JPH0910770A - Liquid modifying treatment apparatus - Google Patents
Liquid modifying treatment apparatusInfo
- Publication number
- JPH0910770A JPH0910770A JP18471795A JP18471795A JPH0910770A JP H0910770 A JPH0910770 A JP H0910770A JP 18471795 A JP18471795 A JP 18471795A JP 18471795 A JP18471795 A JP 18471795A JP H0910770 A JPH0910770 A JP H0910770A
- Authority
- JP
- Japan
- Prior art keywords
- liquid
- insulating
- cylinder
- electrode body
- cylindrical body
- 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.)
- Granted
Links
Landscapes
- Water Treatment By Electricity Or Magnetism (AREA)
Abstract
Description
【0001】[0001]
【産業上の利用分野】本発明は例えば水や油等の設備配
管系やボイラー等の循環液系統に用いられる液体改質処
理装置に関するものである。BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a liquid reforming treatment apparatus used in a facility piping system for water or oil or a circulating liquid system such as a boiler.
【0002】[0002]
【従来の技術】従来この種の水の改質処理装置として、
米国航空宇宙局で開発された電子場処理装置が知られて
いる。2. Description of the Related Art Conventionally, as this type of water reforming treatment apparatus,
Electronic field processing devices developed by the United States Aerospace Agency are known.
【0003】この電子場処理装置とは、水に微弱な電流
を流すことにより磁場や静電場によって起電力が生起さ
れ、微弱な電流は水分子の電子を励起させ、陰イオン水
を発生して水の性質を変えてしまうことを利用したたも
ので、そのような水の電子に変化を与える場を電子場と
称している。具体的には、処理すべき水が通過可能な導
電性を有する通液筒体と、通液筒体内に配置される電極
体と、電極体を通液筒体に対して電気的絶縁及び封液可
能な液封部と、通液筒体を陰極とし該電極体を陽極とし
て通電可能な電源部とを備えてなる構造のものが知られ
ている。With this electron field processing device, an electromotive force is generated by a magnetic field or an electrostatic field when a weak current is passed through water, and the weak current excites electrons of water molecules to generate anion water. It uses the fact that it changes the properties of water, and the field that changes the electrons of water is called the electron field. Specifically, the liquid passage cylinder having conductivity that allows water to be treated, the electrode body disposed in the liquid passage cylinder, and the electrode body electrically insulated and sealed from the liquid passage cylinder. 2. Description of the Related Art There is known a structure including a liquid sealing part capable of liquid flow and a power source part capable of conducting electricity with the liquid passage cylinder as a cathode and the electrode body as an anode.
【0004】しかして、電源部により通液筒体を陰極と
し該電極体を陽極として微弱電流を通電させ、これによ
り電子場を形成した状態で処理すべき水を通液筒体内に
通過させることにより、通過する水の電子に変化を与え
て、これにより陰イオン水が発生して疑似ブラウン運動
がなされるものと考えられ、通過する水内のスケールの
除去やサビの発生の抑制、引き締まった浄化された水の
生成等の水の改質効果を得ることになる。Thus, a weak current is passed through the liquid supply cylinder as the cathode and the electrode body as the anode by the power supply unit, so that the water to be treated can pass through the liquid cylinder while the electron field is formed. It is thought that the electron changes the electrons of the passing water, which causes anionic water to generate pseudo-Brownian motion, which reduces the scale in the passing water and suppresses the formation of rust. A water reforming effect such as generation of purified water will be obtained.
【0005】[0005]
【発明が解決しようとする課題】しかしながら上記従来
構造の場合、電極体を通液筒体に対して電気的絶縁及び
液体から封止させる液封部の構造において、非常に複雑
な構造となっていると共に通液筒体及び電極体とは別体
構造であり、それだけ製作コストが高くなって一般に普
及し難いものとなっていると共に保守点検が非常に厄介
であり、使用の快適性に難点を有することがあるという
不都合を有している。However, in the case of the above-mentioned conventional structure, the structure of the liquid sealing portion for electrically insulating the electrode body from the liquid cylinder and sealing the liquid cylinder from the liquid becomes a very complicated structure. In addition, it has a separate structure from the liquid passage cylinder and the electrode body, which makes the manufacturing cost higher and it is difficult to spread in general, and maintenance is very troublesome, and there is a problem in comfort of use. It has the inconvenience of having.
【0006】[0006]
【課題を解決するための手段】本発明はこれらの課題を
解決することを目的とするもので、その要旨は、処理す
べき液体が通過可能な導電性を有する通液筒体と、該通
液筒体内に配置される電極体と、該電極体を通液筒体に
対して電気的絶縁及び封液可能な液封部と、該通液筒体
を陰極とし該電極体を陽極として通電可能な電源部とを
備えてなり、上記電極体の端部側に絶縁性を有する合成
樹脂製の絶縁筒体を挿通すると共に絶縁性を有する弾性
材からなる液封リングを介して絶縁性を有する合成樹脂
製の絶縁リングを挿通配置し、該電極体に絶縁リングの
抜止め部材を止着配置し、上記絶縁筒体に連結筒体を係
止外嵌着し、該連結筒体内に電極体の端部に外嵌着され
て絶縁性を有する合成樹脂製の絶縁スリーブを固定し、
該連結筒体に上記通液筒体への取付部を配設すると共に
連結筒体に電極体の端部を覆うカバー部を配設して構成
したことを特徴とする液体改質処理装置にある。SUMMARY OF THE INVENTION An object of the present invention is to solve these problems, and its gist is to provide a liquid-passing cylindrical body having conductivity that allows a liquid to be treated to pass therethrough, and the liquid-passing cylindrical body. An electrode body arranged in the liquid cylinder body, a liquid sealing portion capable of electrically insulating and sealing the electrode body with respect to the liquid passage cylinder body, and energizing with the liquid communication cylinder body as a cathode and the electrode body as an anode. And an insulating cylinder made of a synthetic resin having an insulating property is inserted into the end portion side of the electrode body, and the insulating property is provided through a liquid ring made of an elastic material having an insulating property. An insulating ring made of synthetic resin is inserted and arranged, a retaining member for the insulating ring is fixedly arranged on the electrode body, and a connecting cylinder body is locked and externally fitted to the insulating cylinder body. Fix an insulating sleeve made of synthetic resin that is externally fitted to the end of the body and has insulating properties,
A liquid reforming treatment apparatus characterized in that the connecting cylinder is provided with a mounting portion to the liquid passage cylinder, and the connecting cylinder is provided with a cover portion for covering an end of the electrode body. is there.
【0007】また上記絶縁筒体及び絶縁リング並びに絶
縁スリーブをポリアセタール樹脂から製作することがで
きると共に上記電極体をステンレス鋼から製作すること
ができ、又、上記電源部からの出力電圧を交流から変換
した直流3V〜15Vに設定することが可能である。The insulating cylinder, the insulating ring, and the insulating sleeve can be made of polyacetal resin, the electrode body can be made of stainless steel, and the output voltage from the power supply unit can be converted from AC. The direct current can be set to 3V to 15V.
【0008】[0008]
【作用】電源部により導電性を有する通液筒体を陰極と
し電極体を陽極として通電し、これにより電子場が形成
された状態で処理すべき液体を通液筒体内に通過させる
ことにより、液体の改質処理がなされることになり、こ
の際において、電極体と通液筒体との電気的絶縁及び封
液作用は、電極体の端部側に挿通された絶縁性を有する
合成樹脂製の絶縁筒体、絶縁性を有する弾性材からなる
液封リング及び絶縁性を有する合成樹脂製の絶縁リング
並びに絶縁スリーブによりなされ、これらの電極体に対
する固定は電極体に止着配置された抜止め部材及び上記
絶縁筒体に係止外嵌着された連結筒体並びに連結筒体内
に螺着固定され電極体の端部に外嵌着された絶縁性を有
する合成樹脂製の絶縁スリーブによりなされ、連結筒体
は取付部により上記通液筒体に取り付けられると共に電
極体の端部はカバー部により覆われることになる。The electric power is supplied from the power source unit using the conductive liquid-passing cylinder as a cathode and the electrode body as an anode, thereby passing the liquid to be treated in the state in which the electron field is formed, into the liquid-passing cylinder. The liquid is reformed, and at this time, the electrical insulation between the electrode body and the liquid passage cylinder and the sealing action are performed by the synthetic resin having an insulating property inserted into the end portion side of the electrode body. Made of an insulating cylindrical body, a liquid-sealing ring made of an elastic material having an insulating property, an insulating ring made of a synthetic resin having an insulating property, and an insulating sleeve, and the fixing to these electrode bodies is fixed to the electrode body. It is made of a stopper member, a connecting cylinder body that is externally engaged with the insulating cylinder body, and an insulating sleeve made of an insulating synthetic resin that is screwed and fixed in the connecting cylinder body and is externally fitted to the end of the electrode body. , The connecting cylinder is mounted on the End of the electrode body will be covered by the cover unit together with the attached to liquid passage tubular member.
【0009】この際絶縁筒体及び絶縁リング並びに絶縁
スリーブはポリアセタール樹脂から製作されると共に上
記電極体はステンレス鋼から製作され、又、上記電源部
からの出力電圧は交流から変換した直流3V〜15Vに
設定されることになる。In this case, the insulating cylinder, the insulating ring, and the insulating sleeve are made of polyacetal resin, the electrode body is made of stainless steel, and the output voltage from the power source section is DC 3V to 15V converted from AC. Will be set to.
【0010】[0010]
【実施例】図1乃至図7は本発明の実施例を示し、図1
乃至図6は第一実施例、図7は第二実施例である。1 to 7 show an embodiment of the present invention.
6 to 6 show a first embodiment, and FIG. 7 shows a second embodiment.
【0011】図1乃至図6の第一実施例において、1は
通液筒体であって、この場合循環液系統途中に縦型に配
置され、SUS304等のステンレス鋼等の導電性をも
つ金属材料から製作され、筒状にして下部側に流入口部
1aが形成され、上方側に流出口部1bが形成され、上
部にフランジ1cが形成され、下端部に通常は閉塞され
たドレン口部1dが形成されている。In the first embodiment shown in FIGS. 1 to 6, reference numeral 1 denotes a liquid passage cylinder, and in this case, it is arranged vertically in the middle of the circulating liquid system and has a conductive metal such as stainless steel such as SUS304. A drain port which is made of a material, is formed into a tubular shape, has an inflow port 1a formed on the lower side, an outflow port 1b formed on the upper side, a flange 1c formed on the upper side, and a normally closed drain port at the lower end. 1d is formed.
【0012】2は電極体であって、この場合棒状にして
SUS304等のステンレス鋼等の金属材料から製作さ
れ、上記通液筒体1内に配置されている。Reference numeral 2 denotes an electrode body, which in this case is made of a metal material such as stainless steel such as SUS304 in a rod shape, and is arranged in the liquid passage cylinder 1.
【0013】3は液封部であって、上記電極体2を通液
筒体1に対して電気的絶縁及び封液可能な構造に形成さ
れ、この場合電極体2の端部側にポリアセタール樹脂等
の絶縁性を有する合成樹脂製の絶縁筒体4を挿通すると
共にゴム等の絶縁性を有する弾性材からなる液封リング
5を介して同じくポリアセタール樹脂等の絶縁性を有す
る合成樹脂製の絶縁リング6を挿通配置し、電極体2の
外周面に絶縁リング6の金属製の止め輪としての抜止め
部材7を止着配置し、絶縁筒体4にSUS304等のス
テンレス鋼等の金属材料からなる連結筒体8を絶縁筒体
4の外周面に形成された係止段部4aと連結筒体8の内
周面に形成された係止段部8aとの係止作用により係止
外嵌着し、連結筒体8内に電極体2の端部に外嵌着され
てポリアセタール樹脂等の絶縁性を有する合成樹脂製の
絶縁スリーブ9を螺着固定して構成されている。A liquid sealing portion 3 is formed in a structure capable of electrically insulating and sealing the electrode body 2 with respect to the liquid passage cylinder 1. In this case, a polyacetal resin is provided on the end side of the electrode body 2. Insulation made of synthetic resin having insulating properties such as polyacetal resin is also inserted through the insulating cylindrical body 4 made of synthetic resin having insulating properties such as The ring 6 is inserted and arranged, and the retaining member 7 as a metal retaining ring of the insulating ring 6 is fixedly arranged on the outer peripheral surface of the electrode body 2. The insulating cylinder 4 is made of a metal material such as stainless steel such as SUS304. The connecting cylindrical body 8 is fitted to the outside of the insulating cylindrical body 4 by the locking action of the locking step portion 4a formed on the outer peripheral surface of the insulating cylindrical body 4 and the locking step portion 8a formed on the inner peripheral surface of the connecting cylindrical body 8. And is fitted onto the end portion of the electrode body 2 inside the connecting cylinder body 8 to form a polyacetal. And it is configured with synthetic resin insulating sleeve 9 having an insulating butter, and the like screwed fixedly.
【0014】しかして、電極体2と通液筒体1との電気
的絶縁及び封液作用は、電極体2の端部側に挿通された
絶縁筒体4、液封リング5及び絶縁リング6並びに絶縁
スリーブ9によりなされ、これらの電極体2に対する固
定は電極体2に止着配置された抜止め部材7及び連結筒
体8並びに絶縁スリーブ9によりなされる。Therefore, the electrical insulation and sealing action between the electrode body 2 and the liquid passage cylinder 1 are performed by the insulating cylinder body 4, the liquid sealing ring 5 and the insulating ring 6 which are inserted into the end portion side of the electrode body 2. Further, the insulating sleeve 9 is used to fix the electrode body 2 to the electrode body 2 by the retaining member 7 and the connecting cylinder body 8 which are fixedly mounted on the electrode body 2 and the insulating sleeve 9.
【0015】この場合上記連結筒体8に雄ねじ部からな
る取付部8bが形成され、上記通液筒体1のフランジ1
cにステンレス鋼や鉄材等の金属製のボルト10、ナッ
ト11及び座金12によりパッキン13を介してSUS
304等のステンレス鋼等の導電性をもつ金属材料から
なる接続盤体14を取付け固定し、接続盤体14に形成
された雌ねじ部14aに取付部8bを螺着固定し、通液
筒体1内に電極体2を挿通配置するように構成してい
る。In this case, a mounting portion 8b consisting of a male screw portion is formed on the connecting cylinder body 8, and the flange 1 of the liquid passage cylinder body 1 is formed.
c is made of metal such as stainless steel or iron, bolts 10, nuts 11 and washers 12 and packing 13 for SUS
The connection board body 14 made of a conductive metal material such as 304 stainless steel is attached and fixed, and the attachment portion 8b is screwed and fixed to the female screw portion 14a formed on the connection board body 14. The electrode body 2 is arranged so as to be inserted therein.
【0016】15は電源部であって、この場合入力回路
16、交流直流変換回路17、電圧可変回路18、波長
可変回路19及び出力回路20を含んで回路構成され、
商用電源から入力される交流を可視光線領域内の400
nm(ナノメータ)〜500nm(ナノメータ)の波長
の3V〜15Vの直流に変換された出力電圧を陰極側電
気コード15a及び陽極側電気コード15bを介して上
記通液筒体1を陰極とし電極体2を陽極として印加通電
するように構成したものである。Reference numeral 15 is a power supply section, and in this case, the circuit configuration includes an input circuit 16, an AC / DC conversion circuit 17, a voltage variable circuit 18, a wavelength variable circuit 19 and an output circuit 20,
The AC input from the commercial power source is 400 in the visible light range.
The output voltage converted into a direct current of 3V to 15V having a wavelength of nm (nanometer) to 500 nm (nanometer) is converted into a direct current of 3V to 15V via the cathode side electric cord 15a and the anode side electric cord 15b, and the liquid passing cylinder 1 is used as a cathode to form the electrode body 2 Is used as an anode to apply and energize.
【0017】また上記連結筒体8に電極体2の端部を覆
うカバー部21が設けられ、この場合、合成樹脂製の連
結筒体8に蓋筒体22をパッキン22bを介して螺着
し、蓋筒体22の端部に弾性を有する締付駒筒23を嵌
着し、蓋筒体22に合成樹脂製の締付ナット筒体24を
螺着し、締付ナット筒体24に上記電源部15からの陰
極側電気コード15a及び陽極側電気コード15bを挿
通し、締付ナット筒体24の締付回動により締付駒筒2
3及び皿バネ23aを撓ませて二本の上記コード15a
・15bを締付固定し、陰極側電気コード15aを蓋筒
体22の側面に形成された通穴22a介して外部に突出
して上記接続盤体14にラグ板25a及びボルト26a
により電気的接続し、又、陽極側電気コード14bをラ
グ板25b及びボルト26bにより電気的接続し、よっ
て陰極側電気コード15aと通液筒体1とは接続盤体1
4、ボルト10、ナット11及び座金12及びフランジ
1cを介して電気的接続するように構成している。A cover portion 21 for covering the end portion of the electrode body 2 is provided on the connecting cylinder body 8. In this case, a lid cylinder body 22 is screwed to the connecting cylinder body 8 made of synthetic resin via a packing 22b. An elastic tightening piece cylinder 23 is fitted to an end portion of the lid tube body 22, a tightening nut tube body 24 made of a synthetic resin is screwed to the lid tube body 22, and the tightening nut tube body 24 has the above-mentioned structure. The cathode side electric cord 15a and the anode side electric cord 15b from the power source unit 15 are inserted, and the tightening nut cylinder 24 is rotated by tightening to rotate the tightening piece cylinder 2
3 and the disc spring 23a are bent so that the two cords 15a
15b is clamped and fixed, and the cathode side electric cord 15a is projected to the outside through a through hole 22a formed in the side surface of the lid cylinder 22, and the connection board 14 is provided with a lug plate 25a and a bolt 26a.
And the anode side electric cord 14b is electrically connected by the lug plate 25b and the bolt 26b. Therefore, the cathode side electric cord 15a and the liquid passage cylinder 1 are connected to each other by the connection board 1
4, the bolt 10, the nut 11, the washer 12, and the flange 1c are electrically connected.
【0018】この第一実施例は上記構成であるから、電
源部15により導電性を有する通液筒体1を陰極とし電
極体2を陽極として通電し、これにより電子場が形成さ
れた状態で循環系統途中の水や油等の例えば圧力10k
g/cm2G程度の処理すべき液体Wを通液筒体1内に
通過させることにより、液体W内のスケールの除去やサ
ビの発生の抑制、引き締まった浄化された液体の生成等
の改質処理がなされることになり、この際において、電
極体2と通液筒体1との電気的絶縁及び封液作用は、電
極体2の端部側に挿通された絶縁性を有する合成樹脂製
の絶縁筒体4、絶縁性を有する弾性材からなる液封リン
グ5及び絶縁性を有する合成樹脂製の絶縁リング6並び
に絶縁スリーブ9によりなされ、これらの電極体2に対
する固定は、電極体2に止着配置された抜止め部材7及
び上記絶縁筒体4に係止外嵌着された連結筒体8並びに
連結筒体8内に螺着固定され電極体2の端部に外嵌着さ
れた絶縁性を有する合成樹脂製の絶縁スリーブ9により
なされ、この場合絶縁スリーブ9を締付回動することに
より連結筒体8の段部8aにより絶縁筒体4の段部4a
を引き寄せ、これにより抜止め部材7をストッパー部分
として絶縁リング6と絶縁筒体4の段部4aとにより液
封リング5を弾性変形させて液封リング5を電極体2の
外周面に密着させ、締付回動の度合いにより密着度を得
て液封作用を得ることになり、このため絶縁及び液封作
用をなす液封部3の構造を簡素化することができると共
に封液部3は通液筒体1及び電極体2と一体に構成され
ているため、製作コストの低減を図ることができ、保守
点検も容易に行うことができ、使用の快適性を向上する
ことができ、又、連結筒体8は取付部8bにより上記通
液筒体1に取り付けられると共に電極体2の端部はカバ
ー部21により覆われることになり、製作及び組み付け
が容易となると共にカバー部21により防滴性能を高め
ることができる。Since the first embodiment has the above-mentioned structure, the power source section 15 energizes the conductive liquid-conducting cylinder 1 as the cathode and the electrode body 2 as the anode, whereby an electron field is formed. For example, the pressure of water or oil in the circulation system is 10k
By passing a liquid W to be treated of about g / cm 2 G into the liquid cylinder 1, it is possible to improve the removal of scale in the liquid W, the suppression of rust, the generation of a tightened and purified liquid, and the like. A quality treatment is performed, and at this time, the electrical insulation between the electrode body 2 and the liquid passage cylinder 1 and the liquid sealing action are due to the synthetic resin having an insulating property inserted into the end portion side of the electrode body 2. Made of an insulating cylindrical body 4, a liquid sealing ring 5 made of an elastic material having an insulating property, an insulating ring 6 made of a synthetic resin having an insulating property, and an insulating sleeve 9. The electrode body 2 is fixed to these electrode bodies 2. The retaining member 7 that is fixedly attached to the connecting cylinder body 8, the connecting cylinder body 8 that is externally fitted to the insulating cylinder body 4 by locking, and is screwed and fixed in the connecting cylinder body 8 and is externally fitted to the end portion of the electrode body 2. Insulating sleeve 9 made of synthetic resin having insulating properties Stepped portion 4a of the insulating cylinder 4 by the stepped portion 8a of the connecting cylinder 8 by the edges sleeve 9 rotates tightening
, Thereby causing the liquid sealing ring 5 to be elastically deformed by the insulating ring 6 and the step portion 4a of the insulating cylindrical body 4 with the retaining member 7 as a stopper portion to bring the liquid sealing ring 5 into close contact with the outer peripheral surface of the electrode body 2. Therefore, the degree of tightness of rotation makes it possible to obtain close contact and obtain a liquid-sealing action. Therefore, it is possible to simplify the structure of the liquid-sealing part 3 that performs insulation and liquid-sealing action, and Since it is integrally formed with the liquid passage cylinder 1 and the electrode body 2, the manufacturing cost can be reduced, maintenance and inspection can be easily performed, and comfort of use can be improved. The connecting tubular body 8 is attached to the liquid passing tubular body 1 by the attaching portion 8b, and the end portion of the electrode body 2 is covered by the cover portion 21. This facilitates the production and assembly and prevents the connecting portion 8 from being covered by the cover portion 21. The drop performance can be enhanced.
【0019】またこの際上記絶縁筒体4及び絶縁リング
6並びに絶縁スリーブ9はポリアセタール樹脂からなる
と共に上記電極体2はステンレス鋼からなるため、良好
な改質処理を行うことができ、又、電源部15により商
用電源から入力される交流を可視光線領域内の400n
m〜500nmの波長の3V〜15Vの直流に変換され
た出力電圧を用いることにより良好な改質処理を行うこ
とができる。At this time, since the insulating cylinder 4, the insulating ring 6 and the insulating sleeve 9 are made of polyacetal resin and the electrode body 2 is made of stainless steel, a good reforming process can be performed and the power source can be used. The AC input from the commercial power supply by the unit 15 is 400n in the visible light range.
A good reforming treatment can be performed by using an output voltage converted into a direct current of 3V to 15V having a wavelength of m to 500 nm.
【0020】図7の第二実施例は別例構造を示し、この
場合上記カバー部20の構造として、連結筒体8に蓋栓
体27を螺着してなり、しかして陰極側電気コード15
aをラグ板25a及びボルト26aにより電気的接続
し、又、陽極側電気コード15bを連結筒体8の側面に
形成された通穴8c介して内部に挿通してラグ板25b
及びボルト26bにより電気的接続するように構成して
いる。The second embodiment of FIG. 7 shows another structure. In this case, as the structure of the cover portion 20, a lid plug body 27 is screwed to the connecting cylinder body 8, so that the cathode side electric cord 15 is provided.
a is electrically connected by a lug plate 25a and a bolt 26a, and the anode side electric cord 15b is inserted into the inside through a through hole 8c formed in the side surface of the connecting tubular body 8 to form the lug plate 25b.
And a bolt 26b for electrical connection.
【0021】この第二実施例にあっても、上記第一実施
例と同様な作用効果を得ることができる。Also in this second embodiment, the same effect as that of the first embodiment can be obtained.
【0022】尚、本発明は上記実施例に限られるもので
はなく、例えば上記実施例では水の改質処理に適用して
いるが、油等の他の液体の改質処理にも適用でき、また
上記実施例では通液筒体1を上下に配した縦型設置構造
としているが、通液筒体1を水平や斜めに配した横型配
置構造にも適用することができ、また通液筒体1、電極
体2の形状や大きさ等は適宜変更して設計される。The present invention is not limited to the above-mentioned embodiment, and for example, although the present invention is applied to the reforming treatment of water, it can also be applied to the reforming treatment of other liquids such as oil, Further, in the above-mentioned embodiment, the vertical installation structure in which the liquid passage cylinders 1 are arranged vertically is also applicable, but it can also be applied to a horizontal type arrangement structure in which the liquid passage cylinders 1 are arranged horizontally or obliquely, and the liquid passage cylinders are also provided. The shapes and sizes of the body 1 and the electrode body 2 are appropriately changed and designed.
【0023】[0023]
【発明の効果】本発明は上述の如く、電極体と通液筒体
との電気的絶縁及び封液作用は、電極体の端部側に挿通
された絶縁性を有する合成樹脂製の絶縁筒体、絶縁性を
有する弾性材からなる液封リング及び絶縁性を有する合
成樹脂製の絶縁リング並びに絶縁スリーブによりなさ
れ、これらの電極体に対する固定は、電極体に止着配置
された抜止め部材及び上記絶縁筒体に係止外嵌着された
連結筒体並びに連結筒体内に固定され電極体の端部に外
嵌着された絶縁性を有する合成樹脂製の絶縁スリーブに
よりなされ、このため絶縁及び液封作用をなす液封部の
構造を簡素化することができると共に封液部は通液筒体
及び電極体と一体に構成されているため、製作コストの
低減を図ることができ、保守点検も容易に行うことがで
き、使用の快適性を向上することができ、又、連結筒体
は取付部により上記通液筒体に取り付けられると共に電
極体の端部はカバー部により覆われることになり、製作
及び組み付けが容易となると共にカバー部により防滴性
能を高めることができる。As described above, according to the present invention, the insulating body made of synthetic resin is inserted into the end portion of the electrode body to electrically insulate and seal the electrode body from the liquid passage cylinder body. Body, a liquid-sealing ring made of an elastic material having an insulating property, an insulating ring made of a synthetic resin having an insulating property, and an insulating sleeve, and fixing to these electrode bodies is carried out by a retaining member and a retaining member fixedly attached to the electrode bodies. The insulating tubular body is engaged with the connecting tubular body, and the insulating sleeve made of synthetic resin having an insulating property is fixed to the connecting tubular body and externally fitted to the end portion of the electrode body. Since the structure of the liquid-sealing part that performs the liquid-sealing action can be simplified and the liquid-sealing part is configured integrally with the liquid passage cylinder and the electrode body, the manufacturing cost can be reduced and maintenance inspection can be performed. Easy to use and comfortable to use Further, the connecting cylinder is attached to the liquid passage cylinder by the attaching portion, and the end portion of the electrode body is covered by the cover portion, which facilitates the production and assembly and the cover portion. The drip-proof performance can be improved.
【0024】この際上記絶縁筒体及び絶縁リング並びに
絶縁スリーブをポリアセタール樹脂により製作すると共
に上記電極体をステンレス鋼から製作することにより、
良好な改質処理を行うことができ、又、電源部により3
V〜15Vの直流からなる出力電圧を用いることにより
良好な改質処理を行うことができる。At this time, the insulating cylinder, the insulating ring, and the insulating sleeve are made of polyacetal resin, and the electrode body is made of stainless steel.
It is possible to perform good reforming process,
Good reforming treatment can be performed by using an output voltage composed of a direct current of V to 15V.
【0025】以上の如く、所期の目的を充分達成するこ
とができる。As described above, the intended purpose can be sufficiently achieved.
【図1】本発明の第一実施例の全体部分断面図である。FIG. 1 is an overall partial sectional view of a first embodiment of the present invention.
【図2】本発明の第一実施例の部分断面図である。FIG. 2 is a partial cross-sectional view of the first embodiment of the present invention.
【図3】本発明の第一実施例の部分斜視図である。FIG. 3 is a partial perspective view of the first embodiment of the present invention.
【図4】本発明の第一実施例の部分分解斜視図である。FIG. 4 is a partially exploded perspective view of the first embodiment of the present invention.
【図5】本発明の第一実施例の部分分解斜視図である。FIG. 5 is a partially exploded perspective view of the first embodiment of the present invention.
【図6】本発明の第一実施例の電源部回路図である。FIG. 6 is a circuit diagram of a power supply unit according to the first embodiment of the present invention.
【図7】本発明の第二実施例の部分断面図である。FIG. 7 is a partial sectional view of a second embodiment of the present invention.
W 液体 1 通液筒体 2 電極体 3 液封機構 4 絶縁筒体 5 液封リング 6 絶縁リング 7 抜止め部材 8 連結筒体 9 絶縁スリーブ 15 電源部 W Liquid 1 Liquid passing cylinder 2 Electrode body 3 Liquid sealing mechanism 4 Insulating cylinder 5 Liquid sealing ring 6 Insulating ring 7 Stopping member 8 Connecting cylinder 9 Insulating sleeve 15 Power supply section
Claims (3)
する通液筒体と、該通液筒体内に配置される電極体と、
該電極体を通液筒体に対して電気的絶縁及び封液可能な
液封部と、該通液筒体を陰極とし該電極体を陽極として
通電可能な電源部とを備えてなり、上記電極体の端部側
に絶縁性を有する合成樹脂製の絶縁筒体を挿通すると共
に絶縁性を有する弾性材からなる液封リングを介して絶
縁性を有する合成樹脂製の絶縁リングを挿通配置し、該
電極体に絶縁リングの抜止め部材を止着配置し、上記絶
縁筒体に連結筒体を係止外嵌着し、該連結筒体内に電極
体の端部に外嵌着されて絶縁性を有する合成樹脂製の絶
縁スリーブを固定し、該連結筒体に上記通液筒体への取
付部を配設すると共に連結筒体に電極体の端部を覆うカ
バー部を配設して構成したことを特徴とする液体改質処
理装置。1. A liquid-passing cylinder having conductivity that allows a liquid to be treated to pass therethrough, and an electrode body disposed in the liquid-passing cylinder.
A liquid-sealing portion capable of electrically insulating and sealing the electrode body with respect to the liquid passage body; and a power supply unit capable of conducting electricity with the liquid passage body serving as a cathode and the electrode body serving as an anode. An insulating synthetic resin insulating cylinder is inserted through the end of the electrode body, and an insulating synthetic resin insulating ring is inserted through a liquid ring made of an elastic elastic material. , A retaining member for the insulating ring is fixedly arranged on the electrode body, a connecting cylinder body is locked and externally fitted on the insulating cylinder body, and the end portion of the electrode body is externally fitted and insulated inside the connecting cylinder body. Fixing an insulating sleeve made of synthetic resin having a property, the connecting cylinder is provided with a mounting portion to the liquid passage cylinder, and the connecting cylinder is provided with a cover portion for covering an end portion of the electrode body. A liquid reforming treatment device characterized by being configured.
スリーブはポリアセタール樹脂からなると共に上記電極
体はステンレス鋼からなる請求項1記載の液体改質処理
装置。2. The liquid reforming apparatus according to claim 1, wherein the insulating cylinder, the insulating ring, and the insulating sleeve are made of polyacetal resin, and the electrode body is made of stainless steel.
した直流3V〜15Vに設定されている請求項1又は2
記載の液体改質処理装置。3. The output voltage from the power supply unit is set to a DC voltage of 3V to 15V converted from an AC voltage.
The liquid reforming treatment apparatus described.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| JP7184717A JP2990336B2 (en) | 1995-06-28 | 1995-06-28 | Liquid reformer |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| JP7184717A JP2990336B2 (en) | 1995-06-28 | 1995-06-28 | Liquid reformer |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| JPH0910770A true JPH0910770A (en) | 1997-01-14 |
| JP2990336B2 JP2990336B2 (en) | 1999-12-13 |
Family
ID=16158140
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| JP7184717A Expired - Fee Related JP2990336B2 (en) | 1995-06-28 | 1995-06-28 | Liquid reformer |
Country Status (1)
| Country | Link |
|---|---|
| JP (1) | JP2990336B2 (en) |
Cited By (8)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| KR100481699B1 (en) * | 2002-08-23 | 2005-04-13 | 곽종운 | Electric field effect apparatus for water treatment |
| JP2007038090A (en) * | 2005-08-02 | 2007-02-15 | Hideo Nagashima | Electrolytic ion water generator for fruits and vegetables |
| KR100839556B1 (en) * | 2006-07-05 | 2008-06-19 | 이회성 | Electronic water heater |
| JP6084975B2 (en) * | 2014-01-21 | 2017-02-22 | 新エネルギー産業株式会社 | Substance modification method |
| JPWO2015121896A1 (en) * | 2014-02-17 | 2017-03-30 | 新エネルギー産業株式会社 | Potential fluctuation type material denaturing equipment |
| US9657600B2 (en) | 2015-02-02 | 2017-05-23 | Innovative Designs & Technology Inc. | Heat exchanger, a purifier, an electrode-containing pipe, a power generation system, a control method for heat exchanger and a scale removing method |
| KR20180004089A (en) * | 2017-12-29 | 2018-01-10 | 주식회사 세광마린텍 | Sewage treatment device having grinding and sterilzing apparatus by electrolysis |
| KR20180008813A (en) * | 2018-01-04 | 2018-01-24 | 주식회사 세광마린텍 | Electrolysis of tubular type for water waste and sweage treatment device including thereof |
-
1995
- 1995-06-28 JP JP7184717A patent/JP2990336B2/en not_active Expired - Fee Related
Cited By (8)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| KR100481699B1 (en) * | 2002-08-23 | 2005-04-13 | 곽종운 | Electric field effect apparatus for water treatment |
| JP2007038090A (en) * | 2005-08-02 | 2007-02-15 | Hideo Nagashima | Electrolytic ion water generator for fruits and vegetables |
| KR100839556B1 (en) * | 2006-07-05 | 2008-06-19 | 이회성 | Electronic water heater |
| JP6084975B2 (en) * | 2014-01-21 | 2017-02-22 | 新エネルギー産業株式会社 | Substance modification method |
| JPWO2015121896A1 (en) * | 2014-02-17 | 2017-03-30 | 新エネルギー産業株式会社 | Potential fluctuation type material denaturing equipment |
| US9657600B2 (en) | 2015-02-02 | 2017-05-23 | Innovative Designs & Technology Inc. | Heat exchanger, a purifier, an electrode-containing pipe, a power generation system, a control method for heat exchanger and a scale removing method |
| KR20180004089A (en) * | 2017-12-29 | 2018-01-10 | 주식회사 세광마린텍 | Sewage treatment device having grinding and sterilzing apparatus by electrolysis |
| KR20180008813A (en) * | 2018-01-04 | 2018-01-24 | 주식회사 세광마린텍 | Electrolysis of tubular type for water waste and sweage treatment device including thereof |
Also Published As
| Publication number | Publication date |
|---|---|
| JP2990336B2 (en) | 1999-12-13 |
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