JPH10122126A - Self-traveling or nonself-traveling prime moving and motive power generating method - Google Patents

Self-traveling or nonself-traveling prime moving and motive power generating method

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Publication number
JPH10122126A
JPH10122126A JP11496297A JP11496297A JPH10122126A JP H10122126 A JPH10122126 A JP H10122126A JP 11496297 A JP11496297 A JP 11496297A JP 11496297 A JP11496297 A JP 11496297A JP H10122126 A JPH10122126 A JP H10122126A
Authority
JP
Japan
Prior art keywords
reverse
driving
self
propelled
rotating body
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
JP11496297A
Other languages
Japanese (ja)
Inventor
Toshimaro Sada
俊麿 佐田
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
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Filing date
Publication date
Application filed by Individual filed Critical Individual
Priority to JP11496297A priority Critical patent/JPH10122126A/en
Publication of JPH10122126A publication Critical patent/JPH10122126A/en
Pending legal-status Critical Current

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Abstract

PROBLEM TO BE SOLVED: To generate a pair of opposite directional and mutually reverse directional motions without offsetting a half among a pair of bidirectional forces as friction or the like by generating unidirectional force by electrically or mechanically reversing one side force of forces appearing in the mutually reverse directions by using a rotary shaft as output. SOLUTION: In a driving rotary body 6 and a reversely driving rotary body 7 to be mutually reversed, energy 3 is supplied or generated in an intermediate part, and the driving rotary body 6 and the reversely driving rotary 7 are mutually reversed, and are connected to output shafts 1 and 2. Therefore, they are formed as a structure that when connected to each other by a transmitting body 8 and a reverse transmitting body 9 to transmit force of the one side driving rotary body 6, they become the same directional force from the output shaft 1, and when the reverse transmitting body 9 is removed, forces in the mutually reverse directions can be taken out. In this case, originally supplied or generated energy appears as rectilinear force in an intermediate part, and since they are mutually reversed by electrically or mechanically receiving forces in the mutually reversing directions, the action and the reaction by a pair of rotary bodies are offset to each other, and the relationship of friction or the like with the outside of a system is not caused.

Description

【発明の詳細な説明】DETAILED DESCRIPTION OF THE INVENTION 【産業上の利用分野】[Industrial applications]

【0001】ものを動かすのに、従来の質量の放出、摩
擦等により、その反作用としての運動に対して、主に回
転体を利用してその反転による自走あるいは自走でない
原動および発動方法に関するものである。
The present invention relates to a self-propelled or non-self-propelled driving method and a driving method mainly by using a rotating body in response to a movement as a reaction due to a conventional mass release, friction or the like for moving an object. Things.

【従来の技術】従来、人為的になすすべての物体の運動
は、作用、あるいは反作用を摩擦等を介して逆に受けて
成り立っている。
2. Description of the Related Art Conventionally, all artificial motions of an object are made by receiving an action or a reaction in reverse through friction or the like.

【0002】[0002]

【発明が解決しようとする課題】したがって従来の運動
はすべて、作用に応ずる大きさ以上の摩擦等がなければ
成り立たないが、発生させるエネルギーは直線的な運動
であり、摩擦、あるいは等量の質量等以上の応ずるもの
があって運動を起こすことができるものである。ものを
動かす場合、いかなる場合も等量以上の摩擦等の匹敵す
るものが必要となり、全体を一対とみれば、半分は運動
のため、半分は摩擦等を主体とした固定体へのエネルギ
ーとなり、運動はすべて一対の半分をもってなされる。
Therefore, all of the conventional motions cannot be achieved without friction or the like having a magnitude larger than the size of the action, but the energy to be generated is a linear motion, and the friction or the equivalent mass is not sufficient. There is something that can respond to the above and can exercise. When moving things, in any case, a comparable thing such as friction equal to or more than the same amount is necessary, and if you consider the whole as a pair, half is for movement, half is energy to the fixed body mainly consisting of friction, etc., All exercise is done with a pair of halves.

【0003】[0003]

【課題を解決するための手段】しかるに、エネルギーは
みかけ上、直線運動で、放射状であるから、そのうちの
二方向である一対のうちの、前述の半分を摩擦等として
相殺せずに、一対の反対方向の動きとしてとらえれば、
全体的には向きの異なる互いに逆向きの運動となる。い
ま一対の主として回転体の中間に、互いに逆向きにはた
らくエネルギーを与えれば回転体は互いに逆回転してし
ごとをして、回転体どうしを取り付けた系と、その系以
外とは無関係に互いに逆転する。つまり回転軸を出力と
すれば互いに、逆方向の力となって表れまた逆方向の力
を一方向の力とするには、片側の力を電気的機械的に逆
転させればよい。
However, since the energy is apparently a linear motion and is radial, the two halves of the two pairs do not cancel each other out as friction or the like. If you consider the movement in the opposite direction,
As a whole, the movements are opposite to each other in different directions. If energy is applied to the middle of a pair of rotating bodies in the opposite directions, the rotating bodies will rotate in the opposite direction and work together, and will reverse each other independently of the system in which the rotating bodies are attached and the other. I do. In other words, if the rotation axis is output, they appear as mutually opposite forces, and in order to make the opposite force a one-way force, the force on one side may be reversed electrically and mechanically.

【0004】上記方法は主として重力場内である地上の
用途に使って、摩擦等との混合型の運動に適する。次に
一対の回転体の各に互いに逆転する一対の回転体を取り
付けた場合、すなわち二対をもちいると、こま、ジャイ
ロ等回転体の原理により反転する対の回転体に連なる連
なる対の回転体を互いに逆転して、先の回転(以下駆動
と称する)軸と同一のいずれかの方向の力となって運動
する。すなわち、二対をもって系外とは無関係に上下い
ずれかの方向の力となり、三対以上、で、あるいは二対
目を可動にして、上下、前後左右方向の力を得る。我々
は地上に在るものであるから、生来、重力を蹴っての、
つまり対の運動の片割れの考えをもてばよかったが、宇
宙のように引力の影響の少ない場においては、叙上のよ
うな運動方法が不可欠となるもので、以下実施態様をも
って表す。
[0004] The above method is mainly used for terrestrial applications in a gravitational field, and is suitable for mixed motion with friction or the like. Next, when a pair of rotating bodies that are opposite to each other are attached to each of the pair of rotating bodies, that is, when two pairs are used, a pair of rotating bodies that are connected to a pair of rotating bodies that are inverted according to the principle of a rotating body such as a top and a gyro are rotated. The bodies are reversed with respect to each other and move with a force in one of the same directions as the axis of rotation (hereinafter referred to as the drive). That is, two pairs are used to generate a force in any of the upper and lower directions independently of the outside of the system, and three or more pairs or a second pair are made movable to obtain forces in the up, down, front, rear, right and left directions. Because we are on the ground, we naturally kick gravity,
In other words, the idea of one half of the movement of the pair should have been considered, but in a place such as the universe where the influence of the attraction is small, the above-described movement method is indispensable, and will be described in the following embodiments.

【0005】[0005]

【作用】ジェット、ロケット等は反作用を反動として移
動し、内燃機関等は反作用を摩擦等を利用して移動す
る。すなわち摩擦等で対の片方をとらえている。しかる
に供給し、発生するエネルギーは直線的、放射状である
から反作用を相殺して完結する運動となる。
[Action] Jets, rockets and the like move with a reaction as a reaction, and an internal combustion engine and the like move with the reaction utilizing friction or the like. That is, one of the pair is captured by friction or the like. However, the supplied energy is linear and radial, so that the reaction becomes a complete motion by canceling the reaction.

【0006】[0006]

【実施例1】図1は左右に動くピストン1とシリンダー
2を表し、その間にエネルギー3を供給し、あるいは発
生してピストン1とシリンダー2を動かすエネルギー3
は直線運動であるから、ピストン1とシリンダー2は互
いに逆方向に動く。しかして連結された出力軸1、2も
それぞれ連動して逆方向に動く。いま左右の出力を逆方
向にする場合は、そのままで、同一方向の出力が要る場
合は各出力軸1、2を連結棒4で連結し、支点5で方向
を逆転して同一方向の出力となる構造の反転による自走
あるいは自走でない原動および発動方法であり、直線的
なエネルギーを二方向でとらえるもので発生するエネル
ギーに対して、最適の受容体であればよい。
Embodiment 1 FIG. 1 shows a piston 1 and a cylinder 2 moving left and right, between which energy 3 is supplied or generated to move the piston 1 and the cylinder 2.
Is a linear motion, the piston 1 and the cylinder 2 move in opposite directions. Accordingly, the connected output shafts 1 and 2 also move in opposite directions in conjunction with each other. If the left and right outputs are to be reversed, the output shafts 1 and 2 are connected by a connecting rod 4 when the outputs in the same direction are required, and the directions are reversed at a fulcrum 5 to output in the same direction. It is a self-propelled or non-self-propelled driving and invoking method by reversing the structure, and it is sufficient if the energy generated by capturing linear energy in two directions is an optimal receptor.

【0007】また、図2においては互いに逆転する駆動
回転体6、逆駆動回転体7において、中間にエネルギー
3を供給し、あるいは発生して駆動回転体6、逆駆動回
転体7を互いに逆転して出力軸1、2につなぐ。しかし
て片側の駆動回転体6の力を伝える伝導体8、および逆
伝導体9でつなぐと出力軸1より同一方向の力となり、
逆伝導体9をはずせば互いに逆方向の力を取り出す構造
の反転による自走あるいは自走でない原動および発動方
法である。この場合は主として機械的な伝導方法を表し
て例示しているのであるが、要するに反対側に同一方向
の力を伝えるものである。
In FIG. 2, energy 3 is supplied or generated in the middle between the driving rotary member 6 and the reverse driving rotary member 7 which rotate in the reverse direction, and the driving rotary member 6 and the reverse driving rotary member 7 are rotated in the reverse direction. To output shafts 1 and 2. However, when the conductor 8 is connected to the conductor 8 for transmitting the force of the driving rotator 6 on one side and the reverse conductor 9, the force is in the same direction from the output shaft 1.
If the reverse conductor 9 is removed, a self-propelled or non-self-propelled driving and activating method by reversing the structure for taking out forces in mutually opposite directions. In this case, a mechanical conduction method is mainly shown and illustrated, but in short, a force in the same direction is transmitted to the opposite side.

【0008】もともと供給し、あるいは発生するエネル
ギーは中間で直線的な力となって表れるから、互いに逆
転する方向の力を電気的、機械的等に受けて互いに逆転
させるものであるから対の回転体の取り付けによる動き
はあっても、対の回転体による作用反作用は相殺しあっ
て系外とは摩擦等の関係は生じない。また発生するエネ
ルギーは直線状、放射状であるから対の逆回転体は一対
とは限らず、発生源に対して幾組みでもよい。この運動
は、一対の逆回転体の運動で完結するが、自身は動けな
い。したがってこれを摩擦等で他に固定して自身、ある
いは他を動かす摩擦等との混合型であり、在来の機関に
近いものであり、シャフト方向の、前後の一方向の運動
であるから、舟、自動車、飛行機等一方向の運動系であ
る機関装置に取り付けての摩擦等との混合型として利用
できる。
Originally, the energy supplied or generated appears as a linear force in the middle, so that it receives electric and mechanical forces in directions opposite to each other and reverses each other. Although there is a movement due to the attachment of the body, the action and reaction by the pair of rotating bodies cancel each other out, and no relationship such as friction occurs outside the system. Further, the generated energy is linear or radial, so that the number of pairs of reverse rotating members is not limited to one, but may be any number for the source. This movement is completed by the movement of the pair of counter-rotating bodies, but the body cannot move. Therefore, this is a mixed type with the friction or the like that fixes itself to the other by friction or the like, and is similar to a conventional engine, and is a one-way motion in the front and rear directions in the shaft direction. It can be used as a mixed type with friction and the like attached to an engine device that is a unidirectional motion system such as a boat, car, airplane, etc.

【実施例2】Embodiment 2

【0009】図3、4において、保護外被10に、ある
いは内に回動状に取り付け具11で取り付けられた互い
に反転する駆動回転体6、逆駆動回転体7の間にエネル
ギー3を供給し、あるいは発生して互いに逆転せしめ、
連結したシャフト12、逆シャフト13に取り付けた回
転軸14、逆回転軸15は互いに逆転し、連なる回転体
18、逆回転体19は互いに接し、あるいは接せず回動
しあるいはその面の間にエネルギー3を供し、あるいは
内蔵したモーター16により逆転すると回転体18、逆
回転体19はジャイロの原理により、回転軸方向に押さ
れるからシャフト12、逆シャフト13の左右いずれか
の方向へ移動する。
In FIGS. 3 and 4, energy 3 is supplied between a driving rotary body 6 and a reverse driving rotary body 7 which are attached to or inside a protective jacket 10 by a mounting tool 11 in a rotating manner. , Or occur and reverse each other,
The connected shaft 12, the rotating shaft 14 attached to the reverse shaft 13 and the reverse rotating shaft 15 are rotated in reverse to each other, and the continuous rotating body 18 and the reverse rotating body 19 contact each other or rotate without contacting each other or between the surfaces thereof. When the energy 3 is supplied or the motor 16 is reversed by the built-in motor 16, the rotating body 18 and the reverse rotating body 19 are pushed in the direction of the rotation axis by the gyro principle, and therefore move in the left or right direction of the shaft 12 or the reverse shaft 13.

【0010】すなわち保護外被10全体を系とすれば系
外とはエネルギー供給以外は無関係に移動するので、こ
れを取り付け部17で系外に取り付ければ系外を動かす
もので、自己が動くとともに、動かさんとする運動体に
搭載して供する構造の反転による自走あるいは自走でな
い原動および発動方法であり、保護外被内は回転の抵抗
等減少のため真空とすればよい。
That is, if the entire protective jacket 10 is used as a system, it moves independently of the outside of the system except for the energy supply. Therefore, if this is attached to the outside of the system by the attachment portion 17, the outside of the system is moved. This is a self-propelled or non-self-propelled driving and activating method by reversing a structure mounted and provided on a moving body to be moved, and the inside of the protective jacket may be evacuated to reduce rotational resistance and the like.

【0011】[0011]

【実施例3】本実施例においては反転する駆動回転体
6、逆駆動回転体7の間にエネルギー3を供給し、ある
いは発生して互いに反転するようになして反転する各に
連ねて反転する回転体18、逆回転体19を設けるべく
回転軸14、逆回転軸15を設ける。しかして回転体1
8、逆回転体19は互いに接して、あるいは接せず回動
しあるいは、その間にエネルギー3を供してあるいは回
転体18、逆回転体19中、あるいは立ち上がり部2
0、逆回転立ち上がり部21にモーター等を設けて互い
に逆転して反作用を相殺する。しかして立ち上がり部2
0、逆回転立ち上がり部21の各周縁に複数個の回転体
を設ける。
[Embodiment 3] In this embodiment, energy 3 is supplied between the driving rotating body 6 and the reverse driving rotating body 7 to be reversed, or the generated energy is reversed so that the energy 3 is generated and reversed. The rotating shaft 14 and the reverse rotating shaft 15 are provided to provide the rotating body 18 and the reverse rotating body 19. Then rotating body 1
8, the counter-rotating body 19 rotates with or without touching each other, or supplies the energy 3 during the rotation or in the rotating body 18, the counter-rotating body 19, or the rising portion 2
0, a motor or the like is provided in the reverse rotation rising section 21 to reverse each other to cancel the reaction. Then rising part 2
0, a plurality of rotating bodies are provided on each peripheral edge of the reverse rotation rising section 21.

【0012】いま駆動して駆動回転体6、逆駆動回転体
7を互いに逆転させると、連なる回転体18、逆回転体
19も、互いに接し、あるいは接せず回動しあるいは、
エネルギー3等で互いに逆転して反作用を相殺して、立
ち上がり部20、逆回転立ち上がり部21とともに周回
しながら逆転する。図中22は回転体の互いの逆転によ
る影響を受けない中立の、エネルギー、管理、居室等の
供給部である。したがって回転体は駆動により回転軸を
直角方向に押されて、駆動軸たるシャフト12、逆シャ
フト13に相当する結合部25の上または下方向の力と
なって表れる。また図5においては立ち上がり部に回転
軸あるいは回転体そのものの回転軸を上下に動かすこと
により前後左右方向の力となって表れる。この際一対目
の反転駆動する駆動回転体に連なる二対目の回転体は左
右の進むべき方向の前半分と後ろ半分は図のように水平
に対して互いに逆の角度となってその方向に移動し、進
行方向は点であるから、その点のみの角度変更で、他は
上下方向のままでもよい。
When the driving rotator 6 and the reverse driving rotator 7 are driven in reverse to each other, the continuous rotator 18 and the reverse rotator 19 also contact each other or rotate without contacting each other.
It reverses with each other by the energy 3 or the like to cancel the reaction, and reverses while rotating with the rising portion 20 and the reverse rotation rising portion 21. In the figure, reference numeral 22 denotes a neutral energy, management, room, etc. supply unit which is not affected by the rotation of the rotating bodies. Therefore, the rotating body is pushed in the direction perpendicular to the rotating shaft by driving, and appears as an upward or downward force on the connecting portion 25 corresponding to the shaft 12 serving as the driving shaft and the reverse shaft 13. Further, in FIG. 5, the force appears in the front-rear and left-right directions by moving the rotation axis or the rotation axis of the rotating body itself up and down at the rising portion. At this time, the front and rear halves of the left and right traveling directions of the second pair of rotating bodies connected to the first pair of driving rotating bodies for inversion driving are at opposite angles with respect to the horizontal as shown in the figure, and in the respective directions. Since the moving direction is a point, the angle may be changed only at that point, and the other directions may be kept in the vertical direction.

【0013】すなわち回転体18、逆回転体19を立ち
上がり部20、逆回転立ち上がり部21に固定すれば上
下にしか移動できないが、回転体および回転軸を動かす
ことにより前後左右の移動が可能となり、かつ全体の姿
勢、向きは変わらない。また各二対を各直角に置いて上
下左右の方向を得ることは論をまたない。かかる構造の
反転による自走あるいは自走でない原動および発動方法
である。
That is, if the rotating body 18 and the reverse rotating body 19 are fixed to the rising section 20 and the reverse rotating rising section 21, they can only move up and down, but by moving the rotating body and the rotating shaft, they can move back and forth and right and left. And the whole posture and direction do not change. It is also reasonable to place each pair at right angles to obtain up, down, left, and right directions. A self-propelled or non-self-propelled driving and activating method by reversing such a structure.

【0014】[0014]

【実施例4】本例は実施例3の動きを、より大きく、自
由度を上げたものである。図6、7、8において駆動軸
たるシャフト12、逆シャフト13に相当する、供給部
よりの出入り口を兼ねる中空結合部26に連なる駆動回
転体6、逆駆動回転体7の間にエネルギー3を供給し、
あるいは発生して互いに逆駆動して周回する立ち上がり
部20、21内をフリー、あるいは周回方向に固定し、
回転軸14、逆回転軸15方向のみフリーのF回転体2
3を設けて周回する。しかして図6、7のように上下移
動の力は回転体18の軸を駆動軸たるシャフト12、逆
シャフト13と直角方向とし、前後左右横方向に移動す
るときは点であるから進むべき方向の点で軸24を起こ
す。しかして他の二点は負であるから軸24を逆転して
互いに求心方向の力となし、ベクトル合成により進行方
向の力となす。120度間隔で三点を設けることによ
り、任意の360度方向の進行が得られるものである。
また点の周辺の軸を起こす量により速度は加減できる。
Embodiment 4 In this embodiment, the movement of Embodiment 3 is made larger and the degree of freedom is increased. 6, 7, and 8, energy 3 is supplied between the driving rotary body 6 and the reverse driving rotary body 7 that correspond to the shaft 12 serving as the driving shaft and the reverse shaft 13 and that are connected to the hollow coupling portion 26 that also serves as an entrance and exit from the supply unit. And
Alternatively, the inside of the rising portions 20 and 21 which are generated and driven in reverse to each other and circulate are free or fixed in the circling direction,
F rotating body 2 free only in directions of rotating shaft 14 and reverse rotating shaft 15
3 and go around. As shown in FIGS. 6 and 7, the vertical movement force is such that the axis of the rotating body 18 is at right angles to the shaft 12 serving as the drive shaft and the reverse shaft 13. The shaft 24 is raised at the point of. Since the other two points are negative, the shaft 24 is reversed to produce forces in the centripetal direction, and the force in the traveling direction is obtained by vector synthesis. By providing three points at 120-degree intervals, an arbitrary 360-degree advance can be obtained.
Also, the speed can be adjusted by the amount of raising the axis around the point.

【0015】すなわち駆動して互いに逆転する駆動回転
体に連なる互いに逆転する回転体の回転軸を必要に応じ
て方向を変えて所期の移動を得るもので上下前後左右の
全方向の移動が可能となる構造の自走あるいは自走でな
い原動および発動方法である。各実施例において、こ
ま、電子等回転体はいずれも求心力のある回転体を固定
子等で回転してその作用反作用の間に差がある状態に力
を加えることにより生ずるものであればよいもので、互
いに逆転して反作用を相殺して加えられた力と異なる向
きの、回転体どうしが同一方向の力を得るものであり、
回転体自身は加えられた力の変換をなすもので、回転量
と変換量は相関する。すなわち、実施例2以降は二対以
上の逆回転体みを用いるもので運動は自己完結して自身
が動くものであり、この基本的な利用のほかに、宇宙
等、摩擦等の対象のない場における移動が、質量等の放
出なく、移動のエネルギーのみで可能となる。
That is, the desired rotation is obtained by changing the direction of the rotating shaft of the rotating body opposite to each other, which is connected to the driving rotating body that rotates in the opposite direction, as required. It is a self-propelled or non-self-propelled driving and activating method having the following structure. In each of the embodiments, the spinning body such as a spinning frame may be formed by rotating a rotating body having a centripetal force with a stator or the like and applying a force to a state in which there is a difference between its action and reaction. In this way, the rotating bodies obtain a force in the same direction, in a direction different from the force applied by canceling the reaction by reversing each other,
The rotating body itself converts the applied force, and the amount of rotation and the amount of conversion are correlated. That is, the second and subsequent embodiments use two or more pairs of counter-rotating bodies, and the movement is self-contained and moves itself. In addition to this basic use, there is no object such as friction in space or the like. Movement in the field is possible only with the energy of the movement without emission of mass or the like.

【0016】[0016]

【発明の効果】われわれは、水中、地上、空中等を諸機
関で行くも、本来地球という重力場内にあるものである
から、すべての行動にこの影響を受けるものであり、あ
るいは他の生物の行動を倣って、生かされているが本発
明により、無重量状態での動きをみることに、よる生存
への利点に資する発想が可能となる。ロケット、内燃機
関等エネルギーの反動による、ものの移動のほかに触媒
的な対の逆回転体による反作用を利用することによる利
点で、われわれの生活の自由度、安全度の向上に資する
ものである。
Although we go underwater, on the ground, in the air, etc. by various institutions, since we are originally in the gravitational field of the earth, we are affected by all actions, The present invention, which is utilized while imitating behavior, enables the idea of seeing the movement in a weightless state and contributing to the advantage to survival. This is an advantage of utilizing the reaction of a counter-rotating body of a catalytic pair, in addition to the movement of objects caused by the recoil of energy such as rockets and internal combustion engines, and contributes to the improvement of the freedom and safety of our lives.

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

【図1】本発明の一対逆回転体の要部概念図。FIG. 1 is a conceptual diagram of a main part of a pair of reverse rotating bodies of the present invention.

【図2】本発明の一対逆回転体の要部概念図。FIG. 2 is a conceptual diagram of a main part of a pair of reverse rotating bodies of the present invention.

【図3】本発明の二対逆回転体の要部概念図。FIG. 3 is a conceptual diagram of a main part of a two-pair reverse rotating body of the present invention.

【図4】本発明の二対逆回転体の要部概念図。FIG. 4 is a conceptual diagram of a main part of a two-pair reverse rotating body of the present invention.

【図5】本発明の二対逆回転体多軸の要部概念図。FIG. 5 is a conceptual diagram of a main part of a two-pair reverse rotating body multi-axis according to the present invention.

【図6】本発明の二対逆回転体可動軸の要部概念図。FIG. 6 is a conceptual diagram of a main part of a two-pair reverse rotating body movable shaft of the present invention.

【図7】本発明の要部概念図。FIG. 7 is a conceptual diagram of a main part of the present invention.

【図8】本発明の回転軸の状態を表す概念図FIG. 8 is a conceptual diagram illustrating a state of a rotating shaft according to the present invention.

【図9】本発明の回転軸の状態を表す概念図。FIG. 9 is a conceptual diagram illustrating a state of a rotating shaft according to the present invention.

【符号の説明】[Explanation of symbols]

1 ピストン 2 シリンダー 1 出力軸 2 出力軸 3 エネルギー 4 連結棒 5 支点 6 駆動回転体 7 逆駆動回転体 8 伝導体 9 逆伝導体 10 保護外被 11 取り付け具 12 シャフト 13 逆シャフト 14 回転軸 15 逆回転軸 16 モーター 17 取り付け部 18 回転体 19 逆回転体 20 立ち上がり部 21 逆回転立ち上がり部 22 供給部 23 F回転体 24 軸 25 結合部 26 中空結合部 27 矢軸《回転方向を示す回転軸》 DESCRIPTION OF SYMBOLS 1 Piston 2 Cylinder 1 Output shaft 2 Output shaft 3 Energy 4 Connecting rod 5 Support 6 Drive rotator 7 Reverse drive rotator 8 Conductor 9 Reverse conductor 10 Protective jacket 11 Attachment 12 Shaft 13 Reverse shaft 14 Rotation shaft 15 Reverse Rotation axis 16 Motor 17 Mounting part 18 Rotation body 19 Reverse rotation body 20 Rising part 21 Reverse rotation rising part 22 Supply part 23 F rotation body 24 Axis 25 Connection part 26 Hollow connection part 27 Arrow axis << Rotation axis indicating rotation direction >>

Claims (13)

【特許請求の範囲】[Claims] 【請求項1】図示するように左右に動くピストン1とシ
リンダー2との間にエネルギー3を供給し、あるいは発
生して、連結された出力軸1、2とともに互いに往復状
に動かし、出力を逆方向にする場合は、そのままに、同
一方向の出力が要る場合は、各出力軸1、2を連結棒4
で連結し、支点5でいずれかの方向を逆転して同一方向
の出力となす構造の請求項1の反転による自走あるいは
自走でない原動および発動方法。
An energy 3 is supplied or generated between a piston 1 and a cylinder 2 which move left and right as shown in the figure, and reciprocally moves together with the connected output shafts 1 and 2 to reverse the output. When output is required in the same direction, the output shafts 1 and 2 are connected to the connecting rod 4 when output in the same direction is required.
3. A self-propelled or non-self-propelled driving and activating method according to claim 1, wherein said fulcrum 5 is connected in a reverse direction to output an output in the same direction.
【請求項2】互いに逆転する駆動回転体6、逆駆動回転
体7において、中間にエネルギー3を供給し、あるいは
発生して駆動回転体6、逆駆動回転体7を互いに逆転し
て出力軸1、2につなぐ。しかして片側の駆動回転体6
の力を伝導体8、あるいは逆伝導体9にて逆転して反対
側につないで同一方向の力として、あるいは伝導体8、
逆伝導体9をはずして互いに逆方向の力として取り出す
構造の請求項1あるいは請求項2の反転による自走ある
いは自走でない原動および発動方法。
An energy is supplied to or generated between the driving rotating body and the reverse driving rotating body that rotate in the opposite direction, and the driving rotating body and the reverse driving rotating body are rotated in the reverse direction to output the output shaft. Connect to 2. Thus, one side of the driving rotator 6
Is reversed by the conductor 8 or the reverse conductor 9 and connected to the opposite side as a force in the same direction, or the conductor 8,
3. The method of claim 1 or claim 2, wherein the reverse conductor 9 is detached and taken out as forces in directions opposite to each other.
【請求項3】互いに逆転して作用反作用を相殺した一対
以上の機関、装置と、摩擦、反動等を用いて操作する機
関、装置等とを混合、あるいは組み合わせて供する構造
の請求項3あるいは請求項2あるいは請求項1の自走あ
るいは自走でない原動および発動方法。
3. A structure in which at least one pair of engines and devices which are mutually reversed to cancel the action and reaction, and engines and devices which operate using friction, reaction or the like are mixed or provided in combination. The self-propelled or non-self-propelled driving and activating method according to claim 2 or claim 1.
【請求項4】図3、4において、保護外被10にあるい
は内に回動状に取り付け具11で取り付けられた、互い
に反転する駆動回転体6、逆駆動回転体7の間にエネル
ギー3を供給し、あるいは発生して互いに逆転せしめ、
連結したシャフト12、逆シャフト13に取り付けた回
転軸14、逆回転軸15は互いに逆転し、連なる回転体
18、逆回転体19は互いに接し、あるいは接せず、回
動し、あるいはその間にエネルギー3を供し、あるいは
内蔵したモーター16により逆転して駆動回転体、逆駆
動回転体の軸方向のいずれかに移動する構造の請求項4
あるいは請求項3の反転による自走あるいは自走でない
原動および発動方法
4. In FIG. 3 and FIG. 4, energy 3 is applied between a driving rotation body 6 and a reverse driving rotation body 7 which are rotatably mounted on or in a protective jacket 10 by means of a mounting tool 11 and which are opposite to each other. Supply or generate and reverse each other,
The connected shaft 12, the rotating shaft 14 attached to the reverse shaft 13, and the reverse rotating shaft 15 are rotated in reverse to each other, and the continuous rotating body 18 and reverse rotating body 19 are in contact with each other, or are not in contact with each other, or rotate, or energy is generated between them. 3. A structure in which the driving rotator or the reverse driving rotator is moved in either the axial direction of the driving rotator or the reverse driving rotator by being reversed by the built-in motor 16.
Or a self-propelled or non-self-propelled driving and activating method by reversing claim 3.
【請求項5】当該装置を含む保護外被10を一つの系と
して系外とは無関係に移動し、あるいはこれを動かさん
とする、主として在来の作用反作用よりなる機関、装置
等運動体に搭載して供する構造の請求項5あるいは請求
項4あるいは請求項3あるいは請求項2あるいは請求項
1の反転による自走あるいは自走でない原動および発動
方法。
5. A moving body, such as an engine or a device mainly composed of a conventional action reaction, which moves or moves the protective jacket 10 including the device as one system independently of the outside of the system. A self-propelled or non-self-propelled driving and starting method by reversing the structure of claim 5, claim 4, claim 4, claim 3, claim 2, or claim 1.
【請求項6】回転体等、周回し回動する部分の摩擦抵抗
等を減らすため減圧、あるいは真空とした構造の請求項
1あるいは請求項2あるいは請求項3あるいは請求項4
あるいは請求項5あるいは請求項6の反転による自走あ
るいは自走でない原動および発動方法。
6. A pressure reducing or vacuuming structure for reducing frictional resistance and the like of a rotating part such as a rotating body or the like.
Alternatively, a self-propelled or non-self-propelled driving and activating method according to claim 5 or 6.
【請求項7】反転する駆動回転体6、逆駆動回転体7の
間にエネルギー3を供給し、あるいは発生して互いに反
転するようになして、反転する各に連ねて反転する回転
体18、逆回転体19を設けるべく、回転軸14、逆回
転軸15を設ける。しかして回転体18、逆回転体19
は互いに接して、あるいは接せず回動し、あるいはその
間にエネルギーを供して、あるいは回転体18、逆回転
体19中、あるいは立ち上がり部20、逆回転立ち上が
り部21にモーター等を設けて互いに逆転して反作用を
相殺する。しかして立ち上がり部20、逆回転立ち上が
り部21の各の周縁に複数個の回転体を設けた構造の請
求項7あるいは請求項6あるいは請求項5あるいは請求
項4あるいは請求項2あるいは請求項1の反転による自
走あるいは自走でない原動および発動方法。
7. A rotating body 18 which supplies energy 3 between the driving rotating body 6 and the reverse driving rotating body 7 to be inverted or generates and inverts each other. The rotating shaft 14 and the reverse rotating shaft 15 are provided to provide the reverse rotating body 19. The rotating body 18 and the reverse rotating body 19
Are rotated in contact with each other or not in contact with each other, or provide energy therebetween, or are provided with a motor or the like in the rotating body 18, the reverse rotating body 19, or in the rising portion 20 and the reverse rotating rising portion 21, and are rotated in the opposite direction. To offset the reaction. Thus, a structure in which a plurality of rotating bodies are provided on the periphery of each of the rising portion 20 and the counter-rotating rising portion 21 is provided in claim 7 or claim 6 or claim 5 or claim 4 or claim 2 or claim 1 or 2. Self-propelled or non-self-propelled prime mover and method of inversion.
【請求項8】駆動して駆動回転体6、逆駆動回転体7を
互いに逆転させ、連なる回転体18、逆回転体19も、
互いに接し、あるいは接せず回動しあるいはエネルギー
3等で互いに逆転して反作用を相殺して、立ち上がり部
20、逆回転立ち上がり部21とともに周回しながら逆
転する構造の請求項8あるいは請求項7あるいは請求項
6あるいは請求項5あるいは請求項4あるいは請求項3
あるいは請求項2あるいは請求項1の反転による自走あ
るいは自走でない原動および発動方法。
8. The driving rotator 6 and the reverse driving rotator 7 are driven to rotate in opposite directions to each other.
8. The structure of claim 8 or claim 7, wherein the structure rotates in contact with or not in contact with each other, or reverses each other with energy 3 or the like to cancel the reaction, and reverse while rotating around the rising portion 20 and the reverse rotation rising portion 21. Claim 6 or claim 5 or claim 4 or claim 3
Alternatively, a self-propelled or non-self-propelled driving and activating method according to claim 2 or claim 1.
【請求項9】回転体の互いの逆回転による影響を受けな
い中立の、エネルギー、管理、居室等の供給部22を互
いに逆転する駆動回転体の上部、あるいは間、あるいは
下部に設け、あるいは結合部25と連結した構造の請求
項9あるいは請求項8あるいは請求項7あるいは請求項
6あるいは請求項5あるいは請求項4あるいは請求項3
あるいは請求項2あるいは請求項1の反転による自走あ
るいは自走でない原動および発動方法。
9. A neutral, energy, management, living room, etc. supply unit 22 which is not affected by the reverse rotation of the rotating bodies, is provided above, between, or below the driving rotating bodies which reverse to each other, or is connected. Claim 9, Claim 8, Claim 7, Claim 6, Claim 5, Claim 4, or Claim 3 of the structure connected with the part 25.
Alternatively, a self-propelled or non-self-propelled driving and activating method according to claim 2 or claim 1.
【請求項10】図示するように、回転体および回転軸を
動かすことにより、上下、前後および左右方向の力とな
した構造の請求項10あるいは請求項9あるいは請求項
8あるいは請求項7あるいは請求項6あるいは請求項5
あるいは請求項4あるいは請求項3あるいは請求項2あ
るいは請求項1の反転による自走あるいは自走でない原
動および発動方法。
10. A structure in which a rotating body and a rotating shaft are moved to produce vertical, front-back, left-right and right-hand forces as shown in the drawing. Claim 6 or Claim 5
Alternatively, a self-propelled or non-self-propelled driving and activating method according to claim 4 or claim 3 or claim 2 or claim 1.
【請求項11】各一対の駆動回転体および回転体を設け
て上下あるいは前後あるいは左右方向に移動し、各二対
を角度をかえて設けて上下前後左右方向に移動する構造
の請求項11あるいは請求項10あるいは請求項9ある
いは請求項8あるいは請求項7あるいは請求項6あるい
は請求項5あるいは請求項4あるいは請求項3あるいは
請求項2あるいは請求項1の反転による自走あるいは自
走でない原動置いて発動方法。
11. A structure in which a pair of driving rotators and a rotator are provided to move up and down, front and rear or left and right, and two pairs are provided at an angle to move up and down, front and rear and left and right. A self-propelled or non-self-propelled prime mover by reversing claim 10 or claim 9 or claim 8 or claim 7 or claim 7 or claim 6 or claim 5 or claim 4 or claim 3 or claim 2 or claim 1. Activate method.
【請求項12】供給部22よりの出入り口を兼ねる中空
結合部26を回動する駆動回転体6、逆駆動回転体7の
間にエネルギー3を供給し、あるいは発生して互いに逆
駆動して周回する立ち上がり部20、逆立ち上がり部2
1内を、フリー、あるいは周回方向に固定し、回転軸1
4、逆回転軸15方向のみ可動のF回転体23を設けて
周回する。しかして上下移動の力は軸24を駆動軸と直
角方向とし、前後左右の横方向に進むときは、進むべき
方向の点で軸24を起こす。しかして他の二点は負であ
るから軸24を逆転して求心方向の力としてベクトル合
成により進行方向の力となし、120度間隔で三点を設
けることにより任意の 360度方向の進行を得、点の
周辺の軸を起こして速度を加減する構造の請求項12あ
るいは請求項11あるいは請求項10あるいは請求項9
あるいは請求項8あるいは請求項7あるいは請求項6あ
るいは請求項5あるいは請求項4あるいは請求項3ある
いは請求項2あるいは請求項1の反転による自走あるい
は自走でない原動および発動方法。
12. An energy 3 is supplied between the driving rotator 6 and the reverse driving rotator 7 for rotating the hollow coupling portion 26 also serving as an entrance and exit from the supply portion 22, or the energy 3 is generated and driven in reverse to rotate. Rising section 20, reverse rising section 2
1 is free or fixed in the circling direction,
4. An F-rotator 23 that is movable only in the direction of the reverse rotation shaft 15 is provided and orbits. Thus, the vertical movement force causes the shaft 24 to be in a direction perpendicular to the drive shaft, and when moving in the front, rear, left and right lateral directions, raises the shaft 24 at a point in the direction to be moved. Since the other two points are negative, the shaft 24 is reversed to produce a force in the traveling direction by vector synthesis as a force in the centripetal direction. By providing three points at 120-degree intervals, the traveling in any 360-degree direction can be performed. Claim 12 or Claim 11 or Claim 10 or Claim 9 wherein the speed is adjusted by raising an axis around the score.
Alternatively, a self-propelled or non-self-propelled driving and activating method by reversing claim 8, claim 7, claim 6, claim 5, claim 5, claim 4, claim 3, or claim 2 or claim 1.
【請求項13】こま回転子電子等求心力のある回転体を
固定子等で回転して、その作用反作用の差がある状態に
力を加えて互いに逆転して反作用を相殺して、加えられ
た力と異なる向きの、回転体どうしが同じ向きの力を得
る構造の請求項13あるいは請求項12あるいは請求項
11あるいは請求項10あるいは請求項9あるいは請求
項8あるいは請求項7あるいは請求項6あるいは請求項
5あるいは請求項4あるいは請求項3あるいは請求項2
あるいは請求項1の反転による自走あるいは自走でない
原動および発動方法。
13. A rotating body having a centripetal force, such as a spinning rotor electron, is rotated by a stator or the like, and a force is applied to a state in which there is a difference between the action and the reaction. Claim 13 or claim 12, claim 11, claim 11, claim 10, claim 9, claim 8, claim 7, or claim 6 or claim 7 of a structure in which rotating bodies in directions different from the force obtain forces in the same direction. Claim 5 or Claim 4 or Claim 3 or Claim 2
Alternatively, a self-propelled or non-self-propelled driving and activating method according to claim 1.
JP11496297A 1996-08-31 1997-03-28 Self-traveling or nonself-traveling prime moving and motive power generating method Pending JPH10122126A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP11496297A JPH10122126A (en) 1996-08-31 1997-03-28 Self-traveling or nonself-traveling prime moving and motive power generating method

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
JP26654396 1996-08-31
JP8-266543 1996-08-31
JP11496297A JPH10122126A (en) 1996-08-31 1997-03-28 Self-traveling or nonself-traveling prime moving and motive power generating method

Publications (1)

Publication Number Publication Date
JPH10122126A true JPH10122126A (en) 1998-05-12

Family

ID=26453592

Family Applications (1)

Application Number Title Priority Date Filing Date
JP11496297A Pending JPH10122126A (en) 1996-08-31 1997-03-28 Self-traveling or nonself-traveling prime moving and motive power generating method

Country Status (1)

Country Link
JP (1) JPH10122126A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2001020164A1 (en) * 1999-09-14 2001-03-22 Sheiichi Akiba Space battleship aircraft carrier

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2001020164A1 (en) * 1999-09-14 2001-03-22 Sheiichi Akiba Space battleship aircraft carrier

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