EP2277183B1 - Modular ring-shaped core - Google Patents
Modular ring-shaped core Download PDFInfo
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- EP2277183B1 EP2277183B1 EP08758487A EP08758487A EP2277183B1 EP 2277183 B1 EP2277183 B1 EP 2277183B1 EP 08758487 A EP08758487 A EP 08758487A EP 08758487 A EP08758487 A EP 08758487A EP 2277183 B1 EP2277183 B1 EP 2277183B1
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- ring
- winding
- core
- modules
- module
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- 238000004804 winding Methods 0.000 claims abstract description 82
- 230000008878 coupling Effects 0.000 claims description 5
- 238000010168 coupling process Methods 0.000 claims description 5
- 238000005859 coupling reaction Methods 0.000 claims description 5
- 239000002184 metal Substances 0.000 abstract description 6
- 230000001066 destructive effect Effects 0.000 abstract 1
- 239000010410 layer Substances 0.000 description 5
- 238000009826 distribution Methods 0.000 description 4
- 238000009413 insulation Methods 0.000 description 3
- 238000004519 manufacturing process Methods 0.000 description 3
- 238000003860 storage Methods 0.000 description 3
- 239000004020 conductor Substances 0.000 description 2
- 239000012792 core layer Substances 0.000 description 2
- 230000002950 deficient Effects 0.000 description 2
- 230000004907 flux Effects 0.000 description 2
- 239000011810 insulating material Substances 0.000 description 2
- 238000002955 isolation Methods 0.000 description 2
- 238000000034 method Methods 0.000 description 2
- 230000008569 process Effects 0.000 description 2
- 238000005266 casting Methods 0.000 description 1
- 238000010276 construction Methods 0.000 description 1
- 238000013016 damping Methods 0.000 description 1
- 230000001419 dependent effect Effects 0.000 description 1
- 238000010292 electrical insulation Methods 0.000 description 1
- 239000003822 epoxy resin Substances 0.000 description 1
- 238000012423 maintenance Methods 0.000 description 1
- 230000007246 mechanism Effects 0.000 description 1
- 229920000647 polyepoxide Polymers 0.000 description 1
- 230000009467 reduction Effects 0.000 description 1
- 230000009466 transformation Effects 0.000 description 1
- 230000001131 transforming effect Effects 0.000 description 1
- 230000007704 transition Effects 0.000 description 1
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Classifications
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01F—MAGNETS; INDUCTANCES; TRANSFORMERS; SELECTION OF MATERIALS FOR THEIR MAGNETIC PROPERTIES
- H01F30/00—Fixed transformers not covered by group H01F19/00
- H01F30/06—Fixed transformers not covered by group H01F19/00 characterised by the structure
- H01F30/16—Toroidal transformers
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01F—MAGNETS; INDUCTANCES; TRANSFORMERS; SELECTION OF MATERIALS FOR THEIR MAGNETIC PROPERTIES
- H01F27/00—Details of transformers or inductances, in general
- H01F27/24—Magnetic cores
- H01F27/26—Fastening parts of the core together; Fastening or mounting the core on casing or support
- H01F27/263—Fastening parts of the core together
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01F—MAGNETS; INDUCTANCES; TRANSFORMERS; SELECTION OF MATERIALS FOR THEIR MAGNETIC PROPERTIES
- H01F27/00—Details of transformers or inductances, in general
- H01F27/28—Coils; Windings; Conductive connections
- H01F27/30—Fastening or clamping coils, windings, or parts thereof together; Fastening or mounting coils or windings on core, casing, or other support
- H01F27/306—Fastening or mounting coils or windings on core, casing or other support
Definitions
- the invention relates to a toroidal core for a power transformer, wherein the toroidal core extends in the form of a closed torus-like structure about an imaginary central axis and wherein this is formed from a plurality of adjacent layers of sheet metal.
- the invention also relates to an arrangement of a plurality of toroidal cores with winding modules.
- a 3-phase power transformer usually has at least one primary and one secondary winding for each phase, so that a total of at least 6 individual windings result.
- 3-phase power transformers are known in which all windings are arranged around a common transformer core having a plurality of legs, wherein one leg is then wrapped, for example, each of a primary and a secondary winding of a phase.
- 3-phase power transformers which are formed by suitable electrical interconnection of three single-phase transformers in which the primary and secondary windings are each a phase wrapped around a separate annular transformer core.
- the single-phase primary and / or secondary winding also in the form of several separate winding segments, for example along a circular path, wherein all winding segments are penetrated by the annular core, as for example in the European patent specification EP 0 557 549 B1 described.
- a disadvantage of the prior art described there is in particular that the arrangement does not allow a modular exchange of winding segments of such a ready assembled transformer, without also further winding segments also at least temporarily remove from the transformer core.
- the ring core according to the invention is characterized in that it is formed along the torus-like structure of at least three mutually connectable and detachable core section modules and that the connection of the core section modules is provided by toothing individual sheet metal layers or sheet metal layer areas.
- the modular design of a ring core according to the invention of at least three, preferably identical, core section modules, which are also detachable from each other, allows selective disassembly of the individual transformer components, such as winding modules or winding segments, switches are arranged along the ring core and are penetrated by this. The maintenance effort when replacing a winding module is thereby reduced in an advantageous manner.
- the detachable connection of the individual core section modules takes place according to the invention by toothing and / or overlapping a plurality of sheet metal layers or sheet metal layer areas between adjacent core sections.
- a sufficient guidance of a magnetic flux in the transition region of adjacent core sections is ensured.
- this has at least in sections a core cross-section, which is approximated to an ellipse or a circle.
- a core cross-section which is approximated to an ellipse or a circle.
- each core section module is assigned exactly one winding module, each having at least one electrical winding.
- Winding module and core section module are then easily replaced together in a fault, without having to remove another, not faulty winding module from the toroidal core.
- all winding and core section modules are identical.
- At least two galvanically separated electrical windings are arranged in a winding module.
- a core section module is non-positively and / or positively connected to the respective associated winding module, so that this results in a transformer module.
- the winding modules can be electrically coupled to one another. It is also envisaged that common electrical connections are led out for groups of electrically coupled winding modules.
- a suitable such electrical coupling for example by a series and / or parallel connection of windings of several winding modules, the functionality of a 1-phase power transformer can be achieved, which can be coupled to the common terminals with an electrical power supply network.
- the object of the invention is also achieved by an arrangement of toroidal cores with winding modules according to one of claims 3 to 7, wherein the respective toroidal cores with winding modules can be arranged in a common connection structure and can be introduced separately therefrom and non-destructively.
- connection structure a device is to be considered by means of which at least two ring cores with winding modules or two complete toroidal transformers are mechanically connected to each other.
- a connection structure may also include electrical conductors and parts of electrical coupling devices, such as plugs, sockets or terminals, using one or more of the windings or winding modules Toroidal transformers are connectable.
- the electrical connections of a winding or of a winding module expediently have a corresponding counterpart of the coupling device.
- Power distribution networks are usually constructed in 3-phase.
- the functionality of a previously described arrangement of inventive ring core with associated and suitably electrically interconnected windings corresponds to the functionality of a 1-phase power transformer.
- an arrangement and the electrical connection of three single-phase transformers are suitable, which also represents a preferred embodiment of the arrangement according to the invention.
- a likewise modular arrangement of three already inventively modular ring cores with connected winding modules in a common connection structure (s.o.) Is provided.
- the effort to exchange a single defective winding module of such a connected arrangement of multiple 1-phase transformers is further simplified.
- connection structure has devices for the electrical coupling of individual winding modules and / or common electrical connections of the winding modules.
- Such an electrical connection can be realized for example via a plug connection. The connection of such an arrangement to a power supply network is thereby simplified.
- At least two toroidal cores with winding modules are arranged axially along a common central axis or also on a common plane transversely to the respective central axis.
- the construction of the common connection structure is thereby simplified and the space required is reduced.
- this ring core has 3, 4, 5, 6, 7, 8, 9, 10, 11 or 12 core section modules.
- Fig. 1 shows a first transformer module 10 having a first core section module 11 with associated winding module, wherein the winding modules having a first 14 and a second 16 electrical winding, which are wound around a winding axis.
- Core section module and winding module are mechanically connected to a transformer module, so that it can be raised or moved as a component.
- transformer modules 10 are the starting point for a modular transformer core.
- the structural identity is essential for the interchangeability of the respective transformer modules with each other.
- a number of 3, 4, 5, 6, 7, 8, 9, 10, 11 or 12 core section modules per ring core are suitable.
- at least 3 core section modules are required, a higher number than 12 is increasingly unfavorable from a constructive point of view, since the respective winding modules turn out to be correspondingly narrower and thus lead to more outlay in production.
- the manufacturing effort also increases with an excessive number of Kernabitess- or winding modules.
- Fig. 2 shows a hexagonal ring core with six transformer modules 10, 20, 30, 40, 50, 60, which are arranged in a circular orbit about a central axis 70.
- transformer module 10 and the five identical other transformer modules 20, 30, 40, 50, 60 are an integral part of the illustrated ring core with winding modules.
- Each core section module 11 is connected by a suitable connection, for example, a mutual interlocking respectively adjacent core packages forming the core section modules, with further core section modules adjacent to each other.
- a suitable connection for example, a mutual interlocking respectively adjacent core packages forming the core section modules, with further core section modules adjacent to each other.
- Such a toothing improves the guiding of the magnetic flux along the extension of the toroidal core, in particular in the connecting regions.
- further connection mechanisms are provided, which increase the mechanical strength of the connection of adjacent core section modules, for example a screw connection through the toothing region of adjacent core section modules.
- gaps between the respective core section modules shown in the figure are merely intended to graphically show the boundary area between adjacent core section modules. In a real arrangement, such a gap is not provided, moreover, the sheets, which form the ring core in its main thing, interlocked in the border areas.
- Fig. 3 shows an arrangement 100 of three ring cores or toroidal transformers in a side view.
- Each toroidal transformer has six transformer modules in this example, of which only three are visible in this lateral perspective.
- Each of the illustrated transformer modules 101, 102, 103, 111, 112, 113, 121, 122, 123 each has an identical core section module and a winding module, similar to that in FIG Fig. 1 shown transformer module.
- the transformer modules 101, 102, 103 are in this illustration the visible part of a first toroidal transformer, which is formed in the main of these three transformer modules and three further located in the rear area imaginary transformer modules.
- the transformer modules 111, 112, 103 in this illustration are the visible part of a second toroidal transformer and the transformer modules 121, 122, 123 in this illustration the visible part of a third toroidal transformer.
- All three toroidal transformers are arranged vertically above one another along a common central axis, not shown.
- insulation blocks 130 are arranged, which remove the load of each located above toroidal transformers down. These preferably have an electrical insulation capability and also have vibration-damping properties.
- the insulation blocks 130 are here to be regarded as part of a common connection structure of the three toroidal transformers. In this way, moreover, the operating noise of such an arrangement can be reduced.
- the third toroidal transformer could be slightly raised with a first mobile lifting device and the second toroidal transformer could be removed from the connecting structure with a second mobile lifting device.
- the electrical connections of the second toroidal transformer which are preferably designed as easily detachable connections such as a connector to solve.
- the electrical connections of the transformer module 112 to be exchanged with the other transformer modules of the same toroidal transformer are also to be solved.
- the respective transformer module 112 is to be removed from the toroidal core, wherein the toroidal core must be located during this process in a safe parking position, so that it is the mechanically separated part of the toroidal core 111, 113 is not damaged.
- a replacement transformer module of identical design is to be inserted into the separated ring core and to produce the electrical connections of the replacement transformer module with the other modules of the second ring core.
- the second toroidal transformer is to be returned to the original position within the connection structure, the electrical connections to the first and the third toroidal transformer and the third toroidal transformer with the first mobile lifting device on the insulation blocks 130 set down.
- a further embodiment according to the invention - not shown in a figure - of a connection structure for a plurality of modular toroidal transformers consists of a shelf-like storage device with several superimposed planes, wherein in each plane a toroidal transformer can be positioned and electrically and mechanically connected to this. A lifting operation of over that toroidal transformer with a transformer module to be replaced further toroidal transformers is eliminated.
- the levels of the shelf-like storage device, on which a toroidal core is to be positioned with the aid of telescopic rails from the storage device movable. The removal process of a toroidal transformer is thereby further simplified.
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- Engineering & Computer Science (AREA)
- Power Engineering (AREA)
- Coils Or Transformers For Communication (AREA)
- Coupling Device And Connection With Printed Circuit (AREA)
- Measurement And Recording Of Electrical Phenomena And Electrical Characteristics Of The Living Body (AREA)
- Ultra Sonic Daignosis Equipment (AREA)
Abstract
Description
Die Erfindung betrifft einen Ringkern für einen Leistungstransformator, wobei sich der Ringkern in Form einer geschlossenen Torus-ähnlichen Struktur um eine gedachte Mittelachse erstreckt und wobei dieser aus einer Vielzahl aneinandergrenzender Lagen Blech gebildet wird. Die Erfindung betrifft auch eine Anordnung von mehreren Ringkernen mit Wicklungsmodulen.The invention relates to a toroidal core for a power transformer, wherein the toroidal core extends in the form of a closed torus-like structure about an imaginary central axis and wherein this is formed from a plurality of adjacent layers of sheet metal. The invention also relates to an arrangement of a plurality of toroidal cores with winding modules.
Es ist seit langem bekannt, Transformatoren bei der Verteilung elektrischer Energie zu nutzen, indem Wechselspannung von einem hohen Niveau zu einem niederen Spannungsniveau oder umgekehrt transformiert oder umgespannt wird. Energieverteilungsnetze sind üblicherweise 3-phasig aufgebaut, d.h. es liegen an drei zueinander gehörenden Einzelleitern jeweils um 120° Phasenwinkel verschobene Spannungen an, deren phasenrichtige mathematische Summation im symmetrischen Zustand des Energieverteilungsnetzes stets den Wert null ergibt. Leistungsbereiche derartiger Leistungstransformatoren reichen von einigen kVA bis hin zu mehreren 100 MVA, die Betriebsspannungen liegen üblicherweise zwischen 6kV und 380kV.It has long been known to use transformers in the distribution of electrical energy by transforming or switching AC voltage from a high level to a low voltage level or vice versa. Power distribution networks are usually constructed in 3-phase, i. there are three mutually associated individual conductors in each case by 120 ° phase angle shifted voltages whose in-phase mathematical summation in the symmetrical state of the energy distribution network always gives the value zero. Power ranges of such power transformers range from a few kVA up to several 100 MVA, the operating voltages are usually between 6kV and 380kV.
Ein 3-phasiger Leistungstransformator weist üblicherweise für jede Phase wenigstens je eine Primär- und eine Sekundärwicklung auf, so dass sich in der Summe wenigstens 6 Einzelwicklungen ergeben. Es sind 3-phasige Leistungstransformatoren bekannt, bei welchen alle Wicklungen um einen gemeinsamen Transformatorkern mit mehreren Schenkeln angeordnet sind, wobei ein Schenkel dann beispielsweise von je einer Primär- und eine Sekundärwicklung einer Phase umwickelt ist.A 3-phase power transformer usually has at least one primary and one secondary winding for each phase, so that a total of at least 6 individual windings result. There are 3-phase power transformers are known in which all windings are arranged around a common transformer core having a plurality of legs, wherein one leg is then wrapped, for example, each of a primary and a secondary winding of a phase.
Es sind auch 3-phasige Leistungstransformatoren bekannt, welche durch geeignete elektrische Verschaltung aus drei 1-phasigen Transformatoren gebildet werden, bei welchen die Primär- und Sekundärwicklung je einer Phase jeweils um einen separaten ringförmigen Transformatorkern umwickelt sind.There are also known 3-phase power transformers, which are formed by suitable electrical interconnection of three single-phase transformers in which the primary and secondary windings are each a phase wrapped around a separate annular transformer core.
Bei einer derartigen 1-phasigen Wicklungsanordnung mit ringförmigem Kern erweist es sich aus Gründen der Kompaktheit der Anordnung als vorteilhaft, die 1-phasige Primär- und/oder Sekundärwicklung ebenfalls in Form von mehreren separaten Wicklungssegmenten anzuordnen, beispielsweise entlang einer kreisähnlichen Bahn, wobei alle Wicklungssegmente von dem ringförmigen Kern durchgriffen werden, wie beispielsweise in der europäischen Patentschrift
Nachteilig an dem dort beschriebenen Stand der Technik ist insbesondere, dass die Anordnung keinen modularen Austausch von Wicklungssegmenten eines derartigen fertig montierten Transformators zulässt, ohne weitere Wicklungssegmente ebenfalls zumindest vorübergehend vom Transformatorkern zu entfernen.A disadvantage of the prior art described there is in particular that the arrangement does not allow a modular exchange of winding segments of such a ready assembled transformer, without also further winding segments also at least temporarily remove from the transformer core.
Ausgehend von diesem Stand der Technik ist es Aufgabe der Erfindung, für einen Ringkern für einen Leistungstransformator der eingangs genannten Art den Aufwand bei dem Austausch eines Wicklungssegmentes bei einem Transformator mit einem ringförmigen Transformatorkern und mehreren Wicklungssegmenten zu reduzieren.Based on this prior art, it is an object of the invention to reduce the expense of replacing a winding segment in a transformer with an annular transformer core and a plurality of winding segments for a ring core for a power transformer of the type mentioned.
Diese Aufgabe wird erfindungsgemäß gelöst durch einen Ringkern mit den im Anspruch 1 angegebenen Merkmalen.This object is achieved by a toroidal core having the features specified in claim 1.
Demgemäß kennzeichnet sich der erfindungsgemäße Ringkern dadurch, dass dieser längs der Torus-ähnlichen Struktur aus wenigstens drei miteinander verbind- und voneinander lösbaren Kernabschnittsmodulen gebildet ist und dass die Verbindung der Kernabschnittsmodule mittels Verzahnung einzelner Blechlagen beziehungsweise Blechlagenbereiche vorgesehen ist.Accordingly, the ring core according to the invention is characterized in that it is formed along the torus-like structure of at least three mutually connectable and detachable core section modules and that the connection of the core section modules is provided by toothing individual sheet metal layers or sheet metal layer areas.
Der modulare Aufbau eines erfindungsgemäßen Ringkerns aus wenigstens drei, vorzugsweise baugleichen, Kernabschnittsmodulen, welche zudem voneinander lösbar sind, ermöglicht eine selektive Demontage der einzelnen Transformatorkomponenten, wie Wicklungsmodule bzw. Wicklungssegmenten, Weiche längs des Ringkerns angeordnet sind und von diesem durchgriffen werden. Der Wartungsaufwand beim Austausch eines Wicklungsmoduls ist hierdurch in vorteilhafter Weise reduziert.The modular design of a ring core according to the invention of at least three, preferably identical, core section modules, which are also detachable from each other, allows selective disassembly of the individual transformer components, such as winding modules or winding segments, switches are arranged along the ring core and are penetrated by this. The maintenance effort when replacing a winding module is thereby reduced in an advantageous manner.
Die lösbare Verbindung der einzelnen Kernabschnittsmodule erfolgt erfindungsgemäß durch Verzahnung und/oder Überlappung mehrerer Blechlagen oder Blechlagenbereiche zwischen aneinandergrenzenden Kernabschnitten. Somit ist eine hinreichende Führung eines magnetischen Flusses im Übergangsbereich aneinandergrenzender Kernabschnitte gewährleistet.The detachable connection of the individual core section modules takes place according to the invention by toothing and / or overlapping a plurality of sheet metal layers or sheet metal layer areas between adjacent core sections. Thus, a sufficient guidance of a magnetic flux in the transition region of adjacent core sections is ensured.
In einer weiteren Ausführungsform des erfindungsgemäßen Ringkernes weist dieser zumindest abschnittsweise einen Kernquerschnitt auf, der an eine Ellipse oder einen Kreis angenähert ist. Eine derartige Annäherung ist beispielsweise durch eine Schichtung des Kernes aus mehreren Blechpaketlagen mit jeweils einem unterschiedlichen rechteckförmigen Querschnitt je Blechpaketlage möglich.In a further embodiment of the ring core according to the invention, this has at least in sections a core cross-section, which is approximated to an ellipse or a circle. Such an approximation is possible, for example, by a layering of the core of a plurality of laminated core layers, each having a different rectangular cross-section per laminated core layer.
In einer besonders bevorzugten Ausgestaltung des erfindungsgemäßen Ringkernes ist jedem Kernabschnittsmodul genau ein Wicklungsmodul mit jeweils wenigstens einer elektrischen Wicklung zugeordnet.In a particularly preferred embodiment of the toroidal core according to the invention, each core section module is assigned exactly one winding module, each having at least one electrical winding.
Wicklungsmodul und Kernabschnittsmodul sind dann in einem Störfall leicht gemeinsam auswechselbar, ohne ein weiteres, nicht fehlerbehaftetes Wicklungsmodul vom Ringkern entfernen zu müssen. Vorzugsweise sind alle Wicklungs- und Kernabschnittsmodule baugleich. Dieses Vorteile ergeben sich sowohl für einen kreisrunden als auch für einen polygonalen Ringkern, beispielsweise mit, 3, 4, 5, 6, 7, 8, 9, 10, 11 oder 12 Ecken.Winding module and core section module are then easily replaced together in a fault, without having to remove another, not faulty winding module from the toroidal core. Preferably, all winding and core section modules are identical. These advantages arise both for a circular and for a polygonal ring core, for example, with 3, 4, 5, 6, 7, 8, 9, 10, 11 or 12 corners.
Gemäß einer weiteren Ausgestaltung des erfindungsgemäßen Ringkernes sind in einem Wicklungsmodul wenigstens zwei galvanisch voneinander getrennte elektrische Wicklungen angeordnet.
Hierdurch ist beispielsweise die gemeinsame Anordnung eines Teils einer Primär- und einer Sekundärwicklung eines Leistungstransformators innerhalb eines Wicklungsmoduls ermöglicht. Der Fertigungsaufwand ist hierdurch vorteilhaft verringert.According to a further embodiment of the ring core according to the invention at least two galvanically separated electrical windings are arranged in a winding module.
As a result, for example, the joint arrangement of a portion of a primary and a secondary winding of a power transformer within a winding module is possible. The production cost is thereby advantageously reduced.
Mittels Vergießen eines derartigen Wicklungsmoduls mit einem geeigneten Isolierstoff, beispielsweise auf Basis eines Epoxydharzes, wird zudem die Fehleranfälligkeit des Wicklungsmoduls reduziert, da es in diesem Fall vor mechanischen Einflüssen besser geschützt ist. Zudem ermöglicht die Verwendung eines Isolationsmaterials eine Verringerung des erforderlichen Isolationsabstandes zwischen benachbart angeordneten Wicklungsmodulen.By casting such a winding module with a suitable insulating material, for example based on an epoxy resin, also the susceptibility of the winding module is reduced, since it is better protected in this case from mechanical influences. In addition, the use of an insulating material allows a reduction in the required isolation distance between adjacent arranged winding modules.
In einer Variante des erfindungsgemäßen Ringkernes ist ein Kernabschnittsmodul kraft- und/oder formschlüssig mit dem jeweils zugeordneten Wicklungsmodul verbunden, so dass sich daraus ein Transformatormodul ergibt.In a variant of the ring core according to the invention, a core section module is non-positively and / or positively connected to the respective associated winding module, so that this results in a transformer module.
Die gemeinsame Demontage und anschließende Montage eines entsprechenden Ersatz-Transformatormoduls, also einem Ersatz-Kernabschnittsmodul mit einem Ersatz-Wicklungsmodul, wird hierdurch weiter vereinfacht.The joint disassembly and subsequent assembly of a corresponding replacement transformer module, ie a replacement core section module with a replacement winding module, thereby further simplified.
Gemäß einer bevorzugten Ausgestaltung des Ringkernes mit zugeordneten Wicklungsmodulen sind die Wicklungsmodule elektrisch miteinander koppelbar. Es ist auch vorgesehen, dass für Gruppen von elektrisch gekoppelten Wicklungsmodulen gemeinsame elektrische Anschlüsse herausgeführt sind.According to a preferred embodiment of the ring core with associated winding modules, the winding modules can be electrically coupled to one another. It is also envisaged that common electrical connections are led out for groups of electrically coupled winding modules.
Durch eine geeignete derartige elektrische Koppelung, beispielsweise durch eine Reihen- und/oder Parallelschaltung von Wicklungen mehrerer Wicklungsmodule, ist die Funktionalität eines 1-phasigen Leistungstransformators erzielbar, welcher an den gemeinsamen Anschlüssen mit einem elektrischen Energieversorgungsnetz koppelbar ist.By a suitable such electrical coupling, for example by a series and / or parallel connection of windings of several winding modules, the functionality of a 1-phase power transformer can be achieved, which can be coupled to the common terminals with an electrical power supply network.
Die erfindungsgemäße Aufgabe wird auch gelöst durch eine Anordnung von Ringkernen mit Wicklungsmodulen gemäß einem der Ansprüche 3 bis 7, wobei die jeweiligen Ringkerne mit Wicklungsmodulen in einer gemeinsamen Verbindungsstruktur anordenbar sind und in diese separat einbringbar und aus dieser zerstörungsfrei entfernbar sind.The object of the invention is also achieved by an arrangement of toroidal cores with winding modules according to one of claims 3 to 7, wherein the respective toroidal cores with winding modules can be arranged in a common connection structure and can be introduced separately therefrom and non-destructively.
Als eine Verbindungsstruktur ist eine Vorrichtung anzusehen, mittels welcher wenigstens zwei Ringkerne mit Wicklungsmodulen beziehungsweise zwei komplette Ringkerntransformatoren mechanisch miteinander verbindbar sind. Darüber hinaus kann eine derartige Verbindungsstruktur auch elektrische Leiter und Teile elektrischer Kopplungsvorrichtungen, beispielsweise Stecker, Buchsen oder Klemmen, aufweisen unter Verwendung derer die Wicklungen oder Wicklungsmodule eines oder mehrerer Ringkerntransformatoren verbindbar sind. Die elektrischen Anschlüsse einer Wicklung oder eines Wicklungsmoduls weisen zweckmäßigerweise ein entsprechendes Gegenstück der Kopplungsvorrichtung auf.As a connection structure, a device is to be considered by means of which at least two ring cores with winding modules or two complete toroidal transformers are mechanically connected to each other. In addition, such a connection structure may also include electrical conductors and parts of electrical coupling devices, such as plugs, sockets or terminals, using one or more of the windings or winding modules Toroidal transformers are connectable. The electrical connections of a winding or of a winding module expediently have a corresponding counterpart of the coupling device.
Energieverteilungsnetze sind üblicherweise 3-phasig aufgebaut. Die Funktionalität einer zuvor beschriebenen Anordnung aus erfindungsgemäßem Ringkern mit zugeordneten und geeignet elektrisch miteinander verschalteten Wicklungen entspricht der Funktionalität eines 1-phasigen Leistungstransformators. Zur Erreichung der Funktionalität eines 3-phasigen Leistungstransformators sind eine Anordnung und die elektrische Verschaltung dreier 1-phasiger Transformatoren geeignet, was auch eine bevorzugte Ausführungsform der erfindungsgemäßen Anordnung darstellt.Power distribution networks are usually constructed in 3-phase. The functionality of a previously described arrangement of inventive ring core with associated and suitably electrically interconnected windings corresponds to the functionality of a 1-phase power transformer. To achieve the functionality of a 3-phase power transformer, an arrangement and the electrical connection of three single-phase transformers are suitable, which also represents a preferred embodiment of the arrangement according to the invention.
Erfindungsgemäß ist eine ebenfalls modulare Anordnung dreier bereits erfindungsgemäß modular aufgebauter Ringkerne mit verbundenen Wicklungsmodulen in einer gemeinsamen Verbindungsstruktur (s.o.) vorgesehen. Der Aufwand zum Tausch eines einzigen defekten Wicklungsmoduls einer derart verschalteten Anordnung mehrerer 1-phasiger Transformatoren ist dadurch weiter vereinfacht.According to the invention, a likewise modular arrangement of three already inventively modular ring cores with connected winding modules in a common connection structure (s.o.) Is provided. The effort to exchange a single defective winding module of such a connected arrangement of multiple 1-phase transformers is further simplified.
In einer besonders bevorzugten Ausgestaltung der erfindungsgemäßen Anordnung weist die Verbindungsstruktur Vorrichtungen zur elektrischen Ankopplung von einzelnen Wicklungsmodulen und/oder gemeinsamer elektrischer Anschlüsse der Wicklungsmodule auf. Eine solche elektrische Verbindung ist beispielsweise über eine Steckverbindung realisierbar. Der Anschluss einer solchen Anordnung an ein Energieversorgungsnetz ist dadurch vereinfacht.In a particularly preferred embodiment of the arrangement according to the invention, the connection structure has devices for the electrical coupling of individual winding modules and / or common electrical connections of the winding modules. Such an electrical connection can be realized for example via a plug connection. The connection of such an arrangement to a power supply network is thereby simplified.
Gemäß weiteren Ausgestaltungen der erfindungsgemäßen Anordnung sind wenigstens zwei Ringkerne mit Wicklungsmodulen axial längs einer gemeinsamen Mittelachse oder aber auch auf einer gemeinsamen Ebene quer zur jeweiligen Mittelachse angeordnet. Die Konstruktion der gemeinsamen Verbindungsstruktur ist dadurch vereinfacht und der benötigte Platz reduziert.According to further embodiments of the arrangement according to the invention, at least two toroidal cores with winding modules are arranged axially along a common central axis or also on a common plane transversely to the respective central axis. The construction of the common connection structure is thereby simplified and the space required is reduced.
In weiteren bevorzugten Varianten eines erfindungsgemäßen Ringkernes oder erfindungsgemäßen Anordnungen solcher Ringkerne weist dieser Ringkern 3, 4, 5, 6, 7, 8, 9, 10, 11 oder 12 Kernabschnittsmodule auf.In further preferred variants of a ring core according to the invention or arrangements according to the invention of such ring cores, this ring core has 3, 4, 5, 6, 7, 8, 9, 10, 11 or 12 core section modules.
Weitere vorteilhafte Ausgestaltungsmöglichkeiten sind den weiteren abhängigen Ansprüchen zu entnehmen.Further advantageous embodiment possibilities can be found in the further dependent claims.
Anhand der in den Zeichnungen dargestellten Ausführungsbeispiele sollen die Erfindung, weitere Ausführungsformen und weitere Vorteile näher beschrieben werden.Reference to the embodiments illustrated in the drawings, the invention, further embodiments and other advantages will be described in detail.
Es zeigen:
- Fig. 1
- ein erstes Kernabschnittsmodul mit zugeordnetem Wicklungsmodul,
- Fig. 2
- einen Ringkern mit Wicklungsmodulen sowie
- Fig. 3
- eine Anordnung von Ringkernen mit Wicklungsmodulen
- Fig. 1
- a first core section module with associated winding module,
- Fig. 2
- a toroidal core with winding modules as well
- Fig. 3
- an arrangement of toroidal cores with winding modules
Mehrere vorzugsweise baugleiche Transformatormodule 10 sind die Ausgangsbasis für einen modularen Transformatorkern. Die Baugleichheit ist wesentliche Voraussetzung für die Austauschbarkeit der jeweiligen Transformatormodule untereinander. Aus geometrischen Gründen sind - je nach gegebenen Randbedingungen wie Übersetzungsverhältnis des Transformators, Spannungsebene, etc. - insbesondere eine Anzahl von 3, 4, 5, 6, 7, 8, 9, 10 11 oder 12 Kernabschnittsmodulen je Ringkern geeignet. Erfindungsgemäß sind wenigstens 3 Kernabschnittsmodule gefordert, eine höhere Anzahl als 12 ist aus konstruktiver Sicht zunehmend ungünstig, da die jeweiligen Wicklungsmodule entsprechend schmaler ausfallen und damit in der Fertigung zu mehr Aufwand führen. Zudem steigt der Fertigungsaufwand auch mit einer überhöhten Anzahl an Kernabschnitts- bzw. Wicklungsmodulen.Several preferably
Jedes Kernabschnittsmodul 11 ist durch eine geeignete Verbindung, beispielsweise einer gegenseitigen Verzahnung jeweils benachbarter die Kernabschnittsmodule bildender Blechpakete, mit beiderseits angrenzenden weiteren Kernabschnittsmodulen verbunden. Eine derartige Verzahnung verbessert das Führen des magnetischen Flusses längs der Erstreckung des Ringkernes insbesondere in den Verbindungsbereichen. Darüber hinaus sind weitere Verbindungsmechanismen vorgesehen, welche die mechanische Festigkeit der Verbindung benachbarter Kernabschnittsmodule erhöhen, beispielsweise eine Schraubverbindung durch den Verzahnungsbereich benachbarter Kernabschnittsmodule.Each
Die in der Fig. gezeigten Spalten zwischen den jeweiligen Kernabschnittsmodulen sind lediglich zur graphischen Herausstellung des Grenzbereiches zwischen angrenzenden Kernabschnittsmodulen gedacht. In einer realen Anordnung ist ein solcher Spalt nicht vorgesehen, zudem sind die Bleche, welche den Ringkern in seiner Hauptsache bilden, in den Grenzbereichen miteinander verzahnt.The gaps between the respective core section modules shown in the figure are merely intended to graphically show the boundary area between adjacent core section modules. In a real arrangement, such a gap is not provided, moreover, the sheets, which form the ring core in its main thing, interlocked in the border areas.
Die Transformatormodule 101, 102, 103 sind in dieser Darstellung der sichtbare Teil eines ersten Ringkerntransformators, welcher in der Hauptsache aus diesen drei Transformatormodulen und drei weiteren im rückwärtigen Bereich befindlich gedachten Transformatormodulen gebildet wird. Analog sind die Transformatormodule 111, 112, 103 in dieser Darstellung der sichtbare Teil eines zweiten Ringkerntransformators und die Transformatormodule 121, 122, 123 in dieser Darstellung der sichtbare Teil eines dritten Ringkerntransformators.The
Alle drei Ringkerntransformatoren sind längs einer gemeinsamen und nicht dargestellten Mittelachse vertikal übereinander angeordnet.All three toroidal transformers are arranged vertically above one another along a common central axis, not shown.
Zwischen den Ringkerntransformatoren sind Isolationsblöcke 130 angeordnet, welche die Last der jeweils oben befindlichen Ringkerntransformatoren nach unten abtragen. Diese weisen vorzugsweise eine elektrische Isolationsfähigkeit auf und verfügen zudem über vibrations- dämpfende Eigenschaften. Die Isolationsblöcke 130 sind hierbei als Teil einer gemeinsamen Verbindungsstruktur der drei Ringkerntransformatoren anzusehen. Auf diese Weise ist zudem das Betriebsgeräusch einer derartigen Anordnung reduzierbar.Between the toroidal transformers insulation blocks 130 are arranged, which remove the load of each located above toroidal transformers down. These preferably have an electrical insulation capability and also have vibration-damping properties. The insulation blocks 130 are here to be regarded as part of a common connection structure of the three toroidal transformers. In this way, moreover, the operating noise of such an arrangement can be reduced.
Im Falle des Tausches eines defekten Transformatormoduls, beispielsweise des Transformatormoduls 112, könnte mit einer ersten mobilen Hebevorrichtung der dritte Ringkerntransformator unwesentlich angehoben werden und der zweite Ringkerntransformator mit einer zweiten mobilen Hebevorrichtung aus der Verbindungsstruktur entfernt werden. Hierbei sind die elektrischen Verbindungen des zweiten Ringkerntransformators, welche vorzugsweise als einfach lösbare Verbindungen wie beispielsweise eine Steckverbindung ausgeführt sind, zu lösen. Ebenso zu lösen sind die elektrischen Verbindungen des zu tauschenden Transformatormoduls 112 mit den weiteren Transformatormodulen desselben Ringkerntransformators.In the case of the replacement of a defective transformer module, for example the
Nun ist das betreffende Transformatormodul 112 aus dem Ringkern zu entfernen, wobei der Ringkern während dieses Vorgangs in einer sicheren Abstellposition befindlich sein muss, so dass er der aufgetrennte Teil des Ringkerns 111, 113 mechanisch nicht beschädigt wird.Now, the
Nachfolgend ist ein baugleiches Ersatz-Transformatormodul in den aufgetrennten Ringkern einzusetzen und die elektrischen Verbindungen des Ersatztransformatormoduls mit den weiteren Modulen des zweiten Ringkernes herzustellen. Danach ist der zweite Ringkerntransformator wieder in die ursprüngliche Position innerhalb der Verbindungsstruktur zu verbringen, die elektrischen Verbindungen mit dem ersten und dem dritten Ringkerntransformator wieder herzustellen und der dritte Ringkerntransformator mit der ersten mobilen Hebevorrichtung auf die Isolationsblöcke 130 abzusetzen.Subsequently, a replacement transformer module of identical design is to be inserted into the separated ring core and to produce the electrical connections of the replacement transformer module with the other modules of the second ring core. Thereafter, the second toroidal transformer is to be returned to the original position within the connection structure, the electrical connections to the first and the third toroidal transformer and the third toroidal transformer with the first mobile lifting device on the insulation blocks 130 set down.
Eine weitere erfindungsgemäß - nicht in einer Fig. gezeigte - Ausführungsform einer Verbindungsstruktur für mehrere modulare Ringkerntransformatoren besteht in einer regalähnlichen Ablagevorrichtung mit mehreren übereinanderliegenden Ebenen, wobei in jeder Ebene ein Ringkerntransformator positionierbar und elektrisch sowie mechanisch mit dieser verbindbar ist. Ein Anhebevorgang von über demjenigen Ringkerntransformator mit einem zu tauschenden Transformatormodul befindlichen weiteren Ringkerntransformatoren entfällt. In weiteren Ausgestaltungen einer erfindungsgemäßen Verbindungsstruktur sind die Ebenen der regalähnlichen Ablagevorrichtung, auf welchen ein Ringkern zu positionierbar ist, mit Hilfe von teleskopartigen Schienen aus der Ablagevorrichtung bewegbar. Der Entnahmevorgang eines Ringkerntransformators wird dadurch weiter vereinfacht.A further embodiment according to the invention - not shown in a figure - of a connection structure for a plurality of modular toroidal transformers consists of a shelf-like storage device with several superimposed planes, wherein in each plane a toroidal transformer can be positioned and electrically and mechanically connected to this. A lifting operation of over that toroidal transformer with a transformer module to be replaced further toroidal transformers is eliminated. In further embodiments of a connection structure according to the invention, the levels of the shelf-like storage device, on which a toroidal core is to be positioned, with the aid of telescopic rails from the storage device movable. The removal process of a toroidal transformer is thereby further simplified.
- 1010
- Erstes Transformatormodul mit Kernabschnittsmodul und WicklungsmodulFirst transformer module with core section module and winding module
- 1111
- KernabschnittsmodulCore section module
- 1414
- Erste elektrische WicklungFirst electrical winding
- 1616
- Zweite elektrische WicklungSecond electrical winding
- 1818
- Ringkern mit WicklungsmodulenToroidal core with winding modules
- 2020
- Zweites TransformatormodulSecond transformer module
- 3030
- Drittes TransformatormodulThird transformer module
- 4040
- Viertes TransformatormodulFourth transformer module
- 5050
- Fünftes TransformatormodulFifth transformer module
- 6060
- Sechstes TransformatormodulSixth transformer module
- 7070
- Mittelachsecentral axis
- 100100
- Anordnung von TransformatormodulenArrangement of transformer modules
- 101101
- Zehntes TransformatormodulTenth transformer module
- 102102
- Elftes TransformatormodulEleventh transformer module
- 103103
- Zwölftes TransformatormodulTwelfth transformer module
- 111111
- Dreizehntes TransformatormodulThirteenth Transformer Module
- 112112
- Vierzehntes TransformatormodulFourteenth transformer module
- 113113
- Fünfzehntes TransformatormodulFifteenth transformer module
- 121121
- Sechzehntes TransformatormodulSixteenth transformer module
- 122122
- Siebzehntes TransformatormodulSeventeenth transformer module
- 123123
- Achtzehntes TransformatormodulEighteenth transformer module
- 130130
- Isolationsblockisolation block
Claims (14)
- Ring-shaped core for a power transformer (18), Ring-shaped core extending in the form of a closed toroidal structure around an imaginary mid-axis (70), said power transformer being formed from a large number of mutually adjoining layers of laminate, characterized in that the ring-shaped core is formed along the toroidal structure by at least three core section modules (11) which are connected releasably to one another, and in that the connection of the core section modules is provided by means of meshing of individual laminate layers and/or laminate layer regions.
- Ring-shaped core according to Claim 1, characterized in that at least sections of said ring-shaped core have a core cross section which is close to an ellipse or circle.
- Ring-shaped core according to either of Claims 1 and 2, characterized in that a winding module with in each case at least one electrical winding (14, 16) is associated with each core section module (11).
- Ring-shaped core according to Claim 3, characterized in that at least two DC-isolated electrical windings (14, 16) are arranged in a winding module.
- Ring-shaped core according to either of Claims 3 and 4, characterized in that a core section module (11) is connected in a force-fitting and/or form-fitting manner to the respectively associated winding module, and a transformer module is formed therefrom.
- Ring-shaped core according to one of Claims 3 to 5, characterized in that the winding modules can be coupled to one another electrically.
- Ring-shaped core according to Claim 6, characterized in that electrical terminals which are common to all of the winding modules are passed out.
- Arrangement of ring-shaped cores with winding modules (100) according to one of Claims 3 to 7, characterized in that said ring-shaped cores can be arranged in a common connecting structure, and in that each ring-shaped core arranged therein with winding modules (101-103, 111-113, 121-123) can be introduced separately into the connecting structure and can be removed therefrom without being destroyed.
- Arrangement according to Claim 8, characterized in that the connecting structure has apparatuses for electrically coupling individual winding modules and/or common electrical terminals of the winding modules.
- Arrangement according to either of Claims 8 and 9, characterized in that the ring-shaped cores with winding modules (101-103, 111-113, 121-123) are interconnected using the connecting structure to form an electrical function group, which has the functionality of a three-phase power transformer.
- Arrangement according to one of Claims 8 to 10, characterized in that at least two ring-shaped cores with winding modules (101-103, 111-113, 121-123) are arranged axially along a common mid-axis (70).
- Arrangement according to one of Claims 8 to 10, characterized in that at least two ring-shaped cores with winding modules (101-103, 111-113, 121-123) are arranged on a common plane transversely with respect to the respective mid-axis.
- Arrangement according to one of Claims 8 to 12, characterized in that electrical terminals which are common to at least two ring-shaped cores with winding modules are passed out at the connecting structure.
- Arrangement according to one of the preceding claims, characterized in that the number of core section modules per ring-shaped core is 3, 4, 5, 6, 7, 8, 9, 10, 11 or 12.
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
PCT/EP2008/003826 WO2009138101A1 (en) | 2008-05-13 | 2008-05-13 | Modular ring-shaped core |
Publications (2)
Publication Number | Publication Date |
---|---|
EP2277183A1 EP2277183A1 (en) | 2011-01-26 |
EP2277183B1 true EP2277183B1 (en) | 2011-09-07 |
Family
ID=40380660
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
EP08758487A Not-in-force EP2277183B1 (en) | 2008-05-13 | 2008-05-13 | Modular ring-shaped core |
Country Status (7)
Country | Link |
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US (1) | US20110273256A1 (en) |
EP (1) | EP2277183B1 (en) |
CN (1) | CN102027554A (en) |
AT (1) | ATE523887T1 (en) |
BR (1) | BRPI0822691A2 (en) |
CA (1) | CA2723256A1 (en) |
WO (1) | WO2009138101A1 (en) |
Families Citing this family (8)
Publication number | Priority date | Publication date | Assignee | Title |
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ES2532363T3 (en) * | 2012-09-12 | 2015-03-26 | Abb Technology Ag | Transformer |
US11508509B2 (en) * | 2016-05-13 | 2022-11-22 | Enure, Inc. | Liquid cooled magnetic element |
WO2017197368A1 (en) * | 2016-05-13 | 2017-11-16 | Prippell Technologies, Llc | Liquid cooled magnetic element |
DE102017104138A1 (en) * | 2017-02-28 | 2018-08-30 | Christian-Albrechts-Universität Zu Kiel | Voltage transformer, method of operation and computer program |
US11387030B2 (en) | 2017-06-28 | 2022-07-12 | Prippell Technologies, Llc | Fluid cooled magnetic element |
JP6791927B2 (en) * | 2018-10-23 | 2020-11-25 | ファナック株式会社 | Electromagnetic device with a coil having a tapered portion |
CN114127871A (en) | 2018-11-29 | 2022-03-01 | 恩纽尔有限公司 | Fluid Cooled Magnetics |
UA128371C2 (en) * | 2021-04-19 | 2024-06-26 | Леонід Адамович Білий | Three phase transformer |
Family Cites Families (13)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DE965344C (en) * | 1941-01-28 | 1957-06-06 | Aeg | Iron core for magnetic purposes |
DE1965818U (en) * | 1966-12-05 | 1967-08-10 | Siemens Ag | RING CORE OR RING-LIKE POINT CORE OR LEG CORE FOR CONVERTER. |
ES2076580T3 (en) | 1992-02-26 | 1995-11-01 | Volker Hanser | TOROIDAL TRANSFORMER. |
JPH0828304A (en) * | 1994-07-12 | 1996-01-30 | Toshiba Corp | Gas turbine plant |
DE19501082C1 (en) * | 1995-01-16 | 1996-11-14 | Siemens Ag | Multi-phase transformer |
US5923236A (en) * | 1996-04-29 | 1999-07-13 | Alliedsignal Inc. | Magnetic core-coil assembly for spark ignition system |
US6972967B2 (en) * | 2003-02-20 | 2005-12-06 | Avaya Technology Group | EMC/ESD mitigation module |
US20050001709A1 (en) * | 2003-07-03 | 2005-01-06 | Pais Martin R. | Inductive device and methods for assembling same |
US7623017B2 (en) * | 2004-02-27 | 2009-11-24 | Busweli Harrie R | Toroidal inductive devices and methods of making the same |
US7808359B2 (en) * | 2005-10-21 | 2010-10-05 | Rao Dantam K | Quad-gapped toroidal inductor |
JP4751266B2 (en) * | 2006-02-09 | 2011-08-17 | 株式会社タムラ製作所 | Reactor parts |
WO2007133399A2 (en) * | 2006-05-09 | 2007-11-22 | Spang & Company | Electromagnetic assemblies, core segments that form the same, and their methods of manufacture |
US7656266B2 (en) * | 2008-01-09 | 2010-02-02 | Chang Kern K N | Toroidal star-shaped transformer |
-
2008
- 2008-05-13 CA CA2723256A patent/CA2723256A1/en not_active Abandoned
- 2008-05-13 EP EP08758487A patent/EP2277183B1/en not_active Not-in-force
- 2008-05-13 CN CN2008801292495A patent/CN102027554A/en active Pending
- 2008-05-13 WO PCT/EP2008/003826 patent/WO2009138101A1/en active Application Filing
- 2008-05-13 AT AT08758487T patent/ATE523887T1/en active
- 2008-05-13 BR BRPI0822691-1A patent/BRPI0822691A2/en not_active IP Right Cessation
-
2010
- 2010-11-12 US US12/945,326 patent/US20110273256A1/en not_active Abandoned
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WO2009138101A1 (en) | 2009-11-19 |
EP2277183A1 (en) | 2011-01-26 |
BRPI0822691A2 (en) | 2015-07-07 |
CN102027554A (en) | 2011-04-20 |
US20110273256A1 (en) | 2011-11-10 |
CA2723256A1 (en) | 2009-11-19 |
ATE523887T1 (en) | 2011-09-15 |
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