EP2398034B1 - Auxiliary trip device for a breaker block - Google Patents

Auxiliary trip device for a breaker block Download PDF

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Publication number
EP2398034B1
EP2398034B1 EP20110354005 EP11354005A EP2398034B1 EP 2398034 B1 EP2398034 B1 EP 2398034B1 EP 20110354005 EP20110354005 EP 20110354005 EP 11354005 A EP11354005 A EP 11354005A EP 2398034 B1 EP2398034 B1 EP 2398034B1
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EP
European Patent Office
Prior art keywords
spring
arm
support plate
tripping
called
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EP20110354005
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German (de)
French (fr)
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EP2398034A1 (en
Inventor
Yves Schneider Electric Industries SAS Belin
Michael Schneider Electric Industries SAS Seguin
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Schneider Electric Industries SAS
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Schneider Electric Industries SAS
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    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H83/00Protective switches, e.g. circuit-breaking switches, or protective relays operated by abnormal electrical conditions otherwise than solely by excess current
    • H01H83/12Protective switches, e.g. circuit-breaking switches, or protective relays operated by abnormal electrical conditions otherwise than solely by excess current operated by voltage falling below a predetermined value, e.g. for no-volt protection
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H71/00Details of the protective switches or relays covered by groups H01H73/00 - H01H83/00
    • H01H71/10Operating or release mechanisms
    • H01H71/50Manual reset mechanisms which may be also used for manual release
    • H01H71/505Latching devices between operating and release mechanism
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H71/00Details of the protective switches or relays covered by groups H01H73/00 - H01H83/00
    • H01H71/02Housings; Casings; Bases; Mountings
    • H01H71/0264Mountings or coverplates for complete assembled circuit breakers, e.g. snap mounting in panel
    • H01H71/0271Mounting several complete assembled circuit breakers together
    • H01H2071/0278Mounting several complete assembled circuit breakers together with at least one of juxtaposed casings dedicated to an auxiliary device, e.g. for undervoltage or shunt trip

Definitions

  • the present invention relates to an auxiliary trip device housed in a modular insulating housing that can be attached to a circuit breaker block.
  • a tripping device comprising a control mechanism having a tripping link for acting on the tripping latch of the circuit breaker block, said mechanism comprising a transmission rod coupled to a handle, a plate rotatably mounted in the housing and having a mechanical link breakable with the transmission rod, and a trigger lever controlled by an electromagnet to cause in the event of a fault, the breakage of the mechanical link causing the automatic triggering of the mechanism independently of the handle and the actuation of the lock triggering the associated circuit breaker block, said mechanism being recalled in a position armed by the lever against a return spring said first able to drive the plate in the unlocked position of the breaker block in case of tripping, an electro magnet with an excitation coil and a magnet circuit mobile frame tick, which can occupy either a first position spaced from the magnetic circuit under the
  • Auxiliary devices with no voltage are intended in a manner known per se to cause the opening of the circuit breaker when the grid voltage is too low compared to its nominal value, or if the voltage at its terminals is cut off by a stop emergency.
  • An electromagnet is kept under tension. When the voltage drops below a predefined threshold, the electromagnet is deactivated and it activates the trigger bar of a mechanism previously armed by the joystick. The electromagnet is reactivated mechanically when the auxiliary mechanism is triggered before its coil is energized again. Bringing the gap of the magnetic circuit of the coil to zero allows to limit the current required for the gluing of the pallet and thus to limit the temperature rise.
  • the reactivation of the electromagnet usually performed by the main spring acting on the pallet by means of an arm provided for this purpose on the plate, consumes a portion of the energy supplied by the mechanism to achieve the opening of the contacts the associated breaker block.
  • the adaptation of the power characteristic "race / force" of the auxiliary to that resistant circuit breaker is altered because the plate presses on the pallet to close it, which pallet opposes the force of its opening spring.
  • the present invention solves this problem and provides an auxiliary trigger device, simple design, to compensate for the alteration of this characteristic "force / stroke" of the mechanism without degrading the performance of the auxiliary.
  • the present invention relates to a device of the kind mentioned above, this device being characterized in that it comprises means for returning the armature in the second position after a trigger, these means comprising an arm supported by the platinum and a said third spring stretched by the arm of the plate in the armed position of the mechanism, said third said spring being adapted to exert a force on the arm of the plate during its expansion, after unlocking the plate, so as to recall the mobile armature formed by a pallet to the aforementioned second position close to the magnetic circuit.
  • the so-called third spring and the arm of the plate are shaped and arranged in such a way that, at the beginning of triggering, the direction of the initial force applied to the arm of the plate is such that the torque transmitted to the arm of the plate is weak, that during a movement of the arm following the expansion of the spring, the direction of the force of the spring on the arm changes so that the torque transmitted to the arm is amplified in an intermediate phase when the so-called first spring is no longer sufficient to simultaneously supply the minimum driving energy required for unlocking the trip latch of the circuit breaker block and the resetting of the magnetic circuit, and that at the end of tripping the torque transmitted to the arm is low.
  • the so-called third spring is a torsion spring.
  • said third spring has an end bearing on the housing and an end resting on the arm of the plate in an armed position of the mechanism, the two ends of the spring resting on the housing in the tripped position of the mechanism, the change of the fulcrum of the second end of the spring, a position resting on the arm to a position bearing on the housing having been driven by the displacement of the plate during a trigger or else a rest of the joystick.
  • it is a tripping device with no voltage.
  • an auxiliary triggering device D according to a particular embodiment of the invention, in particular an undervoltage release, housed in a modular insulating housing 1 which can be attached to a circuit breaker block (not shown), said triggering device mainly comprising a control mechanism 2 and an electromagnet 3.
  • This control mechanism 2 has a tripping link intended to act on the tripping latch of the associated breaker block.
  • This electromagnet 3 is provided with an excitation coil 4 and a magnetic circuit 5 with a movable armature 6, which can occupy either a first position spaced apart from the magnetic circuit, a position in which said armature is biased under the action a second said return spring 12, a second position close to said circuit by electromagnetic attraction against said spring, during the excitation of the coil.
  • the electromagnet 3 comprises in known manner a magnetic circuit consisting of a magnetic "U" 5 made of ferromagnetic steel, cooperating with a movable armature formed by a pivoting pallet 6 and a coil 4 carried by an insulating carcass.
  • the control mechanism 2 comprises a trigger lever 7 pivotally mounted on a turntable 8.
  • This plate 8 further comprises a hooking lever 9 cooperating on the one hand with the release lever 7 and on the other hand, with a transmission rod 10 coupled to a reset lever 11.
  • the rod 10 acts on the plate 8 by means of the attachment lever 9, which is locked by the release lever 7.
  • a trigger a torque is transmitted to the plate 8 by a so-called first spring 13 reset by the lever 11 after each trip.
  • the spring 13 transmits the energy initially stored during the reset, to the plate 8, which causes the unlocking of the latch of the circuit breaker block, and thereby the opening of the contacts of the associated circuit breaker block.
  • the return to the open position of the lever 11, the rod 10 and the hooking lever 9 is out of sync with the return of the plate 8 and the lever 7.
  • this plate 8 also comprises an arm 8a intended to cooperate with a torsion spring 15, said spring being mounted in compression by its two opposite ends 15a, 15b respectively on two parts of the device housing, in the disarmed state of the mechanism, and having an end 15b brought into abutment on the arm 8a of the plate 8 after triggering by displacement of the plate, so as to exert a force on the plate 8, after a trigger, sufficient to bring the pallet 6 in the aforementioned first position.
  • a torsion spring 15 said spring being mounted in compression by its two opposite ends 15a, 15b respectively on two parts of the device housing, in the disarmed state of the mechanism, and having an end 15b brought into abutment on the arm 8a of the plate 8 after triggering by displacement of the plate, so as to exert a force on the plate 8, after a trigger, sufficient to bring the pallet 6 in the aforementioned first position.
  • the Figures 1 and 2 show the trigger device in the standby state, in which the coil 4 of the electromagnet 3 is undervoltage, the mechanism 2 armed and the circuit breaker block in the closed position.
  • the pallet 6 is permanently attracted in the position in which it is against the magnetic "U” 5 and the actuating lever 16 associated with the pallet 6 does not act on the release lever 7, which positively locks the mechanism 2 in the armed state.
  • the additional spring 15 is supported by one 15a of its branches 15a, 15b, on a stud integral with the housing 1 and the other 15b of its branches, on the arm 8a of the plate 8, which maintains this spring 15 in the armed position thanks to the locking made by the release lever 7 between the handle 11, the rod 10 and the attachment lever 9.
  • this additional spring 15 is stretched by the arm 8a in the spring position of the spring 13.
  • the direction of the initial force F applied to the arm 8a of the plate is such that the torque transmitted to the arm by the additional spring 15 is low, as shown by the small ratio of distances d1 / d2 separating the direction D1 of the force mentioned above, the direction D2 of the straight line passing through the articulation axis X of the plate and parallel to the previous line D1, and the straight line D3 parallel to the two preceding ones passing through the axis of rotation of the spring 15.
  • the presence of a voltage fault across the coil 4 has caused the opening of the magnetic circuit 5 and thus the movement of the pallet 6 in the clockwise direction.
  • the actuating lever 16 associated with the pallet 6 is rotated in the same direction and, by its end portion 16a situated on the side opposite the pallet, actuates the release lever 7.
  • the displacement of the latter causes the locking lever 9 to be unlocked, as shown in FIG. figure 3a from which it follows that the plate 8 and the lever 7 rotate under the effect of the aforementioned main spring 13, this displacement resulting in the unlocking and therefore the opening of the contacts of the associated circuit breaker block.
  • the torque transmitted to the mechanism by the additional spring 15 is the same as in the position of the previous figure, so as not to modify the external trigger characteristics, as represented by the distance d1 equal on the Figures 2 and 4 .
  • the triggering process is at its critical point, the main spring 13 having transferred a large part of its energy, the arm 8a is in interference with the actuating lever 16 itself subjected to the contradictory effect of the spring 12. It is at this moment that the effect of the additional spring 15 produces its greatest torque on the plate 8, this being reflected on the figure 6 by a ratio d1 '/ d2' greater between the direction D1 of the force F, the direction D2 passing through the axis of rotation X of the plate and parallel to D1 and the direction D3 passing through the axis of the spring 15. In this position, the additional torque delivered by the spring 15 compensates for the energy loss involved by the compression of the spring 12.
  • the ratio of the lengths d1 '/ d2' between its own axis, its point of application on the plate 8 and the axis of rotation of the plate 8, tends to maximize its effect at the most critical moment of the triggering process.
  • the torque transmitted by the additional spring 15 begins to decrease until it is reduced at the end of travel of the pallet, position in which the reel 4, if it is crossed again by a normal current, can attract the pallet 6 so as to keep closed the magnetic circuit.
  • the device is in an open position, the contacts of the circuit breaker block being open.
  • the additional spring 15 is prestressing, and its two ends 15a, 15b bear respectively on two parts of the housing. Indeed, during the opening movement of the plate, the arm has moved downwards, which has caused a displacement of the fulcrum of the second end 15b of the additional spring 15, a position in which he was resting on the arm, towards a position in which he is resting on the case. ( fig.9 ).
  • a torsion spring applies a torque to the arm of the plate in addition to the main spring of the mechanism plate.
  • the geometry of the arm and the additional spring and their arrangement is such that the additional torque delivered to the plate of the mechanism is low at the beginning of the opening stroke, so as not to change, thus disrupt or reduce, the external triggering characteristics. , strong at the moment of weakness identified from the mainspring, and weak at the end.
  • the torque transmitted to the plate by the torsion spring is maximum when the energy supplied by the mainspring is no longer sufficient to simultaneously supply the motive power minimum required for unlocking the circuit breaker and resetting the magnetic circuit.
  • the additional energy is maximum when the resistance of the pallet is maximum.
  • the force / displacement characteristic provided by the mechanism at the circuit breaker is only slightly modified.
  • an auxiliary triggering device has been implemented which makes it possible to mechanically close the magnetic circuit of the electromagnet in order to limit the amount of current required for the magnetic bonding of the pallet, the force / displacement characteristic provided by the mechanism. being only slightly modified. This compensates for the loss of motive power without altering the adaptability of the mechanism of the auxiliary to that of the circuit breaker.
  • the effort required to trigger the mechanism is directly related to the driving torque of the main spring. All common parts remain compatible with other auxiliaries. Only the additional spring is added or not, depending on the characteristics of the auxiliary device to be mounted. By removing the spring, the same mechanism can be used for example as a remote trigger. Note that although the embodiment described relates to an auxiliary tripping device with no voltage, the invention is also applicable to any auxiliary trigger device in which it is necessary to bring a pallet in position after a trigger.

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Description

La présente invention concerne un dispositif de déclenchement auxiliaire logé dans un boîtier isolant modulaire susceptible d'être accolé à un bloc disjoncteur. Le document EP-A-0 813 219 décrit un tel dispositif de déclenchement comprenant un mécanisme de commande ayant une liaison de déclenchement destinée à agir sur le verrou de déclenchement du bloc disjoncteur, ledit mécanisme comportant une biellette de transmission accouplée à une manette, une platine montée à rotation dans le boîtier et ayant une liaison mécanique brisable avec la biellette de transmission, et un levier de déclenchement commandé par un électro-aimant pour provoquer en cas de défaut, la rupture de la liaison mécanique entraînant le déclenchement automatique du mécanisme indépendamment de la manette et l'actionnement du verrou de déclenchement du bloc disjoncteur associé, ledit mécanisme étant rappelé dans une position armée par la manette à l'encontre d'un ressort de rappel dit premier apte à entraîner la platine dans la position de déverrouillage du bloc disjoncteur en cas de déclenchement, un électro-aimant doté d'une bobine d'excitation et d'un circuit magnétique à armature mobile, laquelle peut occuper soit une première position écartée du circuit magnétique sous l'action d'un ressort de rappel dit second, soit une deuxième position rapprochée du circuit magnétique par attraction électromagnétique lors de l'excitation de la bobine, ladite armature coopérant avec le levier de déclenchement précité.The present invention relates to an auxiliary trip device housed in a modular insulating housing that can be attached to a circuit breaker block. The document EP-A-0 813 219 discloses such a tripping device comprising a control mechanism having a tripping link for acting on the tripping latch of the circuit breaker block, said mechanism comprising a transmission rod coupled to a handle, a plate rotatably mounted in the housing and having a mechanical link breakable with the transmission rod, and a trigger lever controlled by an electromagnet to cause in the event of a fault, the breakage of the mechanical link causing the automatic triggering of the mechanism independently of the handle and the actuation of the lock triggering the associated circuit breaker block, said mechanism being recalled in a position armed by the lever against a return spring said first able to drive the plate in the unlocked position of the breaker block in case of tripping, an electro magnet with an excitation coil and a magnet circuit mobile frame tick, which can occupy either a first position spaced from the magnetic circuit under the action of a so-called second return spring, or a second close position of the magnetic circuit by electromagnetic attraction during the excitation of the coil, said armature cooperating with the aforementioned trigger lever.

Les dispositifs auxiliaires à manque de tension ont pour but de manière connue en soi d'entraîner l'ouverture du disjoncteur lorsque la tension du réseau est trop basse par rapport à sa valeur nominale, ou si la tension à ses bornes est coupée par un arrêt d'urgence. Un électro-aimant est maintenu sous tension. Lorsque la tension passe sous un seuil prédéfini, l'électroaimant est désactivé et il actionne la barre de déclenchement d'un mécanisme préalablement armé par la manette. L'électroaimant est réactivé mécaniquement lors du déclenchement du mécanisme de l'auxiliaire avant que sa bobine ne soit à nouveau mise sous tension. Le fait de ramener l'entrefer du circuit magnétique de la bobine à zéro permet de limiter le courant nécessaire pour le collage de la palette et donc de limiter les échauffements.
La réactivation de l'électroaimant habituellement réalisée par le ressort principal agissant sur la palette par l'intermédiaire d'un bras prévu à cet effet sur la platine, consomme une partie de l'énergie fournie par le mécanisme pour réaliser l'ouverture des contacts du bloc disjoncteur associé. L'adaptation de la caractéristique motrice «course/force» de l'auxiliaire à celle résistante du disjoncteur est altérée car la platine appuie sur la palette pour la refermer, laquelle palette oppose la force de son ressort d'ouverture.
Auxiliary devices with no voltage are intended in a manner known per se to cause the opening of the circuit breaker when the grid voltage is too low compared to its nominal value, or if the voltage at its terminals is cut off by a stop emergency. An electromagnet is kept under tension. When the voltage drops below a predefined threshold, the electromagnet is deactivated and it activates the trigger bar of a mechanism previously armed by the joystick. The electromagnet is reactivated mechanically when the auxiliary mechanism is triggered before its coil is energized again. Bringing the gap of the magnetic circuit of the coil to zero allows to limit the current required for the gluing of the pallet and thus to limit the temperature rise.
The reactivation of the electromagnet usually performed by the main spring acting on the pallet by means of an arm provided for this purpose on the plate, consumes a portion of the energy supplied by the mechanism to achieve the opening of the contacts the associated breaker block. The adaptation of the power characteristic "race / force" of the auxiliary to that resistant circuit breaker is altered because the plate presses on the pallet to close it, which pallet opposes the force of its opening spring.

La présente invention résout ce problème et propose un dispositif de déclenchement auxiliaire, de conception simple, permettant de compenser l'altération de cette caractéristique « force/course » du mécanisme sans dégrader les performances de l'auxiliaire.The present invention solves this problem and provides an auxiliary trigger device, simple design, to compensate for the alteration of this characteristic "force / stroke" of the mechanism without degrading the performance of the auxiliary.

A cet effet, la présente invention a pour objet un dispositif du genre précédemment mentionné, ce dispositif étant caractérisé en ce qu'il comporte des moyens pour rappeler l'armature dans la seconde position après un déclenchement, ces moyens comportant un bras supporté par la platine et un ressort dit troisième tendu par le bras de la platine en position armée du mécanisme, ledit ressort dit troisième étant apte à exercer un effort sur le bras de la platine lors de sa détente, après le déverrouillage de la platine, de manière à rappeler l'armature mobile formé par une palette vers la seconde position précitée rapprochée du circuit magnétique.For this purpose, the present invention relates to a device of the kind mentioned above, this device being characterized in that it comprises means for returning the armature in the second position after a trigger, these means comprising an arm supported by the platinum and a said third spring stretched by the arm of the plate in the armed position of the mechanism, said third said spring being adapted to exert a force on the arm of the plate during its expansion, after unlocking the plate, so as to recall the mobile armature formed by a pallet to the aforementioned second position close to the magnetic circuit.

Selon une autre caractéristique, le ressort dit troisième et le bras de la platine sont conformés et agencés de telle manière que, en début de déclenchement, la direction de la force initiale appliquée au bras de la platine est telle que le couple transmis au bras de la platine est faible, qu'au cours d'un déplacement du bras faisant suite à la détente du ressort, la direction de la force du ressort sur le bras change de façon à ce que le couple transmis au bras soit amplifié dans une phase intermédiaire lorsque le ressort dit premier ne suffit plus à fournir simultanément l'énergie motrice minimum requise pour le déverrouillage du verrou de déclenchement du bloc disjoncteur et le réarmement du circuit magnétique, et qu'en fin de déclenchement le couple transmis au bras soit faible.According to another characteristic, the so-called third spring and the arm of the plate are shaped and arranged in such a way that, at the beginning of triggering, the direction of the initial force applied to the arm of the plate is such that the torque transmitted to the arm of the plate is weak, that during a movement of the arm following the expansion of the spring, the direction of the force of the spring on the arm changes so that the torque transmitted to the arm is amplified in an intermediate phase when the so-called first spring is no longer sufficient to simultaneously supply the minimum driving energy required for unlocking the trip latch of the circuit breaker block and the resetting of the magnetic circuit, and that at the end of tripping the torque transmitted to the arm is low.

Selon une autre caractéristique, le ressort dit troisième est un ressort de torsion.According to another characteristic, the so-called third spring is a torsion spring.

Selon une autre caractéristique, le ressort dit troisième comporte une extrémité en appui sur le boîtier et une extrémité en appui sur le bras de la platine dans une position armée du mécanisme, les deux extrémités du ressort étant en appui sur le boîtier en position déclenchée du mécanisme, le changement du point d'appui de la seconde extrémité du ressort, d'une position en appui sur le bras à une position en appui sur le boîtier ayant été entraîné par le déplacement de la platine lors d'un déclenchement ou bien d'une mise au repos de la manette.According to another characteristic, said third spring has an end bearing on the housing and an end resting on the arm of the plate in an armed position of the mechanism, the two ends of the spring resting on the housing in the tripped position of the mechanism, the change of the fulcrum of the second end of the spring, a position resting on the arm to a position bearing on the housing having been driven by the displacement of the plate during a trigger or else a rest of the joystick.

Selon une autre caractéristique, c'est un dispositif de déclenchement à manque de tension.According to another characteristic, it is a tripping device with no voltage.

Mais d'autres avantages et caractéristiques de l'invention apparaîtront mieux dans la description détaillée qui suit et se réfère aux dessins annexés donnés uniquement à titre d'exemple et dans lesquels :

  • La figure 1 est une vue de face illustrant la partie intérieure d'un dispositif de déclenchement auxiliaire selon une réalisation particulière de l'invention, ledit dispositif étant dans une position fermée et armée, le circuit magnétique étant fermé,
  • La figure 2 est une vue partielle, vue de l'arrière par rapport à la figure précédente, illustrant seulement le mécanisme du dispositif et le circuit magnétique dans la même position,
  • La figure 3 est une vue identique à la figure 1, au début d'un déclenchement, le circuit magnétique étant en train de s'ouvrir,
  • La figure 3a est une vue partielle de la figure 3, illustrant le déclenchement du mécanisme,
  • La figure 4 est une vue identique à la figure 2, dans une position du dispositif correspondant à la figure 3,
  • La figure 5 est une vue identique à la figure 1, après un déclenchement du dispositif dans une position de celui-ci plus avancée par rapport à la figure 3, la manette étant toujours fermée, mais le mécanisme étant en train de revenir en arrière,
  • La figure 6 est une vue identique à la figure 2, dans une position du dispositif correspondant à la figure 5,
  • La figure 7 est une vue identique à la figure 1, dans une position au repos du dispositif après un déclenchement, la manette étant ouverte,
  • La figure 8 est une vue identique à la figure 2, dans la position du dispositif correspondant à la figure 7,
  • La figure 9 est une vue identique à la figure 7, la platine ayant été retirée, et
  • La figure 10 est une vue en perspective de la figure précédente.
But other advantages and features of the invention will become more apparent in the detailed description which follows and refers to the accompanying drawings given solely by way of example and in which:
  • The figure 1 is a front view illustrating the inner portion of an auxiliary trigger device according to a particular embodiment of the invention, said device being in a closed and armed position, the magnetic circuit being closed,
  • The figure 2 is a partial view, seen from the rear with respect to the preceding figure, illustrating only the mechanism of the device and the magnetic circuit in the same position,
  • The figure 3 is a view identical to the figure 1 at the beginning of a trigger, the magnetic circuit being open,
  • The figure 3a is a partial view of the figure 3 , illustrating the triggering of the mechanism,
  • The figure 4 is a view identical to the figure 2 in a position of the device corresponding to the figure 3 ,
  • The figure 5 is a view identical to the figure 1 , after a triggering of the device in a position of it more advanced compared to the figure 3 , the lever being always closed, but the mechanism being going back,
  • The figure 6 is a view identical to the figure 2 in a position of the device corresponding to the figure 5 ,
  • The figure 7 is a view identical to the figure 1 in a rest position of the device after a trigger, the handle being open,
  • The figure 8 is a view identical to the figure 2 in the position of the device corresponding to the figure 7 ,
  • The figure 9 is a view identical to the figure 7 the platen having been removed, and
  • The figure 10 is a perspective view of the previous figure.

Sur les figures, on voit un dispositif de déclenchement auxiliaire D selon une réalisation particulière de l'invention, notamment un déclencheur à manque de tension, logé dans un boîtier isolant modulaire 1 susceptible d'être accolé à un bloc disjoncteur (non représenté), ledit dispositif de déclenchement comprenant principalement un mécanisme de commande 2 et un électro-aimant 3. Ce mécanisme de commande 2 a une liaison de déclenchement destinée à agir sur le verrou de déclenchement du bloc disjoncteur associé. Cet électro-aimant 3 est doté d'une bobine d'excitation 4 et d'un circuit magnétique 5 à armature mobile 6, laquelle peut occuper soit une première position écartée du circuit magnétique, position dans laquelle ladite armature est rappelée sous l'action d'un ressort de rappel dit second 12, soit une deuxième position rapprochée dudit circuit par attraction électromagnétique à l'encontre dudit ressort, lors de l'excitation de la bobine. L'électro-aimant 3 comporte de manière connue un circuit magnétique constitué par un « U » magnétique 5 en acier ferromagnétique, coopérant avec une armature mobile formée par une palette pivotante 6 et une bobine 4 portée par une carcasse isolante.In the figures, there is shown an auxiliary triggering device D according to a particular embodiment of the invention, in particular an undervoltage release, housed in a modular insulating housing 1 which can be attached to a circuit breaker block (not shown), said triggering device mainly comprising a control mechanism 2 and an electromagnet 3. This control mechanism 2 has a tripping link intended to act on the tripping latch of the associated breaker block. This electromagnet 3 is provided with an excitation coil 4 and a magnetic circuit 5 with a movable armature 6, which can occupy either a first position spaced apart from the magnetic circuit, a position in which said armature is biased under the action a second said return spring 12, a second position close to said circuit by electromagnetic attraction against said spring, during the excitation of the coil. The electromagnet 3 comprises in known manner a magnetic circuit consisting of a magnetic "U" 5 made of ferromagnetic steel, cooperating with a movable armature formed by a pivoting pallet 6 and a coil 4 carried by an insulating carcass.

De manière connue en soi, le mécanisme de commande 2 comporte un levier de déclenchement 7 monté à pivotement sur une platine rotative 8. Cette platine 8 comporte de plus un levier d'accrochage 9 coopérant d'une part avec le levier de déclenchement 7 et d'autre part, avec une biellette de transmission 10 accouplée à une manette de réarmement 11. La biellette 10 agit sur la platine 8 par l'intermédiaire du levier d'accrochage 9, lequel est verrouillé par le levier de déclenchement 7. Lors d'un déclenchement, un couple est transmis à la platine 8 par un ressort dit premier 13 réarmé par la manette 11 après chaque déclenchement. Ainsi, lorsque l'accrochage entre la biellette 10 et la platine 8 du mécanisme est libéré par le levier de déclenchement 7, ce ressort 13 transmet l'énergie initialement stockée lors du réarmement, à la platine 8, ce qui entraîne le déverrouillage du verrou du bloc disjoncteur, et par là-même, l'ouverture des contacts du bloc disjoncteur associé. Le retour en position ouverte de la manette 11, de la biellette 10 et du levier d'accrochage 9 se désynchronise du retour de la platine 8 et du levier 7.
Conformément à l'invention, cette platine 8 comporte également un bras 8a destiné à coopérer avec un ressort de torsion 15, ledit ressort étant monté en compression par ses deux extrémités opposées 15a,15b respectivement sur deux parties du boîtier du dispositif, dans l'état désarmé du mécanisme, et comportant une extrémité 15b amenée en appui sur le bras 8a de la platine 8 après un déclenchement par déplacement de la platine, de manière à exercer un effort sur la platine 8, après un déclenchement, suffisant pour ramener la palette 6 dans la première position précitée.
In a manner known per se, the control mechanism 2 comprises a trigger lever 7 pivotally mounted on a turntable 8. This plate 8 further comprises a hooking lever 9 cooperating on the one hand with the release lever 7 and on the other hand, with a transmission rod 10 coupled to a reset lever 11. The rod 10 acts on the plate 8 by means of the attachment lever 9, which is locked by the release lever 7. When a trigger, a torque is transmitted to the plate 8 by a so-called first spring 13 reset by the lever 11 after each trip. Thus, when the attachment between the link 10 and the plate 8 of the mechanism is released by the release lever 7, the spring 13 transmits the energy initially stored during the reset, to the plate 8, which causes the unlocking of the latch of the circuit breaker block, and thereby the opening of the contacts of the associated circuit breaker block. The return to the open position of the lever 11, the rod 10 and the hooking lever 9 is out of sync with the return of the plate 8 and the lever 7.
According to the invention, this plate 8 also comprises an arm 8a intended to cooperate with a torsion spring 15, said spring being mounted in compression by its two opposite ends 15a, 15b respectively on two parts of the device housing, in the disarmed state of the mechanism, and having an end 15b brought into abutment on the arm 8a of the plate 8 after triggering by displacement of the plate, so as to exert a force on the plate 8, after a trigger, sufficient to bring the pallet 6 in the aforementioned first position.

Les figures 1 et 2 montrent le dispositif de déclenchement à l'état de veille, dans lequel la bobine 4 de l'électro-aimant 3 est sous-tension, le mécanisme 2 armé et le bloc disjoncteur dans la position de fermeture. La palette 6 se trouve attirée en permanence dans la position dans laquelle elle est contre le « U » magnétique 5 et le levier d'actionnement 16 associé à la palette 6 n'agit pas sur le levier de déclenchement 7, lequel verrouille positivement le mécanisme 2 dans l'état armé. Dans cette position, le ressort supplémentaire 15 est en appui par l'une 15a de ses branches 15a,15b, sur un plot solidaire du boîtier 1 et par l'autre 15b de ses branches, sur le bras 8a de la platine 8, laquelle maintient ce ressort 15 en position armée grâce au verrouillage réalisé par le levier de déclenchement 7 entre la manette 11, la biellette 10 et le levier d'accrochage 9. Ainsi, ce ressort supplémentaire 15 est tendu par le bras 8a en position armée du ressort principal 13. Dans cette position, la direction de la force F initiale appliquée au bras 8a de la platine est telle que le couple transmis au bras par le ressort supplémentaire 15 est faible, tel que ceci est illustré par le petit rapport des distances d1/d2 séparant la direction D1 de la force précitée, la direction D2 de la droite passant par l'axe X d'articulation de la platine et parallèle à la droite précédente D1, et la droite D3 parallèle aux deux précédentes, passant par l'axe de rotation du ressort 15.
Sur la figure 3, la présence d'un défaut de tension aux bornes de la bobine 4 a entraîné l'ouverture du circuit magnétique 5 et donc le déplacement de la palette 6 dans le sens horaire. Pendant ce déplacement, le levier d'actionnement 16 associé à la palette 6 est entraîné en rotation dans le même sens et, par sa partie d'extrémité 16a située du côté opposé à la palette, actionne le levier de déclenchement 7. Le déplacement de ce dernier entraîne le déverrouillage du levier d'accrochage 9, tel qu'illustré sur la figure 3a, d'où il résulte que la platine 8 et le levier 7 entrent en rotation sous l'effet du ressort principal précité 13, ce déplacement entraînant le déverrouillage et donc l'ouverture des contacts du bloc disjoncteur associé. Dans la position du dispositif illustrée sur la figure 3 correspondant à un début de déclenchement, le couple transmis au mécanisme par le ressort supplémentaire 15 est le même que dans la position de la figure précédente, ceci afin de ne pas modifier les caractéristiques de déclenchement externes, comme ceci est représenté par la distance d1 égale sur les figures 2 et 4.
Sur les figures 5 et 6, le processus de déclenchement est à son point critique, le ressort principal 13 ayant transféré une grande partie de son énergie, le bras 8a est en interférence avec le levier d'actionnement 16 lui-même soumis à l'effet contradictoire du ressort 12. C'est à ce moment-là que l'effet du ressort supplémentaire 15 produit son couple le plus important sur la platine 8, ceci étant traduit sur la figure 6 par un rapport dl'/d2' plus important entre la direction D1 de la force F, la direction D2 passant par l'axe de rotation X de la platine et parallèle à D1 et la direction D3 passant par l'axe du ressort 15. Dans cette position, le couple additionnel délivré par le ressort 15 compense la perte d'énergie impliquée par la compression du ressort 12.
Ainsi, alors que le ressort 15 se détend peu pendant la phase de déclenchement, le rapport des longueurs d1'/d2' entre son propre axe, son point d'application sur la platine 8 et l'axe de rotation de la platine 8, tend à maximiser son effet au moment le plus critique du processus de déclenchement.
The Figures 1 and 2 show the trigger device in the standby state, in which the coil 4 of the electromagnet 3 is undervoltage, the mechanism 2 armed and the circuit breaker block in the closed position. The pallet 6 is permanently attracted in the position in which it is against the magnetic "U" 5 and the actuating lever 16 associated with the pallet 6 does not act on the release lever 7, which positively locks the mechanism 2 in the armed state. In this position, the additional spring 15 is supported by one 15a of its branches 15a, 15b, on a stud integral with the housing 1 and the other 15b of its branches, on the arm 8a of the plate 8, which maintains this spring 15 in the armed position thanks to the locking made by the release lever 7 between the handle 11, the rod 10 and the attachment lever 9. Thus, this additional spring 15 is stretched by the arm 8a in the spring position of the spring 13. In this position, the direction of the initial force F applied to the arm 8a of the plate is such that the torque transmitted to the arm by the additional spring 15 is low, as shown by the small ratio of distances d1 / d2 separating the direction D1 of the force mentioned above, the direction D2 of the straight line passing through the articulation axis X of the plate and parallel to the previous line D1, and the straight line D3 parallel to the two preceding ones passing through the axis of rotation of the spring 15.
On the figure 3 , the presence of a voltage fault across the coil 4 has caused the opening of the magnetic circuit 5 and thus the movement of the pallet 6 in the clockwise direction. During this movement, the actuating lever 16 associated with the pallet 6 is rotated in the same direction and, by its end portion 16a situated on the side opposite the pallet, actuates the release lever 7. The displacement of the latter causes the locking lever 9 to be unlocked, as shown in FIG. figure 3a from which it follows that the plate 8 and the lever 7 rotate under the effect of the aforementioned main spring 13, this displacement resulting in the unlocking and therefore the opening of the contacts of the associated circuit breaker block. In the position of the device illustrated on the figure 3 corresponding to a start of tripping, the torque transmitted to the mechanism by the additional spring 15 is the same as in the position of the previous figure, so as not to modify the external trigger characteristics, as represented by the distance d1 equal on the Figures 2 and 4 .
On the Figures 5 and 6 , the triggering process is at its critical point, the main spring 13 having transferred a large part of its energy, the arm 8a is in interference with the actuating lever 16 itself subjected to the contradictory effect of the spring 12. It is at this moment that the effect of the additional spring 15 produces its greatest torque on the plate 8, this being reflected on the figure 6 by a ratio d1 '/ d2' greater between the direction D1 of the force F, the direction D2 passing through the axis of rotation X of the plate and parallel to D1 and the direction D3 passing through the axis of the spring 15. In this position, the additional torque delivered by the spring 15 compensates for the energy loss involved by the compression of the spring 12.
Thus, while the spring 15 expands slightly during the tripping phase, the ratio of the lengths d1 '/ d2' between its own axis, its point of application on the plate 8 and the axis of rotation of the plate 8, tends to maximize its effect at the most critical moment of the triggering process.

Sur les figures 5 et 6, la manette 11 est encore en position fermée et cette dernière ainsi que la biellette 10, sont en train de revenir vers une position correspondant à une position ouverte telle qu'illustrée sur les figures 7 à 8.On the Figures 5 and 6 , the handle 11 is still in the closed position and the latter and the link 10 are returning to a position corresponding to an open position as illustrated in FIGS. Figures 7 to 8 .

En fin de course de rotation de la platine 8, le couple transmis par le ressort supplémentaire 15 commence à diminuer jusqu'à être réduit en fin de course de la palette, position dans laquelle la bobine 4, si elle est de nouveau traversée par un courant normal, peut attirer la palette 6 de manière à maintenir fermé le circuit magnétique.At the end of the rotary stroke of the plate 8, the torque transmitted by the additional spring 15 begins to decrease until it is reduced at the end of travel of the pallet, position in which the reel 4, if it is crossed again by a normal current, can attract the pallet 6 so as to keep closed the magnetic circuit.

Sur ces figures 7 à 10, le dispositif est dans une position ouverte, les contacts du bloc disjoncteur étant ouverts. Dans cette position, le ressort supplémentaire 15 est en précontrainte, et ses deux extrémités 15a, 15b sont en appui respectivement sur deux parties du boîtier. En effet, pendant le mouvement d'ouverture de la platine, le bras s'est déplacé vers le bas, ce qui a entraîné un déplacement du point d'appui de la seconde extrémité 15b du ressort supplémentaire 15, d'une position dans laquelle il était en appui sur le bras, vers une position dans laquelle il est en appui sur le boîtier. (fig.9).On these Figures 7 to 10 , the device is in an open position, the contacts of the circuit breaker block being open. In this position, the additional spring 15 is prestressing, and its two ends 15a, 15b bear respectively on two parts of the housing. Indeed, during the opening movement of the plate, the arm has moved downwards, which has caused a displacement of the fulcrum of the second end 15b of the additional spring 15, a position in which he was resting on the arm, towards a position in which he is resting on the case. ( fig.9 ).

A cette étape, on autorise la fermeture des contacts du disjoncteur et on réalise le réarmement du ressort principal 13 en actionnant la manette 11 vers le côté opposé à celui des figures 7 à 10. L'énergie motrice du ressort accumulée pendant le réarmement sera à nouveau liberé lorsque l'électro-aimant n'aura de nouveau plus assez de courant pour maintenir le circuit magnétique fermé.At this stage, the closing of the contacts of the circuit-breaker is authorized and rearming of the main spring 13 is achieved by operating the lever 11 towards the side opposite to that of the Figures 7 to 10 . The driving energy of the spring accumulated during the reset will be released again when the electromagnet will again have enough current to keep the magnetic circuit closed.

Ainsi, selon l'invention, un ressort de torsion applique un couple au bras de la platine en complément du ressort principal de la platine du mécanisme.
La géométrie du bras et du ressort supplémentaire ainsi que leur agencement est telle que le couple supplémentaire délivré à la platine du mécanisme soit faible au début de la course d'ouverture, pour ne pas changer, donc perturber ou réduire, les caractéristiques de déclenchement externes, fort au moment de faiblesse identifié du ressort principal, et faible à la fin.
Ainsi, le couple transmis à la platine par le ressort de torsion est maximum quand l'énergie fournie par le ressort principal ne suffit plus à fournir simultanément l'énergie motrice minimum requise pour le déverrouillage du bloc-disjoncteur et le réarmement du circuit magnétique. Le complément d'énergie est maximum lorsque la résistance de la palette est maximum.
Ainsi, la caractéristique effort/déplacement fournie par le mécanisme au disjoncteur n'est que très peu modifiée.
Thus, according to the invention, a torsion spring applies a torque to the arm of the plate in addition to the main spring of the mechanism plate.
The geometry of the arm and the additional spring and their arrangement is such that the additional torque delivered to the plate of the mechanism is low at the beginning of the opening stroke, so as not to change, thus disrupt or reduce, the external triggering characteristics. , strong at the moment of weakness identified from the mainspring, and weak at the end.
Thus, the torque transmitted to the plate by the torsion spring is maximum when the energy supplied by the mainspring is no longer sufficient to simultaneously supply the motive power minimum required for unlocking the circuit breaker and resetting the magnetic circuit. The additional energy is maximum when the resistance of the pallet is maximum.
Thus, the force / displacement characteristic provided by the mechanism at the circuit breaker is only slightly modified.

On a donc réalisé selon l'invention un dispositif de déclenchement auxiliaire permettant de refermer mécaniquement le circuit magnétique de l'électro-aimant afin de limiter la quantité de courant nécessaire au collage magnétique de la palette, la caractéristique force/déplacement fournie par le mécanisme n'étant que très peu modifiée.
On réalise ainsi une compensation de la perte d'énergie motrice sans altérer l'adaptabilité du mécanisme de l'auxiliaire à celui du disjoncteur. L'effort nécessaire pour déclencher le mécanisme est directement lié au couple moteur du ressort principal.
Toutes les pièces communes restent compatibles avec les autres auxiliaires. Seul, le ressort supplémentaire est ajouté ou non, en fonction des caractéristiques du dispositif auxiliaire à monter.
En retirant le ressort, le même mécanisme peut être utilisé par exemple comme un déclencheur à distance.
On notera que bien que la réalisation décrite concerne un dispositif de déclenchement auxiliaire à manque de tension, l'invention est également applicable à tout dispositif de déclenchement auxiliaire dans lequel il est nécessaire de ramener une palette en position après un déclenchement.
Thus, according to the invention, an auxiliary triggering device has been implemented which makes it possible to mechanically close the magnetic circuit of the electromagnet in order to limit the amount of current required for the magnetic bonding of the pallet, the force / displacement characteristic provided by the mechanism. being only slightly modified.
This compensates for the loss of motive power without altering the adaptability of the mechanism of the auxiliary to that of the circuit breaker. The effort required to trigger the mechanism is directly related to the driving torque of the main spring.
All common parts remain compatible with other auxiliaries. Only the additional spring is added or not, depending on the characteristics of the auxiliary device to be mounted.
By removing the spring, the same mechanism can be used for example as a remote trigger.
Note that although the embodiment described relates to an auxiliary tripping device with no voltage, the invention is also applicable to any auxiliary trigger device in which it is necessary to bring a pallet in position after a trigger.

Bien entendu, l'invention n'est pas limitée au mode de réalisation décrit et illustré qui n'a été donné qu'à titre d'exemple.Of course, the invention is not limited to the embodiment described and illustrated which has been given by way of example.

Claims (5)

  1. An auxiliary trip device housed in a modular insulating case (1) designed to be adjoined to a circuit breaker unit, said trip device comprising:
    - an operating mechanism (2) having a trip link designed to act on the trip latch of the circuit breaker unit, said mechanism comprising a transmission rod (10) coupled to a handle (11), a support plate (8) fitted rotating in the case and having a breakable mechanical link with the transmission rod (10), and a trip lever (7) controlled by an electro-magnet (3) to cause breaking of the mechanical link, in the event of a fault, resulting in automatic tripping of the mechanism independently from the handle (11) and actuation of the trip latch of the associated circuit breaker unit, said mechanism being biased to a loaded position by the handle (11) against the force of a return spring called first spring (13) designed to drive the support plate (8) to the unlatched position of the circuit breaker unit in case of tripping,
    - an electromagnet provided with an excitation coil (4) and with a magnetic circuit with a movable armature (6) which can occupy either a first position separated from the magnetic circuit due to the action of a return spring called second spring (2) or a second position drawn towards the magnetic circuit by electromagnetic attraction when excitation of the coil (4) takes place, said armature (6) collaborating with the above-mentioned trip lever (7), characterized in that it comprises
    - means for biasing the armature (6) to the second position after tripping, these means comprising an arm (8a) supported by the support plate (8), and
    - a spring called third spring (15) stretched taut by the arm (8a) of the support plate (8) in the loaded position of the mechanism, said spring called third spring (15) being designed to exert a force on the arm of the support plate when it relaxes, after latching of the support plate has been released, so as to bias the movable armature formed by a blade (6) to the above-mentioned second position drawn towards the magnetic circuit (5).
  2. The auxiliary trip device according to claim 1, characterized in that the spring called third spring (15) and the arm (8a) of the support plate (8) are shaped and arranged in such a way that, at the beginning of tripping, the direction of the initial force F applied to the arm (8a) of the support plate (8) is such that the torque transmitted to the arm of the support plate is weak, that in the course of movement of the arm following relaxation of the spring (15), the direction of the force of the spring on the arm changes so that the torque transmitted to the arm is amplified in an intermediate phase when the spring called first spring no longer suffices to provide the minimum driving force required both to release latching of the trip latch of the circuit breaker unit and to reload the magnetic circuit, and that at the end of tripping the torque transmitted to the arm is weak.
  3. The auxiliary trip device according to claim 1, characterized in that the spring called third spring (15) is a torsion spring.
  4. The auxiliary trip device according to claim 3, characterized in that the spring called third spring (15) comprises one end (15a) pressing on the case (1) and one end (15b) pressing on the arm (8a) of the support plate (8) in a loaded position of the mechanism, the two ends (15a,15b) of the spring (15) being pressing on the case (1) in the tripped position of the mechanism, changing of the pressing point of the second end (15b) of the spring from a position pressing on the arm (8a) to a position pressing on the case (1) having been caused by the movement of the support plate when tripping takes place or when moved to the rest position by the handle.
  5. The auxiliary trip device according to any one of the foregoing claims, characterized in that it is an undervoltage trip device.
EP20110354005 2010-06-15 2011-03-15 Auxiliary trip device for a breaker block Active EP2398034B1 (en)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
FR1002524A FR2961343B1 (en) 2010-06-15 2010-06-15 AUXILIARY RELEASE DEVICE FOR ASSOCIATED WITH A CIRCUIT BREAKER.

Publications (2)

Publication Number Publication Date
EP2398034A1 EP2398034A1 (en) 2011-12-21
EP2398034B1 true EP2398034B1 (en) 2013-05-08

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Family Applications (1)

Application Number Title Priority Date Filing Date
EP20110354005 Active EP2398034B1 (en) 2010-06-15 2011-03-15 Auxiliary trip device for a breaker block

Country Status (4)

Country Link
EP (1) EP2398034B1 (en)
CN (1) CN102290295B (en)
ES (1) ES2409304T3 (en)
FR (1) FR2961343B1 (en)

Family Cites Families (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4625190A (en) * 1985-03-04 1986-11-25 Westinghouse Electric Corp. Remotely controlled solenoid operated circuit breaker
FR2589627B1 (en) * 1985-10-31 1988-08-26 Merlin Gerin CONTROL MECHANISM FOR LOW VOLTAGE ELECTRIC CIRCUIT BREAKER
US4983939A (en) * 1989-10-05 1991-01-08 Westinghouse Electric Corp. Circuit breaker with adjustable low magnetic trip
ATE209828T1 (en) * 1996-06-10 2001-12-15 Siemens Ag UNDERVOLTAGE RELEASE
FR2779568B1 (en) * 1998-06-04 2000-07-13 Schneider Electric Ind Sa ELECTRICAL CUT-OFF DEVICE INCLUDING A DIFFERENTIAL TRIP DEVICE AND CIRCUIT BREAKER INCLUDING SUCH A DEVICE
DE102006027140A1 (en) * 2006-06-12 2007-12-13 Ellenberger & Poensgen Gmbh breaker

Also Published As

Publication number Publication date
FR2961343B1 (en) 2012-06-08
CN102290295B (en) 2015-03-25
EP2398034A1 (en) 2011-12-21
FR2961343A1 (en) 2011-12-16
ES2409304T3 (en) 2013-06-26
CN102290295A (en) 2011-12-21

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