EP2239745B1 - Voltage transformer with amorphous coil - Google Patents
Voltage transformer with amorphous coil Download PDFInfo
- Publication number
- EP2239745B1 EP2239745B1 EP09005285.3A EP09005285A EP2239745B1 EP 2239745 B1 EP2239745 B1 EP 2239745B1 EP 09005285 A EP09005285 A EP 09005285A EP 2239745 B1 EP2239745 B1 EP 2239745B1
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- European Patent Office
- Prior art keywords
- core
- winding
- transformer
- winding body
- holding apparatus
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- 239000000463 material Substances 0.000 claims description 27
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- 238000010292 electrical insulation Methods 0.000 claims description 4
- 239000003302 ferromagnetic material Substances 0.000 claims description 4
- 230000035939 shock Effects 0.000 claims description 4
- 229920002379 silicone rubber Polymers 0.000 claims description 4
- 239000004945 silicone rubber Substances 0.000 claims description 4
- 239000011810 insulating material Substances 0.000 claims description 3
- 238000000034 method Methods 0.000 claims 2
- 239000011248 coating agent Substances 0.000 claims 1
- 238000000576 coating method Methods 0.000 claims 1
- 239000011162 core material Substances 0.000 description 55
- 239000011152 fibreglass Substances 0.000 description 11
- 238000010276 construction Methods 0.000 description 10
- 239000004020 conductor Substances 0.000 description 5
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- 239000002184 metal Substances 0.000 description 3
- 239000012212 insulator Substances 0.000 description 2
- 239000012811 non-conductive material Substances 0.000 description 2
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- 230000006698 induction Effects 0.000 description 1
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Images
Classifications
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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
- H01F27/06—Mounting, supporting or suspending transformers, reactors or choke coils not being of the signal type
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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
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01F—MAGNETS; INDUCTANCES; TRANSFORMERS; SELECTION OF MATERIALS FOR THEIR MAGNETIC PROPERTIES
- H01F41/00—Apparatus or processes specially adapted for manufacturing or assembling magnets, inductances or transformers; Apparatus or processes specially adapted for manufacturing materials characterised by their magnetic properties
- H01F41/02—Apparatus or processes specially adapted for manufacturing or assembling magnets, inductances or transformers; Apparatus or processes specially adapted for manufacturing materials characterised by their magnetic properties for manufacturing cores, coils, or magnets
- H01F41/0206—Manufacturing of magnetic cores by mechanical means
- H01F41/0213—Manufacturing of magnetic circuits made from strip(s) or ribbon(s)
- H01F41/0226—Manufacturing of magnetic circuits made from strip(s) or ribbon(s) from amorphous ribbons
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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
- H01F30/12—Two-phase, three-phase or polyphase transformers
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y10—TECHNICAL SUBJECTS COVERED BY FORMER USPC
- Y10T—TECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
- Y10T29/00—Metal working
- Y10T29/49—Method of mechanical manufacture
- Y10T29/49002—Electrical device making
- Y10T29/4902—Electromagnet, transformer or inductor
- Y10T29/49073—Electromagnet, transformer or inductor by assembling coil and core
Definitions
- the invention relates to a power transformer in dry construction and a method for producing a transformer in dry construction.
- Transformers are used for power transmission in power supply by voltage adjustment from a first voltage level to a second one.
- power transformers in dry construction so-called dry-type transformers, are increasingly being used.
- the structure of a power transformer in dry construction is very similar to that of the power transformer with oil filling, as well as power transformer in dry construction, the respective winding body are applied to cores made of ferromagnetic material, which are connected at both ends with yokes and form a magnetic circuit.
- Ohmic losses occur in the windings of a loaded transformer due to the winding currents and eddy currents in the conductor material. These ohmic losses are superimposed by no-load losses and possibly short-circuit losses and hysteresis losses.
- the no-load losses are mainly determined by the induction and nature of the core and are approximately independent of the operating temperature of the transformer.
- the short-circuit losses are temperature-dependent and increase at constant load with the temperature or the resistivity of the conductor material.
- core materials with a very narrow hysteresis loop are used.
- amorphous core material is used in place of grain-oriented core material in recent times.
- amorphous materials require new constructions and processing because the amorphous material is largely pressure-sensitive so that core losses can be enhanced.
- the invention provides that the core is kept suspended from amorphous material of the holding device, wherein the holding device for fixing the at least one primary winding and secondary winding is used and for this purpose acts on the at least one winding body respectively at its end faces.
- the amorphous core is made in each case as a winding tape core of strip material made of amorphous material.
- the metal coils prepared for use as cores are held in shape by means of tear-resistant tape, in that the tear-resistant tape is repeatedly looped around the sheet stack at a distance from one another so that the sheet metal coils are held together.
- the winding cores thus formed preferably have a rectangular plan, that is, they each occupy a rectangular area.
- embodiments with an oval or circular floor plan are also within the scope of the invention.
- the transformer according to the invention is designed as a three-phase transformer and has three juxtaposed cores, each of which is comprised of a winding or bobbin.
- At least two winding cores are arranged side by side with their longitudinal legs and their mechanical connection by means of band material made of amorphous material in the winding plane are wrapped, all legs have the same winding cross-section, that is, the same thickness and width.
- At least two, but preferably four, of the previously described winding cores are placed with their longitudinal limbs against one another.
- This arrangement thus formed is then wrapped by means of band material of amorphous material, so that result as a result of this wrapping a total of five legs with the same winding cross-section.
- the holding device is formed from at least two clamping elements, which are in operative connection with each other and are arranged on each end face of a winding body. It is provided that the support structure is designed so that mechanical stresses that arise during the fixation of the winding body, are initiated only in the support structure and in the winding body, so that the covered by the winding bodies cores in the support structure, although guided but not braced , so exposed to mechanical stresses are.
- each core is cylindrical in shape of amorphous material in layer construction with at least two legs and a one-piece molded yoke.
- the clamping elements of the support structure may consist of ferromagnetic material and at the same time serve as a yoke.
- each core is magnetically connected to the clamping elements of the holding device.
- each core end is in each case encompassed on two opposite sides of the clamping elements without pressure, wherein to avoid a compressive load of the core due to a clamping of the core and the resulting mechanical stress, the clamping elements by means firmly connected to the clamping elements spacer exactly Distance to the respective core are kept.
- the respective core is in this case introduced at the intended location with one end in the space between the clamping elements and held by a likewise firmly connected to the clamping elements support plate, so that, for example, in a three-phase transformer designed as a transformer according to the invention three cores columnar next to each other at the lower yoke serving lower holding device, wherein they optionally engage in the space defined by the two clamping elements gap while avoiding mechanical stresses.
- the retaining construction consists of non-ferromagnetic material, in particular of fiber-reinforced plastics.
- the holding structure is not part of the magnetic field circuit in this case, the entire arrangement has a significantly reduced weight compared to a full-metal design.
- each core is provided at its end faces with a pad of insulating material.
- This edition serves both as electrical insulation and on the other hand as a means of shock absorption for the relevant core.
- this edition of an insulating material such as plastic, in particular glass fiber reinforced plastic or silicone rubber.
- carriers are provided at the front ends of each yoke, which interconnect the yokes, that is, the lower yoke with the upper yoke. These carriers are preferably guided along the outer longitudinal sides of the core or cores and encompassed by the relevant respective winding body, that is, the carriers are guided in the interior of the winding body parallel to the respective core and connected to the opposite yoke.
- tie rods can be provided which press the yokes formed from the clamping elements against the winding body, wherein the cores are each unimpaired.
- the invention provides, instead of a hitherto conventional core press construction, in which the attachment of the coil or winding body is effected by pressing against the core, to use a coil press construction.
- the winding body are held by a support structure independent of the core.
- the core is only placed or suspended on designated plates of the support structure.
- this novel transformer namely a transformer having a core composed of layered strips of amorphous material , which is sensitive to mechanical stresses, with at least one surrounding the core, at least one primary winding and a secondary winding formed winding body and specify at least one holding device.
- inventive method for producing such a transformer is defined by the features of claim 10.
- the short legs of the winding rings each form the magnetic yokes.
- the short legs of the winding rings instead of the rectangular shape for the cross section of the individual winding rings and oval or circular cross-sections can be used.
- the transformer core is formed from a total of four coils with juxtaposed longitudinal limbs, which are mechanically connected to one another, so that in this way a 5-limb core is produced.
- the mechanical connection as previously indicated for the dreischkeligen core, preferably effected by the single cores are wrapped in its winding plane with tape material and so the composite of the individual cores is made into a 5-leg core.
- Fig. 1 is a side view of a transformer 10 according to the invention with complete external electrical interconnection shown, which has as a three-phase transformer each core 11 in three winding bodies 12, the upper electrical terminals 14, 16, 18 in the example shown with U, V, W and by means of connecting conductors 20 are conductively connected to each other.
- the three winding bodies 12 are arranged in close proximity to each other in line and held between a lower yoke 22 and an upper yoke 24.
- Each yoke 22, 24 is composed of two clamping elements 25 each formed as a C-profile, that is, of a web portion 26 with on its longitudinal sides to the same side facing right-angled flanges 28.
- the clamping elements 24 are arranged parallel to each other, such that the flanges 28 are directed outwards while their flangeless backs face each other.
- the flanges have a different width and in such a way that the flanges 28 located on the side of the winding body 12 are narrower than those on the side facing away from the winding bodies 12, which are about twice as wide.
- this design proves to be advantageous because with the wider flanges 28 a correspondingly larger footprint and thus a higher stability is ensured.
- Each of the winding bodies 12 facing flanges 28 of the clamping elements 25 are used to attach the winding body 12 and thus to force during clamping of the yokes 22, 24.
- trusses 30 are attached to the outer ends rollers 32nd are fixed, on which the entire transformer 10 is movable, as well as from the view in Fig. 2 can be seen.
- cross member 34 which consist of electrically non-conductive material and preferably as glass fiber reinforced plates 36 and strips 38 are used. These cross members 34 are connected on the one hand with the upper flange 28 of the lower yoke 20 and on the other hand with the respectively set thereon winding bodies 12th
- this fastening manner is repeated at the top of the transformer 10.
- formed cross member 34 is arranged accordingly, which for the rigid connection of the winding body 12 are provided with the lower flange 28 of the upper yoke 22.
- FIG. 2 which is a cross section through the transformer 10 according to FIG Fig. 1 is reproduced along the section line AA drawn there, the transformer 10 according to the invention is shown with a view of a winding body 12 from the side.
- this view differs from the one in Fig. 1 shown by the view held in the lower yoke 22 and upper yoke or suspended core 11 made of amorphous material.
- each tie rod 42 are provided, which the clamping elements 25 of the lower yoke 22 and the upper yoke 24 and penetrate the core 11 and so ensure a positive retention of the core 11.
- an insulator is mounted, which serves to hold the connecting line 20.
- connecting conductors are also shown, which are connected to at least one of the winding body 12.
- Fig. 3 is a side view of a support member formed by a cross member 34 for fixing a winding body 12 is shown, depending on whether it is located outside or inside according to Fig. 1 , narrow as strip 38 or wide as plate 36 is made of glass fiber reinforced plastic.
- a cross member 34 which is provided outside to support a winding body 12. Its structure is as follows. At each end of the cross member 34 forming bar 38, a threaded rod 46 is inserted, which passes through the bar 38 and a plate located underneath plate 48 and is anchored in a further perpendicular to the bar 38 arranged bar 54 made of fiberglass reinforced plastic.
- FIG. 4 a side view of a support for a core 11 of amorphous material.
- This Auflagerung consists of an upper plate 56 made of silicone, which is supported by the support plate 42 made of glass fiber reinforced plastic.
- the support plate 42 made of glass fiber reinforced plastic is in turn penetrated by tie rods 42, which cooperate with the clamping elements 25, not shown here, of the upper yoke 22 and are supported thereon.
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- Engineering & Computer Science (AREA)
- Power Engineering (AREA)
- Manufacturing & Machinery (AREA)
- Coils Of Transformers For General Uses (AREA)
- Manufacturing Cores, Coils, And Magnets (AREA)
- Insulating Of Coils (AREA)
Description
Die Erfindung betrifft einen Leistungstransformator in Trockenbauweise und ein Verfahren zur Herstellung eines Transformators in Trockenbauweise.The invention relates to a power transformer in dry construction and a method for producing a transformer in dry construction.
Transformatoren dienen zur Leistungsübertragung bei der Energieversorgung durch Spannungsanpassung von einem ersten Spannungsniveau auf ein zweites. Anstelle von früher verbreitet eingesetzten Leistungstransformatoren mit Ölfüllung werden in zunehmendem Maße Leistungstransformatoren in Trockenbauweise, so genannte Trockentransformatoren, eingesetzt.Transformers are used for power transmission in power supply by voltage adjustment from a first voltage level to a second one. Instead of previously widely used power transformers with oil filling, power transformers in dry construction, so-called dry-type transformers, are increasingly being used.
Dabei ist der Aufbau eines Leistungstransformator in Trockenbauweise dem des Leistungstransformator mit Ölfüllung insoweit sehr ähnlich, als auch bei Leistungstransformator in Trockenbauweise die jeweiligen Wicklungskörper auf Kernen aus ferromagnetischem Material aufgebracht sind, die jeweils an beiden Enden mit Jochen verbunden sind und einen magnetischen Kreis bilden.The structure of a power transformer in dry construction is very similar to that of the power transformer with oil filling, as well as power transformer in dry construction, the respective winding body are applied to cores made of ferromagnetic material, which are connected at both ends with yokes and form a magnetic circuit.
Allerdings wird bei den Trockentransformatoren die Verlustwärme, welche bei Leistungstransformatoren mit Ölfüllung vom Öl aufgenommen und über geeignete Kühlflächen oder separate Kühler abgegeben wurde, durch Luftkonvektion abgeführt. Die geringere spezifische Wärmekapazität der Luft gegenüber Öl bedeutet schlechthin eine Leistungsbegrenzung für Trockentransformatoren.However, in the case of the dry-type transformers, the heat loss, which was absorbed by the oil in the case of power transformers filled with oil and discharged via suitable cooling surfaces or separate coolers, is removed by air convection. The lower specific heat capacity of the air compared to oil means a performance limitation for dry-type transformers.
In den Wicklungen eines belasteten Transformators treten ohmsche Verluste durch die Wicklungsströme und durch Wirbelströme im Leitermaterial auf. Diese ohmschen Verluste werden überlagert von Leerlaufverlusten und gegebenenfalls Kurzschlussverlusten sowie Hystereseverlusten.Ohmic losses occur in the windings of a loaded transformer due to the winding currents and eddy currents in the conductor material. These ohmic losses are superimposed by no-load losses and possibly short-circuit losses and hysteresis losses.
Die Leerlaufverluste sind hauptsächlich durch die Induktion und die Beschaffenheit des Kerns bestimmt und näherungsweise unabhängig von der Betriebstemperatur des Transformators. Die Kurzschlussverluste sind temperaturabhängig und steigen bei konstanter Belastung mit der Temperatur bzw. dem spezifischen Widerstand des Leitermaterials an. Um die Hystereseverluste möglichst klein zu halten, kommen bevorzugt Kernmaterialien mit sehr schmaler Hystereseschleife zum Einsatz.The no-load losses are mainly determined by the induction and nature of the core and are approximately independent of the operating temperature of the transformer. The short-circuit losses are temperature-dependent and increase at constant load with the temperature or the resistivity of the conductor material. In order to keep the hysteresis losses as small as possible, preferably core materials with a very narrow hysteresis loop are used.
Um die hierdurch verursachten Wärmeverluste eines Trockentransformators zu verringern und so dessen Belastbarkeit zu verbessern, wird in neuerer Zeit bevorzugt amorphes Kernmaterial statt kornorientierten Kernmaterials eingesetzt.In order to reduce the resulting heat losses of a dry-type transformer and thus to improve its load capacity, amorphous core material is used in place of grain-oriented core material in recent times.
Allerdings erfordert die Verwendung von amorphen Werkstoffen neue Konstruktionen und Verarbeitungsweisen, da das amorphe Material weitgehend druckempfindlich ist, so dass hierdurch die Kernverluste verstärkt werden können.However, the use of amorphous materials requires new constructions and processing because the amorphous material is largely pressure-sensitive so that core losses can be enhanced.
Ausgehend von diesem Stand der Technik ist es Aufgabe der Erfindung, einen Leistungstransformator der eingangs genannten Art zu schaffen, dessen konstruktiver Aufbau so gewählt ist, dass die Vorteile des amorphen Kernmaterials voll zum Tragen kommen, ohne dass infolge Druckbelastung die Kernverluste erhöht werden.Based on this prior art, it is an object of the invention to provide a power transformer of the type mentioned, the structural design is chosen so that the benefits of the amorphous core material fully come into play without the core losses are increased due to pressure load.
Diese Aufgabe wird erfindungsgemäß durch die kennzeichnenden Merkmale des Anspruches 1 gelöst.This object is achieved by the characterizing features of claim 1.
Demgemäß ist erfindungsgemäß vorgesehen, dass der Kern aus amorphem Material von der Haltevorrichtung hängend gehalten ist, wobei die Haltevorrichtung zur Fixierung der wenigstens je einen Primärwicklung und Sekundärwicklung dient und hierzu den wenigstens einen Wicklungskörper jeweils an dessen Stirnseiten beaufschlagt.Accordingly, the invention provides that the core is kept suspended from amorphous material of the holding device, wherein the holding device for fixing the at least one primary winding and secondary winding is used and for this purpose acts on the at least one winding body respectively at its end faces.
Dabei ist vorgesehen, dass der amorphe Kern jeweils als Wickelbandkern aus Bandmaterial aus amorphem Werkstoff hergestellt ist.It is envisaged that the amorphous core is made in each case as a winding tape core of strip material made of amorphous material.
Vorzugsweise werden hierbei die zum Einsatz als Kerne vorbereiteten Blechwickel mittels reißfestem Band in Form gehalten, indem das reißfeste Band im Abstand zueinander wiederholt um den Blechstapel geschlungen wird, so dass die Blechwickel zusammengehalten sind. Die derart gebildeten Wickelbandkerne haben vorzugsweise einen rechteckförmigen Grundriss, das heißt, sie fassen jeweils eine rechteckige Fläche ein. Doch gehören auch Ausgestaltungen mit ovalem oder kreisförmigem Grundriss in den Geltungsbereich der Erfindung.Preferably, in this case, the metal coils prepared for use as cores are held in shape by means of tear-resistant tape, in that the tear-resistant tape is repeatedly looped around the sheet stack at a distance from one another so that the sheet metal coils are held together. The winding cores thus formed preferably have a rectangular plan, that is, they each occupy a rectangular area. However, embodiments with an oval or circular floor plan are also within the scope of the invention.
Entsprechend einer bevorzugten Ausführungsform der Erfindung ist der erfindungsgemäße Transformator als Drehstromtransformator ausgebildet und besitzt drei nebeneinander angeordnete Kerne, die jeweils von einem Wicklungs- oder Spulenkörper umfasst sind.According to a preferred embodiment of the invention, the transformer according to the invention is designed as a three-phase transformer and has three juxtaposed cores, each of which is comprised of a winding or bobbin.
Hierzu sind wenigstens zwei Wickelbandkerne mit ihren Längsschenkeln nebeneinander angeordnet und zu deren mechanischen Verbindung mittels Bandmaterial aus amorphem Material in der Wickelebene umwickelt sind, wobei alle Schenkel den gleichen Wickelquerschnitt aufweisen, das heißt die gleiche Dicke und Breite.For this purpose, at least two winding cores are arranged side by side with their longitudinal legs and their mechanical connection by means of band material made of amorphous material in the winding plane are wrapped, all legs have the same winding cross-section, that is, the same thickness and width.
Mit anderen Worten sind in vorteilhafter Weiterbildung wenigstens zwei, vorzugsweise jedoch besser vier der zuvor beschriebenen Wickelbandkerne mit ihren Längsschenkeln aneinander gelegt. Diese so gebildete Anordnung wird so dann mittels Bandmaterial aus amorphem Werkstoff umwickelt, so dass infolge dieser Umwicklung insgesamt fünf Schenkel mit gleichem Wickelquerschnitt resultieren.In other words, in an advantageous development, at least two, but preferably four, of the previously described winding cores are placed with their longitudinal limbs against one another. This arrangement thus formed is then wrapped by means of band material of amorphous material, so that result as a result of this wrapping a total of five legs with the same winding cross-section.
Gemäß der vorliegenden Erfindung ist die Haltevorrichtung aus wenigsten zwei Spannelementen gebildet ist, welche miteinander in Wirkverbindung stehen und an jeder Stirnseite eines Wicklungskörpers angeordnet sind. Dabei ist vorgesehen, dass die Haltekonstruktion so ausgeführt ist, dass mechanische Spannungen, die bei der Fixierung der Wicklungskörper entstehen, ausschließlich in die Haltekonstruktion und in die Wicklungskörper eingeleitet werden, so dass die von den Wicklungskörpern umfassten Kerne in der Haltekonstruktion zwar geführt aber nicht verspannt, also mechanischen Spannungen ausgesetzt, sind.According to the present invention, the holding device is formed from at least two clamping elements, which are in operative connection with each other and are arranged on each end face of a winding body. It is provided that the support structure is designed so that mechanical stresses that arise during the fixation of the winding body, are initiated only in the support structure and in the winding body, so that the covered by the winding bodies cores in the support structure, although guided but not braced , so exposed to mechanical stresses are.
Gemäß einer alternativen Ausgestaltung der Erfindung kann vorgesehen sein, dass jeder Kern zylinderförmig aus amorphem Material in Schichtbauweise gebildet ist mit zumindest zwei Schenkeln und einem einendig angeformten Joch.According to an alternative embodiment of the invention it can be provided that each core is cylindrical in shape of amorphous material in layer construction with at least two legs and a one-piece molded yoke.
Vorteilhafterweise können die Spannelemente der Haltekonstruktion aus ferromagnetischem Material bestehen und gleichzeitig als Joch dienen.Advantageously, the clamping elements of the support structure may consist of ferromagnetic material and at the same time serve as a yoke.
Als vorteilhaft erweist es sich hierbei, dass jeder Kern mit den Spannelementen der Haltevorrichtung magnetisch leitend verbunden ist. Hierzu ist vorgesehen, dass jeder Kern endseitig jeweils an zwei gegenüberliegenden Seiten von den Spannelementen ohne Druck umfasst ist, wobei zur Vermeidung einer Druckbelastung des Kerns infolge einer Einspannung des Kerns und der hierdurch bedingten mechanischen Beanspruchung die Spannelemente mittels fest mit den Spannelementen verbundener Abstandshalter exakt auf Abstand zu dem jeweiligen Kern gehalten werden.It proves to be advantageous in this case that each core is magnetically connected to the clamping elements of the holding device. For this purpose, it is provided that each core end is in each case encompassed on two opposite sides of the clamping elements without pressure, wherein to avoid a compressive load of the core due to a clamping of the core and the resulting mechanical stress, the clamping elements by means firmly connected to the clamping elements spacer exactly Distance to the respective core are kept.
Der jeweilige Kern wird hierbei an dem vorgesehenen Ort mit einem Ende in den Freiraum zwischen den Spannelementen eingeführt und mittels einer mit den Spannelementen ebenfalls fest verbundenen Tragplatte gehalten, so dass beispielsweise bei einem als Drehstromtransformator ausgeführten erfindungsgemäßen Transformator drei Kerne säulenartig nebeneinander an der als unteres Joch dienenden unteren Haltevorrichtung angeordnet sind, wobei sie gegebenenfalls in den von den beiden Spannelementen begrenzten Zwischenraum unter Vermeidung mechanischer Spannungen eingreifen.The respective core is in this case introduced at the intended location with one end in the space between the clamping elements and held by a likewise firmly connected to the clamping elements support plate, so that, for example, in a three-phase transformer designed as a transformer according to the invention three cores columnar next to each other at the lower yoke serving lower holding device, wherein they optionally engage in the space defined by the two clamping elements gap while avoiding mechanical stresses.
Es ist aber entsprechend einer Ausführungsvariante der Erfindung auch möglich, dass die Haltekonstruktion aus nicht-ferromagnetischem Material, insbesondere aus faserverstärkten Kunststoffen besteht. In diesem Fall ist die Haltekonstruktion zwar nicht Teil des Magnetfeldkreises, dafür aber weist die gesamte Anordnung ein deutlich verringertes Gewicht gegenüber einer Ganz-Metall-Ausführung auf.However, according to an embodiment variant of the invention, it is also possible that the retaining construction consists of non-ferromagnetic material, in particular of fiber-reinforced plastics. Although the holding structure is not part of the magnetic field circuit in this case, the entire arrangement has a significantly reduced weight compared to a full-metal design.
Gemäß einer weiteren Verbesserung des erfindungsgemäßen Transformators ist jeder Kern an seinen Stirnseiten mit einer Auflage aus Isoliermaterial versehen. Diese Auflage dient einerseits als elektrische Isolierung und andererseits als Mittel zur Stoßdämpfung für den betreffenden Kern. Vorzugsweise ist diese Auflage aus einem Isolierwerkstoff, wie zum Beispiel Kunststoff, insbesondere glasfaserverstärkter Kunststoff oder Silikonkautschuk.According to a further improvement of the transformer according to the invention, each core is provided at its end faces with a pad of insulating material. This edition serves both as electrical insulation and on the other hand as a means of shock absorption for the relevant core. Preferably, this edition of an insulating material, such as plastic, in particular glass fiber reinforced plastic or silicone rubber.
Gemäß einer weiteren vorteilhaften Ausführungsvariante des erfindungsgemäßen Transformators sind an den stirnseitigen Enden jedes Jochs Träger vorgesehen, welche die Joche, das heißt das Unterjoch mit dem Oberjoch, miteinander verbinden. Diese Träger sind bevorzugt an den außen liegenden Längsseiten des Kerns beziehungsweise der Kerne entlang geführt und von dem jeweiligen betreffenden Wicklungskörper umfasst, das heißt, die Träger sind im Inneren des Wicklungskörpers parallel zu dem jeweiligen Kern hindurchgeführt und mit dem gegenüberliegenden Joch verbunden.According to a further advantageous embodiment of the transformer according to the invention carriers are provided at the front ends of each yoke, which interconnect the yokes, that is, the lower yoke with the upper yoke. These carriers are preferably guided along the outer longitudinal sides of the core or cores and encompassed by the relevant respective winding body, that is, the carriers are guided in the interior of the winding body parallel to the respective core and connected to the opposite yoke.
Zusätzlich können Zuganker vorgesehen sein, welche die aus den Spannelementen gebildeten Joche gegen die Wicklungskörper pressen, wobei die Kerne jeweils unbeeinträchtigt sind.In addition, tie rods can be provided which press the yokes formed from the clamping elements against the winding body, wherein the cores are each unimpaired.
Zusammenfassend kann festgehalten werden, dass die Erfindung vorsieht, anstelle einer bisher üblichen Kernpresskonstruktion, bei welcher die Befestigung der Spulen- oder Wicklungskörper durch Anpressen an den Kern erfolgt, eine Spulen-Presskonstruktion zu verwenden. Hierbei werden die Wicklungskörper mittels einer Haltekonstruktion unabhängig vom Kern gehalten. Der Kern wird lediglich auf dafür vorgesehenen Platten der Haltekonstruktion aufgestellt beziehungsweise aufgehängt.In summary, it can be stated that the invention provides, instead of a hitherto conventional core press construction, in which the attachment of the coil or winding body is effected by pressing against the core, to use a coil press construction. Here, the winding body are held by a support structure independent of the core. The core is only placed or suspended on designated plates of the support structure.
Neben dem Schutz der neuen Gestaltung eines Transformators mit sogenanntem hängendem Kern in einer Spulen- oder Wicklungspresskonstruktion ist es auch Aufgabe der vorliegenden Erfindung, ein Verfahren zur Herstellung dieses neuartigen Transformators, nämlich eines Transformators mit einem Kern , der aus geschichteten Streifen aus amorphem Material zusammengesetzt ist, welches empfindlich gegen mechanische Beanspruchungen ist, mit wenigstens einem den Kern umgebenden, aus wenigstens je einer Primärwicklung und Sekundärwicklung gebildeten Wicklungskörper sowie mit wenigstens einer Haltevorrichtung anzugeben.In addition to protecting the new design of a so-called hanging core transformer in a coil or winding press design, it is also an object of the present invention to provide a method of manufacturing this novel transformer, namely a transformer having a core composed of layered strips of amorphous material , which is sensitive to mechanical stresses, with at least one surrounding the core, at least one primary winding and a secondary winding formed winding body and specify at least one holding device.
Dementsprechend ist das erfindungsgemäße Verfahren zur Herstellung eines solchen Transformators durch die Merkmale des Anspruchs 10 definiert.Accordingly, the inventive method for producing such a transformer is defined by the features of
Hierbei bilden die Kurzschenkel der Wickelringe jeweils die magnetischen Joche. Anstelle der Rechteckform für den Querschnitt der einzelnen Wickelringe können auch ovale oder kreisförmige Querschnitte zur Anwendung kommen.Here, the short legs of the winding rings each form the magnetic yokes. Instead of the rectangular shape for the cross section of the individual winding rings and oval or circular cross-sections can be used.
Alternativ kann vorgesehen sein, dass der Transformatorkern aus insgesamt vier Wickeln mit nebeneinander angeordneten Längsschenkeln gebildet ist, die miteinander mechanisch verbunden sind, so dass auf diese Weise ein 5-Schenkel-Kern hergestellt ist. Auch hier wird die mechanische Verbindung, wie zuvor bereits für den dreischenkeligen Kern angegeben, vorzugsweise dadurch bewirkt, dass die Einzelkerne in ihrer Wickelebene mit Bandmaterial umwickelt werden und so der Verbund der Einzelkerne zu einem 5-Schenkel-Kern erfolgt.Alternatively it can be provided that the transformer core is formed from a total of four coils with juxtaposed longitudinal limbs, which are mechanically connected to one another, so that in this way a 5-limb core is produced. Again, the mechanical connection, as previously indicated for the dreischkeligen core, preferably effected by the single cores are wrapped in its winding plane with tape material and so the composite of the individual cores is made into a 5-leg core.
Gemäß einer vorteilhaften Ausführungsvariante ist es zweckmäßig, dass zu Zwecken der Stoßdämpfung und der elektrischen Isolation Matten aus Silikonkautschuk an den Stirnseiten jedes Kerns angeordnet werden.According to an advantageous embodiment variant, it is expedient for mats of silicone rubber to be arranged on the end faces of each core for purposes of shock absorption and electrical insulation.
Weitere vorteilhafte Ausgestaltungsmöglichkeiten sind den weiteren abhängigen Ansprüchen zu entnehmen.Further advantageous embodiment possibilities can be found in the further dependent claims.
Diese und weitere vorteilhafte Ausgestaltungen und Verbesserungen der Erfindung sind Gegenstand der Unteransprüche.These and other advantageous embodiments and improvements of the invention are the subject of the dependent claims.
Anhand eines in der beigefügten Zeichnung dargestellten Ausführungsbeispieles der Erfindung sollen die Erfindung, vorteilhafte Ausgestaltungen und Verbesserungen der Erfindung sowie besondere Vorteile der Erfindung näher erläutert und beschrieben werden.Reference to an embodiment of the invention shown in the accompanying drawings, the invention, advantageous embodiments and improvements of the invention and particular advantages of the invention will be explained and described in detail.
- Fig. 1Fig. 1
- eine Seitenansicht eines erfindungsgemäßen Transformators mit vollständiger elektrischer Verschaltung,a side view of a transformer according to the invention with complete electrical interconnection,
- Fig. 2Fig. 2
-
eine Schnittansicht entlang der Schnittlinie A-A in
Fig. 1 ,a sectional view taken along the section line AA inFig. 1 . - Fig. 3Fig. 3
- eine Seitenansicht einer Stützanordnung zur Fixierung eines Wicklungskörpers unda side view of a support assembly for fixing a winding body and
- Fig. 4Fig. 4
- eine Seitenansicht einer Kernabstützunga side view of a core support
In
Die drei Wicklungskörper 12 sind in dichtem Abstand zueinander nebeneinander in Linie angeordnet und zwischen einem unteren Joch 22 und einem oberen Joch 24 gehalten.The three
Jedes Joch 22, 24 ist aus je zwei Spannelementen 25 zusammengesetzt, die jeweils als C-Profil ausgebildet sind, das heißt aus einem Stegteil 26 mit an dessen Längsseiten zur gleichen Seite weisenden rechtwinklig angeformten Flanschen 28. Die Spannelemente 24 sind parallel zu einander angeordnet, so dass die Flansche 28 nach außen gerichtet sind, während ihre flanschlosen Rückseiten aufeinander gerichtet sind.Each
Im gezeigten Beispiel haben die Flansche eine verschiedene Breite und zwar derart, dass die auf Seiten der Wicklungskörper 12 befindlichen Flansche 28 schmaler sind als die auf der den Wicklungskörpern 12 abgewandten Seite, die etwa doppelt so breit sind. Insbesondere für die Spannelemente 25 des unteren Jochs 22 erweist sich diese Gestaltung als vorteilhaft, da mit den breiteren Flanschen 28 eine entsprechend größere Aufstandfläche und damit eine höhere Standsicherheit gewährleistet ist.In the example shown, the flanges have a different width and in such a way that the
Die jeweils den Wicklungskörpern 12 zugewandten Flansche 28 der Spannelemente 25 dienen zur Befestigung der Wicklungskörper 12 und damit zur Krafteinleitung beim Verspannen der Joche 22, 24. Darüber hinaus sind am unteren Flansch 28 des unteren Jochs 20 Traversen 30 angebracht, an deren äußeren Enden Rollen 32 befestigt sind, auf welchen der komplette Transformator 10 bewegbar ist, wie auch aus der Ansicht in
Zur Abstützung der Wicklungskörper 12 auf dem unteren Joch 20 dienen Querträger 34, die aus elektrisch nichtleitendem Material bestehen und vorzugsweise als glasfaserverstärkte Platten 36 und Leisten 38 zum Einsatz kommen. Diese Querträger 34 sind einerseits mit dem oberen Flansch 28 des unteren Jochs 20 verbunden und andererseits mit den jeweils darauf gesetzten Wicklungskörpern 12.To support the winding
In entsprechender Weise wiederholt sich diese Befestigungsweise an der Oberseite des Transformators 10. Auch hier sind zwecks Verankerung der Wicklungskörper 12 aus Platten 36 und Leisten 38, beide jeweils aus elektrisch nichtleitendem Material bestehend, gebildete Querträger 34 entsprechend angeordnet, welche für die starre Verbindung der Wicklungskörper 12 mit dem unteren Flansch 28 des oberen Jochs 22 vorgesehen sind.In a similar manner, this fastening manner is repeated at the top of the
In der
Besonders unterscheidet sich diese Ansicht von der in
Wie bereits an anderer Stelle ausgeführt, ist bei amorphen Werkstoffen, die für die Herstellung von Transformator kernen vorgesehen sind, darauf zu achten, dass das Kernmaterial keinerlei mechanischer Beanspruchung, zum Beispiel durch Druck ausgesetzt ist, da hierdurch ein Anstieg der Kernverluste verursacht wird.As already stated elsewhere, in the case of amorphous materials intended for the manufacture of transformer cores, care must be taken to ensure that the core material is not subjected to any mechanical stress, for example by pressure, as this causes an increase in core losses.
Aus diesem Grund sind die unteren Flansche 28 der das untere Joch 22 bildenden Spannelemente 25 mit einer Abstützplatte 40 versehen, auf welcher der jeweilige Kern 11 ruht. Zusätzlich sind jeweils Zuganker 42 vorgesehen, welche die Spannelemente 25 des unteren Jochs 22 und des oberen Jochs 24 und den Kern 11 durchdringen und so für eine formschlüssige Halterung des Kerns 11 sorgen.For this reason, the
An einem oberen Flansch 28 eines Spannelements 25, im gezeigten Beispiel des rechten Spannelements 25, des oberen Jochs 24 ist ein Isolator angebracht, der zur Halterung der Verbindungsleitung 20 dient. Auf der gegenüberliegenden, im gezeigten Beispiel linken Seite des oberen Jochs 24 sind ebenfalls Verbindungsleiter gezeigt, die mit wenigstens einem der Wicklungskörper 12 verbunden sind.On an
In
In dem in
Unterhalb dieser an beiden Seiten des Transformators 10 verlaufenden Leisten 38 ist jeweils eine Platte 50 aus Silikon vorgesehen, an die eine weitere Leiste 52 aus glasfaserverstärktem Kunststoff anschließt.Below this, on both sides of the
- 1010
- Transformatortransformer
- 1212
- Wicklungskörperwinding body
- 1414
- elektrischer Anschluss U electrical connection U
- 1616
- elektrischer Anschluss V electrical connection V
- 1818
- elektrischer Anschluss W electrical connection W
- 2020
- Verbindungsleiterconnecting conductors
- 2222
- unteres Jochlower yoke
- 2424
- oberes Jochupper yoke
- 2525
- Spannelementclamping element
- 2626
- Stegweb
- 2828
- Flanschflange
- 3030
- Traversetraverse
- 3232
- Rollerole
- 3434
- Querträgercrossbeam
- 3636
- Platte aus GFKPlate made of fiberglass
- 3838
- Leiste aus GFKStrip made of fiberglass
- 4040
- Tragplattesupport plate
- 4242
- Zugankertie rods
- 4444
- Isolatorinsulator
- 4646
- Gewindestangethreaded rod
- 4848
- Platte aus GFKPlate made of fiberglass
- 5050
- Platte aus SilikonPlate made of silicone
- 5252
- Platte aus GFKPlate made of fiberglass
- 5454
- Platte aus GFKPlate made of fiberglass
- 5656
- Platte aus SilikonPlate made of silicone
Claims (11)
- Dry-type transformer (10) with a core in the form of a winding ribbon core composed of amorphous ribbon material, which core is sensitive to mechanical loads, having at least one winding body (12) which surrounds the core and is formed from in each case at least one primary winding and one secondary winding, and having at least one holding apparatus,
characterized in that
the holding apparatus is used to fix the in each case at least one primary winding and one secondary winding and is formed from at least two clamping elements (25) which are operatively connected to one another and act on each of the end faces of the at least one winding body, and in that the core composed of amorphous material is held suspended by the holding apparatus, the at least one winding body being held independently of the core. - Transformer according to Claim 1, characterized in that the transformer is a polyphase transformer and has three winding bodies with a core.
- Transformer according to one of the preceding claims, characterized in that the core is in an annular shape with a rectangular, oval or round outline.
- Transformer according to Claim 3, characterized in that the longitudinal limbs of at least two such winding ribbon cores are arranged alongside one another and have ribbon material composed of amorphous material wound around them on the winding plane for their mechanical connection, with all the limbs having the same winding cross section.
- Transformer according to one of the preceding claims, characterized in that the clamping elements are composed of ferromagnetic material and are at the same time used as a yoke, with each core being magnetically permeably connected to the clamping elements of the holding apparatus.
- Transformer according to one of the preceding claims, characterized in that each core is provided with a coating of insulating material on its end faces.
- Transformer according to one of the preceding claims, characterized in that mounts are provided on the ends of each yoke and connect the yokes to one another.
- Transformer according to Claim 7, characterized in that the mounts are passed along the core or the cores on the external longitudinal faces, and are surrounded by the relevant winding body.
- Method for producing a dry-type transformer (10) with a winding ribbon core composed of amorphous material which is sensitive to mechanical loads, having at least one winding body (12) which surrounds the core and is formed from in each case at least one primary winding and one secondary winding, having at least one holding apparatus for fixing the formed winding body, with the holding apparatus being formed from at least two clamping elements (25) which are operatively connected to one another and act on each of the end faces of the at least one winding body, with the core composed of amorphous material being held suspended by the holding apparatus, the at least one winding body being held independently of the core, comprising the following steps:a) ribbon material composed of amorphous material is provided;b) two annular individual cores each having the same, preferably rectangular, cross section in each case are produced from the amorphous ribbon material by winding;c) the two individual cores are placed with their longitudinal limbs against one another and the ribbon material is wound around them on the winding plane of the individual cores, such that the core has three longitudinal limbs with the same cross section;d) bracing of the at least one winding body to the holding apparatus;e) the outer limbs of the transformer core produced in this way are each provided with the electrical primary winding or the electrical secondary winding;f) the electrical windings are then connected.
- Method according to Claim 9, characterized in that mats composed of silicone rubber are arranged at least on the lower end face of each core, for the purposes of shock absorption and electrical insulation.
- Method according to Claim 9, characterized in that mats composed of silicone rubber are arranged on both end faces of each core for the purposes of shock absorption and electrical insulation.
Priority Applications (8)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
EP09005285.3A EP2239745B1 (en) | 2009-04-11 | 2009-04-11 | Voltage transformer with amorphous coil |
ES09005285T ES2404823T3 (en) | 2009-04-11 | 2009-04-11 | Power transformer with amorphous core |
KR1020117023776A KR101695345B1 (en) | 2009-04-11 | 2010-03-23 | Power transformer with amorphous core |
BRPI1010257-4A BRPI1010257B1 (en) | 2009-04-11 | 2010-03-23 | DRY TYPE TRANSFORMER AND METHOD FOR PRODUCTION OF A DRY TYPE TRANSFORMER |
PCT/EP2010/001796 WO2010115516A1 (en) | 2009-04-11 | 2010-03-23 | Power transformer with amorphous core |
CN201080017086.9A CN102388424B (en) | 2009-04-11 | 2010-03-23 | Power transformer with amorphous core |
CA2758282A CA2758282C (en) | 2009-04-11 | 2010-03-23 | Power transformer with amorphous core |
US13/248,645 US8786390B2 (en) | 2009-04-11 | 2011-09-29 | Power transformer with amorphous core |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
EP09005285.3A EP2239745B1 (en) | 2009-04-11 | 2009-04-11 | Voltage transformer with amorphous coil |
Publications (2)
Publication Number | Publication Date |
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EP2239745A1 EP2239745A1 (en) | 2010-10-13 |
EP2239745B1 true EP2239745B1 (en) | 2013-04-10 |
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ID=41050945
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
EP09005285.3A Active EP2239745B1 (en) | 2009-04-11 | 2009-04-11 | Voltage transformer with amorphous coil |
Country Status (8)
Country | Link |
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US (1) | US8786390B2 (en) |
EP (1) | EP2239745B1 (en) |
KR (1) | KR101695345B1 (en) |
CN (1) | CN102388424B (en) |
BR (1) | BRPI1010257B1 (en) |
CA (1) | CA2758282C (en) |
ES (1) | ES2404823T3 (en) |
WO (1) | WO2010115516A1 (en) |
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DE102011081337A1 (en) * | 2011-08-22 | 2013-02-28 | Heinrich Georg Gmbh Maschinenfabrik | Device for transporting multi-layered, thin-layered strip material made of an amorphous material |
KR101706514B1 (en) | 2016-10-20 | 2017-02-13 | 엘에스산전 주식회사 | Cast resin transformer |
GB2611596B (en) * | 2021-01-15 | 2023-11-01 | Zhongbian Group Shanghai Transf Co Ltd | Dry-type transformer with elliptical iron core |
CN114883107B (en) * | 2022-05-07 | 2024-06-04 | 朗峰新材料启东有限公司 | Winding equipment for manufacturing slowly-variable adsorption self-superposition type electronic components |
Family Cites Families (15)
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DE2054567A1 (en) * | 1970-11-06 | 1972-05-10 | Transformatorenunion Ag | transformer |
JPS5534403A (en) * | 1978-08-31 | 1980-03-11 | Hitachi Ltd | Molded transformer |
JPS5666022A (en) * | 1979-11-02 | 1981-06-04 | Hitachi Ltd | Molded transformer |
JPS58164205A (en) * | 1982-03-24 | 1983-09-29 | Mitsubishi Electric Corp | Earthquake-proof dry type transformer |
US5396210A (en) * | 1993-03-17 | 1995-03-07 | Square D Company | Dry-type transformer and method of manufacturing |
US6374480B1 (en) * | 1998-05-13 | 2002-04-23 | Abb Inc. | Method and apparatus for making a transformer core from amorphous metal ribbons |
DE69922094T2 (en) * | 1998-07-31 | 2005-12-01 | Hitachi, Ltd. | Transformer core made of amorphous metal |
IL126748A0 (en) * | 1998-10-26 | 1999-08-17 | Amt Ltd | Three-phase transformer and method for manufacturing same |
US6326877B1 (en) | 1999-06-16 | 2001-12-04 | Square D Company | Transformer coil support structure |
DE10148946C2 (en) * | 2001-09-28 | 2003-09-04 | Siemens Ag | Electrical winding arrangement |
US6873239B2 (en) * | 2002-11-01 | 2005-03-29 | Metglas Inc. | Bulk laminated amorphous metal inductive device |
US6806803B2 (en) * | 2002-12-06 | 2004-10-19 | Square D Company | Transformer winding |
CN100498991C (en) * | 2004-12-03 | 2009-06-10 | 上海置信电气股份有限公司 | Structure of amorphous alloy iron core dry distribution transformer body |
CN201036129Y (en) * | 2007-04-26 | 2008-03-12 | 南京大全变压器有限公司 | Iron core assembly and coil compaction structure of amorphous alloy drying transformer |
CN201138599Y (en) * | 2007-11-30 | 2008-10-22 | 广东钜龙电力设备有限公司 | Novel amorphous alloy magnet core and dry type transformer |
-
2009
- 2009-04-11 EP EP09005285.3A patent/EP2239745B1/en active Active
- 2009-04-11 ES ES09005285T patent/ES2404823T3/en active Active
-
2010
- 2010-03-23 WO PCT/EP2010/001796 patent/WO2010115516A1/en active Application Filing
- 2010-03-23 KR KR1020117023776A patent/KR101695345B1/en active IP Right Grant
- 2010-03-23 BR BRPI1010257-4A patent/BRPI1010257B1/en active IP Right Grant
- 2010-03-23 CA CA2758282A patent/CA2758282C/en active Active
- 2010-03-23 CN CN201080017086.9A patent/CN102388424B/en active Active
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Also Published As
Publication number | Publication date |
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US8786390B2 (en) | 2014-07-22 |
EP2239745A1 (en) | 2010-10-13 |
BRPI1010257B1 (en) | 2019-07-02 |
KR20110137353A (en) | 2011-12-22 |
CA2758282C (en) | 2016-01-26 |
CA2758282A1 (en) | 2010-10-14 |
US20120068800A1 (en) | 2012-03-22 |
CN102388424A (en) | 2012-03-21 |
ES2404823T3 (en) | 2013-05-29 |
KR101695345B1 (en) | 2017-01-13 |
WO2010115516A1 (en) | 2010-10-14 |
CN102388424B (en) | 2015-05-20 |
BRPI1010257A2 (en) | 2016-03-22 |
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