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Deflection sync compression arc extinguishing and lightning protecting device

A technology of synchronous compression and lightning protection devices, applied in corona discharge devices, electrical components, spark gaps, etc., can solve problems such as difficult arc blowout, achieve the effects of improving arc extinguishing ability, ensuring stable connection, and stable and reliable work

Inactive Publication Date: 2018-02-23
王巨丰
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0008] Although the above patents have played a very good role in lightning protection, there are still some shortcomings. There is only the vertical blowing arc extinguishing method. When the arc is strong, the arc is not easy to blow out.

Method used

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  • Deflection sync compression arc extinguishing and lightning protecting device
  • Deflection sync compression arc extinguishing and lightning protecting device
  • Deflection sync compression arc extinguishing and lightning protecting device

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0042] Such as Figure 1-4 As shown, a zigzag synchronous compression arc extinguishing lightning protection device includes a lightning arrester main body 1 and an arc starting electrode 5. The arc starting electrode 5 is fixedly installed at one end of the lightning arrester main body 1, and The other end is fixedly installed on the cross arm or one end of the insulator string through the connecting fitting 6; the outer surface of the main body of the lightning arrester 1 is provided with a skirt 2; wherein: the interior of the main body of the lightning arrester 1 is provided with several An arc extinguishing path I composed of a plurality of arc extinguishing tubes I12 arranged from top to bottom; said skirt 2 is provided with an arc extinguishing path II composed of several arc extinguishing tubes II7 arranged along the circumference;

[0043] The head end of the first arc extinguishing tube I in the main body 1 of the lightning arrester is electrically connected to the a...

Embodiment 2

[0048] A meandering synchronous compression arc extinguishing and lightning protection device, comprising a lightning arrester main body 1 and an arc starting electrode 5, the arc starting electrode 5 is fixedly installed at one end of the lightning arrester main body 1, and the other end of the lightning arrester main body 1 passes through The connecting hardware 6 is fixedly installed on the cross arm or at one end of the insulator string; the outer surface of the main body of the lightning arrester 1 is provided with a skirt 2; wherein: the main body of the lightning arrester 1 is provided with several arc extinguishing Arc extinguishing path I composed of tubes I12 arranged from top to bottom; said skirt 2 is provided with arc extinguishing path II composed of several arc extinguishing tubes II7 arranged along the circumference;

[0049] The head end of the first arc extinguishing tube I in the main body 1 of the lightning arrester is electrically connected to the arcing el...

Embodiment 3

[0054] A meandering synchronous compression arc extinguishing and lightning protection device, comprising a lightning arrester main body 1 and an arc starting electrode 5, the arc starting electrode 5 is fixedly installed at one end of the lightning arrester main body 1, and the other end of the lightning arrester main body 1 passes through The connecting hardware 6 is fixedly installed on the cross arm or at one end of the insulator string; the outer surface of the main body of the lightning arrester 1 is provided with a skirt 2; wherein: the main body of the lightning arrester 1 is provided with several arc extinguishing Arc extinguishing path I composed of tubes I12 arranged from top to bottom; said skirt 2 is provided with arc extinguishing path II composed of several arc extinguishing tubes II7 arranged along the circumference;

[0055] The head end of the first arc extinguishing tube I in the main body 1 of the lightning arrester is electrically connected to the arcing el...

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PUM

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Abstract

The invention discloses a meandering synchronous compression arc extinguishing and lightning protection device, which comprises a main body of a lightning protection device and an arc striking electrode. The outer surface of the main body of the lightning protection device is provided with a skirt; The arc extinguishing path II composed of circular arrangement; the head end of the first arc extinguishing tube II in the skirt is electrically connected with the end of the arc extinguishing tube I in the main body of the lightning arrester above the skirt and closest to the skirt, and finally The end of one arc extinguishing tube II is electrically connected to the head end of arc extinguishing tube I in the main body of the lightning arrester below the skirt and closest to the skirt; the ends of two adjacent arc extinguishing tubes II are directly contacted or connected. Connected by connecting piece II; there is an air flow outlet channel II at the junction of two adjacent arc extinguishing tubes II, and the air flow outlet channel II extends to the outer surface of the skirt, that is, the outer surface of the skirt is provided with air flow Outlet II. The invention has the advantages of simple structure, reasonable design, stronger arc extinguishing ability and stable and reliable operation.

Description

technical field [0001] The invention relates to a lightning protection device for a power transmission line, in particular to a meandering synchronous compression arc extinguishing lightning protection device. Background technique [0002] Lightning is an important factor affecting the safety of transmission lines. It has long occupied the first place in line fault tripping. It is a natural process of atmospheric activity and has not been controlled so far. However, we can analyze the frequent accidents to find the law of lightning strikes and strengthen prevention. For example, towers on high mountains or peaks, transmission lines near ponds or reservoirs, towers crossing mountains or rivers and lakes, and towers installed on high grounding resistance, rocky tower foundations and transmission lines are all vulnerable to lightning damage. focus. [0003] Lightning strikes will bring different forms of damage and damage to power facilities. Thundercloud discharge will cause...

Claims

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Application Information

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IPC IPC(8): H01T19/00H01T1/02H01T1/10H01B17/46H01B17/48
CPCH01T19/00H01B17/46H01B17/48H01T1/02H01T1/10
Inventor 闫珅黄上师王硕覃安杰李籽剑夏志坚
Owner 王巨丰
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