JPS632148Y2 - - Google Patents

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Publication number
JPS632148Y2
JPS632148Y2 JP15028581U JP15028581U JPS632148Y2 JP S632148 Y2 JPS632148 Y2 JP S632148Y2 JP 15028581 U JP15028581 U JP 15028581U JP 15028581 U JP15028581 U JP 15028581U JP S632148 Y2 JPS632148 Y2 JP S632148Y2
Authority
JP
Japan
Prior art keywords
tank
inner tank
diaphragm
water
holder
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.)
Expired
Application number
JP15028581U
Other languages
Japanese (ja)
Other versions
JPS5858890U (en
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed filed Critical
Priority to JP15028581U priority Critical patent/JPS5858890U/en
Publication of JPS5858890U publication Critical patent/JPS5858890U/en
Application granted granted Critical
Publication of JPS632148Y2 publication Critical patent/JPS632148Y2/ja
Granted legal-status Critical Current

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Description

【考案の詳細な説明】 本考案は水電解によりアルカリイオン濃度の高
い飲料水を得るためのイオン水整水器において、
アルカリイオン水と酸性水とを区分する隔膜の保
持装置に関する。
[Detailed description of the invention] This invention is an ionized water conditioner for obtaining drinking water with a high alkaline ion concentration by water electrolysis.
The present invention relates to a holding device for a diaphragm that separates alkaline ionized water and acidic water.

本考案にかかるイオン水整水器は、第1図に示
す如く、蓋構造体1の装着部11に対し、上部が
開口した円筒状の外槽2を着脱自在に設けてお
り、この外槽2内の中央にポーラスな材質で作ら
れた隔膜の機能を有した上部開口の円筒状の内槽
3が配置される構造である。外槽2内には陰電極
4が、内槽3内には陽電極5が設けられている。
各電極4及び5は、蓋構造体1の装着部11の底
面12に電気的に絶縁されて固定されており、陰
電極4は負電圧が印加され、陽電極5には正電圧
が印加される構成である。上記蓋構造体1の内部
には電圧供給回路が設けられており、該回路は陰
電極4に負電圧を、陽電極5に正電圧を印加する
もので、蓋構造体1の装着部11に設けられた電
源ジヤツク6を介して電源が供給される。蓋構造
体1の上部13に設けられた表示体14は、通電
状態を示すもので、各電極4,5に電圧が印加さ
れた状態を表示している。又、図中7は隔膜であ
る内槽3に形成された流入穴である。
The ionized water conditioner according to the present invention, as shown in FIG. It has a structure in which a cylindrical inner tank 3 made of a porous material and having the function of a diaphragm and having an open top is arranged in the center of the tank 2. A negative electrode 4 is provided in the outer tank 2, and a positive electrode 5 is provided in the inner tank 3.
Each electrode 4 and 5 is electrically insulated and fixed to the bottom surface 12 of the attachment part 11 of the lid structure 1, and a negative voltage is applied to the negative electrode 4, and a positive voltage is applied to the positive electrode 5. The configuration is as follows. A voltage supply circuit is provided inside the lid structure 1, and this circuit applies a negative voltage to the negative electrode 4 and a positive voltage to the positive electrode 5. Power is supplied via a power jack 6 provided. The display 14 provided on the upper part 13 of the lid structure 1 indicates the energized state, and displays the state in which voltage is applied to each electrode 4, 5. Further, 7 in the figure is an inflow hole formed in the inner tank 3 which is a diaphragm.

上述の構造において、外槽2に水を規定量入
れ、この外槽を蓋構造体1の装置部11に装着す
る。外槽2内の一部の水は、流入穴7を通して内
槽3にも流入し、外槽2の水位が流入穴7の高さ
になるまで内槽3に注入される。この時、内槽3
には規定量の水が注入されることになる。
In the above structure, a specified amount of water is poured into the outer tank 2, and this outer tank is attached to the device part 11 of the lid structure 1. A part of the water in the outer tank 2 also flows into the inner tank 3 through the inflow hole 7, and is injected into the inner tank 3 until the water level in the outer tank 2 reaches the height of the inflow hole 7. At this time, inner tank 3
A specified amount of water will be injected.

この状態で各電極4,5に各々の電圧が印加さ
れれば、電解が始まり内槽3の陽極槽bの水は、
内槽3の隔膜を浸透して外槽2の陰極槽aに移動
する。この移動により陰極槽aの水位が上がり、
流入穴7より陽極槽bへ流れ込む。この循環を繰
り返えすことで、外槽2内にアルカリイオン水が
内槽3内に酸性水が夫々生成される。
If each voltage is applied to each electrode 4, 5 in this state, electrolysis will start and the water in the anode tank b of the inner tank 3 will be
It penetrates the diaphragm of the inner tank 3 and moves to the cathode tank a of the outer tank 2. This movement raises the water level in cathode tank a,
It flows into the anode tank b from the inflow hole 7. By repeating this circulation, alkaline ionized water is generated in the outer tank 2 and acidic water is generated in the inner tank 3.

これに対しイオン水整水器の陽及び陰極槽を構
成するものとして、1つの槽を隔膜にて2つに仕
切る構造のものがある。この構造に比べ第1図に
示すものは、小型化計れる等の利点を有してい
る。しかし、第1図に示す構造のものにおいて、
内槽3の配置及び内槽3内の例えば酸性水(又は
アルカリイオン水)の取出し等に問題があつた。
又、内槽3(隔膜)は素焼で作られているため、
不注意によりこわれやすい。そして、内槽3内の
酸性水の取り出し時直接手で触れると不衛生であ
る。
On the other hand, there is a structure in which one tank is partitioned into two with a diaphragm as a structure for configuring the positive and cathode tanks of an ionized water conditioner. Compared to this structure, the structure shown in FIG. 1 has advantages such as being smaller in size. However, in the structure shown in Figure 1,
There were problems with the arrangement of the inner tank 3 and the removal of, for example, acidic water (or alkaline ionized water) from the inner tank 3.
In addition, since the inner tank 3 (diaphragm) is made of bisque,
Easy to break due to carelessness. Moreover, it is unsanitary if you touch the acidic water directly with your hands when taking out the acidic water in the inner tank 3.

本考案は上述の問題を解消した隔膜(内槽3)
の保持装置を提供するものである。
The present invention is a diaphragm (inner tank 3) that solves the above problems.
The present invention provides a holding device.

本考案の保持装置を詳細に説明すると、内槽3
を保持する保持体8を有している。保持体8は内
部の底部に内槽3の底部を固定保持するための弾
性を有した保持部81を設け、また保持体8を容
易に立てるためのツバ部82を底部周囲に一体形
成している。保持体8は例えば外槽2内の定位置
に位置させるために、陰電極4が内面に接して挿
入される形状に形成されている。つまり陰電極4
を第2図に示す如く保持体8に挿入すると、保持
体8の内面が陰電極4に圧接し、保持体8は固定
される構成である。この状態で、外槽2を蓋構造
体1の装着部11に装着すれば、保持体8は陰電
極4に固定されていることから、外槽2内の定位
置に配置され、内槽3はその位置に保持される。
又、保持体8は側壁に水が流通する流通孔83を
多数形成している。
To explain the holding device of the present invention in detail, the inner tank 3
It has a holder 8 that holds the . The holding body 8 is provided with a holding part 81 having elasticity for fixing and holding the bottom of the inner tank 3 at the internal bottom part, and a collar part 82 is integrally formed around the bottom part to allow the holding body 8 to be easily erected. There is. The holder 8 is formed in such a shape that the negative electrode 4 is inserted in contact with the inner surface of the holder 8 in order to position it at a fixed position within the outer tank 2, for example. In other words, the negative electrode 4
When inserted into the holder 8 as shown in FIG. 2, the inner surface of the holder 8 comes into pressure contact with the negative electrode 4, and the holder 8 is fixed. In this state, when the outer tank 2 is attached to the attachment part 11 of the lid structure 1, the holder 8 is fixed to the cathode 4, so it is placed at a fixed position in the outer tank 2, and the inner tank 3 is held in that position.
Further, the holding body 8 has a number of flow holes 83 formed in the side wall thereof, through which water flows.

上述の構造において、イオン水を生成する場
合、内槽3を保持体8に挿入すれば内槽3の底部
が保持部81に固定される。第2図に示す状態で
蓋構造体1の下部11の底面12に固定された電
極4,5を挿入すれば、電極5が内槽3内に位置
し、電極4にて保持体8が蓋構造体1に固定され
る。そして、外槽2に規定量の水を満たし、この
外槽2を蓋構造体1の装着部11に装着すれば、
第1図に示す如く内槽3にも規定量の水が流入穴
7より流入する。この場合、内槽3を含めて保持
体8は外槽2内の定位置に保持されることにな
る。
In the above structure, when generating ionized water, the bottom of the inner tank 3 is fixed to the holding part 81 by inserting the inner tank 3 into the holding part 81. If the electrodes 4 and 5 fixed to the bottom surface 12 of the lower part 11 of the lid structure 1 are inserted in the state shown in FIG. It is fixed to the structure 1. Then, if the outer tank 2 is filled with a specified amount of water and the outer tank 2 is attached to the mounting part 11 of the lid structure 1,
As shown in FIG. 1, a specified amount of water also flows into the inner tank 3 through the inflow hole 7. In this case, the holder 8 including the inner tank 3 is held at a fixed position within the outer tank 2.

第1図の状態で陰電極4、陽電極5に夫々の極
性の電圧を印加すれば、内槽3(隔膜)を通して
電解が始まり、外槽2内にはアルカリイオン水
が、内槽3内には酸性水が夫々生成される。生成
された各水を取り出すためには、まず外槽2を蓋
構造体1より取り外せばアルカリイオン水を取り
出せる。又、内槽3の酸性水は電極4を保持体8
より外せば容易に取り出すことができる。ここ
で、内槽3は直接手で触れることなく、保持体8
を持つて内槽3内の水を取り出すことができ、衛
生面でも効果的である。しかも、保持体8は内槽
3の保護カバーとして役立ち、水平位置であれば
内槽3を立てて置くこともできる。更に保持体8
に電極4を挿入しておけば、電極4,5の保管及
び保護等にも役立つ。
If voltages of respective polarities are applied to the negative electrode 4 and the positive electrode 5 in the state shown in Fig. 1, electrolysis will begin through the inner tank 3 (diaphragm), and alkaline ionized water will flow into the outer tank 2 and into the inner tank 3. Acidic water is produced respectively. In order to take out each generated water, first remove the outer tank 2 from the lid structure 1, and then the alkaline ionized water can be taken out. In addition, the acidic water in the inner tank 3 holds the electrode 4 in the holder 8.
You can easily take it out by removing it. Here, the inner tank 3 is not touched directly by hand, but the holding body 8
The water in the inner tank 3 can be taken out by holding it, which is also effective in terms of hygiene. Moreover, the holder 8 serves as a protective cover for the inner tank 3, and the inner tank 3 can be placed upright if it is in a horizontal position. Furthermore, the holding body 8
If the electrode 4 is inserted in the holder, it is useful for storing and protecting the electrodes 4 and 5.

以上説明した様に本考案のイオン水整水器の隔
膜保持装置によれば、隔膜(内槽)を保持する保
持体を外槽内に配置する構成であることから、隔
膜を保護すると同時に外槽内に容易に配置でき、
各生成水の取り出し時においても隔膜に直接に手
を触れずに取り出すことが可能で衛生的である。
また、隔膜機能を有する内槽を保持する保持体を
外槽に設けられた電極にて位置決め固定する構成
としたことから、内槽の位置規制等を行う手段を
上記電極で兼用しており、別途位置規制手段等を
必要とせずに、外槽内に上記内槽を正確に定位置
に固定できる。
As explained above, according to the diaphragm holding device of the ionized water conditioner of the present invention, since the holder for holding the diaphragm (inner tank) is placed in the outer tank, it protects the diaphragm and at the same time protects the diaphragm. Can be easily placed in the tank,
Even when taking out each generated water, it is possible to take out the water without touching the diaphragm directly, which is sanitary.
In addition, since the holder that holds the inner tank having a diaphragm function is positioned and fixed by an electrode provided on the outer tank, the electrodes also serve as a means for regulating the position of the inner tank, etc. The inner tank can be accurately fixed at a fixed position within the outer tank without requiring a separate position regulating means or the like.

【図面の簡単な説明】[Brief explanation of drawings]

第1図は本考案における隔膜保持装置を適用さ
せたイオン水整水器の構造を示す断面図、第2図
は本考案にかかる隔膜の保持体と蓋構造体とを分
離した状態を示す斜視図である。 1……蓋構造体、11……外槽の装着部、12
……電極固定用の底面、2……外槽、3……内槽
(隔膜)、4,5……陰、陽電極、8……保持体、
81……保持部、82……ツバ部、83……流通
孔。
Fig. 1 is a sectional view showing the structure of an ionized water conditioner to which the diaphragm holding device of the present invention is applied, and Fig. 2 is a perspective view showing the separated state of the diaphragm holder and lid structure according to the present invention. It is a diagram. DESCRIPTION OF SYMBOLS 1... Lid structure, 11... Outer tank attachment part, 12
... Bottom surface for fixing the electrode, 2 ... Outer tank, 3 ... Inner tank (diaphragm), 4, 5 ... Negative and positive electrodes, 8 ... Holder,
81... Holding section, 82... Collar section, 83... Distribution hole.

Claims (1)

【実用新案登録請求の範囲】[Scope of utility model registration request] 外槽内に隔膜機能を有した内槽を配置し、各槽
に電解を行うための電極を夫々設けてなるイオン
水整水器において、上記内槽を内部に保持固定す
る保持体を上記外槽内に収容可能に設け、該保持
体は上記外槽内に位置する電極に挿入固定される
構成としたことを特徴とするイオン水整水器の隔
膜保持装置。
In an ionized water conditioner in which an inner tank with a diaphragm function is arranged inside an outer tank, and each tank is provided with an electrode for electrolysis, a holder for holding and fixing the inner tank inside is attached to the outer tank. 1. A diaphragm holding device for an ionized water conditioner, characterized in that the diaphragm holding device is configured to be housed in a tank, and the holding body is inserted and fixed to an electrode located in the outer tank.
JP15028581U 1981-10-09 1981-10-09 Ionized water conditioner diaphragm holding device Granted JPS5858890U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP15028581U JPS5858890U (en) 1981-10-09 1981-10-09 Ionized water conditioner diaphragm holding device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP15028581U JPS5858890U (en) 1981-10-09 1981-10-09 Ionized water conditioner diaphragm holding device

Publications (2)

Publication Number Publication Date
JPS5858890U JPS5858890U (en) 1983-04-21
JPS632148Y2 true JPS632148Y2 (en) 1988-01-20

Family

ID=29943018

Family Applications (1)

Application Number Title Priority Date Filing Date
JP15028581U Granted JPS5858890U (en) 1981-10-09 1981-10-09 Ionized water conditioner diaphragm holding device

Country Status (1)

Country Link
JP (1) JPS5858890U (en)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP6143968B2 (en) * 2015-03-30 2017-06-07 株式会社東芝 Electrolyzed water generator and electrode unit

Also Published As

Publication number Publication date
JPS5858890U (en) 1983-04-21

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