JP2008119289A - Washing machine - Google Patents

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Publication number
JP2008119289A
JP2008119289A JP2006307425A JP2006307425A JP2008119289A JP 2008119289 A JP2008119289 A JP 2008119289A JP 2006307425 A JP2006307425 A JP 2006307425A JP 2006307425 A JP2006307425 A JP 2006307425A JP 2008119289 A JP2008119289 A JP 2008119289A
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laundry
water
silver
washing machine
antibacterial
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Inventor
Takemi Oketa
岳見 桶田
Katsuhiko Uno
克彦 宇野
Hiroshi Nishida
博史 西田
Shigeru Sasabe
笹部  茂
Shiho Furuya
志保 古谷
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Panasonic Holdings Corp
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Matsushita Electric Industrial Co Ltd
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Priority to JP2006307425A priority Critical patent/JP2008119289A/en
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Abstract

<P>PROBLEM TO BE SOLVED: To raise sterilizing and antibacterial effects in laundry concerning a washing machine having sterilizing and antibacterial functions. <P>SOLUTION: The washing machine includes: a washing tub 4 for storing the laundry; and an electrolytic bath 10 for dissolving out silver ions having light exciting action and adding them to water. The electrolytic bath 10 supplies a silver solution and allows the solution to contact the laundry. Light is radiated by an LED 5 when water exists in the laundry, thereby raising the sterilizing and antibacterial effects in the laundry. <P>COPYRIGHT: (C)2008,JPO&INPIT

Description

本発明は、洗濯機で洗う洗濯物に付着した菌の除菌を行う洗濯機に関するものである。   The present invention relates to a washing machine for sterilizing bacteria attached to laundry to be washed in a washing machine.

従来、洗濯機には洗濯物(本実施例では洗濯物となる)の除菌あるいは抗菌処理を行う一例として抗菌性のあるAgを利用する以下のような洗濯機がある(例えば、特許文献1参照)。   Conventional washing machines include the following washing machines that use antibacterial Ag as an example of performing sterilization or antibacterial treatment of laundry (which will be laundry in this embodiment) (for example, Patent Document 1). reference).

図4は、前記公報に記載された洗濯機の断面図を示すものである。図4に示すように、洗濯機101は全自動型のものであり、外箱102は直方体形状でその上面には洗濯物を投入するための開口部103を有している。外箱102には、受筒104、開口部の上面には蓋105を有し、ネジで固定されている。受筒104内には、洗濯物の攪拌のための内筒106およびパルセータ107を有し、モータ108の働きで、回転する構成となっている。内筒106および受筒104に注水する際には、水流路109からイオン供給ユニット110を通して行う。   FIG. 4 shows a cross-sectional view of the washing machine described in the publication. As shown in FIG. 4, the washing machine 101 is of a fully automatic type, and the outer box 102 has a rectangular parallelepiped shape, and has an opening 103 for putting laundry on the upper surface thereof. The outer box 102 has a receiving cylinder 104 and a lid 105 on the upper surface of the opening, and is fixed with screws. The receiving cylinder 104 has an inner cylinder 106 and a pulsator 107 for stirring the laundry, and is configured to rotate by the action of the motor 108. When water is poured into the inner cylinder 106 and the receiving cylinder 104, it is carried out from the water channel 109 through the ion supply unit 110.

次に、洗濯物に除菌、抗菌処理を行う際の動作について説明する。洗濯物の除菌、抗菌を行う際には、水流路9から注水を行う際にイオン供給ユニット110を制御し、注水中にAgをイオン状態で供給する。このことにより、水の銀イオン濃度は所定の濃度になり、パルセータ107および内筒106がモータ108で攪拌することで、洗濯物に銀イオンが付着し、洗濯物に付着している細菌の除菌を行う。また、洗濯物に付着した銀イオンは洗濯物に残留するので、洗濯後でも洗濯物が細菌の増殖を抑制する効果を有する(抗菌効果)ことになる。
特開2004−105692号公報
Next, the operation | movement at the time of performing disinfection and antibacterial processing to a laundry is demonstrated. When performing sterilization and antibacterial of the laundry, the ion supply unit 110 is controlled when water is injected from the water channel 9, and Ag is supplied in an ionic state into the water. As a result, the silver ion concentration of water becomes a predetermined concentration, and when the pulsator 107 and the inner cylinder 106 are agitated by the motor 108, silver ions adhere to the laundry and the bacteria attached to the laundry are removed. Do fungus. Further, since silver ions adhering to the laundry remain in the laundry, the laundry has an effect of suppressing the growth of bacteria even after washing (antibacterial effect).
JP 2004-105692 A

しかしながら、前記従来の構成では、多量の洗濯物(背景技術では洗濯物)を抗菌あるいは除菌処理するためには、イオン供給ユニット110からは高濃度のAgを溶出する必要があり、繰り返し洗濯物をAgで処理し続けると洗濯物が変色してしまうという課題があった。また、Agによる除菌は、大腸菌や黄色ブドウ球菌に対しては効果が高いが、それ以外の細菌やカビに対しては効果が低くなるという課題があった。   However, in the conventional configuration, in order to antibacterial or sterilize a large amount of laundry (laundry in the background art), it is necessary to elute high-concentration Ag from the ion supply unit 110. There was a problem that the laundry would be discolored if it was continuously treated with Ag. Further, although sterilization with Ag is highly effective against Escherichia coli and Staphylococcus aureus, there is a problem that the effect is low against other bacteria and molds.

本発明は、前記従来の課題を解決するもので、低濃度の抗菌材でも多量の洗濯物を除菌、抗菌処理することができ、細菌やカビ類に対して幅広い除菌、抗菌効果を示すことができる洗濯機を提供することを目的とする。   The present invention solves the above-mentioned conventional problems, and can sterilize and antibacterial a large amount of laundry even with a low concentration of antibacterial material, and exhibits wide sterilization and antibacterial effects against bacteria and molds. An object is to provide a washing machine that can be used.

前記課題を解決するために、本発明の洗濯機は、洗濯物を収容する洗濯槽と、前記洗濯槽に水を供給する水供給手段と、前記水供給手段で供給された水に光励起抗菌材を供給する光励起抗菌材供給手段と、前記洗濯槽内の洗濯物および水に光を照射する光照射手段とを備え、前記光照射手段は、洗濯物に水が存在するときに光を照射するようにしたものである。   In order to solve the above problems, a washing machine of the present invention includes a washing tub for storing laundry, water supply means for supplying water to the washing tub, and photoexcited antibacterial material for water supplied by the water supply means. A light-excited antibacterial material supply means, and a light irradiation means for irradiating the laundry and water in the washing tub with light, and the light irradiation means irradiates light when water is present in the laundry. It is what I did.

これにより、洗濯物に光励起抗菌材が付着し、そこに光源から光が照射されると、光励起抗菌材への光の到達効率が向上し、励起状態になりやすくなるので、水と酸素からヒドロキシラジカルあるいはスーパーオキシド等の活性酸素種の生成効率が向上する。光励起抗菌材自身の除菌、抗菌作用と共に光化学反応によって発生した活性酸素種による酸化作用によって菌を分解することができる。したがって、これらの相乗効果で低濃度の抗菌材で洗濯物の除菌、抗菌を効果的に行うことができる。また、活性酸素種による酸化分解を利用するので、抗菌スペクトルを拡げ大腸菌や黄色ブドウ球菌の以外の細菌やカビに対しても効果を発揮することができる。   As a result, when the photoexcited antibacterial material adheres to the laundry and is irradiated with light from the light source, the light arrival efficiency to the photoexcited antibacterial material is improved and it becomes easy to be in an excited state. The production efficiency of active oxygen species such as radicals or superoxide is improved. The bacteria can be decomposed by the sterilization of the photoexcited antibacterial material itself and the antibacterial action as well as the oxidizing action by the reactive oxygen species generated by the photochemical reaction. Therefore, these synergistic effects can effectively sterilize laundry and antibacterial with a low concentration of antibacterial material. In addition, since oxidative degradation by reactive oxygen species is utilized, the antibacterial spectrum can be broadened to exert effects on bacteria and molds other than E. coli and Staphylococcus aureus.

本発明の洗濯機は、光励起抗菌材自身の除菌、抗菌作用と共に光化学反応によって発生した活性酸素種による酸化作用によって菌を分解することができる。したがって、これらの相乗効果で低濃度の抗菌材で洗濯物の除菌、抗菌を短時間に効果的に行うことができる。また、活性酸素種による酸化分解を利用するので、抗菌スペクトルを拡げ大腸菌や黄色ブドウ球菌の以外の細菌やカビに対しても効果を発揮することができる。   The washing machine of the present invention can decompose bacteria by the oxidizing action of reactive oxygen species generated by the photochemical reaction as well as the sterilization and antibacterial action of the photoexcited antibacterial material itself. Therefore, these synergistic effects can effectively perform sterilization and antibacterial of laundry with a low concentration of antibacterial material in a short time. In addition, since oxidative degradation by reactive oxygen species is utilized, the antibacterial spectrum can be broadened to exert effects on bacteria and molds other than E. coli and Staphylococcus aureus.

第1の発明は、洗濯物を収容する洗濯槽と、前記洗濯槽に水を供給する水供給手段と、前記水供給手段で供給された水に光励起抗菌材を供給する光励起抗菌材供給手段と、前記洗濯槽内の洗濯物および水に光を照射する光照射手段とを備え、前記光照射手段は、洗濯物に光励起抗菌材添加水が存在するときに光を照射するようにしたことにより、水に溶出した光励起抗菌材により洗濯物に付着している細菌を除菌するとともに、洗濯物に付着した光励起抗菌材および収容槽内に供給された光励起抗菌材添加水に光照射手段から光を照射して光触媒反応で放出された電子が水分子と反応し、除菌作用の大きいヒドロキシラジカルあるいはスーパーオキシド等の活性酸素種を生成することにより除菌する。これらの相乗効果により低濃度でも除菌・抗菌効果を発揮することができる。さらに、活性酸素種による酸化分解を利用するので、抗菌スペクトルを拡げ大腸菌や黄色ブドウ球菌の以外の細菌やカビに対しても効果を発揮することができる。   1st invention is the washing tub which accommodates the laundry, the water supply means which supplies water to the said washing tub, the light excitation antibacterial material supply means which supplies a light excitation antibacterial material to the water supplied by the said water supply means, And a light irradiating means for irradiating the laundry and water in the washing tub with light, wherein the light irradiating means irradiates light when the photoexcited antibacterial material added water is present in the laundry. In addition to sterilizing bacteria adhering to the laundry with the light-excited antibacterial material eluted in the water, the light-excited antibacterial material adhering to the laundry and the light-excited antibacterial material-added water supplied into the storage tub are lightened from the light irradiation means. Is sterilized by reacting with water molecules and generating active oxygen species such as hydroxy radicals or superoxide having a large sterilizing action. These synergistic effects can exert sterilization and antibacterial effects even at low concentrations. Furthermore, since oxidative decomposition by reactive oxygen species is utilized, the antibacterial spectrum can be expanded to exert effects on bacteria and molds other than Escherichia coli and Staphylococcus aureus.

第2の発明は、特に、第1の発明の光励起抗菌材は、光励起作用のある金属元素を少なくともひとつを含有することにより、Ag、Zn、Cu等の光励起作用のある金属元素を含有することで、水中に抗菌剤を溶解させやすく、衣類へ抗菌剤を効果的に付着させることができる。   In the second invention, in particular, the photoexcited antibacterial material of the first invention contains a metal element having photoexcitation action such as Ag, Zn, Cu, etc. by containing at least one metal element having photoexcitation action. Therefore, the antibacterial agent can be easily dissolved in water, and the antibacterial agent can be effectively adhered to clothing.

第3の発明は、特に、第2の発明の光励起抗菌材供給手段は、少なくとも金属を含有する電極を有する電解槽を有し、電気分解により前記金属を水中に供給する構成としたことにより、電気分解により光励起作用のある金属元素を溶出するので、電流制御することにより、すすぎ水の金属元素の濃度を調整することができ、金属元素の濃度を安定して供給することができる。   According to a third invention, in particular, the photoexcited antibacterial material supply means of the second invention has an electrolytic cell having an electrode containing at least a metal and is configured to supply the metal into water by electrolysis. Since the metal element having a photoexcitation action is eluted by electrolysis, the concentration of the metal element in the rinse water can be adjusted by controlling the current, and the concentration of the metal element can be supplied stably.

第4の発明は、特に、第1〜第3の発明の洗濯槽を駆動する駆動手段を設け、前記駆動手段により前記洗濯槽内の洗濯物の位置を変更し、光励起抗菌材を洗濯物の表面に配置するようにしたことにより、洗濯物の内部に含浸した光励起抗菌材が物理的作用により表面および表面近傍に移行すると同時に、重なり合った洗濯物が攪拌され露出表面が入れ替わるので、光照射手段から発生した光を受けやすくなり、光励起抗菌材での活性酸素種の発生が向上するので除菌、抗菌効果が向上する。   In particular, the fourth invention is provided with driving means for driving the washing tubs according to the first to third inventions, the position of the laundry in the washing tub is changed by the driving means, and the photoexcited antibacterial material is applied to the laundry. By arranging it on the surface, the photoexcited antibacterial material impregnated inside the laundry moves to the surface and the vicinity of the surface by physical action, and at the same time the overlapping laundry is agitated and the exposed surface is replaced. Since the generation of active oxygen species in the photoexcited antibacterial material is improved, the sterilization and antibacterial effect are improved.

第5の発明は、特に、第1〜第4の発明の光励起抗菌材を銀とし、洗濯物への銀付着量を0.001〜0.3μg/cmとしたことにより、洗濯物表面に付着したAgからヒドロキシラジカルなどの活性酸素種を効率的生成することができるので、除菌、抗菌効果を向上することができる。また、付着したAgによる衣類の変色も問題ない。 In the fifth aspect of the invention, in particular, the photoexcited antibacterial material of the first to fourth aspects of the present invention is silver, and the amount of silver attached to the laundry is 0.001 to 0.3 μg / cm 2. Since active oxygen species such as hydroxy radicals can be efficiently generated from the attached Ag, sterilization and antibacterial effects can be improved. Also, there is no problem with discoloration of clothing due to the adhered Ag.

第6の発明は、特に、第1〜第4の発明の光励起抗菌材を銀とし、水中の銀濃度を0.01〜5ppmとしたことにより、除菌、抗菌効果を維持しながら、水に溶解したAgの凝集沈殿による除菌、抗菌効率の低下を抑制することができるので、除菌、抗菌を効果的に行うことができる。   In the sixth invention, in particular, the photoexcited antibacterial material of the first to fourth inventions is silver, and the silver concentration in water is 0.01 to 5 ppm. Since it is possible to suppress the sterilization and the decrease in antibacterial efficiency due to the aggregation precipitation of dissolved Ag, the sterilization and antibacterial can be effectively performed.

以下、本発明の実施の形態について、図面を参照しながら説明する。なお、この実施の形態によって本発明が限定されるものではない。   Hereinafter, embodiments of the present invention will be described with reference to the drawings. Note that the present invention is not limited to the embodiments.

(実施の形態1)
図1は、本発明の実施の形態1における洗濯機の構成図、図2は、電解槽の斜視図を示したものである。図1、図2において、洗濯機本体1は、外槽2とその外槽2内に回転自在に配された内槽3を内蔵しており、外槽2と内槽3とで洗濯槽4を形成している。外槽2の端周縁部には光照射手段であるLED5(波長約350〜660nm)を配設している。外槽2の下部に排水路6の一端を接続し、排水路6には排水弁7を接続して洗濯槽4内の洗濯水を排水するようにしている。
(Embodiment 1)
1 is a configuration diagram of a washing machine according to Embodiment 1 of the present invention, and FIG. 2 is a perspective view of an electrolytic cell. 1 and 2, the washing machine body 1 includes an outer tub 2 and an inner tub 3 that is rotatably disposed in the outer tub 2, and the outer tub 2 and the inner tub 3 constitute a washing tub 4. Is forming. An LED 5 (wavelength: about 350 to 660 nm) serving as a light irradiating means is disposed on the peripheral edge of the outer tub 2. One end of a drainage channel 6 is connected to the lower part of the outer tub 2, and a drainage valve 7 is connected to the drainage channel 6 to drain the washing water in the washing tub 4.

洗濯槽4への給水は給水路8に設けた水供給手段である給水弁9を開き、電解槽10を通って洗濯槽4内に水を給水するものである。内槽3は、有底円筒形に形成され、その周面に外槽2内に通じる多数の通水孔(図示せず)が形成され、内周面の複数位置にバッフル11を設けている。内槽3の回転中心に略傾斜方向に回転軸を設け、内槽3の軸心方向を背面側から正面側に向けて上向きに傾斜させて配設している。この回転軸に外槽2の背面側に取り付けたモータ(駆動手段)12を連結し、内槽3を正転および逆転方向に回転駆動するようにしている。   Water supply to the washing tub 4 is to supply water into the washing tub 4 through the electrolytic tank 10 by opening a water supply valve 9 which is a water supply means provided in the water supply path 8. The inner tub 3 is formed in a bottomed cylindrical shape, a large number of water passage holes (not shown) communicating with the outer tub 2 are formed on the peripheral surface thereof, and baffles 11 are provided at a plurality of positions on the inner peripheral surface. . A rotation axis is provided in a substantially inclined direction at the center of rotation of the inner tub 3, and the axial center direction of the inner tub 3 is inclined upward from the back side to the front side. A motor (driving means) 12 attached to the back side of the outer tub 2 is connected to the rotating shaft, and the inner tub 3 is rotationally driven in the forward and reverse directions.

光励起抗菌材供給手段である電解槽10は、ケース15内に2枚の銀の板状の電極16を有し、長手方向の一方の端に水の流入口17、他方の端に水の流出口18を備える。ケース15の内部には、流入口17から流出口18へと向かう水流に沿う形で、2枚の板状の電極16が向かい合わせに配置し、光励起抗菌材である銀をイオンで供給することができる。また電極16の一部には、電圧を印加するための接続端子19を設けている。   The electrolytic cell 10 serving as a photoexcited antibacterial material supply means has two silver plate-like electrodes 16 in a case 15, a water inlet 17 at one end in the longitudinal direction, and a water flow at the other end. An outlet 18 is provided. Inside the case 15, two plate-like electrodes 16 are disposed facing each other along the water flow from the inlet 17 to the outlet 18, and silver as a photoexcited antibacterial material is supplied by ions. Can do. Further, a connection terminal 19 for applying a voltage is provided on a part of the electrode 16.

ケース15の中に水が存在する状態で電極16に所定の電圧を印加すると、電極16の陽極側から電極構成金属の金属イオンが溶出する。電解槽10では、電圧の印加の有無で金属イオンの溶出、非溶出を選択できる。また、電流や電圧印加時間を制御することにより金属イオンの溶出量を制御できる。電解槽10に長時間一方向に電流を流すと、陽極側となっている電極が減耗するとともに、陰極側となっている電極には水中のカルシウムなどの不純物がスケールとして固着する。また、電極の成分金属の塩化物及び硫化物が電極表面に発生する。これは電解槽10の性能低下をきたすので、電極の極性を反転して電極駆動回路を運転できるように構成されている。   When a predetermined voltage is applied to the electrode 16 in a state where water is present in the case 15, metal ions of the electrode constituent metal are eluted from the anode side of the electrode 16. In the electrolytic cell 10, elution or non-elution of metal ions can be selected depending on whether or not voltage is applied. Moreover, the elution amount of metal ions can be controlled by controlling the current and voltage application time. When an electric current is passed through the electrolytic cell 10 in one direction for a long time, the electrode on the anode side is depleted and impurities such as calcium in water are fixed as a scale on the electrode on the cathode side. In addition, chlorides and sulfides of the component metals of the electrode are generated on the electrode surface. Since this causes a decrease in the performance of the electrolytic cell 10, the electrode drive circuit can be operated by reversing the polarity of the electrodes.

外槽2の正面側の上向き傾斜面に設けた開口部を蓋13により開閉自在に覆い、この蓋13を開くことにより洗濯物出入口を通して内槽3内に洗濯物を出し入れすることができる。蓋13を上向き傾斜面に設けているため、洗濯物の出し入れは腰を屈めることなく行うことができ、一般には横向きにある開口部から洗濯物を出し入れする洗濯機の作業性の悪さを改善している。   The opening provided in the upward inclined surface on the front side of the outer tub 2 is covered with a lid 13 so that it can be opened and closed. By opening the lid 13, the laundry can be taken into and out of the inner tub 3 through the laundry entrance. Since the lid 13 is provided on the upward inclined surface, the laundry can be taken in and out without bending the waist, and generally the poor workability of the washing machine for taking in and out the laundry from the sideways opening is improved. is doing.

次に、動作について説明する。蓋13を開いて内槽3内に洗濯物及び洗剤を投入して洗濯機本体1の運転を開始させると、外槽2内には給水路8から所定量の注水がなされ、モータ12により内槽3が回転駆動されて洗濯行程が開始される。内槽3の回転により、内槽3内に収容された洗濯物は内槽3の内周面に設けられたバッフル11によって回転方向に持ち上げられ、持ち上げられた適当な高さ位置から落下する撹拌動作が繰り返されるので、洗濯物には叩き洗いの作用が及んで洗濯がなされる。   Next, the operation will be described. When the lid 13 is opened and the laundry and detergent are put into the inner tub 3 to start the operation of the washing machine main body 1, a predetermined amount of water is poured into the outer tub 2 from the water supply path 8. The tub 3 is rotationally driven to start the washing process. As the inner tub 3 rotates, the laundry stored in the inner tub 3 is lifted in the rotating direction by the baffle 11 provided on the inner peripheral surface of the inner tub 3, and agitated to fall from a lifted appropriate height position. Since the operation is repeated, the laundry has the effect of tapping and washing.

所要の洗濯時間の後、汚れた洗濯液は排水路6から排出され、内槽3を高速回転させる脱水動作により洗濯物に含まれた洗濯液を脱水し、その後、外槽2内に電解槽10で生成された銀イオン水を添加した水を給水路8から注水して濯ぎ行程が実施される。この濯ぎ行程においても内槽3内に収容された洗濯物は内槽3の回転によりバッフル11により持ち上げられて落下する撹拌動作が繰り返されて濯ぎ洗いが実施される。   After the required washing time, the dirty washing liquid is discharged from the drainage channel 6, the washing liquid contained in the laundry is dehydrated by a dehydrating operation that rotates the inner tub 3 at a high speed, and then the electrolytic tub is placed in the outer tub 2. The rinsing process is carried out by pouring the water added with the silver ion water produced in 10 from the water supply channel 8. Also in this rinsing process, the laundry stored in the inner tub 3 is repeatedly swirled by the stirring operation of being lifted and dropped by the baffle 11 by the rotation of the inner tub 3.

濯ぎ洗い実施後、濯ぎ液は排水路6から排出され、内槽3を高速回転させる脱水動作により洗濯物に含まれた濯ぎ液を脱水し、洗濯行程が終了する。この濯ぎ脱水行程において、洗濯物および金属イオン水を添加した濯ぎ液に、LED5により光を照射する。   After the rinsing, the rinsing liquid is discharged from the drainage channel 6, and the rinsing liquid contained in the laundry is dehydrated by a dehydrating operation that rotates the inner tub 3 at a high speed, and the washing process is completed. In this rinsing dehydration process, the rinsing liquid to which the laundry and metal ion water are added is irradiated with light by the LED 5.

なお、本実施の形態では、内槽3の回転中心に略傾斜方向に回転軸を設け、内槽3の軸心方向を背面側から正面側に向けて上向きに傾斜させて配設しているが、内槽3の回転中心に略水平方向に回転軸を設け、内槽3の軸心方向を略水平方向に配設してもよい。   In the present embodiment, a rotation axis is provided in a substantially inclined direction at the center of rotation of the inner tank 3, and the axial center direction of the inner tank 3 is inclined upward from the back side to the front side. However, a rotation axis may be provided in the substantially horizontal direction at the center of rotation of the inner tub 3, and the axial center direction of the inner tub 3 may be disposed in the substantially horizontal direction.

また、本実施の形態では、外槽2の上端周縁部にLED5を配設しているが、内槽3の回転中心の略延長上の蓋13に配設してもよい。   In the present embodiment, the LED 5 is disposed at the upper peripheral edge of the outer tub 2, but it may be disposed on a lid 13 that is substantially extended from the rotation center of the inner tub 3.

また、電解槽10では給水後の銀濃度が0.01ppm〜5ppmになるように洗濯槽4の水の量にあわせて電流ないし電圧を調整している。このことにより、洗濯物の除菌、抗菌性能を維持している。衣類量または注水量が少ない場合には銀濃度を低くし、洗濯物の量または水の量が多い場合には銀濃度が高くなるように制御手段14で調整している。   Moreover, in the electrolytic cell 10, the electric current thru | or voltage are adjusted according to the quantity of the water of the washing tub 4 so that the silver concentration after water supply may be 0.01 ppm-5 ppm. This maintains the sterilization and antibacterial performance of the laundry. The control means 14 adjusts the silver concentration to be low when the amount of clothing or water injection is small, and to increase when the amount of laundry or water is large.

さらに、制御手段14では、排水弁7、給水弁9、モータ12の動作制御を行い、洗い工程、濯ぎ脱水工程の制御を行っている。具体的には、洗い工程および濯ぎ脱水工程で、注水動作、洗い(濯ぎ)動作、排水動作、脱水動作の制御を行っている。   Further, the control means 14 controls the operation of the drain valve 7, the water supply valve 9, and the motor 12, and controls the washing process and the rinsing dehydration process. Specifically, in the washing process and the rinsing dehydration process, the water pouring operation, the washing (rinsing) operation, the draining operation, and the dehydrating operation are controlled.

本実施の形態では、図3に示したように濯ぎ脱水工程(注水、濯ぎ、排水、脱水で構成)を2回行い、それぞれの注水動作時に電解槽10に通電を行い、銀を給水路8の水に溶解している。また、注水、濯ぎ、排水、脱水時にLED5で衣類および銀を溶解した水に光を照射している。   In this embodiment, as shown in FIG. 3, the rinsing dehydration step (comprising water injection, rinsing, draining, and dehydration) is performed twice, and the electrolytic cell 10 is energized during each water injection operation to supply silver to the water supply channel 8. Is dissolved in water. Moreover, light is irradiated to the water which melt | dissolved clothing and silver with LED5 at the time of water pouring, rinsing, draining, and dehydrating.

銀による光触媒反応は、水を介して行われる。すなわち、以下のメカニズムで洗濯物の除菌、抗菌が行われる。   The photocatalytic reaction with silver is carried out through water. That is, sterilization and antibacterial of laundry are performed by the following mechanism.

電気分解で水中に溶解した銀はイオン状態で存在する。この銀イオンは、洗濯物に電気的に吸着する。ここに光が照射されると、銀イオンの一部が金属銀になる過程で水分子に電子が遷移し、ヒドロキシラジカルを発生する。ヒドロキシラジカルを生成するには水分子が必須である。この反応は、水中よりも洗濯物表面に付着した状態で顕著である。したがって、被処理物である洗濯物に水が存在する場合、水中に溶解した銀と付着した銀の両方の光触媒作用で除菌効果を向上させている。   Silver dissolved in water by electrolysis exists in an ionic state. This silver ion is electrically adsorbed on the laundry. When light is irradiated here, in the process where some of the silver ions become metallic silver, electrons transition to water molecules, generating hydroxy radicals. Water molecules are essential for generating hydroxy radicals. This reaction is more prominent when attached to the laundry surface than in water. Therefore, when water is present in the laundry to be treated, the disinfection effect is improved by the photocatalytic action of both silver dissolved in the water and attached silver.

なお、本実施の形態では、除菌、抗菌効果を最大限に発揮するためにすべての濯ぎ脱水工程で銀を溶解し、光を照射したが、濯ぎ脱水工程を複数回行う場合には、少なくともそのうちのいずれか一回で行うことで除菌抗菌効果を発揮することができる。さらに、濯ぎ脱水工程の最終回の注水動作時に、電解槽10から銀を供給すれば、最も効率的に銀を使用し洗濯物の除菌、抗菌を行うことができる。   In the present embodiment, in order to maximize the sterilization and antibacterial effect, silver was dissolved in all the rinsing dehydration steps and irradiated with light. The antibacterial and antibacterial effect can be exhibited by performing any one of them. Furthermore, if silver is supplied from the electrolytic cell 10 during the final water injection operation in the rinsing dehydration step, the laundry can be sterilized and antibacterial using silver most efficiently.

洗濯物の除菌、抗菌処理を行う際には銀の濃度が重要な要因となる。処理衣類の最少量の場合(洗濯槽の水20Lに対して洗濯物0.2kg)の場合であれば、0.01ppmで十分な除菌、抗菌効果を発揮できるが、衣類量が多くなるにしたがって、銀濃度は高くなるが、電解槽10で水中の銀濃度を上昇させると沈殿が発生し、1〜5ppmからこの沈殿現象が顕著になり、水に十分に溶解することができなくなる。したがって、効率的に除菌を行う場合には5ppm以下にする必要がある。   The concentration of silver is an important factor in laundry sterilization and antibacterial treatment. In the case of the minimum amount of treated clothing (0.2 kg of laundry for 20 liters of water in the washing tub), 0.01 ppm can exhibit sufficient sterilization and antibacterial effects, but the amount of clothing will increase. Therefore, although the silver concentration is increased, when the silver concentration in the water is increased in the electrolytic cell 10, precipitation occurs, and this precipitation phenomenon becomes remarkable from 1 to 5 ppm and cannot be sufficiently dissolved in water. Therefore, when sterilizing efficiently, it is necessary to make it 5 ppm or less.

また、洗濯物に付着した細菌などの微生物を効果的に除菌、抗菌するためには、光触媒作用でヒドロキシラジカルなどの活性酸素種を生成する必要がある。そのためには洗濯物に付着させる銀の量を0.001μg/cm〜0.30μg/cmにしている。このことにより付着した銀の浪費を最小限にしながらラジカルを発生させ、洗濯物表面に付着した銀からヒドロキシラジカルなどの活性酸素種を効率的生成することができるので、除菌、抗菌効果を向上することができる。 In order to effectively sterilize and antibacterial microorganisms such as bacteria attached to the laundry, it is necessary to generate reactive oxygen species such as hydroxy radicals by photocatalysis. To do so is the amount of silver is deposited on the laundry to 0.001μg / cm 2 ~0.30μg / cm 2 . This generates radicals while minimizing the waste of attached silver, and can efficiently generate reactive oxygen species such as hydroxy radicals from silver attached to the laundry surface, improving sterilization and antibacterial effects can do.

なお、本実施の形態では光励起抗菌材として銀を選定し、電解槽10内に銀の電極を備え、電気分解で水への溶解濃度を調整したが、抗菌作用を有する光励起抗菌材として銀のほかに亜鉛、ニッケル、銅がある。これらを除菌、抗菌したい微生物の対象に応じて使い分けることで最適な除菌、抗菌効果を期待できる。例えば、カビに対しては、亜鉛、藻類については銅、ニッケルが効果的である。   In the present embodiment, silver is selected as the photoexcited antibacterial material, and a silver electrode is provided in the electrolytic cell 10, and the dissolution concentration in water is adjusted by electrolysis. There are also zinc, nickel, and copper. Optimum sterilization and antibacterial effects can be expected by properly using these according to the target of the microorganism to be sterilized and antibacterial. For example, zinc is effective for mold, and copper and nickel are effective for algae.

また、制御手段14でモータ12を始動し、内槽2を回転させ、洗濯物を回転させ遠心力により洗濯物内部にはいった銀を含んだ水を表面に移動させることで、銀が洗濯物表面に付着しやすくなる。そして、衣類表面に濃縮された銀の単独の作用により、洗濯物に付着している細菌を除菌するとともに、表面に移動した銀が光を受けやすくなるので、光触媒反応が活発におこり、ヒドロキシラジカルあるいはスーパーオキシド等の活性酸素種を生成できるので除菌効果が向上する。また、これらの相乗効果により低濃度でも除菌、抗菌効果を発揮することができる。さらに、活性酸素種による酸化分解を利用するので、抗菌スペクトルを拡げ大腸菌や黄色ブドウ球菌の以外の細菌やカビに対しても効果を発揮することができる。   Further, the motor 12 is started by the control means 14, the inner tub 2 is rotated, the laundry is rotated, and the water containing silver that has entered the laundry is moved to the surface by centrifugal force. It becomes easy to adhere to the surface. In addition, bacteria alone attached to the laundry are sterilized by the single action of silver concentrated on the clothing surface, and the silver that has moved to the surface is easily exposed to light. Since active oxygen species such as radicals or superoxide can be generated, the sterilization effect is improved. In addition, these synergistic effects can exhibit sterilization and antibacterial effects even at low concentrations. Furthermore, since oxidative decomposition by reactive oxygen species is utilized, the antibacterial spectrum can be expanded to exert effects on bacteria and molds other than Escherichia coli and Staphylococcus aureus.

なお、本実施の形態では、注水工程から脱水工程までの間LED5で光を照射したが、乾燥機能付き洗濯機においては、乾燥が完了するまでの間照射するのが効率的である。   In addition, in this Embodiment, although light was irradiated with LED5 from the water injection process to the spin-drying | dehydration process, in a washing machine with a drying function, it is efficient to irradiate until drying is completed.

以上のように、本発明にかかる洗濯機は、洗濯物の除菌、抗菌を効果的に行うことができるので、家庭用だけでなく業務用の衛生装置および洗濯機、食器洗浄器などの家電製品へも適用できる。   As described above, the washing machine according to the present invention can effectively perform sterilization and antibacterial of laundry, so that not only home hygiene devices but also household appliances such as washing machines and dishwashers It can also be applied to products.

本発明の実施の形態1における洗濯機の構成図Configuration diagram of washing machine according to Embodiment 1 of the present invention 同洗濯機の電解槽の斜視図Perspective view of electrolytic bath of the washing machine 同洗濯機の工程図Process diagram of the washing machine 従来の洗濯機の構成図Configuration diagram of a conventional washing machine

符号の説明Explanation of symbols

1 洗濯機本体
2 外槽
3 内槽
4 洗濯槽
5 LED(光照射手段)
8 給水路
9 給水弁(水供給手段)
10 電解槽(光励起抗菌材供給手段)
12 モータ(駆動手段)
DESCRIPTION OF SYMBOLS 1 Washing machine main body 2 Outer tub 3 Inner tub 4 Washing tub 5 LED (light irradiation means)
8 Water supply path 9 Water supply valve (water supply means)
10 Electrolysis tank (photo-excited antibacterial material supply means)
12 Motor (drive means)

Claims (6)

洗濯物を収容する洗濯槽と、前記洗濯槽に水を供給する水供給手段と、前記水供給手段で供給された水に光励起抗菌材を供給する光励起抗菌材供給手段と、前記洗濯槽内の洗濯物および水に光を照射する光照射手段とを備え、前記光照射手段は、洗濯物に光励起抗菌材添加水が存在するときに光を照射するようにした洗濯機。 A washing tub for storing laundry; a water supply means for supplying water to the washing tub; a photoexcited antibacterial material supply means for supplying a photoexcited antibacterial material to the water supplied by the water supply means; A washing machine comprising a laundry and a light irradiating means for irradiating light to the water, wherein the light irradiating means irradiates the laundry with light-excited antibacterial material-added water. 光励起抗菌材は、光励起作用のある金属元素を少なくともひとつを含有することを特徴とした請求項1記載の洗濯機。 The washing machine according to claim 1, wherein the photoexcited antibacterial material contains at least one metal element having a photoexciting action. 光励起抗菌材供給手段は、少なくとも金属を含有する電極を有する電解槽を有し、電気分解により前記金属を水中に供給する構成とした請求項2記載の洗濯機。 The washing machine according to claim 2, wherein the photoexcited antibacterial material supply means includes an electrolytic cell having an electrode containing at least a metal, and supplies the metal into water by electrolysis. 洗濯槽を駆動する駆動手段を設け、前記駆動手段により前記洗濯槽内の洗濯物の位置を変更し、光励起抗菌材を洗濯物の表面に配置するようにした請求項1〜3のいずれか1項に記載の洗濯機。 The driving means for driving the washing tub is provided, the position of the laundry in the washing tub is changed by the driving means, and the photoexcited antibacterial material is arranged on the surface of the laundry. The washing machine according to item. 光励起抗菌材を銀とし、洗濯物への銀付着量を0.001〜0.3μg/cmとした請求項1〜4のいずれか1項に記載の洗濯機。 The washing machine according to any one of claims 1 to 4, wherein the photoexcited antibacterial material is silver and the amount of silver adhering to the laundry is 0.001 to 0.3 µg / cm 2 . 光励起抗菌材を銀とし、水中の銀濃度を0.01〜5ppmとした請求項1〜4のいずれか1項に記載の洗濯機。 The washing machine according to any one of claims 1 to 4, wherein the photoexcited antibacterial material is silver and the silver concentration in water is 0.01 to 5 ppm.
JP2006307425A 2006-11-14 2006-11-14 Washing machine Pending JP2008119289A (en)

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