CN202094043U - Moving contact assembly and electromagnetic isolation driving intelligent switch using same - Google Patents

Moving contact assembly and electromagnetic isolation driving intelligent switch using same Download PDF

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Publication number
CN202094043U
CN202094043U CN2011202068706U CN201120206870U CN202094043U CN 202094043 U CN202094043 U CN 202094043U CN 2011202068706 U CN2011202068706 U CN 2011202068706U CN 201120206870 U CN201120206870 U CN 201120206870U CN 202094043 U CN202094043 U CN 202094043U
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China
Prior art keywords
moving contact
permanent
moving
iron core
insulation cavity
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Expired - Lifetime
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CN2011202068706U
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Chinese (zh)
Inventor
孟越峰
张书豪
赵红光
王承玉
修士新
郭云涛
李文峰
郑旭红
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孟越峰
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Abstract

The utility model discloses a moving contact assembly and an electromagnetic isolation driving intelligent switch using the same. The electromagnetic isolation driving intelligent switch includes a contact assembly, an insulating cavity, moving contacts, insulating support pieces, and electrode connecting rods. The moving contacts are arranged in the insulating cavity, the outer wall of the insulating support piece is fixed on the inner wall of the insulating cavity, and the electrode connecting rod is fixed on the end of the insulating cavity. The moving contact assembly includes an opening/closing coil, a moving iron core, and two permanent magnetic steels. One end of the moving contact is electrically connected with the electrode connecting rod, the moving iron core is fixed on the moving contact, and the opening/closing coil is arranged on the outer wall of the insulating cavity. The electromagnetic isolation driving intelligent switch using the moving contact assembly is also disclosed.

Description

The electromagnetic isolation of moving contact component and application moving contact component thereof drives intelligent switch
Technical field
The utility model relates to a kind of electrical circuitry equipment technology, and specifically, the electromagnetic isolation that relates to a kind of moving contact component and application moving contact component thereof drives intelligent switch.
Background technology
The effect of switch is to cut off and the connection circuit, and the disengagement failure circuit.Vacuum switch because of its arc-extinguishing medium and arc extinguishing after the dielectric in contact gap all be that high vacuum is gained the name, its have volume little, in light weight, be applicable to advantages such as frequent operation, arc control device need not overhaul, in power distribution network, use comparatively universal.Vacuum circuit-breaker mainly comprises three parts: vacuum interrupter (vacuum bubbles), electromagnetism or spring operating mechanism, support and drive system thereof.
Vacuum switch has many mechanical parameters, as closing speed, opening velocity, contact travel, contact closing rebound time, contact separating brake bounce-back amplitude etc.Existing vacuum switch is mainly used in below the 35KV, and 110KV and above circuit breaker are because a lot of problems appear in the stroke lengthening, and Mechanical Reliability and mechanical endurance are very good not enough.
The utility model content
The technical problem that the utility model solved provides a kind of moving contact component, has improved transmission efficiency and reliability.
Technical scheme is as follows:
A kind of moving contact component is used to realize the separating brake or the combined floodgate of switch or moving contact of breaker, comprises moving iron core, two permanent-magnet steels and divide-shut brake coil; Described moving iron core is between described two permanent-magnet steels, described moving iron core is fixed on the described moving contact, described permanent-magnet steel middle part has first through hole, and described moving contact is sleeved in described first through hole, and described divide-shut brake coil is arranged on the outer wall of insulation cavity.
Further: the inwall of described insulation cavity is provided with insulated support, and described permanent-magnet steel is fixed on the described insulated support.
Further: it is indoor that described moving iron core and permanent-magnet steel are arranged on the mechanism that described insulation cavity isolates, described mechanism chamber interior vacuum.
Another technical problem that the utility model solved provides a kind of electromagnetic isolation of using moving contact component and drives intelligent switch, has improved transmission efficiency and reliability.
Technical scheme is as follows:
A kind of electromagnetic isolation of using moving contact component drives intelligent switch, comprise the insulation cavity, moving contact, insulated support and electrode tie rod, described moving contact is arranged on described insulation inside cavity, the outer wall of described insulated support is fixed on the inwall of described insulation cavity, described electrode tie rod is fixed on the end of described insulation cavity, also comprise moving contact component, described moving contact component comprises the divide-shut brake coil, moving iron core and two permanent-magnet steels, described moving iron core and two permanent-magnet steels are arranged on the inside of described insulation cavity, and described permanent-magnet steel is fixed on the described insulated support; Described permanent-magnet steel has first through hole, and described moving contact is sleeved on described first through hole, and an end of described moving contact and described electrode tie rod are electrically connected; Described moving iron core is arranged between two blocks of described permanent-magnet steels, described moving iron core be fixed on described moving contact on; Described divide-shut brake coil is arranged on the outer wall of insulation cavity.
Further: described insulation cavity is provided with two groups of moving contact components.
Further: the outer side edges of described permanent-magnet steel is along being fixed on the described insulated support.
Further: described insulation inside cavity is provided with plum blossom connector and copper strutting piece, described electrode tie rod is provided with annular projection, on the fixing described annular projection of described plum blossom connector, described plum blossom connector has third through-hole, described moving contact is sleeved on the described third through-hole, and described moving contact and described plum blossom connector are electrically connected; Described copper strutting piece is between described plum blossom connector and described permanent-magnet steel, the outer side edges of described copper strutting piece is along being fixed on the described insulated support, described copper strutting piece has second through hole, described moving contact is sleeved on described second through hole, and another end of described moving contact extends to the outside of described copper strutting piece.
Further: the outer wall of described insulation cavity is provided with solid insulation, and described solid insulation has groove in the position corresponding to described permanent-magnet steel, and described divide-shut brake coil stationary is in described groove.
Further: the inner vacuum of described insulation cavity, the arranged outside of described permanent-magnet steel has bellows, and described bellows is provided with fourth hole, and described moving contact is sleeved on the described fourth hole; Described bellows is divided into arc control device and mechanism chamber with the inner space of described insulation cavity, and it is indoor that described moving iron core and permanent-magnet steel are arranged on described mechanism.
Further: described arc control device are provided with radome, and described radome is fixed on the inwall of described insulation cavity, and the stroke of the length of described radome and two moving contacts adapts.
Technique effect comprises:
1, in the prior art, because operating mechanism in the vacuum extinction outdoor, is opening a sluice gate or closing a floodgate by machine driven system driving switch contact; In the utility model, operating mechanism directly is connected with vacuum interrupter, the insulated cavity that is encapsulated in an integral body is external, and drive coil is in the insulation cavity, with the moving component electrical isolation, omitted machine driven system, improved transmission efficiency, reduced component number, complete machine is not only simple in structure, and reliability improves the minimizing of metal material use amount greatly.
2, with respect to Mechanical Driven, the utility model has omitted drive system, and moving-mass reduces greatly, thus the utility model make operating mechanism open a sluice gate/closing speed is fast.
3, in the utility model, the divide-shut brake coil is arranged on the insulated cavity external body, efficiently solves Insulation Problems, can effectively solve the big problem of action equipment volume simultaneously.
Description of drawings
Fig. 1 is the structural representation that electromagnetic isolation drives intelligent switch in the utility model;
Fig. 2 is the state diagram of moving contact when "on" position in the utility model.
Embodiment
Below with reference to accompanying drawing and preferred embodiment technical solutions of the utility model are described in detail.
Moving contact component in the utility model can be widely used in various circuit breaker and switches with moving contact, can effectively reduce equipment volume.The structure of moving contact component comprises: moving iron core, permanent-magnet steel, divide-shut brake coil; Wherein, moving iron core is fixed on the moving contact, is used to drive moving contact and opens a sluice gate or close a floodgate; Is provided with through hole in the middle of the permanent-magnet steel, moving contact is sleeved in this through hole, and permanent-magnet steel is fixed on the inwall of insulation cavity, perhaps is fixed on the insulated support of inwall of insulation cavity; The divide-shut brake coil is arranged on the outside of insulation cavity, is used for providing electromagnetic field to moving iron core.
Drive intelligent switch below with reference to the preferred embodiment electromagnetic isolation, should be used as detailed description technical solutions of the utility model.
As shown in Figure 1, be the structure chart that electromagnetic isolation drives intelligent switch in the utility model.The structure that electromagnetic isolation drives intelligent switch comprises: electrode tie rod 1, moving contact 2, plum blossom connector 3, moving iron core 4, permanent-magnet steel 5, radome 6, insulation cavity 7, insulated support 8, copper strutting piece 9, divide-shut brake coil 10, solid insulation 11 and bellows 12.Because electromagnetic isolation drives intelligent switch and is provided with two moving contacts 2, so two unit are symmetrical about electromagnetic isolation driving intelligent switch, electrode tie rod 1, moving contact 2, plum blossom connector 3, moving iron core 4, permanent-magnet steel 5, radome 6, insulated support 8, copper strutting piece 9, divide-shut brake coil 10, solid insulation 11 and bellows 12 be separately positioned on insulation cavity 7 about two unit, each unit comprises one group.To the insulate inner space of cavity 7 of bellows 12 is isolated into arc control device 14 and mechanism chamber 13.Arc control device 14 are positioned at the middle part of insulation cavity 7, and mechanism chamber 13 is positioned at arc control device 14 both sides, and moving iron core 4, permanent-magnet steel 5 are arranged in the mechanism chamber 13.
The inside of insulation cavity 7 vacuumizes, and two electrode tie rods 1 are separately fixed at the two ends of insulation cavity 7, and electrode tie rod 1 is provided with annular projection, forms a pit at the middle part of annular projection, and insulated support 8 is arranged on the inwall of insulation cavity 7; Moving contact 2 is arranged on the inside of insulation cavity 7, and when moving contact 2 is in when opening a sluice gate state, the end and the electrode tie rod 1 of moving contact 2 contact, and pushes up in the pit in the middle of the electrode tie rod 1; Plum blossom connector 3 is fixed on the annular projection of electrode tie rod 1, plum blossom connector 3 at one end has through hole, and moving contact 2 is sleeved on this through hole, no matter at the state of opening a sluice gate or in "on" position, moving contact 2 is realized being electrically connected with plum blossom connector 3 all the time, is in conducting state; Copper strutting piece 9 is between plum blossom connector 3 and permanent-magnet steel 5, and the outer side edges of copper strutting piece 9 is along being fixed on the insulated support 8, and the centre of copper strutting piece 9 has through hole, and moving contact 2 is sleeved on this through hole, and another end of moving contact 2 is positioned at arc control device 14; Two blocks of permanent-magnet steels 5 are arranged in the mechanism chamber 13, and the outer side edges of permanent-magnet steel 5 is along being fixed on the insulated support 8, and the centre of permanent-magnet steel 5 has through hole, and moving contact 2 is sleeved on this through hole; Moving iron core 4 is arranged between two blocks of permanent-magnet steels 5, and moving iron core 4 is fixed on the outer wall of moving contact 2; Solid insulation 11 is provided with on the outer wall of insulation cavity 7, and solid insulation 11 has groove in the position corresponding to permanent-magnet steel 5, and divide-shut brake coil 10 is arranged in this groove; Radome 6 is arranged on arc control device 14, and radome 6 is fixed on the inwall of insulation cavity 7, and the stroke of the length of radome 6 and two moving contacts 2 adapts; To the insulate inner space of cavity 7 of bellows 12 is divided into mechanism chamber 13 and arc control device 14, and bellows 12 has through hole, and moving contact 2 is sleeved in this through hole, because mechanism chamber 13 is different with the vacuum degree of arc control device 14, and 12 buffer actions of bellows.
As shown in Figure 2, be the state diagram of moving contact when "on" position in the utility model.The N utmost point of two blocks of permanent-magnet steels 5 is relative with the S utmost point, and when being in when opening a sluice gate state, moving iron core 4 is adsorbed near on the permanent-magnet steel 5 of electrode tie rod 1 one sides.
When needs closed a floodgate, divide-shut brake coil 10 energising also formed magnetic field, and this magnetic field gives 4 one of moving iron cores to reciprocal power, and when being in "on" position, moving iron core 4 is adsorbed on the permanent-magnet steel 5 away from electrode tie rod 1 one sides.
In addition, utilize the utility model principle, electromagnetic isolation drives intelligent switch can be designed to a moving contact 2 and a fixed contact, only need to keep a moving contact component and get final product, perhaps, can be arranged to the two drivings of two contacts, also can be arranged to an end contact and fix, the structure that an end contact drives.Insulation cavity 7 inside can vacuumize, fill with low pressure SF6 gas, high-purity N 2 or SF6 mist as dielectric.

Claims (10)

1. moving contact component is used to realize it is characterized in that the separating brake or the combined floodgate of switch or moving contact of breaker: comprise moving iron core, two permanent-magnet steels and divide-shut brake coil; Described moving iron core is between described two permanent-magnet steels, described moving iron core is fixed on the described moving contact, described permanent-magnet steel middle part has first through hole, and described moving contact is sleeved in described first through hole, and described divide-shut brake coil is arranged on the outer wall of insulation cavity.
2. moving contact component as claimed in claim 1 is characterized in that: the inwall of described insulation cavity is provided with insulated support, and described permanent-magnet steel is fixed on the described insulated support.
3. moving contact component as claimed in claim 1 is characterized in that: it is indoor that described moving iron core and permanent-magnet steel are arranged on the mechanism that described insulation cavity isolates, described mechanism chamber interior vacuum.
4. an electromagnetic isolation of using moving contact component drives intelligent switch, comprise the insulation cavity, moving contact, insulated support and electrode tie rod, described moving contact is arranged on described insulation inside cavity, the outer wall of described insulated support is fixed on the inwall of described insulation cavity, described electrode tie rod is fixed on the end of described insulation cavity, it is characterized in that: also comprise moving contact component, described moving contact component comprises the divide-shut brake coil, moving iron core and two permanent-magnet steels, described moving iron core and two permanent-magnet steels are arranged on the inside of described insulation cavity, and described permanent-magnet steel is fixed on the described insulated support; Described permanent-magnet steel has first through hole, and described moving contact is sleeved on described first through hole, and an end of described moving contact and described electrode tie rod are electrically connected; Described moving iron core is arranged between two blocks of described permanent-magnet steels, described moving iron core be fixed on described moving contact on; Described divide-shut brake coil is arranged on the outer wall of insulation cavity.
5. the electromagnetic isolation of application moving contact component as claimed in claim 1 drives intelligent switch, and it is characterized in that: described insulation cavity is provided with two groups of moving contact components.
6. the electromagnetic isolation of application moving contact component as claimed in claim 1 drives intelligent switch, it is characterized in that: the outer side edges of described permanent-magnet steel is along being fixed on the described insulated support.
7. the electromagnetic isolation as each described application moving contact component of claim 4 to 6 drives intelligent switch, it is characterized in that: described insulation inside cavity is provided with plum blossom connector and copper strutting piece, described electrode tie rod is provided with annular projection, on the fixing described annular projection of described plum blossom connector, described plum blossom connector has third through-hole, described moving contact is sleeved on the described third through-hole, and described moving contact and described plum blossom connector are electrically connected; Described copper strutting piece is between described plum blossom connector and described permanent-magnet steel, the outer side edges of described copper strutting piece is along being fixed on the described insulated support, described copper strutting piece has second through hole, described moving contact is sleeved on described second through hole, and another end of described moving contact extends to the outside of described copper strutting piece.
8. the electromagnetic isolation of application moving contact component as claimed in claim 7 drives intelligent switch, it is characterized in that: the outer wall of described insulation cavity is provided with solid insulation, described solid insulation has groove in the position corresponding to described permanent-magnet steel, and described divide-shut brake coil stationary is in described groove.
9. the electromagnetic isolation of application moving contact component as claimed in claim 7 drives intelligent switch, it is characterized in that: the inner vacuum of described insulation cavity, the arranged outside of described permanent-magnet steel has bellows, and described bellows is provided with fourth hole, and described moving contact is sleeved on the described fourth hole; Described bellows is divided into arc control device and mechanism chamber with the inner space of described insulation cavity, and it is indoor that described moving iron core and permanent-magnet steel are arranged on described mechanism.
10. the electromagnetic isolation of application moving contact component as claimed in claim 9 drives intelligent switch, it is characterized in that: described arc control device are provided with radome, described radome is fixed on the inwall of described insulation cavity, and the stroke of the length of described radome and two moving contacts adapts.
CN2011202068706U 2011-06-17 2011-06-17 Moving contact assembly and electromagnetic isolation driving intelligent switch using same Expired - Lifetime CN202094043U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2011202068706U CN202094043U (en) 2011-06-17 2011-06-17 Moving contact assembly and electromagnetic isolation driving intelligent switch using same

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Application Number Priority Date Filing Date Title
CN2011202068706U CN202094043U (en) 2011-06-17 2011-06-17 Moving contact assembly and electromagnetic isolation driving intelligent switch using same

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CN202094043U true CN202094043U (en) 2011-12-28

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102280304A (en) * 2011-06-17 2011-12-14 孟越峰 Moving contact assembly and intelligent electromagnetic isolation driving switch applying same
CN102945767A (en) * 2012-12-04 2013-02-27 川开电气股份有限公司 Arc extinguish chamber of 110KV circuit breaker
CN105428147A (en) * 2015-12-18 2016-03-23 北京双杰电气股份有限公司 Circuit breaking apparatus

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102280304A (en) * 2011-06-17 2011-12-14 孟越峰 Moving contact assembly and intelligent electromagnetic isolation driving switch applying same
CN102280304B (en) * 2011-06-17 2013-11-27 孟越峰 Moving contact assembly and its application Electromagnetic isolation driving intelligent switch of moving contact assembly
CN102945767A (en) * 2012-12-04 2013-02-27 川开电气股份有限公司 Arc extinguish chamber of 110KV circuit breaker
CN102945767B (en) * 2012-12-04 2016-01-20 川开电气股份有限公司 A kind of 110KV arc-extinguishing chamber of circuit breaker
CN105428147A (en) * 2015-12-18 2016-03-23 北京双杰电气股份有限公司 Circuit breaking apparatus

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C14 Grant of patent or utility model
GR01 Patent grant
AV01 Patent right actively abandoned

Granted publication date: 20111228

Effective date of abandoning: 20131127

RGAV Abandon patent right to avoid regrant