CN105206476A - Contact terminal system and contactor comprising same - Google Patents

Contact terminal system and contactor comprising same Download PDF

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Publication number
CN105206476A
CN105206476A CN201510654454.5A CN201510654454A CN105206476A CN 105206476 A CN105206476 A CN 105206476A CN 201510654454 A CN201510654454 A CN 201510654454A CN 105206476 A CN105206476 A CN 105206476A
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CN
China
Prior art keywords
contact
moving
contacts
moving contact
contactor
Prior art date
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.)
Pending
Application number
CN201510654454.5A
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Chinese (zh)
Inventor
南寅
孟令乾
汪从礼
张明亮
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
SHOURUI (BEIJING) INVESTEMENT ADMINISTRATION GROUP CO Ltd
Original Assignee
SHOURUI (BEIJING) INVESTEMENT ADMINISTRATION GROUP CO Ltd
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by SHOURUI (BEIJING) INVESTEMENT ADMINISTRATION GROUP CO Ltd filed Critical SHOURUI (BEIJING) INVESTEMENT ADMINISTRATION GROUP CO Ltd
Priority to CN201510654454.5A priority Critical patent/CN105206476A/en
Publication of CN105206476A publication Critical patent/CN105206476A/en
Priority to AU2016336689A priority patent/AU2016336689B2/en
Priority to PCT/CN2016/101655 priority patent/WO2017059821A1/en
Priority to BR112018006036A priority patent/BR112018006036A2/en
Priority to ZA2018/01873A priority patent/ZA201801873B/en
Pending legal-status Critical Current

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Classifications

    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H50/00Details of electromagnetic relays
    • H01H50/54Contact arrangements

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  • Physics & Mathematics (AREA)
  • Electromagnetism (AREA)
  • Arc-Extinguishing Devices That Are Switches (AREA)
  • Electric Propulsion And Braking For Vehicles (AREA)
  • Contacts (AREA)

Abstract

The invention provides a contact terminal system and a contactor comprising the same. The contact terminal system comprises a contact terminal supporting component, at least two first movable contact terminals and a static contact terminal, wherein the upper end of the contact terminal supporting component is provided with a positioning device capable of moving up and down in the contact terminal supporting component and provided with at least two arms, the two first movable contact terminals are each provided with two contacts and are installed on the arms of the positioning device respectively, the static contact terminal is provided with contacts corresponding to the contacts of the first movable contact terminals, and one first movable contact terminal is installed on each arm of the positioning device. The size of the contact terminal system and the size of the contactor are smaller than that of a traditional contact terminal system and that of a traditional contactor, and therefore precious space in a control cabinet can be saved.

Description

Contact system and comprise the contactor of contact system
Technical field
The present invention relates to Low Voltage Electrical Apparatus, relate more specifically to a kind of contact system and comprise the contactor of contact system.
Background technology
Contactor (Contactor) refers to and utilizes the magnetic field that electric current flows through coil generation to make contact closure, with the electrical equipment of control load.Particularly, contactor mainly comprises electromagnetic system, contact system and arc quenching system three part.Electromagnetic system comprises dynamic iron core, fixed core and solenoid, and wherein solenoid and fixed core are motionless down in working order; Dynamic iron core is then movable.When the solenoid is activated, the electromagnetic attraction that fixed core produces will move adhesive unshakable in one's determination, and because contact system and dynamic iron core link, the moving contact therefore in dynamic band movable contact system unshakable in one's determination runs simultaneously and closes with the fixed contact in contact system, thus switches on power.When solenoid power-off, the electromagnetic attraction that static iron core produces disappears, and dynamic iron core is separated with static iron core and disconnects with the moving contact in movable contact system and fixed contact, thus cuts off the electricity supply.Arc quenching system mainly comprises arc-control device, and the electric arc produced during for closing the moving contact in contact system and fixed contact or disconnect carries out arc extinguishing.
The contact system of current most small area analysis (< 100A) contactor is arranged as follows: contact holding components can move up and down, and contact holding components is arranged porose; Moving contact is placed in the hole that contact holding components is arranged, and moving contact is provided with elastic component; When contactor closes, moving contact moves up and down until contact with fixed contact with contact holding components, and contact holding components continues motion, produces the excess of stroke; When contactor disconnects, process is contrary therewith.
The contact system of current most big current (> 100A) contactor is arranged as follows: on contact holding components, arrange moving contact, moving contact is generally bridge shape moving contact, its front and back position is symmetrically welded silver alloy contact, sideline, left and right place, middle part respectively arranges a breach do not closed, spring support member part clamps and is that bridge shape moving contact leads (such as by the breach do not closed, the LC1-F500 A.C. contactor that Schneider company produces, the CJ20-250 A.C. contactor etc. of domestic production), or middle part arranges two symmetrical closed breach, as " mouth " font breach, spring support member part is that bridge shape moving contact leads (such as by these two closed breach, the 3TF-52 A.C. contactor that Siemens Company produces, the SC-N10 A.C. contactor etc. that company of Fuji produces).
In big current contactor, because contact area is too large, so have distortion unavoidably when contact manufactures, cause contact surface out-of-flatness.In the contactor of contact system adopting single action structure of contact terminal, when moving contact and fixed contact close, large stretch of contact real contact area is very little, easily because contact resistance causes too greatly product temperature rise too high, cause working of plastics quick aging, reduce the mechanical strength of current-carrying part metalwork, even scaling loss contactor.
So, propose and a kind ofly adopt the contactor of the contact system of multiple moving contacts structure (contact system comprises at least two moving contacts).The contact system of such multiple moving contacts structure is divided into two kinds of structures: the simple copy of the contact system of (), single action structure of contact terminal, the contact system of this multiple moving contacts structure comprises at least two sets of contacts, each sets of contacts includes a spring support member part, a contact holding components, a bridge shape moving contact, an axle (or not establishing axle), at least two such sets of contacts move (such as, the LC1-F1700 A.C. contactor of Schneider company) simultaneously; (2), the improvement of the contact system of single action structure of contact terminal copies, the contact system of this multiple moving contacts structure comprises at least two bridge-shaped contact groups, each bridge-shaped contact group comprises a spring support member part, a bridge shape moving contact, an axle (or not establishing axle), all bridge-shaped contact groups are placed on (such as, the AF1650 A.C. contactor of ABB AB) on a contact holding components jointly.
In the contactor of the contact system of above-described employing multiple moving contacts structure, due to each moving contact laid out in parallel in contact system, cause and need each other to keep away position, so volume is large, wasting space.In addition, the contactor of the contact system of employing multiple moving contacts structure is although it is so specially adapted to big current, obviously can improve the temperature rise of contactor, but overall dimension is excessive, wastes the space of control cubicle when user is used in a large number.Meanwhile, the contactor of the contact system of such employing multiple moving contacts structure is when closing or disconnect at every turn, and all moving contacts are wherein closed, disconnection simultaneously, and namely all moving contacts bear electric arc simultaneously, and make the easy scaling loss of contactor, electrical endurance is not high.
Summary of the invention
In view of above-mentioned one or more problem, the invention provides a kind of contact system of novelty and comprise the contactor of contact system.
According to the contact system of the embodiment of the present invention, comprising: contact holding components, its upper end is provided with the positioner that can move up and down in contact holding components, and this positioner has at least two arms; At least two the first moving contacts, these at least two first moving contacts have at least two contacts respectively and are installed at least two arms of positioner respectively; And fixed contact, this fixed contact has the contact corresponding with the contact of above-mentioned at least two the first moving contacts, wherein, every arm of positioner installs first moving contact.
According to the contact system of the embodiment of the present invention, also comprise: at least one second moving contact, this at least one second moving contact there are at least two contacts respectively and and above-mentioned at least two the first moving contacts be arranged at least between two arms of positioner concurrently, wherein, fixed contact also has the contact corresponding with the contact of at least one the second moving contact above-mentioned.
According in the contact system of the embodiment of the present invention, comprise at least one moving contact in all moving contacts of above-mentioned at least two the first moving contacts and at least one the second moving contact above-mentioned not with other moving contact simultaneously and fixed contact close or disconnect, and the contact of this at least one moving contact is compared the contact corresponding with other moving contacts on the contact of other moving contact and/or fixed contact and is adopted the material that high, the resistance to electric arc ability of resistivity is strong with the contact that fixed contact corresponds.
According in the contact system of the embodiment of the present invention, above each first moving contact, be provided with the first elastic component, and be provided with the second elastic component above each second moving contact.In addition, between each first moving contact and the first elastic component above it, be provided with the first arc angle, and be provided with the second arc angle between each second moving contact and the second elastic component above it.
According in the contact system of the embodiment of the present invention, positioner is " U " font, " twenty " font, " mountain " font, the structure of " mountain " font or " thirty " font of falling, the middle part of the first moving contact, the first elastic component and the first arc angle is provided with the location structure of rectangle, circle, ellipse, L-type, T-shaped, Y type, triangle, polygon or abnormity.
According to the contactor of the embodiment of the present invention, comprise electromagnetic system, arc quenching system and contact system as above.
Contact system according to the embodiment of the present invention is compared with contactor with existing contact system with contactor, positioned owing to having two moving contacts in contact system at least by least two arms of positioner and led, so saved space, thus the volume of same current class product is made to be far smaller than existing products in markets.
In addition, compare the contact system with single moving contact according to the contact system comprising multiple moving contact of the embodiment of the present invention and greatly reduce contact resistance, thus the temperature rise of contact system can be reduced.Moreover, by arrange multiple moving contacts that contact system comprises different time to close with fixed contact and/or to disconnect, to reduce when contact system closes or disconnects electric arc to the scaling loss of moving contact, thus improve the electrical endurance of contact system.
Accompanying drawing explanation
The following accompanying drawing of the application in this as a application's part for understanding the application.Execution mode shown in accompanying drawing and description thereof are used for explaining principle of the present invention.In the accompanying drawings:
Fig. 1 is the schematic diagram according to the positioner in the contact system of the embodiment of the present invention;
Fig. 2 is the schematic diagram according to the contact holding components in the contact system of the embodiment of the present invention;
Fig. 3 is the assembling schematic diagram according to the contact holding components in the contact system of the embodiment of the present invention and positioner;
Fig. 4 is the explosive view of contact system according to a first embodiment of the present invention;
Fig. 5 is the explosive view of moving contact, arc angle and elastic component according to a first embodiment of the present invention;
Fig. 6 is the assembling schematic diagram of contact system according to a first embodiment of the present invention;
Fig. 7 is the assembling view of contact system according to a first embodiment of the present invention;
Fig. 8 is the schematic diagram of the contactor of the contact system adopted according to a first embodiment of the present invention;
Fig. 9 is the assembling schematic diagram of contact system according to a second embodiment of the present invention.
Embodiment
The characteristic sum exemplary embodiment of various aspects of the present invention will be described in detail below.In the following detailed description, propose many details, to provide complete understanding of the present invention.But, it will be apparent to those skilled in the art that the present invention can implement when not needing some details in these details.Below the description of embodiment is only used to by illustrating example of the present invention to provide to better understanding of the present invention.Any concrete configuration that the present invention proposes below being never limited to and algorithm, but cover any amendment of element, parts and algorithm, replacement and improvement under the premise of without departing from the spirit of the present invention.In the the accompanying drawings and the following description, known structure and technology are not shown, to avoid causing the present invention unnecessary fuzzy.
Below in conjunction with accompanying drawing, describe in detail according to the contact system of the embodiment of the present invention and the contactor adopting this contact system.
Fig. 1 is the schematic diagram according to the positioner in the contact system of the embodiment of the present invention.Fig. 2 is the schematic diagram according to the contact holding components in the contact system of the embodiment of the present invention.Fig. 3 is the assembling schematic diagram according to the contact holding components in the contact system of the embodiment of the present invention and positioner.Below with reference to Fig. 1 to Fig. 3, describe in detail according to the positioner in the contact system of the embodiment of the present invention, contact holding components and the assembled relation both them.
Particularly, as shown in Figure 1, the positioner 110 according to the embodiment of the present invention is U-shaped structure, has two arms 111 and across the axle 112 between two arms 111; As shown in Figure 2, upper surface according to the contact holding components 100 of the embodiment of the present invention is provided with two steps 104 and 105, the upper surface of contact holding components 100 is divided into three planes 101,102 and 103 by step 104 and 105, its midplane 102 1mm (it should be noted that, contact holding components 100 in contactor can move up and down) lower than the position of plane 101 and plane 103; As shown in Figure 3, when contact holding components 100 fits together with positioner 110, the two arms 111 of positioner 110 is each passed through the rectangular opening on the surface 101 and 103 of contact holding components 100, and positioner 110 can move up and down relative to contact holding components 100.
Fig. 4 is the explosive view of contact system according to a first embodiment of the present invention.Fig. 5 is the explosive view of moving contact, arc angle and elastic component according to a first embodiment of the present invention.Fig. 6 is the assembling schematic diagram of contact system according to a first embodiment of the present invention.Fig. 7 is the assembling view of contact system according to a first embodiment of the present invention.Below with reference to Fig. 4 to Fig. 7, describe contact system according to a first embodiment of the present invention in detail.
As shown in Figures 4 to 6, moving contact 120 is arranged in the two arms 111 of positioner 110 by the rectangular indexing holes of position, intermediate portion, and is supported on the surface 101 and 103 of contact holding components 100; Arc angle 140 and elastic component 130 are arranged in the two arms 111 of positioner 110 by the rectangular indexing holes of their middle parts successively, and on the surface 101 and 103 being cooperatively supported on contact holding components 100 with moving contact 120 (wherein, arc angle 140 is pressed on moving contact 120, and elastic component 130 is pressed in arc angle 140); The axle 112 across two arms 111 of positioner 110 is pressed on elastic component 130, to limit the position of moving contact 120, arc angle 140 and elastic component 130, makes them can not from the upper end slippage of the two arms 111 of positioner 110; Simultaneously, moving contact 160, arc angle 170 and elastic component 150 are supported on the surface 102 of contact holding components 100, the axle 112 of positioner 110 is pressed on elastic component 150 to limit the position (because moving contact 160, arc angle 170 and elastic component 150 are not arranged in the two arms 111 of positioner 110, so their middle part does not have rectangular indexing holes) of moving contact 160, arc angle 170 and elastic component 150.
As shown in Figure 5, moving contact 120 is bridge shape moving contact, (namely its front and back position is symmetrically arranged with contact 122 and contact 123, the pier location of former and later two symmetries is respectively arranged with contact 122 and contact 123), mid portion is the location structure 121 (being a rectangular opening) of moving contact 120, and the rectangular opening that the one arm 111 of positioner 110 passes the middle part of moving contact 120 is that moving contact 120 is located and leads.It is to be understood that moving contact 160 has the structure (except intermediate position do not arranged location structure except) similar to moving contact 120.
As shown in Figure 6, contact system according to a first embodiment of the present invention comprises moving contact subsystem and single fixed contact 180.Particularly, moving contact subsystem comprise contact holding components 100, positioner 110, be each passed through the two arms 111 of positioner 110 two moving contacts 120 and on arc angle 140 and elastic component 130 and between the two arms 111 of positioner 110 and with moving contact 120 (and on arc angle 140 and elastic component 130) parallel arranged moving contact 160 and on arc angle 170 and elastic component 150.
Composition graphs 2, Fig. 4, Fig. 6 and Fig. 7 can be found out, the plane 101 of contact holding components 100 and plane 103 support moving contact 120 and arc angle 140 thereof and elastic component 130, and the plane 102 of contact holding components 100 supports moving contact 160 and arc angle 170 thereof and elastic component 150; The middle part of moving contact 120, elastic component 130 and arc angle 140 is provided with rectangular indexing holes, and this some holes is each passed through two arms 111 of positioner 110; Axle 112 across the two arms 111 of positioner 110 is pressed on elastic component 130 and elastic component 150; Three moving contacts supported by three planes 101,102 and 103 of contact holding components 100 are respectively by the two arms 111 of positioner 110 and the step 104 of contact holding components 100 and the common guiding of step 105 and locate; Plane 102 due to contact holding components 100 1mm lower than the position of plane 101 and plane 103, so the 1mm lower than the moving contact 120 in the plane 101 being positioned at contact holding components 100 and plane 103 that be positioned at moving contact 160 in the plane 102 of contact holding components 100.
As can be seen from Figures 6 and 7, fixed contact 180 in contact system according to a first embodiment of the present invention has contact (altogether six contacts) corresponding with two contacts of moving contact 120 and two contacts of moving contact 160 respectively, and these six contacts are in the same plane and highly consistent; Due to the 1mm lower than the position of the moving contact 120 in the plane 101 being positioned at contact holding components 100 and plane 103 that be positioned at moving contact 160 in the plane 102 of contact holding components 100, and all contact heights of fixed contact 180 are consistent, so be positioned at moving contact 160 in the plane 102 of contact holding components 100 than the moving contact 120 in the plane 101 being positioned at contact holding components 100 and plane 103 open apart from little 1mm, be arcing contact.Contact corresponding with the contact of moving contact 120 on the contact of contact moving contact 120 compared with contact corresponding with the contact of moving contact 160 on fixed contact of moving contact 160 and/or fixed contact, adopts the material that high, the resistance to electric arc ability of resistivity is strong.Such as, the contact of moving contact 160 adopts silver-tungsten alloy, and contact corresponding with it on fixed contact adopts silver-diamondite, and other all contacts all adopt silver-tin alloy (or silver-cadmium oxide alloy).Certainly, it may occur to persons skilled in the art that, moving contact 120 and 160 also can adopt the contact of identical material, and contact corresponding with the contact of moving contact 120 and 160 on fixed contact also can adopt identical material.
Particularly, contact closure process in contact system shown in Fig. 6 and Fig. 7 is as follows: when contact holding components 100 drives moving contact 160 and two moving contacts 120 move downward, open and close prior to two moving contacts 120 and fixed contact 180 apart from less moving contact 160 (that is, arcing contact); When two moving contacts 120 not yet close with fixed contact 180, moving contact 160 (that is, arcing contact) closes with fixed contact 180, all electric currents all concentrate on moving contact 160 (that is, arcing contact); When contact holding components 100 continues to move downward certain distance after moving contact 160 and fixed contact 180 are closed, moving contact 160 and two moving contacts 120 all close with fixed contact 180, electric current is shared on each moving contact, and circuit starts normally, making current evenly; Now, moving contact 160 and two moving contacts 120 are connected simultaneously, and moving contact 120 and the contact resistance between moving contact 160 and fixed contact 180 reduce, thus can reduce the temperature rise of contact system.It is clearly understood that, because contact resistance rate corresponding with it on the contact of moving contact 160 and fixed contact 180 is higher than the contact on the fixed contact 180 of the contact of moving contact 120 and correspondence with it, so, now share electric current on each moving contact and unequal, electric current on moving contact 160 is significantly less than other two moving contacts 120, and contactor mainly conducts electricity by two moving contacts 120.
In addition, it is as follows that contact in contact system shown in Fig. 6 and Fig. 7 disconnects process: when contact holding components 100 drives two moving contacts 120 and moving contact 160 to move upward, open and disconnect in two moving contacts 120 and fixed contact 180 after less moving contact 160 (that is, arcing contact); When moving contact 120 and fixed contact 180 disconnect, moving contact 160 (that is, arcing contact) does not disconnect with fixed contact 180, all electric currents all concentrate on moving contact 160 (that is, arcing contact); Two moving contacts 120 do not have breaking current when disconnecting with fixed contact 180, therefore do not have electric arc; When contact holding components 100 continue motion moving contact 160 (that is, arcing contact) also will be disconnected with fixed contact 180 time, all electric currents are accumulated in the upper disjunction of moving contact 160 (that is, arcing contact), just produce electric arc; Electric arc is by arc quenching system by after arc extinguishing, and circuit is disconnected completely.Now, protect other two moving contacts 120 while the electrical arc erosion moving contact 160 (that is, arcing contact) produced when moving contact 160 disconnects with fixed contact 180 substantially not by scaling loss, therefore can improve the electrical endurance of contact system.In addition, contact corresponding with it on the contact of moving contact 160 and fixed contact 180 have employed the higher and material that resistance to electric arc ability is stronger of resistivity (such as, be respectively silver-tungsten alloy and silver-diamondite), so their resistance to electric arc ability is strong, thus the electric life of moving contact 160 (that is, arcing contact) can be improved.
Fig. 8 is the schematic diagram of the contactor of the contact system adopted according to a first embodiment of the present invention.As shown in Figure 8, adopt that the contactor volume of contact system is according to a first embodiment of the present invention little and capacity is large.
Particularly, when the control coil energising of contactor, according to maxwell's electromagnetic principle, under the excitatory effect that control coil produces, between dynamic iron core and fixed core, produce electromagnetic attraction, the counter-force that dynamic iron core overcomes reaction spring moves downward, and band moving contact holding components 100 moves downward; Contact holding components 100 drives moving contact 120 and 160 to move downward, and moving contact 160 (that is, arcing contact) is first contacted with fixed contact 180; After contact holding components 100 continues to move downward 1mm, moving contact 160 and the contact resistance between two moving contacts 120 and fixed contact 180 reduce; Contact holding components 100 continues to move downward certain distance, until dynamic iron core, fixed core are completely closed, completes contact closure process.Circuit connected by above process implementation contactor, makes electric equipment (such as, motor etc.) realize the function of energising running.
Particularly, when the control coil dead electricity of contactor, according to maxwell's electromagnetic principle, the excitatory disappearance of control coil, electromagnetic attraction between dynamic iron core and fixed core disappears, dynamic unshakable in one's determination under reaction spring effect, promote contact holding components 100 and move upward, first two moving contacts 120 and fixed contact 180 are disconnected; Now, open the less moving contact 160 (that is, arcing contact) of distance and be still in closure state with fixed contact 180; Contact holding components 100 continues to move upward after 1mm, opens and just disconnects with fixed contact 180 apart from less moving contact 160 (that is, arcing contact), now produce electric arc; Apart from less moving contact 160 (arcing contact) and fixed contact 180, electric arc is introduced arc extinguishing in arc quenching system by opening; Contact holding components 100 continues the certain distance (clearance between open contacts) that moves upward, until dynamic iron core, fixed core are opened completely.After completing contact disconnection process, contact system is in the open position shown in Fig. 6.First two moving contacts 120 disconnect with fixed contact 180 in the above process, but open and be still in closure state apart from less moving contact 160 and fixed contact 180, all electric currents by moving contact 160, without electric arc when therefore two moving contacts 120 disconnect with fixed contact 180; Contact holding components 100 continues to move upward, and produce electric arc when moving contact 160 and fixed contact 180 disconnect, moving contact 160 is arcing contact, and two moving contacts 120 are not burnt, thus improve the electrical endurance of contact system.Above process implementation contactor divides deenergizing, the function making electric equipment (such as, motor etc.) realize power-off to stop.
Should be understood that positioner 110 can have two arms, is the structure of " U " font, " twenty " font; Also can have the arm of more than three, be the structure etc. of " mountain " font, " thirty " font.In addition, the rectangular indexing holes of the middle part of moving contact 120, arc angle 140 and elastic component 130 can by circle, ellipse, L-type, T-shaped, the replacement such as Y type, triangle, polygon, special-shaped location structure, as long as moving contact 120, arc angle 140 and elastic component 130 can be arranged on the one arm of positioner 110 movably.
Fig. 9 is the assembling schematic diagram of contact system according to a second embodiment of the present invention.As shown in Figure 9, this contact system comprises 5 moving contacts (being two moving contacts 160 in outermost two moving contacts 120, middle moving contact 200 and secondary outside respectively) and single fixed contact 180.Wherein, two moving contacts 160 in middle moving contact 200 and time outside are disposed with arc angle and the elastic component that middle part does not have location structure, and the arc angle that outermost two moving contacts 120 and top thereof set gradually and elastic component are arranged in the two arms 111 of positioner 110 by the location structure of their middle parts.Wherein, the contact position height of five moving contacts 120,200,160 is consistent, but the contact position of middle moving contact 200 is more farther apart from their middle part than the contact position of moving contact 120 and moving contact 160, fixed contact 180 is provided with contact at five moving contact contact correspondence positions respectively, and the fixed contact of middle moving contact 200 correspondence is higher than other four fixed contact 1.5mm.Now, middle moving contact 200 is opened apart from little 1.5mm than two moving contacts 160 in outermost two moving contacts 120 and time outside, and middle moving contact 170 is arcing contact.Here moving contact 120 and 160 is the moving contact 120 and 160 that above composition graphs 4-7 describes, and moving contact 200 has the structure (except moving contact 200 is longer than moving contact 160) similar to moving contact 160.
The operation principle of the contact system shown in Fig. 9 and above for contact system according to a first embodiment of the present invention describe similar, so be not repeated at this.
Contact system according to the embodiment of the present invention is compared with contactor with existing contact system with contactor, positioned owing to having two moving contacts in contact system at least by least two arms of positioner and led, so saved space, thus the volume of same current class product is made to be far smaller than existing products in markets.
In addition, compare the contact system with single moving contact according to the contact system comprising multiple moving contact of the embodiment of the present invention and greatly reduce contact resistance, thus the temperature rise of contact system can be reduced.Moreover, by arrange multiple moving contacts that contact system comprises different time to close with fixed contact and/or to disconnect, to reduce when contact system closes or disconnects electric arc to the scaling loss of moving contact, thus improve the electrical endurance of contact system.
The above embodiments do not form any type of restriction to protection range of the presently claimed invention; claims of the present invention cover all modifications and changes; therefore, make various modifications for above-described embodiment all to belong in protection scope of the present invention with change.

Claims (11)

1. a contact system, comprising:
Contact holding components, its upper end is provided with the positioner that can move up and down in described contact holding components, and described positioner has at least two arms;
At least two the first moving contacts, these at least two first moving contacts have at least two contacts respectively and are installed in the described at least two arms of described positioner respectively; And
Fixed contact, this fixed contact has the contact corresponding with the contact of described at least two the first moving contacts,
Wherein, every arm of described positioner installs first moving contact.
2. contact system according to claim 1, is characterized in that, also comprises:
At least one second moving contact, this at least one second moving contact there are at least two contacts respectively and and described at least two the first moving contacts be arranged on the described at least between two arms of described positioner concurrently,
Wherein, described fixed contact also has the contact corresponding with the contact of at least one the second moving contact described.
3. contact system according to claim 1 and 2, it is characterized in that, at least one moving contact in all moving contacts of at least two the first moving contacts and at least one the second moving contact described described in comprising not with other moving contact simultaneously and described fixed contact close or disconnect.
4. contact system according to claim 3, it is characterized in that, the contact of at least one moving contact described is compared the contact corresponding with other moving contacts described on the contact of other moving contact described and/or described fixed contact and is adopted the material that high, the resistance to electric arc ability of resistivity is strong with the contact that described fixed contact corresponds.
5. the contact system according to any one of claim 1-3, is characterized in that, above each first moving contact, be provided with the first elastic component.
6. the contact system according to any one of claim 1-3, is characterized in that, above each second moving contact, be provided with the second elastic component.
7. contact system according to claim 5, is characterized in that, between each first moving contact and the first elastic component above it, be provided with the first arc angle.
8. the contact system according to any one of claim 6, is characterized in that, between each second moving contact and the second elastic component above it, be provided with the second arc angle.
9. contact system according to claim 1, is characterized in that, described positioner is the structure of " U " font, " twenty " font, " mountain " font, " mountain " font or " thirty " font.
10. contact system according to claim 7, it is characterized in that, the middle part of described first moving contact, described first elastic component and described first arc angle is provided with the location structure of rectangle, circle, ellipse, L-type, T-shaped, Y type, triangle, polygon or abnormity.
11. 1 kinds of contactors, comprise electromagnetic system, arc quenching system and the contact system according to any one of claim 1-10.
CN201510654454.5A 2015-10-10 2015-10-10 Contact terminal system and contactor comprising same Pending CN105206476A (en)

Priority Applications (5)

Application Number Priority Date Filing Date Title
CN201510654454.5A CN105206476A (en) 2015-10-10 2015-10-10 Contact terminal system and contactor comprising same
AU2016336689A AU2016336689B2 (en) 2015-10-10 2016-10-10 Contact system and contactor comprising contact system
PCT/CN2016/101655 WO2017059821A1 (en) 2015-10-10 2016-10-10 Contact system and contactor comprising contact system
BR112018006036A BR112018006036A2 (en) 2015-10-10 2016-10-10 contact system and contactor
ZA2018/01873A ZA201801873B (en) 2015-10-10 2018-03-20 Contact system and contactor comprising contact system

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Application Number Priority Date Filing Date Title
CN201510654454.5A CN105206476A (en) 2015-10-10 2015-10-10 Contact terminal system and contactor comprising same

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Publication Number Publication Date
CN105206476A true CN105206476A (en) 2015-12-30

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CN (1) CN105206476A (en)
AU (1) AU2016336689B2 (en)
BR (1) BR112018006036A2 (en)
WO (1) WO2017059821A1 (en)
ZA (1) ZA201801873B (en)

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WO2017059821A1 (en) * 2015-10-10 2017-04-13 首瑞(北京)投资管理集团有限公司 Contact system and contactor comprising contact system
CN108922825A (en) * 2018-06-15 2018-11-30 湖北德普电气股份有限公司 A kind of multiple spot rotaing contactor control system
CN109243918A (en) * 2018-08-21 2019-01-18 宁波市鄞州永林电子电器有限公司 A kind of high power relay

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ZA201801873B (en) 2019-01-30
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AU2016336689A1 (en) 2018-04-19

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