CN216902440U - SF (sulfur hexafluoride)6Structure of vacuum-pumping box edge of gas-insulated transformer - Google Patents

SF (sulfur hexafluoride)6Structure of vacuum-pumping box edge of gas-insulated transformer Download PDF

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Publication number
CN216902440U
CN216902440U CN202122579134.1U CN202122579134U CN216902440U CN 216902440 U CN216902440 U CN 216902440U CN 202122579134 U CN202122579134 U CN 202122579134U CN 216902440 U CN216902440 U CN 216902440U
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box edge
box
edge
gas
limiting fixing
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王敬涛
王丽明
李习芹
黄少龙
申岩
刘淑英
王伟
王丽华
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BAODING BAOLING TRANSFORMER CO LTD
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BAODING BAOLING TRANSFORMER CO LTD
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Abstract

The utility model relates to SF6A vacuum box edge structure of a gas insulated transformer belongs to the technical field of transformers. The technical scheme is as follows: the lower part of the box cover (2) is welded with a plurality of limiting fixing plates (3) at intervals along the inner diameter side of the lower box edge (1), the limiting fixing plates (3) are welded on the lower surface of the box cover (2), and the limiting fixing plates (3) are tightly matched and attached to the inner diameter side of the lower box edge and are used for supporting the lower box edge (1) during vacuum pumping so as to ensure the mechanical strength of the box edge during vacuum pumping; the outer side of the limiting fixing plate (3) is chamfered, so that the upper box edge and the lower box edge can be conveniently installed; a sealing rubber gasket (4) is arranged between the box cover (2) and the lower box edge (1), so that the sealing performance of the box edge is ensured during vacuum pumping. The utility model is provided withThe beneficial effects are that: SF6The gas-insulated transformer can be vacuumized without welding the box edge, has simple structure, convenient operation, safety and reliability, does not need to be disassembled before and after welding the box edge, and can be used for vacuuming other similar equipment.

Description

SF (sulfur hexafluoride)6Structure of vacuum-pumping box edge of gas-insulated transformer
Technical Field
The utility model relates to SF6A vacuum box edge structure of a gas insulated transformer belongs to the technical field of transformers.
Background
At present, SF6Gas insulated transformer with SF6Gas is an insulating medium, and compared with the traditional oil immersed transformer, the internal operation pressure of the gas transformer is high, and the sealing performance requirement is strict, so that the gas tank is filled with SF6The tank edge must be welded before the gas is introduced, so that the gas tank is integrated to bear the test pressure of the gas-insulated transformer. For SF6The gas insulated transformer is characterized in that the production process carries out vacuum-pumping operation after the welding of the tank edge is finished, the vacuum operation is an essential key process for manufacturing and producing the transformer and aims to discharge residual moisture in the transformer body and ensure that SF is charged6Is vacuumized and filled with SF6A gas. However, in the actual production process, the assembly of the transformer body from the drying furnace discharging to the welding box edge is completed, the operation period is long, the exposure time of the transformer body and the like is long, the vacuum pumping cannot be carried out in time, and the possibility of moisture exists. Therefore, in order to ensure the product quality, the tank edge needs to be vacuumized before welding, but the structure of the gas tank edge in the prior art cannot meet the requirement of vacuumizing performance.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide SF6The structure of the vacuum-pumping box edge of the gas-insulated transformer has simple structure, convenient operation, safety and reliability, and is suitable for SF6The gas-insulated transformer is fed without welding the tank edgeThe vacuum pumping operation is carried out, and the technical problems in the prior art are solved.
The technical scheme of the utility model is as follows:
SF (sulfur hexafluoride)6The structure comprises a lower box edge, a box cover, limiting fixed plates and a sealing rubber pad, wherein the lower part of the box cover is welded with a plurality of limiting fixed plates at intervals along the inner diameter side of the lower box edge; the outer side of the limiting fixing plate is chamfered, so that the upper box edge and the lower box edge can be conveniently installed; and a sealing rubber gasket is arranged between the box cover and the lower box edge, so that the sealing performance of the box edge is ensured during vacuum pumping.
The lower box edge is vertically welded on the top of the wall of the gas box, and the lower box edge is arranged in parallel with the box cover.
In the using process, when the gas box is manufactured, the vacuumizing operation is carried out under the condition of not welding the box edge;
welding a plurality of limiting fixing plates at the bottom of the box cover along the inner diameter side of the lower box at intervals, wherein the number of the limiting fixing plates is determined according to the structural size of the air box; before the box cover is buckled, a sealing rubber gasket is fixed on the upper surface of the lower box edge; after the box cover is buckled, the box cover and the lower box edge are clamped tightly by a C-shaped clamp, and after the installation is finished, the air box is vacuumized; the vacuumizing operation is used for discharging residual moisture in the device body, after the vacuumizing operation is carried out, the device body enters a drying furnace for drying, after the device body is discharged from the furnace, the box edge and the box cover are welded, and SF is charged into the box edge and the box cover6A gas.
The utility model has the beneficial effects that: SF6The gas-insulated transformer can be vacuumized without welding the box edge, has simple structure, convenient operation, safety and reliability, does not need to be disassembled before and after welding the box edge, and can be used for vacuuming other similar equipment.
Drawings
FIG. 1 is a schematic structural diagram of an embodiment of the present invention;
in the figure: the lower box edge 1, the box cover 2, the limiting fixing plate 3, the sealing rubber mat 4 and the air box wall 5.
Detailed Description
The utility model is further illustrated by the following examples in conjunction with the accompanying drawings.
SF (sulfur hexafluoride)6The structure of the vacuum-drawable box edge of the gas insulated transformer comprises a lower box edge 1, a box cover 2, limiting fixing plates 3 and a sealing rubber mat 4, wherein the limiting fixing plates 3 are welded at intervals on the lower part of the box cover 2 along the inner diameter side of the lower box edge 1, the limiting fixing plates 3 are welded on the lower surface of the box cover 2, and the limiting fixing plates 3 are tightly matched and attached to the inner diameter side of the lower box edge for supporting the lower box edge 1 during vacuum pumping so as to ensure the mechanical strength of the box edge during vacuum pumping; the outer side of the limiting fixing plate 3 is chamfered, so that the mounting operation of the upper box edge and the lower box edge is facilitated; and a sealing rubber gasket 4 is arranged between the box cover 2 and the lower box edge 1, so that the sealing performance of the box edge during vacuumizing is ensured.
The lower box edge 1 is vertically welded to the top of the wall 5 of the gas box, and the lower box edge 1 and the box cover 2 are arranged in parallel.
In the using process, when the gas box is manufactured, the vacuumizing operation is carried out under the condition of not welding the box edge;
welding a plurality of limiting fixing plates 3 at the bottom of the box cover 2 along the inner diameter side of the lower box edge at intervals, wherein the number of the limiting fixing plates 3 is determined according to the structural size of the air box; before the box cover 2 is buckled, a sealing rubber gasket 4 is fixed on the upper surface of the lower box edge 1; after the box cover 2 is buckled, the box cover 2 and the lower box edge 1 are clamped tightly by a C-shaped clamp, and after the installation is finished, the air box is vacuumized.
The vacuumizing operation is used for discharging residual moisture in the device body, after the vacuumizing operation is carried out, the device body enters a drying furnace for drying, after the device body is discharged from the furnace, the box edge is welded with the box cover 2, and SF is charged into the box edge6A gas.

Claims (2)

1. SF (sulfur hexafluoride)6But gas-insulated transformer evacuation case is along structure, its characterized in that: the box cover comprises a lower box edge (1), a box cover (2), limiting fixing plates (3) and a sealing rubber gasket (4), wherein the lower part of the box cover (2) is welded with a plurality of limiting fixing plates (3) at intervals along the inner diameter side of the lower box edge (1), the limiting fixing plates (3) are welded on the lower surface of the box cover (2), and the limiting fixing plates (3) are tightly matched and attached to the inner diameter side of the lower box edge; the outer side of the limiting fixing plate (3) is chamfered; boxA sealing rubber gasket (4) is arranged between the cover (2) and the lower box edge (1).
2. SF according to claim 16But gas insulation transformer evacuation case is along structure, its characterized in that: the lower box edge (1) is vertically welded to the top of the wall (5) of the gas box, and the lower box edge (1) and the box cover (2) are arranged in parallel.
CN202122579134.1U 2021-10-26 2021-10-26 SF (sulfur hexafluoride)6Structure of vacuum-pumping box edge of gas-insulated transformer Active CN216902440U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122579134.1U CN216902440U (en) 2021-10-26 2021-10-26 SF (sulfur hexafluoride)6Structure of vacuum-pumping box edge of gas-insulated transformer

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122579134.1U CN216902440U (en) 2021-10-26 2021-10-26 SF (sulfur hexafluoride)6Structure of vacuum-pumping box edge of gas-insulated transformer

Publications (1)

Publication Number Publication Date
CN216902440U true CN216902440U (en) 2022-07-05

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122579134.1U Active CN216902440U (en) 2021-10-26 2021-10-26 SF (sulfur hexafluoride)6Structure of vacuum-pumping box edge of gas-insulated transformer

Country Status (1)

Country Link
CN (1) CN216902440U (en)

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