JP3145967U - Magnetizer for fluid - Google Patents
Magnetizer for fluid Download PDFInfo
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- JP3145967U JP3145967U JP2008005719U JP2008005719U JP3145967U JP 3145967 U JP3145967 U JP 3145967U JP 2008005719 U JP2008005719 U JP 2008005719U JP 2008005719 U JP2008005719 U JP 2008005719U JP 3145967 U JP3145967 U JP 3145967U
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Abstract
【課題】流体を均等磁化できる流体用磁化装置を提供する。
【解決手段】一側壁へ流体流入口を設け、他側壁へ流体流出口を設けた中空ケースの中央部へ永久磁石のN極とS極を平行して対極させて、流体の通過間隙を設け、前記N極とS極をヨークで連結したことを特徴とする流体用磁化装置により、目的を達成した。対向磁極面の間隔を自由に選定できるので、最良の磁化効率を選定することができ、また中空ケースは、磁気シールドを兼ねることが出来るので、磁気の漏洩を防止する効果がある。
【選択図】図3A fluid magnetizing apparatus capable of uniformly magnetizing a fluid is provided.
SOLUTION: A fluid inflow gap is provided by setting the N pole and S pole of a permanent magnet in parallel to the center of a hollow case having a fluid inlet on one side wall and a fluid outlet on the other side wall. The object has been achieved by a fluid magnetizing apparatus characterized in that the north and south poles are connected by a yoke. Since the interval between the opposing magnetic pole surfaces can be freely selected, the best magnetization efficiency can be selected, and since the hollow case can also serve as a magnetic shield, there is an effect of preventing magnetic leakage.
[Selection] Figure 3
Description
この考案は、空気又は水その他の流体を磁化する際に使用することを目的とした流体用磁化装置に関する。 The present invention relates to a fluid magnetizing apparatus intended to be used when magnetizing air, water or other fluids.
従来空気又は水を磁化する場合には、送気管又は送水管の外側にN、Sの磁極を対極させ、前記流体を所定の磁場内におくことにより目的を達成している。
従来パイプの中を通過する流体の磁化には、パイプの外側に磁極を対向設置したので、必然的に磁極面の距離が不均等になり、パイプ内を流れる流体(例えば空気)の磁化程度も不均一となり、全磁化強度(平均値)も低下を免れない問題点があった(特許文献1)。 Conventionally, since the magnetic poles are opposed to the outside of the pipe for the magnetization of the fluid that passes through the pipe, the magnetic pole surfaces are inevitably uneven in distance, and the degree of magnetization of the fluid (for example, air) flowing in the pipe is inevitably There is a problem that the magnetic field intensity is not uniform and the total magnetization intensity (average value) cannot be avoided (Patent Document 1).
またパイプの外側からの磁化については、パイプの材質(例えば強磁性材は不可)についても制約がある問題点があった。 Further, regarding the magnetization from the outside of the pipe, there is a problem that the material of the pipe (for example, a ferromagnetic material cannot be used) is also limited.
然して流体の磁化について、永久磁石を使用する場合には、自ら磁力の強さに限度(例えば5000ガウス)があるので、この強さを有効に作用させなければならないが、前記のようにパイプの外側から磁化する場合の有効磁力は、当然本来の磁力以下になる問題点があった。 However, when a permanent magnet is used for the magnetization of a fluid, there is a limit to the strength of the magnetic force itself (for example, 5000 gauss), and this strength must be effectively applied. The effective magnetic force when magnetized from the outside naturally has a problem of being lower than the original magnetic force.
この考案は、中空ケース内へN極とS極を露出して極平面を対向させ、しかも近接設置できるので、磁石本来の強さ以上の磁化力で作用し、その上平行磁界で均等に作用し、送気パイプ(又は送液パイプ)の材質に影響を受けないなど、前記従来の問題点を解決したのである。 This device exposes the N and S poles in the hollow case so that the polar planes face each other and can be installed close to each other, so it works with a magnetizing force that is greater than the original strength of the magnet, and works evenly with a parallel magnetic field. However, the conventional problems such as not being affected by the material of the air supply pipe (or liquid supply pipe) have been solved.
即ちこの考案は、一側壁へ流体流入口を設け、他側壁へ流体流出口を設けた中空ケースの中央部へ永久磁石のN極とS極を平行して対極させて、流体の通過間隙を設け、前記N極とS極をヨークで連結したことを特徴とする流体用磁化装置であり、一側壁へ流体流入口を設け、他側壁へ流体流出口を設けた中空ケースの中央部へ永久磁石のN極とS極を平行して対極させて、流体の通過間隙を設け、前記N極とS極をヨークで連結した磁化装置において、N極とS極は、方形ヨークの上下に固定して対極させ、前記枠壁と、N極とS極とヨークとの間隙を非磁性材で閉塞して、流体の流通する方形空隙を形成したことを特徴とする流体用磁化装置である。 In other words, in the present invention, a fluid inflow gap is provided by making the north and south poles of a permanent magnet parallel and parallel to the center of a hollow case having a fluid inlet on one side wall and a fluid outlet on the other side wall. A magnetizing device for fluid, characterized in that the N pole and S pole are connected by a yoke, and is permanently attached to the center of a hollow case in which a fluid inlet is provided on one side wall and a fluid outlet is provided on the other side wall. In the magnetizing apparatus in which the N and S poles of the magnet are parallel and opposite to each other to provide a fluid passage gap and the N and S poles are connected by a yoke, the N and S poles are fixed above and below the rectangular yoke. A magnetizing device for fluid is characterized in that a rectangular gap through which a fluid flows is formed by closing the gap between the frame wall, the N pole, the S pole, and the yoke with a nonmagnetic material.
また、一側壁へ流体流入口を設け、他側壁へ流体流出口を設けた中空ケースの中央部へ永久磁石のN極とS極を平行して対極させて、流体の通過間隙を設け、前記N極とS極をヨークで連結した磁化装置において、流体流入口及び流体流出口と、流体の流通する前記N極とS極の通過間隙との間に、夫々空間を介在させたことを特徴とする流体用磁化装置であり、中空ケースは、方形筒の一側に流体流入口を有する側壁板を固定し、前記方形筒の他側に流体流出口を有する側壁板を固定したものである。 Also, a fluid inflow gap is provided by providing a fluid inflow port on one side wall and a N pole and a S pole of a permanent magnet in parallel to the central portion of the hollow case provided with a fluid outlet on the other side wall, In the magnetizing apparatus in which the N pole and the S pole are connected by a yoke, a space is interposed between the fluid inlet and the fluid outlet and the passage gap between the N pole and the S pole through which the fluid flows. The hollow case is formed by fixing a side wall plate having a fluid inlet on one side of a rectangular cylinder and fixing a side wall plate having a fluid outlet on the other side of the rectangular cylinder. .
前記において、N極とS極との位置と面積は自由に選定することができる。また中空ケースの中央部に永久磁石のN極とS極を対向設置し、ケースとの間隙を非磁性体で閉塞すれば、流入流体は、前記設定した間隙のみを通過させることができる。 In the above, the positions and areas of the N pole and the S pole can be freely selected. In addition, if the N pole and S pole of the permanent magnet are installed opposite to each other at the center of the hollow case and the gap between the case and the case is closed with a nonmagnetic material, the inflowing fluid can pass only the set gap.
この考案は、流体の流入口と、流出口を有する中空ケースの中央部へN極とS極の磁極を対向設置して流体の通過間隙を設けたので、前記流体は、前記磁極の間を流動し、磁化される。この場合に磁極面を平行にしてあるので、流体を均等磁化できる効果がある。 In the present invention, since the N pole and S pole magnetic poles are disposed opposite to the center of the hollow case having the fluid inlet and outlet, a fluid passage gap is provided between the poles. It flows and is magnetized. In this case, since the magnetic pole faces are parallel, there is an effect that the fluid can be uniformly magnetized.
また対向磁極面の間隔を自由に選定できるので、最良の磁化効率を選定し得る効果がある。 Further, since the interval between the opposing magnetic pole faces can be freely selected, there is an effect that the best magnetization efficiency can be selected.
更に中空ケースは、磁気シールドを兼ねることが出来るので、磁気の漏洩を未然に防止し得る効果がある。 Furthermore, since the hollow case can also serve as a magnetic shield, there is an effect that magnetic leakage can be prevented in advance.
この考案は、一側壁に流体流入口を有し、他側壁に流体流出口を有する強磁性材製の中空ケースの中央部に所定間隔で永久磁石のN極とS極の対向面を平行設置し、前記N極とS極の夫々と、前記中空ケースの内壁との間隙部を非磁性材で閉塞して流体用磁化装置を構成した。前記流体は主として空気又は水であるが、他の流体に用いることもできる。 In this device, the facing surfaces of the N and S poles of a permanent magnet are arranged in parallel at a predetermined interval in the center of a ferromagnetic hollow case having a fluid inlet on one side wall and a fluid outlet on the other side wall. The fluid magnetizing device was configured by closing the gap between the N pole and the S pole and the inner wall of the hollow case with a nonmagnetic material. The fluid is mainly air or water, but can be used for other fluids.
前記N極とS極の対向面は平面とし、平行に対向設置するが、その間隔は適宜(例えば空気磁化の場合は20mm)定める。前記のように、磁極面が平面であって、平行の為に通過流体を均等かつ設定強さに磁化することができる。また中空ケースによって磁気遮蔽するので、磁力線が中空ケース外へ洩れるおそれがなく、近接他物に磁気的影響を及ぼすおそれはない。 The facing surfaces of the N and S poles are flat and are placed facing each other in parallel, but the interval is determined appropriately (for example, 20 mm for air magnetization). As described above, since the magnetic pole surface is flat and parallel, the passing fluid can be magnetized uniformly and with a set strength. Further, since the magnetic shielding is performed by the hollow case, the magnetic lines of force are not likely to leak out of the hollow case, and there is no possibility of magnetically affecting nearby objects.
鉄板よりなる直方体状の中空ケース1は方形筒1cの一側壁1aの中央部へ流体(例えば空気)流入筒2を設置し、他側壁1bの中央部へ流体流出筒3を設置して構成する。前記中空ケース1の中央部へ磁石体9を嵌挿固定する。前記磁石体9は、永久磁石4,5を対向させ、その外側のヨーク6を前記中空ケース1の側壁に夫々固定(ビス10による)すると共に、前記永久磁石4,5と、ヨーク6との間隙部へウレタン板7,7を充填して閉塞する(図3)。
A rectangular parallelepiped
前記中空ケース1の流体流入筒2と、流体流出筒3を設けた側壁と、前記永久磁石との間には間隙8,8があるが、他側壁にはヨーク6が固着してあるので、間隙はない。前記ヨーク6は、コ状枠6bと、コ状枠6bを塞ぐ平板6aとにより構成されている。図中11はビスである(図2,3)。
There are
従って流入流体は、永久磁石4,5の平行間隙のみを通過して磁化されるので、均等かつ強力に磁化される。
Accordingly, the inflowing fluid is magnetized by passing only through the parallel gap between the
1 中空ケース
2 流体流入筒
3 流体流出筒
4,5 永久磁石
6 ヨーク
7 ウレタン板
8 間隙
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JP2008005719U JP3145967U (en) | 2008-08-18 | 2008-08-18 | Magnetizer for fluid |
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JP2008005719U JP3145967U (en) | 2008-08-18 | 2008-08-18 | Magnetizer for fluid |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
KR102138658B1 (en) * | 2019-10-10 | 2020-07-28 | 오케이 주식회사 | a device for generating magnetized water |
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- 2008-08-18 JP JP2008005719U patent/JP3145967U/en not_active Expired - Lifetime
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
KR102138658B1 (en) * | 2019-10-10 | 2020-07-28 | 오케이 주식회사 | a device for generating magnetized water |
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