CN106486325B - A kind of Self-recover overvoltage-undervoltage protects structure - Google Patents
A kind of Self-recover overvoltage-undervoltage protects structure Download PDFInfo
- Publication number
- CN106486325B CN106486325B CN201611042724.8A CN201611042724A CN106486325B CN 106486325 B CN106486325 B CN 106486325B CN 201611042724 A CN201611042724 A CN 201611042724A CN 106486325 B CN106486325 B CN 106486325B
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- Prior art keywords
- iron core
- coil
- spring
- moving contact
- rack
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Classifications
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01H—ELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
- H01H50/00—Details of electromagnetic relays
- H01H50/54—Contact arrangements
- H01H50/56—Contact spring sets
- H01H50/58—Driving arrangements structurally associated therewith; Mounting of driving arrangements on armature
-
- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01H—ELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
- H01H50/00—Details of electromagnetic relays
- H01H50/16—Magnetic circuit arrangements
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- Physics & Mathematics (AREA)
- Electromagnetism (AREA)
- Breakers (AREA)
Abstract
The present invention relates to a kind of Self-recover overvoltage-undervoltage to protect structure, which includes:Moving contact, moving contact rack, static iron core one, coil rack one, DC coil one, DC coil two, compression spring one, static iron core two, yoke, coil rack two, magnetic conduction sheet, compression spring two, dynamic iron core, Zola's spring, right tension spring;When circuit occurs over-pressed or under-voltage, DC coil two does not work, DC coil is powered in a flash conducting, the magnetic field suction dynamic iron core of generation, dynamic iron core moves right compression press spring two, and promotes moving contact, it is allowed on moving contact rack cross at dead point around Zola's spring, right tension spring and rotates by a certain angle counterclockwise, and Zola's spring, right tension spring is crossed dead point, off-state is eventually held in, dynamic iron core is returned to home position by two reverse elastic force of compression spring at this time;Vice versa.Structure of the present invention is used primarily in Self-recover overvoltage-undervoltage protector, and the magnetic field produced using coil drives dynamic iron core, is allowed to push and pull moving contact, realizes closed and disconnected of the moving contact with static contact.
Description
Technical field
The invention belongs to field of electromechanical technology, more particularly to a kind of Self-recover overvoltage-undervoltage protection structure.
Technical background
Self-recover overvoltage-undervoltage protector currently on the market is all to be used as electric disjunction device, its magnetic utilized using relay
Keep principle.But there is the drawbacks of a very big by the use of relay as transfer mechanism, be exactly the disjunction electric clearance of such a electronic type
Too small, its contact spacing is no more than 1mm, does not have arc extinguishing ability at all, does not also possess breaking capacity, in long-time, high current work
In the case of work, once there is over voltage situation, contact will burn or be welded together, and can not realize power supply disjunction, make
Damaged into household electrical appliances, or even spontaneous combustion dangerous consequences on fire occur.
The content of the invention
To overcome drawbacks described above, the object of the present invention is to provide a kind of new Self-recover overvoltage-undervoltage to protect structure.
A kind of Self-recover overvoltage-undervoltage protects structure, which includes:Moving contact, moving contact rack, static iron core one, line
Ring framework one, DC coil one, DC coil two, compression spring one, static iron core two, yoke, coil rack two, magnetic conduction sheet, compression spring two,
Dynamic iron core, Zola's spring, right tension spring;The plate-like structure of moving contact, its one end are located in the groove on moving contact rack, and with
Groove on moving contact rack is flexibly connected, and the other end is flexibly connected with dynamic iron core;The static iron core one, static iron core two and yoke
It is engaged, split forms rectangular configuration;Coil rack one, coil rack two are fixed on static iron core one, static iron core two and yoke and spell
Close in the rectangular configuration formed;DC coil one, DC coil two be set in coil rack one, coil rack two it is cylindrical
Week;Magnetic conduction sheet is installed in the middle part of the radial direction of coil rack one, coil rack two;The dynamic iron core is in I-shaped column structure, its
One end is located in the kidney slot of moving contact and can be slided in groove, and the other end is located at coil rack one, the inner cavity of coil rack two,
And it can be slided in the inner cavity of coil rack one, coil rack two;The coil rack one, coil rack two are maintained at dynamic iron core
On same axis;Compression spring one, compression spring two can slide respectively positioned at static iron core one, the inner cavity of static iron core two in its corresponding inner cavity;
Compression spring two is sleeved on the major part end of dynamic iron core at the same time;Zola's spring, right tension spring are respectively positioned on moving contact rack, respectively symmetrically
It is arranged on the opposite sides of moving contact;
When circuit occurs over-pressed or under-voltage, DC coil two does not work, and DC coil is powered in a flash conducting, generation
Magnetic field suction dynamic iron core, dynamic iron core, which moves right compression press spring two and static contact, claps and closes, and promotes moving contact, is allowed to touch dynamic
Cross at dead point around spring on head bracket and rotate by a certain angle counterclockwise, and spring is crossed dead point, be eventually held in off-state, this
When dynamic iron core returned to home position by two reverse elastic force of compression spring;When line voltage distribution recovers normal, DC coil one does not work, directly
Two moment of streamline circle, which is powered, to be turned on, the magnetic field suction dynamic iron core of generation, and dynamic iron core to the left with static contact clap by motion compresses compression spring one
Close, and pull contact, be allowed on moving contact rack cross around spring certain angle is rotated clockwise at dead point, and make spring excessively dead
Point, is eventually held in closure state, and dynamic iron core is returned to home position by one reverse elastic force of compression spring at this time.
Self-recover overvoltage-undervoltage protection structure of the present invention is used primarily in Self-recover overvoltage-undervoltage protector, the magnetic produced using coil
Field drives dynamic iron core, is allowed to push and pull moving contact, realizes closed and disconnected of the moving contact with static contact.In place of clever structure of the present invention
It is to make use of spring to cross this feature of dead point, moving contact can be made to be consolidated under closure or off-state and kept, structure letter
It is single, reliable.
Brief description of the drawings
Fig. 1 protects structure closure state diagrammatic cross-section for Self-recover overvoltage-undervoltage of the present invention;
Fig. 2 protects structure off-state diagrammatic cross-section for Self-recover overvoltage-undervoltage of the present invention;
Fig. 3 protects structure positive stereoscopic diagram for Self-recover overvoltage-undervoltage of the present invention;
Fig. 4 protects structure to show the three-dimensional intention in side for Self-recover overvoltage-undervoltage of the present invention.
Embodiment
The present invention is described in detail below in conjunction with the accompanying drawings.
As shown in figures 1-4, a kind of Self-recover overvoltage-undervoltage protection structure, it includes:Moving contact 1, moving contact rack 2, quiet iron
Core 1, coil rack 1, DC coil 1, DC coil 26, compression spring 1, static iron core 28, yoke 9, coil rack two
10th, magnetic conduction sheet 11, compression spring 2 12, dynamic iron core 13, Zola's spring 14, right tension spring 15.1 plate-like structure of moving contact, its one end are located at
In groove on moving contact rack 2, and it is flexibly connected with the groove on moving contact rack 2, the other end connects with the activity of dynamic iron core 13
Connect.Static iron core 1, static iron core 28 are engaged with yoke 9, and split forms rectangular configuration.Coil rack 1, coil rack 2 10
It is fixed in the rectangular configuration that static iron core 1, static iron core 28 and 9 split of yoke are formed.DC coil 1, DC coil 26
It is set in coil rack 1, the excircle of coil rack 2 10.Magnetic conduction sheet 11 is installed on coil rack 1, coil rack
In the middle part of 2 10 radial direction.Dynamic iron core 13 is in I-shaped column structure, and its one end is located in the kidney slot of moving contact 1 and can be in groove
Slide, the other end is located at coil rack 1, the inner cavity of coil rack 2 10, and can be in coil rack 1, coil rack 2 10
Inner cavity slide.Coil rack 1, coil rack 2 10 and dynamic iron core 13 are kept on the same axis.Compression spring 1, compression spring two
12 respectively positioned at static iron core 1, the inner cavity of static iron core 28, and can be slided in its corresponding inner cavity;Compression spring 2 12 is sleeved on dynamic at the same time
The major part end of iron core 13.Zola's spring 14, right tension spring 15 are respectively positioned on moving contact rack 2, are symmetrically arranged at moving contact 1
Opposite sides.
The present invention operation principle be:When circuit occurs over-pressed or under-voltage, DC coil 26 does not work, AC line
The energization conducting of one 5 moments is enclosed, the magnetic field suction dynamic iron core 13 of generation, dynamic iron core 13 moves right compression press spring 2 12 and static contact
Clap and close, and promote moving contact 1, be allowed on moving contact rack 2 rotate by a certain angle counterclockwise around " spring is crossed at dead point ", and make
Spring(Tension spring)Dead point is crossed, is eventually held in " off-state ", dynamic iron core 13 is returned to original by 2 12 reverse elastic force of compression spring at this time
Position.When line voltage distribution recovers normal, DC coil 1 does not work, and 26 moment of DC coil, which is powered, to be turned on, the magnetic of generation
Attract dynamic iron core 13, dynamic iron core 13 to the left clap and close by motion compresses compression spring 1 and static contact, and pulls contact 1, is allowed to touch dynamic
Certain angle is rotated clockwise around " spring is crossed at dead point " on head bracket 2, and makes spring(Tension spring)Dead point is crossed, is eventually held in
" closure state ", at this time dynamic iron core 13 returned to home position by one 7 reverse elastic force of compression spring.If things go on like this, when again circuit occurred
When pressing or is under-voltage and recovering normal voltage, the above process understands repetitive operation again, realizes that Self-recover overvoltage-undervoltage is protected.
The key technology point of Self-recover overvoltage-undervoltage protection structure of the present invention:
(1)Movable contact system:Control moving contact to be rotated on moving contact rack by tension spring, stent, tension spring and dynamic touch
Cooperation between head will be designed to very well, and just making moving contact, tension spring crosses dead point smoothly in closed and disconnected.Moving contact
To be designed at extension tension spring symmetrical so that contact side-to-side movement stress balance on stent, movement are reliable.
(2)Excitation system:Two coils and dynamic iron core will be kept on the same axis, so just can guarantee that dynamic iron core can be
Can smoothly it move along a straight line back and forth on two coil racks.Magnetic conduction sheet is added between coil so that during each coil working
There can be shorter field circuit, increase electromagnetic attraction.
Self-recover overvoltage-undervoltage of the present invention protects structure as double DC coil excitations, i.e. two identical absolute coils,
Coil is selectively turned on when under-voltage, over-pressed and voltage recovers normal, produces magnetic field, is driven dynamic iron core, is allowed to drive moving contact
Closure disconnects.Situations such as structure contactor gap is sufficiently large, will not produce electric breakdown, contact melted, and contact pressure
I is realized adjustable by varying extension spring structure greatly, and possesses certain breaking capacity, can avoid the appearance of failure problems.
Claims (1)
1. a kind of Self-recover overvoltage-undervoltage protects structure, it is characterised in that:The protection structure includes:Moving contact(1), moving contact rack
(2), static iron core one(3), coil rack one(4), DC coil one(5), DC coil two(6), compression spring one(7), static iron core two
(8), yoke(9), coil rack two(10), magnetic conduction sheet(11), compression spring two(12), dynamic iron core(13), Zola's spring(14), right tension spring
(15);The moving contact(1)Plate-like structure, its one end are located at moving contact rack(2)On groove in, and and moving contact rack
(2)On groove be flexibly connected, the other end and dynamic iron core(13)It is flexibly connected;The static iron core one(3), static iron core two(8)With
Yoke(9)It is engaged, split forms rectangular configuration;Coil rack one(4), coil rack two(10)It is fixed on static iron core one(3)、
Static iron core two(8)With yoke(9)In the rectangular configuration that split is formed;DC coil one(5), DC coil two(6)It is set with
In coil rack one(4), coil rack two(10)Excircle;Magnetic conduction sheet(11)It is installed on coil rack one(4), coil rack
Two(10)Radial direction in the middle part of;The dynamic iron core(13)In I-shaped column structure, its one end is located at moving contact(1)Kidney slot in
And can be slided in groove, the other end is located at coil rack one(4), coil rack two(10)Inner cavity, and can be in coil rack one
(4), coil rack two(10)Inner cavity slide;The coil rack one(4), coil rack two(10)With dynamic iron core(13)Keep
On the same axis;Compression spring one(7), compression spring two(12)It is located at static iron core one respectively(3), static iron core two(8)Inner cavity, and can be
Slide its corresponding inner cavity;Compression spring two at the same time(12)It is sleeved on dynamic iron core(13)Described the other end;Zola's spring(14), it is right
Tension spring(15)It is respectively positioned on moving contact rack(2)On, it is symmetrically arranged at moving contact(1)Opposite sides;
When circuit occurs over-pressed or under-voltage, DC coil two(6)Do not work, DC coil one(5)Moment, which is powered, to be turned on, production
Raw magnetic field suction dynamic iron core(13), dynamic iron core(13)Move right compression press spring two(12), and promote moving contact(1), it is allowed to
In moving contact rack(2)On around Zola's spring(14), right tension spring(15)Cross at dead point and rotate by a certain angle counterclockwise, and make Zola's spring
(14), right tension spring(15)Dead point is crossed, is eventually held in off-state, at this time dynamic iron core(13)By compression spring two(12)Reverse elastic force returns
To home position;When line voltage distribution recovers normal, DC coil one( 5)Do not work, DC coil two(6)Moment energization is led
It is logical, the magnetic field suction dynamic iron core of generation(13), dynamic iron core(13)Motion compresses compression spring one to the left(7), and pull contact(1), make
In moving contact rack(2)On around Zola's spring(14), right tension spring(15)Cross and certain angle is rotated clockwise at dead point, and make Zola
Spring(14), right tension spring(15)Dead point is crossed, is eventually held in closure state, at this time dynamic iron core(13)By compression spring one(7)Reverse elastic force
Return to home position.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201611042724.8A CN106486325B (en) | 2016-11-24 | 2016-11-24 | A kind of Self-recover overvoltage-undervoltage protects structure |
Applications Claiming Priority (1)
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CN201611042724.8A CN106486325B (en) | 2016-11-24 | 2016-11-24 | A kind of Self-recover overvoltage-undervoltage protects structure |
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Publication Number | Publication Date |
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CN106486325A CN106486325A (en) | 2017-03-08 |
CN106486325B true CN106486325B (en) | 2018-04-13 |
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CN201611042724.8A Active CN106486325B (en) | 2016-11-24 | 2016-11-24 | A kind of Self-recover overvoltage-undervoltage protects structure |
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Families Citing this family (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN109148236A (en) * | 2018-09-17 | 2019-01-04 | 美高电气科技有限公司 | A kind of breaker |
Citations (8)
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US5184101A (en) * | 1990-05-23 | 1993-02-02 | Weber Ag | Undervoltage tripping device |
FR2704090A1 (en) * | 1993-04-16 | 1994-10-21 | Merlin Gerin | Auxiliary Trigger for Circuit Breaker. |
US6265957B1 (en) * | 1999-09-15 | 2001-07-24 | Square D Company | Electromagnetic actuator equipped with two return springs |
EP1463082A1 (en) * | 2003-03-26 | 2004-09-29 | Siemens Aktiengesellschaft | Electrical switching device |
CN200962407Y (en) * | 2006-10-26 | 2007-10-17 | 郑春开 | Electromagnetic switch |
CN101459018A (en) * | 2008-06-20 | 2009-06-17 | 扬州新菱电器有限公司 | Control and protection switch electric appliance |
CN202487512U (en) * | 2012-03-20 | 2012-10-10 | 常熟开关制造有限公司(原常熟开关厂) | Undervoltage tripper |
CN103337423A (en) * | 2013-07-16 | 2013-10-02 | 浙江正泰电器股份有限公司 | Double-action electromagnetic trip |
-
2016
- 2016-11-24 CN CN201611042724.8A patent/CN106486325B/en active Active
Patent Citations (8)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US5184101A (en) * | 1990-05-23 | 1993-02-02 | Weber Ag | Undervoltage tripping device |
FR2704090A1 (en) * | 1993-04-16 | 1994-10-21 | Merlin Gerin | Auxiliary Trigger for Circuit Breaker. |
US6265957B1 (en) * | 1999-09-15 | 2001-07-24 | Square D Company | Electromagnetic actuator equipped with two return springs |
EP1463082A1 (en) * | 2003-03-26 | 2004-09-29 | Siemens Aktiengesellschaft | Electrical switching device |
CN200962407Y (en) * | 2006-10-26 | 2007-10-17 | 郑春开 | Electromagnetic switch |
CN101459018A (en) * | 2008-06-20 | 2009-06-17 | 扬州新菱电器有限公司 | Control and protection switch electric appliance |
CN202487512U (en) * | 2012-03-20 | 2012-10-10 | 常熟开关制造有限公司(原常熟开关厂) | Undervoltage tripper |
CN103337423A (en) * | 2013-07-16 | 2013-10-02 | 浙江正泰电器股份有限公司 | Double-action electromagnetic trip |
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CN106486325A (en) | 2017-03-08 |
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