JPH0532181Y2 - - Google Patents

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Publication number
JPH0532181Y2
JPH0532181Y2 JP1987141962U JP14196287U JPH0532181Y2 JP H0532181 Y2 JPH0532181 Y2 JP H0532181Y2 JP 1987141962 U JP1987141962 U JP 1987141962U JP 14196287 U JP14196287 U JP 14196287U JP H0532181 Y2 JPH0532181 Y2 JP H0532181Y2
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JP
Japan
Prior art keywords
air
droplets
cleaning liquid
liquid
mixing chamber
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 - Lifetime
Application number
JP1987141962U
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Japanese (ja)
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JPS6448123U (en
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Publication of JPS6448123U publication Critical patent/JPS6448123U/ja
Application granted granted Critical
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Description

【考案の詳細な説明】 〈産業上の利用分野〉 本考案は、室内空気中の汚染物質を除去して清
浄化する小型の洗浄式空気清浄機に関するもので
ある。
[Detailed Description of the Invention] <Industrial Application Field> The present invention relates to a small-sized cleaning air cleaner that removes and purifies indoor air by removing pollutants.

〈従来技術〉 従来の洗浄式空気清浄機として、加圧ポンプと
噴霧ノズルにより洗浄液を霧化し、空気中に含ま
れる汚染物質を前記液滴に混合室で付着溶込さ
せ、その混合物から液滴を液体分離フイルターで
分離するものがあり、例えば実開昭56−10920号
公報に示されている。
<Prior art> As a conventional cleaning air cleaner, a cleaning liquid is atomized using a pressure pump and a spray nozzle, contaminants contained in the air are attached to and dissolved in the droplets in a mixing chamber, and the droplets are extracted from the mixture. There is a method in which the liquid is separated using a liquid separation filter, as shown in, for example, Japanese Utility Model Application Publication No. 10920/1983.

また、超音波霧化装置を用いて洗浄液を霧化す
るものとしては、例えば特開昭62−106819号公報
がある。
Further, as an example of a method for atomizing a cleaning liquid using an ultrasonic atomizer, there is, for example, Japanese Patent Application Laid-Open No. 106819/1983.

〈考案が解決しようとする問題点〉 上記従来の洗浄式空気清浄機は、いずれも、そ
の混合室は多くの邪魔板を交互に配置する構造も
のであり、また、洗浄液の液面は混合室の一部と
して利用していないので、その構造は複雑である
等、全体に構造が複雑かつ大型化するといつた問
題点があつた。
<Problems to be solved by the invention> In all of the above-mentioned conventional cleaning air purifiers, the mixing chamber has a structure in which many baffle plates are arranged alternately, and the liquid level of the cleaning liquid is lower than the mixing chamber. Since it is not used as a part of the system, its structure is complicated, and the overall structure becomes complicated and large.

そこで、本考案は、全体の構造を単純かつ小型
化することができ、また、洗浄液の洗浄液霧化
(液滴発生)機能に優れかつフイルターからの洗
浄液滴回収も可能であり、居住空間用に用いるこ
とができる洗浄式空気清浄機の提供を目的とす
る。
Therefore, the present invention has a simple and compact overall structure, has excellent cleaning liquid atomization (droplet generation) function, and can collect cleaning droplets from the filter, making it suitable for living spaces. The purpose is to provide a cleaning type air cleaner that can be used.

〈問題点を解決するための手段〉 本考案による問題点解決手段は、第1図〜第3
図の如く、空気清浄機本体1と、該本体1に設け
られた吸気口2および排気口3と、該吸気口2か
ら排気口3に至る空気流を形成する送風装置4
と、前記本体1内に設けられ空気洗浄液5を霧化
して液滴とする霧化装置6と、該霧化装置6によ
り霧化された液滴と前記吸気口2から吸入された
空気とを混合し該空気中に含まれる汚染物質を前
記液滴に付着溶込させる混合室7と、該混合室7
で混合れた液滴および空気から液滴を分離する液
体分離フイルター8と、洗浄液溜り26へその液
面を一定高さに保つように液補給するタンク37
とを具えている。
<Means for solving the problem> The means for solving the problem according to the present invention are shown in Figures 1 to 3.
As shown in the figure, an air purifier main body 1, an intake port 2 and an exhaust port 3 provided in the main body 1, and a blower device 4 that forms an air flow from the intake port 2 to the exhaust port 3.
, an atomizing device 6 provided in the main body 1 that atomizes the air cleaning liquid 5 into droplets; a mixing chamber 7 for mixing and adhering and dissolving contaminants contained in the air into the droplets;
a liquid separation filter 8 that separates the droplets from the air and the droplets mixed in the air, and a tank 37 that supplies liquid to the cleaning liquid reservoir 26 so as to keep the liquid level at a constant level.
It is equipped with.

前記混合室7には、霧化液滴と空気とを乱流に
より混合物とする縦方向ジグザグ形の第一、第二
衝突板27,28が横方向に間隔を置いて設けら
れ、該第一衝突板27の下端27bは一定液面下
に位置せしめられ、前記第二衝突板28の下端2
8bは一定液面とターン間隙30を有して配置さ
れ、該ターン間隙30を通して前記混合物をター
ンさせるよう構成され、前記フイルター8は前記
洗浄液溜り26の端部の液面と間隙を置いて上方
に配置されている。
The mixing chamber 7 is provided with first and second collision plates 27 and 28, which are vertically zigzag-shaped and spaced apart from each other in the horizontal direction, and which mix atomized droplets and air through turbulent flow. The lower end 27b of the collision plate 27 is positioned below a constant liquid level, and the lower end 27b of the second collision plate 28
8b is arranged with a constant liquid level and a turn gap 30, and is configured to turn the mixture through the turn gap 30, and the filter 8 is arranged above the liquid level at the end of the cleaning liquid reservoir 26 with a gap therebetween. It is located in

〈作用〉 上記問題点解決手段において、吸気口2から吸
込まれた空気は、空気取入室21から通路19を
通り、水面より上に開口した防止筒24を経て混
合室7の霧化部31へ導かれる。ここで、霧化装
置6により霧化され霧化部31で液滴となつた空
気洗浄液5が該空気と混合され、次に混合部32
で第一、第二衝突板27,28に衝突し乱流にな
ることにより、空気と液滴はさらによく混合され
る。このとき、空気中の塵埃や臭気成分は、液滴
に付着あるいは溶込んで除去され、ターン間隙3
0の下の液面に当たりターンして液体分離フイル
ター8に至る。
<Operation> In the above problem solving means, the air sucked from the intake port 2 passes through the passage 19 from the air intake chamber 21, passes through the prevention tube 24 opened above the water surface, and goes to the atomization section 31 of the mixing chamber 7. be guided. Here, the air cleaning liquid 5 that has been atomized by the atomization device 6 and turned into droplets in the atomization section 31 is mixed with the air, and then
By colliding with the first and second collision plates 27 and 28 and creating a turbulent flow, the air and the droplets are mixed even better. At this time, dust and odor components in the air are removed by adhering to or melting into the droplets, and the turn gap 3
It hits the liquid level below 0 and turns to reach the liquid separation filter 8.

そして、塵埃や臭気成分等の汚染物質が付着あ
るいは溶込んだ液滴および洗浄された清浄空気の
混合物は、ここで液滴が除去れ、清浄空気のみが
送風装置4を介して排気口3より室内に排出され
る。
The mixture of droplets with pollutants such as dust and odor components adhering to or dissolved in them and the cleaned clean air is removed here, and only the clean air is sent from the exhaust port 3 via the blower 4. It is discharged indoors.

〈実施例〉 以下、本考案の一実施例を第1図〜第3図に基
づいて説明する。第1図は本考案空気清浄機を示
す縦断正面図、第2図は同じく横断平面図、第3
図は同じく本体の斜視図である。
<Example> Hereinafter, an example of the present invention will be described based on FIGS. 1 to 3. Fig. 1 is a longitudinal sectional front view showing the air purifier of the present invention, Fig. 2 is a cross-sectional plan view, and Fig. 3 is a longitudinal sectional front view showing the air cleaner of the present invention.
The figure is also a perspective view of the main body.

そして、図示の如く、本考案空気清浄機は、空
気清浄機本体1と、該本体1に設けられた吸気口
2および排気口3と、該吸気口2から排気口3に
至る空気流を形成する送風装置4と、前記本体1
内に設けられ空気洗浄液5を霧化部31で霧化し
て液滴とする霧化装置6と、該霧化装置6により
霧化された液滴と前記吸気口2から吸入された空
気とを混合し該空気中に含まれる汚染物質を前記
液滴に付着溶込させる混合室7と、該混合室7で
混合された混合物から液滴を分離する液体分離フ
イルター8とを具えたものである。
As shown in the figure, the air purifier of the present invention includes an air purifier main body 1, an intake port 2 and an exhaust port 3 provided in the main body 1, and an air flow from the intake port 2 to the exhaust port 3. a blower device 4, and the main body 1.
an atomizing device 6 that is provided inside and atomizes the air cleaning liquid 5 into droplets in an atomizing section 31; It is equipped with a mixing chamber 7 for mixing and adhering and dissolving contaminants contained in the air into the droplets, and a liquid separation filter 8 for separating the droplets from the mixture mixed in the mixing chamber 7. .

前記本体1は、第3図の如く、底壁9、前壁1
0、後壁11、および左右の側壁12,13から
上面開放の箱形に形成され、上面に蓋14が開閉
自在に設けられる。また、前壁10の右側部に前
記吸気口2が形成され、蓋14の中央後部に前記
排気口3が形成されている。
The main body 1 has a bottom wall 9, a front wall 1, as shown in FIG.
0, a rear wall 11, and left and right side walls 12, 13 to form a box shape with an open top surface, and a lid 14 is provided on the top surface so as to be openable and closable. Further, the intake port 2 is formed on the right side of the front wall 10, and the exhaust port 3 is formed on the rear center of the lid 14.

そして、第1図および第2図の如く、前壁10
と後壁11との間は中間壁15で仕切られ、該中
間壁15の左端部と後壁11との間はタンク仕切
り壁16で仕切られる。そして、中間壁15、後
壁11、タンク仕切壁16および右側壁13で囲
まれた本体後部に送風機収納室17が形成され
る。
Then, as shown in FIGS. 1 and 2, the front wall 10
and the rear wall 11 are partitioned by an intermediate wall 15, and the left end of the intermediate wall 15 and the rear wall 11 are partitioned by a tank partition wall 16. A blower storage chamber 17 is formed at the rear of the main body surrounded by the intermediate wall 15, the rear wall 11, the tank partition wall 16, and the right side wall 13.

また、中間壁15と前壁10との間には、水平
な中段壁18が差渡し形成され、中段壁18と底
壁9との間に吸気口2からの空気を混合室7へ導
く通路19が形成される。また、中段壁18の右
端部で前記中間壁15と前壁10との間は右仕切
壁20で仕切られ、右仕切壁20と右側壁13と
の間に吸気口2からの空気を前記通路19に導く
空気取入室21が形成される。
Further, a horizontal middle wall 18 is formed across between the middle wall 15 and the front wall 10, and a passageway for guiding air from the intake port 2 to the mixing chamber 7 is formed between the middle wall 18 and the bottom wall 9. 19 is formed. Further, at the right end of the middle wall 18, the space between the middle wall 15 and the front wall 10 is partitioned by a right partition wall 20, and the air from the intake port 2 is passed through the passage between the right partition wall 20 and the right wall 13. An air intake chamber 21 leading to the air intake chamber 19 is formed.

さらに、中段壁18の左端部は、左側壁12ま
で延設されており、中段壁18、前記タンク仕切
壁16、後壁11および左側壁12により本体1
の左後部にタンク収納室22が形成される。
Further, the left end of the middle wall 18 extends to the left wall 12, and the middle wall 18, the tank partition wall 16, the rear wall 11, and the left wall 12 connect the main body
A tank storage chamber 22 is formed at the left rear part of the tank.

また、前記中段壁18の左端部には、前記通路
19からの空気を混合室7へ導びく導孔23が形
成される。該導孔23の孔壁に洗浄液侵入防止筒
24が立設されている。
Further, a guide hole 23 for guiding air from the passage 19 to the mixing chamber 7 is formed at the left end of the middle wall 18 . A cleaning liquid intrusion prevention tube 24 is provided upright on the hole wall of the guide hole 23 .

そして、中間壁15および前壁10の上端間に
縦断面逆L字形の上板25が差渡され、該上板2
5、右仕切壁20および中段壁18により前記混
合室7が形成される。そして、中段壁18、右側
壁13、前壁10、後壁11および左側壁12に
より洗浄液溜り26が形成される。
An upper plate 25 having an inverted L-shaped longitudinal section is interposed between the upper ends of the intermediate wall 15 and the front wall 10.
5. The mixing chamber 7 is formed by the right partition wall 20 and the middle wall 18. A cleaning liquid reservoir 26 is formed by the middle wall 18, the right side wall 13, the front wall 10, the rear wall 11, and the left side wall 12.

前記混合室7の中央には、縦方向ジグザグ形の
第一、第二衝突板27,28が左右に間隔を置い
て配され、該衝突板27,28は前記中間壁15
および前壁10に固定される。第一衝突板27の
上端27aと前記上板25との間に空気を通過さ
せる第一ターン間隙29が形成され、第一衝突板
27の下端27bは洗浄液溜り26に溜つた洗浄
液5の液面下に位置する。第二衝突板28の上端
28aは上板25と当接し、また下端28bは、
それと洗浄液面との間に空気を通過させる第二タ
ーン間隙30を有するよう配置される。
In the center of the mixing chamber 7, vertically zigzag-shaped first and second collision plates 27 and 28 are arranged with an interval left and right.
and fixed to the front wall 10. A first turn gap 29 through which air passes is formed between the upper end 27a of the first collision plate 27 and the upper plate 25, and the lower end 27b of the first collision plate 27 is located at the liquid level of the cleaning liquid 5 accumulated in the cleaning liquid reservoir 26. located below. The upper end 28a of the second collision plate 28 is in contact with the upper plate 25, and the lower end 28b is
It is arranged to have a second turn gap 30 between it and the cleaning liquid level to allow air to pass therethrough.

そして、第一衝突板27の左側に霧化部31が
形成され、衝突板27,28間に混合部32が形
成される。さらに、混合室7の右側部では、中間
壁15に空気を前記送風機収納室17へ導びくフ
イルター通過口33が形成され、該通過口33に
前記フイルター8が配される。フイルター8は前
記洗浄液溜り26の端部の液面と間隙を置いて上
方に配置される。
Further, an atomizing section 31 is formed on the left side of the first collision plate 27, and a mixing section 32 is formed between the collision plates 27 and 28. Further, on the right side of the mixing chamber 7, a filter passage port 33 is formed in the intermediate wall 15 to guide air to the blower storage chamber 17, and the filter 8 is disposed in the passage port 33. The filter 8 is arranged above the liquid level at the end of the cleaning liquid reservoir 26 with a gap therebetween.

前記送風装置4は、本体1後部の送風機収納室
17内に配されたシロツコ型フアンであり、その
中心軸に取付けられたフアンモータ34により駆
動される。モータ34は収納室17の仕切壁17
aに固定され、空気は該仕切壁17aの中央孔1
7bから入り、仕切壁17a上端の排気口3へ送
られる。
The blower device 4 is a Sirotsko type fan disposed in the blower storage chamber 17 at the rear of the main body 1, and is driven by a fan motor 34 attached to its central shaft. The motor 34 is connected to the partition wall 17 of the storage chamber 17.
a, and the air flows through the central hole 1 of the partition wall 17a.
7b and is sent to the exhaust port 3 at the upper end of the partition wall 17a.

前記霧化装置6は、前記混合室7の霧化部31
の下方の中段壁18に配されたジルコン酸チタン
酸鉛等の素材からなる圧電素子35と、その超音
波発振回路36から成り、前記洗浄液溜り26の
下部に溜まつた空気洗浄液5を、超音波発振によ
りキヤビテーシヨン現象により霧化して液滴とす
る。そして、タンク収納室22には、タンク37
が設置され、該タンク37内に空気洗浄液5が蓄
えられる。そして、空気洗浄液5はタンク37の
下端のキヤツプ38から洗浄液溜り26に補給さ
れ、一定高の液面に保たれる。
The atomization device 6 includes an atomization section 31 of the mixing chamber 7.
It consists of a piezoelectric element 35 made of a material such as lead zirconate titanate and placed on the lower middle wall 18, and its ultrasonic oscillation circuit 36, and the air cleaning liquid 5 accumulated in the lower part of the cleaning liquid reservoir 26 is Atomized into droplets due to cavitation phenomenon caused by sonic oscillation. In the tank storage chamber 22, a tank 37 is provided.
is installed, and the air cleaning liquid 5 is stored in the tank 37. Then, the air cleaning liquid 5 is replenished from the cap 38 at the lower end of the tank 37 to the cleaning liquid reservoir 26, and the liquid level is maintained at a constant level.

前記液体分離フイルター8は、吸湿性のある多
孔質または繊維質のものであり、液滴と空気の混
合物から液滴を分離する機能を有するものであ
る。そして、該液体分離フイルター8は、本体1
から着脱可能とされている。すなわち、フイルタ
ー8は、第2図の如く、中間壁15の通過口33
の左右側壁に形成された保持溝33aに上方へ引
出し自在に嵌合され、蓋14を取り外すことによ
り交換可能となる。
The liquid separation filter 8 is hygroscopic, porous or fibrous, and has the function of separating droplets from a mixture of droplets and air. The liquid separation filter 8 is connected to the main body 1.
It is said that it can be attached and detached from. That is, as shown in FIG.
The cover 14 is fitted into a holding groove 33a formed on the left and right side walls of the cover 14 so as to be freely pulled out upward, and can be replaced by removing the cover 14.

図中、39はタンク37の交換扉、40は強弱
切換スイツチを兼ねる電源スイツチである。
In the figure, 39 is a replacement door for the tank 37, and 40 is a power switch that also serves as a power/weak switch.

上記構成において、使用者が電源スイツチ40
をオンすると、フアンモータ34が回転を始め、
送風装置4が駆動され、吸気口2から排気口3に
至る空気流が形成される。同時に、超音波発振回
路36が発振を開始し、圧電素子35が駆動さ
れ、空気洗浄液5を霧化して液滴とする。
In the above configuration, the user can turn on the power switch 40.
When turned on, the fan motor 34 starts rotating,
The blower device 4 is driven, and an air flow from the intake port 2 to the exhaust port 3 is formed. At the same time, the ultrasonic oscillation circuit 36 starts oscillating, the piezoelectric element 35 is driven, and the air cleaning liquid 5 is atomized into droplets.

そして、吸気口2から吸込まれた空気は、空気
取入室21から通路19を通り、水面より上に開
口した防止筒24を経て混合室7の霧化部31へ
導かれる。ここで、霧化装置6により霧化され霧
化部31で液滴となつた空気洗浄液5が該空気と
混合され、次に混合部32で第一、第二衝突板2
7,28に衝突し乱流になることにより、空気と
液滴はさらによく混合される。このとき、空気中
の塵埃や臭気成分は、液滴に付着あるいは溶込ん
で除去され、ターン間隙30の下の液面に当たり
ターンして液体分離フイルター8に至る。
The air sucked in from the intake port 2 passes through the passage 19 from the air intake chamber 21 and is guided to the atomization section 31 of the mixing chamber 7 via the prevention tube 24 opened above the water surface. Here, the air cleaning liquid 5 that has been atomized by the atomization device 6 and turned into droplets in the atomization section 31 is mixed with the air, and then in the mixing section 32 the first and second collision plates 2
7 and 28 to create turbulent flow, the air and droplets are further mixed. At this time, dust and odor components in the air are removed by adhering to or melting into the liquid droplets, hitting the liquid surface below the turn gap 30 and turning to reach the liquid separation filter 8 .

そして、塵埃や臭気成分等の汚染物質が付着あ
るいは溶込んだ液滴および洗浄された清浄空気の
混合物は、ここで液滴が除去され、清浄空気のみ
が送風装置4を介して排気口3より室内に排出さ
れる。また、フイルター8から滴下する液滴は洗
浄液溜り26に回収され繰り返し利用される。
The mixture of droplets and cleaned air to which contaminants such as dust and odor components have adhered or dissolved is removed here, and only the clean air is sent from the exhaust port 3 via the blower 4. It is discharged indoors. Further, the liquid droplets dripping from the filter 8 are collected in the cleaning liquid reservoir 26 and used repeatedly.

上記の如き動作により、室内空気から汚染物質
が除去される。
The operations described above remove pollutants from indoor air.

なお、本考案は、上記実施例に限定されるもの
ではなく、本考案の範囲内で上記実施例に多くの
修正および変更を加え得ることは勿論である。
It should be noted that the present invention is not limited to the above embodiments, and it goes without saying that many modifications and changes can be made to the above embodiments within the scope of the present invention.

例えば、送風装置4を排気口3側でなく吸気口
2側に取付けてもよく、その構造も図示した如き
フアンに限らない。また、霧化装置6として圧電
素子35以外のものを利用してもよい。空気洗浄
液5は、水道水でもよい。
For example, the blower device 4 may be attached to the intake port 2 side instead of the exhaust port 3 side, and its structure is not limited to the fan shown. Further, as the atomization device 6, something other than the piezoelectric element 35 may be used. The air cleaning liquid 5 may be tap water.

〈考案の効果〉 以上の説明から明らかな通り、本考案による
と、混合室には、霧化液滴と空気とを乱流により
混合物とする縦方向ジグザグ形の第一、第二衝突
板が横方向に間隔を置いて設けられ、該第一衝突
板の下端は一定液面下に位置せしめられ、前記第
二衝突板の下端は一定液面とターン間隙を有して
配置され、該ターン間隙を通して前記混合物をタ
ーンさせるよう構成されている。すなわち、衝突
板は少なく、かつ混合物は、洗浄液溜りの一定高
さの液面に衝突しターンする(液面が混合室また
は衝突板の一部になる)ので、混合室の構造が簡
単になる。また、フイルターから滴下する液滴は
洗浄液溜りに回収され繰り返し利用される。さら
に、液面の高さは一定のため液滴発生量の過不足
がなく、霧化液滴と空気との混合比は安定する。
<Effects of the invention> As is clear from the above explanation, according to the invention, the mixing chamber includes first and second collision plates having a vertical zigzag shape that mix atomized droplets and air through turbulent flow. The lower end of the first collision plate is positioned below a constant liquid level, the lower end of the second collision plate is disposed with a turn gap from the constant liquid level, and the lower end of the second collision plate is disposed with a turn gap from the constant liquid level, and The device is configured to turn the mixture through the gap. In other words, there are fewer collision plates, and the mixture collides with the liquid level at a certain height in the cleaning liquid reservoir and turns (the liquid level becomes part of the mixing chamber or collision plate), so the structure of the mixing chamber is simplified. . In addition, droplets dripping from the filter are collected in a cleaning liquid reservoir and used repeatedly. Furthermore, since the height of the liquid level is constant, there is no excess or deficiency in the amount of droplets generated, and the mixing ratio of atomized droplets and air is stabilized.

換言すれば、本考案では、全体の構造を単純か
つ小型化することができ、居住空間用に用いるこ
とができるといつた優れた効果がある。
In other words, the present invention has excellent effects in that the overall structure can be made simple and compact, and it can be used for living spaces.

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

第1図は本考案空気清浄機を示す縦断正面図、
第2図は同じく横断平面図、第3図は同じく本体
の斜視図である。 1……空気清浄機本体、2……吸気口、3……
排気口、4……送風装置、5……空気洗浄液、6
……霧化装置、7……混合室、8……液体分離フ
イルター、14……蓋、19……通路、21……
空気取入室、24……洗浄液侵入防止筒、26…
…洗浄液溜り、27,28……衝突板、31……
霧化部、32……混合部、35……圧電素子、3
6……超音波発振回路、37……タンク。
Figure 1 is a longitudinal sectional front view showing the air purifier of the present invention;
FIG. 2 is a cross-sectional plan view, and FIG. 3 is a perspective view of the main body. 1...Air purifier body, 2...Intake port, 3...
Exhaust port, 4... Air blower, 5... Air cleaning liquid, 6
... Atomization device, 7 ... Mixing chamber, 8 ... Liquid separation filter, 14 ... Lid, 19 ... Passage, 21 ...
Air intake chamber, 24...Cleaning liquid intrusion prevention cylinder, 26...
...Washing liquid reservoir, 27, 28...Collision plate, 31...
Atomizing section, 32... Mixing section, 35... Piezoelectric element, 3
6... Ultrasonic oscillation circuit, 37... Tank.

Claims (1)

【実用新案登録請求の範囲】[Scope of utility model registration request] 空気清浄機本体と、該本体に設けられた吸気口
および排気口と、該吸気口から排気口に至る空気
流を形成する送風装置と、前記本体内に設けられ
空気洗浄液を収容する洗浄液溜りと、該洗浄液溜
りの底部の洗浄液を霧化部で霧化して液滴とする
霧化装置と、該霧化装置により霧化された液滴と
前記吸気口から吸入された空気とを混合し該空気
中に含まれる汚染物質を前記液滴に付着溶込させ
る混合室と、該混合室で混合された混合物から液
滴を分離する液体分離フイルターと、前記洗浄液
溜りへその液面を一定高さに保つように液補給す
るタンクとを具え、前記混合室には、霧化液滴と
空気とを乱流により混合物とする縦方向ジグザグ
形の第一、第二衝突板が横方向に間隔を置いて設
けられ、該第一衝突板の下端は一定液面下に位置
せしめられ、前記第二衝突板の下端は一定液面と
ターン間隙を有して配置され、該ターン間隙を通
して前記混合物をターンさせるよう構成され、前
記フイルターは前記洗浄液溜りの端部の液面と間
隙を置いて上方に配置されたことを特徴とする空
気清浄機。
An air purifier main body, an intake port and an exhaust port provided in the main body, an air blower that forms an air flow from the intake port to the exhaust port, and a cleaning liquid reservoir provided in the main body that stores an air cleaning liquid. , an atomizing device that atomizes the cleaning liquid at the bottom of the cleaning liquid reservoir into droplets in an atomizing section; and an atomizing device that mixes the droplets atomized by the atomizing device with the air taken in from the air intake port. a mixing chamber for adhering and dissolving contaminants contained in the air into the droplets; a liquid separation filter for separating the droplets from the mixture mixed in the mixing chamber; and a tank for replenishing the liquid so as to keep the liquid at a constant temperature, and in the mixing chamber, first and second collision plates each having a vertical zigzag shape are spaced apart from each other in the horizontal direction to form a mixture of atomized droplets and air through turbulent flow. the lower end of the first impingement plate is positioned below a constant liquid level, the lower end of the second impingement plate is disposed with a turn gap from the constant liquid level, and the mixture is passed through the turn gap. 1. An air purifier, characterized in that the filter is configured to rotate, and the filter is disposed above a liquid level at an end of the cleaning liquid reservoir with a gap therebetween.
JP1987141962U 1987-09-16 1987-09-16 Expired - Lifetime JPH0532181Y2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP1987141962U JPH0532181Y2 (en) 1987-09-16 1987-09-16

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP1987141962U JPH0532181Y2 (en) 1987-09-16 1987-09-16

Publications (2)

Publication Number Publication Date
JPS6448123U JPS6448123U (en) 1989-03-24
JPH0532181Y2 true JPH0532181Y2 (en) 1993-08-18

Family

ID=31407496

Family Applications (1)

Application Number Title Priority Date Filing Date
JP1987141962U Expired - Lifetime JPH0532181Y2 (en) 1987-09-16 1987-09-16

Country Status (1)

Country Link
JP (1) JPH0532181Y2 (en)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US8317901B2 (en) * 2010-02-26 2012-11-27 Empire Technology Development Llc Nanoparticle filtration

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5610920B2 (en) * 1974-07-12 1981-03-11
JPS6227027A (en) * 1985-07-29 1987-02-05 Toshiba Corp Corrosive gas removing device
JPS62106819A (en) * 1985-11-01 1987-05-18 Tokyo Copal Kagaku Kk Method and apparatus for cleaning air

Family Cites Families (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5610920U (en) * 1979-07-04 1981-01-30

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5610920B2 (en) * 1974-07-12 1981-03-11
JPS6227027A (en) * 1985-07-29 1987-02-05 Toshiba Corp Corrosive gas removing device
JPS62106819A (en) * 1985-11-01 1987-05-18 Tokyo Copal Kagaku Kk Method and apparatus for cleaning air

Also Published As

Publication number Publication date
JPS6448123U (en) 1989-03-24

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