A (en) * 1958-07-29 1962-05-08 Alton R Wells Motor protector or the like
US3054524A (en) * 1958-01-28 1962-09-18 James W Casten Jacketed vessel and method of producing same
US3119171A (en) * 1958-07-23 1964-01-28 Texas Instruments Inc Method of making low resistance electrical contacts on graphite
US3173520A (en) * 1958-10-06 1965-03-16 Bristol Aerojet Ltd Reinforced skin structures
US4907733A (en) * 1988-03-28 1990-03-13 General Dynamics, Pomona Division Method for attaching carbon composites to metallic structures and product thereof
US6302616B1 (en) * 1999-09-01 2001-10-16 Olympus Optical Co., Ltd. Rotation mechanism including rotation shaft and fixed member with welding structure, and producing method of the same

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US661669A (en) * 1898-07-22 1900-11-13 Gen Electric Connecting conductors to carbon brushes.
US1210029A (en) * 1912-09-28 1916-12-26 Westinghouse Electric & Mfg Co Brush for dynamo-electric machines and method of attaching conductors thereto.
US1274493A (en) * 1918-02-13 1918-08-06 Us Graphite Company Electric conductor.
US2242014A (en) * 1939-01-20 1941-05-13 Gen Electric Electric contact brush and connector

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US661669A (en) * 1898-07-22 1900-11-13 Gen Electric Connecting conductors to carbon brushes.
US1210029A (en) * 1912-09-28 1916-12-26 Westinghouse Electric & Mfg Co Brush for dynamo-electric machines and method of attaching conductors thereto.
US1274493A (en) * 1918-02-13 1918-08-06 Us Graphite Company Electric conductor.
US2242014A (en) * 1939-01-20 1941-05-13 Gen Electric Electric contact brush and connector

Cited By (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2857663A (en) * 1954-02-09 1958-10-28 Gen Electric Metallic bond
US2820534A (en) * 1954-04-22 1958-01-21 Gen Electric Hermetic ceramic-metal seal and method of making the same
US2927230A (en) * 1957-09-30 1960-03-01 Gen Electric Carbon brush
US3054524A (en) * 1958-01-28 1962-09-18 James W Casten Jacketed vessel and method of producing same
US3119171A (en) * 1958-07-23 1964-01-28 Texas Instruments Inc Method of making low resistance electrical contacts on graphite
US3033958A (en) * 1958-07-29 1962-05-08 Alton R Wells Motor protector or the like
US3173520A (en) * 1958-10-06 1965-03-16 Bristol Aerojet Ltd Reinforced skin structures
US4907733A (en) * 1988-03-28 1990-03-13 General Dynamics, Pomona Division Method for attaching carbon composites to metallic structures and product thereof
US6302616B1 (en) * 1999-09-01 2001-10-16 Olympus Optical Co., Ltd. Rotation mechanism including rotation shaft and fixed member with welding structure, and producing method of the same

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CA476685A (en) 1951-09-04

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