JPH0217879A - Compound magnetic geared motor - Google Patents
Compound magnetic geared motorInfo
- Publication number
- JPH0217879A JPH0217879A JP16741788A JP16741788A JPH0217879A JP H0217879 A JPH0217879 A JP H0217879A JP 16741788 A JP16741788 A JP 16741788A JP 16741788 A JP16741788 A JP 16741788A JP H0217879 A JPH0217879 A JP H0217879A
- Authority
- JP
- Japan
- Prior art keywords
- disk
- small
- onto
- permanent magnets
- motor
- 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
Links
- 150000001875 compounds Chemical class 0.000 title 1
- 239000002131 composite material Substances 0.000 claims description 2
- BGPVFRJUHWVFKM-UHFFFAOYSA-N N1=C2C=CC=CC2=[N+]([O-])C1(CC1)CCC21N=C1C=CC=CC1=[N+]2[O-] Chemical compound N1=C2C=CC=CC2=[N+]([O-])C1(CC1)CCC21N=C1C=CC=CC1=[N+]2[O-] BGPVFRJUHWVFKM-UHFFFAOYSA-N 0.000 abstract 1
- 238000002485 combustion reaction Methods 0.000 description 2
- 238000004804 winding Methods 0.000 description 1
Landscapes
- Dynamo-Electric Clutches, Dynamo-Electric Brakes (AREA)
- Connection Of Motors, Electrical Generators, Mechanical Devices, And The Like (AREA)
Abstract
Description
【発明の詳細な説明】
この発明はモータ回転子本体となる大きい回転円板上に
対称に配置された永久磁石と、その大回転円板の外周に
対称に配置された。マイクロモータにより駆動される多
くの回転小円板上に、これも対称に配置された永久磁石
との反撥力により安定な回転力をうる複合磁気歯車式モ
ータに関するものである。DETAILED DESCRIPTION OF THE INVENTION The present invention includes permanent magnets arranged symmetrically on a large rotating disk serving as the main body of a motor rotor, and permanent magnets arranged symmetrically around the outer periphery of the large rotating disk. This invention relates to a composite magnetic gear type motor that generates stable rotational force through the repulsion of symmetrically arranged permanent magnets on many rotating small discs driven by micro motors.
従来、野外で使用される諸種の機器の駆動源としては電
気モータあるいはガソリンエンジンなどの内燃機関があ
る。一般に電気モータは効率が高くて経済的であり、運
転や取扱いも優れている。しかし、電源がなければ単独
に運転できず、またあってもこのために固定した配線施
設を要する。一方、ガソリンエンジンなどの内燃機関は
単独運転は可能で固定した施設を必要としないが、燃料
の補給およびその取扱いなど極めて面倒な点が多い。Conventionally, internal combustion engines such as electric motors and gasoline engines have been used as drive sources for various types of equipment used outdoors. Electric motors are generally more efficient and economical, and provide better operation and handling. However, it cannot be operated independently without a power source, and even if there is a power source, a fixed wiring facility is required for this purpose. On the other hand, internal combustion engines such as gasoline engines can be operated independently and do not require fixed facilities, but there are many problems such as refueling and handling.
また、電気モータにおける捲線の存在はモータを構造的
に複雑なものとし、コストの面よりも好ましくなかった
。Furthermore, the presence of windings in electric motors makes the motor structurally complex, which is less desirable in terms of cost.
本発明はそのような短所を補うために行われたもので2
図面によってその概要を説明すれば。The present invention was made to compensate for such shortcomings.
Please explain the outline using drawings.
(イ) マイクロモータ(5)は蓄電池(6)により駆
動され、このマイクロモータに直結した小円板(1)(
7)が回転する。この回転小円板上には永久磁石(3)
が数個対称に配置されている。(b) The micro motor (5) is driven by a storage battery (6), and the small disc (1) (
7) rotates. A permanent magnet (3) is placed on this rotating small disk.
are arranged symmetrically.
(ロ) これらの回転小円板とほぼ同一面上に第1図の
ようにモータの回転子となる直径が数倍の回転円板(2
)が配置され、この円板上にも。(b) On almost the same plane as these small rotating disks, as shown in Figure 1, a rotating disk (2
) is placed on this disk as well.
また永久磁石(4)を数個対称に配置する。Also, several permanent magnets (4) are arranged symmetrically.
(ハ) 永久磁石(3)と永久磁石(4)の反撥力によ
り大円板は安定に回転する。円板(1)と円板(2)が
回転運動中磁石の極性を同一とし、はぼ対向した位置を
とるとき2反撥力は強力で大円板の回転力は大となる。(c) The large disk rotates stably due to the repulsive force of the permanent magnets (3) and (4). When disc (1) and disc (2) have the same polarity of magnets during rotational motion and take positions that face each other, the two repulsive forces are strong and the rotational force of the large disc becomes large.
(永久磁石間のエアギャップは出来るだけ小さい方がよ
い。本発明では3 mmにとった)
に) 回転力の増大のため小円板(1)は第1図のよう
に数個設置した。第2図のような小円板の層状構造にお
いては全体として数十個にも及ぶ。諸種の条件にもよる
が、実験の結果では円板(2)の回転数は1000〜1
200rpl程度で。(The air gap between the permanent magnets should be as small as possible. In the present invention, it was set to 3 mm.) In order to increase the rotational force, several small disks (1) were installed as shown in Figure 1. In the layered structure of small disks as shown in FIG. 2, there are several tens of small disks in total. Although it depends on various conditions, experimental results show that the number of revolutions of the disc (2) is between 1000 and 1
About 200rpl.
出力は数十Wがえられた。The output was several tens of W.
(ホ) マイクロモータはすべて直列につなぎ、これに
蓄電池を接続した。マイクロモー21個あたりの端子電
圧は08〜1.5■であった。(e) All micromotors were connected in series, and a storage battery was connected to this. The terminal voltage per 21 micromoors was 08 to 1.5 .
(へ)数個の小円板(1)はそれらの回転軸をタイミン
グベルト(9)により連結され2回転の同期および始動
特性の向上が保たれている。なお。(f) Several small discs (1) have their rotating shafts connected by a timing belt (9) to maintain two-rotation synchronization and improved starting characteristics. In addition.
出力は出力軸α0より取り出される。The output is taken out from the output shaft α0.
以上2本発明により永久磁石の反撥力を利用することで
大きな回転力を得ることができる。According to the above two aspects of the present invention, a large rotational force can be obtained by utilizing the repulsive force of the permanent magnet.
マイクロモータの駆動には蓄電池を適用し、しかもマイ
クロモータの端子電圧は約1.5■で充分である。した
がって2本モータは野外における諸種の機器の駆動源と
して有用で、しかも起動は容易である。A storage battery is used to drive the micromotor, and the terminal voltage of the micromotor is approximately 1.5μ which is sufficient. Therefore, the two motors are useful as a drive source for various types of equipment outdoors, and are easy to start.
なお、モータ本体はプラスチックなどの利用で軽量化す
ることも可能となろう。It should be noted that the weight of the motor body could be reduced by using plastic or the like.
なお1本考察の実施の態様には次のようなことが考えら
れる。Note that the following may be considered as an implementation mode for this consideration.
すなわち、第3図、第4図のように本モータをカップ型
構造とし、大円板αす、0)の外周のみでなく、内側に
も小円板(財)、 (15)を配置するようにし、小円
板(財)、(財)、(15)、(16)の数を増せば回
転力、出力を増強することが可能と考えられる。In other words, as shown in Figures 3 and 4, this motor has a cup-shaped structure, and small discs (15) are arranged not only on the outer periphery of the large disc (α, 0) but also on the inside. It is thought that it is possible to increase the rotational force and output by increasing the number of small disks (product), (product), (15), and (16).
なお、この場合もマイクロモータは大円板の内側、外側
のものともすべて直列に接続し1回転の同期および始動
特性の向上をはかる。In this case as well, the micromotors on the inside and outside of the large disc are all connected in series to improve synchronization of one rotation and the starting characteristics.
第1図は本発明のモータの概要(正面図)第2図は本発
明のモータの概要(側面図)第3図はカップ型構造とし
た場合のモータの概要(正面図)
第4図はカップ型構造とした場合のモータの概要(側面
図)
(1):小円板 (2):モータの回転子となる大円板
(3)、 (4) :永久磁石 (5):マイクロモ
ータ(6):蓄電池 (7):小円板 (8):モータ
の回転子となる大円板 (9);タイミングベルト (
1):出力軸 α→:カップ型構造の場合の大円板 (
財)。
(財):小円板 α4):カップ型構造の場合の大円板
(ホ)、Of9:小円板 功、(18):マイクロモー
タ (ト)。
(1):永久磁石 (2)、に):タイミングベルト第
1図Fig. 1 is an outline of the motor of the present invention (front view) Fig. 2 is an outline of the motor of the invention (side view) Fig. 3 is an outline of the motor with a cup-shaped structure (front view) Fig. 4 is an outline of the motor of the invention (front view) Overview of a motor with a cup-shaped structure (side view) (1): Small disk (2): Large disk that becomes the rotor of the motor (3), (4): Permanent magnet (5): Micro motor (6): Storage battery (7): Small disk (8): Large disk that becomes the rotor of the motor (9); Timing belt (
1): Output shaft α→: Large disk in case of cup-shaped structure (
wealth). (Incorporated): Small disk α4): Large disk in case of cup-shaped structure (E), Of9: Small disk Isao, (18): Micromotor (G). (1): Permanent magnet (2), To): Timing belt Figure 1
Claims (1)
永久磁石とその大回転円板の外周に配置された、マイク
ロモータにより駆動される多くの回転小円板上に配置さ
れた永久磁石との反撥力により安定な回転力をうる複合
磁気歯車式モータA permanent magnet is placed on a large rotating disk that forms the main body of the motor rotor, and permanent magnets are placed on many small rotating disks that are driven by a micromotor and are placed around the outer periphery of the large rotating disk. Composite magnetic gear motor that provides stable rotational power through repulsive force
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP16741788A JPH0217879A (en) | 1988-07-06 | 1988-07-06 | Compound magnetic geared motor |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP16741788A JPH0217879A (en) | 1988-07-06 | 1988-07-06 | Compound magnetic geared motor |
Publications (1)
Publication Number | Publication Date |
---|---|
JPH0217879A true JPH0217879A (en) | 1990-01-22 |
Family
ID=15849313
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
JP16741788A Pending JPH0217879A (en) | 1988-07-06 | 1988-07-06 | Compound magnetic geared motor |
Country Status (1)
Country | Link |
---|---|
JP (1) | JPH0217879A (en) |
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2007037257A1 (en) * | 2005-09-28 | 2007-04-05 | Shiozaki, Hiromitsu | Non-contact rotary transmission device and electric power generation system |
US20100187930A1 (en) * | 2009-01-24 | 2010-07-29 | Guillaume Marquis | Magnetic amplifier |
JP2020046012A (en) * | 2018-09-20 | 2020-03-26 | 株式会社日立製作所 | Magnetic gear mechanism |
US11170911B2 (en) | 2018-05-25 | 2021-11-09 | Autonetworks Technologies, Ltd. | Wiring member |
Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPS5571182A (en) * | 1978-11-20 | 1980-05-29 | Shoichi Yamaura | Magnetic prime mover |
JPS5782A (en) * | 1980-05-31 | 1982-01-05 | Masayuki Sakai | Motive power of permanent magnet |
JPS5734779A (en) * | 1980-08-05 | 1982-02-25 | Michiaki Hayashi | Magnet power machine |
-
1988
- 1988-07-06 JP JP16741788A patent/JPH0217879A/en active Pending
Patent Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPS5571182A (en) * | 1978-11-20 | 1980-05-29 | Shoichi Yamaura | Magnetic prime mover |
JPS5782A (en) * | 1980-05-31 | 1982-01-05 | Masayuki Sakai | Motive power of permanent magnet |
JPS5734779A (en) * | 1980-08-05 | 1982-02-25 | Michiaki Hayashi | Magnet power machine |
Cited By (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2007037257A1 (en) * | 2005-09-28 | 2007-04-05 | Shiozaki, Hiromitsu | Non-contact rotary transmission device and electric power generation system |
JP2007092849A (en) * | 2005-09-28 | 2007-04-12 | Akio Hashizume | Non-contact type rotation transmission device and power generation system |
US20100187930A1 (en) * | 2009-01-24 | 2010-07-29 | Guillaume Marquis | Magnetic amplifier |
US8188630B2 (en) * | 2009-01-24 | 2012-05-29 | Guillaume Marquis | Magnetic amplifier |
US11170911B2 (en) | 2018-05-25 | 2021-11-09 | Autonetworks Technologies, Ltd. | Wiring member |
JP2020046012A (en) * | 2018-09-20 | 2020-03-26 | 株式会社日立製作所 | Magnetic gear mechanism |
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