Gas-blast circuit breaker
10991529 ยท 2021-04-27
Assignee
Inventors
- Hideyuki Kotsuji (Tokyo, JP)
- Jun NUKAGA (Tokyo, JP)
- Makoto HIROSE (Tokyo, JP)
- Takahiro Nishimura (Tokyo, JP)
Cpc classification
H01H2033/028
ELECTRICITY
H01H33/7069
ELECTRICITY
H01H33/7023
ELECTRICITY
International classification
Abstract
An object is to enhance direct-current insulating performance of a gas-blast circuit breaker. The gas-blast circuit breaker includes: a pair of main contacts disposed in a gas tank to face each other and configured to operate for opening and closing a circuit; a pair of arc contacts disposed to face each other and configured to operate for opening and closing the circuit, the arc contacts being disposed coaxially with the main contacts at locations close to the centers of the main contacts, respectively; and an elastic electrically conductive material disposed on an outer surface of an insulating nozzle facing an inner surface of one of the main contacts.
Claims
1. A gas-blast circuit breaker comprising: a driving-side main contact and a driven-side main contact placed in a gas tank to face each other and configured to operate for opening and closing a circuit; a driving-side arc contact and a driven-side arc contact placed to face each other and configured to operate for opening and closing the circuit; a puffer shaft to which the driving-side arc contact is coupled; a puffer cylinder fixed at a location outside the puffer shaft coaxially with the puffer shaft, the puffer cylinder having an end provided with the driving-side main contact; an insulating nozzle fixed to the end of the puffer cylinder, the insulating nozzle providing a space in which an arc is generated when the circuit is opened by the driving-side arc contact and the driven-side arc contact; a driver configured to drive the puffer shaft; and a puffer chamber in which arc-extinguishing gas being to be supplied to the space is stored, wherein the insulating nozzle is coupled to a driving rod, the driving rod is connected to a driven rod via a lever, the driven rod is electrically connected to the driven-side arc contact, and an elastic electrically conductive material is provided on an outer surface of the insulating nozzle, the outer surface of the insulating nozzle facing an inner surface of the driving-side main contact, the inner surface of the driving-side main contact facing radially inward toward the driving-side arc contact, wherein a surface of the elastic electrically conductive material is arranged in contact with the inner surface of the driving-side main contact, wherein the elastic electrically conductive material is a resin or a metal, a reinforcing member is provided on an outer surface of the elastic electrically conductive material, and the elastic electrically conductive material is fixed by being sandwiched by the insulating nozzle and the reinforcing member.
2. The gas-blast circuit breaker according to claim 1, wherein the elastic electrically conductive material is disposed in a gap between the inner surface of the driving-side main contact and the outer surface of the insulating nozzle.
3. The gas-blast circuit breaker according to claim 2, wherein the elastic electrically conductive material is a metallic elastic body, and the metallic elastic body is disposed in a groove having a circular shape and being provided on the inner surface of the driving-side main contact, the inner surface of the driving-side main contact facing the outer surface of the insulating nozzle.
4. The gas-blast circuit breaker according to claim 3, wherein direct-current voltage is applied across the driving-side main contact and the driven-side arc contact when the circuit is opened.
5. The gas-blast circuit breaker according to claim 2, wherein direct-current voltage is applied across the driving-side main contact and the driven-side arc contact when the circuit is opened.
6. The gas-blast circuit breaker according to claim 1, wherein direct-current voltage is applied across the driving-side main contact and the driven-side arc contact when the circuit is opened.
7. The gas-blast circuit breaker according to claim 1, wherein direct-current voltage is applied across the driving-side main contact and the driven-side arc contact when the circuit is opened.
Description
BRIEF DESCRIPTION OF DRAWINGS
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(4)
(5)
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(9)
DESCRIPTION OF EMBODIMENTS
(10) The following will describe embodiments of the present invention with reference to the drawings. The embodiments below are presented merely by way of examples, and there is no intention to limit the contents of the present invention to the modes specifically shown below. The invention itself can be implemented in various modes, as long as they accord to the contents recited in the claims.
Embodiment 1
(11) Although not illustrated in
(12) As illustrated in
(13) The driving side and the driven side are connected to each other with a driving-side coupling rod 21 via the insulating nozzle 5 and the lever 22. The driving-side coupling rod 21 is coupled to the lever 22 with a driving-side pin 24. The lever 22 is turnably fixed to the guide 27 with a lever fixing pin 23. The lever 22 is coupled to a driven-side rod 26 with a driven-side pin 25.
(14)
(15) With reference to
Embodiment 2
(16) With reference to
Embodiment 3
(17) With reference to
(18) The examples in Embodiments 1, 2, and 3 described above each show the puffer type circuit breaker configured to attain a pressure for blowing gas by mechanical compression performed by the puffer piston 8. Alternatively, a heat puffer type circuit breaker that includes a heat puffer chamber having a fixed capacity and that is configured to take in arc heat to achieve a pressure for blowing gas is applicable to the present invention.
(19) The insulating gas used in the embodiments described above is SF.sub.6. However, the type of insulating gas is not limited to SF.sub.6, and may be another type of insulating gas, such as dry air or nitrogen gas.
(20) Herein, the example of the structure in which the electrodes are connected to each other via the insulator is the bidirectional driving type circuit breaker. Another structure in which electrodes are connected to each other via an element that is not the insulating nozzle 5, such as an insulating cylinder or an inter-electrode capacitor, is also applicable.
REFERENCE SIGNS LIST
(21) 1 driving-side arc contact 2 driven-side arc contact 3 driving-side main contact 4 driven-side main contact 5 insulating nozzle 6 puffer shaft 7 puffer cylinder 8 puffer piston 9 puffer chamber 10 arc space 11 movable element cover 12 shield 13 driving-side exhaust gas guide 14 minute gap 15 groove 16 electrically conductive member 17 reinforcing member 21 driving-side coupling rod 22 lever 23 lever fixing pin 24 driving-side pin 25 driven-side pin 26 driven rod 27 guide