JP3410519B2 - Three-phase claw-pole type permanent magnet type rotating electric machine - Google Patents

Three-phase claw-pole type permanent magnet type rotating electric machine

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Publication number
JP3410519B2
JP3410519B2 JP23588993A JP23588993A JP3410519B2 JP 3410519 B2 JP3410519 B2 JP 3410519B2 JP 23588993 A JP23588993 A JP 23588993A JP 23588993 A JP23588993 A JP 23588993A JP 3410519 B2 JP3410519 B2 JP 3410519B2
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JP
Japan
Prior art keywords
pole
stator
teeth
rotor
poles
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
JP23588993A
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Japanese (ja)
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JPH0767312A (en
Inventor
正文 坂本
Original Assignee
日本サーボ株式会社
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Priority to JP23588993A priority Critical patent/JP3410519B2/en
Publication of JPH0767312A publication Critical patent/JPH0767312A/en
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Anticipated expiration legal-status Critical
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Description

【発明の詳細な説明】Detailed Description of the Invention

【0001】[0001]

【産業上の利用分野】本発明は,レ−ザ−ビ−ムプリン
タやファクシミリの駆動用電気式回転型アクチュエ−タ
に適用して好適な3相クロ−ポ−ル式永久磁石型回転電
機に関する。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention is a three-phase crow-pol type permanent magnet type rotary electric machine suitable for use in an electric rotary type actuator for driving a laser beam printer or a facsimile. Regarding

【0002】[0002]

【従来の技術】まず,図5により従来技術の内容・構成
を説明する。図5は従来技術による可変リラクタンス型
のステッピングモ−タ等の環状コイル式の3相回転電機
を示すものであり,10は固定子で,これは図5に示す
ように櫛歯状の極歯を備えた第1乃至第3の各相の固定
子部分10A〜10Cが軸方向に配置されて成り,これ
らの固定子部分10A〜10Cの内周側に所定の間隙を
隔てて対向配置される回転子11も第1乃至第3の各相
の回転子部分11A〜11Cより成り,各相の回転子部
分11A〜11Cは夫々対向する固定子部分10A〜1
0Cの極歯と同数の極歯を備え,これらの回転子部分1
1A〜11Cの各相間で,その位置をずらすことによっ
てステップ角が決まり,1相,2相,3相の順で各コイ
ル12A〜12Cを励磁したとき,一定のステップ動作
するようになっている。なお,11dは回転軸である。
このように従来の環状コイル式の3相回転電機は構成さ
れ,相の分布は軸方向となっていた。このように構成さ
れる3相回転電機は,2相式に比べ出力が大きくでき,
又,ステッピングモ−タとして使用する場合は,そのス
テップ角は2相式のものよりも小さくでき,その分解能
を増すことができるため,2相式のものに比べ長所を持
った回転電機である。
2. Description of the Related Art First, the contents and structure of the prior art will be described with reference to FIG. FIG. 5 shows an annular coil type three-phase rotating electric machine such as a variable reluctance type stepping motor according to the prior art. Reference numeral 10 denotes a stator, which has comb-teeth-shaped pole teeth as shown in FIG. Rotation in which the stator parts 10A to 10C of the first to third phases provided are axially arranged, and the stator parts 10A to 10C are opposed to each other on the inner peripheral side of the stator parts 10A to 10C with a predetermined gap. The rotor 11 is also made up of rotor portions 11A to 11C of the first to third phases, and the rotor portions 11A to 11C of the respective phases are opposite stator portions 10A to 10C, respectively.
It has 0C pole teeth and the same number of pole teeth.
The step angle is determined by shifting the position between the phases of 1A to 11C, and when the coils 12A to 12C are excited in the order of 1 phase, 2 phase, and 3 phase, a constant step operation is performed. . In addition, 11d is a rotating shaft.
Thus, the conventional annular coil type three-phase rotating electric machine is configured, and the phase distribution is in the axial direction. The three-phase rotating electric machine configured in this way can have a larger output than the two-phase type,
When used as a stepping motor, the step angle can be made smaller than that of the two-phase type, and its resolution can be increased. Therefore, the rotary electric machine has advantages over the two-phase type.

【0003】[0003]

【発明が解決しようとする課題】ところで,上述のよう
に構成される従来の3相回転電機は,各相が回転軸方向
に配置されるため,モ−タの全長が長くなり,薄型化す
るには不適当なものであった。又,3個の各コイルの相
互誘導インダクタンスが中央のコイルと両端のコイルで
は異なるため,回転時の各相電流に周期的変動が生じ易
く,回転時に振動トルクが発生し易いという問題があっ
た。本発明は従来のものの上記課題(問題点)を解決す
るようにした3相クロ−ポ−ル式永久磁石型回転電機を
提供することを目的とする。
By the way, in the conventional three-phase rotating electric machine configured as described above, since each phase is arranged in the direction of the rotation axis, the total length of the motor becomes long and the thickness is reduced. Was not suitable for. In addition, since the mutual induction inductances of the three coils are different between the central coil and the coils at both ends, there is a problem that periodical fluctuations are likely to occur in each phase current during rotation, and vibration torque is likely to occur during rotation. . SUMMARY OF THE INVENTION It is an object of the present invention to provide a three-phase crow-pol type permanent magnet type rotary electric machine that solves the above-mentioned problems (problems) of conventional ones.

【0004】[0004]

【課題を解決するための手段】本発明の3相クロ−ポ−
ル式永久磁石型回転電機は,上記課題を解決するため
に,インナ−ロ−タ型又はアウタ−ロ−タ型のもので
は,3相分のステ−タポ−ルが同一平面上に配置される
1対のステ−タポ−ルの一方に形成されるヨ−クに3m
個のコイルを配置し,ヨ−クを通して形成される3m個
の磁路の両端に櫛歯状の極歯を備えた磁性鉄板で固定子
が構成され,上記コイルの励磁により上記ヨ−クを介し
て互いに異極性に磁化するようにし,少なくとも3m個
のコイルを通過した磁性体の同一方向側のステ−タポ−
ルのいずれか一方は,3m個のコイルで磁化される各々
の極歯群の間は磁気的に飽和する程度に連結部を狭くす
るか又は磁気的に非連結として,下記回転子の永久磁石
からでた磁束の大部分を上記3m個のコイルと鎖交する
ようにし,それらの各極歯が同一円周上で極歯部と溝部
が互いに1/2ピッチずれて非接触で組み合わされて配
置され,それらの極歯とエアギャップを介してN極とS
極を等ピッチで交互に配置したリング状の回転子又は回
転軸方向に2極磁化した永久磁石を同数の極歯をもった
磁性体で,その極歯が1/2ピッチずれるように挟持し
たハイブリッド型回転子が上記固定子と所定の間隙を隔
てて回転自在に組み合わされるように構成した。但し,
mは1又は2とする。また,回転軸方向ギャップ型(ア
キシャルギャップ型)のものでは,上記構成の固定子に
対して,それらの各極歯が同一平面上で極歯部と溝部が
互いに1/2ピッチずれて非接触で組み合わされて配置
され,それらの櫛歯と所定の間隙を隔てて軸方向に配置
される円周上に亙ってN極とS極を等ピッチで交互に設
けられた円板状の回転子を所定間隔を隔てて回転自在に
組み合わされるように構成した。なお,上記のN極とS
極を等ピッチで交互に配置した回転子のN極とS極の対
数(極対数),又は上記のハイブリッド型回転子の歯数
をZとし,上述した固定子の櫛歯の歯ピッチ(同一極性
分の歯ピッチ)をθ度とすると,Z=m(3n±1)
び 360゜/(Z+2)≦θ≦360゜/(Z−2)
を満足することが望ましい。但し,mは1又は2,nは
1以上の正の整数とする。また,上記ステ−タポ−ルに
1対の櫛歯状の極歯を形成する代わりに1枚の磁性板で
構成したステ−タポ−ルの上記極歯対応部分に極歯を形
成させるための複数個のスリットを形成するようにして
も良い。
SUMMARY OF THE INVENTION A three-phase cropo of the present invention.
In order to solve the above problems, the permanent magnet type rotating electric machine of the inner rotor type or the outer rotor type has three-phase stator poles arranged on the same plane. 3m on the yoke formed on one of the pair of stator poles
A magnetic iron plate having poles in the shape of comb teeth at both ends of a magnetic path of 3 m formed by arranging coils, and the stator is constituted by exciting the coils. Magnets having different polarities via the coils and passing through at least 3 m coils.
One of the rotors is a permanent magnet of the rotor described below , with the connecting portion being narrowed so as to be magnetically saturated between the respective pole tooth groups magnetized by 3 m coils, or magnetically not connected.
Most of the magnetic flux coming from the body is linked to the 3m coil.
The pole teeth and the groove are arranged on the same circumference in such a manner that the pole teeth and the groove are displaced from each other by ½ pitch and are combined in a non-contact manner.
A ring-shaped rotor with poles alternately arranged at equal pitch or a permanent magnet magnetized with two poles in the direction of the rotation axis was sandwiched by a magnetic body having the same number of pole teeth so that the pole teeth were displaced by 1/2 pitch. The hybrid rotor is rotatably combined with the stator with a predetermined gap. However,
m is 1 or 2. In the case of the axial gap type (axial gap type), the stator with the above configuration
On the other hand, the respective pole teeth are arranged on the same plane in such a manner that the pole teeth and the groove are displaced from each other by 1/2 pitch and are combined in a non-contact manner, and are arranged in the axial direction with a predetermined gap from the comb teeth. A disk-shaped rotor, in which N poles and S poles are alternately provided at equal pitches on the circumference, is rotatably assembled at a predetermined interval. The above N pole and S
Let Z be the logarithm of the N poles and S poles (number of pole pairs) of the rotor in which the poles are alternately arranged at equal pitches, or the number of teeth of the hybrid rotor is Z, and the tooth pitch of the comb teeth of the stator described above (identical If the tooth pitch for the polar component is θ degrees, then Z = m (3n ± 1) and 360 ° / (Z + 2) ≦ θ ≦ 360 ° / (Z-2)
It is desirable to satisfy. However, m is 1 or 2, and n is a positive integer of 1 or more. Further, instead of forming a pair of comb-teeth-shaped pole teeth on the stator pole, a pole tooth is formed on a portion corresponding to the pole tooth of the stator pole constituted by one magnetic plate. A plurality of slits may be formed.

【0005】[0005]

【作用】本発明のものは上記のように構成されるから,
3個のコイル2を順次に直流励磁するか,3相平衡交流
(電気角で位相が各々120゜異なった)を流すことに
より3相式回転電機となり,従来技術において問題であ
った回転軸方向に各相固定子が重ならないため,モ−タ
を薄型にするのに有利となり,各コイルがその磁気回路
的に見てもその構造上対称であるため,その相互誘導イ
ンダクタンスも各相間で均一となる。
The function of the present invention is constructed as described above,
The three coils 2 are sequentially excited by direct current, or three-phase balanced alternating current (phases differ by 120 ° in terms of electrical angle) are made to flow to form a three-phase rotating electric machine. Since each phase stator does not overlap with each other, it is advantageous to make the motor thin, and each coil is structurally symmetrical even when viewed from its magnetic circuit, so that the mutual induction inductance is uniform among the phases. Becomes

【0006】[0006]

【実施例】以下図面によって本発明の各実施例を説明す
る。 第1の実施例:図1は本発明の第1の実施例であるイン
ナ−ロ−タ型の3相クロ−ポ−ル式永久磁石型回転電機
の固定子Sの斜視図で,同図には回転子は示していな
い。なお,回転子としては図2(A)又は図2(B)に
示す回転子R1又はR2が図1に示す固定子Sと組み合
わされる。即ち,図2(A)はリング状永久磁石回転子
R1で,Z個のN極とS極を交互に磁化したものを示
す。図2(B)は軸方向に2極に磁化したデスク状永久
磁石を2個の各々Z個の極歯をもった磁性体ロ−タで挟
持したハイブリッド型回転子R2であり,これらの両回
転子R1,R2のいずれの回転子も図1の本発明の固定
子Sと組み合わせて動作させることができる。図1にお
いて,1は第1のステ−タポ−ルで,磁性鉄板をプレス
成形することで製作される。1aは櫛歯状の極歯でステ
−タポ−ル1の中心に向かって放射状に打ち抜いた部分
を中心から同心的に折り曲げて直角に円周上の所定区間
に亙って配置形成される。なお,出力を大きくするため
に,軸方向にモ−タを厚く設計する場合には,外周方向
に放射状に打ち抜いたものを曲げて形成しても良い。第
1のステ−タポ−ル1の他の極歯群1b,1cも同様に
形成され,このように,円周上に配置された3群の櫛歯
状の極歯群1a〜1cは,それらの中心が相互に120
゜(機械角)の間隔となるように配置される。図1のス
テ−タポ−ル1の外周には,上記した略各3群の極歯群
1a〜1cと対応して3個のヨ−ク2a〜2cが設けら
れ,夫々のヨ−ク2a〜2cに励磁用の環状コイル3a
〜3cが巻装され,別の磁性鉄板からプレス成形等で作
られた第2のステ−タポ−ル4が組み合わされる。この
第2のステ−タポ−ル4は第1のステ−タポ−ル1と同
じ形状で同数の極歯4a〜4cが設けられ,これらの極
歯4a,4bは第1のステ−タポ−ル1の極歯の溝(歯
と歯の中間)内に相互に1/2ピッチずれて入るように
組み合わされ,3個のコイルの1個(たとえば1相分コ
イル3a)が直流励磁されると,その1相分の極歯群4
aはN極とS極が交互に同数,並ぶことになる。第2の
ステ−タポ−ル4の3個の極歯群4a〜4cは磁気的に
非連結とするのが望ましいが,非磁性体で結合する場合
には,その連結部は図示のように磁気的に飽和する程度
に狭くして連結した一体物のものとするのが望ましい。
上記のように構成される固定子Sの各極歯群内のピッチ
をθ゜(機械角)とし,この固定子Sと図2(A)また
は(B)の各回転子R1,R2とを組み合わせて,イン
ナ−ロ−タ型の本発明のクロ−ポ−ル式永久磁石型回転
電機が構成される。この場合,図2(A)に示す回転子
R1のN極とS極の対数(極対数)又は同図(B)に示
すハイブリッド型回転子R2の歯数を夫々Zとした時,
次の数1(以下式(1)という)の関係を満足するよう
にした時,本発明の回転電機は各極歯が120゜離れて
各磁路寸法が対称となり,ステップ角精度や各ステップ
での保持トルクが均一になる。
Embodiments of the present invention will be described below with reference to the drawings. First Embodiment: FIG. 1 is a perspective view of a stator S of an inner rotor type three-phase crow-pole permanent magnet type rotary electric machine according to the first embodiment of the present invention. The rotor is not shown in. As the rotor, the rotor R1 or R2 shown in FIG. 2 (A) or FIG. 2 (B) is combined with the stator S shown in FIG. That is, FIG. 2A shows a ring-shaped permanent magnet rotor R1 in which Z N poles and S poles are alternately magnetized. FIG. 2B shows a hybrid rotor R2 in which a desk-shaped permanent magnet magnetized with two poles in the axial direction is sandwiched between two magnetic rotors each having Z pole teeth. Any of the rotors R1 and R2 can be operated in combination with the stator S of the invention of FIG. In FIG. 1, reference numeral 1 is a first stator pole, which is manufactured by pressing a magnetic iron plate. Reference numeral 1a is a comb-teeth-shaped pole tooth, and a portion radially punched toward the center of the stator pole 1 is bent concentrically from the center and is formed at a right angle over a predetermined section on the circumference. When the motor is designed to be thick in the axial direction in order to increase the output, it may be formed by bending a radially punched product in the outer peripheral direction. The other pole tooth groups 1b and 1c of the first stator pole 1 are also formed in the same manner, and thus the three comb tooth-shaped pole tooth groups 1a to 1c arranged on the circumference are Their centers are 120
They are arranged at intervals of ° (mechanical angle). On the outer circumference of the stator pole 1 shown in FIG. 1, three yokes 2a to 2c are provided in correspondence with the above-mentioned approximately three groups of polar tooth groups 1a to 1c, respectively. To 2c, an annular coil 3a for excitation
3c are wound, and a second stator pole 4 formed by press molding or the like from another magnetic iron plate is combined. This second stator pole 4 has the same shape as the first stator pole 1 and is provided with the same number of pole teeth 4a to 4c. These pole teeth 4a and 4b are the first stator poles. Are combined so as to be shifted by ½ pitch from each other in the groove of the pole tooth of the rule 1 (intermediate between the teeth), and one of the three coils (for example, one-phase coil 3a) is DC-excited. And the polar tooth group 4 for one phase
In a, the same number of N poles and S poles are alternately arranged. It is desirable that the three pole tooth groups 4a to 4c of the second stator pole 4 are magnetically non-connected, but when they are connected by a non-magnetic material, the connecting parts are as shown in the figure. It is desirable to use a unitary body that is narrowed and connected so as to be magnetically saturated.
The pitch of each pole tooth group of the stator S configured as described above is θ ° (mechanical angle), and this stator S and each rotor R1, R2 of FIG. 2 (A) or (B) are The inner rotor type permanent magnet type rotating electric machine of the present invention is constructed in combination. In this case, when the number of poles of the north pole and the south pole of the rotor R1 shown in FIG. 2A or the number of teeth of the hybrid rotor R2 shown in FIG.
When the following expression 1 (hereinafter referred to as the expression (1)) is satisfied, in the rotating electric machine of the present invention, the pole teeth are separated by 120 ° and the magnetic path dimensions are symmetrical, so that the step angle accuracy and the step Holding torque becomes uniform.

【0007】[0007]

【数1】 [Equation 1]

【0008】式(1)の左辺は3相永久磁石型ステッピ
ングモ−タのステップ角であり,右辺の第1項は3個の
極歯群の中心の成す角,第2項はその中心線に最も近い
回転子の歯の位置であり,第1項と第2項の差もステッ
プ角となり等式が成立する。なお,nは1以上の正の整
数,またmは1又は2である。この式(1)を整理する
と,次の式(3)が導かれる。Z=m(3n±1) (3)
The left side of the equation (1) is the step angle of the three-phase permanent magnet type stepping motor, the first term on the right side is the angle formed by the centers of the three pole tooth groups, and the second term is the center line. It is the closest rotor tooth position, and the difference between the first and second terms is also the step angle, and the equation holds. Note that n is a positive integer of 1 or more, and m is 1 or 2 . By rearranging this equation (1), the following equation (3) is derived. Z = m (3n ± 1) (3)

【0009】又,極歯のピッチθは360゜/Zと略等
しくすることが必要であり,ロ−タのステ−タコイルと
の鎖交磁束の高調波成分を少なくするためには,そのピ
ッチをある程度異ならせることが有効であり,その範囲
は実用的に次の数2(以下式(2)という)で与えられ
る。
Further, it is necessary that the pitch θ of the pole teeth be approximately equal to 360 ° / Z, and in order to reduce the harmonic components of the interlinkage magnetic flux with the stator coil of the rotor, the pitch thereof should be reduced. Is effective to some extent, and the range is practically given by the following equation 2 (hereinafter referred to as equation (2)).

【0010】[0010]

【数2】 [Equation 2]

【0011】上記した第1の実施例のものは,極歯群と
その環状コイルが夫々3個の場合を示したが,極歯群と
その環状コイルは6個とした場合でも,式(1)より導
いた前記の式(3)及び式(2)の関係が夫々成立す
る。
The above-mentioned first embodiment shows the case where each of the pole tooth group and the annular coil is three, but even when the pole tooth group and the annular coil are six, the formula (1 ), The relations of the equations (3) and (2) are respectively established.

【0012】第2の実施例:図3(A)及び(B)は夫
々本発明をアウタ−ロ−タ型の回転電機として適用した
場合を示すものである。同図(A)はアウタ−ロ−タ型
の固定子S1を示すもので,図示のように1対の第1及
び第2のステ−タポ−ル21,24と3個のヨ−ク22
a〜22c及びこのヨ−ク22a〜22cに巻かれたコ
イル23a〜23c並びに各ステ−タポ−ル21,24
の外周側に形成される極歯21b,21c;24a〜2
4c(極歯21aは図示されていない)が設けられる。
要するに,本実施例の固定子S1は図1に示すインナ−
ロ−タ型の回転電機の固定子Sの構成中,ヨ−ク部分と
極歯部分が夫々内周,外周側に移動した構成に相当す
る。図3(B)はこの固定子S1の外周側に所定の空隙
を隔てて対向配置されるリング状の回転子25と回転子
軸26とを示す。なお,回転子25は永久磁石を交互に
N,S極磁化して構成される。また,回転子軸26は図
示しないカップを介して回転子25の一端側に連結さ
れ,また固定子S1を図示しない軸受を介して支承する
ようになっている。
Second Embodiment: FIGS. 3A and 3B show the case where the present invention is applied to an outer-rotor type electric rotating machine, respectively. FIG. 1A shows an outer rotor type stator S1. As shown, a pair of first and second stator poles 21 and 24 and three yokes 22 are provided.
a to 22c, coils 23a to 23c wound around the yokes 22a to 22c, and respective stator poles 21 and 24.
Teeth 21b, 21c; 24a-2 formed on the outer peripheral side of the
4c (the pole teeth 21a are not shown) are provided.
In short, the stator S1 of this embodiment is the inner member shown in FIG.
This corresponds to a configuration in which the yoke portion and the pole tooth portion are respectively moved to the inner circumference and the outer circumference in the configuration of the stator S of the rotor type rotary electric machine. FIG. 3B shows a ring-shaped rotor 25 and a rotor shaft 26 that are arranged opposite to each other on the outer peripheral side of the stator S1 with a predetermined gap therebetween. The rotor 25 is constructed by alternately magnetizing permanent magnets in N and S poles. The rotor shaft 26 is connected to one end of the rotor 25 via a cup (not shown), and supports the stator S1 via bearings (not shown).

【0013】第3の実施例:図4(A)〜(C)は本発
明を回転軸方向ギャップ型(アキシャルギャップ型)の
回転電機に適用した場合を示す。図4(A)は本発明を
適用したアキシャルギャップ型の固定子の第1の構成例
で固定子S3を示すもので,同図において,27は第1
のステ−タポ−ル,27A〜27Cはその外周端を折り
曲げて形成した3相分の極歯,28A〜28Cはヨ−ク
兼用の第2のステ−タポ−ルで,これらのヨ−ク部には
各相コイル29A〜29Cが巻かれ,また,ヨ−クの先
端部は第1のステ−タポ−ル27の極歯27A〜27B
と組み合わされる極歯30A〜30Cが形成されてい
る。図4(B)は本発明を適用したアキシャルギャップ
型の固定子の第2の構成例である固定子S4を示すもの
で,これは図示のように図4(A)の第1の構成例を変
形したもので,図4(A)では夫々2個のステ−タポ−
ルに分割していた極歯27A〜27Cと30A〜30C
を1枚の磁性板31で構成し,各相の極歯相当分にスリ
ット32A〜32Cを複数個(極歯の数より1つ少ない
数)設けることにより,これらのスリット同士が近接す
るところで磁束飽和を起こすことによって,各コイル3
3A〜33Cを励磁したときに,各相磁極を図4(A)
と同等に形成させるようにしたものである。図4(C)
は図4(A)又は(B)の各固定子S3又はS4と組み
合わされる回転子R3を示すもので,この回転子R3は
図示のようにN,S極が円周上に亙って交互に配置され
る多極マグネットを円板状に構成し,上記固定子S3又
はS4の極歯側の面と軸方向に所定の間隙を保って配置
され,上記回転子R3の中心に垂直に設けた回転軸を回
転自在に支持すればよい。このようにアキシャルギャッ
プ型にすると,回転子の慣性力を小さくでき,又は,よ
り偏平にすることも可能となる。なお,前記したインナ
−ロ−タ型,アウタ−ロ−タ型の回転電機においても,
極歯の部分は図4(B)の実施例に対応して,1枚の磁
性板にスリットを設けて,円形に成形し各相の極歯の機
能をもたせるようにしても良い。
Third Embodiment: FIGS. 4A to 4C show the case where the present invention is applied to a rotating shaft direction gap type (axial gap type) rotating electric machine. FIG. 4A shows a stator S3 in a first configuration example of an axial gap type stator to which the present invention is applied. In FIG. 4A, 27 is a first
, 27A to 27C are polar teeth for three phases formed by bending the outer peripheral ends of the stator poles, and 28A to 28C are second stator poles which also serve as yokes. Each phase coil 29A to 29C is wound around the portion, and the tip of the yoke is pole teeth 27A to 27B of the first stator pole 27.
Polar teeth 30A to 30C to be combined with are formed. FIG. 4B shows a stator S4 which is a second configuration example of the axial gap type stator to which the present invention is applied. As shown in the figure, this is the first configuration example of FIG. 4A. 4A is a modified version of FIG.
Pole teeth 27A to 27C and 30A to 30C that were divided into
Is composed of one magnetic plate 31, and a plurality of slits 32A to 32C (one less than the number of pole teeth) are provided for the pole teeth corresponding to each phase. By causing saturation, each coil 3
Fig. 4 (A) shows the magnetic poles of each phase when 3A to 33C are excited.
It is formed so as to be equivalent to. Figure 4 (C)
Shows a rotor R3 combined with each stator S3 or S4 of FIG. 4 (A) or (B). This rotor R3 has N and S poles alternately arranged on the circumference as shown in the figure. A multi-pole magnet arranged in the form of a disk, is arranged with a predetermined gap in the axial direction from the surface of the stator S3 or S4 on the side of the pole teeth, and is provided perpendicularly to the center of the rotor R3. The rotating shaft may be rotatably supported. When the axial gap type is used as described above, the inertial force of the rotor can be reduced, or the rotor can be made flatter. In addition, also in the above-mentioned inner rotor type and outer rotor type rotary electric machines,
Corresponding to the embodiment shown in FIG. 4 (B), the pole teeth may be formed in a circular shape by forming a slit in one magnetic plate so as to have the function of the pole teeth of each phase.

【0014】[0014]

【発明の効果】本発明に成る3相クロ−ポ−ル式永久磁
石型回転電機は上記のように構成されるから,次のよう
な優れた効果を有する。(1)まず請求項1又は2に記載の本願の基本構成の
ものでは次のような効果を有する。3相永久磁石の
長所である高出力,高効率,低振動をそのまま保持しな
がら,さらに,次の優れた効果を有する。回転軸方向
に各相固定子が重ならないため,モータの全長を薄くで
きる。各コイルがその磁気回路的に見てもその構造上
対称となるため,その相互インダクタンスも各相間で均
一となるため,更なる低振動,高精度の位置決めが可能
である。 各相のステータポールが磁気的に飽和する程
度に連結部を狭くするか又は磁気的に非連結の構成とな
っているから,回転子の永久磁石から出た磁束の大部分
が3m個のコイルと鎖交するから,発生トルクを増大さ
せることができるという実利がある。従来のもので
は,たとえば式(1)において,n=13とするとZ=
40となり,図2(A)に示す構造のものでは,ロ−タ
外径が34m/m程度となり,式(1)の左辺よりステ
ップ角を1.5゜とすることができ,これは2相式のも
のでは,同寸法ではステップ角は2.25゜と大きくな
るのに比べ,大幅にステップ角を小とできる効果があ
る。 ステ−タポ−ルが従来3組で6個必要であった
が,図1の基本構成のもので第1,第2のステ−タポ−
ル1,2の2個となり,低コスト化に有利となる。(2)請求項3又は4に記載の発明の場合には,明細書
本文に式(3)及び(2)で示した条件式を構成の条件
とするものであるから,相互インダクタンスが等しくな
るための条件と回転子の磁束が固定子コイルに鎖交磁束
の高調波成分を減少させるために必要な極歯ピッチのず
らし角度をある程度異ならせる必要があるが,この式
(2)を充足することにより実用的な範囲を適正に設定
することができる。 (3)請求項5に記載の発明のように,極歯対応部分に
スリットを形成する構成では,極歯の形成の作業に比
べ,比較的容易な加工作業で,その機能の構成が製作で
きるという実利を有する。
The three-phase crow-pole permanent magnet according to the present invention
Is the stone rotating electric machine configured as above?NextAs
It has excellent effects.(1) FirstOf the basic configuration of the present application according to claim 1 or 2,
In thingsIt has the following effects.Of three-phase permanent magnet
Keep the advantages of high output, high efficiency and low vibration
In addition, it has the following excellent effects.Rotation axis direction
Since each phase stator does not overlap withMake the total length of the motor thin
Wear.Even if each coil is viewed from its magnetic circuit, it is structurally
Since they are symmetric, their mutual inductances are evenly distributed between each phase.
Because it is one, it is possible to perform positioning with further low vibration and high accuracy.
Is. As the stator poles of each phase become magnetically saturated
Each time the connection is narrowed or magnetically unconnected.
Therefore, most of the magnetic flux from the permanent magnet of the rotor
Increases the generated torque because it interlinks with 3m coils.
The real advantage is that you can do it.Conventional
Is, for example, in the formula (1), if n = 13, Z =
40, and in the structure shown in FIG.
The outer diameter is about 34 m / m, and the stem from the left side of equation (1)
The up angle can be set to 1.5 °, which is a two-phase type.
With the same dimensions, the step angle is as large as 2.25 °.
It has the effect of significantly reducing the step angle compared to
It Conventionally, six stator poles were required for three sets.
Of the basic configuration shown in FIG.
It becomes two pieces of rule 1 and 2, which is advantageous for cost reduction.(2) In the case of the invention described in claim 3 or 4, the description
Conditions for constructing the conditional expressions shown in expressions (3) and (2) in the text
Since the mutual inductance is the same,
Condition and the magnetic flux of the rotor are interlinkage magnetic flux in the stator coil
The pole tooth pitch required to reduce the harmonic component of
It is necessary to change the angle of sushi to some extent,
Setting the practical range properly by satisfying (2)
can do. (3) As in the invention according to claim 5, in the portion corresponding to the pole teeth
Compared with the work of forming the pole teeth, the configuration that forms the slits
It is a relatively easy processing work, and the structure of its function can be manufactured.
Have the practical benefit of being able to

【図面の簡単な説明】[Brief description of drawings]

【図1】本発明の第1の実施例であるインナ−ロ−タ型
の3相クロ−ポ−ル式永久磁石型回転電機の固定子の構
成を示す斜視図である。
FIG. 1 is a perspective view showing a configuration of a stator of an inner rotor type three-phase crow-pol type permanent magnet type rotary electric machine according to a first embodiment of the present invention.

【図2】本図(A),(B)は夫々図1の固定子と組み
合わせて使用される円筒状の永久磁石型回転子およびハ
イブリッド型回転子の斜視図である。
2A and 2B are perspective views of a cylindrical permanent magnet rotor and a hybrid rotor used in combination with the stator of FIG. 1, respectively.

【図3】本図(A),(B)は夫々本発明の第2の実施
例であるアウタ−ロ−タ型の3相クロ−ポ−ル式永久磁
石型回転電機の固定子及び回転子の構成を示す斜視図で
ある。
FIGS. 3A and 3B are respectively a stator and a rotor of an outer rotor type three-phase crow-pole permanent magnet type rotary electric machine according to a second embodiment of the present invention. It is a perspective view which shows the structure of a child.

【図4】本図(A),(B)は夫々本発明の第3の実施
例であるアキシャルギャップ型の3相クロ−ポ−ル式永
久磁石型回転電機の固定子の第1及び第2の構成例を,
また本図(C)はこれらの固定子と組み合わされる回転
子の構成を示す斜視図である。
4A and 4B are first and second stators of an axial gap type three-phase crow-pole permanent magnet type rotary electric machine, respectively, which is a third embodiment of the present invention. 2 configuration example,
Further, FIG. 3C is a perspective view showing the structure of the rotor combined with these stators.

【図5】従来技術による3相クロ−ポ−ル式可変リラク
タンス型回転電機の構成を示す斜視図である。
FIG. 5 is a perspective view showing a configuration of a conventional three-phase crow-poor variable reluctance type rotary electric machine.

【符号の説明】[Explanation of symbols]

1,21:第1のステ−タポ−ル 2a〜2c,22a〜22c:ヨ−ク 3a〜3c,23a〜23c,29A〜29C,33A
〜33C:環状コイル 4,24:第2のステ−タポ−ル S,S1〜S4:固定子 R1〜R3,25:回転子
1, 21: First stator poles 2a to 2c, 22a to 22c: Yokes 3a to 3c, 23a to 23c, 29A to 29C, 33A
33C: annular coil 4, 24: second stator poles S, S1 to S4: stators R1 to R3, 25: rotor

───────────────────────────────────────────────────── フロントページの続き (58)調査した分野(Int.Cl.7,DB名) H02K 37/00 ─────────────────────────────────────────────────── ─── Continuation of the front page (58) Fields surveyed (Int.Cl. 7 , DB name) H02K 37/00

Claims (5)

(57)【特許請求の範囲】(57) [Claims] 【請求項1】 3相分のステ−タポ−ルが同一平面上に
配置される1対のステ−タポ−ルの一方に形成されるヨ
−クに3m個のコイルを配置し,ヨ−クを通して形成さ
れる3m個の磁路の両端に櫛歯状の極歯を備えた磁性鉄
板で固定子が構成され, 上記コイルの励磁により上記ヨ−クを介して互いに異極
性に磁化するようにし, 少なくとも3m個のコイルを通過した磁性体の同一方向
側のステ−タポ−ルのいずれか一方は,3m個のコイル
で磁化される各々の極歯群の間は磁気的に飽和する程度
に連結部を狭くするか又は磁気的に非連結として,下記
回転子の永久磁石からでた磁束の大部分を上記3m個の
コイルと鎖交するようにし, それらの各極歯が同一円周上で極歯部と溝部が互いに1
/2ピッチずれて非接触で組み合わされて配置され, それらの極歯とエアギャップを介してN極とS極を等ピ
ッチで交互に配置したリング状の回転子又は回転軸方向
に2極磁化した永久磁石を同数の極歯をもった磁性体
で,その極歯が1/2ピッチずれるように挟持したハイ
ブリッド型回転子が夫々上記固定子と所定の間隙を隔て
て回転自在に組み合わされたことを特徴とするインナ−
ロ−タ型またはアウタ−ロ−タ型の3相クロ−ポ−ル式
永久磁石型回転電機。但し,mは1又は2とする。
1. A 3 m coil is arranged in a yoke formed in one of a pair of stator poles in which the stator poles for three phases are arranged on the same plane. The stator is composed of a magnetic iron plate having comb-shaped pole teeth at both ends of a magnetic path of 3 m formed through the magnet, and is magnetized to have different polarities through the yoke by the excitation of the coil. At least one of the stator poles on the same direction side of the magnetic body that has passed through at least 3 m coils is magnetically saturated between the pole teeth groups magnetized by the 3 m coils. or as magnetically uncoupled narrow the connecting portion, below
Most of the magnetic flux from the permanent magnet of the rotor is
The pole teeth and the groove should be one on the same circumference so that they interlink with the coil.
/ 2 pitches are arranged in a non-contact combination with a pitch shift, and a ring-shaped rotor in which N poles and S poles are alternately arranged at equal pitches through pole teeth and air gaps, or two-pole magnetization in the rotation axis direction Hybrid type rotors, in which the permanent magnets are magnetic bodies having the same number of pole teeth and are sandwiched so that the pole teeth are displaced by 1/2 pitch, are rotatably combined with the above-mentioned stator with a predetermined gap. Inner characterized by
Rotor type or outer rotor type three-phase crow-pol type permanent magnet type rotating electrical machine. However, m is 1 or 2.
【請求項2】 3相分のステ−タポ−ルが同一平面上に
配置される1対のステ−タポ−ルの一方に形成されるヨ
−クに3m個のコイルを配置し,ヨ−クを通して形成さ
れる3m個の磁路の両端に櫛歯状の極歯を備えた磁性鉄
板で固定子が構成され, 上記コイルの励磁により上記ヨ−クを介して互いに異極
性に磁化するようにし, 少なくとも3m個のコイルを通過した磁性体の同一方向
側のステ−タポ−ルのいずれか一方は,3m個のコイル
で磁化される各々の極歯群の間は磁気的に飽和する程度
に連結部を狭くするか又は磁気的に非連結として,下記
回転子の永久磁 石からでた磁束の大部分を上記3m個の
コイルと鎖交するようにし, それらの各極歯が同一平面上で極歯部と溝部が互いに1
/2ピッチずれて非接触で組み合わされて配置され, それらの櫛歯と所定の間隙を隔てて軸方向に配置される
円周上に亙ってN極とS極を等ピッチで交互に設けられ
た円板状の回転子と上記固定子とを回転自在に組み合わ
されたことを特徴とする回転軸方向ギャップ型(アキシ
ャルギャップ型)の3相クロ−ポ−ル式永久磁石型回転
電機。但し,mは1又は2とする。
2. A 3 m coil is arranged in a yoke formed in one of a pair of stator poles in which the stator poles for three phases are arranged on the same plane. The stator is composed of a magnetic iron plate having comb-shaped pole teeth at both ends of a magnetic path of 3 m formed through the magnet, and is magnetized to have different polarities through the yoke by the excitation of the coil. At least one of the stator poles on the same direction side of the magnetic body that has passed through at least 3 m coils is magnetically saturated between the pole teeth groups magnetized by the 3 m coils. or as magnetically uncoupled narrow the connecting portion, below
The majority of the magnetic flux from the permanent magnet of the rotor of the 3m individual
The pole teeth and the groove should be one on the same plane so that the pole teeth are linked to the coil.
N poles and S poles are alternately arranged at equal pitches on the circumference arranged axially with a predetermined gap from the comb teeth, which are arranged in a non-contact manner with a pitch difference of 1/2 pitch. A rotating shaft direction gap type (axial gap type) three-phase crow-pol type permanent magnet type rotating electric machine characterized in that the disc-shaped rotor and the stator are rotatably combined. However, m is 1 or 2.
【請求項3】 上記のN極とS極を等ピッチで交互に配
置した回転子のN極とS極の対数(極対数),又は上記
のハイブリッド型回転子の歯数をZとし,上述した固定
子の櫛歯の歯ピッチ(同一極性分の歯ピッチ)をθ度と
すると,Z=m(3n±1) 及び 360゜/(Z+2)≦θ≦360゜/(Z−2) を満足することを特徴とする請求項1記載の3相クロ−
ポ−ル式永久磁石型回転電機。但し,mは1又は2,n
は1以上の正の整数とする。
3. The number of poles of the N-pole and the S-pole of the rotor in which the N-pole and the S-pole are alternately arranged at an equal pitch, or the number of teeth of the hybrid rotor is Z, and If the tooth pitch of the comb teeth of the stator (the tooth pitch of the same polarity) is θ degrees, then Z = m (3n ± 1) and 360 ° / (Z + 2) ≦ θ ≦ 360 ° / (Z-2) 3. The three-phase black according to claim 1, which is satisfied.
Poling type permanent magnet type rotating electrical machine. However, m is 1 or 2, n
Is a positive integer of 1 or more.
【請求項4】 上記のN極とS極を等ピッチで交互に配
置した回転子のN極とS極の対数(極対数),又は上記
のハイブリッド型回転子の歯数をZとし,上述した固定
子の櫛歯の歯ピッチ(同一極性分の歯ピッチ)をθ度と
すると,Z=m(3n±1) 及び 360゜/(Z+2)≦θ≦360゜/(Z−2) を満足することを特徴とする請求項2記載の3相クロ−
ポ−ル式永久磁石型回転電機。但し,mは1又は2,n
は1以上の正の整数とする。
4. The number of poles of the N-pole and the S-pole of the rotor in which the N-pole and the S-pole are alternately arranged at an equal pitch, or the number of teeth of the hybrid rotor is Z, and If the tooth pitch of the comb teeth of the stator (the tooth pitch of the same polarity) is θ degrees, then Z = m (3n ± 1) and 360 ° / (Z + 2) ≦ θ ≦ 360 ° / (Z-2) 3. The three-phase black according to claim 2, which is satisfied.
Poling type permanent magnet type rotating electrical machine. However, m is 1 or 2, n
Is a positive integer of 1 or more.
【請求項5】 上記ステ−タポ−ルに1対の櫛歯状の極
歯を形成する代わりに1枚の磁性板で構成したステ−タ
ポ−ルの上記極歯対応部分に極歯を形成するための複数
個のスリットを形成するようにした請求項1乃至4のい
ずれかに記載の3相クロ−ポ−ル式永久磁石型回転電
機。
5. Instead of forming a pair of comb-teeth-shaped pole teeth on the stator pole, a pole tooth is formed on the portion corresponding to the pole tooth of the stator pole constituted by one magnetic plate. A three-phase crow-pol type permanent magnet type rotary electric machine according to any one of claims 1 to 4, wherein a plurality of slits for forming the slit are formed.
JP23588993A 1993-08-30 1993-08-30 Three-phase claw-pole type permanent magnet type rotating electric machine Expired - Fee Related JP3410519B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP23588993A JP3410519B2 (en) 1993-08-30 1993-08-30 Three-phase claw-pole type permanent magnet type rotating electric machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP23588993A JP3410519B2 (en) 1993-08-30 1993-08-30 Three-phase claw-pole type permanent magnet type rotating electric machine

Publications (2)

Publication Number Publication Date
JPH0767312A JPH0767312A (en) 1995-03-10
JP3410519B2 true JP3410519B2 (en) 2003-05-26

Family

ID=16992750

Family Applications (1)

Application Number Title Priority Date Filing Date
JP23588993A Expired - Fee Related JP3410519B2 (en) 1993-08-30 1993-08-30 Three-phase claw-pole type permanent magnet type rotating electric machine

Country Status (1)

Country Link
JP (1) JP3410519B2 (en)

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP4007339B2 (en) 2003-11-07 2007-11-14 株式会社デンソー AC motor and its control device
JP4878183B2 (en) * 2005-03-18 2012-02-15 株式会社日立産機システム Multiphase claw pole type motor
JP5066863B2 (en) * 2006-08-04 2012-11-07 ダイキン工業株式会社 Rotating electric machine
CN110001846A (en) * 2019-04-15 2019-07-12 刘荣甫 Trunk cart made of light-duty mutual magnetic coil motor

Also Published As

Publication number Publication date
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