CN205670619U - High-voltage AC switch cabinet - Google Patents

High-voltage AC switch cabinet Download PDF

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Publication number
CN205670619U
CN205670619U CN201620554131.9U CN201620554131U CN205670619U CN 205670619 U CN205670619 U CN 205670619U CN 201620554131 U CN201620554131 U CN 201620554131U CN 205670619 U CN205670619 U CN 205670619U
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CN
China
Prior art keywords
switch
contact
static contact
main
bus
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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.)
Withdrawn - After Issue
Application number
CN201620554131.9U
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Chinese (zh)
Inventor
林韶光
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Top Direction Ltd Co
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Top Direction Ltd Co
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Priority to CN201620554131.9U priority Critical patent/CN205670619U/en
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Abstract

This utility model relates to a kind of high-voltage AC switch cabinet, and including vacuum switch and integrated switch, integrated switch is placed between main bus-bar, vacuum switch and pre-earth bus;Vacuum switch electrically connects with branch main bus-bar, and branch's main bus-bar electrically connects with pre-earth bus;Vacuum switch can be connected by integrated switch with main bus-bar, or by pre-ground connection busbar grounding;When vacuum switch is connected by integrated switch with main bus-bar, integrated switch, vacuum switch and branch's main bus-bar constitute major loop;When integrated switch is by pre-ground connection busbar grounding, vacuum switch is isolated with main bus-bar, and integrated switch constitutes earth-return circuit with pre-earth bus.This utility model only includes vacuum switch and two switch elements of integrated switch, decrease switch element quantity, simplify circuit structure, reduce the overall volume of high-voltage AC switch cabinet, improve the reliability of high-voltage AC switch cabinet, without the need for using interlock, thus there is not the problems such as the fault of generation interlock tripping and malfunction.

Description

High-voltage AC switch cabinet
Technical field
This utility model relate to high-voltage AC switch cabinet technical field, especially voltage range 3-40.5KV be used for connect It is subject to and the high-voltage AC switch cabinet of distribution electric energy.
Background technology
High-voltage AC switch cabinet as one by various component of high voltage electrical apparatus and control, measure, the device such as protection assembles Complete set of equipments in metal enclosed cabinet, its function is deciliter to realize the control of high-tension circuit, guarantor by high-voltage switch gear Protect, isolate, ground connection, and complete the conveying to electric energy.
The reliability of electric energy conveying, security requirement are the highest, chopper in high-voltage AC switch cabinet, on-load switch, every Leave pass, earthed switch has been the most basic high voltage device that electric energy carries, to use vacuum interrupter as blowout unit Chopper or the high-voltage AC switch cabinet that constitutes of on-load switch (following simple be referred to as " vacuum switch ") in, be at vacuum switch And disconnecting switch is installed, at the side installation earthed switch that vacuum switch is connected with branch main bus-bar, such as Fig. 1 institute between main bus-bar Show.
The purpose of design of Fig. 1: one is to use disconnecting switch separating brake to be formed to be dielectrically separated from fracture to ensure branch's main bus-bar Have enough fracture dielectric levels during loop opening to the most charged main bus-bar, two to be because vacuum switch be high-voltage AC switches The topmost needs of cabinet safeguards element, when safeguarding, main bus-bar should be kept charged, normally transports to avoid affecting other equipment OK, ensureing the safety of attended operation again, so being disconnected with vacuum switch by main bus-bar by disconnecting switch, forming safe fracture While by earthed switch by vacuum switch and branch's main bus-bar ground connection, process job safety during vacuum switch with guarantee. This design is always the standard design of high-voltage AC switch cabinet, necessary with current technology standard-required, such as insulation distance Meeting the dimensions that standard specifies, the volume that will reduce high-voltage AC switch cabinet again is the most extremely difficult.
Above-mentioned standard design in, interlock to be used by disconnecting switch, vacuum switch, earthed switch divide-shut brake with The safety operation specification procedure of a kind of standard operates, to prevent because switch divide-shut brake program error causes electrical network and high pressure to be handed over There is accident in stream switch cubicle;In the safety operation specification procedure of standard, manipulation disconnecting switch, earthed switch divide-shut brake program Interlock is intended to control earthed switch after disconnecting switch separating brake and could close a floodgate and disconnecting switch ability after grounding switch tripping Can close a floodgate, to prevent maloperation from causing electrical network ground fault, but interlock tripping and malfunction can occur in conventional use Fault.
Additionally, the electrical connection between vacuum switch and disconnecting switch in Fig. 1 needs to be realized, the most very by four union joints The moving conductive rod of empty switch is connected with the fixing terminal flex of vacuum switch, the fixing terminal of vacuum switch pass through again conductor and every Leaving pass to connect, the more resistance resulted in of union joint is higher, therefore generates heat the most more, reliable to high-voltage AC switch cabinet Property adversely affects.
Utility model content
The purpose of this utility model is to propose the high-voltage AC switch cabinet that a kind of switch element reduces, and can improve reliable Property, overall volume can be reduced again, solve the contradiction reducing volume and improving between reliability, and without using existing isolation Interlock between switch and earthed switch, further increases high-voltage AC switch cabinet reliability.
In order to realize object above, a kind of high-voltage AC switch cabinet that the utility model proposes, including vacuum switch and collection Becoming switch, integrated switch is placed between main bus-bar, vacuum switch and pre-earth bus;Vacuum switch and branch main bus-bar are electrically connected Connecing, branch's main bus-bar electrically connects with pre-earth bus;Vacuum switch can be connected by integrated switch with main bus-bar, or pre-ground connection is female Line ground connection;When vacuum switch is connected by integrated switch with main bus-bar, integrated switch, vacuum switch and branch's main bus-bar constitute main Loop;When integrated switch is by pre-ground connection busbar grounding, vacuum switch and main bus-bar are isolated, and integrated switch and pre-earth bus structure Become earth-return circuit.
In a scheme of the present utility model, described integrated switch include contact supporting, be fixed on contact supporting with The insulation rotating shaft of three-phase moving contact, and be fixed on contact supporting and be positioned at the peripheral main static contact in top of insulation rotating shaft, under The main static contact in portion, pre-grounding static contact, grounding static contact;The main static contact in described top electrically connects with main bus-bar, the main stationary contact in bottom Head electrically connects with vacuum switch, and pre-grounding static contact electrically connects with pre-earth bus, grounding static contact ground connection;Described insulation rotating shaft Work, isolation, three location status of ground connection are formed by rotating;At job site situation, the three-phase moving contact of insulation rotating shaft is even The logical main static contact in top and the main static contact in bottom, make major loop connect;At isolated location state, the three-phase moving contact of insulation rotating shaft Static contact main with top, the main static contact in bottom keep certain distance, make major loop disconnect;In earthing position state, rotating shaft of insulating Three-phase moving contact connect pre-grounding static contact and grounding static contact, make earth-return circuit connect.
Further, specifically, the main static contact in bottom is by flexibility in the electrical connection of the main static contact in described bottom and vacuum switch Bus electrically connects with the moving conductive rod of vacuum switch.
In another program of the present utility model, described integrated switch includes contact supporting, and is fixed on contact supporting The main static contact in top, pre-grounding static contact, grounding static contact, contact base, be fixed on contact base and can turn based on fixing point Dynamic three-phase moving contact;The main static contact in described top electrically connects with main bus-bar, and pre-grounding static contact electrically connects with pre-earth bus, Grounding static contact ground connection, contact base electrically connects with vacuum switch, and three-phase moving contact electrically connects with contact base;Described three-phase moving contact Work, isolation, three location status of ground connection are formed by rotating;At job site situation, connection top master is quiet for three-phase moving contact Contact and contact base, make major loop connect;In isolated location state, three-phase moving contact and the main static contact in top keep a spacing From, make major loop disconnect;In earthing position state, three-phase moving contact one end electrically connects with pre-grounding static contact, the other end with connect Ground static contact electrical connection, makes earth-return circuit connect.
Further, specifically, contact base is opened with vacuum by flexible bus in the electrical connection of described contact base and vacuum switch The moving conductive rod electrical connection closed.
This utility model at least possesses following beneficial effect:
1, the high-voltage AC switch cabinet in prior art (Fig. 1) includes vacuum switch, disconnecting switch and earthed switch three Individual switch element, before this utility model only includes that vacuum switch and two switch elements of integrated switch just can realize in prior art State the function that three switch elements could realize, therefore decrease switch element quantity, simplify circuit structure, reduce high pressure The overall volume of AC switch cubicle, improves the reliability of high-voltage AC switch cabinet, i.e. solves reduce volume and improve reliability Between contradiction.
2, vacuum switch can be connected by integrated switch with main bus-bar, makes integrated switch, vacuum switch and branch's main bus-bar Constitute major loop;Or integrated switch is by pre-ground connection busbar grounding, make vacuum switch isolate with main bus-bar, and integrated switch is with pre- Earth bus constitutes earth-return circuit;Namely when major loop is connected pre-earth bus will not ground connection, equally, pre-ground connection busbar grounding Time major loop will not connect, therefore can prevent maloperation from causing electrical network ground fault, and need not use interlock, thus There is not the problems such as fault that interlock tripping and malfunction occur, further increase high-voltage AC switch cabinet reliability.
3, in the further scheme of this utility model, the connected mode of flexible bus decrease integrated switch and vacuum switch it Between union joint (only two union joints), thus reduce loop resistance, reduce switch cubicle temperature rise, improve switch cubicle reliable Property.
Accompanying drawing explanation
Fig. 1 is the basic circuit principle schematic of prior art mesohigh AC switch cubicle.
Fig. 2 is the basic circuit principle schematic of the high-voltage AC switch cabinet that embodiment one proposes.
Fig. 3 is the high-voltage AC switch cabinet concrete structure schematic diagram corresponding with Fig. 2.
Fig. 4 is the basic circuit principle schematic of the high-voltage AC switch cabinet that embodiment two proposes.
In Fig. 1: 1-main bus-bar, 2-disconnecting switch, 3-vacuum switch, 4-earthed switch, 5-branch main bus-bar.
In Fig. 2 and Fig. 3: 10-integrated switch, 11-contact supporting, 12-three-phase moving contact, 13-insulate rotating shaft, 14- The main static contact in top, the main static contact in 15-bottom, the pre-grounding static contact of 16-, 17-grounding static contact, 20-vacuum switch, 21-moving conductive rod, 30-main bus-bar, the pre-earth bus of 40-, 50-branch main bus-bar, 60-flexible bus, 100-closes Metal cabinet.
In Fig. 4: 10 '-integrated switch, 18-contact base, 20-vacuum switch, 30-main bus-bar, the pre-ground connection of 40-is female Line, 50-branch main bus-bar.
Detailed description of the invention
For the ease of it will be appreciated by those skilled in the art that below in conjunction with accompanying drawing and embodiment, this utility model to be entered One step describes.
Embodiment one
Referring to Fig. 2, a kind of high-voltage AC switch cabinet that embodiment one proposes, circuit part mainly includes vacuum switch 20 With integrated switch 10, integrated switch 10 is placed between main bus-bar 30, vacuum switch 20 and pre-earth bus 40;Vacuum switch 20 Electrically connecting with branch main bus-bar 50, branch's main bus-bar 50 electrically connects with pre-earth bus 40;Integrated switch 10 can be by vacuum switch 20 connect with main bus-bar 30, or by pre-earth bus 40 ground connection;When vacuum switch 20 and main bus-bar 30 are connected by integrated switch 10, Integrated switch 10, vacuum switch 20 and branch's main bus-bar 50 constitute major loop;Integrated switch 10 is by pre-earth bus 40 ground connection Time, vacuum switch 20 is isolated with main bus-bar 30, and integrated switch 10 constitutes earth-return circuit with pre-earth bus 40.Therefore, this reality Execute in example, when major loop is connected pre-earth bus 40 will not ground connection, equally, during pre-earth bus 40 ground connection, major loop will not connect Logical, can prevent maloperation from causing electrical network ground fault, and need not use interlock.
Embodiment one a kind of structure in a particular application is shown: high-voltage AC switch cabinet please continue to refer to Fig. 3, Fig. 3 Shell be a closing metal cabinet 100, integrated switch 10, vacuum switch 20, main bus-bar 30, pre-earth bus 40 and branch Main bus-bar 50 is arranged in the inside closing metal cabinet 100.
Integrated switch 10 in Fig. 3 has double-fracture, it include contact supporting 11, be fixed on contact supporting 11 with The insulation rotating shaft 13 of three-phase moving contact 12, and be fixed on contact supporting 11 and be positioned at insulation rotating shaft 13 periphery top master quiet Contact 14, the main static contact in bottom 15, pre-grounding static contact 16, grounding static contact 17;The main static contact in top 14 and main bus-bar 30 electricity Connecting, the main static contact in bottom 15 electrically connects with vacuum switch 20, and pre-grounding static contact 16 electrically connects with pre-earth bus 40, ground connection Static contact 17 ground connection;Insulation rotating shaft 13 forms work, isolation, three location status of ground connection by rotating;At job site situation, The three-phase moving contact 12 of insulation rotating shaft 13 connects the main static contact of the main static contact in top 14 and bottom 15, makes major loop (integrated switch 10, vacuum switch 20 and branch's main bus-bar 50) connect;In isolated location state, the three-phase moving contact 12 of insulation rotating shaft 13 with The main static contact in top 14, the main static contact in bottom 15 keep certain distance, make major loop disconnect, vacuum switch 20 and main bus-bar 30 it Between formed double-fracture isolation;In earthing position state, the three-phase moving contact 12 of insulation rotating shaft 13 connects pre-grounding static contact 16 and grounding static contact 17, make earth-return circuit (integrated switch 10 and pre-earth bus 40) connect.Wherein, in earthing position state It is similarly in isolation between vacuum switch 20 and main bus-bar 30, namely earthing position state is a kind of special isolated location State.
In the further preferred scheme of embodiment one, the electrical connection of the main static contact in bottom 15 and vacuum switch 20 specifically, The main static contact in bottom 15 is electrically connected with the moving conductive rod 21 of vacuum switch 20 by flexible bus 60.Owing to moving conductive rod 21 is in work Can move back and forth when making, the flexible characteristic of flexible bus 60 can be suitable for its phase.
Certainly, Fig. 3 is only the structural representation of a kind of concrete application scheme of embodiment one, in the design of embodiment one also Can there be other deformation designs, some existing high-voltage AC switch cabinets also can be used more general in this specifically application simultaneously Circuit design and architectural feature, be such as separated into three layers by closing metal cabinet 100, and the concrete structure of vacuum switch 20 sets Meter etc., does not repeats.
Embodiment two
Referring to Fig. 4, the basic conception of enforcement two is consistent with example one, and distinctive points is only that the concrete structure of integrated switch In design, i.e. the integrated switch 10 of embodiment one designs for double-fracture, and the integrated switch 10 ' of embodiment two is that single break sets Meter, specifically: the integrated switch 10 of embodiment one have the main static contact in top 14, the main static contact in bottom 15, insulation rotating shaft 13 with And three-phase moving contact 12, insulation rotating shaft 13 turns to off-position state (i.e. isolated location state or earthing position state) Time, at two on insulation rotating shaft 13 two ends, three-phase moving contact 12 separates necessarily with main static contact 14, the main static contact in bottom 15 respectively Distance, namely form double-fracture;And embodiment two does not have the main static contact in bottom, but use a contact base 18 and 1 Phase moving contact 12 ' (with reference to Fig. 4), this contact base 18 is the electric conductor supporting three-phase moving contact 12 ', and this three-phase moving contact 12 ' is solid It is scheduled on this contact base 18 and rotatably (rotating shaft of can not insulating, is rotated by three-phase moving contact 12 ';Or by three-phase Moving contact 12 ' is arranged in insulation rotating shaft, insulation rotating shaft drive it to rotate), and contact base 18 electrically connects with vacuum switch (also I.e. three-phase moving contact 12 ' is connected all the time with vacuum switch), therefore three-phase moving contact 12 ' only can static contact main with top when rotating Form a fracture, namely single break.
Embodiment two equally can be in the lump with reference to Fig. 3, and it is in addition to above-mentioned distinctive points, and other all can be with embodiment one class Seemingly.Embodiment two is different from being described in detail below of the content of embodiment one:
Integrated switch includes contact supporting, and be fixed on contact supporting the main static contact in top, pre-grounding static contact, Grounding static contact, contact base, be fixed on contact base and can based on fixing point rotate three-phase moving contact;The main stationary contact in described top Head electrically connects with main bus-bar, and pre-grounding static contact electrically connects with pre-earth bus, grounding static contact ground connection, and contact base is opened with vacuum Closing electrical connection, three-phase moving contact electrically connects with contact base;Three-phase moving contact forms work, isolation, three positions of ground connection by rotating Configuration state;At job site situation, the three-phase moving contact connection main static contact in top and contact base, make major loop (integrated switch, true Empty switch and branch's main bus-bar) connect;In isolated location state, three-phase moving contact and the main static contact in top keep a spacing From, make major loop disconnect;In earthing position state, three-phase moving contact one end electrically connects with pre-grounding static contact, the other end with connect Ground static contact electrical connection, makes earth-return circuit (integrated switch and pre-earth bus) connect.Wherein, in earthing position state, vacuum is opened Close and be similarly in isolation between main bus-bar, namely earthing position state is a kind of special isolated location state.
In the further preferred scheme of embodiment two, specifically, contact base passes through in the electrical connection of contact base and vacuum switch Flexible bus electrically connects with the moving conductive rod of vacuum switch, to adapt to moving conductive rod reciprocating motion operationally.
Embodiment described above only have expressed several embodiments of the present utility model, and it describes more concrete and detailed, But therefore can not be interpreted as the restriction to this utility model the scope of the claims.It should be pointed out that, common for this area For technical staff, without departing from the concept of the premise utility, it is also possible to make some deformation and improvement, these all belong to In protection domain of the present utility model.Therefore, the protection domain of this utility model patent should be as the criterion with claims.

Claims (5)

1. a high-voltage AC switch cabinet, it is characterised in that include vacuum switch and integrated switch, integrated switch is placed in main mother Between line, vacuum switch and pre-earth bus;Vacuum switch electrically connects with branch main bus-bar, and branch's main bus-bar is female with pre-ground connection Line electrically connects;Vacuum switch can be connected by integrated switch with main bus-bar, or by pre-ground connection busbar grounding;Vacuum is opened by integrated switch When closing with main bus-bar connection, integrated switch, vacuum switch and branch's main bus-bar constitute major loop;Integrated switch is female by pre-ground connection During line ground connection, vacuum switch is isolated with main bus-bar, and integrated switch constitutes earth-return circuit with pre-earth bus.
2. high-voltage AC switch cabinet as claimed in claim 1, it is characterised in that described integrated switch includes contact supporting, consolidates The insulation rotating shaft with three-phase moving contact being scheduled on contact supporting, and be fixed on contact supporting and be positioned at outside insulation rotating shaft The main static contact in top that encloses, the main static contact in bottom, pre-grounding static contact, grounding static contact;The main static contact in described top and main mother Line electrically connects, and the main static contact in bottom electrically connects with vacuum switch, and pre-grounding static contact electrically connects with pre-earth bus, ground connection stationary contact Head ground connection;Described insulation rotating shaft forms work, isolation, three location status of ground connection by rotating;In job site situation, insulation The three-phase moving contact connection main static contact in top of rotating shaft and the main static contact in bottom, make major loop connect;In isolated location state, absolutely The three-phase moving contact of edge rotating shaft keeps certain distance with the main static contact in top, the main static contact in bottom, makes major loop disconnect;Ground connection Location status, the three-phase moving contact of insulation rotating shaft connects pre-grounding static contact and grounding static contact, makes earth-return circuit connect.
3. high-voltage AC switch cabinet as claimed in claim 2, it is characterised in that the main static contact in described bottom and vacuum switch Specifically, the main static contact in bottom is electrically connected with the moving conductive rod of vacuum switch by flexible bus in electrical connection.
4. high-voltage AC switch cabinet as claimed in claim 1, it is characterised in that described integrated switch includes contact supporting, with And be fixed on contact supporting the main static contact in top, pre-grounding static contact, grounding static contact, contact base, be fixed on contact base Three-phase moving contact that is upper and that can rotate based on fixing point;The main static contact in described top electrically connects with main bus-bar, pre-grounding static contact Electrically connecting with pre-earth bus, grounding static contact ground connection, contact base electrically connects with vacuum switch, three-phase moving contact and contact base electricity Connect;Described three-phase moving contact forms work, isolation, three location status of ground connection by rotating;At job site situation, three-phase The moving contact connection main static contact in top and contact base, make major loop connect;Isolated location state, three-phase moving contact and top master Static contact keeps certain distance, makes major loop disconnect;At earthing position state, three-phase moving contact one end and pre-grounding static contact electricity Connecting, the other end electrically connects with grounding static contact, makes earth-return circuit connect.
5. high-voltage AC switch cabinet as claimed in claim 4, it is characterised in that described contact base and the electrical connection of vacuum switch Specifically, contact base is electrically connected with the moving conductive rod of vacuum switch by flexible bus.
CN201620554131.9U 2016-06-07 2016-06-07 High-voltage AC switch cabinet Withdrawn - After Issue CN205670619U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201620554131.9U CN205670619U (en) 2016-06-07 2016-06-07 High-voltage AC switch cabinet

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201620554131.9U CN205670619U (en) 2016-06-07 2016-06-07 High-voltage AC switch cabinet

Publications (1)

Publication Number Publication Date
CN205670619U true CN205670619U (en) 2016-11-02

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201620554131.9U Withdrawn - After Issue CN205670619U (en) 2016-06-07 2016-06-07 High-voltage AC switch cabinet

Country Status (1)

Country Link
CN (1) CN205670619U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106099656A (en) * 2016-06-07 2016-11-09 广州泰鼎电气有限公司 High-voltage AC switch cabinet

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106099656A (en) * 2016-06-07 2016-11-09 广州泰鼎电气有限公司 High-voltage AC switch cabinet
CN106099656B (en) * 2016-06-07 2018-07-31 广州泰鼎电气有限公司 High-voltage AC switch cabinet

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GR01 Patent grant
AV01 Patent right actively abandoned
AV01 Patent right actively abandoned

Granted publication date: 20161102

Effective date of abandoning: 20180731