EP2892069B1 - Ineinandergreifende vorrichtung eines übertragungsschalters - Google Patents

Ineinandergreifende vorrichtung eines übertragungsschalters Download PDF

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Publication number
EP2892069B1
EP2892069B1 EP13831992.6A EP13831992A EP2892069B1 EP 2892069 B1 EP2892069 B1 EP 2892069B1 EP 13831992 A EP13831992 A EP 13831992A EP 2892069 B1 EP2892069 B1 EP 2892069B1
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EP
European Patent Office
Prior art keywords
rod
operation mechanism
primary side
backup
backup side
Prior art date
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Active
Application number
EP13831992.6A
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English (en)
French (fr)
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EP2892069A1 (de
EP2892069A4 (de
Inventor
Mi Zhou
Di SHEN
Anshun YOU
Huiyu JI
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.)
Zhejiang Chint Electrics Co Ltd
SEARI Electric Technology Co Ltd
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Zhejiang Chint Electrics Co Ltd
SEARI Electric Technology Co Ltd
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Application filed by Zhejiang Chint Electrics Co Ltd, SEARI Electric Technology Co Ltd filed Critical Zhejiang Chint Electrics Co Ltd
Priority to PL13831992T priority Critical patent/PL2892069T3/pl
Publication of EP2892069A1 publication Critical patent/EP2892069A1/de
Publication of EP2892069A4 publication Critical patent/EP2892069A4/de
Application granted granted Critical
Publication of EP2892069B1 publication Critical patent/EP2892069B1/de
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    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H9/00Details of switching devices, not covered by groups H01H1/00 - H01H7/00
    • H01H9/20Interlocking, locking, or latching mechanisms
    • H01H9/24Interlocking, locking, or latching mechanisms for interlocking two or more parts of the mechanism for operating contacts
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H9/00Details of switching devices, not covered by groups H01H1/00 - H01H7/00
    • H01H9/20Interlocking, locking, or latching mechanisms
    • H01H9/26Interlocking, locking, or latching mechanisms for interlocking two or more switches
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H2300/00Orthogonal indexing scheme relating to electric switches, relays, selectors or emergency protective devices covered by H01H
    • H01H2300/018Application transfer; between utility and emergency power supply

Definitions

  • the present invention relates to the field of low voltage electrical apparatus, more particularly, to an interlocking apparatus of a transfer switch equipment (TSE).
  • TSE transfer switch equipment
  • Transfer switch equipments are used to transfer between two power supplies.
  • the transfer switch transfers a load circuit from the malfunctioned power supply to the other power supply, for example, from a primary side power supply to a backup side power supply, so that the power supply for important load circuits are ensured.
  • the transfer switch may also be used to transfer between two load circuits. During a transfer procedure of the transfer switch, two groups of contacts within the transfer switch shall not close simultaneously.
  • shifting forks are used to implement interlock between two power supplies.
  • a shifting fork also called a retainer
  • Such a structure is adapted to small capacity transfer switches.
  • the shifting forks will bear a large force when it holds the closing main shaft or is driven by the closing main shaft. Therefore, the interlocking apparatus using shifting forks have the following disadvantages: low reliability, short service life and large volume.
  • the Chinese patent application with the application number 201110161233.6 and entitled "Interlocking Device of Transfer Switch” discloses an interlocking device of a transfer switch.
  • the interlocking device comprises an upper part and a lower part with symmetrical structures, wherein the upper part and the lower part of the interlocking device are mounted symmetrically at an interval of an operation mechanism of the transfer switch.
  • Each of the upper part and the lower part comprises an interlocking rod, a locking lever mounted on a side plate of a mechanism, an unlocking lever, a reset spring fixed between a lock catch and the unlocking lever, a stop pin positioned on the side plate, and a reset spring with one end fixed on the interlocking rod.
  • a closing half shaft of either the upper part or the lower part of the operation mechanism rotates to push the interlocking rod to make a vertically translational motion during the rotation, and the other end of the interlocking rod leans against and locks the closing half shaft of the other part of the operation mechanism so as to fix the closing half shaft.
  • the closing half shafts of the upper and the lower parts of the operation mechanism move at the same time, the closing half shafts are leaned against by the interlocking rod of the other part respectively, thereby realizing interlock between a primary side power supply and a backup side power supply.
  • the solution disclosed in this application is directed to large capacity transfer switches, the interlock function is realized by the locking lever, the unlocking lever and the reset springs. This solution has high difficulties in installation and commissioning, high accuracy is required.
  • the Chinese patent application with the application number 201110308801.0 and entitled "Interlocking Device of Transfer Switch” discloses an interlocking device of a transfer switch.
  • the interlocking device comprises an upper part and a lower part with symmetrical structures, the interlocking device is mounted at an interval of an operation mechanism of the transfer switch, each of the upper part and the lower part comprises an interlocking rod, a stop pin located at an end of the interlocking rod, a reset spring with one end fixed on the interlocking rod, and an idler wheel located between the stop pin and the reset spring.
  • An end of the interlocking rod extends out to form an arched upper protruding part.
  • a main shaft of the upper part or the lower part of the operation mechanism drives a cantilever to rotate and push the interlocking rod to rotate around a rotation point.
  • the protruding part on the interlocking rod presses a tripping rod on the other part of the operation mechanism so as to prevent the tripping rod from moving. Therefore, transfer between a primary side power supply and a backup side power supply is realized.
  • the solution disclosed in this application is also directed to large capacity transfer switches.
  • a closing main shaft directly drives a breaking shaft so as to realize the interlock function. The components shall bear a large force in this solution, the breaking shaft is easily to be damaged so the reliability of the device is low.
  • EP 2284851 discloses a transfer device for automatic transfer switch
  • EP1150316 discloses a mechanical interlock with overtravel compensation for coordinating operation of circuit breakers.
  • the present invention provides an interlocking apparatus of transfer switch with low difficulties in installation and commissioning, and the components of the interlocking apparatus are acted with a relatively small force.
  • an interlocking apparatus of transfer switch comprises a primary side operation mechanism and a backup side operation mechanism.
  • the interlocking apparatus comprises a primary side driving rod, a primary side driven rod, a primary side executing rod, a backup side driving rod, a backup side driven rod and a backup side executing rod.
  • the primary side driving rod is connected to a main shaft of the primary side operation mechanism and moves following a movement of the main shaft.
  • the primary side driven rod is connected to the primary side driving rod.
  • the primary side executing rod is connected to the primary side driven rod, the primary side executing rod is installed on a side plate of the backup side operation mechanism, the primary side executing rod rotates around a second fulcrum on the side plate of the backup side operation mechanism.
  • the backup side driving rod is connected to a main shaft of the backup side operation mechanism and moves following a movement of the main shaft.
  • the backup side driven rod is connected to the backup side driving rod.
  • the backup side executing rod is connected to the backup side driven rod, the backup side executing rod is installed on a side plate of the primary side operation mechanism, the backup side executing rod rotates around a first fulcrum on the side plate of the primary side operation mechanism. Further it holds that the primary side driving rod is curved and the primary side executing rod is forked. In addition the backup side driving rod is curved and the backup side executing rod is forked.
  • the primary side driving rod moves following the movement of the main shaft of primary side operation mechanism and drives the primary side driven rod to move
  • the primary side driven rod drives the primary side executing rod to rotate around the second fulcrum on the side plate of the backup side operation mechanism and press a backup side breaking half shaft of the backup side operation mechanism so as to prevent the backup side operation mechanism from closing.
  • the primary side driving rod moves following the movement of the main shaft of the primary side operation mechanism and resets
  • the primary side driving rod drives the primary side executing rod to reset via the primary side driven rod, the backup side breaking half shaft of the backup side operation mechanism is released and the backup side operation mechanism is able to close.
  • the primary side driven rod is bent; the primary side driving rod, the primary side driven rod and the primary side executing rod are connected in sequence to constitute a multi linkage mechanism.
  • the primary side driving rod, the primary side driven rod and the primary side executing rod are disposed in sequence from upper to lower.
  • the backup side driving rod moves following the movement of main shaft of the backup side operation mechanism and drives the backup side driven rod to move
  • the backup side driven rod drives the backup side executing rod to rotate around the first fulcrum on the side plate of the primary side operation mechanism and press a primary side breaking half shaft of the primary side operation mechanism so as to prevent the primary side operation mechanism from closing.
  • the backup side driving rod moves following the movement of the main shaft of the backup side operation mechanism and resets
  • the backup side driving rod drives the backup side executing rod to reset via the backup side driven rod, the primary side breaking half shaft of the primary side operation mechanism is released and the primary side operation mechanism is able to close.
  • the backup side driven rod is bent; the backup side driving rod, the backup side driven rod and the backup side executing rod are connected in sequence to constitute a multi linkage mechanism.
  • the backup side driving rod, the backup side driven rod and the backup side executing rod are disposed in sequence from lower to upper.
  • the interlocking apparatus is installed at an interval of the primary side operation mechanism and the backup side operation mechanism.
  • the interlocking apparatus of transfer switch according to the present invention has advantages of simple structure, high reliability and small volume.
  • the interlocking apparatus prevents the primary side power supply and the backup side power supply from simultaneous closing via interlocking rods driven by the rotation of the main shaft of the operation mechanism.
  • the interlocking apparatus of the present invention is easy to implement, the interlocking apparatus is able to provide a reliable mechanical interlock between two mechanisms without increasing the volume of the product.
  • the interlocking apparatus provided in prior art have some disadvantages, for example, the solution disclosed in CN201110161233.6 has high difficulties in installation and commissioning and requires high accuracy during assembling.
  • the solution disclosed in CN201110308801.0 acts a large force to the components and breaking shaft is easily to be damaged.
  • the present invention provides an interlocking apparatus adapted for large capacity transfer switches.
  • the interlocking apparatus has low difficulties in installation and commissioning, and the components of the interlocking apparatus bear a relatively small force.
  • the interlocking apparatus of a transfer switch according to the present invention is adapted to large capacity transfer switches.
  • the present invention is designed as follows: an interlocking apparatus of a transfer switch adapted for two operation mechanisms that are disposed in an upper and lower arrangement.
  • the interlocking apparatus has two linkage mechanisms disposed in a symmetrical upper and lower arrangement, each linkage mechanism has a driving rod, a driven rod and an executing rod.
  • the interlocking apparatus is installed between two operation mechanisms of the transfer switch.
  • the driving rod of the upper linkage mechanism moves following a movement of a main shaft of the upper operation mechanism.
  • the driving rod drives the driven rod to move and the driven rod drives the executing rod to move.
  • the executing rod presses a breaking half shaft of the lower operation mechanism so that the lower operation mechanism is not able to close.
  • the driving rod of the upper operation mechanism drives the driven rod to move and the driven rod drives the executing rod to move.
  • the executing rod releases the breaking half shaft of the lower operation mechanism and the lower operation mechanism is able to close.
  • the driving rod of the lower linkage mechanism moves following a movement of a main shaft of the lower operation mechanism.
  • the driving rod drives the driven rod to move and the driven rod drives the executing rod to move.
  • the executing rod presses a breaking half shaft of the upper operation mechanism so that the upper operation mechanism is not able to close.
  • the driving rod of the lower operation mechanism drives the driven rod to move and the driven rod drives the executing rod to move.
  • the executing rod releases the breaking half shaft of the upper operation mechanism and the upper operation mechanism is able to close.
  • the upper operation mechanism and the lower operation mechanism may be one of a primary side operation mechanism and a backup side operation mechanism respectively.
  • the upper operation mechanism is the primary side operation mechanism and the lower operation mechanism is the backup side operation mechanism.
  • the interlocking apparatus may implement a mechanical interlock between a primary side power supply and a backup side power supply.
  • the present invention discloses an interlocking apparatus of a transfer switch.
  • the transfer switch comprises a primary side operation mechanism 111 and a backup side operation mechanism 112.
  • the interlocking apparatus 100 comprises: a primary side driving rod 102, a primary side driven rod 104, a primary side executing rod 106, a backup side driving rod 107, a backup side driven rod 105 and a backup side executing rod 103.
  • the primary side driving rod 102 is connected to a main shaft of the primary side operation mechanism 111 and moves following a movement of the main shaft.
  • the primary side driven rod 104 is connected to the primary side driving rod 102.
  • the primary side executing rod 106 is connected to the primary side driven rod 104.
  • the primary side executing rod 106 is installed on a side plate of the backup side operation mechanism 112.
  • the primary side executing rod 106 rotates around a second fulcrum 109 on the side plate of the backup side operation mechanism 112.
  • the backup side driving rod 107 is connected to a main shaft of the backup side operation mechanism 112 and moves following a movement of the main shaft.
  • the backup side driven rod 105 is connected to the backup side driving rod 107.
  • the backup side executing rod 103 is connected to the backup side driven rod 105.
  • the backup side executing rod 103 is installed on a side plate of the primary side operation mechanism 111.
  • the backup side executing rod 103 rotates around a first fulcrum 110 on the side plate of the primary side operation mechanism 111.
  • the primary side driving rod 102 moves following the movement of the main shaft of the primary side operation mechanism 111 and drives the primary side driven rod 104 to move.
  • the primary side driven rod 104 drives the primary side executing rod 106 to rotate around the second fulcrum 109 on the side plate of the backup side operation mechanism 112 and press a backup side breaking half shaft 108 of the backup side operation mechanism 112 so as to prevent the backup side operation mechanism 112 from closing.
  • the primary side driving rod 102 moves following the movement of main shaft of the primary side operation mechanism 111 and resets.
  • the primary side driving rod 102 drives the primary side executing rod 106 to reset via the primary side driven rod 104.
  • the backup side breaking half shaft 108 of the backup side operation mechanism 112 is released and the backup side operation mechanism 112 is able to close.
  • the primary side driving rod 102 is curved, the primary side driven rod 104 is bent, the primary side executing rod 106 is forked.
  • the primary side driving rod 102, the primary side driven rod 104 and the primary side executing rod 106 are connected in sequence to constitute a multi linkage mechanism.
  • the primary side operation mechanism 111 is disposed as an upper operation mechanism, thus the primary side driving rod 102, the primary side driven rod 104 and the primary side executing rod 106 are disposed in sequence from upper to lower.
  • the backup side driving rod 107 moves following the movement of a main shaft of the backup side operation mechanism 112 and drives the backup side driven rod 105 to move.
  • the backup side driven rod 105 drives the backup side executing rod 103 to rotate around the first fulcrum 110 on the side plate of the primary side operation mechanism 111 and press a primary side breaking half shaft 101 of the primary side operation mechanism 111 so as to prevent the primary side operation mechanism 111 from closing.
  • the backup side driving rod 107 moves following the movement of the main shaft of the backup side operation mechanism 112 and resets.
  • the backup side driving rod 107 drives the backup side executing rod 103 to reset via the backup side driven rod 105.
  • the primary side breaking half shaft 101 of the primary side operation mechanism 111 is released and the primary side operation mechanism 111 is able to close.
  • the backup side driving rod 107 is curved, the backup side driven rod 105 is bent, the backup side executing rod 103 is forked.
  • the backup side driving rod 107, the backup side driven rod 105 and the backup side executing rod 103 are connected in sequence to constitute a multi linkage mechanism.
  • the backup side operation mechanism 112 is disposed as a lower operation mechanism, thus backup side driving rod 107, the backup side driven rod 105 and the backup side executing rod 103 are disposed in sequence from lower to upper.
  • the interlocking apparatus 100 is installed at an interval of the primary side operation mechanism 11 and the backup side operation mechanism 12.
  • Fig. 1 to Fig. 4 disclose an interlocking apparatus of a transfer switch according to an embodiment of the present invention.
  • Fig. 1a and Fig. 1b disclose the structure where an interlocking apparatus of a transfer switch according to one embodiment of the present invention is installed between two operation mechanisms.
  • Fig. 2 to Fig. 4 disclose the conditions where the transfer switch is located at different positions and the interlocking apparatus is under different working status.
  • Fig. 2 discloses the structure of the interlocking apparatus under an initial status, where the transfer switch is located at a middle position under the initial status.
  • Fig. 3 discloses the structure of an interlocking apparatus under a status where the primary side operation mechanism is closed.
  • Fig. 4 discloses the structure of an interlocking apparatus under a status where the backup side operation mechanism is closed.
  • the interlocking apparatus 100 of a transfer switch comprise an upper part and a lower part with symmetrical structures.
  • the interlocking apparatus 100 is installed at an interval between the two operation mechanisms of the transfer switch, for example, at an interval between the primary side operation mechanism 111 and the backup side operation mechanism 112.
  • the interlocking apparatus 110 is installed symmetrically and crosswise at the interval between the operation mechanisms of the transfer switch.
  • the primary side operation mechanism 111 acts as an upper operation mechanism and the backup side operation mechanism acts as a lower operation mechanism.
  • the primary side driving rod 102 is welded on a main shaft of the primary side operation mechanism 111, the primary side driving rod 102 is curved.
  • the primary side driven rod 104 is designed with a special shape, such as bent, the primary side driven rod 104 is connected to the primary side driving rod 102.
  • the primary side executing rod 106 is connected to the primary side driven rod 104.
  • the primary side driving rod, the primary side driven rod and the primary side executing rod are disposed and connected in sequence from upper to lower so as to constitute a multi linkage mechanism.
  • the primary side driving rod 102 moves following the movement of the main shaft of the primary side operation mechanism 111 and drives the primary side driven rod 104 to move.
  • the primary side driven rod 104 drives the primary side executing rod 106 to rotate around the second fulcrum 109 on the side plate of the lower operation mechanism, that is, the backup side operation mechanism 112.
  • the primary side executing rod 106 presses a backup side breaking half shaft 108 of the backup side operation mechanism 112, so that the backup side operation mechanism 112 is not able to close, as shown in Fig. 3 .
  • the primary side driving rod 102 moves following the movement of main shaft of the primary side operation mechanism 111 and resets.
  • the primary side executing rod 106 resets through a linkage of the multi linkage mechanism.
  • the backup side breaking half shaft 108 of the backup side operation mechanism 112 is released and the backup side operation mechanism 112 is able to close.
  • the backup side driving rod 107 is welded on a main shaft of the backup side operation mechanism 112, the backup side driving rod 107 is curved.
  • the backup side driven rod 105 is designed with a special shape, such as bent, the backup side driven rod 105 is connected to the backup side driving rod 107.
  • the backup side executing rod 103 is connected to the backup side driven rod 105.
  • the backup side driving rod, the backup side driven rod and the backup side executing rod are disposed and connected in sequence from lower to upper so as to constitute a multi linkage mechanism.
  • the backup side driving rod 107 moves following the movement of a main shaft of the backup side operation mechanism 112.
  • the backup side driving rod 107 drives the backup side driven rod 105 to move.
  • the backup side driven rod 105 drives the backup side executing rod 103 to rotate around the first fulcrum 110 on the side plate of the upper operation mechanism, that is, the primary side operation mechanism 111.
  • the backup side executing rod 103 presses a primary side breaking half shaft 101 of the primary side operation mechanism 111, so that the primary side operation mechanism 111 is not able to close, as shown in Fig. 4 .
  • the backup side operation mechanism 112 When the lower operation mechanism, that is, the backup side operation mechanism 112 is open, the backup side executing rod 103 resets through a linkage of the multi linkage mechanism.
  • the primary side breaking half shaft 101 of the primary side operation mechanism 111 is released and the primary side operation mechanism 111 is able to close.
  • the transfer switch When the primary side operation mechanism and the backup side primary side operation mechanism are both open, the transfer switch is located at a middle position and the interlocking apparatus is located at an initial position, as shown in Fig. 2 .
  • the power supply of either side closes, the power supply of the other side is not able to close because its breaking half shaft is pressed.
  • the interlocking apparatus of a transfer switch according to the present invention has advantages of simple structure, high reliability and small volume.
  • the interlocking apparatus prevents the primary side power supply and the backup side power supply from simultaneous closing via interlocking rods driven by the rotation of the main shaft of the operation mechanism.
  • the interlocking apparatus of the present invention is easy to implement, the interlocking apparatus is able to provide a reliable mechanical interlock between two mechanisms without increasing the volume of the product.

Claims (10)

  1. Ineinandergreifende Vorrichtung eines Übertragungsschalters, wobei der Übertragungsschalter einen primärseitigen Bedienungsmechanismus (111) und einen hilfsseitigen Bedienungsmechanismus (112) umfasst, die ineinandergreifende Vorrichtung umfassend:
    eine primärseitige antreibende Stange (102), verbunden mit einer Hauptwelle des primärseitigen Bedienungsmechanismus (111), wobei die primärseitige antreibende Stange (102) sich folgend einer Bewegung der Hauptwelle bewegt;
    eine primärseitige angetriebene Stange (104), verbunden mit der primärseitigen antreibenden Stange (102);
    eine primärseitige ausführende Stange (106), verbunden mit der primärseitigen angetriebenen Stange (104), wobei die primärseitige ausführende Stange (106) auf einer Seitenplatte des hilfsseitigen Bedienungsmechanismus (112) installiert ist, welche primärseitige ausführende Stange (106) sich um einen zweiten Drehpunkt (109) auf der Seitenplatte des hilfsseitigen Bedienungsmechanismus (112) dreht;
    eine hilfsseitige antreibende Stange (107), verbunden mit einer Hauptwelle des hilfsseitigen Bedienungsmechanismus (112), wobei die hilfsseitige antreibende Stange (107) sich folgend einer Bewegung der Hauptwelle bewegt;
    eine hilfsseitige angetriebene Stange (105), verbunden mit der hilfsseitigen antreibenden Stange (107);
    eine hilfsseitige ausführende Stange (103), verbunden mit der hilfsseitigen angetriebenen Stange (105), wobei die hilfsseitige ausführende Stange (103) auf einer Seitenplatte des primärseitigen
    Bedienungsmechanismus (111) installiert ist, welche hilfsseitige ausführende Stange (103) sich um einen ersten Drehpunkt (110) auf der Seitenplatte des primärseitigen Bedienungsmechanismus (111) dreht;
    dadurch gekennzeichnet, dass die primärseitige angetriebene Stange (102) gebogen ist und die primärseitige ausführende Stange (106) gespalten ist; wobei die hilfsseitige angetriebene Stange (107) gebogen ist und die hilfsseitige ausführende Stange (103) gespalten ist.
  2. Ineinandergreifende Vorrichtung eines Übertragungsschalters nach Anspruch 1, wobei, wenn der primärseitige Bedienungsmechanismus (111) geschlossen ist, sich die primärseitige angetriebene Stange (102) folgend der Bewegung der Hauptwelle des primärseitigen Bedienungsmechanismus (111) bewegt und die primärseitige angetriebene Stange (104) antreibt, sich zu bewegen, die primärseitige angetriebene Stange (104) die primärseitige ausführende Stange (106) antreibt, sich um den zweiten Drehpunkt (109) auf der Seitenplatte des hilfsseitigen Bedienungsmechanismus (112) zu drehen und eine hilfsseitige bremsende Halbwelle (108) des hilfsseitigen Bedienungsmechanismus (112) drückt, um zu verhindern, dass sich der hilfsseitige Bedienungsmechanismus (112) schließt.
  3. Ineinandergreifende Vorrichtung eines Übertragungsschalters nach Anspruch 1, wobei, wenn der primärseitige Bedienungsmechanismus (111) geöffnet ist, die primärseitige antreibende Stange (102) sich folgend der Bewegung der Hauptwelle des primärseitigen Bedienungsmechanismus (111) bewegt und zurücksetzt, die primärseitige antreibende Stange (102) die primärseitige ausführende Stange (106) antreibt zum Zurücksetzen über die primärseitige angetriebene Stange (104), eine hilfsseitige ausführende Stange (108) des hilfsseitigen Bedienungsmechanismus (112) freigegeben wird und der hilfsseitige Bedienungsmechanismus (112) in der Lage ist zu schließen.
  4. Ineinandergreifende Vorrichtung eines Übertragungsschalters nach Anspruch 3, wobei die primärseitige angetriebene Stange (104) gebogen ist; die primärseitige antreibende Stange (102), die primärseitige angetriebene Stange (104) und die primärseitige ausführende Stange (106) in Reihe verbunden sind, um einen vielgliedrigen Mechanismus zu bilden.
  5. Ineinandergreifende Vorrichtung eines Übertragungsschalters nach Anspruch 2, wobei die primärseitige antreibende Stange (102), die primärseitige angetriebene Stange (104) und die primärseitige ausführende Stange (106) in Reihe von oberer nach unterer angeordnet sind.
  6. Ineinandergreifende Vorrichtung eines Übertragungsschalters nach Anspruch 1, wobei, wenn der hilfsseitige Bedienungsmechanismus (112) geschlossen ist, die hilfsseitige antreibende Stange (107) sich folgend der Bewegung der Hauptwelle des hilfsseitigen Bedienungsmechanismus (112) bewegt und die hilfsseitige angetriebene Stange (105) antreibt, sich zu bewegen, die hilfsseitige angetriebene Stange (105) die hilfsseitige ausführende Stange (103) antreibt, sich um ihren ersten Drehpunkt (110) auf der Seitenplatte des primärseitigen Bedienungsmechanismus (111) zu drehen und eine primärseitige bremsende Halbwelle (101) des primärseitigen Bedienungsmechanismus (111) drückt, um zu verhindern, dass sich der primärseitige Bedienungsmechanismus (111) schließt.
  7. Ineinandergreifende Vorrichtung eines Übertragungsschalters nach Anspruch 1, wobei, wenn der hilfsseitige Bedienungsmechanismus (112) geöffnet ist, die hilfsseitige antreibende Stange (107) sich folgend der Bewegung der Hauptwelle auf dem hilfsseitigen Bedienungsmechanismus (112) bewegt und zurücksetzt, die hilfsseitige antreibende Stange (107) die hilfsseitige ausführende Stange (103) antreibt zum Zurücksetzen über die hilfsseitige angetriebene Stange (105), die primärseitige bremsende Halbwelle (101) des primärseitigen Bedienungsmechanismus freigegeben wird und der primärseitige Bedienungsmechanismus (111) in der Lage ist, zu schließen.
  8. Ineinandergreifende Vorrichtung eines Übertragungsschalters nach Anspruch 7, wobei die hilfsseitige angetriebene Stange (105) gebogen ist; die hilfsseitige antreibende Stange (107), die hilfsseitige angetriebene Stange (105) und die hilfsseitige ausführende Stange (103) in Reihe verbunden sind, um einen mehrgliedrigen Mechanismus zu bilden.
  9. Ineinandergreifende Vorrichtung eines Übertragungsschalters nach Anspruch 4, wobei die hilfsseitige antreibende Stange (107), die hilfsseitige angetriebene Stange (105) und die hilfsseitige ausführende Stange (103) in Reihe von unterer nach oberer angeordnet sind.
  10. Ineinandergreifende Vorrichtung eines Übertragungsschalters nach Anspruch 1, wobei die ineinandergreifende Vorrichtung in einem Intervall des primärseitigen Bedienungsmechanismus (111) und des hilfsseitigen Bedienungsmechanismus (112) installiert ist.
EP13831992.6A 2012-08-30 2013-08-28 Ineinandergreifende vorrichtung eines übertragungsschalters Active EP2892069B1 (de)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PL13831992T PL2892069T3 (pl) 2012-08-30 2013-08-28 Blokujące urządzenie przełącznika zasilania

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201210315745.8A CN103681031B (zh) 2012-08-30 2012-08-30 转换开关的联锁装置
PCT/CN2013/082439 WO2014032584A1 (zh) 2012-08-30 2013-08-28 转换开关的联锁装置

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CN104282463B (zh) * 2014-10-29 2016-06-08 无锡韩光电器股份有限公司 自动转换开关电器的锁扣脱扣装置
CN106558433B (zh) * 2015-09-28 2019-08-23 施耐德电气工业公司 双电源转换开关及其机械联锁机构
CN105336524B (zh) * 2015-09-28 2017-12-26 上海广电电气(集团)股份有限公司 双电源供电断路器柜供电的机械连锁机构
CN107887200B (zh) * 2016-09-30 2020-01-03 施耐德电气工业公司 机械联锁装置、双电源转换开关以及用于操作其的方法
CN107316764A (zh) * 2017-06-26 2017-11-03 安徽开诚电器有限公司 转换开关的联锁装置及转换开关
CN107275132B (zh) * 2017-08-17 2019-06-21 江苏洛凯机电股份有限公司 中压双电源操作机构
CN107968004B (zh) * 2017-12-23 2020-02-07 无锡凯绎科技有限公司 通用型机械联锁装置
CN108807041A (zh) * 2018-06-26 2018-11-13 上海良信电器股份有限公司 一种双电源自动转换开关的机械联锁装置

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KR100840384B1 (ko) * 2005-08-10 2008-06-23 오성기전주식회사 자동절환스위치
KR100787905B1 (ko) * 2006-03-21 2007-12-27 오성기전주식회사 자동절환스위치
KR101082216B1 (ko) * 2009-08-14 2011-11-09 엘에스산전 주식회사 자동제어 절환기기의 절환 장치
CN102543518B (zh) * 2012-02-29 2015-04-08 环宇集团有限公司 用于双电源转换开关的联锁装置

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ES2657229T3 (es) 2018-03-02
BR112015004287A2 (pt) 2017-07-04
NO2892069T3 (de) 2018-06-02
PL2892069T3 (pl) 2018-06-29
EP2892069A1 (de) 2015-07-08
WO2014032584A1 (zh) 2014-03-06
CN103681031B (zh) 2015-12-09
BR112015004287B1 (pt) 2021-05-18
EP2892069A4 (de) 2016-06-22
CN103681031A (zh) 2014-03-26

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