IP Library Granted Patent US 10,157,719
Granted Patent B2
US 10,157,719 · App. 15/608,041 · Granted Dec 18, 2018

Gas circuit breaker

Inventors: Yuki Nakai (Tokyo, JP); Masanao Terada (Tokyo, JP); Hajime Urai (Tokyo, JP); Takashi Iida (Tokyo, JP); Noriyuki Yaginuma (Tokyo, JP)
Assignee: HITACHI, LTD.
H01H33/91H01H33/08H01H33/42H01H33/74H01H33/78H01H71/025H01H71/10H01H71/326H01H73/18H02B13/025H02B13/045H02B13/055H01H2221/088
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Quick Facts
Patent No.
US 10,157,719
App. No.
15/608,041
Granted
Dec 18, 2018
Kind
B2
Abstract

A gas circuit breaker includes a sealed tank, a movable side main electrode and a fixed side main electrode in the sealed tank facing each other, a movable side arc electrode and a fixed side arc electrode in the sealed tank facing each other, a cylinder at a circumference of the movable side arc electrode, a piston in the cylinder in a slidable manner and forming a puffer chamber together with the cylinder, an insulation nozzle in the sealed tank, an exhaust pipe at a circumference of the fixed side arc electrode and exhausting heat gas, which is sprayed on an arc generated in the insulation nozzle in the opening electrode operation, to an outside, and a closing plate in the exhaust pipe. One or more vent holes leading the heat gas from an inside of the exhaust pipe to the outside is on a surface of the closing plate.

Claims (24)

1. A gas circuit breaker comprising:

a sealed tank;

a movable side main electrode and a fixed side main electrode arranged in the sealed tank to face each other in such a manner in which opening electrode operation and closing electrode operation can be performed;

a movable side arc electrode and a fixed side arc electrode arranged in the sealed tank to face each other in such a manner in which opening electrode operation and closing electrode operation can be performed;

a cylinder arranged at a circumference of the movable side arc electrode;

a piston arranged in the cylinder in a slidable manner, the piston forming a puffer chamber together with the cylinder;

an insulation nozzle arranged in the sealed tank;

an exhaust pipe arranged at a circumference of the fixed side arc electrode and configured to exhaust heat gas, which is sprayed on an arc generated in the insulation nozzle in the opening electrode operation, to an outside; and

a plurality of closing plates arranged in the exhaust pipe,

wherein a plurality of vent holes is formed on the surface of each of the closing plates,

the vent holes of an inner side closing plate which is arranged closest to the insulation nozzle among the closing plates are formed such that at least 90% of a total area of the vent holes is formed in a region within a diameter of two third of a radius of the inner side closing plate from a center of the inner side closing plate, and

the vent holes of an outer side closing plate which is arranged farthest from the insulation nozzle among the closing plates are formed such that at least 90% of a total area of the vent holes is formed in a region out of a distance of two third of a radius of the outer side closing plate from a center of the outer side closing plate.

2. A gas circuit breaker comprising:

a sealed tank;

a movable side main electrode and a fixed side main electrode arranged in the sealed tank to face each other in such a manner in which opening electrode operation and closing electrode operation can be performed;

a movable side arc electrode and a fixed side arc electrode arranged in the sealed tank to face each other in such a manner in which opening electrode operation and closing electrode operation can be performed;

a cylinder arranged at a circumference of the movable side arc electrode;

a piston arranged in the cylinder in a slidable manner, the piston forming a puffer chamber together with the cylinder;

an insulation nozzle arranged in the sealed tank;

an exhaust pipe arranged at a circumference of the fixed side arc electrode and configured to exhaust heat gas, which is sprayed on an arc generated in the insulation nozzle in the opening electrode operation, to an outside; and

a plurality of closing plates arranged in the exhaust pipe,

wherein a plurality of the vent holes is formed on the surface of each of the closing plates,

the vent holes of an inner side closing plate which is arranged closest to the insulation nozzle among the closing plates are formed such that at least 90% of a total area of the vent holes is formed in a region out of a distance of two third of a radius of the inner side closing plate from a center of the inner side closing plate, and

the vent holes of an outer side closing plate which is arranged farthest from the insulation nozzle among the closing plates are formed such that at least 90% of a total area of the vent holes is formed in a region within a distance of two third of a radius of the outer side closing plate from a center of the outer side closing plate.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 8, 2024
From: HITACHI, LTD.
To: HITACHI ENERGY LTD
Reel/Frame 069534/0519 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 30, 2017
From: NAKAI, YUKI; TERADA, MASANAO; URAI, HAJIME; IIDA, TAKASHI; YAGINUMA, NORIYUKI
To: HITACHI, LTD.
Reel/Frame 042530/0163 →
Priority Claims (1)
JP 2016-108073 · May 31, 2016 · national
Continuity (1)
Related Publication 20170345593A1 · Nov 30, 2017
Cited By (1)
US 12,482,618