JP3212097U - Functional insole - Google Patents

Functional insole Download PDF

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Publication number
JP3212097U
JP3212097U JP2017002753U JP2017002753U JP3212097U JP 3212097 U JP3212097 U JP 3212097U JP 2017002753 U JP2017002753 U JP 2017002753U JP 2017002753 U JP2017002753 U JP 2017002753U JP 3212097 U JP3212097 U JP 3212097U
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insole
electromagnetic wave
terahertz
sole
resonance electromagnetic
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Japanese (ja)
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寛人 棟田
寛人 棟田
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田中 一八
田中 一八
江田 淑子
江田 淑子
小林 やよい
小林 やよい
大本 富士子
大本 富士子
井出 広子
井出 広子
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Priority to JP2017002753U priority Critical patent/JP3212097U/en
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Abstract

【課題】足裏のツボを刺激し、足裏の細胞や血流の水分や各種成分の水素結合を分断し、活性化することで、血行や神経の流れを改善し、疼痛や疲労を緩和できる機能性インソールを提供する。【解決手段】32〜38テラヘルツの共鳴電磁波を、2〜12時間、20℃〜90℃の温度条件下で、樹脂や布や紙や皮製のインソールの素材に照射することで、インソール2自体を共鳴電磁波の転写放射体とし、32〜38テラヘルツの共鳴電磁波3を足裏部1に放射する。【選択図】図1[PROBLEMS] To improve the blood flow and nerve flow, and to relieve pain and fatigue by stimulating the acupuncture points on the foot, breaking and activating hydrogen cells of the cells and blood flow in the sole and various components. Provide a functional insole that can. An insole 2 itself is irradiated by irradiating a material of an insole made of resin, cloth, paper or leather under a temperature condition of 20 ° C. to 90 ° C. for 2 to 12 hours under a resonant electromagnetic wave of 32 to 38 terahertz. Is used as the transfer radiator of the resonance electromagnetic wave, and the resonance electromagnetic wave 3 of 32 to 38 terahertz is radiated to the sole 1. [Selection] Figure 1

Description

本考案は、32〜38テラヘルツの共鳴電磁波を、足裏部に放射することを特徴とする樹脂や布や紙や皮製の機能性インソールに関するものである。  The present invention relates to a functional insole made of resin, cloth, paper, or leather characterized by radiating resonance electromagnetic waves of 32-38 terahertz to the sole.

通常、靴のサイズを合わせる目的で、靴底にインソールを敷くことが多い。  Usually, an insole is laid on the sole for the purpose of adjusting the size of the shoe.

近年、消臭や抗菌機能のあるインソールや、遠赤外線を放射する鉱石やセラミックの粉末を練りこんだ機能性インソールも数多く開発されているが、利用している鉱石やセラミックの放射する電磁波の周波数によっては、効果の安定性や均一性や耐久性に問題があるものがほとんどである。  In recent years, many insoles with deodorizing and antibacterial functions, and functional insoles that have been kneaded with ore and ceramic powders that emit far-infrared rays have been developed. Some of them have problems in stability, uniformity and durability of effects.

また一方で、生命体のDNA二重螺旋構造、超伝導エネルギーギャップ、固体中の電子の散乱等の重要な現象に深い関係を持っているとされている100ギガヘルツから100テラヘルツの共鳴電磁波を利用した各種製品や装置が提案され始めているが、使用している周波数が限定されず、効果が明確でないものが多い。
特開2014−42777 特開2009−032631 特開2002−300904 特開2001−8706
On the other hand, the resonance electromagnetic wave of 100 gigahertz to 100 terahertz, which is said to be deeply related to important phenomena such as DNA double helix structure of living organisms, superconducting energy gap, and scattering of electrons in solids, is used. Various products and devices have started to be proposed, but there are many cases where the frequency used is not limited and the effect is not clear.
JP2014-42777 JP2009-032631 JP2002-300904A JP2001-8706

靴のサイズをあわせるために靴底にインソールを敷くことが多いが、特にそれ以外の機能が無い物がほとんどである。  Insole is often laid on the sole to adjust the size of the shoe, but most of them have no other functions.

近年、遠赤外線を放出する物質を練り込むことで、消臭や抗菌機能を有する機能性インソールも開発されているが、遠赤外線の周波数が明確でないものが多く、効果も安定せず、広く普及するための問題となっている。  In recent years, functional insoles with deodorant and antibacterial functions have been developed by kneading substances that emit far-infrared rays, but the frequency of far-infrared rays is not clear, the effects are not stable, and it has become widespread It has become a problem to do.

このような課題を解決するために本考案者は、32〜38テラヘルツの共鳴電磁波が水分子クラスターの水素結合を分断したり、電子の散乱運動を円滑にすることができることに着目した。  In order to solve such a problem, the present inventor has paid attention to the fact that a resonance electromagnetic wave of 32 to 38 terahertz can break a hydrogen bond of a water molecule cluster or smooth an electron scattering motion.

すなわち、32〜38テラヘルツの共鳴電磁波を、2〜12時間、20℃〜90℃の温度条件下で、樹脂や布や紙や皮製のインソールの素材に照射することで、当該インソールを当該共鳴電磁波の転写放射体とする。  That is, by irradiating a material of an insole made of resin, cloth, paper, or leather under a temperature condition of 20 ° C. to 90 ° C. for 2 to 12 hours under a resonant electromagnetic wave of 32 to 38 terahertz, the resonance of the insole An electromagnetic wave transfer radiator.

樹脂や布や紙や皮製のインソールの素材自体を共鳴電磁波の転写放射体とすることで、共鳴電磁波を放射するセラミックや金属の粉末を含ませたインソールよりも安定性や耐久性が増し、当該粉末の剥離により効力を減じるという問題を解決できる。  By making the material of the resin, cloth, paper or leather insole itself a resonance electromagnetic wave transfer radiator, stability and durability are increased compared to an insole containing ceramic or metal powder that emits resonance electromagnetic waves, It is possible to solve the problem that the effectiveness is reduced by peeling the powder.

また、機能性インソールから放射される共鳴電磁波の周波数を32〜38テラヘルツと限定することで、周波数によって効果が明確にできないという問題点を解決できる。  Further, by limiting the frequency of the resonance electromagnetic wave radiated from the functional insole to 32 to 38 terahertz, it is possible to solve the problem that the effect cannot be clearly defined depending on the frequency.

本考案によれば、靴底に敷くだけで、血流や神経の流れを改善でき、足ツボを刺激し疲労や疼痛を緩和できる、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機能性インソールを提供できる。  According to the present invention, it is possible to improve blood flow and nerve flow just by laying on the shoe sole, stimulate the acupoints, relieve fatigue and pain, and have a clear and durable 32-38 terahertz resonance electromagnetic wave. The functional insole which radiates can be provided.

また、本考案による機能性インソールは、靴下を履いたままの状態でも、当該インソールの上に足を置くだけで、直接足裏に接触することなく、32〜38テラヘルツの共鳴電磁波を足裏に照射する。  In addition, the functional insole according to the present invention allows a resonance electromagnetic wave of 32 to 38 terahertz to be applied to the sole of the foot without touching the sole directly even when the sock is worn. Irradiate.

また、当該共鳴電磁波は、当該機能性インソールの上に置かれた足裏の皮膚細胞や血流の水分や各種成分の水素結合を共振励起し、当該水素結合を分離する。そして当該水素結合から放出された電子が高速で血液中や細胞水中を移動し、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、当該血液や細胞水を低分子量化し、酸化還元電位を還元側にし、PH値をアルカリ側にし、当該血液や細胞水を活性化する。  In addition, the resonance electromagnetic wave resonance-excites hydrogen bonds of skin cells on the sole placed on the functional insole, water in the bloodstream, and various components, and separates the hydrogen bonds. Electrons released from the hydrogen bond move at high speed in the blood and cell water, collide with other atoms and molecules, and a large amount of electrons (negative ions) are released one after another in cascade. Cell water is reduced in molecular weight, the redox potential is reduced, the pH value is alkalinized, and the blood and cell water are activated.

また、低分子量化され活性化された血液は血行を改善する。  In addition, low molecular weight and activated blood improves blood circulation.

また、低分子量化され活性化された細胞水は筋肉細胞を柔軟にし、血管や神経の圧迫を解放し、疼痛や疲労を緩和する。  In addition, low molecular weight and activated cellular water softens muscle cells, releases blood vessels and nerves, and relieves pain and fatigue.

以下、本考案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、本考案の機能性インソールの作用概念の断面を示す。
Hereinafter, embodiments of the present invention will be described in detail with reference to the drawings.
FIG. 1 shows a cross section of the function concept of the functional insole of the present invention.

図1に示すように、本考案の機能性インソール2の上に、足1を置く。  As shown in FIG. 1, a foot 1 is placed on a functional insole 2 of the present invention.

当該機能性インソール2は、樹脂や布や紙や皮で製作される。  The functional insole 2 is made of resin, cloth, paper or leather.

当該機能性インソール2は、32〜38テラヘルツの共鳴電磁波3を放射し、足1の細胞水や血液を構成する水分子クラスター4の水素結合を分断し、水単分子5とするとともに電子6を足1内部に放出する。  The functional insole 2 emits a resonance electromagnetic wave 3 of 32 to 38 terahertz, breaks the hydrogen bond of the water molecule cluster 4 constituting the cell water and blood of the foot 1 to form the water single molecule 5 and the electrons 6. Release into the inside of the foot 1.

また、低分子量化或いは単分子化した水単分子5は、血行を改善する。  In addition, the water single molecule 5 having a low molecular weight or a single molecule improves blood circulation.

また、低分子量化され活性化された細胞水は細胞を柔軟にし、血管や神経の圧迫を解放し、結果的に疼痛や疲労を緩和する。  In addition, low molecular weight and activated cellular water softens cells, releases blood vessels and nerves, and relieves pain and fatigue.

さらに、水素結合が分離されて放出される電子6の還元効果で、老化を防止することができる。  Furthermore, aging can be prevented by the reduction effect of the electrons 6 released when the hydrogen bonds are separated.

立ち仕事が多く、あしのむくみや疲労感を感じる人に、本考案の機能性インソールを試してもらったところ、ほとんどの人が、足のむくみや疲労感を感じなくなった。  When people who had a lot of standing work and felt a sense of swelling and fatigue tried the functional insole of the present invention, most people no longer felt swelling or fatigue.

また、痛風で歩行に問題があった人に、本考案の機能性インソールを試してもらったところ、歩行が容易になることが確認された。さらに、足の冷え性が改善されることも確認された。  Moreover, when a person who had a problem with walking due to gout tried the functional insole of the present invention, it was confirmed that walking was easy. Furthermore, it was confirmed that the coldness of the foot was improved.

また、運動選手に、本考案の機能性インソールを試してもらったところ、運動能力が増すことが確認された。  Moreover, when the athlete tried the functional insole of the present invention, it was confirmed that the athletic ability increased.

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

本考案は、靴の中敷としてだけでなく、果物の旨みを増やしたり、鮮度を保持することができるため生鮮食品の鮮度保持剤として利用できる。また本考案の機能性インソールの上に化粧水や化粧クリームを置くことにより化粧品の成分や水分を低分子量化することが出来、皮膚細胞の活性化や養分の体内吸収をよくすることができるため、美容健康産業分野でも利用できる。  INDUSTRIAL APPLICABILITY The present invention can be used not only as an insole for shoes but also as a freshness-preserving agent for fresh foods because it can increase the taste of fruits and maintain freshness. In addition, by placing lotion or cream on the functional insole of the present invention, cosmetic ingredients and moisture can be reduced in molecular weight, and skin cells can be activated and nutrients absorbed in the body. It can also be used in the beauty and health industry.

本考案の機能性インソールの作用概念の縦断面を示す。The longitudinal cross-section of the effect | action concept of the functional insole of this invention is shown.

1 足
2 機能性インソール
3 共鳴電磁波
4 水分子クラスター
5 水単分子
6.電子
1 foot 2 functional insole 3 resonance electromagnetic wave 4 water molecule cluster 5 water single molecule Electronic

Claims (1)

32〜38テラヘルツの共鳴電磁波を、2〜12時間、20℃〜90℃の温度条件下で、樹脂や布や紙や皮製のインソールに照射することで、当該インソール自体を当該共鳴電磁波の転写放射体とすることにより、32〜38テラヘルツの共鳴電磁波を足裏部に放射することを特徴とする機能性インソール。  By irradiating a resin, cloth, paper, or leather insole with a resonance electromagnetic wave of 32 to 38 terahertz for 2 to 12 hours under a temperature condition of 20 ° C. to 90 ° C., the insole itself is transferred to the resonance electromagnetic wave. A functional insole that radiates resonance electromagnetic waves of 32 to 38 terahertz to the sole by using a radiator.
JP2017002753U 2017-06-02 2017-06-02 Functional insole Expired - Fee Related JP3212097U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108943787A (en) * 2018-04-25 2018-12-07 东莞市穗民鞋业科技有限公司 A kind of preparation method of six directions health-preserving function insole

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108943787A (en) * 2018-04-25 2018-12-07 东莞市穗民鞋业科技有限公司 A kind of preparation method of six directions health-preserving function insole
CN108943787B (en) * 2018-04-25 2024-03-22 东莞市穗民鞋业科技有限公司 Preparation method of six-in-one health-preserving functional insole

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