Integrated anti-flashover auxiliary device for electric power circuit

A power line and anti-flashover technology, which is applied in the direction of circuits, overhead lines/cable equipment, insulators, etc., can solve the problems of discounting the wiping force of the rag, prone to wiping dead ends, and failure to complete, etc.

Inactive Publication Date: 2017-05-10
刘刚
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Before the arrival of spring and autumn every year, rain and fog increase. In order to prevent flashover accidents caused by dirt and dust on power equipment, the porcelain parts (mainly insulators) of power equipment need to be dust-removed and cleaned, and then painted. Anti-fouling flash paint, this work requires a lot of manual work, and the staff wipes it bit by bit with a rag in their hands. The workload is very heavy and the intensity of fatigue is very high.
Moreover, it is inconvenient for the staff to stand and move when cleaning on the equipment, so they can only work with one hand, and the other hand must hold the porcelain column to ensure personal safety and prevent falling from high altitudes. If you can touch the equipment at close range, you will inhale a large amount of dust at the same time, which will also cause considerable damage to your health.
[0003] At present, there is a device on the market that uses the extension rod to lift the rag into the air to scrub the power system equipment, which can solve the problem of dust inhalation or contamination due to the traditional scrubbing method being too close to the power system equipment, and has a better protective effect. , to ensure the health of the operator, but this scrubbing equipment also has the following disadvantages: 1, because the rag is lifted into the air by the extension rod for scrubbing, the scrubbing strength of the rag is greatly reduced, resulting in unclean scrubbing; 2. 1. The operation method of usin

Method used

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  • Integrated anti-flashover auxiliary device for electric power circuit
  • Integrated anti-flashover auxiliary device for electric power circuit
  • Integrated anti-flashover auxiliary device for electric power circuit

Examples

Experimental program
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Embodiment Construction

[0028] As shown in the figure, the integrated power line anti-flashover auxiliary device includes a cleaning head 3 driven by a power device 1 through a transmission hose 2. The cleaning head includes a vertically arranged rotating brush 4, and one side of the rotating brush is covered. There is a protective cover 5 with a C-shaped cross section, a handle 6 is fixed on the outside of the protective cover, and a horizontally extending upper rod 7 is fixed on the inner upper end of the protective cover. The end of the upper rod can only be rotated with the upper end of the rotary brush through the upper connecting device. , the lower end of the protective cover inner side is hinged with the lower rod 9 that can swing up and down through the horizontal shaft 8, the lower rod is rotated and matched with the lower end of the rotating brush through the lower connecting device, and the lower rod is also inserted and matched with the lower end of the rotating brush through the lower con...

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PUM

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Abstract

The invention discloses an integrated anti-flashover auxiliary device for an electric power circuit. The device comprises a sweeping head which is driven by a power device via a transmission hose, wherein the sweeping head comprises a vertically disposed rotation brush; one side of the rotation brush is covered by a protective cover with a C-shaped cross section; a handle is firmly disposed on the outer side of the protective cover; a horizontally extending upper rod is firmly disposed on the upper end of the inner side of the protective cover; then upper rod end part is in rotary fitting with the upper end of the rotation brush by an upper connecting device; the lower end of the inner side of the protective cover is in hinged connection with a lower rod which can be swayed up and down by a horizontal shaft; and the lower rod is in rotary fitting with the lower end of the rotation brush by a lower connecting device. The device has the advantages that the structure is rational; scrubbing tasks can be completed rapidly according to shapes of scrubbed equipment; two modes including near-distance scrubbing and far-distance scrubbing can be switched freely and rapidly, and the location of an operator does not need to be changed; a scrubbing angle can be adjusted at will; stubborn blots can be scrubbed; scrubbing without any dead corner can be achieved; consumption of time and effort can be reduced; the scrubbing operator can be protected, and will not inhale and get contaminated by dust; the problem that pollutants enter eyes can be avoided; scrubbed dust pollutants will not fall onto equipment under the device; limit of the scrubbing height can be avoided; scrubbing tasks can be completed by only one person; and scrubbing effects are good.

Description

technical field [0001] The invention relates to an integrated power line anti-flashover auxiliary device. Background technique [0002] At present, cleaning and decontamination of power equipment in the power system is a very heavy and repetitive work, and it also has certain harm to the health of the staff. Before the arrival of spring and autumn every year, rain and fog increase. In order to prevent flashover accidents caused by dirt and dust on power equipment, the porcelain parts (mainly insulators) of power equipment need to be dust-removed and cleaned, and then painted. Anti-fouling flashover coating, this work requires a lot of manual work, and the staff wipes it bit by bit with a rag in their hands. The workload is very heavy and the intensity of fatigue is very high. Moreover, it is inconvenient for the staff to stand and move when cleaning on the equipment, so they can only work with one hand, and the other hand must hold the porcelain column to ensure personal sa...

Claims

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Application Information

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IPC IPC(8): B08B1/04B08B3/02B08B5/04B08B15/02H02G1/02H01B17/52
CPCB08B1/002B08B1/04B08B3/02B08B5/04B08B15/02H01B17/52H02G1/02
Inventor 刘刚
Owner 刘刚
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