JP2015100684A - Resonance electromagnetic wave transfer body and its manufacturing method - Google Patents

Resonance electromagnetic wave transfer body and its manufacturing method Download PDF

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JP2015100684A
JP2015100684A JP2013252490A JP2013252490A JP2015100684A JP 2015100684 A JP2015100684 A JP 2015100684A JP 2013252490 A JP2013252490 A JP 2013252490A JP 2013252490 A JP2013252490 A JP 2013252490A JP 2015100684 A JP2015100684 A JP 2015100684A
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electromagnetic wave
resonance
transfer body
terahertz
manufacturing
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寛人 棟田
Hiroto Muneta
寛人 棟田
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Abstract

PROBLEM TO BE SOLVED: To solve problems in conventional devices for generating an electromagnetic wave in a terahertz wave region in which most of those devices are large-scaled to cause problems in cost and versatility, and also health accessories, a water quality improving device, and a fuel consumption improving device made of natural stone, metal, and ceramic and using the emission of the electromagnetic wave are developed, however, frequencies thereof are not specified and resonance effects thereof are not clear.SOLUTION: The present invention is configured to provide a transfer body using a resonance electromagnetic wave object itself as an oscillation body of electromagnetic waves of frequencies of 32-38 terahertz, and its manufacturing method, by the way in which the electromagnetic waves are brought into close contact with or proximity to the resonance electromagnetic wave object having atoms, molecules, and molecular binding with natural frequencies of 32-38 terahertz, under a specific temperature condition, for a constant period of time.

Description

本発明は、32〜38テラヘルツの共鳴電磁波を放射する放射体物質に、32〜38テラヘルツの固有振動数を有する原子や分子や分子結合を有する被写体物質を近接または密着させることにより、当該被写体物質自体を、32〜38テラヘルツの電磁波の発振体とする共鳴電磁波被写体とその製造方法を提供する。  The present invention relates to an object substance having an atomic frequency, a molecular frequency of 32 to 38 terahertz, or an object substance having a molecular bond that is close to or in close contact with a radiator substance that emits a resonance electromagnetic wave of 32 to 38 terahertz. The present invention provides a resonance electromagnetic wave subject, which uses itself as an oscillator of electromagnetic waves of 32 to 38 terahertz, and a manufacturing method thereof.

近年、光波の位相差を応用したり、光素子を使いテラヘルツ電磁波を発生させる装置が開発または提案されている。  In recent years, devices that apply the phase difference of light waves or generate terahertz electromagnetic waves using optical elements have been developed or proposed.

また、テラヘルツ領域の電磁波を放射する金属や天然石やセラミックを利用した製品が開発または提案されている。また、マイナスイオンを放射するように複数の金属を組み合わせた腕輪や天然石やセラミック製の腕輪やネックレスといった装身具も開発されている。
特開2013−80939 特開2012−203013 登録実用新案第3100767 登録実用新案第3015184
In addition, products using metals, natural stones, and ceramics that emit electromagnetic waves in the terahertz region have been developed or proposed. Also, accessories such as bracelets that combine multiple metals to emit negative ions, natural stones, ceramic bracelets, and necklaces have been developed.
JP2013-80939A JP2012-203013 Registered Utility Model No. 3100767 Registered Utility Model No. 3015184

従来の、テラヘルツ波発生装置は、大掛かりなものがほとんどで、コストや汎用性に問題があった。健康改善用の装身具は、遠赤外線領域の電磁波を放射するセラミックや金属や天然石の粉末やシートを、繊維に混ぜ込んだり、挟み込んだりするものがほとんどで、製造方法が複雑となり、製造コストが高くなったり、耐久性に問題があった。  Most of the conventional terahertz wave generators are large-scale and have problems in cost and versatility. Most of the accessories for health improvement are ceramics, metal or natural stone powders and sheets that emit electromagnetic waves in the far infrared region, and are mixed or sandwiched in fibers, making the manufacturing method complicated and expensive to manufacture. There was a problem with durability.

また、遠赤外線領域の電磁波を放射する金属やセラミックや天然石を利用した製品も開発されているが、電磁波の周波数によっては効果が得られないという問題や、形状が固定されているため、使用上の汎用性に問題があった。  Products that use metals, ceramics, or natural stone that emit electromagnetic waves in the far-infrared region have also been developed. However, the effect is not obtained depending on the frequency of electromagnetic waves, and the shape is fixed. There was a problem with versatility.

また、遠赤外線領域の電磁波を放射するセラミックや金属や天然石の粉末やシートを、繊維に混ぜ込んだり、挟み込んだりする製品も開発されているが、製造方法が複雑となり、製造コストが高くなったり、耐久性に問題があった。  In addition, products have been developed in which ceramics, metals, or natural stone powders or sheets that emit electromagnetic waves in the far-infrared region are mixed or sandwiched in fibers, but the manufacturing method becomes complicated and the manufacturing cost increases. There was a problem with durability.

このような課題を解決するために本発明者は、32〜38テラヘルツの共鳴電磁波を、2〜12時間、20℃〜100℃の温度条件下で、32〜38テラヘルツの固有振動数を有する原子や分子や分子結合を有する被写体物質に、照射することで、当該被写体物質自体が当該共鳴電磁波の転写体となり、自らが当該共鳴電磁波の発射体となることを見出し、本発明をなすに至った。  In order to solve such a problem, the present inventor applied a resonance electromagnetic wave of 32 to 38 terahertz to an atom having a natural frequency of 32 to 38 terahertz under a temperature condition of 20 to 100 ° C. for 2 to 12 hours. And irradiating a subject substance having molecules or molecular bonds, the subject substance itself becomes a transfer body of the resonance electromagnetic wave, and itself becomes a projectile of the resonance electromagnetic wave, and the present invention has been made. .

すなわち、本発明では、32〜38テラヘルツの共鳴電磁波を放射する物質と、被写体物質を近接させ、20℃〜100℃の温度条件下で、2〜12時間放置し、当該共鳴電磁波の放射体から発射される電磁波を、当該被写体に転写し、共振作用により、当該被写体自体を当該共鳴電磁波の放射体とする。  That is, in the present invention, a substance that emits a resonance electromagnetic wave of 32 to 38 terahertz and a subject substance are brought close to each other and left at a temperature of 20 ° C. to 100 ° C. for 2 to 12 hours. The emitted electromagnetic wave is transferred to the subject, and the subject itself is made a radiator of the resonant electromagnetic wave by a resonance action.

当該被写体は、32〜38テラヘルツの固有振動数の原子や分子や分子結合を有する物質であれば、気体や液体や固体のいずれであっても良く、形状にも規定されることはないため、用途に応じた様々な形や性状の、32〜38テラヘルツの共鳴電磁波転写体とすることができる。  The subject may be any gas, liquid, or solid as long as it is a substance having atoms, molecules, or molecular bonds having a natural frequency of 32 to 38 terahertz, and is not defined by the shape. A resonance electromagnetic wave transfer body of 32 to 38 terahertz having various shapes and properties according to the application can be obtained.

また、当該共鳴電磁波転写体から放射される共鳴電磁波の周波数を32〜38テラヘルツとすることで、様々な物質に含まれる水素結合を、共振作用により励起して分離することができ、外部からエネルギーを与えることなく当該物質の内部エネルギーを高めることができる。  In addition, by setting the frequency of the resonance electromagnetic wave radiated from the resonance electromagnetic wave transfer body to 32 to 38 terahertz, hydrogen bonds contained in various substances can be excited and separated by a resonance action, and energy is externally supplied. The internal energy of the material can be increased without giving

本発明によれば、効果が明確で持続性の高い32〜38テラヘルツの共鳴電磁波を放射する共鳴電磁波転写体を容易に低コストで提供できる。  ADVANTAGE OF THE INVENTION According to this invention, the resonance electromagnetic wave transcription | transfer body which radiates | emits the resonance electromagnetic wave of 32-38 terahertz with a clear effect and high sustainability can be provided easily at low cost.

本発明による共鳴電磁波転写体から放射される32〜38テラヘルツの電磁波は、様々な物質に含まれる水素結合の固有振動数と一致し、共振励起し、水素結合を分離する。  The electromagnetic wave of 32 to 38 terahertz radiated from the resonant electromagnetic wave transfer body according to the present invention coincides with the natural frequency of hydrogen bonds contained in various substances, and is resonantly excited to separate the hydrogen bonds.

そして当該水素結合から放出された電子が高速で移動し、他の原子や分子と衝突することにより次々とカスケード的に電子(マイナスイオン)が大量に放出され、外部エネルギーを加えること無しで、還元効果を得るとともに、物質の有する内部エネルギーを高める。  Electrons released from the hydrogen bonds move at high speed, colliding with other atoms and molecules, and in turn, a large number of electrons (negative ions) are released in cascade, reducing without adding external energy. Get the effect and increase the internal energy of the substance.

また、当該共鳴電磁波転写体を、用途に応じて様々な材質や性状や形状の気体や液体や固体とすることができる。  In addition, the resonance electromagnetic wave transfer body can be made into gas, liquid, or solid having various materials, properties, and shapes according to applications.

以下、本発明の実施形態について図面を参照しながら詳細に説明する。
図1は、共鳴電磁波を転写体に転写する装置の概念の縦断面を示す。
図2は、図1のA矢視を示す。
図3は、本発明の共鳴電磁波転写体の作用の概念を示す。
Hereinafter, embodiments of the present invention will be described in detail with reference to the drawings.
FIG. 1 shows a longitudinal section of the concept of an apparatus for transferring resonant electromagnetic waves to a transfer body.
FIG. 2 shows an A arrow view of FIG.
FIG. 3 shows the concept of the action of the resonant electromagnetic wave transfer body of the present invention.

図1及び図2に示すように、共鳴電磁波発振体1を、当該電磁波被写体2に密着または近接するようにして配置し、当該電磁波発振体1から放射される32〜38テラヘルツの共鳴電磁波3を、共鳴電磁波被写体2に2〜12時間照射する。  As shown in FIGS. 1 and 2, the resonant electromagnetic wave oscillator 1 is disposed so as to be in close contact with or close to the electromagnetic wave subject 2, and the 32-38 terahertz resonant electromagnetic wave 3 radiated from the electromagnetic wave oscillator 1 is provided. Then, the object 2 is irradiated for 2 to 12 hours.

当該共鳴電磁波発振体1の上には20℃〜100℃の温度調節が可能な面ヒーター4が設けられていて、32〜38テラヘルツの共鳴電磁波3を当該電磁波被写体2に効率良く転写できる。  A surface heater 4 capable of adjusting the temperature of 20 ° C. to 100 ° C. is provided on the resonant electromagnetic wave oscillator 1, and the resonant electromagnetic wave 3 of 32 to 38 terahertz can be efficiently transferred to the electromagnetic wave subject 2.

当該共鳴電磁波3を、規定温度条件下で、規定時間照射された当該共鳴電磁波被写体2は、当該共鳴電磁波被写体2を構成する分子の軌道を回る電子が共振励起され、当該共鳴電磁波被写体2自体が、共鳴電磁波3の発振源となり、様々な共鳴電磁波効果を発揮する転写体12となる。  The resonance electromagnetic wave subject 2 irradiated with the resonance electromagnetic wave 3 under a specified temperature condition for a specified time is excited to resonate electrons that travel around the orbit of the molecules constituting the resonance electromagnetic wave subject 2, and the resonance electromagnetic wave subject 2 itself Thus, it becomes an oscillation source of the resonance electromagnetic wave 3 and becomes a transfer body 12 that exhibits various resonance electromagnetic wave effects.

当該共鳴電磁波転写体12を、分子結合に水素結合を有する物質11に、密着または近接させると、当該共鳴電磁波転写体12から放射される共鳴電磁波13で、分子結合に水素結合を有する物質11の水素結合を共振励起し、水素結合14を分離し、物質11を低分子量化し内部エネルギーを高める。  When the resonance electromagnetic wave transfer body 12 is brought into close contact with or close to the substance 11 having a hydrogen bond in the molecular bond, the resonance electromagnetic wave 13 radiated from the resonance electromagnetic wave transfer body 12 causes the substance 11 having a hydrogen bond in the molecular bond. The hydrogen bond is resonantly excited, the hydrogen bond 14 is separated, the substance 11 has a low molecular weight, and the internal energy is increased.

水素結合を有する物質11の水素結合の分離により放出された電子15は高速で移動し、次々と他の分子や原子と衝突し、カスケード的に大量に電子が放出され、その電子による還元作用が得られることにより、様々な酸化による劣化作用が防止される。  The electrons 15 released by the separation of the hydrogen bonds of the substance 11 having hydrogen bonds move at high speed, collide with other molecules and atoms one after another, and a large amount of electrons are emitted in a cascade, and the reduction action by the electrons is performed. By being obtained, deterioration effects due to various oxidations are prevented.

数多くの実施テストを通して下記の効果が確認されている。
*水の活性化 :本発明の転写体を水に接触または近接させることにより、水のPH 値がアルカリ側になり、酸化還元電位が還元側に変化し、水分子クラスターの小さい水 になることが確認された。
*冷房効率の改善:本発明の転写体のフィルターネットを冷却装置の循環空気の吸気側 に取り付けたところ、ほとんどのケースで冷却効率が改善された。
*生物の成長促進:本発明の転写体の肥料や飼料を動植物に与えると、ほとんどのケー スで成長が促進されることが確認された。
*鮮度保持効果 :本発明の転写体のシールやシートを生鮮食品に密着または近接させ ると、ほとんどのケースで、当該生鮮食品の鮮度が、より長く保持されることが確認さ れた。
*機能繊維 :本発明の転写体の衣類を身につけたところ、冬暖かく、夏涼しい機 能繊維となることが確認できた。
*燃費向上 :本発明の転写体を自動車エンジンの吸気フィルターや燃料タンクに 取り付けることにより、ほとんどのケースで燃費が改善されることが確認された。
*血流改善効果 :本発明の転写体の腕輪を装着して血液検査を行ったところ、ほとん どのケースでどろどろ状態の血液が改善されることが確認された。
*疼痛緩和 :本発明の転写体のシートを肩こりや腰痛の人の患部に装着したとこ ろ、ほとんどのケースで、疼痛が緩和されることが確認された。
*運動能力向上 :本発明の転写体の衣類やサポーターを装着したところ、ほとんどの ケースで、身体のバランスが良くなり、心肺機能が向上し、運動能力が向上することが 確認された。
The following effects have been confirmed through numerous implementation tests.
* Activation of water: When the transfer body of the present invention is brought into contact with or close to water, the pH value of water becomes alkaline, the redox potential changes to the reducing side, and the water has small water molecule clusters. Was confirmed.
* Improvement of cooling efficiency: When the filter net of the transfer body of the present invention is attached to the circulating air intake side of the cooling device, the cooling efficiency is improved in most cases.
* Promotion of growth of organisms: It was confirmed that when the fertilizer and feed of the transcript of the present invention were given to animals and plants, growth was promoted in most cases.
* Freshness retention effect: In most cases, it was confirmed that the freshness of the fresh food was kept longer when the seal or sheet of the transfer body of the present invention was brought into close contact with or close to the fresh food.
* Functional fiber: When the transfer body of the present invention was worn, it was confirmed that the functional fiber was warm in winter and cool in summer.
* Improved fuel efficiency: It was confirmed that the fuel efficiency was improved in most cases by attaching the transfer body of the present invention to the intake filter or fuel tank of an automobile engine.
* Blood flow improvement effect: When a blood test was performed with the bracelet of the transfer body of the present invention, it was confirmed that the blood in a muddy state was improved in most cases.
* Pain relief: In most cases, it was confirmed that pain was alleviated when the transfer sheet of the present invention was attached to the affected area of a person with stiff shoulders or low back pain.
* Improvement of athletic ability: It was confirmed that in most cases when the transfer body clothing and supporter of the present invention were worn, the balance of the body was improved, the cardiopulmonary function was improved, and the athletic ability was improved.

産業上の利用可能な分野Industrially available fields

本発明は、農業や養殖業の一次産業、美容健康産業、食品加工産業、省エネ産業、機能繊維産業、自動車産業等広範囲にわたって応用される。  The present invention is applied to a wide range of industries such as the primary industry of agriculture and aquaculture, beauty and health industry, food processing industry, energy saving industry, functional fiber industry, and automobile industry.

は、共鳴電磁波を共鳴電磁波被写体に照射する装置の概念の縦断面を示す。These show the longitudinal cross-section of the concept of the apparatus which irradiates a resonance electromagnetic wave subject to a resonance electromagnetic wave subject. は、図2のA矢視を示す。Shows the A arrow view of FIG. は、本発明の共鳴電磁波転写体の作用の概念を示す。These show the concept of the effect | action of the resonance electromagnetic wave transcription | transfer body of this invention.

1 共鳴電磁波発振体
2 共鳴電磁波被写体
3 共鳴電磁波
4 面ヒーター
11 水素結合を有する物質
12 共鳴電磁波転写体
13 共鳴電磁波
14 水素結合
15 電子
DESCRIPTION OF SYMBOLS 1 Resonance electromagnetic wave oscillator 2 Resonance electromagnetic wave subject 3 Resonance electromagnetic wave 4 Surface heater 11 Substance which has a hydrogen bond 12 Resonance electromagnetic wave transcription | transfer body 13 Resonance electromagnetic wave 14 Hydrogen bond 15 Electron

Claims (4)

特定の固有振動数を有する原子や分子や分子結合を有する被写体物質に、当該固有振動数と共振する周波数の電磁波の放射体物質を、特定の温度条件下で、一定時間、当該被写体物質に近接または密着させることで、当該電磁波を照射し共振させることにより、当該被写体物質が当該電磁波の発振源となることを特徴とする共鳴電磁波転写体とその製造方法。  An electromagnetic radiation material with a frequency that resonates with the natural frequency is placed in close proximity to the subject material for a certain period of time under a specific temperature condition. Alternatively, a resonance electromagnetic wave transfer body and a method of manufacturing the same, wherein the subject substance becomes an oscillation source of the electromagnetic wave by irradiating and resonating with the electromagnetic wave. 請求項1に記載の特定の周波数は、32〜38テラヘルツであることを特微とする共鳴電磁波転写体とその製造方法。  The specific frequency according to claim 1 is a resonance electromagnetic wave transcription object characterized by being 32-38 terahertz, and its manufacturing method. 請求項1に記載の特定の温度条件は、摂氏20度から100度とすることを特徴とする共鳴電磁波転写体とその製造方法。  The specific temperature condition according to claim 1, wherein the temperature is set to 20 degrees Celsius to 100 degrees Celsius, and the method for manufacturing the same. 請求項1に記載の一定時間照射を、2〜12時間とすることを特徴とする共鳴電磁波転写体とその製造方法。  Resonance electromagnetic wave transcription | transfer body and its manufacturing method characterized by making irradiation for the fixed time of Claim 1 into 2 to 12 hours.
JP2013252490A 2013-11-20 2013-11-20 Resonance electromagnetic wave transfer body and its manufacturing method Pending JP2015100684A (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2020134360A (en) * 2019-02-21 2020-08-31 慶孝 大友 Demonstration apparatus and method for terahertz electromagnetic wave irradiation effect
JP2020204567A (en) * 2019-06-18 2020-12-24 慶孝 大友 Device for verifying effect of terahertz electromagnetic radiation

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2020134360A (en) * 2019-02-21 2020-08-31 慶孝 大友 Demonstration apparatus and method for terahertz electromagnetic wave irradiation effect
JP2020204567A (en) * 2019-06-18 2020-12-24 慶孝 大友 Device for verifying effect of terahertz electromagnetic radiation

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