Gas insulated switchgear and manufacturing method of the same

US9349501B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9349501-B2
Application numberUS-201214367990-A
CountryUS
Kind codeB2
Filing dateJul 26, 2012
Priority dateFeb 14, 2012
Publication dateMay 24, 2016
Grant dateMay 24, 2016

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A gas insulated switchgear includes a high-voltage conductor installed inside a ground tank filled with an insulation gas and the high-voltage conductor is supported on an insulation spacer and thereby fixed to the ground tank. The gas insulator switchgear is configured in such a manner that an insulation portion of the insulation spacer in contact with the insulation gas is covered with a cover film formed by hardening powder of any of thermoplastic resin, glass, cellulose, and polymer resin made of carbon and hydrogen having a particle size of 100 μm or less with epoxy resin.

First claim

Opening claim text (preview).

The invention claimed is: 1. A gas insulated switchgear comprising: a ground tank filled with an insulation gas; a high-voltage conductor installed in a center portion inside the ground tank; and an insulation spacer installed inside the ground tank and supporting the high-voltage conductor, the insulation spacer including an insulation portion made of an insulation material and a center conductor, wherein a surface of the insulation portion is covered with a powder layer, the powder layer including a mixture of powder particles made of an ablation material and an epoxy resin, and the mixture of powder particles is exposed to an outermost layer of the powder layer wherein the powder layer maintains a powder particle characteristic of the ablation material. 2. The gas insulated switchgear according to claim 1 , wherein the powder particles are made of thermoplastic resin. 3. The gas insulated switchgear according to claim 1 , wherein the powder particles are made of glass. 4. The gas insulated switchgear according to claim 1 , wherein the powder particles are made of cellulose resin. 5. The gas insulated switchgear according to claim 1 , wherein the powder particles are made of polymer resin containing carbon and hydrogen. 6. The gas insulated switchgear according to claim 1 , wherein the powder particles have a particle size of 1 to 100 μm; and the epoxy resin is cured so as to maintain the particle size of the powder. 7. The gas insulated switchgear according to claim 1 , wherein a chief component of the insulation portion is formed of any of epoxy, epoxy and alumina, epoxy and silica, and epoxy and alumina fluoride. 8. The gas insulated switchgear according to claim 1 , wherein a ratio by weight of the powder particles and the epoxy resin of the powder layer is set so that the powder particles accounts for a larger proportion than the epoxy resin. 9. The gas insulated switchgear according to claim 1 , wherein the powder layer is formed on the insulation portion across an entire surface thereof in contact with the insulation gas. 10. The gas insulated switchgear according to claim 1 , wherein the powder layer is formed on the insulation portion in a coverage range having a predetermined expansion from the center portion in which the high-voltage conductor is held. 11. The gas insulated switchgear according to claim 10 , wherein the insulation portion is shaped like a conical surface provided from the center portion to an inner surface of the ground tank; and the coverage range is defined by a range from a vicinity of an apex of the conical surface to substantially half a height is covered with the powder layer. 12. A manufacturing method of a gas insulated switchgear including a high-voltage conductor supported on an insulation spacer and installed inside a ground tank filled with an insulation gas, wherein the insulation spacer includes an insulation portion made of an insulation material and a center conductor, the manufacturing method comprising: obtaining a mixed coating material by mixing powder particles of any of thermoplastic resin, glass, cellulose, and polymer resin containing carbon and hydrogen with epoxy resin; obtaining a powder layer made of a mixture of the powder particles and the epoxy resin by applying the mixed coating material on a surface of the insulation portion followed by allowing the epoxy resin to cure; and scraping the epoxy resin off of a surface of the powder layer by applying blasting to the powder layer to expose the powder particles to an outermost layer of the powder layer, wherein the powder layer maintains a powder particle characteristic of an ablation material. 13. The manufacturing method of a gas insulated switchgear according to claim 12 , wherein in the powder layer obtaining, the epoxy resin is cured without melting the powder by heating the insulation portion on which the mixed coating material is applied at 100° C. or below.

Assignees

Inventors

Classifications

  • being part of the junction between two enclosures · CPC title

  • epoxy resins · CPC title

  • H01B3/56Primary

    gases · CPC title

  • Switch making · CPC title

  • Coating compositions based on epoxy resins; Coating compositions based on derivatives of epoxy resins · CPC title

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Frequently asked questions

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What does patent US9349501B2 cover?
A gas insulated switchgear includes a high-voltage conductor installed inside a ground tank filled with an insulation gas and the high-voltage conductor is supported on an insulation spacer and thereby fixed to the ground tank. The gas insulator switchgear is configured in such a manner that an insulation portion of the insulation spacer in contact with the insulation gas is covered with a cove…
Who is the assignee on this patent?
Miyamoto Takashi, Sawada Yuko, Ozaki Yukio, and 5 more
What technology area does this patent fall under?
Primary CPC classification H01B3/56. Mapped technology areas include Electricity.
When was this patent published?
Publication date Tue May 24 2016 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 2 related publications on this page (citations in our corpus or others sharing the same primary CPC).