JPS60261118A - Foil-wound transformer - Google Patents
Foil-wound transformerInfo
- Publication number
- JPS60261118A JPS60261118A JP11655284A JP11655284A JPS60261118A JP S60261118 A JPS60261118 A JP S60261118A JP 11655284 A JP11655284 A JP 11655284A JP 11655284 A JP11655284 A JP 11655284A JP S60261118 A JPS60261118 A JP S60261118A
- Authority
- JP
- Japan
- Prior art keywords
- winding
- foil
- shaped
- disks
- windings
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Granted
Links
Classifications
-
- 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
- H01F27/303—Clamping coils, windings or parts thereof together
Landscapes
- Engineering & Computer Science (AREA)
- Power Engineering (AREA)
- Insulating Of Coils (AREA)
Abstract
Description
【発明の詳細な説明】
〔発明の技術分野〕
本発明は金属シートと絶縁シートを重ねて巻いて成る箔
状巻線を備えた箔巻変圧器に関するものでこの箔状巻線
の短絡機械力強化、負荷損失を低減した箔巻変圧器に係
わるものである。[Detailed Description of the Invention] [Technical Field of the Invention] The present invention relates to a foil-wound transformer equipped with a foil-like winding formed by overlappingly wound a metal sheet and an insulating sheet. This relates to a reinforced foil-wound transformer with reduced load loss.
箔巻変圧器は巻線占積率が優れていること、電位分布が
良好なこと、製造が簡単なことなどによシ小形軽歎化を
実現できる特徴がらり、既に数KV1数百KVA程度の
低電圧、小容量の変圧器では数多く用いられている。Foil-wound transformers have the characteristics of being able to be made smaller and lighter due to their excellent winding space factor, good potential distribution, and easy manufacturing. It is widely used in low voltage, small capacity transformers.
箔巻変圧器の構成は第4図に示すように鉄心1の脚部1
aに絶縁筒3に金属シート4aと絶縁/−ト4bを巻回
して成る箔状巻線5a及び5b及びこの箔状巻線の軸方
向両端部に絶縁物6を介して締付板9を配置し、鉄心締
付金属2によって箔状巻線4絶縁物6及び締付板9を固
定する。なお図中の破線は漏れ磁束7の分布を示してい
る。The structure of the foil-wound transformer is as shown in Fig. 4.
Foil windings 5a and 5b formed by winding a metal sheet 4a and an insulating sheet 4b around an insulating cylinder 3, and a tightening plate 9 attached to both ends of the foil winding in the axial direction via an insulator 6. The foil winding 4 insulator 6 and the clamping plate 9 are fixed by the iron core clamping metal 2. Note that the broken line in the figure indicates the distribution of the leakage magnetic flux 7.
このような構成の箔巻変圧器は以下のような問題点があ
る。A foil-wound transformer having such a configuration has the following problems.
(1) 箔状巻線は軸方向の導体の幅が広いため、磁束
の巻線軸方向端部での磁束の半径方向成分を打ち消そう
とする渦電流が流れやすい。このため渦電流による損失
が一般の平角線巻線に比べ非常に多い。この渦流損を減
少させる手段として巻線の軸方向の端部近傍に透磁率の
よい例えばケイ素鋼板を配置し磁束の半径方向成分を減
少させる手段がめるが、このケイ素鋼板の電位は接地電
位とされるため、高圧巻線からある絶縁距離をとる必要
がβシ、磁束の半径方向成分を減少させるのに限界があ
る。(1) Since the foil winding has a wide conductor in the axial direction, eddy currents that tend to cancel out the radial component of the magnetic flux at the axial ends of the winding tend to flow. Therefore, the loss due to eddy current is much higher than that of a general rectangular wire winding. As a means to reduce this eddy current loss, a silicon steel plate with good magnetic permeability, for example, is placed near the axial end of the winding to reduce the radial component of the magnetic flux, but the potential of this silicon steel plate is set to the ground potential. Therefore, it is necessary to maintain a certain insulation distance from the high-voltage winding, and there is a limit to reducing the radial component of the magnetic flux.
(2)箔状巻線は通常アルミのソートで構成され、巻線
の支持は第4図に示すように巻線の軸方向の両端に導体
を同じ厚ざの端部つめ物を配置して行なわれる。アルミ
シートは平角線巻線で一般に使用される銅線に比べ強度
が低い上、支え絶縁物の強度も平角線巻線の支え方法に
比べ低いため短絡事故時の軸方向機械力を充分低く抑え
る必要がおる。しかしながら製造時の誤差によシ低圧巻
線と高圧巻線との軸方向下端部の位置がずれると例えば
3相100 M V Aの変圧器でl Q mmのずれ
があると10 ton程度の外部推力が働く。(2) Foil windings are usually made of sorted aluminum, and the windings are supported by placing conductors at both axial ends of the windings with end pads of the same thickness, as shown in Figure 4. It is done. Aluminum sheets have lower strength than the copper wire commonly used for rectangular wire windings, and the strength of the supporting insulators is also lower than that of supporting methods for rectangular wire windings, so the axial mechanical force in the event of a short circuit accident can be kept sufficiently low. There is a need. However, due to manufacturing errors, if the lower ends of the low-voltage winding and the high-voltage winding are misaligned in the axial direction, for example, in a three-phase 100 MV A transformer, if there is a misalignment of 1 Q mm, an external damage of about 10 tons will occur. Thrust works.
本発明は以上のような箔状巻線の問題点を解決し渦電流
による負荷損と短絡時の電磁機械力の軸方向成分を減少
せし、めた箔巻変圧器を提供することを目的とする。The purpose of the present invention is to solve the above-mentioned problems with foil-wound wires, reduce load loss due to eddy currents and reduce the axial component of electromagnetic mechanical force during short circuits, and provide a foil-wound transformer. shall be.
本発明は以上の目的を遠吠するために金属シートと絶縁
/−トとを重ねて巻回した箔状巻線を有する箔巻変圧器
において、箔状巻線の金属シートの軸方向端部に該金属
シートと同等の厚さの端部つめ物を施し、その両端部に
絶縁物を介してけい素鋼板を巻回し0、円周上の1ケ所
を切断したC形の円板を配置するとともに、円板と巻線
の金属シートの軸方向端部とのきよりをそれぞれ巻線の
絶縁階級に応じて変化させたことを特徴とするものであ
る。In order to achieve the above-mentioned object, the present invention provides a foil-wound transformer having a foil winding in which a metal sheet and an insulating sheet are wound in an overlapping manner. The ends are padded with a thickness equivalent to that of the metal sheet, and a C-shaped disk cut at one point on the circumference is placed on both ends of which a silicon steel plate is wound through an insulator. In addition, the twist between the disk and the axial end of the metal sheet of the winding is varied depending on the insulation class of the winding.
以下本発明の一実施例を図を参照しながら説明する。 An embodiment of the present invention will be described below with reference to the drawings.
第1図は箔巻変圧器の内部構造の縦断面図を示している
。鉄心1の脚部1aの周囲には絶縁筒3上に金属シート
4aと絶縁ンー)4bを重ねて巻回するとともに、金属
シー)4aの端部には金属シー)4aとほぼ同等の厚さ
の端部つめ物が施された箔状低圧巻線5aとその外側に
同様の構成で成る箔状高圧巻線5bが配置される。これ
らの箔状巻線5a及び5bの両端部には絶縁物6を介し
、て円板8が取付けられる。円板8は第2図に示すよう
に、けい素鋼板をリング状に巻回し、その円周上の1ケ
所を切断したC形の円板でらシ、取扱いに便利なように
樹脂で固められている。一般に円板8は接地電位かそれ
に近い電位に保たれるため、巻線5a及び、5bの金属
シート4aと円板8との最小距離はそれぞれの巻線の絶
縁階級によって決まる。FIG. 1 shows a longitudinal sectional view of the internal structure of a foil-wound transformer. Around the leg portion 1a of the iron core 1, a metal sheet 4a and an insulating layer 4b are layered and wound around an insulating tube 3, and at the end of the metal sheet 4a there is a metal sheet 4a having a thickness almost the same as that of the metal sheet 4a. A foil-like low-voltage winding 5a having end tabs is arranged, and a foil-like high-voltage winding 5b having a similar configuration is arranged outside of the foil-like low-voltage winding 5a. A disk 8 is attached to both ends of these foil windings 5a and 5b with an insulator 6 interposed therebetween. As shown in Fig. 2, the disc 8 is a C-shaped disc made by winding a silicon steel plate into a ring shape and cutting it at one point on its circumference, and hardening it with resin for convenient handling. It is being Since the disk 8 is generally kept at or near the ground potential, the minimum distance between the metal sheet 4a of the windings 5a and 5b and the disk 8 is determined by the insulation class of each winding.
本発明では従来軸方向長さく導体の幅)がすべての巻線
で同じであったのに対して、低圧巻線5aではその巻線
端部を円板8に近づけたことが特徴である。さらに箔状
巻線5a及び5b、絶縁物6及び円板8は鉄心締付金具
2によって締付固定されるO
以上のような構成を有する本発明による箔状変圧器の作
用は次の通シである。In the present invention, whereas conventionally all the windings had the same length (length in the axial direction and width of the conductor), the low voltage winding 5a is characterized in that the end of the winding is brought closer to the disk 8. Further, the foil windings 5a and 5b, the insulator 6, and the disc 8 are tightened and fixed by the iron core clamp 2. It is.
即ち金属シート4a部分で軸方向に生じた漏れ磁束7は
透磁率の高いけい素鋼板を巻回した円板8によシ金属シ
ート4aの端部で半径方向へ曲がる成分が少ないまま円
板8に吸収されるため、もれ磁束の半径方向成分は急減
する。That is, the leakage magnetic flux 7 generated in the axial direction at the metal sheet 4a portion is transferred to the disk 8 wound with a silicon steel plate having high magnetic permeability, and the magnetic flux 7 that bends in the radial direction at the end of the metal sheet 4a remains small. , the radial component of leakage magnetic flux decreases rapidly.
第3図VC100MVAの3相2巻線変圧器における箔
状巻線5a及び5bの金属’/−ト4a端部と円板8間
距離に対する巻線の渦電流損の変化傾向を示す。たて軸
は巻線の抵抗損に対する渦電流損の比率(%)を表わす
。図から明らかなように渦電流損は該距離に対し指数関
数的に減少する。仮にこのうち低圧巻線5aのみを円板
8Vc近づけただけでも低圧巻線側の渦電流損が減少す
るため、変圧器全体の損失低減に効果がらる。また低圧
巻線5aの軸方向長さを長くすれば同じ金属’/−)4
aの断面積を得るためには金属シート4aの厚さを薄く
でき、その分低圧巻線5aの半径方向厚さを減少できる
。FIG. 3 shows the tendency of change in eddy current loss of the windings with respect to the distance between the metal ends 4a of the foil windings 5a and 5b and the disk 8 in a VC100MVA three-phase two-winding transformer. The vertical axis represents the ratio (%) of eddy current loss to resistance loss in the winding. As is clear from the figure, the eddy current loss decreases exponentially with respect to the distance. Even if only the low-voltage winding 5a is moved closer to the disk 8Vc, the eddy current loss on the low-voltage winding side is reduced, which is effective in reducing the loss of the entire transformer. Also, if the axial length of the low voltage winding 5a is increased, the same metal '/-)4
In order to obtain the cross-sectional area of a, the thickness of the metal sheet 4a can be reduced, and the radial thickness of the low-voltage winding 5a can be reduced accordingly.
この結果高圧巻線5bの内径を減少させることができる
ためその分高圧巻線5bの金属シー)4a長さ及び重量
が減少できるため、高圧巻線5bの損失を低減できる。As a result, the inner diameter of the high-voltage winding 5b can be reduced, so the length and weight of the metal sheath 4a of the high-voltage winding 5b can be reduced accordingly, and the loss of the high-voltage winding 5b can be reduced.
短絡時の電磁機械力に関しては製作時の巻線5a及び5
bの軸方向の位置がずれてもそのずれの長さが低圧巻線
を伸ばした寸法に比べ小さければ、高圧巻線5bの上下
端での半径方向の磁束成分の差が小さいため、金属シー
ト幅が高圧巻1w5aと低圧巻線5bで同じ場合で位置
が互いにずれた場合に比べ外部力として生じる力は小さ
い。一方低圧巻線は巻線端部が円板8に近づくため半径
方向のもれ磁束成分が大幅に減少するため、軸方向機械
力も低減させることができる。Regarding the electromagnetic mechanical force at the time of short circuit, the windings 5a and 5 at the time of manufacture
Even if the axial position of b is shifted, if the length of the shift is smaller than the length of the stretched low-voltage winding, the difference in radial magnetic flux components at the upper and lower ends of the high-voltage winding 5b is small, and the metal sheet The force generated as an external force is smaller than when the widths of the high-voltage winding 1w5a and the low-voltage winding 5b are the same but their positions are shifted from each other. On the other hand, in the case of the low-voltage winding, since the end of the winding approaches the disk 8, the leakage magnetic flux component in the radial direction is significantly reduced, so that the mechanical force in the axial direction can also be reduced.
以上述べた様に本発明によれば巻線の軸方向長さを巻線
ごとに変え、それぞれの巻線の両端部に絶縁物を介して
、けい素鋼板を巻回してその円周上の1ケ所を切断した
C形の円板を配置し、鉄心締付金具によって固定するこ
とによシ、低損失で短絡時の機械力が小さい箔巻変圧器
を提供できる。As described above, according to the present invention, the axial length of the winding wire is changed for each winding wire, and a silicon steel plate is wound around both ends of each winding wire with an insulator interposed therebetween. By arranging a C-shaped disk cut at one place and fixing it with a core clamp, it is possible to provide a foil-wound transformer with low loss and low mechanical force during short circuit.
また磁束の半径方向成分を減少させるためには上記のよ
うな円板構成のけい素鋼板を用いずに短冊状のけい素鋼
板を積み重ねて構成したブロックを巻線の両端部に配置
することによっても充分な効果を得ることができる。In addition, in order to reduce the radial component of the magnetic flux, instead of using silicon steel plates with a disk configuration as described above, blocks made by stacking rectangular silicon steel plates are placed at both ends of the winding. You can also obtain sufficient effects.
第1図は本発明の一実施例を示す断面図、第2図は本発
明に用いられる円板を示す斜視図、第3図はけい素鋼板
製の円板の渦電流低減効果を示すグラフ、第4図は従来
の箔巻変圧器を示す断面図でらる0
1・・・鉄心 1a・・・脚部
1b・・・継鉄部 2・・鉄心締付金具3・・絶縁筒
4a・・・金属シート
4b・・・絶縁シー) 4C・・・端部つめ物5a・・
・低圧巻線 5b・・・高圧巻線6・・・絶縁物 7・
・・もれ磁束
8・・・円板 9・・・締付板
代理人 弁理士 則 近 憲 佑
第1図
第3図Fig. 1 is a sectional view showing an embodiment of the present invention, Fig. 2 is a perspective view showing a disk used in the present invention, and Fig. 3 is a graph showing the eddy current reduction effect of a disk made of silicon steel plate. , Fig. 4 is a cross-sectional view showing a conventional foil-wound transformer.
4a...Metal sheet 4b...Insulating sheet) 4C...End tab 5a...
・Low voltage winding 5b...High voltage winding 6...Insulator 7・
...Leakage magnetic flux 8...Disk 9...Tightening plate agent Patent attorney Noriyuki Chika Figure 1 Figure 3
Claims (2)
属シートの軸方向端部に該金属シートと同等の厚さの端
部つめ物を施し、その両端部に絶縁物を介してけい素鋼
板を巻回し、円周上の1ケ所を切断したC形の円板を配
置するとともに、円板と巻線の金属シートの軸方向端部
とのきよりをそれぞれ巻線の絶縁階級に応じて変化させ
たことを特徴とする箔巻変圧器。(1) Wrap a metal sheet and an insulating sheet over each other. In a foil-wound transformer having a foil winding, the axial end of the metal sheet of the foil winding is provided with an end pad having the same thickness as the metal sheet, and an insulator is placed between the ends of the end pad. A C-shaped disc is wound around a silicon steel plate and cut at one point on the circumference, and the insulation between the disc and the axial end of the metal sheet of the winding is removed. A foil-wound transformer characterized by changing according to class.
に延長して絶縁物としたことを特徴とする特許請求の範
囲第1項記載の箔巻変圧器。(2) The foil-wound transformer according to claim 1, wherein the insulating sheet and the end padding at the end of the foil winding are extended in the axial direction to form an insulator.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP11655284A JPS60261118A (en) | 1984-06-08 | 1984-06-08 | Foil-wound transformer |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP11655284A JPS60261118A (en) | 1984-06-08 | 1984-06-08 | Foil-wound transformer |
Publications (2)
Publication Number | Publication Date |
---|---|
JPS60261118A true JPS60261118A (en) | 1985-12-24 |
JPH0520883B2 JPH0520883B2 (en) | 1993-03-22 |
Family
ID=14689936
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
JP11655284A Granted JPS60261118A (en) | 1984-06-08 | 1984-06-08 | Foil-wound transformer |
Country Status (1)
Country | Link |
---|---|
JP (1) | JPS60261118A (en) |
-
1984
- 1984-06-08 JP JP11655284A patent/JPS60261118A/en active Granted
Also Published As
Publication number | Publication date |
---|---|
JPH0520883B2 (en) | 1993-03-22 |
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