JP2011089676A - Nano-mist and negative ion generator - Google Patents

Nano-mist and negative ion generator Download PDF

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JP2011089676A
JP2011089676A JP2009242140A JP2009242140A JP2011089676A JP 2011089676 A JP2011089676 A JP 2011089676A JP 2009242140 A JP2009242140 A JP 2009242140A JP 2009242140 A JP2009242140 A JP 2009242140A JP 2011089676 A JP2011089676 A JP 2011089676A
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blower fan
mist
water
nano
porous body
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JP5362516B2 (en
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Yoshitoshi Nagumo
佐敏 南雲
Takeo Baba
健夫 馬場
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Corona Corp
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Corona Corp
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a nano-mist and negative ion generator capable of preventing generation of mildew and bacteria due to water drops by performing a cleaning operation for the water drops attached to a blower fan, a rotary body and a porous body for a specific time in stopping the operation. <P>SOLUTION: This nano-mist and negative ion generator includes the rotary body 11 disposed coaxially with the blower fan 5, and scooping up and scattering the water stored in a treatment chamber 2 by rotating, and the porous body 13 rotating with the rotary body 11 and colliding with and crushing the water scattering from the rotary body 11 to generate nano-mist and negative ion, and the generated nano-mist and negative ion are discharged indoors from a discharge port 9 by the air distributed by the blower fan 5. As the cleaning operation for removing the water drops attached to the blower fan 5, the rotary body 11 and the porous body 13 is performed for a specific time after the stop of the operation, the attachment of water drops to the blower fan, the rotary body and the porous body can be prevented even when the operation is stopped. <P>COPYRIGHT: (C)2011,JPO&INPIT

Description

この発明は、水の破砕によって発生する自然界で発生するものと同様なナノミストとマイナスイオンを室内に供給して空気を清浄にするナノミストとマイナスイオン発生装置に関するものである。   The present invention relates to a nano mist and negative ion generator for purifying air by supplying nano mist and negative ions similar to those generated in the natural world generated by crushing water into the room.

従来よりこの種のものでは、駆動モータに送風ファンと回転体とを回転自在に取り付けて、回転させることによりナノミスト状の霧を発生させて室内を良好に加湿しようとするものであった。   Conventionally, in this type, a blower fan and a rotator are rotatably attached to a drive motor, and a nanomist mist is generated by rotation to try to humidify the room well.

特開平7−243677号公報Japanese Unexamined Patent Publication No. 7-243676

ところでこの従来のものでは、回転体が常に水中に浸っており、又送風ファンは水上ではあるが駆動を停止すると本体内ではあるが、加湿雰囲気中なので水滴が付着することになり、これが長期間の使用や放置により送風ファンや回転体等にカビや雑菌等が繁殖してしまい、これが駆動されると室内に放出されて、健康上の問題にも発展する危険を有するものであった。   By the way, with this conventional device, the rotating body is always immersed in water, and the blower fan is on the water but when it stops driving, it is inside the main body, but since it is in a humidified atmosphere, water droplets will adhere, and this will last for a long time. When used or left, mold, germs, etc. propagate on the blower fan or rotating body, and when this is driven, it is released into the room and has a risk of developing health problems.

この発明はこの点に着目し上記課題を解決する為、特にその構成を、請求項1では、駆動モータの支軸に取り付けられ吸引口から吸引した空気を放出口から放出させる送風ファンと、前記送風ファンと同軸に取り付けられ回転することで、処理室に貯水された水を汲み上げ飛散させる回転体と、前記回転体と共に回転し該回転体から飛散した水がぶつかって破砕することで、ナノミストとマイナスイオンを発生させる多孔体とを備え、この発生したナノミストとマイナスイオンを前記送風ファンの送風で放出口から室内に放出するようにしたものに於いて、運転停止後には送風ファン、回転体、多孔体に付着している水滴を除去する清掃運転を一定時間行うものである。   This invention pays attention to this point and solves the above-mentioned problems. In particular, in the present invention, in claim 1, a blower fan attached to a support shaft of a drive motor and discharging air sucked from a suction port from the discharge port; By rotating coaxially with the blower fan, the rotating body that pumps and scatters the water stored in the processing chamber, and the water that rotates together with the rotating body and splashes from the rotating body collides and crushes, so that the nano mist A porous body that generates negative ions, and the generated nanomist and negative ions are discharged into the room from the discharge port by blowing air from the blower fan. A cleaning operation for removing water droplets adhering to the porous body is performed for a certain period of time.

又請求項2では、前記清掃運転は、駆動モータの駆動を一旦停止し、処理室内の貯水を保管タンクに移動させた後に、駆動モータを再駆動させ送風ファン、回転体、多孔体を回転させて水を切るようにしたものである。   According to a second aspect of the present invention, in the cleaning operation, the driving motor is temporarily stopped, the water in the processing chamber is moved to the storage tank, and then the driving motor is driven again to rotate the blower fan, the rotating body, and the porous body. The water is drained.

又請求項3では、前記清掃運転時には、吸引口近傍に備えた気化用ヒータに通電して、送風ファン、回転体、多孔体を乾燥させるようにしたものである。   According to a third aspect of the present invention, during the cleaning operation, electricity is supplied to a vaporizing heater provided near the suction port to dry the blower fan, the rotating body, and the porous body.

以上のようにこの発明によれば、運転停止後には送風ファン、回転体、多孔体に付着している水滴を除去する清掃運転を一定時間行うので、運転停止しても送風ファンや回転体や多孔体には水滴の付着がなくなり、長期間の使用や放置されてもカビや雑菌の発生を防止して、室内への拡散による健康の危険を未然に阻止するものであり、更に水分子付加マイナスイオン分子群が直接肌等に作用し、又肺から吸引されたマイナスイオンは血液中に入り、その還元作用で血液の酸化を阻止しアルカリ性の血液サラサラ状態とすると共に、その循環を良くし、末梢血管まで血液を行き渡らせることにより、痛みや懲りを緩和することができるものと考えられ、又マイナスイオンには、疲労回復効果、精神安定効果、血液の浄化効果、抵抗力の増進効果、自律神経調整効果等があり、更にナノミストによって、空気中の隅々まで行き渡り汚れた空気や細菌を抑制し、臭いまでも分解するもので、脱臭効果、除塵効果、除菌効果、勿論加湿効果があるものであり、この加湿はベトツキがないサラサラで潤いのある空気で、毛穴からの浸透でお肌と髪の潤いを保つ効果を有するものである。   As described above, according to the present invention, after the operation is stopped, the cleaning operation for removing water droplets attached to the blower fan, the rotating body, and the porous body is performed for a certain period of time. The porous body has no adhesion of water droplets, prevents the generation of mold and germs even when used or left for a long period of time, and prevents the danger of health due to diffusion into the room. Negative ion molecules directly act on the skin, and negative ions sucked from the lungs enter the blood, and the reduction action prevents blood oxidation, resulting in an alkaline blood smoothness and improving circulation. It is thought that pain and discipline can be alleviated by spreading blood to peripheral blood vessels, and negative ions have a fatigue recovery effect, a mental stability effect, a blood purification effect, and a resistance enhancement effect. In addition, it has an autonomic nerve adjustment effect, etc. Furthermore, it is a nano mist that spreads to every corner of the air to suppress dirty air and bacteria, and even decomposes odors, deodorizing effect, dust removing effect, sanitizing effect, of course humidifying effect This humidification is smooth and moist air with no stickiness, and has the effect of keeping the skin and hair moist by penetration through the pores.

又請求項2では、前記清掃運転は、駆動モータの駆動を一旦停止し、処理室内の貯水を保管タンクに移動させた後に、駆動モータを再駆動させ送風ファン、回転体、多孔体を回転させて水を切るようにしたので、回転体や多孔体を回転させてもナノミストやマイナスイオンが発生することがなく、確実に水を切ることが出来るので、カビや雑菌の発生がなく、常に安心して使用出来るものである。   According to a second aspect of the present invention, in the cleaning operation, the driving motor is temporarily stopped, the water in the processing chamber is moved to the storage tank, and then the driving motor is driven again to rotate the blower fan, the rotating body, and the porous body. Therefore, even if the rotating body or porous body is rotated, nano mist and negative ions are not generated, and the water can be drained reliably. It can be used with heart.

又請求項3では、前記清掃運転時には、吸引口近傍に備えた気化用ヒータに通電して、送風ファン、回転体、多孔体を乾燥させるようにしたので、完全にカビや雑菌の発生は阻止され、常に良好な状態を維持出来るので、長期に渡って使用出来るものである。   In claim 3, during the cleaning operation, electricity is supplied to the vaporizing heater provided in the vicinity of the suction port to dry the blower fan, the rotating body, and the porous body. It can be used for a long time because it can always maintain a good state.

この発明の一実施形態を示すナノミストとマイナスイオン発生装置の概略構成図。BRIEF DESCRIPTION OF THE DRAWINGS The schematic block diagram of the nano mist and anion generator which shows one Embodiment of this invention. 同要部電気回路のブロック図。The block diagram of the principal part electric circuit. 同要部のフローチャート。The flowchart of the principal part.

次にこの発明の一実施形態を図面に基づいて説明する。
1はナノミストとマイナスイオン発生装置で、内方中央部には凹状の処理室2が形成され、この処理室2にはカートリッジ式の給水タンク(図示せず)からの給水が供給され、落差方式で所定水位で水を貯水するものである。
Next, an embodiment of the present invention will be described with reference to the drawings.
Reference numeral 1 denotes a nano mist and negative ion generator. A concave processing chamber 2 is formed in the center of the inside, and the processing chamber 2 is supplied with water from a cartridge-type water tank (not shown). The water is stored at a predetermined water level.

3は前記処理室2の下部に備えられた駆動モータで、支軸4を処理室2底部を水密に貫通して立設し、この支軸4の上端には細い縦羽根を複数並設し円状としたシロッコファンから成る送風ファン5が設けられ、回転することによって、器具背面上部の吸引口6から室内空気を吸引し、処理室2内に上部から垂下して送風ファン5を覆った空気案内筒7内に流入して、送風ファン5に吸引されたた後に、空気案内筒7下端と水面との隙間から該空気案内筒7と処理室2との流通隙間8を上昇し、器具前面上部の放出口9から室内に放出する送風経路10を形成しているものである。   Reference numeral 3 denotes a drive motor provided at the lower part of the processing chamber 2, which has a support shaft 4 standing in a watertight manner through the bottom of the processing chamber 2, and a plurality of thin vertical blades arranged in parallel at the upper end of the support shaft 4. A blower fan 5 made of a circular sirocco fan is provided, and by rotating, the indoor air is sucked from the suction port 6 at the upper part of the back of the instrument, and the blower fan 5 is covered by dropping from the upper part into the processing chamber 2. After flowing into the air guide cylinder 7 and sucked by the blower fan 5, the flow gap 8 between the air guide cylinder 7 and the processing chamber 2 is raised from the gap between the lower end of the air guide cylinder 7 and the water surface, A blower passage 10 is formed to discharge into the room from the discharge port 9 at the upper front.

11は前記送風ファン5と同軸に取り付けられ回転することで、処理室2に貯水された水を汲み上げ、上端の複数の飛散穴12から外方に飛散させる下端に向かって徐々に小径となる擂り鉢状の回転体で、この回転体11の上部外周には飛散した水がぶつかって破砕することで、ナノミストとマイナスイオンを発生させるスリット、パンチングメタル、金網等から成る多孔体13が、飛散穴12と対向する位置に垂下して備えられている。   11 is mounted coaxially with the blower fan 5 and rotates, so that the water stored in the processing chamber 2 is pumped up and gradually becomes smaller in diameter toward the lower end where it is scattered outward from the plurality of scattering holes 12 at the upper end. A porous body 13 made of a slit, punching metal, wire mesh, or the like that generates nano mist and negative ions by the splashing water colliding with the outer periphery of the upper part of the rotating body 11 by a bowl-shaped rotating body. 12 is provided at a position facing 12.

14は駆動モータ3の下に備えた保管タンクで、電動開閉弁15を途中に設けた連絡パイプ16を介して処理室2と連通し、運転停止時の自動清掃運転時には、制御回路17からの信号で電動開閉弁15を開成して、処理室2内の貯水を保管タンク14へ移して該処理室2を空の状態にするものである。   Reference numeral 14 denotes a storage tank provided under the drive motor 3, which communicates with the processing chamber 2 through a communication pipe 16 provided in the middle of the electric opening / closing valve 15, and from the control circuit 17 during the automatic cleaning operation when the operation is stopped. The electric on-off valve 15 is opened by a signal, and the water stored in the processing chamber 2 is transferred to the storage tank 14 to make the processing chamber 2 empty.

前記制御回路17は、運転停止スイッチ18からの信号で、駆動モータ3の駆動を停止させて運転停止するが、これと同時に制御回路17内のタイマ手段19が駆動開始して自動的に清掃運転に入るもので、所定時間ここでは5分間のカウントを行うが、この間に前記したように処理室2内を空の状態として、駆動モータ3を再駆動させ送風ファン5及び回転体11及び多孔体13を回転させて付着している水を切るものであり、又これと同時に吸引口6近傍に備えられた気化用ヒータ20にもタイマ手段19を介して通電され、回転している送風ファン5の給気で温風となって、送風ファン5及び多孔体13、回転体11、処理室2と順に送風されることで、これらの湿気をなくして乾燥させて、カビや雑菌の発生を阻止して常に清潔な状態から運転開始出来るように自動的な清掃運転を行うようにしたものである。   The control circuit 17 stops driving by stopping the driving of the drive motor 3 in response to a signal from the operation stop switch 18, and at the same time, the timer means 19 in the control circuit 17 starts driving to automatically perform the cleaning operation. In this case, the count for 5 minutes is performed for a predetermined time, but during this time, as described above, the inside of the processing chamber 2 is emptied, the drive motor 3 is re-driven, the blower fan 5, the rotating body 11, and the porous body. 13 is rotated to remove the adhering water, and at the same time, the vaporizing heater 20 provided in the vicinity of the suction port 6 is energized through the timer means 19 and is rotating. It becomes warm air with the supply air and is blown in order to the blower fan 5, the porous body 13, the rotating body 11, and the processing chamber 2, thereby eliminating these moisture and preventing generation of mold and bacteria. And always clean It is obtained to perform the automatic cleaning operation to allow start-from.

次にこの一実施形態の作動について説明する。
今運転が開始されれば、制御回路16を介して駆動モータ3が駆動開始し、これにより送風ファン5が回転して吸引口6から室内空気が吸引され、又これと同時に同軸の回転体11も回転して、処理室2に貯水されている水を回転による遠心力で汲み上げ、飛散穴12から外周に飛散させることで多孔体13にぶつかり、そして多孔体13の全周壁に形成した多数のスリットや金網やパンチングメタル等を、通過させたり、ぶつけて破砕させることで、水の粒子を微細化してナノメートル(nm)サイズの微細水滴を生成すると共に、この水の粒子の微細化によるレナード効果でマイナスイオンを発生させるものである。
Next, the operation of this embodiment will be described.
When the operation is started, the drive motor 3 starts to be driven via the control circuit 16, whereby the blower fan 5 rotates and the indoor air is sucked from the suction port 6, and at the same time, the coaxial rotating body 11. The water stored in the processing chamber 2 is pumped up by centrifugal force due to the rotation, is scattered from the scattering hole 12 to the outer periphery, hits the porous body 13, and is formed on the entire peripheral wall of the porous body 13. By passing or hitting slits, wire mesh, punching metal, etc., and crushing, water particles are refined to produce nanometer (nm) size water droplets, and Leonard is created by refining the water particles. The effect is to generate negative ions.

そしてここに前記した送風ファン5で給気された室内空気が送風され、ナノミストを含んで空気案内筒7下端と水面との隙間から該空気案内筒7と処理室2との流通隙間8を上昇する段階で、大粒の水滴は水中に落下してナノサイズのミストのみが流通隙間8を上昇し、又送風中のマイナスイオンも同時に放出口9から室内に放出されるものである。   The room air supplied by the blower fan 5 is blown here, and the flow gap 8 between the air guide tube 7 and the processing chamber 2 is raised from the gap between the lower end of the air guide tube 7 and the water surface, including nano mist. At this stage, the large water droplets fall into the water, and only the nano-sized mist rises through the flow gap 8, and the negative ions being blown are simultaneously released into the room from the discharge port 9.

そしてこれにより、水分子付加マイナスイオン分子群が直接肌等に作用し、又肺から吸引されたマイナスイオンは血液中に入り、その還元作用で血液の酸化を阻止しアルカリ性の血液サラサラ状態とすると共に、その循環を良くし、末梢血管まで血液を行き渡らせることにより、痛みや懲りを緩和することができるものと考えられ、又マイナスイオンには、疲労回復効果、精神安定効果、血液の浄化効果、抵抗力の増進効果、自律神経調整効果等があり、更にナノミストによって、空気中の隅々まで行き渡り汚れた空気や細菌を抑制し、臭いまでも分解するもので、脱臭効果、除塵効果、除菌効果、勿論加湿効果があるものであり、この加湿はベトツキがないサラサラで潤いのある空気で、毛穴からの浸透でお肌と髪の潤いを保つ効果を有するものである。   As a result, the negative ion molecule group with water molecules acts directly on the skin, and the negative ions sucked from the lungs enter the blood, and the reduction action prevents the oxidation of the blood, resulting in an alkaline blood smooth state. At the same time, it is thought that pain and discipline can be relieved by improving the circulation and spreading blood to the peripheral blood vessels, and negative ions have fatigue recovery effect, mental stability effect, blood purification effect It has a resistance enhancement effect, an autonomic nerve adjustment effect, etc., and nano mist spreads to every corner of the air to suppress dirty air and bacteria, and even decomposes odors, deodorizing effect, dust removing effect, removing It has a fungicidal effect, of course, a humidifying effect, and this humidification is smooth and moist air with no stickiness and has the effect of keeping the skin and hair moistened by penetration from the pores It is intended.

次に運転停止時の自動清掃運転を図3に示すフローチャートに従って説明すれば、ステップ21で運転停止スイッチ18が押圧されるとYESで、ステップ22に進み運転停止信号を制御回路17が受けて、駆動モータ3の駆動を停止することで、ナノミストとマイナスイオンの供給は停止されるが、タイマ手段19がカウントを開始する。   Next, the automatic cleaning operation when the operation is stopped will be described with reference to the flowchart shown in FIG. 3. When the operation stop switch 18 is pressed at step 21, the process proceeds to step 22 and the control circuit 17 receives the operation stop signal. By stopping driving of the drive motor 3, the supply of nanomist and negative ions is stopped, but the timer means 19 starts counting.

そしてステップ23でこのタイマ手段19のカウントが所定時間の5分をカウントしたかを判断し、NOのカウント中ではステップ24に進み電動開閉弁15を開成して、処理室2内の貯水を保管タンク14に移し該処理室2を空の状態にし、この処理室2の空状態を水位センサ(図示せず)で検知してた後、駆動モータ3を駆動して送風ファン5及び回転体11及び多孔体13を回転させて、付着している水を切るものであり、又この時吸引口6近傍に備えられた気化用ヒータ20も通電されることで、回転している送風ファン5の給気で温風となって、送風ファン5及び多孔体13、回転体11、処理室2と順に送風されることで、これらの湿気をなくして乾燥させて、カビや雑菌の発生を阻止して常に清潔な状態から運転開始出来るように自動的な清掃運転を行うものである。   In step 23, it is determined whether the count of the timer means 19 has counted 5 minutes of the predetermined time. If NO, the process proceeds to step 24 to open the electric on-off valve 15 to store the water stored in the processing chamber 2. After moving to the tank 14 and emptying the processing chamber 2 and detecting the empty state of the processing chamber 2 with a water level sensor (not shown), the driving motor 3 is driven to drive the blower fan 5 and the rotating body 11. And the porous body 13 is rotated to cut off the adhering water. At this time, the vaporizing heater 20 provided in the vicinity of the suction port 6 is also energized, whereby the rotating blower fan 5 is rotated. It becomes warm air by supplying air and is blown in the order of the blower fan 5, the porous body 13, the rotating body 11, and the processing chamber 2, thereby eliminating these moisture and preventing generation of mold and bacteria. And you can always start driving from a clean state To and performs automatic cleaning operation.

次に前記ステップ23でタイマ手段19による5分のカウントアップでYESとなると、ステップ25に進んで電動開閉弁15への通電停止で閉成させ、駆動モータ5の駆動を停止すると共に、気化用ヒータ20への通電も停止し、全駆動を停止しての本当の運転停止状態となるものである。   Next, in step 23, when the timer means 19 counts up to 5 minutes, the answer is YES, and the routine proceeds to step 25, where the energization of the electric on-off valve 15 is stopped, the drive motor 5 is stopped, and vaporization is performed. The energization to the heater 20 is also stopped, and a real operation stop state is obtained by stopping all driving.

一方保管タンク14内の水は、室内空気が回転体11と多孔体13によるナノミスト生成時に、水しぶき内を通過したり、大きな水滴と接触することで、空気ないの塵や細菌が処理室2内の貯水中に入り除去された水なので、そのまま排水されるが、ナノミストとマイナスイオンと共に室内に供給される空気は清潔で綺麗な物で、そして再び吸引口6から吸引されるもので、室内空気の浄化も行える空気清浄能力も有するものである。   On the other hand, the water in the storage tank 14 passes through the water spray or comes into contact with large water droplets when indoor air is generated by the rotating body 11 and the porous body 13, so that dust and bacteria without air are generated in the processing chamber 2. It is drained as it is, but it is drained as it is, but the air supplied to the room together with nano mist and negative ions is clean and beautiful, and is sucked again from the suction port 6. It also has an air cleaning capability that can purify the air.

1 ナノミストとマイナスイオン発生装置
2 処理室
3 駆動モータ
4 支軸
5 送風ファン
6 吸引口
9 放出口
11 回転体
13 多孔体
17 制御回路
19 タイマ手段
DESCRIPTION OF SYMBOLS 1 Nano mist and anion generator 2 Processing chamber 3 Drive motor 4 Support shaft 5 Blower fan 6 Suction port 9 Release port 11 Rotating body 13 Porous body 17 Control circuit 19 Timer means

Claims (3)

駆動モータの支軸に取り付けられ吸引口から吸引した空気を放出口から放出させる送風ファンと、前記送風ファンと同軸に取り付けられ回転することで、処理室に貯水された水を汲み上げ飛散させる回転体と、前記回転体と共に回転し該回転体から飛散した水がぶつかって破砕することで、ナノミストとマイナスイオンを発生させる多孔体とを備え、この発生したナノミストとマイナスイオンを前記送風ファンの送風で放出口から室内に放出するようにしたものに於いて、運転停止後には送風ファン、回転体、多孔体に付着している水滴を除去する清掃運転を一定時間行う事を特徴とするナノミストとマイナスイオン発生装置。   A blower fan that is attached to the spindle of the drive motor and discharges air sucked from the suction port from the discharge port, and a rotating body that is mounted coaxially with the blower fan and rotates to pump up and store the water stored in the processing chamber And the porous body that generates nano-mist and negative ions by colliding with and crushing the water that is rotated together with the rotary body and scattered from the rotary body, and the generated nano-mist and negative ions are blown by the blower fan. Nano mist and minus, characterized in that after the operation is stopped, cleaning operation is performed for a certain period of time to remove water droplets adhering to the blower fan, rotating body, and porous body. Ion generator. 前記清掃運転は、駆動モータの駆動を一旦停止し、処理室内の貯水を保管タンクに移動させた後に、駆動モータを再駆動させ送風ファン、回転体、多孔体を回転させて水を切るようにした事を特徴とする請求項1記載のナノミストとマイナスイオン発生装置。   In the cleaning operation, the drive motor is temporarily stopped, the water stored in the processing chamber is moved to the storage tank, and then the drive motor is re-driven to rotate the blower fan, rotating body, and porous body to drain water. The nanomist and negative ion generator of Claim 1 characterized by the above-mentioned. 前記清掃運転時には、吸引口近傍に備えた気化用ヒータに通電して、送風ファン、回転体、多孔体を乾燥させるようにした事を特徴とする請求項2記載のナノミストとマイナスイオン発生装置。   3. The nanomist and negative ion generator according to claim 2, wherein, during the cleaning operation, current is supplied to a vaporizing heater provided near the suction port to dry the blower fan, the rotating body, and the porous body.
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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108478107A (en) * 2018-05-14 2018-09-04 宁波春仁电器有限公司 It is capable of the hand held cleaner of Wet-dry
KR102043924B1 (en) * 2019-02-22 2019-11-12 최영진 Anionic generator with humidity function
CN112654821A (en) * 2018-09-19 2021-04-13 松下知识产权经营株式会社 Liquid micronizing device and heat exchange ventilator using same

Families Citing this family (1)

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Publication number Priority date Publication date Assignee Title
KR101452239B1 (en) * 2013-02-08 2014-10-23 주식회사 제이엠 Anion generator

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JP2001289470A (en) * 2001-01-22 2001-10-19 Fine:Kk Anion generator
JP2009014254A (en) * 2007-07-04 2009-01-22 Panasonic Corp Humidifying device

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JPH11169636A (en) * 1997-11-06 1999-06-29 Rakuhiko Kofun Yugenkoshi Air cleaner
JP2001289470A (en) * 2001-01-22 2001-10-19 Fine:Kk Anion generator
JP2009014254A (en) * 2007-07-04 2009-01-22 Panasonic Corp Humidifying device

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108478107A (en) * 2018-05-14 2018-09-04 宁波春仁电器有限公司 It is capable of the hand held cleaner of Wet-dry
CN112654821A (en) * 2018-09-19 2021-04-13 松下知识产权经营株式会社 Liquid micronizing device and heat exchange ventilator using same
CN112654821B (en) * 2018-09-19 2022-07-26 松下知识产权经营株式会社 Liquid refining device and heat exchange ventilator using same
KR102043924B1 (en) * 2019-02-22 2019-11-12 최영진 Anionic generator with humidity function

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