A high-voltage switchgear, its arc-extinguishing chamber, and its tank body

A technology for arc extinguishing chambers and tanks, which is applied in high-voltage/high-current switches, electric switches, high-voltage air circuit breakers, etc. It can solve the problems of lowering the temperature of insulating gas, sensitivity to ground insulation, and decreased insulation capacity, so as to improve insulation performance Effect

Inactive Publication Date: 2017-10-10
PINGGAO GRP +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, because the high-temperature arc between the dynamic and static connection ends will heat the insulating gas, the pressure of the insulating gas will increase and the insulation capacity will decrease. However, the dynamic connection end of the arc extinguishing chamber uses mechanical means to create a pressure difference or uses the pressure difference of the arc extinguishing chamber itself The arc is extinguished, and the high-temperature insulating gas is blown to the static terminal of the arc extinguishing chamber for cooling. Therefore, during the cooling process of the high-temperature insulating gas, the gas will ablate the components of the static terminal of the arc extinguishing chamber to A certain amount of metal dust and ionized decomposition products are produced in the airflow channel of the electric terminal. This part of the dust and decomposition products and the insulating gas that has not been completely cooled will be directly sprayed from the air outlet side of the static terminal to the inner wall of the tank. , the dust and decomposition products mixed in the insulating gas will burn and erode the tank wall of the tank body, resulting in uneven inner wall surface of the tank body, which will cause breakdown or discharge of the arc extinguishing chamber to the ground, so the gas-insulated metal-enclosed switch The equipment usually needs to reduce the temperature of the insulating gas by extending the airflow channel at the static end of the arc extinguishing chamber
[0004] However, if the air flow channel is to be extended in a limited space, baffles can only be added to the cooling channel in the static terminal of the arc extinguishing chamber, but the effect of the baffles is also limited. When the gas-insulated metal-enclosed switchgear When the inner diameter of the tank shrinks to a certain extent, the insulation to the ground will become very sensitive. As long as there is a slight decrease in the insulation performance, it will cause discharge or breakdown to the ground. Performance will have little impact
[0005] With the progress of society and the increase of population density, the requirements of modern society for the utilization of space are also increasing, so that the market demand for the reduction of the size of metal-enclosed switchgear is getting higher and higher, such as the requirements of power grid bidding Among them, the width of 252kV three-phase split-phase metal-enclosed switchgear has been reduced from the original 2300mm to 1500mm, such as a circuit breaker with sulfur hexafluoride gas as the insulating medium. The tank diameter has been reduced to a limit. If the tank diameter is further reduced, the only way to increase the pressure of the insulating gas in the tank is, but this method not only wastes gas, but also has an impact on the safety of metal-enclosed switchgear. After all, increasing the design pressure, Not only does it add to the cost of materials, but it also requires a higher level of professional qualification

Method used

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  • A high-voltage switchgear, its arc-extinguishing chamber, and its tank body

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Embodiment Construction

[0024] Embodiments of the high voltage switchgear in the present invention: as figure 1 As shown, the high-voltage switchgear is a high-voltage circuit breaker, including an arc extinguishing chamber and an operating mechanism connected by transmission on it. The structure of the operating mechanism belongs to the prior art. 2 and static terminal 4 constitute. The tank body is composed of a tank body 3 and a solid insulating layer. The tank body 3 extends along the left and right directions. The static terminal 4 is arranged coaxially opposite to each other in the tank body 3 , and at the bottom side of the outer peripheral surface of the static terminal 4 there is an orifice blowing side 6 with the opening facing downward. The solid insulating layer is a sheet-like layer 5 relatively arranged below the blowing side 6. The sheet-like layer 5 is bonded and fixed on the inner wall surface of the tank body 3 through an adhesive layer. The sheet-like layer 5 adopts a class C heat...

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Abstract

The invention discloses a high-voltage switch device and the arc extinguish chamber and the tank of the high-voltage switch device. A solid insulating layer which is separately disposed between the gas out part of a blowing out side of a static electric connection end and the inner wall surface of a tank body is assembled in the tank. The lateral side, facing the blowing out side, of the solid insulating layer is a baffling surface. When the high-voltage switch device is used, insulating gas sprayed out of the nozzle of a movable electric connection end extinguishes the high-voltage arcs in a fracture and then sprays out from the blowing out sides of the movable electric connection end and / or the static electric connection end, the insulating gas is high in speed and temperature and carries some metal dust and ionization decomposed products at this moment, the high-temperature high-speed mixed gas collides with the baffling surface of the fixed solid insulating layer, the baffling surface restraints the powerful mixed gas and allows the energy of the mixed gas to be released through collision, and the mixed gas sprayed out of the blowing sides is prevented from impacting and eroding the inner wall surface of the tank body.

Description

technical field [0001] The invention relates to a high-voltage switchgear, an arc extinguishing chamber and a tank body thereof. Background technique [0002] At present, the commonly used insulation methods in switchgear are divided into gas insulation and fixed insulation. The method of gas insulation is to fill sulfur hexafluoride gas, nitrogen, etc. Vinyl fluoride, electric ceramic materials, glass fiber cloth, resin materials, etc., and the gas insulation method is generally used in the ground insulation of metal-enclosed switchgear, and its advantage is that the form of the gas is not fixed, especially the switch that uses gas blowing to extinguish the arc. Equipment, gas insulation is to play the role of arc extinguishing. However, no matter whether sulfur hexafluoride gas or nitrogen is used for gas insulation, its insulation strength is lower than that of fixed insulation materials in fixed insulation, and the insulation performance of insulating gas will be affect...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H01H33/72
CPCH01H33/74H01H33/78
Inventor 林麟沙云鹏何保营周华姚锋娟李全和姬秋红
Owner PINGGAO GRP
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