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US3118997A - Damping device for oil circuit breakers - Google Patents

Damping device for oil circuit breakers Download PDF

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Publication number
US3118997A
US3118997A US858668A US85866859A US3118997A US 3118997 A US3118997 A US 3118997A US 858668 A US858668 A US 858668A US 85866859 A US85866859 A US 85866859A US 3118997 A US3118997 A US 3118997A
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United States
Prior art keywords
oil
tubes
contact
container
oil circuit
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Expired - Lifetime
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US858668A
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Bergstrom Lars Ragnar
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ABB Norden Holding AB
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ASEA AB
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    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H33/00High-tension or heavy-current switches with arc-extinguishing or arc-preventing means
    • H01H33/70Switches with separate means for directing, obtaining, or increasing flow of arc-extinguishing fluid
    • H01H33/72Switches with separate means for directing, obtaining, or increasing flow of arc-extinguishing fluid having stationary parts for directing the flow of arc-extinguishing fluid, e.g. arc-extinguishing chamber
    • H01H33/75Liquid-break switches, e.g. oil-break

Definitions

  • an oil circuit breaker connected in parallel with the battery of series condensers is generally used, which battery is connected when the circuit breaker is opened and disconnected when it is closed.
  • the battery of condensers will be discharged by the arc, which is generated during the opening or closing between the contacts of the circuit breaker. From the technical point of view these connections and disconnections are very easy and a special extinguishing chamber is not needed.
  • the discharge current will be of a high frequency (order of magnitude 1000 cycles per second) and have a large amplitude, so that if an oil circuit breaker is used, a very heavy pressure blow is generated in the oil. As the oil is not compressible, the pressure blow will propagate with an undiminished force to the walls of the extinguishing chamber, so that these walls may easily be damaged.
  • the present invention relates to a damping device for an oil circuit breaker comprising a main breaking gap in oil.
  • the invention is characterised in that in the oil along the main breaking gap and mainly concentrically around it, a compressible medium is arranged so that the meduim on all sides is surrounded by oil.
  • the pressure blow will to a large extent be dampened in the compressible medium, which may suitably consist of an air cushion.
  • an air cushion can be obtained by hermetically enclosing air between two tubes joined at their ends, which tubes have been arranged one inserted in the other, mainly concentrically around the main breaking gap.
  • the tubes are made of metal and the inner tube is suitably shielded by a tube of elastic insulating material which is longer than the tubes of metal. This is to ensure that the are which is generated upon a connection or disconnection between the contacts of the breaker will not flash over to the metal tubes.
  • the compressible medium may also be constituted by a cylinder of cork or foam plastic placed concentrically around the main breaking gap.
  • FIG. 1 shows one embodiment of the invention in cross-section
  • FIG. 2 shows in cross-section a part of a cushioning ring of a modification.
  • drawing 1 designates an extinguishing chamber of porcelain filled with oil.
  • 2 designates the stationary contact and 3 the movable pin contact.
  • a device carried by the stationary contact 2 is arranged 3,12%,997 Patented Jan. 21, 1964 which arrangement consists of concentric tubes 4 and 5, one inserted in the other.
  • the space between these is filled with air and hermetically sealed by the tubes being joined at their ends by the rings 6 and 7.
  • the air cushion which is constituted by the air enclosed between the tubes 4 and 5 is intended to dampen a possible pressure blow in the extinguishing chamber caused by the dis charge of the battery of series condensers through the oil circuit breaker.
  • a tube 8 of elastic insulating material e.g. rubber, is inserted into the inner tube. This insulating tube is made somewhat longer than the other two tubes in order to increase the flash over gap between the movable contact 3 and the tubes 4 and 5.
  • FIG. 2 shows a ring 4 of cork or foam plastic which can be used in place of rings 4, 5, 6, 7 of FIG. 1.
  • a circuit breaker having a container and, within the container, a stationary contact and a movable contact movable along a path towards and away from the stationary contact, whereby in the portion of said path adjacent the fixed contact an arc is formed as the movable contact is moved away from the stationary contact, a body of oil within the container, said contacts being surrounded by the oil, and a ring composed essentially of compressible material surrounding said portion of the path of the movable contact, said ring being spaced inwardly from the wall of the container and being surrounded by said oil, to absorb shock waves produced in the oil by the arc and to protect the container wall therefrom.
  • said ring comprising concentric tubes of different diameter, means sealing the ends of the annular space between the tubes, and a gas in said annular space.
  • said tubes being formed of metal, and a sleeve of insulating material within the inner of the tubes extending beyond at least one end thereof.
  • said ring comprising a cylinder of cork.
  • said ring comprising a cylinder of foam plastic.
  • a circuit breaker having a container and, within the container a stationary contact and a movable contact movable along a path towards and away from the stationary contact, whereby in the portion of said path adjacent the fixed contact an arc is formed as the movable contact is moved away from the stationary contact, a body of oil within the container, said contacts being surrounded by the oil, and compressible means forming a ring surrounding said portion of the path of the movable contact.

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  • Circuit Breakers (AREA)
  • Arc-Extinguishing Devices That Are Switches (AREA)

Description

1964 R. BERGSTROM DAMPING DEVICE FOR OIL CIRCUIT BREAKERS Filed Dec. 10, 1959 FIG! CORK OR FOAM PLASTIC m R5 W NS r 9 0 WW a 16 fl United States Patent 3,118,997 DAMIING DEVICE FOR 01L CIRCUIT BREAKI'JRE) Lars Ragnar Bergstrtim, Lndvika, Sweden, assignor to Allmiinna Svenska Elektriska Ahtiehoiaget, 'Vasteras, Sweden, :1 Swedish corporation Fiied Dee. 1t}, 1959, tier. No. 853,668 flainis priority, application Sweden Dec. I6, 1958 6 ((35. zen-a To connect and disconnect a battery of series condensers, an oil circuit breaker connected in parallel with the battery of series condensers is generally used, which battery is connected when the circuit breaker is opened and disconnected when it is closed. In both cases the battery of condensers will be discharged by the arc, which is generated during the opening or closing between the contacts of the circuit breaker. From the technical point of view these connections and disconnections are very easy and a special extinguishing chamber is not needed. However, the discharge current will be of a high frequency (order of magnitude 1000 cycles per second) and have a large amplitude, so that if an oil circuit breaker is used, a very heavy pressure blow is generated in the oil. As the oil is not compressible, the pressure blow will propagate with an undiminished force to the walls of the extinguishing chamber, so that these walls may easily be damaged.
In order to prevent the pressure blow causing damage, the present invention relates to a damping device for an oil circuit breaker comprising a main breaking gap in oil. The invention is characterised in that in the oil along the main breaking gap and mainly concentrically around it, a compressible medium is arranged so that the meduim on all sides is surrounded by oil.
Due to this arrangement the pressure blow will to a large extent be dampened in the compressible medium, which may suitably consist of an air cushion. Such an air cushion can be obtained by hermetically enclosing air between two tubes joined at their ends, which tubes have been arranged one inserted in the other, mainly concentrically around the main breaking gap.
The tubes are made of metal and the inner tube is suitably shielded by a tube of elastic insulating material which is longer than the tubes of metal. This is to ensure that the are which is generated upon a connection or disconnection between the contacts of the breaker will not flash over to the metal tubes.
The compressible medium may also be constituted by a cylinder of cork or foam plastic placed concentrically around the main breaking gap. Thereby the advantage is obtained that an extra insulating cylinder is not necessary, but on the other hand the dampening is not so effective as in the said device comprising an air cushion because some of the air pockets in the cork or the foam plastic may be filled with oil.
In the drawings:
FIG. 1 shows one embodiment of the invention in cross-section; and
FIG. 2 shows in cross-section a part of a cushioning ring of a modification.
The accompanying drawing shows in FIG. 1 an embodiment of the invention in which drawing 1 designates an extinguishing chamber of porcelain filled with oil. 2 designates the stationary contact and 3 the movable pin contact.
Along the breaking gap and concentrically around it a device carried by the stationary contact 2 is arranged 3,12%,997 Patented Jan. 21, 1964 which arrangement consists of concentric tubes 4 and 5, one inserted in the other. The space between these is filled with air and hermetically sealed by the tubes being joined at their ends by the rings 6 and 7. The air cushion, Which is constituted by the air enclosed between the tubes 4 and 5 is intended to dampen a possible pressure blow in the extinguishing chamber caused by the dis charge of the battery of series condensers through the oil circuit breaker. Further, to prevent a flash over between the tubes 4 and 5 on the one hand, which tubes are suitably made of metal, and the movable contact 3 on the other hand, a tube 8 of elastic insulating material, e.g. rubber, is inserted into the inner tube. This insulating tube is made somewhat longer than the other two tubes in order to increase the flash over gap between the movable contact 3 and the tubes 4 and 5.
FIG. 2 shows a ring 4 of cork or foam plastic which can be used in place of rings 4, 5, 6, 7 of FIG. 1.
I claim:
1. In a circuit breaker having a container and, within the container, a stationary contact and a movable contact movable along a path towards and away from the stationary contact, whereby in the portion of said path adjacent the fixed contact an arc is formed as the movable contact is moved away from the stationary contact, a body of oil within the container, said contacts being surrounded by the oil, and a ring composed essentially of compressible material surrounding said portion of the path of the movable contact, said ring being spaced inwardly from the wall of the container and being surrounded by said oil, to absorb shock waves produced in the oil by the arc and to protect the container wall therefrom.
2. In a device as claimed in claim 1, said ring comprising concentric tubes of different diameter, means sealing the ends of the annular space between the tubes, and a gas in said annular space.
3. In a device as claimed in claim 2, said tubes being formed of metal, and a sleeve of insulating material within the inner of the tubes extending beyond at least one end thereof.
4. In a device as claimed in claim 1, said ring comprising a cylinder of cork.
5. In a device as claimed in claim 1, said ring comprising a cylinder of foam plastic.
6. In a circuit breaker having a container and, within the container a stationary contact and a movable contact movable along a path towards and away from the stationary contact, whereby in the portion of said path adjacent the fixed contact an arc is formed as the movable contact is moved away from the stationary contact, a body of oil within the container, said contacts being surrounded by the oil, and compressible means forming a ring surrounding said portion of the path of the movable contact.
References Cited in the tile of this patent UNITED STATES PATENTS 2,061,945 Koppelmann et al Nov. 24, 1936 2,998,499 Mankotf et a1 Aug. 29, 1961 FOREIGN PATENTS 131,953 Austria Feb. 25, 1933 580,658 Germany July 14, 1933 1,017,682 Germany Oct. 17, 1957 518,314 Great Britain Feb. 23, 1940 1,203,659 France Aug. 3, 1959

Claims (1)

  1. 6. IN A CIRCUIT BREAKER HAVING A CONTAINER AND, WITHIN THE CONTAINER A STATIONARY CONTACT AND A MOVABLE CONTACT MOVABLE ALONG A PATH TOWARDS AND AWAY FROM THE STATIONARY CONTACT, WHEREBY IN THE PORTION OF SAID PATH ADJACENT THE FIXED CONTACT AN ARC IS FORMED AS THE MOVABLE CONTACT IS MOVED AWAY FROM THE STATIONARY CONTACT, A BODY OF OIL WITHIN THE CONTAINER, SAID CONTACTS BEING SURROUNDED BY THE OIL, AND COMPRESSIBLE MEANS FORMING A RING SURROUNDING SAID PORTION OF THE PATH OF THE MOVABLE CONTACT.
US858668A 1958-12-16 1959-12-10 Damping device for oil circuit breakers Expired - Lifetime US3118997A (en)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
SE1164858 1958-12-16

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US3118997A true US3118997A (en) 1964-01-21

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CH (1) CH373446A (en)
DE (1) DE1112163B (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR2121691A1 (en) * 1971-01-12 1972-08-25 Bbc Brown Boveri & Cie
US20070201405A1 (en) * 2006-02-27 2007-08-30 Santhanam Arvind V Power control in communication systems

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
AT131953B (en) * 1930-09-23 1933-02-25 Siemens Ag Switching chamber for expansion switches.
DE580658C (en) * 1929-03-10 1933-07-14 Siemens Schuckertwerke Akt Ges Fire chamber for oil switch
US2061945A (en) * 1933-01-23 1936-11-24 Westinghouse Electric & Mfg Co Circuit interrupter
GB518314A (en) * 1938-08-22 1940-02-23 Reyrolle A & Co Ltd Improvements in or relating to electric circuit-breakers having arc-control devices
DE1017682B (en) * 1953-01-10 1957-10-17 Sachsenwerk Licht & Kraft Ag Loeschkammer for low-oil electrical circuit breakers with a pressure storage chamber
FR1203659A (en) * 1957-03-27 1960-01-20 Oerlikon Maschf Liquid extinguishing fluid circuit breaker
US2998499A (en) * 1958-06-04 1961-08-29 Gen Electric Electric circuit breaker

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE580658C (en) * 1929-03-10 1933-07-14 Siemens Schuckertwerke Akt Ges Fire chamber for oil switch
AT131953B (en) * 1930-09-23 1933-02-25 Siemens Ag Switching chamber for expansion switches.
US2061945A (en) * 1933-01-23 1936-11-24 Westinghouse Electric & Mfg Co Circuit interrupter
GB518314A (en) * 1938-08-22 1940-02-23 Reyrolle A & Co Ltd Improvements in or relating to electric circuit-breakers having arc-control devices
DE1017682B (en) * 1953-01-10 1957-10-17 Sachsenwerk Licht & Kraft Ag Loeschkammer for low-oil electrical circuit breakers with a pressure storage chamber
FR1203659A (en) * 1957-03-27 1960-01-20 Oerlikon Maschf Liquid extinguishing fluid circuit breaker
US2998499A (en) * 1958-06-04 1961-08-29 Gen Electric Electric circuit breaker

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR2121691A1 (en) * 1971-01-12 1972-08-25 Bbc Brown Boveri & Cie
US3881080A (en) * 1971-01-12 1975-04-29 Bbc Brown Boveri & Cie Low-fluid volume outdoor power circuit breaker
US20070201405A1 (en) * 2006-02-27 2007-08-30 Santhanam Arvind V Power control in communication systems

Also Published As

Publication number Publication date
DE1112163B (en) 1961-08-03
CH373446A (en) 1963-11-30

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