JPS62135257A - Rotational force converting device into single direction driving force - Google Patents

Rotational force converting device into single direction driving force

Info

Publication number
JPS62135257A
JPS62135257A JP27582685A JP27582685A JPS62135257A JP S62135257 A JPS62135257 A JP S62135257A JP 27582685 A JP27582685 A JP 27582685A JP 27582685 A JP27582685 A JP 27582685A JP S62135257 A JPS62135257 A JP S62135257A
Authority
JP
Japan
Prior art keywords
magnetic force
force generator
generator
rotor
force
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
JP27582685A
Other languages
Japanese (ja)
Inventor
Shori Saito
斎藤 勝理
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.)
Individual
Original Assignee
Individual
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 Individual filed Critical Individual
Priority to JP27582685A priority Critical patent/JPS62135257A/en
Publication of JPS62135257A publication Critical patent/JPS62135257A/en
Pending legal-status Critical Current

Links

Abstract

PURPOSE:To obtain an epoch-making propulsion device with a simple structure by fixing slant rotors on a rotary shaft and by providing the slidable magnetic force generator and the fixed magnetic force generator to the rotors. CONSTITUTION:A propulsion device for motor car, etc. is composed of a magnetic force generator 3 slidable on a rotor 2 fixed slantwise to a rotary shaft 1 and a magnetic force generator 4 fixed to the tip of the rotor 2. Then, when the rotary shaft 1 is rotated with a motor 9, the magnetic force generator 3 slides on the rotor 2 by the centrifugal force. The moment the magnetic force generator 3 comes closest to the magnetic force generator 4, a microswitch 10 is turned on and then the magnetic repulsive actions A and B are brought about between both generators 3 and 4. As a result, if the repulsive action of the magnetic force action is stronger than the centrifugal force action, then the generator itself can be propelled in the direction of F.

Description

【発明の詳細な説明】 (イ)産業上の利用分野 本発明は、自動車、船舶、航空機、宇宙船等の推進装置
に関する。
DETAILED DESCRIPTION OF THE INVENTION (a) Field of Industrial Application The present invention relates to propulsion devices for automobiles, ships, aircraft, spacecraft, etc.

(ロ) 従来の技術 従来の自動車、船舶、航空機等の推進装置の構造及びそ
の原理は各種乗り物に依って著しく異なるものであり、
又装置も極めて複雑な構造tしている。
(b) Conventional technology The structures and principles of conventional propulsion systems for automobiles, ships, aircraft, etc. differ significantly depending on the type of vehicle.
The device also has an extremely complex structure.

eラ  発明が解決しようとする問題点便って、従来の
乗り動用推進装置に於ては、必然的に太N!1″AX、
量物化してしまい、且つ、故障の原因となり5る個所も
極めて多い、これに対し、本発明は極めて簡単な構造で
める為、小4■軽値化出来ると共に故障の原因を減らす
1、<Gが出来、且つ同一メカニズムで自動車、船舶、
航空機等の共通の推進装置と成りつる。
The problem that the invention attempts to solve is that in conventional propulsion devices for vehicles, there are inevitably large problems! 1″AX,
In contrast, the present invention has an extremely simple structure, which makes it possible to reduce the cost and reduce the causes of failure. <G is possible, and the same mechanism can be used for automobiles, ships,
It becomes a common propulsion device for aircraft, etc.

に)問題を解決中る為の手段 本発明の実施の一例を図面に基づき説明すると、第1図
に於て回転軸1に斜めに回転子2を固着し、この回転子
2上を滑らかにスライド可能な磁力発生装置6を回転子
2に取り付ける。そしてこの回転子2の先端部に磁力発
生装置4を固着している。この例では磁力発生装置5が
永久磁石、他が電磁石としであるが反対にしても良いし
、又は両方共電磁石としても良い。要は磁力の反発作用
を一時的に発生させる事が出来れば良いのである。その
為にマイクロスイッチ10を磁力発生装置4に取り付け
ている。又第2図の如く磁力発生装置4を回転子2の先
端部ではなしに、本体5に固着したリング状の電磁石と
しても良く、この例では回転子2の先端部にマイクロス
イッチ10を取り付けている。そして両図共に省略しで
あるがこのマイクロスイッチ10は磁力発生装置4の電
磁石コイルに接続されコイルは電源に接続される。
(ii) Means for Solving the Problem An example of the implementation of the present invention will be described based on the drawings. In FIG. A slidable magnetic force generator 6 is attached to the rotor 2. A magnetic force generator 4 is fixed to the tip of the rotor 2. In this example, the magnetic force generator 5 is a permanent magnet and the others are electromagnets, but they may be reversed, or both may be electromagnets. The point is that it is sufficient to be able to temporarily generate the repulsive effect of magnetic force. For this purpose, a microswitch 10 is attached to the magnetic force generator 4. Furthermore, as shown in FIG. 2, the magnetic force generating device 4 may be a ring-shaped electromagnet fixed to the main body 5 instead of the tip of the rotor 2. In this example, a microswitch 10 is attached to the tip of the rotor 2. There is. Although not shown in both figures, this microswitch 10 is connected to an electromagnetic coil of the magnetic force generator 4, and the coil is connected to a power source.

(ホ)作 用 このような装置に於て回転軸1をモーター9で回転させ
ると、遠心力作用により磁力発生装置3が回転子上をス
ライドしていき第1図の如く回転子の先端部に取り付け
た磁力発生装置4に最接近した位置に達する。この時点
でマイクロスイッチが一時的にONの状態に入り磁力発
生装置間に磁力の反発作用を生じさせる。その結果磁力
発生製蓋4に入方向へのインパクト力を与え、反対に磁
力発生装#、6は回転子上をB方向にスライドしていく
。この作用は磁力発生装置3をA方向に移動させようと
する遠心力作用に抗してB方向へ磁力発生装置t5を移
動させるものである。従って遠心力作用よりも磁力の反
発作用の方が大きけれは良いのである。そしてこの時に
大事な事は本発明に於ては磁力発生装置5がB方向へ移
動する際の作用力の一部が本体5には伝わりにくい機構
でもあるという点である。
(E) Function When the rotary shaft 1 is rotated by the motor 9 in such a device, the magnetic force generating device 3 slides on the rotor due to the centrifugal force, and as shown in Fig. 1, the tip of the rotor reaches the position closest to the magnetic force generator 4 attached to the At this point, the microswitch is temporarily turned on, causing repulsion of magnetic force between the magnetic force generators. As a result, an impact force is applied to the magnetic force generating lid 4 in the incoming direction, and on the contrary, the magnetic force generating devices # and 6 slide on the rotor in the B direction. This action moves the magnetic force generator t5 in the B direction against the centrifugal force that tends to move the magnetic force generator 3 in the A direction. Therefore, it is better if the repulsion of magnetic force is larger than the centrifugal force. What is important at this time is that the present invention is also a mechanism in which a part of the acting force when the magnetic force generator 5 moves in the B direction is difficult to be transmitted to the main body 5.

そして磁力の反発作用によるB方向への作用力と、遠心
力作用による入方向への作用力とが釣り合った時点で磁
力発生装置3の移動は止まり遠心力作用により磁力発生
装#3が磁力発生装置4に加速をつけながら接近してい
き再び両磁力発生装置間の磁力の反発作用工程へと至る
のであるが、この時に大事な事は遠心力作用を利用して
磁力発生装置Sfk方向に移動させる為に磁力発生装#
5のA方向への移動が殆ど一方的な作用として起こる為
に又もや本体5には殆ど反作用が掛らないという点であ
る。従って本装置自体がF方向に推進出来るのである。
When the force acting in the B direction due to the repulsion of the magnetic force and the force acting in the direction B due to the centrifugal force are balanced, the movement of the magnetic force generator 3 stops, and the centrifugal force causes the magnetic force generator #3 to generate magnetic force. It approaches device 4 while accelerating and once again reaches the process of repulsion of the magnetic force between both magnetic force generators, but the important thing at this time is to use the centrifugal force to move in the direction of the magnetic force generator Sfk. Magnetic force generator #
Since the movement of the main body 5 in the A direction occurs almost as a unilateral action, there is again almost no reaction action applied to the main body 5. Therefore, this device itself can be propelled in the F direction.

又第2図は磁力発生装置4をリング状の電磁石とし本体
に固着させた例を示すが原理、作用については上述した
例に同一な為省略する。
Further, FIG. 2 shows an example in which the magnetic force generating device 4 is a ring-shaped electromagnet fixed to the main body, but since the principle and operation are the same as in the above-mentioned example, the explanation will be omitted.

(へ)発明の効果 本発明は1以上説明した如く、極めて簡単な構造ながら
、本装置自身が自ら単一方向へと推進するという、正に
画期的な推進装置であり、今後の産業上に多大なメリッ
トを与える事が出来うるものである。
(f) Effects of the Invention As explained above, the present invention is a truly groundbreaking propulsion device that propels itself in a single direction despite its extremely simple structure. It can bring great benefits to the.

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

第1図は本発明の側面図であり、第2図は部分(111
1面図であり判りやすいように磁力発生装置4を断面図
にして描いたものである。
FIG. 1 is a side view of the present invention, and FIG. 2 is a portion (111
This is a one-sided view, and the magnetic force generating device 4 is drawn in a cross-sectional view for easy understanding.

Claims (1)

【特許請求の範囲】[Claims] 回転軸(1)の軸方向に対して斜めに設置した回転子(
2)と、その回転子に添って滑らかに移動可能な磁力発
生装置(3)を設け、回転軸をモーター等により回転さ
せる。そして回転子の両端の各々の位置から回転軸又は
回転軸の延長線に対する垂直方向への距離が小さい方の
回転子の一端から大きな方の一端に向って回転子に添っ
て磁力発生装置(3)を遠心力作用を用いて移動させる
事を特徴とする。そしてこの方向の移動の終点付近の回
転子上に、又はその回転円周上の対面する位置に磁力発
生装置(4)を設け、これら両磁力発生装置間の間隔接
近時に両磁力発生装置に磁力の反発作用を一時的に発生
させ磁力発生装置(4)に(A)方向へのインパクト力
を与え本体(5)を(F)方向へ推進させ、反対に磁力
発生装置(3)を(B)方向に移動させるがこの際磁力
発生装置(3)が滑らかに移動する為磁力発生装置(3
)の(B)方向への作用力の一部が本体(5)には伝わ
りにくいという性質を利用した事を特徴とする回転運動
力を単一方向推進力に変換する装置
A rotor (
2) and a magnetic force generating device (3) that can smoothly move along the rotor, and the rotating shaft is rotated by a motor or the like. Then, magnetic force generators (3 ) is characterized by being moved using centrifugal force. Then, a magnetic force generating device (4) is provided on the rotor near the end point of movement in this direction or at a position facing each other on its rotating circumference, and when the distance between these two magnetic force generating devices approaches, a magnetic force is applied to both magnetic force generating devices. Temporarily generates a repulsive action to apply an impact force in the (A) direction to the magnetic force generator (4) to propel the main body (5) in the (F) direction, and conversely to move the magnetic force generator (3) in the (B) direction. ) direction, but at this time, because the magnetic force generator (3) moves smoothly, the magnetic force generator (3)
) A device for converting rotational kinetic force into unidirectional propulsive force, which utilizes the property that a part of the acting force in the (B) direction is difficult to be transmitted to the main body (5).
JP27582685A 1985-12-08 1985-12-08 Rotational force converting device into single direction driving force Pending JPS62135257A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP27582685A JPS62135257A (en) 1985-12-08 1985-12-08 Rotational force converting device into single direction driving force

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP27582685A JPS62135257A (en) 1985-12-08 1985-12-08 Rotational force converting device into single direction driving force

Publications (1)

Publication Number Publication Date
JPS62135257A true JPS62135257A (en) 1987-06-18

Family

ID=17560964

Family Applications (1)

Application Number Title Priority Date Filing Date
JP27582685A Pending JPS62135257A (en) 1985-12-08 1985-12-08 Rotational force converting device into single direction driving force

Country Status (1)

Country Link
JP (1) JPS62135257A (en)

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO1993008635A1 (en) * 1991-10-14 1993-04-29 Muneaki Takara Rotary electric machine
WO1993008634A1 (en) * 1991-10-14 1993-04-29 Muneaki Takara Rotary electric machine
GB2337304A (en) * 1998-04-23 1999-11-17 David Hellier Thrust producing device
GB2393776A (en) * 2002-10-01 2004-04-07 Michael Frederick Nedin Magnetic propulsion system

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO1993008635A1 (en) * 1991-10-14 1993-04-29 Muneaki Takara Rotary electric machine
WO1993008634A1 (en) * 1991-10-14 1993-04-29 Muneaki Takara Rotary electric machine
GB2337304A (en) * 1998-04-23 1999-11-17 David Hellier Thrust producing device
GB2393776A (en) * 2002-10-01 2004-04-07 Michael Frederick Nedin Magnetic propulsion system

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