CN201812610U - Hollow porcelain insulator of mutual inductor of 750kV - Google Patents

Hollow porcelain insulator of mutual inductor of 750kV Download PDF

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Publication number
CN201812610U
CN201812610U CN2010205365396U CN201020536539U CN201812610U CN 201812610 U CN201812610 U CN 201812610U CN 2010205365396 U CN2010205365396 U CN 2010205365396U CN 201020536539 U CN201020536539 U CN 201020536539U CN 201812610 U CN201812610 U CN 201812610U
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CN
China
Prior art keywords
hollow porcelain
insulator
instrument transformer
hollow
hold
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN2010205365396U
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Chinese (zh)
Inventor
范江平
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HUNAN GAOQIANG PORCELAIN ELECTRIC CO Ltd
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HUNAN GAOQIANG PORCELAIN ELECTRIC CO Ltd
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Priority to CN2010205365396U priority Critical patent/CN201812610U/en
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Publication of CN201812610U publication Critical patent/CN201812610U/en
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Abstract

The utility model relates to an insulator belonging to the technical field of electric power transmission components, in particular to a hollow porcelain insulator of a mutual inductor, which is suitable for a supervoltage power transmission system of 750kV and mainly comprises an upper flange, a sealing layer, a hollow porcelain insulation component, a lower flange, the mutual inductor arranged in a hollow inside the hollow porcelain insulation component and a high-current boosting device with an annular iron core; the insulator has high insulativity, large specific creepage distance and high safety and realizes the effective transmission of energy; and moreover, the utility model is simple to manufacture and has obvious economy and extensive market prospect.

Description

The hollow porcelain insulator of 750KV instrument transformer
Technical field
The utility model relates to a kind of insulator, and especially a kind of hollow porcelain insulator of instrument transformer that is applicable in the 750KV extra-high voltage transmission belongs to electric power transfer unit technical field.
Background technology
Insulator is commonly called as porcelain vase, is the insulator that is used for supporting lead.It can guarantee that lead and cross-arm, shaft tower have enough insulation, thereby is widely used in the overhead type transmission system.Because it is in operation and not only needs to bear the loading of lead vertical direction and the pulling force of horizontal direction, and need stand Exposure to Sunlight, drench with rain, the corrosion of climate change and chemical substance, therefore, insulator should have good electric property, and enough mechanical strengths are arranged again.
In order in time to grasp line voltage, the current running condition in high pressure and even the extra-high voltage transmission, usually adopt the measuring instrument that inserts in the transmission system that line voltage, electric current are directly monitored in the prior art, but has following defective: 1, the line voltage of transmission system, electric current are all very high, especially NORTHWEST CHINA area, based on economy and adaptive consideration at a specified future date, adopt the extra-high voltage transmission of 750KV usually, measuring instrument has been proposed acid test; 2, different transmission systems, its line voltage, electric current are often different, and often range is also inequality for the measuring instrument of so feasible monitoring usefulness, does not possess versatility; 3, measuring instrument directly inserts superhigh pressure, electric current transmission system, is difficult to guarantee instrument self and even surveying work personnel's safety; 4, current lifting device unit leakage reactance height, internal loss is big; 5, can't reflect earth fault.
Therefore, can be by common parts---the insulator in the existing transmission system, by transformation to the composition of insulator, material and even assembling, make it when possessing original support wire, insulating effect, realization is to the monitoring of transmission system, and overcome above-mentioned defective, for those skilled in the art have opened up brand-new thinking.
The utility model content
In order to solve the problems of the technologies described above, the utility model aims to provide the hollow porcelain insulator of a kind of 750KV instrument transformer, it can be under the prerequisite of keeping the insulator existing capability, pass through architecture advances, can monitor the voltage of superhigh pressure (for example 750KV) transmission of electricity electrical network, and overcome the current lifting device leakage reactance height, the energy loss that exist in the prior art big, to measuring instrument require too high, versatility is bad, fail safe is lower, can't monitor drawback such as earth fault.Its technical scheme that adopts is as follows:
The hollow porcelain insulator of this 750KV instrument transformer mainly comprises: hollow porcelain insulating spare, sealant, upper flange, lower flange and place instrument transformer in the described hollow porcelain insulating spare boring also have the big electric current up-flow device that adopts annular core.
Preferably, described sealant is a silicon rubber.
Preferably, this insulator also comprises adhesive, and it places the mucilage binding part of described upper flange and described hollow porcelain insulating spare and the mucilage binding part of described lower flange and described hollow porcelain insulating spare.
Preferably, described instrument transformer comprises hold-down nut, metal bar, becket, plain conductor, monitoring terminal and following hold-down nut.
Preferably, the realization of described upward hold-down nut is connected with described upper flange, and the realization of described hold-down nut down is connected with described lower flange, and the described hold-down nut lower end of going up connects described metal bar, and described becket is vertically passed in described metal bar lower end, the two insulation.
Preferably, described becket is received described monitoring terminal by described plain conductor, and described monitoring terminal is loaded on the outer surface of described hollow porcelain insulating spare.
Compared with prior art, the utlity model has following advantage:
1, the insulation level height, the current lifting device leakage reactance is little, internal loss is few, creepage than apart from big;
2, fail safe is higher: its high voltage with the primary circuit (extra-high pressure) becomes the low-voltage (for example 100V) of secondary circuit, the big electric current of primary circuit becomes the little electric current (5A) of secondary circuit, measuring instrument only inserts secondary circuit, implement electrical isolation with primary circuit high voltage and big electric current, thereby guaranteed the safety of surveying work personnel and instrumentation;
3, the measuring instrument versatility is good: it can make the measuring instrument manufacturer's standardization after adopting instrument transformer, and need not design instrument by measured voltage height and size of current.
Description of drawings
Fig. 1: the external view of the hollow porcelain insulator of 750KV instrument transformer of the present utility model;
Fig. 2: the schematic diagram of instrument transformer 6 shown in Figure 1;
Fig. 3: the dimensional drawing of the hollow porcelain insulator of 750KV instrument transformer of the present utility model.
Symbol description: 1, upper flange; 2, sealant; 3, hollow porcelain insulating spare; 4, lower flange; 5, adhesive; 6, instrument transformer; 7, go up hold-down nut; 8, metal bar; 9, becket; 10, plain conductor; 11, monitoring terminal; 12, following hold-down nut.
Embodiment
The utility model is described in further detail below in conjunction with accompanying drawing and example:
An embodiment of the present utility model the figure shows the external view of a hollow porcelain insulator of 750KV instrument transformer as shown in Figure 1, below will explain detailedly.
This insulator can be used for extra-high voltage transmission, especially the 750KV transmission system in NORTHWEST CHINA area, it mainly comprises: upper flange 1, sealant 2, hollow porcelain insulating spare 3, lower flange 4 and place instrument transformer 6 in hollow porcelain insulating spare 4 borings, and have the big electric current up-flow device of annular core.
Described upper flange 1, lower flange 4 all are used for the installation of this insulator, adopt light weight and possess the metal of certain intensity, for example adopt aluminium alloy ZL114A.
Described hollow porcelain insulating spare 3 for example can adopt C130.
Described sealant 2 is used to realize the sealing property of this insulator integral body, for example adopts silicon rubber.
This insulator can also comprise adhesive 5 (not shown)s, place upper flange 1 and the mucilage binding part of hollow porcelain insulating spare 3 and the mucilage binding part of lower flange 4 and hollow porcelain insulating spare 3, play bonding flange and hollow porcelain insulating spare 1, make its effect that becomes one, for example adopt the 525# portland cement as cement glue.
The primary circuit of described instrument transformer 6 (not shown)s is connected with upper flange 1, and secondary circuit insulate with it.
As shown in Figure 2, described instrument transformer 6 comprises hold-down nut 7, metal bar 8, becket 9, plain conductor 10, monitoring terminal 11, following hold-down nut 12, wherein, last hold-down nut 7 realizations are connected with upper flange 1, and following hold-down nut 12 is realized being connected with lower flange 5, and last hold-down nut 7 lower ends connect metal bar 8, becket 9 is vertically passed in metal bar 8 lower ends, the two insulation, becket 9 is received monitoring terminal 11 by plain conductor 10, and monitoring terminal 11 is loaded on the outer surface of hollow porcelain insulating spare 1.
In order to realize this insulator self and effective transmission of the energy of the network system of formation thus, can also carry out following design:
For solving 4kA and the on-the-spot commissioning test problem of above current transformer error among pot type switch, GIS, the HGIS, adopt the current lifting device unit of the IV platform independent of same model and same structure.Series, parallel or connection in series-parallel hybrid mode by separate unit or many current lifting device unit are formed big electric current up-flow device. to obtain required output current and output voltage: and on structural design, adopt ring-shaped core, the output winding adopts the multiple conducting wires transposition and evenly is wound on the ring-shaped core: the problems such as transportation, external force resistance impact, heat radiation, safety ground that solved high-current equipment fully, reduced the leakage reactance of current lifting device unit simultaneously, reduce internal loss, reduce the contact resistance of outside primary circuit wiring, thereby realized effective transmission of energy.Detect and on-the-spot the use through the laboratory, big electric current up-flow device is respond well, has application value.
Mark and following table in 3 in conjunction with the accompanying drawings, the size of this insulator each several part for example is as can be known:
H 7200mm d1 545mm
D 514mm d2 12mm
D1 745mm d3 18mm
D2 755mm n 8
d 357mm n1 16
Below operation principle of the present utility model and concrete enforcement are explained the main points briefly.
The hollow porcelain insulating spare of built-in instrument transformer and the mucilage binding position of upper and lower flange are brushed resilient coating, with cement glue upper and lower flange and hollow porcelain insulating spare are connect with fixed attention then, the finally sealed layer is coated silicon rubber and is formed this insulator; Upper flange is inserted the electrical network of 750KV transmission system; lower flange is fixed on the strutting piece; the 750KV extra-high pressure appears on metal bar (being the primary circuit); and because the capacitive sensing between metal bar and the becket; go up the generation low-voltage signal at becket (being secondary circuit); for example be low-voltage, the low current of 100V, 5A; and be sent to the monitoring terminal; connect devices such as charged demonstration, nuclear phase, relaying protection; from low-voltage signal, extract zero sequence power supply, component of voltage etc., carry out corresponding monitoring and handle.
Evidence: the minimum creep distance of this insulator can reach 24000mm.
With way of example the utility model is illustrated above, but the utility model is not limited to above-mentioned specific embodiment, all any change or modification of doing based on the utility model all belong to the claimed scope of the utility model.

Claims (6)

1. hollow porcelain insulator of 750KV instrument transformer, it is characterized in that, comprise: upper flange (1), sealant (2), hollow porcelain insulating spare (3), lower flange (4) and place instrument transformer (6) in described hollow porcelain insulating spare (1) boring also have the big electric current up-flow device that adopts annular core.
2. the hollow porcelain insulator of 750KV instrument transformer according to claim 1 is characterized in that described sealant (2) is a silicon rubber.
3. the hollow porcelain insulator of 750KV instrument transformer according to claim 1, it is characterized in that, this insulator also comprises adhesive, and it places described upper flange (1) and the mucilage binding part of described hollow porcelain insulating spare (3) and the mucilage binding part of described lower flange (4) and described hollow porcelain insulating spare (3).
4. the hollow porcelain insulator of 750KV instrument transformer according to claim 1, it is characterized in that described instrument transformer (6) comprises hold-down nut (7), metal bar (8), becket (9), plain conductor (10), monitoring terminal (11) and following hold-down nut (12).
5. the hollow porcelain insulator of 750KV instrument transformer according to claim 4, it is characterized in that, the realization of described upward hold-down nut (7) is connected with described upper flange (1), the realization of described hold-down nut (12) down is connected with described lower flange (4), described hold-down nut (7) lower end of going up connects described metal bar (8), described becket (9), the two insulation are vertically passed in described metal bar (8) lower end.
6. the hollow porcelain insulator of 750KV instrument transformer according to claim 4, it is characterized in that, described becket (9) is received described monitoring terminal (11) by described plain conductor (10), and described monitoring terminal (11) is loaded on the outer surface of described hollow porcelain insulating spare (1).
CN2010205365396U 2010-09-20 2010-09-20 Hollow porcelain insulator of mutual inductor of 750kV Expired - Fee Related CN201812610U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2010205365396U CN201812610U (en) 2010-09-20 2010-09-20 Hollow porcelain insulator of mutual inductor of 750kV

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2010205365396U CN201812610U (en) 2010-09-20 2010-09-20 Hollow porcelain insulator of mutual inductor of 750kV

Publications (1)

Publication Number Publication Date
CN201812610U true CN201812610U (en) 2011-04-27

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US9313915B2 (en) 2012-11-27 2016-04-12 Asustek Company Inc. Electronic device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US9313915B2 (en) 2012-11-27 2016-04-12 Asustek Company Inc. Electronic device

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C14 Grant of patent or utility model
GR01 Patent grant
C17 Cessation of patent right
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20110427

Termination date: 20130920