JPH04364355A - Continuous operation mechanism by permanent magnet - Google Patents
Continuous operation mechanism by permanent magnetInfo
- Publication number
- JPH04364355A JPH04364355A JP16634891A JP16634891A JPH04364355A JP H04364355 A JPH04364355 A JP H04364355A JP 16634891 A JP16634891 A JP 16634891A JP 16634891 A JP16634891 A JP 16634891A JP H04364355 A JPH04364355 A JP H04364355A
- Authority
- JP
- Japan
- Prior art keywords
- magnets
- continuous operation
- permanent magnet
- poles
- operation mechanism
- 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
- 230000007246 mechanism Effects 0.000 title claims abstract description 9
- 238000010248 power generation Methods 0.000 abstract description 3
- 239000000126 substance Substances 0.000 abstract 1
- 239000000696 magnetic material Substances 0.000 description 14
- 230000000694 effects Effects 0.000 description 4
- 230000009471 action Effects 0.000 description 2
- 238000009434 installation Methods 0.000 description 2
- 230000008901 benefit Effects 0.000 description 1
- 230000008859 change Effects 0.000 description 1
- 230000003993 interaction Effects 0.000 description 1
- 238000000034 method Methods 0.000 description 1
Landscapes
- Dynamo-Electric Clutches, Dynamo-Electric Brakes (AREA)
Abstract
Description
【0001】0001
【産業上の利用分野】本発明は、永久磁石による連続運
転機構に関する。このような連続機構は、例えば発電等
の動力源に供することができる。BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a continuous operation mechanism using permanent magnets. Such a continuous mechanism can be used as a power source, for example, for power generation.
【0002】0002
【従来の技術】永久磁石の引力、斥力は平行に対面する
上下、左右あらゆる方向において極面中心からの対角線
上の力は同等である。磁石の同種極間の斥力を活用する
ためこれを単体で固定板と回転盤に相対、設置しても、
どの方向に対しても対角線上は力が同等に働き、回転を
目的とした構造物における有効性が生じない。2. Description of the Related Art Regarding the attractive and repulsive forces of a permanent magnet, the diagonal forces from the center of the pole face are the same in all directions that face each other in parallel, up and down, left and right. In order to take advantage of the repulsive force between similar poles of a magnet, even if it is installed alone relative to a fixed plate and a rotary plate,
The force acts equally on the diagonal in any direction, and is not effective in structures intended for rotation.
【0003】0003
【発明が解決しようとする課題】本発明は、回転を目的
とした構造物において、磁性体と有効に組み合わされた
永久磁石による連続運転機構を提供することを目的とす
る。SUMMARY OF THE INVENTION An object of the present invention is to provide a continuous operation mechanism using a permanent magnet effectively combined with a magnetic material in a structure intended for rotation.
【0004】0004
【課題を解決するための手段および作用】本発明は、複
数の磁石と磁性体との組み合わせにより、回転構造物に
おける進行方向に対する入、出時の磁石の斥力に差位を
つくり、その連続的構成によって、動力源として活用す
るものである。[Means and effects for solving the problem] The present invention creates a difference in the repulsive force of the magnets when entering and exiting a rotating structure with respect to the direction of movement by combining a plurality of magnets and a magnetic body, and the continuous Depending on the configuration, it can be used as a power source.
【0005】構造上は、磁性体を用いて、磁界を制御、
または進行を意図する方向の進入、退出側に誘導して組
み合わせた磁石を、回転する内盤と固定した外板に、意
図する進行方向に、それぞれの同種極が作用するように
設置する。また、この構造物の回転は、内、外板に設置
した磁石の進行方向に対する入、出時の斥力差を回転力
に用いるものであるが、磁力の作用は距離において逆二
乗の性質を有しており、相対する板上に設置された磁石
との作用は、同一盤上の次席磁石への進入時の斥力を越
える斥力を得ることができない。Structurally, magnetic materials are used to control the magnetic field.
Alternatively, a combination of magnets guided to the entry and exit sides of the intended direction of movement is installed on a rotating inner plate and a fixed outer plate so that the respective similar poles act in the intended direction of movement. In addition, the rotation of this structure uses the difference in repulsive force when magnets installed on the inner and outer panels move in and out of the direction of travel as the rotational force, but the action of magnetic force has an inverse square property in terms of distance. Therefore, the interaction with the magnets installed on the opposing plates cannot produce a repulsive force that exceeds the repulsive force when entering the next magnet on the same plate.
【0006】そのため、磁石の設置板を複数の組み合わ
せとし、磁性体と組み合わされた内、外板の永久磁石の
斥力差が有効に作用する僅少の距離を集積して、同一盤
における次席設置磁石を通過するよう構成、その運動が
連続するように考案した。[0006] Therefore, a plurality of magnet installation plates are combined, and the next installation magnets on the same board are integrated at a short distance where the difference in repulsion between the permanent magnets on the outer plate of the permanent magnets combined with the magnetic material effectively acts. It was designed so that the movement would be continuous.
【0007】以上を添付図面を参照に説明する。The above will be explained with reference to the attached drawings.
【0008】(イ)複数の磁石と磁性体の組み合わせ(
図1)は、回転構造物(図7)に磁石の斥力を活用する
ネライをもって組み立てたもので、永久磁石の特性は単
体の場合、引力、斥力の作用が対角線上の位置において
、常に同等の力を有している。(a) Combination of multiple magnets and magnetic materials (
Figure 1) is a rotating structure (Figure 7) assembled with a magnet that utilizes the repulsive force of the magnet.The characteristics of a permanent magnet are that when it is a single permanent magnet, the attractive and repulsive forces are always equal at diagonal positions. It has power.
【0009】故に(図2)や(図3)のように回転構造
物(図7)に単体の磁石を設置してもその活用は不可能
である。Therefore, even if a single magnet is installed in a rotating structure (FIG. 7) as shown in FIGS. 2 and 3, it is impossible to utilize it.
【0010】本発明は(図1)の磁性体と複数の磁石の
組み合わせ方法によって(図2)や(図3)の態様にお
ける、対象方向の力の同等性に変化をもたらした。The present invention brings about a change in the equality of forces in the object direction in the embodiments of (FIG. 2) and (FIG. 3) by the method of combining the magnetic body and a plurality of magnets (FIG. 1).
【0011】磁性体を用いた(図1−1)と(図1−3
)のA磁石の組み合わせは(図1−(A))の磁石のN
極を内、外板での磁石の接触する進入方向へ誘導、(図
1−(B))と(図1−5)の組み合わせは、(図1−
(B))磁石のS極を内、外板での磁石の接触して退出
する方向に誘導し、(図4)の態様で斥力差をもたらし
た。[0011] Using magnetic material (Fig. 1-1) and (Fig. 1-3)
) is the combination of magnet A in (Figure 1-(A)).
The combination of (Fig. 1-(B)) and (Fig. 1-5) is as follows.
(B)) The S poles of the magnets were guided in the direction of contact between the inner and outer magnets and exit, resulting in a repulsive force difference in the manner shown in FIG. 4.
【0012】(図1−4)の非(反)磁性体物質は上記
二つの作用を有効ならしめるものである。(図1−2)
の磁性体は、内、外板に設置した磁石の相対するS極の
正面の一部を入、出方向を定めた時の入の方向を覆い、
その一部の磁界をN極へ誘導し、同じS極における磁界
の強弱を現出した。The non-(anti)magnetic material shown in FIGS. 1-4 makes the above two effects effective. (Figure 1-2)
The magnetic material covers part of the front face of the opposing S poles of the magnets installed on the inner and outer panels, and covers the input direction when the input and output directions are determined.
A part of the magnetic field was guided to the north pole, and the strength of the magnetic field at the same south pole was revealed.
【0013】磁界が空間を伝わるより、磁性体を速かに
伝播するからである。This is because the magnetic field propagates faster through magnetic materials than through space.
【0014】弧長差10ミリ以内で内、外板の磁石の同
種極が接触するよう設置するのは(図7)磁力の作用が
距離の逆二乗の性質を有するため、磁性体を用いて、回
転を目的とした方向の前後に生ずる斥力に差位を得ても
、連続回転を目的とした構造物においては、その実効力
が僅少のためである。[0014] Installing the magnets so that the same kind of poles on the inner and outer plates are in contact with each other within an arc length difference of 10 mm (Fig. 7) is done using a magnetic material because the action of magnetic force has the property of being the inverse square of the distance. This is because even if a difference is obtained in the repulsive force generated before and after the direction intended for rotation, the effective effect is small in a structure intended for continuous rotation.
【0015】この機構は、例えば発電等の動力源に供す
ることができる。[0015] This mechanism can be used as a power source such as power generation.
【0016】[0016]
【効果】本発明によれば、回転を目的とした構造物にお
いて有効な永久磁石による連続運転機構が実現される。[Effects] According to the present invention, a continuous operation mechanism using permanent magnets that is effective in structures intended for rotation is realized.
【図1】 本機構に用いる複数の磁石と磁性体の組み
合わせである。FIG. 1 shows a combination of multiple magnets and magnetic materials used in this mechanism.
【図2,3】 永久磁石を単体で設置した態様である
。[Figures 2 and 3] This is an embodiment in which a single permanent magnet is installed.
【図4】 図1組み合わせ磁石の内、外板における態
様である。FIG. 4 is an aspect of the outer plate of the combined magnet shown in FIG.
【図5】 回転盤と固定板における磁石の設置態様で
ある。FIG. 5 shows how magnets are installed on the rotary disk and fixed plate.
【図6】 回転盤と固定板における磁石の断面図であ
る。FIG. 6 is a cross-sectional view of the magnets on the rotary disk and the fixed plate.
【図7】 複数の内、外板に弧長差10ミリ以内で斥
力作用が継続するよう永久磁石を設置した態様で示す本
発明の基本構造の斜視図である。FIG. 7 is a perspective view of the basic structure of the present invention, in which permanent magnets are installed on the outer plate so that a repulsive force is maintained within an arc length difference of 10 mm.
1:永久磁石、 2:磁性体、 3:磁性体、
4:非(反)磁性体、 5:磁性体、 6:外板、
7:回転盤、 8:回転軸、 9:固定枠。1: Permanent magnet, 2: Magnetic material, 3: Magnetic material,
4: Non-(anti)magnetic material, 5: Magnetic material, 6: Outer plate,
7: Rotating disk, 8: Rotating shaft, 9: Fixed frame.
Claims (1)
力を意図する方向に有効に作用するように複数の永久磁
石と磁性体との組み合せ方をする、および(ロ) 複
数の固定板と、一つの軸棒で連結された複数の回転盤に
設置する磁石の位相は、内、外板の磁石の同種極が、弧
長差10ミリ以内で順次接触するように設置する、以上
の要素で構成した永久磁石による連続運転機構。Claim 1: (a) A plurality of permanent magnets and a magnetic body are combined in such a way that the repulsive force generated between like poles of the permanent magnets acts effectively in the intended direction, and (b) a plurality of fixed plates. And, the phase of the magnets installed on multiple rotary disks connected by one shaft is such that the same kind of poles of the inner and outer magnets are sequentially in contact with each other within an arc length difference of 10 mm. Continuous operation mechanism using permanent magnets composed of elements.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| JP16634891A JPH04364355A (en) | 1991-06-11 | 1991-06-11 | Continuous operation mechanism by permanent magnet |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| JP16634891A JPH04364355A (en) | 1991-06-11 | 1991-06-11 | Continuous operation mechanism by permanent magnet |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| JPH04364355A true JPH04364355A (en) | 1992-12-16 |
Family
ID=15829716
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| JP16634891A Pending JPH04364355A (en) | 1991-06-11 | 1991-06-11 | Continuous operation mechanism by permanent magnet |
Country Status (1)
| Country | Link |
|---|---|
| JP (1) | JPH04364355A (en) |
-
1991
- 1991-06-11 JP JP16634891A patent/JPH04364355A/en active Pending
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