JP2000256101A - Antibacterial method inside shoes and aerosol injection device used in the method - Google Patents
Antibacterial method inside shoes and aerosol injection device used in the methodInfo
- Publication number
- JP2000256101A JP2000256101A JP11103065A JP10306599A JP2000256101A JP 2000256101 A JP2000256101 A JP 2000256101A JP 11103065 A JP11103065 A JP 11103065A JP 10306599 A JP10306599 A JP 10306599A JP 2000256101 A JP2000256101 A JP 2000256101A
- Authority
- JP
- Japan
- Prior art keywords
- shoe
- antibacterial
- aerosol
- aerosol container
- button
- 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
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65D—CONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
- B65D83/00—Containers or packages with special means for dispensing contents
- B65D83/14—Containers for dispensing liquid or semi-liquid contents by internal gaseous pressure, i.e. aerosol containers comprising propellant
- B65D83/28—Nozzles, nozzle fittings or accessories specially adapted therefor
- B65D83/30—Nozzles, nozzle fittings or accessories specially adapted therefor for guiding the flow of the dispensed content, e.g. funnels or hoods
- B65D83/303—Nozzles, nozzle fittings or accessories specially adapted therefor for guiding the flow of the dispensed content, e.g. funnels or hoods using extension tubes located in or at the nozzle outlets
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65D—CONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
- B65D83/00—Containers or packages with special means for dispensing contents
- B65D83/14—Containers for dispensing liquid or semi-liquid contents by internal gaseous pressure, i.e. aerosol containers comprising propellant
- B65D83/141—Containers for dispensing liquid or semi-liquid contents by internal gaseous pressure, i.e. aerosol containers comprising propellant specially adapted for specific contents or propellants
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65D—CONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
- B65D83/00—Containers or packages with special means for dispensing contents
- B65D83/14—Containers for dispensing liquid or semi-liquid contents by internal gaseous pressure, i.e. aerosol containers comprising propellant
- B65D83/16—Actuating means
- B65D83/20—Actuator caps
Landscapes
- Chemical & Material Sciences (AREA)
- Dispersion Chemistry (AREA)
- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Containers And Packaging Bodies Having A Special Means To Remove Contents (AREA)
- Nozzles (AREA)
- Agricultural Chemicals And Associated Chemicals (AREA)
Abstract
(57)【要約】
【目的】靴内部及び靴内部先端は雑菌の温床となってい
る。短時間の噴射処理で抗菌効果に優れる靴内部抗菌方
法及びその方法に用いるエアゾール噴射装置を提供する
こと。
【構成】抗菌剤を含有するエアゾールを、靴内部先端部
とボタン噴口との距離、噴射の方向、及び噴射量等を限
定して直接噴射すること、もしくは遮蔽板を用い噴射す
ことによって、短時間で抗菌処理することを特徴とする
靴内部抗菌方法及びその方法に用いるエアゾール噴射装
置である。(57) [Summary] [Purpose] The inside of the shoe and the tip inside the shoe are a hotbed of various bacteria. An antibacterial method in a shoe, which is excellent in antibacterial effect by a short-time spraying treatment, and an aerosol spraying device used in the method. [Structure] An aerosol containing an antibacterial agent can be directly sprayed by limiting the distance between the inside tip of the shoe and the button nozzle, spraying direction, spraying amount, etc., or by using a shielding plate to shorten the time. An antibacterial method inside shoes characterized by performing antibacterial treatment over time and an aerosol spraying device used in the method.
Description
【0001】[0001]
【発明の属する技術分野】本願発明はエアゾール製品に
関する。さらに詳しくは靴の内部を清潔に保つためのエ
アゾール製品に関する。TECHNICAL FIELD The present invention relates to aerosol products. More particularly, the present invention relates to an aerosol product for keeping the inside of shoes clean.
【0002】[0002]
【従来の技術及びその問題点】従来、靴の除菌や消臭等
の抗菌目的で、靴の内部を処理する為に用いるエアゾー
ル製品としては、靴の外部開口部(足を入れるところ)
付近から単純に靴の内部に向かって噴射塗布するような
製品しかなく、実際には、もっとも必要な足先部分が収
容される靴先内部端部まで、有効成分である内容物が到
達しなかったり、到達したとしてもごく微量であったた
めに、殆ど効果を得られないのが現状であり、靴の内部
を除菌、殺菌、消臭、防臭などの目的をもって処理する
為の適切な方法は無かった。2. Description of the Related Art Conventionally, as an aerosol product used for treating the inside of a shoe for antibacterial purposes such as disinfection and deodorization of the shoe, an external opening of the shoe (where a foot is put).
There are only products that spray simply from the vicinity to the inside of the shoe, and in fact, the content of the active ingredient does not reach the inner end of the shoe tip where the most necessary toe portion is stored Or, even if it arrived, it was a very small amount, so it is hardly possible to obtain any effect.Therefore, an appropriate method for treating the inside of shoes with the purpose of disinfection, sterilization, deodorization, deodorization, etc. There was no.
【0003】[0003]
【発明が解決しようとする課題】靴の内部には沢山の雑
菌が存在し、内部先端はそれらの菌の温床である。特に
深底品であるブーツ類に於いては、一般の靴の数十倍の
菌が存在することも報告されている。前述の様に、除菌
や消臭等の抗菌目的で、靴の内部に用いるエアゾール製
品としては、靴の外部開口部付近から靴底(内部)に向
かって噴射塗布するような製品しかない為に、製品に表
示されている抗菌性能については殆ど見せかけだけの効
果でしかなく、実際には効果の期待出来る製品は皆無に
等かった。There are many germs inside shoes, and the inside tip is a hotbed of those germs. In particular, it has been reported that in boots, which are deep-seated products, there are several ten times as many bacteria as ordinary shoes. As mentioned above, the only aerosol products used inside shoes for antibacterial purposes such as sterilization and deodorization are products that spray-apply from the vicinity of the outer opening of the shoe toward the shoe sole (inside). In addition, the antibacterial performance displayed on the product was almost only an apparent effect, and in fact, no product was expected to be effective.
【0004】[0004]
【課題を解決するための手段】そこで本願発明者はかか
る欠点を除去し、靴を痛める事なく効率よく且つ効果的
に内部を抗菌効果を得る処理を行える様、次の如くし
た。The inventor of the present invention has made the following measures so as to eliminate the drawbacks and to perform a process for efficiently and effectively obtaining an antibacterial effect inside the shoe without damaging the shoes.
【0005】即ち本願発明は(1)抗菌剤を少なくとも
1種以上含有する内容成分液をエアゾール容器に封入
し、被処理面である靴内部先端部と前記エアゾール容器
のボタン噴口との距離が23センチメートル以内であ
り、且つ、該ボタン噴口が、靴内部先端部に直接向かい
合う方向にボタン噴口を位置付け、30秒当たりの噴射
量を3ミリリットル以上で靴内部先端部に20秒以下の
短時間直接噴射塗布させることにより、靴内部を抗菌処
理することを特徴とする靴内部抗菌方法。(2)エアゾ
ール容器本体を倒立にして抗菌処理する事を特徴とす
る、前記(1)に記載の靴内部抗菌方法。(3)抗菌剤
を少なくとも1種以上含有する内容成分液をエアゾール
容器に封入し、靴の開口部に遮蔽板を取り付け、前記遮
蔽板を介し、靴内部にエアゾール容器の内容成分液を噴
射し、靴内部に噴射する噴射霧が、靴内部の隅々まで行
き渡る状態で靴内部を抗菌することを特徴とする靴内部
抗菌方法。(4)エアゾール容器本体を倒立にして抗菌
処理する事を特徴とする、前記(3)に記載の靴内部抗
菌方法。(5)抗菌剤を少なくとも1種以上含有する内
容成分液がエアゾール容器に封入され、エアゾール容器
のボタン頭頂部に靴内底の接面部が設けられ、内容成分
液の噴射量が30秒当り3ミリリットル以上であること
を特徴とする靴内部の抗菌方法に用いるエアゾール噴射
装置。(6)ボタン本体もしくはボタン本体の一部が
靴、足、動物、キャラクターの形状に成型され、噴口が
靴先、足先、顔面等の前面方向に設けられていることを
特徴とする前記(5)に記載の靴内部の抗菌方法に用い
るエアゾール噴射装置。(7)抗菌剤を少なくとも1種
以上含有する内容成分液がエアゾール容器に封入され、
エアゾール容器のボタンにノズルが設けられ、ノズルの
端部にノズルの延長方向に対して直角、もしくは30度
から150度の間に噴射の中心がある噴口をが設けら
れ、内容成分液の噴射量が30秒当り3ミリリットル以
上であることを特徴とする靴内部の抗菌方法に用いるエ
アゾール噴射装置。(8)抗菌剤を少なくとも1種以上
含有する内容成分液がエアゾール容器に封入され、エア
ゾール容器のボタン後方に靴開口部の遮蔽板が設けられ
ていることを特徴とする、靴内部の抗菌方法に用いるエ
アゾール噴射装置。(9)靴の開口部を塞ぐ面積を、可
変出来るようにした遮蔽板を有する事を特徴とする前記
(8)に記載の靴内部の抗菌方法に用いるエアゾール噴
射装置。(10)キャップ本体が遮蔽板となることを特
徴とする前記(8)または(9)に記載の靴内部の抗菌
方法に用いるエアゾール噴射装置。(11)遮蔽板にボ
タンの挿入穴を有することを特徴とする前記(8)ない
し(10)のいずれかに記載の靴内部の抗菌方法に用い
るエアゾール噴射装置である。That is, according to the present invention, (1) a content component solution containing at least one or more antibacterial agents is sealed in an aerosol container, and the distance between the inside tip of the shoe to be processed and the button nozzle of the aerosol container is 23. The button spout is positioned within a centimeter, and the button spout is positioned in a direction directly facing the inside tip of the shoe. An antibacterial method inside shoes, wherein the inside of shoes is subjected to antibacterial treatment by spray coating. (2) The antibacterial method inside shoes according to the above (1), wherein the antibacterial treatment is performed by inverting the aerosol container body. (3) A content component liquid containing at least one or more antibacterial agents is sealed in an aerosol container, a shielding plate is attached to an opening of the shoe, and the content component liquid of the aerosol container is sprayed into the shoe via the shielding plate. The antibacterial method in a shoe, characterized in that the spray fog sprayed into the shoe spreads the inside of the shoe in a state of spreading to every corner of the shoe. (4) The antibacterial method inside shoes according to the above (3), wherein the aerosol container body is inverted to perform antibacterial treatment. (5) A content component liquid containing at least one or more antibacterial agents is sealed in an aerosol container, a contact surface portion of a shoe inner sole is provided at the top of a button of the aerosol container, and an injection amount of the content component liquid is 3 per 30 seconds. An aerosol spraying device for use in an antibacterial method inside shoes, wherein the aerosol is not less than milliliter. (6) The button body or a part of the button body is formed into a shape of a shoe, a foot, an animal, or a character, and a spout is provided in a front direction such as a shoe tip, a foot tip, and a face. An aerosol injection device used in the antibacterial method inside shoes according to 5). (7) A content component liquid containing at least one or more antibacterial agents is sealed in an aerosol container,
A nozzle is provided on the button of the aerosol container, and a nozzle is provided at the end of the nozzle at a right angle to the direction of extension of the nozzle, or a nozzle having a center of injection between 30 degrees and 150 degrees. The aerosol spraying device used in the antibacterial method inside shoes, wherein is less than 3 milliliters per 30 seconds. (8) An antibacterial method in shoes, characterized in that a content component liquid containing at least one antibacterial agent is sealed in an aerosol container, and a shield plate for a shoe opening is provided behind a button of the aerosol container. Aerosol injection device used for (9) The aerosol injection device used in the antibacterial method inside shoes according to the above (8), further comprising a shielding plate capable of changing an area covering an opening of the shoe. (10) The aerosol spraying device used in the antibacterial method inside shoes according to (8) or (9), wherein the cap body serves as a shielding plate. (11) The aerosol injection device used in the antibacterial method inside shoes according to any one of (8) to (10), wherein the shielding plate has a button insertion hole.
【0006】[0006]
【作用及び実施例】次に、本願発明の理解を高めるため
に、実施例を示す。但し、本願発明はこの実施例に限定
して理解されるべきでない。Next, working examples will be described in order to enhance the understanding of the present invention. However, the present invention should not be understood as being limited to this embodiment.
【0007】まず本願発明に用いる抗菌剤について説明
する。法律上では特に抗菌についての規定はないが、専
門用語としては「抗菌」とは「滅菌」「殺菌」「除菌」
「制菌」などすべてを含めた意味とされている(「抗菌
のすべて」株式会社繊維社発行−発行日1997年9月
5日、より)。そこで本願発明においての請求の範囲の
抗菌剤は、一般的に滅菌剤、殺菌剤、除菌剤、静菌剤と
呼ばれる薬剤をすべて含むものであり、本願発明に用い
る抗菌剤として例示すると次のようなものがある。First, the antibacterial agent used in the present invention will be described. Although there is no specific rule on antibacterial in the law, the terminology "antibacterial" means "sterilization""sterilization""bacterialelimination"
It is meant to include all such as "antibacterial"("All of Antibacterial" published by Textile Co., Ltd.-published on September 5, 1997). Therefore, the antimicrobial agent claimed in the present invention includes all agents generally called a sterilizing agent, a bactericide, a disinfectant, and a bacteriostatic agent. There is something like that.
【0008】安息香酸、安息香酸塩類、サリチル酸、石
炭酸、ソルビン酸、ソルビン酸カリウムなどの有機酸類
及びその塩類、デヒドロ酢酸、デヒドロ酢酸ナトリウ
ム、パラオキシ安息香酸エチル、パラオキシ安息香酸メ
チル、パラオキシ安息香酸プロピル、ヘキサクロロフェ
ン、ホウ酸、レゾルシン、トリブロムサラン、フェノー
ル、イソプロピルメチルフェノール、オルトフェニルフ
ェノール、クレゾール、クロルキシレノール、クロルク
レゾール、チモール、パラクロルフェノール、パラクロ
ルメタクレゾール、レゾルシン、塩化セチルピリジニウ
ム、塩化ベンザルコニウム、塩化ベンゼトニウム、クロ
ルヘキシジン、塩酸クロルヘキシジン、グルコン酸クロ
ルヘキシジン、臭化アルキルイソキノリニウム、チラ
ム、感光素101号、感光素201号、感光素301
号、感光素401号、フェノキシエタノール、トリクロ
ロヒドロキシジフェニルエーテル(トリクロサン)、ジ
ンクピリチオン、クロロブタノール、トリクロロカルバ
ニド、3−トリフルオルメチル−4,4′−ジクロロカ
ルバニリド(ハロカルバン)、トリクロロ・サリチルア
ニリド(TCSA)、トリブロモ・サリチルアニリド、
水銀化合物、ホルマリン、白降汞、ビチオノール、ホウ
酸・ホウ砂等の無機化合物、ジクロロフェン、ヘキサク
ロロフェン、ハロゲン化サリチルアニリド《トリブロム
サラン(TBS)、ジブロモサラン(DBS),メタブ
ロモサラン(MBS)》、クロラミンT、チアントール
などの含硫黄物質、カミツレ(アズレンを含有)、ユー
カリ油等の製油類、ヒノキチオール、カテキン、グレー
プフルーツ抽出液、ヤシアルキルジメチルベンジルアン
モニウムクロライド、ジデシルジメチルアンモニウムク
ロライド、ジオレイルジメチルアンモニウムクロライド
などの界面活性剤等が例示出来る。Organic acids such as benzoic acid, benzoates, salicylic acid, carboxylic acid, sorbic acid, potassium sorbate and salts thereof, dehydroacetic acid, sodium dehydroacetate, ethyl parahydroxybenzoate, methyl paraoxybenzoate, propyl paraoxybenzoate; Hexachlorophene, boric acid, resorcinol, tribromosalan, phenol, isopropylmethylphenol, orthophenylphenol, cresol, chlorxylenol, chlorcresol, thymol, parachlorophenol, parachloromethcresol, resorcinol, cetylpyridinium chloride, benzalco chloride , Benzethonium chloride, chlorhexidine, chlorhexidine hydrochloride, chlorhexidine gluconate, alkylisoquinolinium bromide, thiram, photosensitive element 101, Hikarimoto No. 201, photosensitizer 301
No. 401, phenoxyethanol, trichlorohydroxydiphenyl ether (triclosan), zinc pyrithione, chlorobutanol, trichlorocarbanide, 3-trifluoromethyl-4,4'-dichlorocarbanilide (halocarban), trichlorosalicylanilide ( TCSA), tribromosalicylanilide,
Inorganic compounds such as mercury compounds, formalin, white calomel, bitionol, boric acid and borax, dichlorophen, hexachlorophen, halogenated salicylanilide << tribromosalan (TBS), dibromosalan (DBS), metabromosalan (MBS ) >>, sulfur-containing substances such as chloramine T, thiantol, chamomile (containing azulene), oils such as eucalyptus oil, hinokitiol, catechin, grapefruit extract, cocoalkyldimethylbenzylammonium chloride, didecyldimethylammonium chloride, dioleyl A surfactant such as dimethylammonium chloride can be exemplified.
【0009】[0009]
【実施例1】図1は、本願発明の第1実施例を示す一部
縦断面図を含む外観斜視図である。1はエアゾール容器
本体、2はボタン本体、3は噴口、4は内底接面部、5
は靴、6は靴の内底である。使用方法に付いて説明す
る。第一実施例は、靴5を下においた状態で、ボタン本
体2をつけたエアゾール容器本体1を、靴5に逆さまに
挿入し処理する場合の一例である。エアゾール容器本体
1を、ボタン本体2の噴口3を靴先内部端部15に向け
た状態で靴5の内部に挿入する。挿入後、ボタン本体2
の内底接面部4を靴5の内底6にあてた状態で、エアゾ
ール容器本体1の底部又は、側面を持ち、エアゾール容
器本体1を下(靴側)に押し下げると、エアゾール容器
本体1にあるバルブコア7を開く事となり、該バルブコ
ア7に連接したボタン本体2にある噴口3から、エアゾ
ール容器本体1内の内容成分液が噴射される事となる。
噴口3は靴5の内部先端に向いているため、効率よく内
容物を靴の内部先端に塗布出来るため、効率、効果に優
れた形で内部処理を出来る。この時、エアゾール容器本
体1が靴5の内部、もしくは開口部9の付近上部にある
ときには、エアゾール容器本体1が、靴5の開口部9の
全体もしくは部分的に、開口部9を塞ぐ事となるため、
噴射された内容成分液の霧が靴5の開口部9から漏れる
ことを防ぎ、処理時の有効成分含有内容物はより効率よ
く、効果的に靴5内で塗布されることとなる。FIG. 1 is an external perspective view including a partial longitudinal sectional view showing a first embodiment of the present invention. 1 is an aerosol container main body, 2 is a button main body, 3 is an injection hole, 4 is an inner bottom contact surface portion, 5
Is a shoe and 6 is an inner sole of the shoe. How to use will be explained. The first embodiment is an example of the case where the aerosol container body 1 with the button body 2 is inserted upside down into the shoe 5 and the shoe 5 is processed with the shoe 5 down. The aerosol container body 1 is inserted into the shoe 5 with the nozzle 3 of the button body 2 facing the inner end 15 of the shoe tip. After insertion, button body 2
When the aerosol container main body 1 is held down with the bottom or side surface of the aerosol container main body 1 in a state where the inner bottom contact surface portion 4 of the aerosol container main body 1 is in contact with the inner bottom 6 of the shoe 5, When a certain valve core 7 is opened, the component liquid in the aerosol container main body 1 is jetted from the injection port 3 in the button main body 2 connected to the valve core 7.
Since the nozzle 3 faces the inner tip of the shoe 5, the contents can be efficiently applied to the inner tip of the shoe, so that the internal processing can be performed in a form that is excellent in efficiency and effect. At this time, when the aerosol container main body 1 is inside the shoe 5 or in the upper portion near the opening 9, the aerosol container main body 1 covers the opening 9 entirely or partially of the shoe 5. To become
The spray of the mist of the sprayed content component liquid is prevented from leaking from the opening 9 of the shoe 5, so that the active ingredient-containing content at the time of processing is more efficiently and effectively applied in the shoe 5.
【0010】図2−1は、本願発明に使用するボタン本
体2の内底接面部4を、使用時に靴の内底6上を滑らな
いように、表面を溝加工したボタン本体2の一例を示す
外観斜視図であり、図2−2は、ボタン本体2の内底接
面部4が汚れた靴の内底6との接触を少なくするため、
ボタン本体2の内底接面部4に突起8を設けたボタン本
体2の一例を示す外観斜視図であり、前記突起8は、同
時に滑り止め効果を発する。図2−3はボタン本体2の
形状を靴の形にした本願発明の実施の一例を示す外観斜
視図である。ボタン本体2の形状を靴や足、人や動物等
のキャラクターにすることによって、噴射塗布する際
に、エアゾール容器本体1を靴5に向け、セットする際
に、噴射の方向を瞬間に確認出来るようにすることによ
って、簡便にかつ確実に抗菌処理を行うことが出来る。FIG. 2-1 shows an example of the button body 2 in which the inner bottom surface 4 of the button body 2 used in the present invention is grooved so that it does not slip on the inner bottom 6 of the shoe during use. FIG. 2B is a perspective view showing the appearance, and FIG. 2-2 shows that the inner bottom contact surface 4 of the button body 2 reduces the contact with the inner bottom 6 of the dirty shoe.
It is an external appearance perspective view showing an example of button body 2 which provided projection 8 in inner bottom contact surface part 4 of button body 2, and said projection 8 has a non-slip effect at the same time. FIG. 2-3 is an external perspective view showing an example of the embodiment of the present invention in which the button body 2 is shaped like a shoe. By making the shape of the button body 2 into a character such as a shoe or a foot, a person or an animal, the direction of the spray can be instantaneously confirmed when the spray application is performed and the aerosol container body 1 is directed toward the shoe 5 and set. By doing so, the antibacterial treatment can be performed simply and reliably.
【0011】[0011]
【実施例2】図3は、本願発明の第2実施例を示す一部
断面図を含む外観図である。第2実施例は、遮蔽板10
を兼ね備えたボタン本体2を用い、靴5を下においた状
態で使用する場合の一例である。図3に示すボタン本体
2は、遮蔽板10を兼ね備えている。1はエアゾール容
器本体、2はボタン本体、3は噴口、4は内底接面部、
5は靴、6は靴の内底、10は遮蔽板である。エアゾー
ル容器本体1を倒立に持ち、靴5の内部に挿入する。挿
入後、エアゾール容器本体1を持ち、下側(靴側)に押
し下げると、エアゾール容器本体1にあるバルブコア7
を開く事となり、該バルブコア7に連接したボタン本体
2にある噴口3からエアゾール容器本体1内にあった内
容成分液が噴射される事となる。噴口3は靴の先端内部
に向いているため、効率よく有効成分含有内容物を靴の
先端内部に塗布出来る。また、遮蔽板10があるために
噴射された内容物は、靴の外部に飛散する事なく、もし
くは僅かな量の飛散のみで、靴の内部に塗布出来るの
で、より効率的に、効果的に優れた形で内部処理を出来
る。又、塗布後、この遮蔽板10をそのまま靴5の内部
に暫く保持することによって、内容成分液は濃度の高い
まま、靴の中に滞留させる事となるので、効果がより向
上し、処理が確実なものとなる。Embodiment 2 FIG. 3 is an external view including a partial sectional view showing a second embodiment of the present invention. In the second embodiment, the shielding plate 10
This is an example of a case in which the button body 2 having the above function is used and the shoe 5 is used in a state where the shoe 5 is placed below. The button body 2 shown in FIG. 3 also has a shielding plate 10. 1 is an aerosol container main body, 2 is a button main body, 3 is a nozzle, 4 is an inner bottom contact surface part,
5 is a shoe, 6 is an inner sole of the shoe, and 10 is a shielding plate. The aerosol container body 1 is held upside down and inserted into the shoe 5. After the insertion, the user holds the aerosol container body 1 and pushes it down (to the side of shoes), so that the valve core 7 in the aerosol container body 1 is pressed.
Is opened, and the content component liquid in the aerosol container main body 1 is jetted from the injection port 3 in the button main body 2 connected to the valve core 7. Since the nozzle 3 faces the inside of the shoe tip, the active ingredient-containing content can be efficiently applied to the inside of the shoe tip. In addition, the content sprayed due to the presence of the shielding plate 10 can be applied to the inside of the shoe without scattering to the outside of the shoe or with only a small amount of scattering, so that it is more efficient and effective. Internal processing can be performed in an excellent manner. Also, after the application, by keeping the shielding plate 10 as it is inside the shoe 5 for a while, the content component liquid is retained in the shoe while the concentration is high, so that the effect is further improved and the processing is improved. It will be sure.
【0012】図4は、第2実施例に使用する遮蔽板10
を兼ね備えるボタン本体2の一例を示す外観斜視図であ
る。2はボタン本体、10は遮蔽板、3は噴口、4は内
底接面部である。FIG. 4 shows a shielding plate 10 used in the second embodiment.
FIG. 1 is an external perspective view showing an example of a button main body 2 which also has a function. 2 is a button body, 10 is a shielding plate, 3 is a nozzle, and 4 is an inner bottom contact surface portion.
【0013】図5は、第2実施例に使用する遮蔽板10
を兼ね備えるボタン本体2を、ボタン本体2と、遮蔽板
10の部分に分離出来るようにした場合の、ボタン本体
2の一例を示す外観斜視図である。2はボタン本体、1
0は遮蔽板、3は噴口、4は内底接面部である。ボタン
本体2と遮蔽板10を分離出来るようにすることによっ
て、遮蔽板10を複数個作り、遮蔽板10をそれぞれの
靴5に残したままにすれば、複数の靴を一度に処理出来
るようになる。FIG. 5 shows a shielding plate 10 used in the second embodiment.
FIG. 3 is an external perspective view showing an example of the button body 2 when the button body 2 having the function of the button body 2 can be separated into the button body 2 and the shield plate 10. 2 is the button body, 1
Reference numeral 0 denotes a shielding plate, 3 denotes an injection port, and 4 denotes an inner bottom contact surface portion. By making the button body 2 and the shield plate 10 separable, if a plurality of shield plates 10 are formed and the shield plate 10 is left on each shoe 5, a plurality of shoes can be processed at once. Become.
【0014】本願発明を実施し、例えば抗菌処理をする
場合には、噴射処理する毎に、遮蔽板10を靴5の中に
残し、一定時間以上放置しておく事によって、完全な抗
菌処理が出来ることとなる。When the present invention is carried out and, for example, an antibacterial treatment is performed, a complete antibacterial treatment can be performed by leaving the shielding plate 10 in the shoe 5 and leaving it for a certain period of time every time the spraying treatment is performed. You can do it.
【0015】図6は、実施例2に使用する遮蔽板10を
兼ね備えるボタン本体2が、ボタン本体2と、遮蔽板1
0の部分に分離出来るようにした図5の遮蔽板10を、
遮蔽部分を、任意の大きさに調節出来るようにした遮蔽
板10の一例を示す外観斜視図である。10−1、10
−2は遮蔽板、11はセットピン、12はピン穴であ
る。 本願発明の実施にあたって、靴5の開口部の大き
さに合わせて遮蔽板10(10−1、10−2)の大き
さを調整し、靴5の内部にセットし、処理を開始する。
6−1は遮蔽板10のサイズセット前の外観図、6−2
は遮蔽板10のサイズセット後の外観図を示す。FIG. 6 shows that the button body 2 also having the shielding plate 10 used in the second embodiment includes the button body 2 and the shielding plate 1.
The shielding plate 10 shown in FIG.
FIG. 2 is an external perspective view showing an example of a shielding plate 10 in which a shielding portion can be adjusted to an arbitrary size. 10-1, 10
-2 is a shielding plate, 11 is a set pin, and 12 is a pin hole. In practicing the present invention, the size of the shielding plate 10 (10-1, 10-2) is adjusted according to the size of the opening of the shoe 5, and set inside the shoe 5, and the processing is started.
6-1 is an external view of the shielding plate 10 before size setting, 6-2.
Shows an external view of the shielding plate 10 after the size setting.
【0016】[0016]
【実施例3】図7は、ボタン本体2の内底接面部4にあ
たる部分が、汚れた靴の内底6との接触をしなくても、
また、奥の深いブーツ等を抗菌処理する際にも、効果的
に本願発明を実施できるようにするため、遮蔽板10の
一部が、靴5の上部縁に掛かるように鉤状突起部14を
有する本願発明のボタン本体2を用い、殆ど密閉状態で
内容成分原液を靴の中に噴射し、噴射霧が靴の内部で長
時間留まるようにした本願発明を実施する場合の第3実
施例を示す外観斜視図である。これにより、以下に述べ
る理由によって、噴射処理する毎に、遮蔽板10を靴の
中に残し、一定時間以上放置しておく事によって、直接
噴射内容成分原液を靴5内に噴射しなくても靴先内部の
隅々まで抗菌処理出来るようにもなる。Embodiment 3 FIG. 7 shows that the portion corresponding to the inner bottom surface 4 of the button body 2 does not contact the inner bottom 6 of the dirty shoe.
In addition, when antibacterial treatment is applied to a deep boot or the like, a part of the shielding plate 10 is hooked on the upper edge of the shoe 5 so that the present invention can be effectively implemented. A third embodiment in which the present invention in which the undiluted component liquid is injected into the shoe in a substantially sealed state using the button body 2 of the present invention having the above and the spray fog stays inside the shoe for a long time is used. FIG. Thus, for each of the reasons described below, the shield plate 10 is left in the shoe every time the spraying process is performed, and is left for a certain period of time. Antibacterial treatment can be applied to every corner inside the shoe tip.
【0017】図7に示すボタン本体2は、遮蔽板10を
兼ね備え、この遮蔽板10の外周に靴の上部縁に掛かる
ようにした鉤状突起部14、即ち遮蔽板10の延長であ
る鉤状突起部14を有する。1はエアゾール容器本体、
2はボタン本体、3は噴口、5は靴、6は靴の内底、1
0は遮蔽板である。使用方法に付いて説明する。実施例
1の時と同様、靴5を下においた状態で使用する場合に
は、エアゾール容器本体1を、ボタン本体2を下にして
靴5の内部に挿入し、鉤状突起部14が、図7のように
靴の上部縁12に掛かるようにセットする。セット後、
エアゾール容器本体1の底部又は、側面を持ち、下(靴
側)に押し下げると、エアゾール容器本体1にあるバル
ブコア7が開き、該バルブコア7に接続したボタン本体
2にある噴口3からエアゾール容器本体1内にあった内
容成分液が靴5内に噴射される事となる。噴口3が靴内
部先端部15に向き、靴5の内部先端に届くよう設計さ
れている時には勿論、直接効率よく内容物を靴の内部先
端及び内部隅々まで塗布出来る。遮蔽板10があるため
に噴射された内容物は、靴の外部に飛散する事なく、も
しくは僅かな量の飛散で靴の内部に塗布出来るのでより
効率的に、効果的に優れた形で内部処理を出来る。The button body 2 shown in FIG. 7 also has a shielding plate 10, and a hook-shaped projection 14 on the outer periphery of the shielding plate 10 so as to hang on the upper edge of the shoe. It has a projection 14. 1 is an aerosol container body,
2 is the button body, 3 is the spout, 5 is the shoe, 6 is the inner bottom of the shoe, 1
0 is a shielding plate. How to use will be explained. As in the case of the first embodiment, when the shoe 5 is used with the shoe body down, the aerosol container body 1 is inserted into the shoe 5 with the button body 2 down, and the hook-shaped protrusion 14 is It is set so as to hang on the upper edge 12 of the shoe as shown in FIG. After setting
Holding the bottom or side of the aerosol container body 1 and pressing it down (shoe side) opens the valve core 7 in the aerosol container body 1, and opens the aerosol container body 1 through the nozzle 3 in the button body 2 connected to the valve core 7. The content component liquid that was inside is injected into the shoe 5. When the nozzle 3 is designed so as to face the inside tip 15 of the shoe and reach the inside tip of the shoe 5, the contents can be directly and efficiently applied to the inside tip and every corner of the shoe. Due to the presence of the shielding plate 10, the sprayed contents can be applied to the inside of the shoe without scattering to the outside of the shoe or with a small amount of scattering. Can process.
【0018】ここで、遮蔽板10を噴射後も靴5内に暫
く保留させる場合には、噴口3が靴先内部端部15に向
かず、噴射物が直接靴の内部先端に届くよう設計されて
いない時でも一定時間以上放置しておく事によって、内
容成分液は濃度の高いまま、靴5の中に滞留する事にな
るので、効果がより向上し、靴の内部先端まで完全な抗
菌処理が出来ることとなる。即ち、この場合は噴口3が
靴先に向いていなくても効果を十分発揮出来る。噴射処
理する毎、換言すれば片方の靴5への噴射が終わるたび
にエアゾール容器本体1を取り外し、この遮蔽板10だ
けをそのまま靴5の内部に残すような形で本願発明を実
施するには、例えば遮蔽板10にボタン挿入穴17を設
け、エアゾール本体1につけるボタン本体2には、ボタ
ン本体段部16をつけ、噴射時、ボタン本体2を遮蔽板
10のボタン挿入穴17に差し込んでボタン本体段部1
6を遮蔽板10にあてる。そして靴5内部に内容成分液
を噴射した後、遮蔽板10を靴5内部に残したままエア
ゾール本体1を取り外し、別の片方の靴にはまた別の遮
蔽板10を取り付けて同じ作業をすれば良い。Here, when the shielding plate 10 is to be kept in the shoe 5 for a while after the spraying, it is designed so that the injection port 3 does not face the inner end portion 15 of the shoe tip and the jet directly reaches the inner tip of the shoe. By leaving it for a certain period of time even when it is not in use, the content component liquid stays in the shoe 5 with a high concentration, so the effect is further improved, and the antibacterial treatment is completely completed up to the inner tip of the shoe. Can be done. That is, in this case, the effect can be sufficiently exhibited even when the nozzle 3 is not directed to the shoe tip. In order to carry out the present invention in such a manner that the aerosol container body 1 is removed each time the spraying process is performed, in other words, each time the spraying to one shoe 5 is completed, and only the shielding plate 10 is left inside the shoe 5 as it is. For example, a button insertion hole 17 is provided in the shield plate 10, a button body step 16 is provided in the button body 2 attached to the aerosol body 1, and the button body 2 is inserted into the button insertion hole 17 of the shield plate 10 at the time of spraying. Button body step 1
6 is applied to the shielding plate 10. After spraying the component liquid inside the shoe 5, the aerosol body 1 is removed while the shielding plate 10 is left inside the shoe 5, and another shielding plate 10 is attached to another shoe to perform the same operation. Good.
【0019】[0019]
【実施例4】図8はノズル13の端部にノズルの延長方
向に対して直角、もしくは30度から150度の間に噴
射の中心がある噴口3を持つノズル13を有するボタン
本体2を用いた本願発明の実施の一例を示す外観図であ
る。図9は実施例4に用いるノズル13のノズルの延長
方向と噴口3の噴射の中心の関係を示す概念図である。
Aは30度(又は150度)、Bは90度、Cは150
度(又は30度)の位置を示す。使用法としては、靴の
開口部9からノズル13を差し込み、噴口3を靴内部先
端に向けて、ボタン本体2を作動させ、エアゾール容器
本体1にあるバルブコア7を開く、該バルブコア7に接
続したボタン本体2にあるノズル13の噴口3からエア
ゾール容器本体1内にあった内容成分液が噴射される事
となる。噴口3は靴の先端内部に向けて用いるため、実
施例1から3には及ばないものの、それでも十分、効率
よく内容成分液を靴の先端内部に塗布出来、効率、効果
に優れた形で内部処理を出来る。Fourth Embodiment FIG. 8 shows a button body 2 having a nozzle 13 having a nozzle 3 having an injection center at the end of the nozzle 13 at right angles to the direction of extension of the nozzle, or between 30 degrees and 150 degrees. 1 is an external view showing an example of an embodiment of the present invention. FIG. 9 is a conceptual diagram showing the relationship between the direction in which the nozzle 13 extends in the nozzle 13 used in the fourth embodiment and the center of the injection of the injection port 3.
A is 30 degrees (or 150 degrees), B is 90 degrees, C is 150 degrees
Indicates the position in degrees (or 30 degrees). The usage is as follows. The nozzle 13 is inserted through the opening 9 of the shoe, the nozzle 3 is directed toward the tip of the shoe, the button body 2 is operated, and the valve core 7 in the aerosol container body 1 is opened. The content component liquid in the aerosol container main body 1 is jetted from the injection port 3 of the nozzle 13 in the button main body 2. Although the injection port 3 is used toward the inside of the shoe tip, it does not extend to the first to third embodiments, but it can still sufficiently and efficiently apply the component liquid to the inside of the shoe tip, so that the inside of the shoe is excellent in efficiency and effect. Can process.
【0020】前述したそれぞれの実施例は、靴5をエア
ゾール容器本体1より上の位置においても、エアゾール
容器本体1より下の位置において実施するときでも、効
能、効果に差は無い。また、本願発明を実施するときに
エアゾール容器本体1にあるバルブコア7を開かせる方
法は、エアゾール製品として従来より用いられるいかな
る方法であっても問題を生じることは無く、内容成分液
が噴射し、同様な結果を得ることが出来る。ボタン本体
2に用いる樹脂に抗菌剤を含有させる事は、本願発明を
実施中、ボタン本体2に付いた菌を、作業後に増殖する
のを防ぐと共に、手などに雑菌が付くのを防ぐ有効な手
段となる。In each of the above-described embodiments, there is no difference in the effect and the effect when the shoe 5 is implemented at a position above the aerosol container main body 1 or at a position below the aerosol container main body 1. Further, the method of opening the valve core 7 in the aerosol container main body 1 when carrying out the present invention does not cause any problem with any method conventionally used as an aerosol product. Similar results can be obtained. Inclusion of an antibacterial agent in the resin used for the button body 2 is effective in preventing bacteria attached to the button body 2 from growing after work and preventing germs from sticking to hands and the like during implementation of the present invention. Means.
【0021】[0021]
【効果試験実施例】本願発明の効果を比較するために次
のような手順で試験を行った。 (1)内容成分液の調製(エアゾール製品処方)[Effect test examples] In order to compare the effects of the present invention, a test was performed in the following procedure. (1) Preparation of content component liquid (aerosol product formulation)
【0022】 [表1] 有効成分溶液(下記組成分)50容量% (フェノキシエタノール 0.7重量%) (エチルパラベン 0.2重量%) (プロピレングリコール 0.5重量%) (エチルアルコール 98.6重量%) 噴射剤(下記組成分) 50容量% (DME 20.0重量%) (LPG 80.0重量%)[Table 1] Active ingredient solution (the following composition) 50% by volume (0.7% by weight of phenoxyethanol) (0.2% by weight of ethyl paraben) (0.5% by weight of propylene glycol) (98.6 of ethyl alcohol) % By weight) Propellant (the following composition) 50% by volume (20.0% by weight of DME) (80.0% by weight of LPG)
【0023】 [表2] 有効成分溶液(下記組成分)50容量% (PREVENTOL O EX./Bayer社製 0.7重量%) (ピュリエールN/松下電工(株)製 2.5重量%) (ピュリエールS/松下電工(株)製 2.5重量%) (プロピレングリコール 1.5重量%) (精製水 27.8重量%) (エチルアルコール 65.0重量%) 噴射剤(下記組成分) 50容量% (LPG 100.0重量%)[Table 2] Active ingredient solution (the following composition) 50% by volume (0.7% by weight from PREVENTOL EX / Bayer) (Purier N / 2.5% by weight from Matsushita Electric Works, Ltd.) Puriere S / 2.5% by weight manufactured by Matsushita Electric Works, Ltd. (Propylene glycol 1.5% by weight) (Purified water 27.8% by weight) (Ethyl alcohol 65.0% by weight) Propellant (the following composition) 50 Capacity% (LPG 100.0% by weight)
【0024】[抗菌効果試験1](噴射量の差による抗
菌効果の差試験) 処方[表1]、処方[表2]のそれぞれを、それぞれの
エアゾール容器に分注し、バルブのコア穴及びボタンの
噴口径で調整し、次のごとく、それぞれ30秒当たりの
噴射量が2g、3g、4g、5g、7g、10g、15
g、30g、45g、60g、75g、85gとなるよ
うにエアゾールを試作製造し、靴内部先端より17セン
チメートル離れた距離から靴内部先端に向かって、有効
成分原液の噴射塗布時間を、1秒間噴射、2秒間噴射、
3秒間噴射、10秒間噴射、15秒間噴射、20秒間噴
射、25秒間噴射とし、それぞれに於ける下記チャレン
ジ菌による抗菌効果を比較した。[Antibacterial effect test 1] (Difference test of antibacterial effect due to difference in injection amount) Each of the prescription [Table 1] and the prescription [Table 2] was dispensed into each aerosol container, and the core hole of the valve and the Adjusted by the nozzle diameter of the button, the injection amount per 30 seconds was 2g, 3g, 4g, 5g, 7g, 10g, 15
g, 30 g, 45 g, 60 g, 75 g, and 85 g of the aerosol were prototyped and manufactured. The spray application time of the active ingredient stock solution was set to 1 second from a distance of 17 cm from the shoe inner tip toward the shoe inner tip. Injection, injection for 2 seconds,
Injection was performed for 3 seconds, 10 seconds, 15 seconds, 20 seconds, and 25 seconds, and the antibacterial effects of the following challenge bacteria were compared.
【0025】抗菌効果を比較するために用いたチャレン
ジ菌は、成人の靴下より増殖させたチャレンジ菌を用い
た。又、分解、組み立てを出来るように製作した男性用
靴の靴先内部に該チャレンジ菌を植菌した。尚、本試験
実施において、2g、3g、4g、5g、7g、10
g、15g、30g、45g、60g、75g、85g
などのそれぞれの噴射量は、定格(例えば2gのものを
2.0gに)噴射量での製造は不可能であったため、下
一桁目を四捨五入した噴射量である。また、チャレンジ
菌による抗菌効果のテストは、靴の内部で靴内部先端の
中央より3センチメートル側面部を測定した。The challenge bacteria used to compare the antibacterial effects used were challenge bacteria grown from adult socks. The challenge bacterium was inoculated into the inside of a shoe tip of a men's shoe manufactured so as to be disassembled and assembled. In this test, 2 g, 3 g, 4 g, 5 g, 7 g, 10 g
g, 15 g, 30 g, 45 g, 60 g, 75 g, 85 g
Each injection amount is an injection amount rounded off at the first digit because production at a rated injection amount (for example, 2 g to 2.0 g) was impossible. In the test of the antibacterial effect of the challenge bacterium, the side of the shoe was measured 3 cm from the center of the tip inside the shoe.
【0026】判定基準は、抗菌効果については○:効果
があったと確認できたもの、△:効果があると言えるも
のの少し効果に不安点があったもの、×:効果がない若
しくは効果ありと判断しがたいもの、とした。内部状態
については○:塗布し、3分放置後特に問題のなかった
もの、△:塗布し、3分放置後に湿り気などが残り少し
違和感の残ったもの、×:3分放置後に湿り気など違和
感のあったもの、とした。抗菌効果の試験結果は以下の
様であった。表3−1、3−2は1秒間噴射の結果であ
り、表3−3、3−4は20秒間噴射の結果である。2
秒間噴射〜15秒間噴射のものの結果は、表3−1、3
−2と表3−3、3−4の中間にあったので、掲示を省
略した。The criteria for the antibacterial effect were as follows: :: The effect was confirmed to be effective, △: The effect was effective, but the effect was a little anxious, ×: The effect was judged to be ineffective or effective It was difficult to do. Regarding the internal state, :: applied and left no problem after 3 minutes, Δ: applied and left slightly moist after 3 minutes, ×: uncomfortable such as moist after 3 minutes What was there. The test results of the antibacterial effect were as follows. Tables 3-1 and 3-2 show the results of the injection for 1 second, and Tables 3-3 and 3-4 show the results of the injection for 20 seconds. 2
Tables 3-1 and 3 show the results of the injections for seconds to 15 seconds.
-2 and Tables 3-3 and 3-4 were omitted, so the posting was omitted.
【0027】[抗菌試験結果]表3−1〜表3−4に見
られるように、30秒間当たりの噴射量が3グラム以上
ないと抗菌効果が得られると言えない状態であった。
(ここで、本願発明の請求項において、噴射時間を20
秒以下とした理由は、20秒を越すと、エアゾール容器
から内容成分液を噴射させるのに時間の長さを感じさ
せ、抗菌作業に億劫さを与えるためである。)[Results of Antimicrobial Test] As shown in Tables 3-1 to 3-4, the antimicrobial effect was not obtained unless the injection amount per 30 seconds was 3 g or more.
(Here, in the claims of the present invention, the injection time is set to 20
The reason for setting the time to be less than second is that if the time exceeds 20 seconds, it takes a long time to inject the content liquid from the aerosol container, and this gives the antibacterial work troublesome. )
【0028】 [0028]
【0029】 [0029]
【0030】[抗菌効果試験2](噴射距離による効果
の差テスト) 前述処方[表1]、処方[表2]の噴射量が3gと20
gのものを用い、それぞれ、靴内部先端より15センチ
メートル、20センチメートル、23センチメートル、
24センチメートル、25センチメートル、26センチ
メートルの距離から靴内部先端に向かって有効成分原液
を3秒間噴射塗布し、チャレンジ菌による抗菌効果を比
較した。チャレンジ菌による抗菌効果のテストは、靴の
内部で靴内部先端の中央より3センチメートル側面部を
測定した。 判定基準は、抗菌効果については○:効果
があったと確認できたもの、△:効果があると言えるも
のの少し効果に不安点があったもの、×:効果がない若
しくは効果あると判断しがたいもの、とした。[Antimicrobial effect test 2] (Test of difference in effect depending on injection distance) The injection amount of the above-mentioned prescription [Table 1] and prescription [Table 2] was 3 g and 20
g, 15 cm, 20 cm, 23 cm,
The active ingredient stock solution was sprayed onto the inside tip of the shoe for 3 seconds from a distance of 24 cm, 25 cm, or 26 cm, and the antibacterial effects of the challenge bacteria were compared. In the test of the antibacterial effect of the challenge bacterium, a side portion 3 cm from the center of the inside tip of the shoe was measured inside the shoe. The criteria for the antibacterial effect were as follows: :: The effect was confirmed to be effective, も の: The effect was effective but a little uneasy about the effect, ×: It was difficult to judge that the effect was ineffective or effective Things.
【0031】[抗菌試験結果]抗菌効果の試験結果は以
下の様であった。表4−1は噴射量が3gのものを用
い、表4−2は噴射量が20gのものを用いたものの結
果である。噴口と靴の開口部位置の関係も影響し、表4
−1〜表4−2から分かるように、23センチメートル
以内でないと抗菌効果が得られると言えない状態であっ
た。[Antibacterial Test Results] The test results of the antibacterial effect were as follows. Table 4-1 shows the results when the injection amount was 3 g, and Table 4-2 shows the results when the injection amount was 20 g. Table 4 also affects the relationship between the nozzle and the position of the shoe opening.
As can be seen from Tables -1 to 4-2, the antibacterial effect could not be said to be obtained unless it was within 23 cm.
【0032】 [0032]
【0033】 [0033]
【0034】[抗菌効果試験3](靴への処理方法の違
いによる抗菌効果試験) 前述処方[表1]の噴射量が15gのものを用い、下記
それぞれの効果試験を行った。それぞれ所定の位置か
ら、靴内部のそれぞれ所定の位置に向かって有効成分原
液を3秒間噴射塗布し、チャレンジ菌による抗菌効果を
比較した。チャレンジ菌による抗菌効果のテストは、靴
の内部で靴内部先端の中央より3センチメートル側面部
を測定した。[Antibacterial effect test 3] (Antibacterial effect test based on difference in treatment method for shoes) Using the above-mentioned prescription [Table 1] having an injection amount of 15 g, the following effect tests were performed. The active ingredient stock solution was spray-coated for 3 seconds from each predetermined position toward each predetermined position inside the shoe, and the antibacterial effects of the challenge bacteria were compared. In the test of the antibacterial effect of the challenge bacterium, a side portion 3 cm from the center of the inside tip of the shoe was measured inside the shoe.
【0035】[菌の調製と判定基準]効能、効果を比較
するために、成人の靴下より増殖させたチャレンジ菌
を、女性用短ブーツの靴先内部に植菌した、さらに、処
方1の有効成分含有内容物を調製し、エアゾール殺菌剤
を作成した。該エアゾール殺菌剤を、各々3秒、5秒噴
射した物各2個宛作成し、それぞれを1分放置後と、1
時間放置後の菌の状態を調べ、判定した。 判定結果は
◎:効果が顕著なもの、○:効果ありと判断できるも
の、△:効果有りとも無いとも判断し難いもの、×:効
果ないもの、にランク付けした。[Preparation of bacteria and criteria for determination] In order to compare the efficacy and the effect, challenge bacteria grown from adult socks were inoculated into the boots of women's short boots. An ingredient-containing content was prepared to prepare an aerosol disinfectant. Each of the aerosol disinfectants was sprayed for 3 seconds and 5 seconds, and each of the two sprayed was prepared.
The state of the bacteria after standing for a period of time was examined and determined. The evaluation results were ranked as ◎: remarkable effects, も の: those that can be judged to be effective, Δ: those that are difficult to judge that there is or were not effective, and ×: those that were not effective.
【0036】効果試験1:前述の実施例1の通り実施
し、効果試験1とした。即ち、実施例1のボタン本体2
をつけたエアゾール容器本体1を、靴5に逆さまに挿入
し処理した。 効果試験2:前述の実施例2の遮蔽板10を兼ね備えた
ボタン本体2を用い、靴を下においた状態でエアゾール
容器本体1を挿入し、実施した。 効果試験3:前述の実施例3のボタン本体2の一部が、
靴の上部縁に掛かるようにした鉤状突起部14を有する
本願発明のボタン本体2を用い、処理後、遮蔽板10を
残したまま実施した。 効果試験4:実施例4のノズルの延長方向に対して直角
に噴射の中心がある噴口3を有するノズル13を有する
ボタン本体2を用い、靴の開口部9より噴射させ、実施
した。Effect test 1: The effect test was carried out as in Example 1 described above, and was set as effect test 1. That is, the button body 2 of the first embodiment
The aerosol container body 1 with the mark was inserted into the shoe 5 upside down and processed. Effect test 2: The aerosol container main body 1 was inserted in a state where the shoes were placed under the button main body 2 having the shielding plate 10 of the above-described second embodiment, and the test was performed. Effect test 3: A part of the button body 2 of the third embodiment described above is
Using the button body 2 of the present invention having the hook-shaped projections 14 to be hooked on the upper edge of the shoe, the processing was carried out with the shielding plate 10 left after the processing. Effect test 4: Using the button body 2 having the nozzle 13 having the injection port 3 having the injection center at right angles to the extension direction of the nozzle of Example 4, the injection was performed through the opening 9 of the shoe.
【0037】比較試験1:効果試験と同一の内容処方か
らなる内容成分液を作り、従来の噴口(0.4mmφ)
のストレートボタンを用い、靴5の開口部9より噴射塗
布し、実施した。 比較試験2:効果試験と同一の内容処方からなる内容成
分液を作り、従来の噴口(0.4mmφ)のブレークア
ップボタンを用い、靴5の開口部9より噴射塗布し、実
施した。Comparative test 1: A content component liquid having the same content formula as in the effect test was prepared, and a conventional nozzle (0.4 mmφ) was used.
Was sprayed and applied from the opening 9 of the shoe 5 using the straight button of the above. Comparative test 2: A content component liquid having the same content formulation as that of the effect test was prepared, and sprayed and applied from the opening 9 of the shoe 5 using a break-up button of a conventional nozzle (0.4 mmφ).
【0038】[抗菌試験結果]抗菌効果の試験結果は表
5の様であった。本願発明の実施例1〜4は比較例と比
べ、明らかに抗菌処理がよく行われていることが解る。[Antibacterial test results] The test results of the antibacterial effect were as shown in Table 5. It can be seen that the antimicrobial treatments of Examples 1 to 4 of the present invention are clearly performed better than the comparative examples.
【0039】 [0039]
【0040】以上に本明細書においては、抗菌剤成分の
みを用いた処方例を掲げ、それらを用い抗菌試験した実
施例のみを示してきたが、本願発明に用いる薬剤として
は抗菌剤に加え、消臭剤成分、香料などの芳香剤成分、
制汗剤成分、抗菌効果や芳香効果を持続させるために用
いる無水珪酸やその他の金属塩からなる薬剤担持体、吸
湿剤、その他浸透性や抗菌性、噴射状態を調節するため
などに用いる界面活性剤、アルコール類、炭化水素油、
シリコーン類、有機又は/及び無機物からなる粉体など
の微粒子など種々の薬剤を混合使用でき、これらを加え
る事によって本願発明を逸脱するものでは無い。As described above, in the present specification, formulation examples using only an antibacterial agent component are given, and only examples in which an antibacterial test was carried out using them are shown. However, as agents used in the present invention, in addition to the antibacterial agent, Deodorant component, fragrance component such as fragrance,
Antiperspirant component, drug carrier made of silicic anhydride and other metal salts used to maintain antibacterial and fragrance effects, hygroscopic agent, and other surfactants used to control permeability, antibacterial properties, and spray condition Agents, alcohols, hydrocarbon oils,
Various chemicals such as silicones, fine particles such as organic or / and inorganic powders can be mixed and used, and adding these does not depart from the present invention.
【0041】[0041]
【発明の効果】菌の多量に存在する部分である、靴内部
先端部15に、有効成分含有内容物を高濃度で塗布出来
る機構であるため、効率よく、効果的に靴5の内部の処
理を出来る。また、遮蔽板10を用いた場合には、噴射
された内容物は、靴の外部に飛散する事なく、僅かな量
で靴の内部に塗布出来るので、より効率的に、効果的に
優れた形で内部処理を出来る上、外部の環境を汚染しな
い。遮蔽板10を用い、噴射後、遮蔽板10を一定時
間、靴5の開口部9に保留する場合には、噴口3が靴の
先端内部に向いていない場合でも効率よく、効果のある
処理を行うことが出来るので、特に長いブーツの処理に
効果的である。噴口3を靴内部先端部15に向けた状態
で塗布後、この遮蔽板10をそのまま靴の内部で暫く保
持することは、内容物は靴内部先端部15で、より濃度
の高いまま、靴の中に滞留する事になるので、効果がよ
り向上し、さらに短時間で処理が確実なものとなる。
前述の効果試験の試験結果より明確なように、本願発明
の実施により、効果が顕著に現れているように従来、不
完全にしか処理できなかった、靴内部先端部15の抗菌
等の処理が確実なものとなった。According to the present invention, a mechanism capable of applying the active ingredient-containing content at a high concentration to the inside tip portion 15 of the shoe, which is a portion where a large amount of bacteria are present, enables efficient and effective treatment of the inside of the shoe 5. Can be Further, when the shielding plate 10 is used, the sprayed contents can be applied to the inside of the shoe in a small amount without scattering to the outside of the shoe. In addition to the internal processing, it does not pollute the external environment. When the shielding plate 10 is held in the opening 9 of the shoe 5 for a certain period of time after spraying by using the shielding plate 10, efficient and effective processing can be performed even when the nozzle 3 is not directed toward the inside of the tip of the shoe. This is particularly effective for processing long boots. Holding the shield plate 10 for a while inside the shoe after application with the orifice 3 facing the shoe inner tip 15 means that the content of the shoe is higher at the shoe inner tip 15 and the Since the stagnation occurs, the effect is further improved, and the processing can be ensured in a shorter time.
As is clear from the test results of the effect test described above, the practice of the present invention makes it possible to reduce the antibacterial treatment or the like of the shoe inner tip portion 15 which was conventionally only incompletely treated so that the effect was remarkably exhibited. It became certain.
【図1】本願発明に係る抗菌処理の実施の一例を示す一
部縦断面外観図。FIG. 1 is a partial longitudinal sectional external view showing an example of an antibacterial treatment according to the present invention.
【図2】2−1は本願発明の実施の一例を示す外観斜視
図。2−2は本願発明の実施の一例を示す外観斜視図。
2−3は本願発明の実施の一例を示す外観斜視図。FIG. 2A is an external perspective view showing an example of the embodiment of the present invention. 2-2 is an external perspective view showing an embodiment of the present invention.
2-3 is an external perspective view showing an embodiment of the present invention.
【図3】本願発明に係る抗菌処理の実施の一例を示す一
部縦断面外観図。FIG. 3 is a partial longitudinal sectional external view showing an example of an embodiment of an antibacterial treatment according to the present invention.
【図4】本願発明の実施の一例を示す外観斜視図。FIG. 4 is an external perspective view showing an example of the embodiment of the present invention.
【図5】本願発明の実施の一例を示す外観斜視図。FIG. 5 is an external perspective view showing an example of the embodiment of the present invention.
【図6】6−1は本願発明の実施の一例を示す外観斜視
図。6−2は本願発明の実施の一例を示す外観斜視図。FIG. 6A is an external perspective view illustrating an example of the embodiment of the present invention. 6-2 is an external perspective view showing an embodiment of the present invention.
【図7】本願発明に係る抗菌処理の実施の一例を示す一
部縦断面外観図。FIG. 7 is a partial vertical cross-sectional external view showing an example of an antibacterial treatment according to the present invention.
【図8】本願発明に係る抗菌処理の実施の一例を示す一
部縦断面外観図。FIG. 8 is a partial vertical cross-sectional external view showing an example of an antibacterial treatment according to the present invention.
【図9】本願発明の実施の一例を示す外観斜視図。FIG. 9 is an external perspective view showing an embodiment of the present invention.
1はエアゾール容器本体 2はボタン本体 3は噴口 4は内底接面部 5は靴 6は靴の内底 7はバルブコア 8は突起 9は開口部 10は遮蔽板 10−1は遮蔽板 10−2は遮蔽板 11はセットピン 12はピン穴 13はノズル 14は鉤状突起部 15は靴内部先端部 16はボタン本体段部 17はボタン挿入穴 Aは噴射の方向 Bは噴射の方向 Cは噴射の方向 1 is an aerosol container main body 2 is a button main body 3 is a nozzle 4 is an inner bottom contact surface 5 is a shoe 6 is an inner bottom of a shoe 7 is a valve core 8 is a projection 9 is an opening 10 is a shielding plate 10-1 is a shielding plate 10-2 Is a shield plate 11 is a set pin 12 is a pin hole 13 is a nozzle 14 is a hook-like projection 15 is a tip inside a shoe 16 is a button body step 17 is a button insertion hole A is a jetting direction B is a jetting direction C is a jetting direction Direction
Claims (11)
成分液をエアゾール容器に封入し、被処理面である靴内
部先端部と前記エアゾール容器のボタン噴口との距離が
23センチメートル以内であり、且つ、該ボタン噴口
が、靴内部先端部に直接向かい合う方向にボタン噴口を
位置付け、30秒当たりの噴射量を3ミリリットル以上
で靴内部先端部に20秒以下の短時間直接噴射塗布させ
ることにより、靴内部を抗菌処理することを特徴とする
靴内部抗菌方法。An aerosol container is filled with a component liquid containing at least one antibacterial agent, and a distance between a front end of the shoe, which is a surface to be treated, and a button nozzle of the aerosol container is within 23 cm. And, by positioning the button nozzle in a direction in which the button nozzle directly faces the inside tip of the shoe, the amount of spray per 30 seconds is 3 milliliters or more, and the tip of the shoe is directly spray-coated for 20 seconds or less. An antibacterial method inside shoes, wherein the inside of shoes is subjected to antibacterial treatment.
する事を特徴とする、請求項1に記載の靴内部抗菌方
法。2. The antibacterial method inside shoes according to claim 1, wherein the antibacterial treatment is performed by inverting the aerosol container body.
成分液をエアゾール容器に封入し、靴の開口部に遮蔽板
を取り付け、前記遮蔽板を介し、靴内部にエアゾール容
器の内容成分液を噴射し、靴内部に噴射する噴射霧が、
靴内部の隅々まで行き渡る状態で靴内部を抗菌すること
を特徴とする靴内部抗菌方法。3. A component solution containing at least one antibacterial agent is sealed in an aerosol container, a shielding plate is attached to an opening of the shoe, and the content component solution of the aerosol container is inserted into the shoe via the shielding plate. The spray fog that injects and injects into the shoe,
An antibacterial method in a shoe, characterized in that the inside of the shoe is antibacterial in a state where it reaches every corner of the shoe.
する事を特徴とする、請求項3に記載の靴内部抗菌方
法。4. The antibacterial method in a shoe according to claim 3, wherein the antibacterial treatment is performed by inverting the aerosol container body.
成分液がエアゾール容器に封入され、エアゾール容器の
ボタン頭頂部に靴内底の接面部が設けられ、内容成分液
の噴射量が30秒当り3ミリリットル以上であることを
特徴とする靴内部の抗菌方法に用いるエアゾール噴射装
置。5. A content component liquid containing at least one antibacterial agent is sealed in an aerosol container, a contact surface portion of a shoe inner sole is provided at the top of a button of the aerosol container, and a spray amount of the content component liquid is 30 seconds. An aerosol spraying device used in an antibacterial method inside shoes, wherein the aerosol spraying amount is 3 ml or more per shoe.
靴、足、動物、キャラクターの形状に成型され、噴口が
靴先、足先、顔面等の前面方向に設けられていることを
特徴とする請求項5に記載の靴内部の抗菌方法に用いる
エアゾール噴射装置。6. The button body or a part of the button body is formed in a shape of a shoe, a foot, an animal, or a character, and a spout is provided in a front direction such as a shoe tip, a foot tip, and a face. An aerosol injection device used in the antibacterial method inside shoes according to claim 5.
成分液がエアゾール容器に封入され、エアゾール容器の
ボタンにノズルが設けられ、ノズルの端部にノズルの延
長方向に対して直角、もしくは30度から150度の間
に噴射の中心がある噴口をが設けられ、内容成分液の噴
射量が30秒当り3ミリリットル以上であることを特徴
とする靴内部の抗菌方法に用いるエアゾール噴射装置。7. A content component liquid containing at least one antibacterial agent is enclosed in an aerosol container, a nozzle is provided on a button of the aerosol container, and a nozzle is provided at an end of the nozzle at right angles to the direction in which the nozzle extends. An aerosol spray device for use in an antibacterial method inside shoes, wherein a spray hole having a center of spray is provided between 150 ° and 150 °, and a spray amount of the content component liquid is 3 ml or more per 30 seconds.
成分液がエアゾール容器に封入され、エアゾール容器の
ボタン後方に靴開口部の遮蔽板が設けられていることを
特徴とする、靴内部の抗菌方法に用いるエアゾール噴射
装置。8. The inside of a shoe, characterized in that a content component liquid containing at least one antibacterial agent is enclosed in an aerosol container, and a shield plate for a shoe opening is provided behind a button of the aerosol container. Aerosol injection device used for antibacterial method.
にした遮蔽板を有する事を特徴とする請求項8に記載の
靴内部の抗菌方法に用いるエアゾール噴射装置。9. The aerosol spraying device used in the antibacterial method in a shoe according to claim 8, further comprising a shielding plate capable of changing an area for closing the opening of the shoe.
とする請求項8または請求項9に記載の靴内部の抗菌方
法に用いるエアゾール噴射装置。10. The aerosol spraying device used in the antibacterial method inside shoes according to claim 8, wherein the cap body serves as a shielding plate.
特徴とする請求項8ないし10のいずれかに記載の靴内
部の抗菌方法に用いるエアゾール噴射装置。11. The aerosol spraying device according to claim 8, wherein said shielding plate has a button insertion hole.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| JP11103065A JP2000256101A (en) | 1999-03-04 | 1999-03-04 | Antibacterial method inside shoes and aerosol injection device used in the method |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| JP11103065A JP2000256101A (en) | 1999-03-04 | 1999-03-04 | Antibacterial method inside shoes and aerosol injection device used in the method |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| JP2000256101A true JP2000256101A (en) | 2000-09-19 |
Family
ID=14344279
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| JP11103065A Pending JP2000256101A (en) | 1999-03-04 | 1999-03-04 | Antibacterial method inside shoes and aerosol injection device used in the method |
Country Status (1)
| Country | Link |
|---|---|
| JP (1) | JP2000256101A (en) |
Cited By (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US7909268B2 (en) | 2002-04-22 | 2011-03-22 | Sara Lee/De N.V. | Container for a substance to be sprayed, cap for such container and method for manufacturing such container |
| WO2019224319A1 (en) * | 2018-05-23 | 2019-11-28 | Qilta Limited | A garment treatment system and method |
| US20230193555A1 (en) * | 2020-04-14 | 2023-06-22 | Cikman Mustafa Cueneyt | Antibacterial and antiviral fabric |
-
1999
- 1999-03-04 JP JP11103065A patent/JP2000256101A/en active Pending
Cited By (7)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US7909268B2 (en) | 2002-04-22 | 2011-03-22 | Sara Lee/De N.V. | Container for a substance to be sprayed, cap for such container and method for manufacturing such container |
| US8272581B2 (en) | 2002-04-22 | 2012-09-25 | S.C. Johnson & Son, Inc. | Container and method for a substance to be sprayed |
| US8616472B2 (en) | 2002-04-22 | 2013-12-31 | S.C. Johnson & Son, Inc. | Container for a substance to be sprayed |
| EP1357057B2 (en) † | 2002-04-22 | 2014-11-19 | S.C. Johnson & Son, Inc. | Container for a substance to be sprayed |
| US9155358B2 (en) | 2002-04-22 | 2015-10-13 | S.C. Johnson & Son, Inc. | Container for a substance to be sprayed |
| WO2019224319A1 (en) * | 2018-05-23 | 2019-11-28 | Qilta Limited | A garment treatment system and method |
| US20230193555A1 (en) * | 2020-04-14 | 2023-06-22 | Cikman Mustafa Cueneyt | Antibacterial and antiviral fabric |
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