JP2012139478A - Safe mask with purple lighting - Google Patents

Safe mask with purple lighting Download PDF

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Publication number
JP2012139478A
JP2012139478A JP2011011377A JP2011011377A JP2012139478A JP 2012139478 A JP2012139478 A JP 2012139478A JP 2011011377 A JP2011011377 A JP 2011011377A JP 2011011377 A JP2011011377 A JP 2011011377A JP 2012139478 A JP2012139478 A JP 2012139478A
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mask
purple
light
lighting
wavelength
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Yasuo Inoue
恭夫 井上
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Nissin Electric Co Ltd
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Nissin Electric Co Ltd
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Abstract

PROBLEM TO BE SOLVED: To provide a safe mask which usually has sterilization effect on viruses even in a dark place and can be washed while being separated when the mask gets dirty.SOLUTION: The safe mask 4 with purple lighting is structured so that lighting devices can be easily attached/detached while being separated from the mask 4. Lighting such as small electric bulbs and LED to generate purple light is provided to dock a device having a power source 2 for turning on a light of purple color with the surface of the mask 4. The surface of the mask 4 is irradiated with the ultraviolet wavelength of purple visible light and invisible light by the purple lighting. Characteristics of the ultraviolet wavelength are applied to the sterilization of viruses on the surface of the mask 4. Considering influence of the ultraviolet ray and evils on the skin, the backside of the mask 4 is structured to be covered with raw materials such as gauze and cloth which have color to neutralize the ultraviolet ray or which intercept the wavelength. The mask 4 and the lighting devices are structured to be easily attached/detached by the single body thereof, thereby separating and washing the mask 4 when the mask 4 gets dirty, to be usually usable in a clean condition.

Description

本発明は近年呼吸によるウイルスの空気感染でインフレインザ等が多発している、このウイルスの人体侵入を防ぐ為には、紫外線でウイルスを殺菌するしかないと言われており。紫外線がウイルスを殺菌する威力があることは周知である。現在大気中の紫外線を活用してウイルスを殺菌して抜群の効果を上げているマスクは下記に記している引例が2例ほどあるが、日没や消灯時間には紫外線の効果はなくなりウイルスの侵入は仕方がないという大きな欠点があった。そこで本発明者は日没や消灯しても電気の力を活用してマスク表面を紫色に‐照明する器具を用いて紫外線の波長を取り入れてウイルスを殺菌することを特徴とした紫外線照明マスクを発明した。マスクと照明装置は別個として容易に着脱出来る構造とする。マスクが汚れたら照明装置と着脱して洗濯し常に清潔な状態で使用する。以上のような特徴を有し、且つ体内に有害なウイルスを紫の可視光線とその外側に付属している不可視光線の紫外線が透過する波長の特性を活用した小型の電球及びLEDなどから発生する紫色の照明器具をマスクの表面に設置すれば、暗いところでも紫色が点灯してマスクの表面を常時紫外線が照射する、ウイルスは紫外線には全く抵抗力がないので簡単に殺菌される。またマスクと紫の照明装置は簡単に着脱できる構造とし、マスクが汚れたら分離して洗濯をすればいつも新鮮で清潔な状態で着用できる。「紫照明付きマスク」をここに出願するものである。In the present invention, it is said that inflator and the like frequently occur in recent years due to respiratory airborne virus infection. In order to prevent this virus from entering the human body, it is said that the virus must be sterilized with ultraviolet rays. It is well known that ultraviolet rays have the power to sterilize viruses. There are about two examples of masks that are currently using the ultraviolet rays in the atmosphere to sterilize the virus and have an excellent effect. There was a major drawback that intrusion was inevitable. Therefore, the inventor of the present invention has developed an ultraviolet illumination mask characterized by sterilizing the virus by incorporating ultraviolet wavelengths using an instrument that illuminates the mask surface in purple--using the power of electricity even at sunset or off. Invented. The mask and the illumination device are structured separately and can be easily attached and detached. When the mask is dirty, attach and detach the lighting device and wash it. Viruses that have the characteristics described above, and are harmful to the body, are generated from small bulbs and LEDs that utilize the wavelength characteristics of purple visible light and the invisible ultraviolet light that is attached to the outside. If a purple luminaire is installed on the surface of the mask, the purple light will illuminate even in the dark, and the surface of the mask will always be irradiated with ultraviolet rays. The virus has no resistance to ultraviolet rays, so it is easily sterilized. Also, the mask and the purple lighting device can be easily attached and detached. If the mask becomes dirty, it can be worn in a fresh and clean state whenever it is separated and washed. A "purple illuminated mask" is filed here.

「特許文献1」は炭素繊維で作成された白いマスクに酸化チタンを展着させた白いマスクの表面から大気中の太陽光線や照明光線が照射される紫外線と、炭素繊維の白いマスクに展着されている酸化チタンが紫外線と光触媒が化学反応を起こしてウイルスを殺菌する原理が「特許文献1」である。
「特許文献2」は紫色で作成した紫色のマスクを介して、紫の可視光線と不可視光線の近紫外線の波長が透過する。その紫と紫外線の波長の特性を応用してウイルス殺菌する原理のマスクが、「特許文献2」である。
"Patent Document 1" is spread on the white mask made of carbon fiber and the white mask made of titanium oxide spread on the surface of the white mask. The principle of sterilization of viruses by causing a chemical reaction between ultraviolet light and a photocatalyst using titanium oxide is “Patent Document 1”.
In “Patent Document 2”, wavelengths of near-ultraviolet rays of purple visible light and invisible light are transmitted through a purple mask formed in purple. “Patent Document 2” is a mask based on the principle of sterilizing viruses by applying the wavelength characteristics of purple and ultraviolet rays.

特開2000−197711JP 2000-197711 A 特開2008−101918JP2008-101918

上記、呼吸によるインフェインザ等を予防する従来課題のマスクは全て、現在猛威を振るっているウイルスを殺菌するマスクは上記に2例があり、その1つは「特許文献1の特開2000−197711」(以下引例1という)がある、その原理は炭素繊維で作成された白いマスクに酸化チタンを展着し、大気中の紫外線と酸化チタンが光触媒の化学反応を利用してウイルスを殺菌する原理構造のマスクがある。もう1つは「特許文献2の特開20008−101918」(以下引例2という)があり紫のマスクを作成し、その紫の持つ特性で可視光線と不可視光線の近紫外線が持つ波長の特性を応用してウイルスを殺菌し、マスク裏側には紫外線が直接皮膚に浸透しない構造のしたマスクがある。上記に記した引例1並びに引例2のマスクは、太陽光線や電気照明が点灯いるときは威力を発揮するが、日没や照明を消灯してしまえば紫外線によるウイルスの殺菌効果等は皆無となる。そこで本発明者はマスクの表面に紫色の小型の照明器具を設置し、その紫色の照明から発生する紫の可視光線とそこに付属している紫外線の特性の波長を応用してウイルスを殺菌できることを特徴とした原理であれば日没や消灯などに左右されることなくウイルスを常時殺菌することが出来るものである。マスク表面に設置する紫色発光体の電源は乾電池あるいはソーラ電源又は100Vを変革した電源あるいはバッテリーに蓄電された電源を用いてもよい。以上のような構造に出来ている本願の発明により紫の照明を点灯する電球はLED照明等を用いれば電力消費が少ないので都合が良い、紫色の可視光線と不可視光線の紫外線の波長の特性によりマスク表面のウイルスは常時殺菌されているので、常に清潔な空気を呼吸できる。マスク裏側(呼吸側)紫外線の影響を考慮し、紫外線の波長が中和する色彩の素材あるいは、紫外線の波長が届かないガーゼ等の素材で覆えば皮膚への影響はない。またマスクと照明装置は別個とし、簡単に着脱できる構造とし、マスクが汚れたら分離して洗濯し清潔にして紫の照明装置とセットする。以上のような構造のしたのが本願である。The above-mentioned conventional masks for preventing respiratory infections and the like all have two examples of the above-mentioned masks for sterilizing the currently prevalent virus, one of which is disclosed in Japanese Patent Application Laid-Open No. 2000-197711. (Hereinafter referred to as Reference 1), the principle is that titanium oxide is spread on a white mask made of carbon fiber, and the ultraviolet rays and titanium oxide in the atmosphere use the chemical reaction of the photocatalyst to sterilize the virus. There is a mask of structure. The other is “Patent Document 2 Japanese Laid-Open Patent Publication No. 200008101918” (hereinafter referred to as Reference 2), which creates a purple mask, and the characteristics of the purple have the wavelength characteristics of visible and invisible near-ultraviolet rays. There is a mask that is applied to sterilize the virus, and the back of the mask is structured so that ultraviolet rays do not penetrate directly into the skin. The masks of Reference 1 and Reference 2 described above are effective when sunlight or electric lighting is turned on, but when the sunset or lighting is turned off, there is no virus sterilization effect by ultraviolet rays. . Therefore, the present inventor can install a small purple lighting device on the surface of the mask, and can sterilize the virus by applying the wavelength of the purple visible light generated from the purple lighting and the ultraviolet characteristic attached thereto. In principle, the virus can be sterilized at all times without being affected by sunset or light extinction. As a power source for the purple light emitter installed on the mask surface, a dry battery, a solar power source, a power source converted from 100V, or a power source stored in the battery may be used. According to the invention of the present application, which is constructed as described above, a light bulb that turns on purple illumination is convenient because it consumes less power if LED illumination is used, etc., depending on the wavelength characteristics of ultraviolet light of purple visible light and invisible light. Since the virus on the mask surface is constantly sterilized, it can always breathe clean air. Considering the influence of ultraviolet rays on the back side (respiratory side) of the mask, there is no influence on the skin if it is covered with a color material that neutralizes the wavelength of ultraviolet rays or a material such as gauze that does not reach the wavelength of ultraviolet rays. Also, the mask and the lighting device are separate and can be easily attached and detached. If the mask becomes dirty, it is separated, washed, cleaned and set with a purple lighting device. The present application is structured as described above.

問題を解決するための手段Means to solve the problem

本発明は上記目的を達成するために、紫の電球やLEDの小型照明を電気の力で点灯させ「紫の可視光線次不可視光線の紫外線野波長の持つ特性」を応用してウイルスが呼吸器系統侵入することを防御することを目的とし、マスク表面を紫外線の波長で殺菌するものであって、電気の力で紫外線を発生させるのであるから、従来のマスクは大気中の紫外線を活用しているので日没や消灯によりウイルスの侵入を阻止することが出来ないという欠点を解消し、24時間フルにウイルスの侵入を阻止することのできるマスクが本願である。In order to achieve the above-mentioned object, the present invention applies a “characteristic of the ultraviolet field wavelength of purple visible light next invisible light” by turning on a small light bulb of a purple light bulb or LED with the power of electricity, and the virus is respiratory. The purpose of this system is to prevent the invasion of the system, and the mask surface is sterilized with the wavelength of ultraviolet rays, and ultraviolet rays are generated by the power of electricity. Conventional masks utilize ultraviolet rays in the atmosphere. Therefore, the present application is a mask that eliminates the disadvantage that the invasion of the virus cannot be prevented by sunset or light extinction, and can completely prevent the invasion of the virus for 24 hours.

上記解決手段によりウイルスの侵入を24時間阻止することが出来るので健康増進の見地からも、この世に貢献できる発明が本願である。Since the intrusion of the virus can be prevented for 24 hours by the above solution, the present invention can contribute to the world from the viewpoint of health promotion.

発明の効果The invention's effect

前述のように本発明はマスク表面に紫色が点灯する小型の電球又はLED照明などを設置し電気の力を活用して紫色の照明が点灯すれば、そこから発生する照明は紫の可視光線と不可視光線の紫外線が発生する、その紫外線の波長にはウイルスは対抗できないので殺菌される。マスク表面にはウイルスは存在しなくなるので、呼吸器系統からウイルスは侵入しない。すなわちマスク表面に設置されている紫色の小型照明を24時間点灯させれば、24時間フルにウイルスの侵入を防御することなる。またマスクと紫の照明装置が簡単に着脱出来る構造になっているので、マスクが汚れたら簡単に分離して洗濯が出来るのでいつも清潔で新鮮な状態で着用することが出来る。以上のような特徴とした発明が本願である。As described above, according to the present invention, if a small bulb or LED lighting or the like that turns purple on the mask surface is installed and the purple lighting is turned on using the power of electricity, the illumination generated from the light is purple visible light. An invisible ultraviolet ray is generated, and since the virus cannot resist the ultraviolet wavelength, it is sterilized. Since there is no virus on the mask surface, no virus enters the respiratory system. In other words, if the small purple light installed on the mask surface is lit for 24 hours, the virus can be fully prevented from entering for 24 hours. Also, the mask and purple lighting device can be easily attached and detached, so if the mask gets dirty, it can be easily separated and washed, so you can always wear it clean and fresh. The invention having the above characteristics is the present application.

は本発明の紫照明装置正面図Is a front view of the purple lighting device of the present invention はマスクに紫照明装置着脱用を設置した正面図Is a front view with a purple illumination device attached to the mask. は[図1]と[図2]をドッキングさせて紫色の光が点灯していること示す正面図。FIG. 3 is a front view showing that purple light is lit by docking [FIG. 1] and [FIG. 2]. は本発明裏側(呼吸側)正面図Is the back side (breathing side) front view of the present invention は本発明の照明マスクを装着したことを示す斜視図Is a perspective view showing that the illumination mask of the present invention is mounted.

(1)紫照明器具(2)電源、(3)マジックテープ(4)マスク(5)乾電池(6)ゴム紐(7)紫色光(8)ガーゼ(9)ウイルス(10)紫外線を照射されて死滅したウイルス(1) Purple lighting equipment (2) Power supply, (3) Magic tape (4) Mask (5) Dry cell (6) Rubber string (7) Purple light (8) Gauze (9) Virus (10) Dead virus

Claims (1)

マスクと照明装置を別個に容易に着脱できる構造とし、紫色の照明が発生させる小型の電球やLED等の照明を設置し、紫色が点灯するように電源を有した装置をマスク表面にドッキングさせる。マスク表面は紫色の照明で紫の可視光線と不可視光線の紫外線の波長が照射される、その波長の特性を応用して、マスク表面のウイルスを殺菌する。マスク裏側は紫外線の影響及び皮膚への弊害を考慮して、紫外線が中和する色彩、又は波長が届かない布やガーゼ等の素材で覆う構造とする。ウイルスは紫外線に対しては何の抵抗力は持ちえないので、紫外線を照射されると簡単に殺菌される。マスクと照明装置は単体で容易に着脱できる構造からなっており、マスクが汚れたら分離して洗濯が出来るので常に清潔で新鮮なマスクを使用できることを特徴とした「紫照明付き安全マスク」をここに提供する。The mask and the illuminating device are structured so that they can be easily and detached separately, and a light bulb such as a small bulb or LED that emits purple illumination is installed, and a device having a power source is docked on the mask surface so that the purple color is lit. The mask surface is irradiated with purple visible light and invisible ultraviolet light with purple light, and the characteristics of the wavelength are applied to sterilize the virus on the mask surface. In consideration of the influence of ultraviolet rays and harmful effects on the skin, the back side of the mask is covered with a material that neutralizes ultraviolet rays or a material such as cloth or gauze that does not reach the wavelength. Viruses have no resistance to ultraviolet light, so they are easily sterilized when exposed to ultraviolet light. The “mask with purple illumination” is characterized by the fact that the mask and the illumination device can be easily attached and detached separately, and can be separated and washed if the mask becomes dirty, so you can always use a clean and fresh mask. To provide.
JP2011011377A 2011-01-04 2011-01-04 Safe mask with purple lighting Pending JP2012139478A (en)

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105664395A (en) * 2016-04-07 2016-06-15 张广山 Cover body with lighting function
JP6812598B1 (en) * 2020-07-14 2021-01-13 株式会社アールエフ Ultraviolet irradiation device
CN112370868A (en) * 2020-03-09 2021-02-19 北京化工大学 Regeneration system of rotary air purification product
CN113318358A (en) * 2021-07-12 2021-08-31 中国海关科学技术研究中心 Inspection and quarantine respiratory protection device of up-conversion material

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH11332962A (en) * 1998-05-28 1999-12-07 Mitsubishi Paper Mills Ltd Deodorant and antimicrobial mask
JP2000197711A (en) * 1998-12-31 2000-07-18 Tm Adotekku:Kk Mask and mask cover
JP2008110184A (en) * 2006-10-27 2008-05-15 Jun Sato Photocatalyst mask with built-in light source
JP2009213853A (en) * 2008-03-07 2009-09-24 Nisshin Denki:Kk Safety mask transmitting violet visible ray and near-ultraviolet ray of invisible ray
JP2010017496A (en) * 2008-07-10 2010-01-28 Mihono Narumi Antimicrobial deodorizing mask

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH11332962A (en) * 1998-05-28 1999-12-07 Mitsubishi Paper Mills Ltd Deodorant and antimicrobial mask
JP2000197711A (en) * 1998-12-31 2000-07-18 Tm Adotekku:Kk Mask and mask cover
JP2008110184A (en) * 2006-10-27 2008-05-15 Jun Sato Photocatalyst mask with built-in light source
JP2009213853A (en) * 2008-03-07 2009-09-24 Nisshin Denki:Kk Safety mask transmitting violet visible ray and near-ultraviolet ray of invisible ray
JP2010017496A (en) * 2008-07-10 2010-01-28 Mihono Narumi Antimicrobial deodorizing mask

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105664395A (en) * 2016-04-07 2016-06-15 张广山 Cover body with lighting function
CN112370868A (en) * 2020-03-09 2021-02-19 北京化工大学 Regeneration system of rotary air purification product
CN112370868B (en) * 2020-03-09 2022-04-05 北京化工大学 Regeneration system of rotary air purification product
JP6812598B1 (en) * 2020-07-14 2021-01-13 株式会社アールエフ Ultraviolet irradiation device
JP2022017800A (en) * 2020-07-14 2022-01-26 株式会社アールエフ Ultraviolet irradiation device
CN113318358A (en) * 2021-07-12 2021-08-31 中国海关科学技术研究中心 Inspection and quarantine respiratory protection device of up-conversion material
CN113318358B (en) * 2021-07-12 2023-12-29 中国海关科学技术研究中心 Inspection and quarantine respiratory protection device for up-conversion material

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