JPS62104452A - Fan integrated with motor - Google Patents

Fan integrated with motor

Info

Publication number
JPS62104452A
JPS62104452A JP24351685A JP24351685A JPS62104452A JP S62104452 A JPS62104452 A JP S62104452A JP 24351685 A JP24351685 A JP 24351685A JP 24351685 A JP24351685 A JP 24351685A JP S62104452 A JPS62104452 A JP S62104452A
Authority
JP
Japan
Prior art keywords
fan
permanent magnet
stator
motor
shaft
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.)
Pending
Application number
JP24351685A
Other languages
Japanese (ja)
Inventor
Joji Ochi
越智 譲次
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Daikin Industries Ltd
Original Assignee
Daikin Industries Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Daikin Industries Ltd filed Critical Daikin Industries Ltd
Priority to JP24351685A priority Critical patent/JPS62104452A/en
Publication of JPS62104452A publication Critical patent/JPS62104452A/en
Pending legal-status Critical Current

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  • Connection Of Motors, Electrical Generators, Mechanical Devices, And The Like (AREA)
  • Motor Or Generator Cooling System (AREA)

Abstract

PURPOSE:To obtain a compacted fan at low cost and of high torque, by fitting a short-cylindrical permanent magnet on a rotor having a cross flow fan integrally, and by setting a stator core having windings in a space inside the permanent magnet. CONSTITUTION:On the side plate 4 of the fan rotor 2 of a cross flow fan, a short-cylindrical permanent magnet 5 with pole pieces N and pole pieces S arranged alternately is fitted. In the meantime, on the cover 9 on the side surface of a housing 1, a stator core 7 wound up with windings 8 is fitted, and this stator 6 is set in a space inside the permanent magnet 5 of the rotor. A shaft 5 is saliently set on either one side of the side plate 4 of the rotor or the stator core 7, and on the other side, a bearing 10 is fitted via a vibration- proof rubber 11 so that the rotor 2 may be rotatably supported. By this organization, the stator and the rotor can be lengthened in the axial direction and confronted with each other, and the compacted device and high torque can be obtained.

Description

【発明の詳細な説明】 (産業上の利用分野) 本発明はクロスフローファンと直流モータとを一体構造
に有するモータ一体形ファンに関する。
DETAILED DESCRIPTION OF THE INVENTION (Field of Industrial Application) The present invention relates to a motor-integrated fan that has a cross-flow fan and a DC motor in an integrated structure.

(従来の技術) 空気調和機の室内ユニット等においては、室内空気循環
用にファンを備えており、最近の薄形構造では広1]に
吹出し得るものとしてクロスフo −ファンが多用され
ている。
(Prior Art) Indoor units of air conditioners and the like are equipped with fans for indoor air circulation, and in recent thin structures, cross-foil fans are often used as they can blow air over a wide area.

(発明が解決しようとする問題点〕 ところで空気調和機の大きさにより、ファンの容量を変
えればファンの種類が多くなるので、最近ではファンを
駆ωノするモータの回転速度を変え=2− ることによって、ファンの種類を少くしている。
(Problem to be solved by the invention) By the way, depending on the size of the air conditioner, there are many types of fans available if you change the capacity of the fan.Recently, it is possible to change the rotational speed of the motor that drives the fan by changing the speed of the motor that drives the fan = 2- By doing so, the number of types of fans is reduced.

現在一般に用いられているファン駆動用モータは、誘導
電aU+−mで、その中でも家庭用の比較的小型の空気
調和機においてはコンデンサ運転形誘導電1σ1機が多
く、第9図に示す如ぐモータ閏の軸とクロスフローファ
ンの回転子(21の’M トk 突合b セてカップリ
ングなどにより連結している。
The fan drive motors commonly used at present are induction electric motors aU+-m, and among these, capacitor-operated induction electric 1σ1 motors are often used in relatively small home air conditioners, such as the one shown in Figure 9. The shaft of the motor jumper and the rotor of the cross-flow fan (21) are connected by a coupling or the like.

そ17てこの誘導電動機を変速するには、主巻線の途中
からタップリード線を引出して電源からの供給を切換え
ることにより変速全可能としている。
17 To change the speed of the induction motor, the tap lead wire is pulled out from the middle of the main winding and the power supply is switched, thereby making it possible to change the speed.

rift 述のタップ付誘導電「1機に使用される回転
速度は変速比を大きくするために、停動トルクよりも低
い回転速度で使わ)することが多く、従って供給電圧の
変化あるいはファンの構造上のバラツギによる負荷の変
化に大きく影響され、不安定である。
The tapped induction electric motor (rotational speed used in one machine is often lower than the stall torque in order to increase the gear ratio), therefore, changes in the supply voltage or the structure of the fan It is unstable as it is greatly affected by changes in load due to the above variations.

また、モータの完成品を、ファンに組込むには第9図に
示すように、モータを収納する容積ヲ広く必留としてユ
ニットが大きくなるのと、モータの占めるコストも高く
、組立てにも可成りの工数が加わる不経済な而を有して
いる。
In addition, as shown in Figure 9, in order to incorporate a completed motor into a fan, it is necessary to have a large capacity to accommodate the motor, which results in a large unit, and the cost of the motor is high, making it difficult to assemble. This method is uneconomical as it requires additional man-hours.

か\る問題点に鑑みて、最近、ファンとモータとを一体
構造となしたものが開発さh、るに至って、例えば実開
昭f’i Q−4)594号公報によって公知となって
いるが、これは平板リング状のローター用マグネットを
クロスフローファンの6111板に取着し、前記ロータ
用マグネットと面対向するように平板状に捲回されたス
テータ用コイルを配設置〜て面対向型ブラシレスモータ
を形成したものテする。
In view of these problems, a system in which a fan and a motor are integrated has recently been developed, and it has been made public, for example, in Japanese Utility Model Application Publication No. 594 (1999). However, in this case, a flat ring-shaped rotor magnet is attached to the 6111 plate of a cross flow fan, and a stator coil wound in a flat plate shape is placed so as to face the rotor magnet. It is a type of opposed brushless motor.

ところがこのモーター1木彫ファンは、クロスフローフ
ァンの胴径vc 、r:つてロータ用マグネットの磁極
面積が制限さノ1て余り大きくとることができないため
にモータトルクが大きいものは?!+ 脩11 <、従
って、希十力′1磁石等、W1jコストの磁石を使用し
tcければならrc <て汎用品とI7ては適当でrc
かったO このように従来のモータ一体形ファンが実用面での種々
問題点を有している事実に着目して本発明は成されたも
のであって、磁石をファン回転子の軸方向に延ばすこと
が可能な短筒構造となすことにより、磁極面積を太きく
とれると共に固定子とのエアギャップを小さくし得る構
造となし、低コスト、高トルクのコンパクト化されたモ
ータ一体形ファンの実現をはかろうとするものである。
However, in this motor 1 wood carved fan, the cross flow fan's body diameter vc, r: Because the magnetic pole area of the rotor magnet is limited, the motor torque cannot be increased too much. ! + Shu 11 <, Therefore, it is necessary to use a magnet of W1j cost, such as a rare Juriki'1 magnet, and rc.
The present invention was developed by focusing on the fact that conventional motor-integrated fans have various practical problems. By creating a short tube structure that can be extended, the magnetic pole area can be increased and the air gap with the stator can be reduced, resulting in a compact, low-cost, high-torque motor-integrated fan. This is what we are trying to measure.

(問題点を解決するための手段) そこで本発明は実施例を示す図面によっても明らかなよ
うにN磁極片(5N)とS磁極片(5S)とを交互に隣
り合わせることにより短筒状に、かつ各磁極の方向が短
筒の中心全回〈よう配列して形成したtm 筒形ノ永久
m 石+5+ w、クロスフローファンのファン回転子
12)の側板14)に同軸的に取着する一方、鉄心17
)の各スロットに巻線18)が巻装されてなる固定) 
11’il f、クロスフローファンのハウジングI1
1における側面の蓋(9)に、前記永久磁石(5)の内
方で同心に介在し得る如く固定せしめて、前記側板(4
)の回転中心部と前記固定子(6)の鉄心(7)の中心
部とに対して、−万には軸]3)を直交して突設し・他
方には前記軸(3)に対応させた軸受1101を防振ゴ
ム(Illにより囲繞させて介設せしめて、前記永久磁
石15)とその内方に同心に介在させた前記固定子IC
)1とにより直流ブラシレスモータラ形成してなるモー
タ一体形ファンに構成したものである。
(Means for Solving the Problems) Therefore, as is clear from the drawings showing the embodiments, the present invention creates a short cylindrical shape by alternately placing N magnetic pole pieces (5N) and S magnetic pole pieces (5S) next to each other. , and are arranged so that the direction of each magnetic pole is all the way around the center of the short tube, and is coaxially attached to the side plate 14) of the fan rotor 12) of the cross flow fan. On the other hand, iron core 17
) with a winding 18) wound around each slot of the
11'il f, cross flow fan housing I1
The side plate ( 4
) and the center of the iron core (7) of the stator (6), a shaft] 3) is provided protruding perpendicularly to the center of rotation of the stator (6) and the center of the iron core (7) of the stator (6). The corresponding bearing 1101 is surrounded by vibration isolating rubber (the permanent magnet 15 is surrounded by Ill, and the permanent magnet 15) and the stator IC is interposed concentrically inside thereof.
) 1 to form a DC brushless motor to form a motor-integrated fan.

しかして本発明は、1jiI記(’Jj rMゴム山;
により囲繞させて防振的に弁設置7た1h11受111
1 f 、グリース等の潤滑剤が充填さ)する溜り部を
イ「する無給油彩平軸受となすことを好ましい態様とす
るものである。
Therefore, the present invention is based on 1jiI ('Jj rM Rubber Mountain;
The valve is installed for vibration isolation by surrounding it with 7 1 h 1 1
A preferred embodiment is that the bearing is an oil-free plain bearing in which the reservoir is filled with a lubricant such as grease.

また、本発明は、側板(4)の回転中心部あるいは固定
子[61の鉄心(7)の中心部に一体で突設した軸(3
)を、部分的に先細をなす軸端が設けられ、てなる構造
としたことを、また好ましい態様とするものである。
The present invention also provides a shaft (3) integrally protruding from the center of rotation of the side plate (4) or the center of the iron core (7) of the stator [61].
) is provided with a partially tapered shaft end to form a structure, which is also a preferred embodiment.

(作f@) 本発明は、ファン回転子(2)に同心的に取着した短筒
形の永久磁磁15)が回転子とt「す、蓋19)に固定
(〜た前記固定子(6)が巻線(8)全備えた固定子と
なって前記回転子121に対し同軸に配設さり、てブラ
シレス直流モータを形成するので、前記巻線(8)に電
圧値全可変とE〜得る直流電圧を正逆交互に繰り返して
印加することにより・ファン回転数2 rAf 線的l
「6一 フ(1(段階に調flhでき、しかも磁極面積を太きく
とることができてコンパクトγ【がら高トルクが得られ
る。
(Production f@) The present invention is characterized in that a short cylindrical permanent magnet 15) attached concentrically to the fan rotor (2) is fixed to the rotor and the lid 19). (6) serves as a stator with all windings (8) and is disposed coaxially with the rotor 121, forming a brushless DC motor, so that the winding (8) has a fully variable voltage value. By repeatedly applying the DC voltage obtained from E~ in forward and reverse directions, fan rotation speed 2 rAf Linear l
"It can be adjusted in 6-1 steps, and the magnetic pole area can be made large, making it possible to obtain high torque while being compact.

f人二本発明は、防振ゴム(111を介して軸受(10
1を取すイτ1けているので、軸方向に長くて回転中に
振動が生じやすいクロスフローファンを防振的に支持し
発熱が少く円滑な運転を保持する。
f people 2 This invention is a bearing (10
Since the cross-flow fan is long in the axial direction and tends to vibrate during rotation, it is supported in a vibration-proof manner, and generates less heat and maintains smooth operation.

さらに本発明は無給前影平軸受を用いることによって、
ji′L純構造で絹付けが至極簡単に行え、−万、軸(
3)の先端を先細構造とすることによって、永久磁石1
5)の強い吸引力に抗して軸を容易に軸受円に挿入でき
、組付けが容易となる。
Furthermore, by using an unpaid front shadow plain bearing, the present invention achieves
ji′L pure structure makes it extremely easy to attach silk.
3) By forming the tip of the permanent magnet 1 into a tapered structure,
5) The shaft can be easily inserted into the bearing circle against the strong suction force, making assembly easy.

(実施例) 以下、本発明の各実施例を添付図面にもとづき説明する
(Example) Hereinafter, each example of the present invention will be described based on the accompanying drawings.

第1実施例を示す第1図において、■はクロスフローフ
ァンのハウジングで、軸方向に長い形のファン回転子(
21ヲ回転自在に内蔵しており、このファン回転子12
1は送風部分となる筒状部が硬質合成樹脂の成型品であ
って、ステンレス鋼で作られ一7= た軸13+を筒状部の成型の際に、後述する軸受の側と
その反対側について夫々合成樹脂層中に埋込ませて一体
成型することによりファン回転子121が形成される。
In Fig. 1 showing the first embodiment, ■ is the housing of the cross flow fan, and the fan rotor (
21 is built in so that it can rotate freely, and this fan rotor 12
1 is a molded product in which the cylindrical part serving as the air blowing part is made of hard synthetic resin, and the shaft 13+ is made of stainless steel. The fan rotor 121 is formed by respectively embedding them in a synthetic resin layer and integrally molding them.

上記ハウジングIllは詳細示していないが、ファン回
転子1210回転千巾に亘る細長い吸込部と吹出し部と
ケ開口して有するものであって、遠心形送風機に類する
ファンであることは明らかである。
Although the housing Ill is not shown in detail, it is clear that it is a fan similar to a centrifugal blower, as it has an elongated suction section and an elongated outlet section extending over the rotation width of the fan rotor 1210.

このクロス70−ファンは、ファン回転子(21の一方
の側板(4)と、該側板(4)に対向するITII記ハ
ウジングIl+の側面の蓋(1)1とに関連させて、側
板(4)・蓋(9)間の空所内に永久磁石(5)と固定
子(6)とを配設して、相互間では前者15(が外、後
者(6)が内となる同心で、かつ、ファン回転子(21
に対(7ては軸中心を合致させた同軸にて設けている。
This cross 70-fan has a side plate (4) in relation to one side plate (4) of the fan rotor (21) and a side cover (1) 1 of the ITII housing Il+ opposite to the side plate (4). ) and the lid (9), a permanent magnet (5) and a stator (6) are arranged concentrically with the former (15) on the outside and the latter (6) on the inside, and , fan rotor (21
Pairs (7) are provided coaxially with their axes aligned.

まず、永久磁石15)については、円弧片状をなす1つ
以上の例えば希土類系、フェライト系等からなるN磁極
片(5N)及びS磁極片(5S)とを円周方向に交互に
隣り合わせて配列し、かつ各磁極片(5N)。
First, regarding the permanent magnet 15), one or more N magnetic pole pieces (5N) and S magnetic pole pieces (5S) made of, for example, a rare earth element or a ferrite element, which are in the shape of circular arc pieces, are arranged adjacent to each other alternately in the circumferential direction. Arrange and each pole piece (5N).

(5S)の磁極の方向を円中心に指向させた短円筒に一
8= 形成して前記ファン回転子+21に同軸となしてその側
板(4)に取着している。
(5S) is formed into a short cylinder with the magnetic poles oriented toward the center of the circle, and is coaxially attached to the fan rotor +21 and attached to its side plate (4).

上記永久磁石(5)全前記側板14)に取着するための
固定用外枠としては、図示の如く鉄板(121を永久磁
石15)の外周及び側板(4)から一体的に突設させて
前記永久磁石til+と等径をなす円環凸部に巻き付け
る手段を採用しており、これによって容易かつ強固に永
久磁石15)を一体に固定させることが可能であり、ま
た、この鉄板(121は磁気回路の一部として兼用さね
、る。
As a fixing outer frame for attaching all of the permanent magnets (5) to the side plate 14), as shown in the figure, an iron plate (121) is provided integrally protruding from the outer periphery of the permanent magnet 15 and the side plate (4). The iron plate (121) is wound around a circular convex portion having the same diameter as the permanent magnet til+. It can also be used as part of the magnetic circuit.

一方、固定子(6)は、円板状のケイ素鋼板を積層した
鉄心(7)に所要数のスロットを削設して、このスロッ
ト内に固定子用の巻線18)全挿設し、さらに、鉄心(
7)の中心部には、軸受機構を嵌装し得る大径孔とそれ
よりも稍々小さい小径孔とを同軸に連ねて有する段付孔
を貫通して設けており、マタ、この段付孔の周囲には固
定用の細孔を複数個分散し貫通させて設けている。
On the other hand, for the stator (6), the required number of slots are cut in the core (7) made of laminated disc-shaped silicon steel plates, and all of the stator windings 18) are inserted into these slots. In addition, the iron core (
7) A stepped hole is provided in the center of the hole, which has a large diameter hole into which a bearing mechanism can be fitted and a slightly smaller small diameter hole coaxially connected. A plurality of fixing pores are dispersed and penetrated around the hole.

この固定子(6)は図示の如く段付孔の小径孔がファン
回転子121側に位置するようにして大径孔に軸−9= 受機構を嵌装した後、前記固定用の細孔を利用してハウ
ジング(1)における側面の蓋(9)の内面に沿い固定
せしめるが、これによって軸受機構の防振ゴム(11]
全段付孔の段壁部と蓋(9)の取付面とによって両側か
ら挾み付けて固定するようになっている。
As shown in the figure, the small diameter hole of the stepped hole is located on the fan rotor 121 side, and after fitting the shaft-9=receiving mechanism into the large diameter hole, the small hole for fixing is inserted. The vibration isolating rubber (11) of the bearing mechanism is fixed along the inner surface of the side cover (9) of the housing (1) using the
The lid (9) is clamped and fixed from both sides by the stepped wall portion of the stepped hole and the mounting surface of the lid (9).

なお、鉄心+7)は順送金型で打抜くと内径の異なった
鉄心でも同一金型で打抜くことができ、最近開発された
カシメ方式を採用すると鉄心打抜プレスから第1図に図
示の鉄心形状に完成された形態で出てぐる。
Note that if the core +7) is punched with a progressive die, cores with different inner diameters can be punched out with the same die, and if a recently developed caulking method is used, the core shown in Figure 1 can be punched from the core punching press. It comes out in a perfected form.

一方、前記蓋1!)1は輔(3)のスラスト方向の逃げ
のためと、潤滑油を溜めるためのスペースを設けており
、このスペースの内径が前記防振ゴム(11)の外径に
比して小さくなるようにすることによって防振ゴム(1
11を前述の如く押えつけることが可能である。
On the other hand, the lid 1! ) 1 provides a space for escape in the thrust direction of the support (3) and for storing lubricating oil, and the inner diameter of this space is made smaller than the outer diameter of the vibration isolating rubber (11). Vibration-proof rubber (1
11 can be held down as described above.

次に軸受機構については)第2図乃至第5図に示す如く
、前記軸(3)に嵌合せしめる軸受(1o]例えば平軸
受と、この平軸受(10)の周りを囲繞する防振ゴム1
111とにより形成している。
Next, regarding the bearing mechanism) As shown in Figures 2 to 5, there is a bearing (1o), for example, a flat bearing, which is fitted onto the shaft (3), and a vibration-proof rubber that surrounds the flat bearing (10). 1
111.

平軸受110)は第2図及び第3図に示されるが、硬質
合成樹脂例えばポリアセクール糸樹脂の成型品であって
中心に軸13+が挿通さね7る孔Cl0A)を有し、ま
た、この孔(IOA)の周囲に3個所等分配置となして
該孔(IOA、)に夫々連通するグリースなど潤滑剤全
充填するための溜り邪Cl0B) ′ff:有していて
、溜り玲〜(]、OB)内のグリースが必要量だけ孔C
l0A)部の内111’に自動供給されることにより、
該内壁とその中に挿通され回転中の軸13)との間に油
膜を形成E2、焼付けなどから保護する潤滑性能を発揮
する。
The plain bearing 110) is shown in FIGS. 2 and 3, and is a molded product of hard synthetic resin, such as polyacecool thread resin, and has a hole Cl0A) in the center through which the shaft 13+ is inserted. There are three reservoirs arranged equally around the hole (IOA) and communicating with each hole (IOA) to completely fill the lubricant such as grease. ], OB) in the required amount to the hole C.
By being automatically supplied to 111' of part 10A),
An oil film is formed E2 between the inner wall and the rotating shaft 13 inserted therein, exhibiting lubricating performance to protect against seizure and the like.

上記平軸受(101は軸中心を通る面で切断したときの
引形が所定形の円に沿う周面全有する球冠状をなし7で
いる。
The plain bearing (101) has a spherical crown shape with the entire circumferential surface along a predetermined circle when cut along a plane passing through the center of the shaft.

一方、防振ゴム(111は硬度が比較的大きい合成ゴム
より形成していて外形は円盤となっており、そして内側
の壁面は前記平軸受(101の外形に対応した球冠状に
形成しており、第3図及び第5図から明らかなように防
揚ゴム旧)因に介装した平軸受(10)は軸(3)の傾
き方向に対して自由に動くようになり、従って自動調心
が可能jr htt造になっている。
On the other hand, the anti-vibration rubber (111) is made of synthetic rubber with relatively high hardness and has a disc-shaped outer shape, and the inner wall surface is formed into a spherical crown shape corresponding to the outer shape of the flat bearing (101). As is clear from Figures 3 and 5, the flat bearing (10) interposed with the anti-lift rubber can now move freely in the direction of inclination of the shaft (3), and therefore self-aligning. It is possible to use jr htt.

叙上の構造になるモータ一体形ファンは平軸受(101
及び防振ゴム(11)を鉄心(7)の所定個所に装着し
た後、固定子(6)を蓋(1))に固定一体σせ、ハウ
ジング11)内に収納したファン回転子(21の軸13
)と平軸受+101とが嵌合するようにnii記蓋(9
)ヲハウジング+11に固着することによって、固定子
(61は短円筒形の永久磁石15)内に同心で介挿さコ
15、ファンハウジングIIIには固定さバー、かつ、
ファン回転子(21ヲ回転自在に支持する状態となる。
The motor-integrated fan with the above structure uses flat bearings (101
After attaching the anti-vibration rubber (11) to the predetermined locations of the iron core (7), the stator (6) is fixedly attached to the lid (1)), and the fan rotor (21) housed in the housing 11) is attached. Axis 13
) and flat bearing +101 fit together.
) By fixing to the housing +11, the bar 15 is inserted concentrically within the stator (61 is a short cylindrical permanent magnet 15), the bar is fixed to the fan housing III, and
The fan rotor (21) is now rotatably supported.

かぐして同心配置をなす永久磁石(5)と固定子(6)
とによってブラシレス直流モータが構成され、クロスフ
ローファンとモータとが同軸一体化されたコンパクトな
構造の送風機が7(!られる。
Permanent magnet (5) and stator (6) arranged concentrically
A brushless DC motor is constructed by the above, and a compact blower in which the crossflow fan and motor are coaxially integrated is created.

ところで第1図々示の軸(3)は先端を截頭円すい状の
先細に尖らせており、かかる形状となすことにより軸+
3)の位置が軸受面の孔(1,OA)中心より少しずれ
た状態と4V、って組込んだ場合にも一11f3)の先
細の先端は孔(IOA)内に確実にはまり込むので軸(
3)全損傷させることt(<軸受間)に正しく挿入され
る。
By the way, the tip of the shaft (3) shown in Figure 1 is tapered into a truncated conical shape, and by forming it into such a shape, the shaft +
Even if the position of 3) is slightly shifted from the center of the hole (1, OA) on the bearing surface and 4V is installed, the tapered tip of 11f3) will fit securely into the hole (IOA). shaft(
3) Do not damage the entire bearing (<between bearings) and insert correctly.

なお、ブラシレス直流モータの場合は永久磁石(5)の
磁化力が強力で、固定子(6)の鉄心(7)を吸引する
力が大であるので軸【3)全軸受(101の孔CIOA
 )に挿入する際、中心を合致させることが困難である
が、軸+3)の先端とすることにより、軸(3)と軸受
(101との係合は確実、容易であり、特にその効果は
大である。
In addition, in the case of a brushless DC motor, the magnetizing force of the permanent magnet (5) is strong, and the force that attracts the iron core (7) of the stator (6) is large.
), it is difficult to align the centers, but by using the tip of the shaft (3), the engagement between the shaft (3) and the bearing (101) is reliable and easy, and the effect is particularly It's large.

しか1−でブラシレス直流モータの構造原理は第6図に
示される通りであり、固定子(6)における各巻線+8
1.181はパワートランジスタ++3).03)を直
列に介して直流電源((4)に接続せしめる。
However, the structural principle of the brushless DC motor is as shown in Fig. 6, and each winding +8 in the stator (6)
1.181 is a power transistor ++3). 03) is connected in series to the DC power supply ((4).

−万、永久磁石15)はファン回転子]21と一体で回
転せ(−められるモータ回転子となっている。
The permanent magnet 15) is a motor rotor that is rotated integrally with the fan rotor 21.

このブラシレス直流モータは一巻線電流をパワートラン
ジスタ(13)で制御することにより、永久磁石(5)
の磁極から出る磁束と巻線(81に流れる電流とによっ
てトルクが生じて、永久磁石(5)を回転させることが
できる。
This brushless DC motor uses a permanent magnet (5) by controlling the current of one winding with a power transistor (13).
A torque is generated by the magnetic flux emitted from the magnetic poles of the permanent magnet (5) and the current flowing through the winding (81), and the permanent magnet (5) can be rotated.

しかして第6図に示すように、ブラシレスモー夕ハ、−
k 久m 石+h+の磁極全検出するためにボール素子
(Hl)〜(Ha)等の検出器を用い、また、回転数を
制御するために、供給電目−を変える必要があるがこれ
らは簡屯な重子回路で構成できる。
However, as shown in FIG.
In order to detect all the magnetic poles of K Kum + H+, it is necessary to use detectors such as ball elements (Hl) to (Ha), and to control the rotation speed, it is necessary to change the power supply, but these It can be constructed with a simple multiplex circuit.

すなわち、ブラシレスモータを回転させるには、例えば
永久磁石15)を4極、固定チェ11の巻線(8)は6
極の3相星形結線にすると、Ii’7)定子巻線(81
はホール素子(Hl) 〜(Ha)  K ヨリ2相、
4 k K 11117 次面?(Mされ、永久磁石(
5)と固定子(6)に生じた磁極にの吸引及び、反撥力
によって回転するのである。
That is, in order to rotate the brushless motor, for example, the permanent magnet 15) has four poles, and the fixed chain 11 has six windings (8).
When the poles are connected in a three-phase star shape, Ii'7) Stator winding (81
is a Hall element (Hl) ~ (Ha) K two-phase,
4 k K 11117 Next plane? (M, permanent magnet (
5) and the stator (6), it rotates due to the attraction and repulsion of the magnetic poles.

このブラシレスモータをファン駆動モータに適用すると
、トルクスピード特性かり17 図(7) 如<、供給
電圧を変位するだけで、モータのトルクスピード曲線は
TM、→’rM4. TMa→TM、と連続的に変化で
き、ファン負荷との交点も常に回転速度を安定させ得る
交わり万をしているので安定した速度制御が可能である
When this brushless motor is applied to a fan drive motor, the torque speed characteristic is as shown in Figure (7).By simply changing the supply voltage, the torque speed curve of the motor becomes TM, →'rM4. It can change continuously from TMa to TM, and the intersection with the fan load always has an intersection that can stabilize the rotational speed, so stable speed control is possible.

このようにモータの付勢によってファン回転子121が
回転しだすと・僅かではあるがスラスト方向の振動が発
生する。
When the fan rotor 121 begins to rotate due to the energization of the motor in this manner, vibrations in the thrust direction occur, albeit slightly.

このとき、蓋(9)のスペースに収容されている潤滑剤
含浸フェルトと軸【3)とが軽く接触して、軸受(10
1と軸(3)との隙間に潤滑剤が供給される。
At this time, the lubricant-impregnated felt housed in the space of the lid (9) and the shaft [3] come into light contact, causing the bearing (10
A lubricant is supplied to the gap between the shaft (3) and the shaft (3).

第1図に図示する例は蓋(9)におけるスペースの孔径
がl(/j撮ゴム(Illのダ1径より小さくて、さら
に防振ゴム(11)の側面を押し付けた状態になってい
るので潤滑剤が々)部に漏れることはない。
In the example shown in Fig. 1, the hole diameter of the space in the lid (9) is smaller than the diameter of the space in the lid (9), and the side surface of the anti-vibration rubber (11) is pressed against it. Therefore, lubricant will not leak into the parts.

次に第8図は本発明の第2実施例を示しており、図示例
は先端全先細に形成した軸[3)が固定子(61の鉄心
(7)中更に突設され、−万、軸受(lO)及び防振ゴ
ム(111がファン回転子(21の側板f4)に介設さ
ね、ている点が構造的に異なっているのみで、他の構造
は第1実施例と同じとなっている。
Next, FIG. 8 shows a second embodiment of the present invention. The only difference in structure is that the bearing (lO) and the anti-vibration rubber (111 are not interposed on the fan rotor (side plate f4 of 21), and the other structures are the same as in the first embodiment. It has become.

この例は軸受11[]1がファン回転子(2)の側板(
4)中心に介在プせて設けらバーているので、固定子(
6)の鉄心(7)中央に設けられてなる第1実施例に比
較してlII記鉄心17)の磁気回路に余裕が生じ、従
って固定子(6)の径方向の大きさを縮小することが可
能であり、しかも高トルクを出し得る。
In this example, the bearing 11[]1 is attached to the side plate (2) of the fan rotor (2).
4) Since there is a bar interposed in the center, the stator (
Compared to the first embodiment in which the iron core 17) is provided at the center of the iron core 6), there is more room in the magnetic circuit of the iron core 17), thus reducing the radial size of the stator (6). is possible, and can also produce high torque.

(発明の効果) 本発Illは以上詳述1−た如く、永久磁石15)を短
筒形となしてファン回転子(21の側板(4)に同軸的
に取着し、また巻線(8)を有する固定子[61?永久
磁石111)の内方で同心に介在し得る如くハウジング
II+の蓋(9)に固定せしめたから、モータ回転子と
なる永久磁石[5)と固定子+1’ilとを許容し得る
範囲内で軸方向に長くさせて対向させ7(すると共に、
両者15) 、(6)間のエヤギャップTh−rlr及
的に小さくし得る結果、コンパクトな構造ながらもiR
i )ルク全出力することが可能である。
(Effects of the Invention) As described in detail in 1-1 above, in the present invention, the permanent magnet 15) is formed into a short cylindrical shape and coaxially attached to the side plate (4) of the fan rotor (21), and the winding ( Since it is fixed to the lid (9) of the housing II+ so that it can be concentrically interposed inside the stator [61?permanent magnet 111) having the motor rotor, the permanent magnet [5) which becomes the motor rotor and the stator +1' il and are made to be long in the axial direction within an allowable range and face each other 7 (and
As a result, the air gap Th-rlr between both 15) and (6) can be made as small as possible, and even though the structure is compact, the iR
i) Full power output is possible.

さらに軸(3)を支持する軸受間]を、防振ゴム(11
1を介して取り付けているので、ファン回転子121の
振動全吸収して固定側となるハウジングil+に伝えな
いようにすることができる。
Furthermore, between the bearings that support the shaft (3)], the anti-vibration rubber (11
1, it is possible to completely absorb the vibrations of the fan rotor 121 and prevent them from being transmitted to the housing il+, which is the fixed side.

また、軸受1101 ’i無給油前影軸受に形成してな
ることにより、構造簡単かつ組立てが容易で、長期間に
わたり安定した簡滑性能百二発揮し得る。
Furthermore, by forming the bearing 1101'i as an oil-free front shadow bearing, the structure is simple and easy to assemble, and stable and simple performance can be exhibited over a long period of time.

サラに、軸(3)の先端全先細とすることによって組付
けの際に軸(3Iの軸受tl+llとの心合わせが多少
ずれていたとしても確実かつ軽快に結合が行える。
By making the tip of the shaft (3) completely tapered, even if the shaft (3I) is slightly misaligned with the bearing tl+ll during assembly, the connection can be performed reliably and easily.

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

fi1図乃至第7図は本発明の第1実施例の態様を示す
図で、第1図は要部略示構造図%!2図は軸受の側面図
、第3図は第2図の1−1線矢視方回の断面図、第4図
は防振ゴムの側面図、第5図は第4図のv−V紛失視方
向断面図、第6図は固定子巻線に関連する電気回路図、
@7図は回転速度−トルク関係線図、第8図は本発明の
第2実施例の要部略示構造図、第9図は従来の軸直結形
ファン機構の要部略示構造図である。 Ill・・・ハウジング、121・・・ファン回転子。 +3) 、、・軸、(4I・・・側板、15)・・・永
久磁石。 (5N)・・・N磁極片、   (5S)・・・S磁極
片。 1[1l−−−固定子、(7)・・・鉄心、(8)・・
・巻線。 19+・・・蓋+   +101・・・軸受、  Il
l・・・防振ゴム。 第1図 二 ■ 第7図 第8 図
Fig. fi1 to Fig. 7 are diagrams showing aspects of the first embodiment of the present invention, and Fig. 1 is a schematic structural diagram of the main parts. Figure 2 is a side view of the bearing, Figure 3 is a sectional view taken along the line 1-1 in Figure 2, Figure 4 is a side view of the anti-vibration rubber, and Figure 5 is taken along v-V in Figure 4. A cross-sectional view in the lost direction, FIG. 6 is an electrical circuit diagram related to the stator winding,
@Figure 7 is a rotational speed-torque relationship diagram, Figure 8 is a schematic structural diagram of the main parts of the second embodiment of the present invention, and Figure 9 is a schematic structural diagram of the main parts of a conventional shaft-directly coupled fan mechanism. be. Ill...Housing, 121...Fan rotor. +3) ,,・Shaft, (4I...Side plate, 15)...Permanent magnet. (5N)...N magnetic pole piece, (5S)...S magnetic pole piece. 1[1l---Stator, (7)... Iron core, (8)...
・Winding wire. 19+...Lid+ +101...Bearing, Il
l... Anti-vibration rubber. Figure 1 2 ■ Figure 7 Figure 8

Claims (1)

【特許請求の範囲】 1、N磁極片(5N)とS磁極片(5S)とを交互に隣
り合わせることにより短筒状に、かつ各磁極の方向が短
筒の中心を向くよう配列して形成した短筒形の永久磁石
(5)を、クロスフローファンのファン回転子(2)の
側板(4)に同軸的に取着する一方、鉄心(7)の各ス
ロットに巻線(8)が巻装されてなる固定子(6)を、
クロスフローファンのハウジング(1)における側面の
蓋(9)に、前記永久磁石(5)の内方で同心に介在し
得る如く固定せしめて、前記側板(4)の回転中心部と
前記固定子(6)の鉄心(7)の中心部とに対して、一
方には軸(3)を直交して突設し、他方には前記軸(3
)に対応させた軸受(10)を防振ゴム(11)により
囲繞させて介設せしめて、前記永久磁石(5)とその内
方に同心に介在させた前記固定子(6)とにより直流ブ
ラシレスモータを形成してなることを特徴とするモータ
一体形ファン。 2、防振ゴム(11)に囲繞させて介設した軸受(10
)が、潤滑剤を充填した溜り部を有する無給油形平軸受
である特許請求の範囲第1項記載のモータ一体形ファン
。 3、側板(4)の回転中心部と固定子(6)の鉄心(7
)の中心部とのいずれか一方に突設した軸(3)が、先
細をなす軸端を有する特許請求の範囲第1項又は第2項
記載のモータ一体形ファン。
[Claims] 1. N magnetic pole pieces (5N) and S magnetic pole pieces (5S) are arranged adjacent to each other alternately to form a short cylinder shape, and the direction of each magnetic pole is directed toward the center of the short cylinder. The formed short cylindrical permanent magnet (5) is coaxially attached to the side plate (4) of the fan rotor (2) of the cross flow fan, while a winding (8) is attached to each slot of the iron core (7). The stator (6) is wrapped with
The center of rotation of the side plate (4) and the stator are fixed to the side cover (9) of the housing (1) of the crossflow fan so as to be interposed concentrically inside the permanent magnet (5). A shaft (3) is provided on one side protruding perpendicularly to the center of the iron core (7) of (6), and the shaft (3) is provided on the other side.
) is surrounded and interposed with vibration-proof rubber (11), and direct current is generated by the permanent magnet (5) and the stator (6) concentrically interposed inside the permanent magnet (5). A motor-integrated fan characterized by forming a brushless motor. 2. Bearing (10) surrounded and interposed in anti-vibration rubber (11)
2. The motor-integrated fan according to claim 1, wherein said fan is an oil-free flat bearing having a reservoir filled with lubricant. 3. The center of rotation of the side plate (4) and the iron core (7) of the stator (6)
3. The motor-integrated fan according to claim 1, wherein the shaft (3) protruding from either side of the central portion of the shaft (3) has a tapered shaft end.
JP24351685A 1985-10-30 1985-10-30 Fan integrated with motor Pending JPS62104452A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP24351685A JPS62104452A (en) 1985-10-30 1985-10-30 Fan integrated with motor

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP24351685A JPS62104452A (en) 1985-10-30 1985-10-30 Fan integrated with motor

Publications (1)

Publication Number Publication Date
JPS62104452A true JPS62104452A (en) 1987-05-14

Family

ID=17105068

Family Applications (1)

Application Number Title Priority Date Filing Date
JP24351685A Pending JPS62104452A (en) 1985-10-30 1985-10-30 Fan integrated with motor

Country Status (1)

Country Link
JP (1) JPS62104452A (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0190297U (en) * 1987-12-07 1989-06-14
US9685840B2 (en) 2012-12-21 2017-06-20 Fisher & Paykel Appliances Limited Motor

Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS6035935A (en) * 1983-08-04 1985-02-23 Secoh Giken Inc Fan motor

Patent Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS6035935A (en) * 1983-08-04 1985-02-23 Secoh Giken Inc Fan motor

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0190297U (en) * 1987-12-07 1989-06-14
US9685840B2 (en) 2012-12-21 2017-06-20 Fisher & Paykel Appliances Limited Motor
US10193416B2 (en) 2012-12-21 2019-01-29 Fisher & Paykel Appliances Limited Motor

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