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EP0959483B1 - Load break switch with arc extinguishing chamber - Google Patents

Load break switch with arc extinguishing chamber Download PDF

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Publication number
EP0959483B1
EP0959483B1 EP99107514A EP99107514A EP0959483B1 EP 0959483 B1 EP0959483 B1 EP 0959483B1 EP 99107514 A EP99107514 A EP 99107514A EP 99107514 A EP99107514 A EP 99107514A EP 0959483 B1 EP0959483 B1 EP 0959483B1
Authority
EP
European Patent Office
Prior art keywords
opening
switch
chamber
switch according
expansion chamber
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.)
Expired - Lifetime
Application number
EP99107514A
Other languages
German (de)
French (fr)
Other versions
EP0959483A3 (en
EP0959483A2 (en
Inventor
Stefan Bünger
Reimund Buhl
Udo Nellen
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.)
Fritz Driescher Kg Spezialfabrik fur Elektrizitatswerksbedarf & Co GmbH
Original Assignee
Fritz Driescher Kg Spezialfabrik fur Elektrizitatswerksbedarf & Co GmbH
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 Fritz Driescher Kg Spezialfabrik fur Elektrizitatswerksbedarf & Co GmbH filed Critical Fritz Driescher Kg Spezialfabrik fur Elektrizitatswerksbedarf & Co GmbH
Publication of EP0959483A2 publication Critical patent/EP0959483A2/en
Publication of EP0959483A3 publication Critical patent/EP0959483A3/en
Application granted granted Critical
Publication of EP0959483B1 publication Critical patent/EP0959483B1/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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Classifications

    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H9/00Details of switching devices, not covered by groups H01H1/00 - H01H7/00
    • H01H9/30Means for extinguishing or preventing arc between current-carrying parts
    • H01H9/34Stationary parts for restricting or subdividing the arc, e.g. barrier plate
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H33/00High-tension or heavy-current switches with arc-extinguishing or arc-preventing means
    • H01H33/02Details
    • H01H33/04Means for extinguishing or preventing arc between current-carrying parts
    • H01H33/08Stationary parts for restricting or subdividing the arc, e.g. barrier plate
    • H01H2033/085Stationary parts for restricting or subdividing the arc, e.g. barrier plate using a flat arc chute, the width of arc chamber being only slightly greater then thickness of switch blade
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H9/00Details of switching devices, not covered by groups H01H1/00 - H01H7/00
    • H01H9/30Means for extinguishing or preventing arc between current-carrying parts
    • H01H9/302Means for extinguishing or preventing arc between current-carrying parts wherein arc-extinguishing gas is evolved from stationary parts
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H9/00Details of switching devices, not covered by groups H01H1/00 - H01H7/00
    • H01H9/30Means for extinguishing or preventing arc between current-carrying parts
    • H01H9/32Insulating body insertable between contacts
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H9/00Details of switching devices, not covered by groups H01H1/00 - H01H7/00
    • H01H9/30Means for extinguishing or preventing arc between current-carrying parts
    • H01H9/34Stationary parts for restricting or subdividing the arc, e.g. barrier plate
    • H01H9/342Venting arrangements for arc chutes

Definitions

  • the invention relates to a switch with extinguishing chamber, in particular Medium-voltage switch-disconnector for voltages between 6 and 36 kV.
  • the knife- or pin-shaped contact or switching pin is between Arranged bodies that release gas when heated (hard gas principle).
  • the pen or knife moves when switching on and off between these bodies.
  • the emanating from the arc resulting when switching off builds on the one hand by heating the air present in the quenching chamber, on the other hand by the evolution of gas pressure, the one Gas flow creates the cool and the arc as fast as possible should delete.
  • German Patent Application Laid-Open 195 40 552 discloses one in one Support insulator integrated extinguishing chamber, each located between the Post insulators of a pole is located.
  • the one in the quenching chamber Switching pin turns off along a straight trajectory pulled out of the quenching chamber. This straight-line movement claims relatively much space, since at least the length to which the switching pin from the Chamber is pulled outside the extinguishing chamber in extension this must be kept free for the switching movements.
  • the invention is based on the problem, a the required shutdown performance resistant, flameproof To build fire chamber, which takes up the least possible space and as universally applicable.
  • the device according to the invention makes it possible to use switch blades into the quenching chamber, so that the quenching chamber to the to meet increased performance requirements, greater could be designed without the space required for switch blades plus extinguishing chamber has risen overall, so that despite performance increase the existing grid dimensions of the switching cells are met can.
  • Existing medium-voltage switching devices can thus be easily retrofitted with the devices of the invention.
  • the quenching chamber according to the invention is designed to that they are for different voltages, for example 12 and 24 kV, can be used. Due to the fact that a quenching chamber for multiple voltage series can be used, arises considerable cost advantage.
  • a quenching chamber 1 which consists of a housing. 2 consisting in a pressure chamber 3 and an expansion chamber. 4 divided by a wall 5 with an opening 6 from each other are separated.
  • the pressure chamber 3 is located on the Expansion chamber 4 side facing away from a fixed contact. 7
  • the expansion chamber 4 has on its wall 5 opposite Side an opening 8 on, which is also in the lower range of Expansion chamber 4 extends and there virtually an additional opening. 9 forms.
  • the openings 8 and 6 serve the passage of the contact tip of a movable switch blade 11 of the secondary flow path through the pressure 3 and the expansion chamber 4 up to the contact 7; the switch blade is held in the on position by a nose 12, which it behind hooked.
  • the switch blade 11 is in Fig. 1a only partially, namely with its contact tip 11a shown, which has a corresponding bent shaft part 11b is connected to the pivot point B, so that the knife turns on and off along a circular path emotional.
  • the cutting knife 11 is flat, as the plan views show shaped.
  • the extinguishing chamber meets the requirements regarding the Number of shutdowns for the mentioned services (voltages and current levels), it was necessary that Extend extinguishing chamber volume, which with the invention in compliance the switch dimensions and maintaining the cell grid in Surprisingly simple manner is achieved in that not only the Contact tip 11a dives into the quenching chamber, but at least partly also the switching or cutting blade shaft 11b.
  • the extinguishing chamber despite the additional opening 9 in the expansion chamber 4 their task, namely the resulting at shutdown Extinguish arc, reliably fulfilled, is the area 9 of the opening 8, so the additional opening in the in Fig. 1a, b shown turned off state by two flaps 14, for example, out Insulant exist, closed.
  • the Flaps 14 movably attached to the bottom of the quenching chamber 1, and at the points C. They each have the form of a Circle segment and overlap in the off state the Close the area of the additional opening 9.
  • they are spring-loaded, so that they without an outer, on they acting force, assume the state shown in Fig. 1b.
  • the Extinguishing plates 10 are in the off state to each other.
  • FIGS. 3a, b This state is shown in FIGS. 3a, b.
  • the flaps 14 are now completely open, so that they release the additional opening 9. They are from the Heidelbergmesserschaft 11 a held in this position, while the Switch blade contact tip 11 a presses the quenching plates 10 apart.
  • the additional opening allows for the crescent-shaped switch blade 11, that his trajectory is largely in the quenching chamber 1, so that at the same space requirement for the quenching chamber 1 according to the invention in comparison to known extinguishing chambers a considerably larger chamber volume is achieved.
  • the closing speed the additional opening 9 can by the shape of the flaps 14 varies and be specially adjusted.
  • the measures according to the invention thus also increase the efficiency the quenching chamber considerably.
  • FIG. 4a, b is another embodiment of an inventive Löschhunt shown, in which the the embodiment according to FIGS. 1 to 3 corresponding parts with the same reference numerals are designated.
  • the embodiment according to FIG. 4a, b differs from the embodiment described above by a another closure mechanism for the additional opening. 9
  • flaps 14 instead of the flaps 14 here is a plate or a strip 15 of insulating material used. This or this is at the contact end of the quenching chamber 1 attached at 16 and closes when turned off the switch the complete additional opening 9.
  • its shaft presses against the plate or strip 15 the action of a spring 17 in the housing 2 in the direction of the attachment point 16, whereby the additional opening 9 is released.
  • the Operation of this embodiment is the same as before . described According to the position of the switch blade 11 is the additional opening area 9 opened by the plate or the strip 15 or closed. In the pressure chamber 3 are accordingly Extinguishing plates 10 provided from heating material gasabstagedem.

Landscapes

  • Arc-Extinguishing Devices That Are Switches (AREA)
  • Switches Operated By Changes In Physical Conditions (AREA)
  • Fire-Extinguishing Compositions (AREA)
  • Fire-Detection Mechanisms (AREA)
  • Push-Button Switches (AREA)
  • Circuit Breakers (AREA)
  • Switches With Compound Operations (AREA)
  • Axle Suspensions And Sidecars For Cycles (AREA)
  • Driving Mechanisms And Operating Circuits Of Arc-Extinguishing High-Tension Switches (AREA)
  • Breakers (AREA)
  • Air Bags (AREA)

Abstract

The MV load breaker switch has an arc extinction chamber, a movable switch blade (11), a pressure chamber and an expansion chamber with an opening which can be at least partially closed, the closable opening area providing an auxiliary opening (9) in the form of a slit, for passage of the switch blade shaft.

Description

Die Erfindung betrifft einen Schalter mit Löschkammer, insbesondere Mittelspannungs-Lasttrennschalter für Spannungen zwischen 6 und 36 kV.The invention relates to a switch with extinguishing chamber, in particular Medium-voltage switch-disconnector for voltages between 6 and 36 kV.

Um Lichtbögen beim Öffnen der Kontakte eines Lasttrennschalters möglichst schnell zum Erlöschen zu bringen, ist es bekannt, Löschkammern in einer Nebenstrombahn anzuordnen, in der nur kurzzeitig, unmittelbar nach Öffnen des Hauptkontaktes Strom über einen vorübergehend in Einschaltposition befindlichen Nacheilkontakt fließt. Ein in der Löschkammer angeordneter beweglicher Kontakt- oder Schaltstift bzw. -messer unterbricht den Nebenstromkreis. Der dabei entstehende Lichtbogen wird in der Löschkammer gelöscht.To arcs when opening the contacts of a switch-disconnector It is well known extinguishing chambers to extinguish as quickly as possible to be arranged in a secondary flow path in which only briefly, immediately after opening the main contact, power over one temporarily in on position lagging contact flows. One arranged in the quenching chamber movable contact or switching pin or -messer interrupts the bypass circuit. The resulting Arc is extinguished in the quenching chamber.

Der messer- oder stiftförmige Kontakt- oder Schaltstift wird zwischen Körpern angeordnet, die beim Erwärmen Gas abgeben (Hartgasprinzip). Der Stift bzw. das Messer bewegt sich beim Ein- und Ausschalten zwischen diesen Körpern hindurch. Unter dem Einfluß der Wärme, die von dem beim Abschalten entstehenden Lichtbogen ausgeht, baut sich einerseits durch Erwärmung der in der Löschkammer vorhandenen Luft, andererseits durch die Gasentwicklung ein Druck auf, der eine Gasströmung erzeugt, die kühlen und den Lichtbogen möglichst schnell löschen soll.The knife- or pin-shaped contact or switching pin is between Arranged bodies that release gas when heated (hard gas principle). The pen or knife moves when switching on and off between these bodies. Under the influence of heat, the emanating from the arc resulting when switching off, builds on the one hand by heating the air present in the quenching chamber, on the other hand by the evolution of gas pressure, the one Gas flow creates the cool and the arc as fast as possible should delete.

Die Anforderungen an Mittelspannungs-Schaltgeräte steigen ständig. Während bisher Schaltgeräte, die als "Standzeit" 20 Lastabschaltungen bewältigen, marktüblich waren, werden nun 100 Lastabschaltungen bei Spannungen von 12 und 24 kV und einem Strom von 630 A verlangt. Um immer mehr Leistung immer öfter abschalten zu können, ist es erforderlich, größere und druckfestere Löschkammern zu bauen, die so bemessen sind, daß das für die Löschung des Abschaltlichtbogens erforderliche Löschgas in erforderlicher Menge zur Verfügung gestellt wird und sie dem durch die Abschaltung entstehenden Druck standhalten. Da der Raum in Mittelspannungs-Schaltanlagen jedoch sehr begrenzt ist und die Anlagenabmessungen maßgeblich von der Schaltergröße bestimmt werden, dürfen die Abmessungen der Schaltgeräte trotz der erhöhten Anforderungen an die Abschaltleistung nicht nennenswert vergrößert werden.The requirements for medium-voltage switchgear are constantly increasing. While so far, switching devices that called "life" 20 load shedding cope with the market, 100 load shutdowns will now be added Voltages of 12 and 24 kV and a current of 630 A required. Around It is always possible to switch off more and more power required to build larger and more pressure-resistant extinguishing chambers that way are dimensioned that for the cancellation of the Abschaltlichtbogens required extinguishing gas in the required amount provided and will withstand the pressure generated by the shutdown. However, the room in medium-voltage switchgear is very much is limited and the plant dimensions are largely determined by the Switch size can be determined, the dimensions of the Switchgear despite the increased demands on the breaking capacity not be increased significantly.

Daher ist es derzeit üblich, aus Platzgründen für jede der Spannungsreihen (10, 20, 30 kV) unterschiedliche Löschkammern zu bauen, um die Schalter der jeweiligen Spannungsreihe möglichst klein bauen zu können.Therefore, it is currently common for reasons of space for each of the voltage series (10, 20, 30 kV) to build different extinguishing chambers, To build the switches of the respective voltage series as small as possible can.

Es sind Löschkammern, beispielsweise aus der deutschen Offenlegungsschrift 195 40 552 oder aus der deutschen Offenlegungsschrift 195 22 852 bekannt, die auch unter dem Aspekt eines möglichst geringen Raumbedarfs entwickelt wurden. They are extinguishing chambers, for example from the German Offenlegungsschrift 195 40 552 or from German patent application 195 22 852 known, which also in terms of the lowest possible Space requirements were developed.

So offenbart die deutsche Offenlegungsschrift 195 40 552 eine in einen Stützisolator integrierte Löschkammer, die sich jeweils zwischen den Stützisolatoren eines Pols befindet. Der in der Löschkammer befindliche Schaltstift wird zum Ausschalten entlang einer geraden Bewegungsbahn aus der Löschkammer gezogen. Diese gradlinige Bewegung beansprucht relativ viel Platz, da zumindest die Länge, um die der Schaltstift aus der Kammer gezogen wird, außerhalb der Löschkammer in Verlängerung dieser für die Schaltbewegungen freigehalten werden muß.Thus, German Patent Application Laid-Open 195 40 552 discloses one in one Support insulator integrated extinguishing chamber, each located between the Post insulators of a pole is located. The one in the quenching chamber Switching pin turns off along a straight trajectory pulled out of the quenching chamber. This straight-line movement claims relatively much space, since at least the length to which the switching pin from the Chamber is pulled outside the extinguishing chamber in extension this must be kept free for the switching movements.

Zur Verminderung dieses Raumbedarfs schlagen die Dokumente DE 195 22 852 und FR 2034118 eine rohrförmige Löschkammer mit einem Schaltstift vor, die beide die Form eines Kreissegmentes besitzen. Der Schaltstift ist über Verbindungen an einem Drehpunkt so ausgelenkt, daß er eine Bewegung durchführt, die auf der durch seine Form und die der Löschkammer vorgegebenen Kreisbahn liegt. Um den Schaltstift aus seiner Kontaktposition aus der Löschkammer herauszuziehen, wird zwar schon erheblich weniger Platz beansprucht, als bei der zuvor beschriebenen Löschkammer.To reduce this space requirements beat the documents DE 195 22 852 and FR 2034118 a tubular quenching chamber with a Schaltstift ago, both of which have the shape of a circle segment. Of the Switch pin is so deflected over connections at a pivot point that He performs a movement that is due to his form and that of his Extinguishing chamber predetermined circular path is located. To the switching pin off his contact position to pull out of the quenching chamber, although already claimed considerably less space than in the previously described Extinguishing chamber.

Die beschriebenen Löschkammern genügen jedoch nicht den heutigen Wünschen an Mittelspannungs-Schaltgeräte nach 100 Lastabschaltungen unter den oben angegebenen Leistungsbedingungen.However, the extinguishing chambers described do not meet today's Demands on medium-voltage switchgear after 100 load shutdowns under the above mentioned conditions of performance.

Vor diesem Hintergrund liegt der Erfindung das Problem zugrunde, eine den geforderten Abschaltleistungen standhaltende, druckfeste Löschkammer zu bauen, die möglichst geringen Platz beansprucht und möglichst universell einsetzbar ist. Against this background, the invention is based on the problem, a the required shutdown performance resistant, flameproof To build fire chamber, which takes up the least possible space and as universally applicable.

Zur Lösung dieser Aufgabe wird eine Löschkammer mit den im Hauptanspruch angegebenen Merkmalen vorgeschlagen. Vorteilhafte Ausführungsformen sind den Unteransprüchen zu entnehmen.To solve this problem, a quenching chamber with the in Main claim specified characteristics proposed. advantageous Embodiments are to be taken from the subclaims.

Durch die erfindungsgemäße Vorrichtung wird es möglich, Schaltmesser in die Löschkammer einzulassen, so daß die Löschkammer, um den gestiegenen Leistungsanforderungen gerecht zu werden, größer ausgelegt werden konnte, ohne daß der Platzbedarf für Schaltmesser plus Löschkammer insgesamt gestiegen ist, so daß trotz Leistungssteigerung die bestehenden Rastermaße der Schaltzellen eingehalten werden können. Bestehende Mittelspannungs-Schaltgeräte können somit problemlos mit den erfindungsgemäßen Geräten nachgerüstet werden.The device according to the invention makes it possible to use switch blades into the quenching chamber, so that the quenching chamber to the to meet increased performance requirements, greater could be designed without the space required for switch blades plus extinguishing chamber has risen overall, so that despite performance increase the existing grid dimensions of the switching cells are met can. Existing medium-voltage switching devices can thus be easily retrofitted with the devices of the invention.

Darüber hinaus ist die erfindungsgemäße Löschkammer so ausgelegt, daß sie für unterschiedliche Spannungen, beispielsweise für 12 und 24 kV, eingesetzt werden kann. Dadurch, daß eine Löschkammer für mehrere Spannungsreihen eingesetzt werden kann, entsteht ein erheblicher Kostenvorteil.Moreover, the quenching chamber according to the invention is designed to that they are for different voltages, for example 12 and 24 kV, can be used. Due to the fact that a quenching chamber for multiple voltage series can be used, arises considerable cost advantage.

Innerhalb der Löschkammer sind in an sich bekannter Weise Körper aus beim Erwärmen gasabgebendem Material vorgesehen. Diese können Plattenform besitzen und sich im eingeschalteten Zustand gegen den Schaltstift bzw. die Messerkontaktspitze drücken. Jede weitere Form dieser Körper ist denkbar.Within the quenching chamber body in a conventional manner provided when heating gas-emitting material. these can Have plate shape and in the on state against the Press the switch pin or the blade contact tip. Any further form of this Body is conceivable.

Im folgenden wird die Erfindung anhand der in der Zeichnung dargestellten Ausführungsbeispiele näher erläutert. Es zeigen:

Fig. 1a
einen Querschnitt durch eine Löschkammer, in ausgeschaltetem Zustand;
Fig. 1b
einen Schnitt durch eine Löschkammer gemäß Fig. 1a entlang der Linie A - A;
Fig. 2a
einen Querschnitt durch eine Löschkammer gemäß Fig. 1a, bei der sich das Schaltmesser in einer Mittelstellung zwischen ein- und ausgeschaltetem Zustand befindet;
Fig. 2b
einen Schnitt durch eine Löschkammer gemäß Fig. 2a entlang der Linie A - A;
Fig. 3a
einen Querschnitt durch eine Löschkammer gemäß Fig. 1a, in eingeschaltetem Zustand;
Fig. 3b
eine Ansicht einer Schaltkammer gemäß Fig. 3a aus der Richtung A;
Fig. 4a
einen Querschnitt durch ein weiteres Ausführungsbeispiel einer Löschkammer, in eingeschaltetem Zustand; und
Fig. 4b
eine Ansicht einer Löschkammer gemäß Fig. 4a aus der Richtung A.
In the following the invention will be explained in more detail with reference to the embodiments illustrated in the drawing. Show it:
Fig. 1a
a cross section through a quenching chamber, in the off state;
Fig. 1b
a section through a quenching chamber of Figure 1a along the line A - A.
Fig. 2a
a cross-section through a quenching chamber of Figure 1a, in which the switch blade is in a middle position between on and off state.
Fig. 2b
a section through a quenching chamber of Figure 2a along the line A - A;
Fig. 3a
a cross section through a quenching chamber of Figure 1a, when switched on.
Fig. 3b
a view of a switching chamber of Figure 3a from the direction A;
Fig. 4a
a cross section through another embodiment of a quenching chamber, when switched on; and
Fig. 4b
a view of a quenching chamber of FIG. 4a from the direction A.

In Fig. 1a ist eine Löschkammer 1 dargestellt, die aus einem Gehäuse 2 besteht, das in eine Druckkammer 3 und eine Expansionskammer 4 aufgeteilt ist, die durch eine Wand 5 mit einer Öffnung 6 voneinander getrennt sind. In der Druckkammer 3 befindet sich auf der der Expansionskammer 4 abgewandten Seite ein feststehender Kontakt 7.In Fig. 1a, a quenching chamber 1 is shown, which consists of a housing. 2 consisting in a pressure chamber 3 and an expansion chamber. 4 divided by a wall 5 with an opening 6 from each other are separated. In the pressure chamber 3 is located on the Expansion chamber 4 side facing away from a fixed contact. 7

Die Expansionskammer 4 weist auf ihrer der Wand 5 gegenüberliegenden Seite eine Öffnung 8 auf, die sich auch in den unteren Bereich der Expansionskammer 4 erstreckt und dort quasi eine Zusatzöffnung 9 bildet.The expansion chamber 4 has on its wall 5 opposite Side an opening 8 on, which is also in the lower range of Expansion chamber 4 extends and there virtually an additional opening. 9 forms.

Die Öffnungen 8 und 6 dienen dem Durchtritt der Kontaktspitze eines beweglichen Schaltmessers 11 der Nebenstrombahn durch die Druck- 3 und die Expansionskammer 4 bis hin zum Kontakt 7; das Schaltmesser wird in der eingeschalteten Position durch eine Nase 12 gehalten, die es hinterhakt. Das Schaltmesser 11 ist in Fig. 1a nur teilweise, nämlich mit seiner Kontaktspitze 11a dargestellt, die über einen entsprechend gebogenen Schaftteil 11b mit dem Schwenkpunkt B verbunden ist, so daß das Messer sich beim Ein- und Ausschalten entlang einer Kreisbahn bewegt.The openings 8 and 6 serve the passage of the contact tip of a movable switch blade 11 of the secondary flow path through the pressure 3 and the expansion chamber 4 up to the contact 7; the switch blade is held in the on position by a nose 12, which it behind hooked. The switch blade 11 is in Fig. 1a only partially, namely with its contact tip 11a shown, which has a corresponding bent shaft part 11b is connected to the pivot point B, so that the knife turns on and off along a circular path emotional.

In der Druckkammer 3 sind Löschplatten 10 aus beim Erwärmen gasabgebenden Werkstoff angeordnet, die mit Federn 21 beaufschlagt sind, so daß sie gegeneinander gepreßt werden. Das Schaltmesser 11 bewegt sich während des Ein- und Ausschaltens zwischen ihnen hindurch und berührt sie dabei.In the pressure chamber 3 are extinguishing plates 10 from heating arranged gas-emitting material, which acts on springs 21 are so that they are pressed against each other. The switch blade 11 moves between them during switching on and off and touch her.

Das Schalt- bzw. Trennmesser 11 ist, wie die Draufsichten zeigen, flach geformt. Damit die Löschkammer den Anforderungen bezüglich der Anzahl der Abschaltungen bei den genannten Leistungen (Spannungen und Stromstärken) standhalten kann, war es erforderlich, das Löschkammervolumen zu vergrößern, was mit der Erfindung unter Einhaltung der Schalterdimensionen und Beibehaltung des Zellenrasters in überraschend einfacher Weise dadurch erreicht wird, daß nicht nur die Kontaktspitze 11a in die Löschkammer taucht, sondern zumindest teilweise auch der Schalt- bzw. Trennmesserschaft 11b.The cutting knife 11 is flat, as the plan views show shaped. Thus the extinguishing chamber meets the requirements regarding the Number of shutdowns for the mentioned services (voltages and current levels), it was necessary that Extend extinguishing chamber volume, which with the invention in compliance the switch dimensions and maintaining the cell grid in Surprisingly simple manner is achieved in that not only the Contact tip 11a dives into the quenching chamber, but at least partly also the switching or cutting blade shaft 11b.

Das wird durch den Teil 9 der Öffnung 8, also die erfindungsgemäße Zusatzöffnung ermöglicht. Während des Einschaltens, also wenn das Schaltmesser 11 auf den feststehenden Kontakt 7 zu bewegt wird, tritt zunächst der Halteteil 13 und dann die Kontaktspitze 11a des Schaltmessers 11 durch den nach hinten gerichteten Teil der Öffnung 8. Sobald das Schaltmesser 11 jedoch die in Fig. 2a,b dargestellte Position erreicht hat, tritt auch sein Schaft 11b in den Kammerbereich, nämlich die Zusatzöffnung 9 der Öffnung 8 ein, und das um so weiter, je weiter es sich dem feststehenden Kontakt 7 nähert.This is the part 9 of the opening 8, so the invention Additional opening allows. During power up, so if that Switching blade 11 is moved to the fixed contact 7, occurs First, the holding part 13 and then the contact tip 11a of the switch blade 11 through the rearward part of the opening 8. Once However, the switch blade 11 reaches the position shown in Fig. 2a, b its stem 11b also enters the chamber area, namely the additional opening 9 of the opening 8, and the further, the further it is the fixed contact 7 approaches.

Damit die Löschkammer trotz der Zusatzöffnung 9 in der Expansionskammer 4 ihre Aufgabe, nämlich den beim Abschalten entstehenden Lichtbogen zum Erlöschen zu bringen, zuverlässig erfüllt, ist der Bereich 9 der Öffnung 8, also die Zusatzöffnung in dem in Fig. 1a,b dargestellten ausgeschalteten Zustand durch zwei Klappen 14, die beispielsweise aus Isolierstoff bestehen, verschlossen. Wie in Fig. 1b ersichtlich, sind die Klappen 14 an der Unterseite der Löschkammer 1 beweglich befestigt, und zwar an den Punkten C. Sie haben jeweils die Form eines Kreissegmentes und überlappen sich im ausgeschalteten Zustand den Bereich der Zusatzöffnung 9 verschließend. Bei einem bevorzugten Ausführungsbeispiel sind sie federbelastet, so daß sie ohne eine äußere, auf sie wirkende Kraft, den in Fig. 1b dargestellten Zustand einnehmen. Die Löschplatten 10 liegen im ausgeschalteten Zustand aufeinander. So that the extinguishing chamber despite the additional opening 9 in the expansion chamber 4 their task, namely the resulting at shutdown Extinguish arc, reliably fulfilled, is the area 9 of the opening 8, so the additional opening in the in Fig. 1a, b shown turned off state by two flaps 14, for example, out Insulant exist, closed. As can be seen in Fig. 1b, the Flaps 14 movably attached to the bottom of the quenching chamber 1, and at the points C. They each have the form of a Circle segment and overlap in the off state the Close the area of the additional opening 9. In a preferred embodiment they are spring-loaded, so that they without an outer, on they acting force, assume the state shown in Fig. 1b. The Extinguishing plates 10 are in the off state to each other.

Sobald nun der Schalter durch das Schaltmesser 11 geschlossen wird, sich also um den Punkt B auf den feststehenden Kontakt 7 zu bewegt und es dabei wie zuvor beschrieben in die Expansionskammer eintritt, trifft sein Schaft 11b irgendwann, wie in Fig. 2a,b dargestellt, auf die Klappen 14 und drückt diese dann entgegen der auf sie wirkenden Federkraft auseinander, so daß sich nach und nach die zunächst verschlossene Zusatzöffnung 9 öffnet und somit das Schaltmesser 11 im eingeschalteten Zustand nur noch durch die Zusatzöffnung 9 aus der Löschkammer herausragt.As soon as the switch is closed by the switch blade 11, So moves to the point B on the fixed contact 7 to and it enters the expansion chamber as described above, meets its shaft 11b sometime, as shown in Fig. 2a, b, on the Flaps 14 and then pushes them against the spring force acting on them apart, so that gradually closed the first Additional opening 9 opens and thus the switch blade 11 in switched state only through the additional opening 9 from the Extinguishing chamber protrudes.

Dieser Zustand ist in den Fig. 3a,b dargestellt. Die Klappen 14 sind nun ganz geöffnet, so daß sie die Zusatzöffnung 9 freigeben. Sie werden von dem Schaltmesserschaft 11a in dieser Stellung gehalten, während die Schaltmesserkontaktspitze 11a die Löschplatten 10 auseinanderdrückt.This state is shown in FIGS. 3a, b. The flaps 14 are now completely open, so that they release the additional opening 9. They are from the Schaltmesserschaft 11 a held in this position, while the Switch blade contact tip 11 a presses the quenching plates 10 apart.

Beim Ausschalten, also wenn das Schaltmesser 11 vom Kontakt 12 und somit vom feststehenden Kontakt 7 getrennt wird, vollziehen Schaltmesser 11 und Klappen 14 den umgekehrten Bewegungsablauf. Je weiter sich das Schaltmesser 11 aus der Löschkammer 1 heraus bewegt, also eine Drehbewegung entgegen dem Uhrzeigersinn um den Punkt B ausführt, um so mehr zieht es sich aus der Zusatzöffnung 9 zurück, so daß die Klappen 14 durch die auf sie wirkende Federkraft nach und nach die in den Fig. 1a,b dargestellte Ausgangsposition einnehmen und den Öffnungsteil 9 wieder verschließen.When switching off, so if the switch blade 11 from the contact 12 and thus separated from the fixed contact 7, perform switch blades 11 and flaps 14 the reverse movement. The farther the switch blade 11 moves out of the quenching chamber 1, so makes a counter-clockwise rotation about point B, the more it withdraws from the additional opening 9, so that the flaps 14 by the spring force acting on them gradually the assume the starting position shown in FIGS. 1a, b and the opening part Close 9 again.

Die Zusatzöffnung ermöglicht für das sichelförmige Schaltmesser 11, daß seine Bewegungsbahn zum großen Teil in der Löschkammer 1 liegt, so daß bei gleichem Platzbedarf für die erfindungsgemäße Löschkammer 1 im Vergleich zu bekannten Löschkammern ein erheblich größeres Kammervolumen erzielt wird.The additional opening allows for the crescent-shaped switch blade 11, that his trajectory is largely in the quenching chamber 1, so that at the same space requirement for the quenching chamber 1 according to the invention in comparison to known extinguishing chambers a considerably larger chamber volume is achieved.

Durch die sich in Abhängigkeit von der Stellung des Schaltmessers 11 bewegenden Klappen 14 wird der Löschvorgang eines beim Abschalten entstehenden Lichtbogens erheblich effizienter. Im Zeitpunkt des Entstehens des Lichtbogens, d.h. wenn sich das Schaltmesser 11 soeben aus seiner geschlossenen Position (vgl. Fig. 3a,b) vom Kontakt 7 zu trennen beginnt, sind die Klappen 14 geöffnet, so daß relativ viel Sauerstoff in die Löschkammer 1, insbesondere auch in die Druckkammer 3, eindringen kann. Dieser ist zu Beginn des Löschvorgangs auch willkommen, da er die möglichst rasche Entstehung des Lichtbogens aus der kleinen Initialflamme fordert, so daß sehr schnell der durch den Lichtbogen hervorgerufene Verdampfungsvorgang an den Löschplatten einsetzen kann und die entstehenden Gase nun rasch und wirkungsvoll den Lichtbogen löschen. Je weiter sich nun das Schaltmesser 11 aus der Löschkammer heraus bewegt, um so mehr schließen sich die Klappen 13 und verhindern somit einerseits eine weitere Zufuhr von Sauerstoff und andererseits ein Austreten der Gase aus der Löschkammer nach unten, was zu einer Ionisierung der Bereiche zwischen den Phasen sowie zur Erde und damit zu Überschlägen (Kurzschluß) führen könnte. Durch die dem Löschvorgang angepaßte Schlitzöffnung 8 werden die Löschgase so gesteuert, daß eine Ionisierung der Isolierstrecke ausgeschlossen ist.By depending on the position of the switch blade 11th Moving flaps 14, the deletion of a shutdown resulting arc significantly more efficient. At the time of emergence of the arc, i. when the switch blade 11 just off its closed position (see Fig. 3a, b) from the contact 7 to separate begins, the flaps 14 are open, so that a relatively large amount of oxygen in the Extinguishing chamber 1, in particular in the pressure chamber 3, penetrate can. This is also welcome at the beginning of the deletion process as he the fastest possible formation of the arc from the small one Initial flame calls, so that very quickly caused by the arc Use evaporation process on the extinguishing plates can and the resulting gases now quickly and effectively the arc Clear. The further now the switch blade 11 from the quenching chamber moved out, the more close the flaps 13 and prevent thus on the one hand a further supply of oxygen and on the other hand a leakage of gases from the quenching chamber down, causing too an ionization of the areas between the phases as well as to earth and so that it could lead to flashovers (short circuit). By the Deletion adapted slot opening 8, the extinguishing gases are controlled so that an ionization of the insulating is excluded.

Zudem wirkt sich die zunächst relativ große und sich dann allmählich schließende Zusatzöffnung 9 beschleunigend auf die in der Druckkammer 3 entstehenden Löschgase aus, was insbesondere in der strömungsarmen Anfangsphase durch Verwirbelung eine effizientere Kühlung und somit ein zuverlässigeres Löschen des Lichtbogens bewirkt. Die Schließgeschwindigkeit der Zusatzöffnung 9 kann durch die Form der Klappen 14 variiert und speziell eingestellt werden.In addition, the initially relatively large and then gradually affects closing additional opening 9 accelerating to the in the pressure chamber 3 resulting extinguishing gases, which is particularly in the low-flow Initial phase by swirling a more efficient cooling and thus causing a more reliable extinguishing of the arc. The closing speed the additional opening 9 can by the shape of the flaps 14 varies and be specially adjusted.

Die erfindungsgemäßen Maßnahmen erhöhen somit auch die Effizienz der Löschkammer erheblich.The measures according to the invention thus also increase the efficiency the quenching chamber considerably.

In den Fig. 4a,b ist ein weiteres Ausführungsbeispiel einer erfindungsgemäßen Löschkammer dargestellt, in der die dem Ausführungsbeispiel gemäß der Fig. 1 bis 3 entsprechenden Teile mit denselben Bezugsziffern bezeichnet sind. Das Ausführungsbeispiel gemäß Fig. 4a,b unterscheidet sich von dem zuvor beschriebenen Ausführungsbeispiel durch einen anderen Verschlußmechanismus für die Zusatzöffnung 9.In Figs. 4a, b is another embodiment of an inventive Löschkammer shown, in which the the embodiment according to FIGS. 1 to 3 corresponding parts with the same reference numerals are designated. The embodiment according to FIG. 4a, b differs from the embodiment described above by a another closure mechanism for the additional opening. 9

Anstatt der Klappen 14 wird hier eine Platte bzw. ein Streifen 15 aus Isolierstoff eingesetzt. Diese bzw. dieser ist am Kontaktende der Löschkammer 1 bei 16 befestigt und verschließt im ausgeschalteten Zustand des Schalters die komplette Zusatzöffung 9. Beim Schließen des Schaltmessers 11 drückt sein Schaft die Platte bzw. den Streifen 15 entgegen der Wirkung einer Feder 17 in das Gehäuse 2 in Richtung auf den Befestigungspunkt 16, wodurch die Zusatzöffnung 9 freigegeben wird. Die Funktionsweise dieses Ausführungsbeispiels ist dieselbe, wie die zuvor beschriebene. Entsprechend der Stellung des Schaltmessers 11 wird der zusätzliche Öffnungsbereich 9 durch die Platte bzw. den Streifen 15 geöffnet bzw. verschlossen. In der Druckkammer 3 sind entsprechend Löschplatten 10 aus beim Erwärmen gasabgebendem Material vorgesehen.Instead of the flaps 14 here is a plate or a strip 15 of insulating material used. This or this is at the contact end of the quenching chamber 1 attached at 16 and closes when turned off the switch the complete additional opening 9. When closing the switch blade 11, its shaft presses against the plate or strip 15 the action of a spring 17 in the housing 2 in the direction of the attachment point 16, whereby the additional opening 9 is released. The Operation of this embodiment is the same as before . described According to the position of the switch blade 11 is the additional opening area 9 opened by the plate or the strip 15 or closed. In the pressure chamber 3 are accordingly Extinguishing plates 10 provided from heating material gasabgebendem.

Claims (12)

  1. Switch with arc extinguishing chamber (1), in particular for medium voltage load disconnector switches for voltages between 6 and 36 kV, having
    a moveable switch blade (11),
    a pressure chamber (3),
    an expansion chamber (4) and
    a partially closeable opening (8) in the expansion chamber (4),
    characterised in that the partially closeable opening extends over the side (8) and lower (9) part of the expansion chamber (4) and the closeable part of the opening affords a supplementary opening (9) in the lower expansion chamber region, which serves for the passage of the disconnector blade shaft (11b), and the supplementary opening (9) is closed by means of at least one flap (14), which is pivotable around an axis running in substance perpendicularly to the lower wall of the expansion chamber (4), in which the supplementary opening (9) is provided.
  2. Switch according to claim 1,
    characterised in that the supplementary opening (9) has the form of a slit.
  3. Switch according to claim 1 or 2,
    characterised in that the width of the opening (8, 9) corresponds to the thickness of the disconnector blade (11).
  4. Switch according to any of claim 1 to 3,
    characterised by two flaps (14) which overlap upon closure.
  5. Switch with arc extinguishing chamber (1), in particular for medium voltage load disconnector switches for voltages between 6 and 36 kV, having
    a moveable switch blade (11),
    a pressure chamber (3),
    an expansion chamber (4) and
    a partially closeable opening (8) in the expansion chamber (4),
    characterised in that the partially closeable opening extends over the side (8) and lower (9) part of the expansion chamber (4) and the closeable part of the opening affords a supplementary opening (9) in the lower expansion chamber region, which serves for the passage of the disconnector blade shaft (11b), and the supplementary opening (9) is closed by means of a plate displaceable along the supplementary opening or a displaceable strip (15).
  6. Switch according to any of claims 1 to 5,
    characterised in that the flaps (14) and the plate or the strip (15) are of insulating material.
  7. Switch according to any of claims 1 to 6,
    characterised in that the flaps (14) and the plate or the strip (15) are spring loaded.
  8. Switch according to any of claims 1 to 7,
    characterised in that in the switched-on condition the supplementary opening (9) is open.
  9. Switch according to any of claims 1 to 8,
    characterised in that in the switched-off condition the supplementary opening (9) is closed.
  10. Switch according to any of claims 1 to 9,
    characterised in that the flaps (14) and the plate or the strip (15) are actuated by means of the switch blade (11).
  11. Switch according to claim 1 to 10,
    characterised by a switch blade (11) moving on a circular path.
  12. Switch according to any of claims 1 to 11,
    characterised by spring loaded arc extinguishing plates (10) in the pressure chamber (3).
EP99107514A 1998-04-20 1999-04-15 Load break switch with arc extinguishing chamber Expired - Lifetime EP0959483B1 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE19817444 1998-04-20
DE19817444A DE19817444C1 (en) 1998-04-20 1998-04-20 MV load breaker switch for MV switchgear

Publications (3)

Publication Number Publication Date
EP0959483A2 EP0959483A2 (en) 1999-11-24
EP0959483A3 EP0959483A3 (en) 2000-06-28
EP0959483B1 true EP0959483B1 (en) 2004-06-16

Family

ID=7865100

Family Applications (1)

Application Number Title Priority Date Filing Date
EP99107514A Expired - Lifetime EP0959483B1 (en) 1998-04-20 1999-04-15 Load break switch with arc extinguishing chamber

Country Status (6)

Country Link
EP (1) EP0959483B1 (en)
AT (1) ATE269582T1 (en)
DE (2) DE19817444C1 (en)
DK (1) DK0959483T3 (en)
ES (1) ES2224485T3 (en)
NO (1) NO317119B1 (en)

Families Citing this family (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE10055416A1 (en) * 2000-11-09 2002-05-29 Siemens Ag Extinguishing light arc between two electrodes involves combination of spark movement by magnetic field and gas releasing plastic; spark is extinguished in electrode region containing plastic
WO2006040418A1 (en) * 2004-10-08 2006-04-20 Abb France Overvoltage protection device provided with arc cutting means and corresponding method
WO2011151476A1 (en) 2010-05-31 2011-12-08 Ormazabal Y Cia., S.L. Gas circuit breaker
US9373617B2 (en) 2011-09-11 2016-06-21 Cree, Inc. High current, low switching loss SiC power module
US9640617B2 (en) 2011-09-11 2017-05-02 Cree, Inc. High performance power module
WO2013036370A1 (en) 2011-09-11 2013-03-14 Cree, Inc. High current density power module comprising transistors with improved layout
EP2713383B1 (en) 2012-09-26 2014-11-12 ABB Technology AG Quenching chamber of a medium-voltage switch disconnector
CN108400073B (en) * 2018-02-26 2019-10-15 西安交通大学 A kind of current-limiting type air type dc circuit breaker based on narrow slit arcing

Family Cites Families (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE652800C (en) * 1934-09-02 1937-11-08 Frida Strauss Geb Ruppel Switch with arc extinguishing by flowing compressed gas
FR1307434A (en) * 1961-10-13 1962-10-26 Inst Extinguishing chamber for electrical disconnectors
FR2034118A1 (en) * 1969-02-05 1970-12-11 Kesl Karel
US3671697A (en) * 1971-01-07 1972-06-20 S & C Electric Co Switch construction with load break device having a movable slat, a gas expansion chamber and a gas muffler
DE9217024U1 (en) * 1992-12-15 1993-02-04 Fritz Driescher KG Spezialfabrik für Elektrizitätswerksbedarf GmbH & Co, 41844 Wegberg Load break switches for medium-voltage systems
DE19522852A1 (en) * 1995-06-23 1997-01-02 Driescher Spezialfab Fritz Quench chamber for load disconnection switch
DE19540552A1 (en) * 1995-10-31 1997-05-07 Driescher Spezialfab Fritz Disconnectors, in particular medium-voltage switch disconnectors

Also Published As

Publication number Publication date
DE19817444C1 (en) 1999-09-16
NO991642D0 (en) 1999-04-07
NO991642L (en) 1999-10-21
NO317119B1 (en) 2004-08-16
DK0959483T3 (en) 2004-10-11
ES2224485T3 (en) 2005-03-01
ATE269582T1 (en) 2004-07-15
EP0959483A3 (en) 2000-06-28
EP0959483A2 (en) 1999-11-24
DE59909726D1 (en) 2004-07-22

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