JP2018069152A - Filter device for air cleaning - Google Patents

Filter device for air cleaning Download PDF

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JP2018069152A
JP2018069152A JP2016211617A JP2016211617A JP2018069152A JP 2018069152 A JP2018069152 A JP 2018069152A JP 2016211617 A JP2016211617 A JP 2016211617A JP 2016211617 A JP2016211617 A JP 2016211617A JP 2018069152 A JP2018069152 A JP 2018069152A
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air
filter medium
filter
frame
filter device
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隆一 町井
Ryuichi Machii
隆一 町井
達也 尾形
Tatsuya Ogata
達也 尾形
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Nissin Giken Co Ltd
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Abstract

PROBLEM TO BE SOLVED: To solve the problems that clogging and pressure loss caused by clogging are made large since a large amount of moisture is stuck and collected with dust especially by a filter for coarse dust in a high humidity climate condition when introducing outside air and moisture immersed in an air duct gives a bad influence to the air duct, a chamber, the other devices and air purification itself.SOLUTION: In a filter device for separating moisture from air holding and housing a filter medium 11 in a direction blocking the stream of air in a frame-like frame 9, being installed in an air duct 3 blowing introduced outside air to a next process and separating moisture stuck to the filter medium 11 from outside air and collecting,: a water resistant seal bottom 12 for receiving moisture collected by the filter medium 11 at a bottom in the frame 9 corresponding to the lower end side of the filter medium 11; and the seal bottom 12 is inclined to a horizontal surface.SELECTED DRAWING: Figure 2

Description

この発明は主として外気を導入して室内の環境制御を行う際に、空気中の水分を分離除去する空気清浄用フィルター装置に関する。   BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention mainly relates to an air cleaning filter device that separates and removes moisture in the air when indoor air is controlled by introducing outside air.

従来例えば工業用,医療用,理化学試験用等に使用されるクリーンルームの環境制御等では、外気導入用風道に空気浄化用フィルターが設置され、このフィルターは前処理用の粗塵用フィルターと微粉塵用フィルターが複数段に設置されることが多い(特許文献1参照)。
また上記フィルターのうち粗塵用フィルターは特に圧力損失を抑制するため高い通気性が求められる反面、水分や塩分を含む外気の処理では、水や塩分を捕集するため、塵離れ性が重要となり、このため通気性の優れた樹脂製の不織布やメッシュ材等の表面にPTFE多孔質膜を付着したもの等が知られている(特許文献2参照)。
Conventionally, in the environmental control of clean rooms used for industrial use, medical use, physics and chemistry tests, etc., an air purification filter is installed in the air passage for introducing outside air. In many cases, dust filters are installed in a plurality of stages (see Patent Document 1).
Of the above filters, the coarse dust filter is particularly required to have high air permeability in order to suppress pressure loss. On the other hand, in the treatment of outside air containing moisture and salt, water and salt are collected, so dust separation is important. For this reason, a non-woven fabric made of a resin having excellent air permeability, a mesh material or the like with a PTFE porous film attached thereto is known (see Patent Document 2).

特開2015−62881号公報JP2015-62881A 特開2006−175313号公報JP 2006-175313 A

しかし外気を導入する際に気候的に高湿度の条件下では、特に粗塵用フィルターに大量の水分が塵と共に付着捕集されるので目詰まりや目詰まりによる圧力損失が大きくなる他、風道内に浸出した水分により、風道やチャンバーその他の機器類や空気浄化自体に悪影響を及ぼすという問題がある。
さらに熱帯低気圧下の天候や海岸近傍では、外気に粉塵や水分の他多量の塩分を含むため、上記悪影響の度合が高まるほかに、潮解現象によりフィルターの目詰まりや圧力損失が一層大きくなるという欠点がある。
However, when introducing outside air, especially in climatically high humidity conditions, a large amount of water is collected and collected together with dust, especially in the coarse dust filter. Moisture leached into the air has a problem of adversely affecting the airways, chambers and other equipment and the air purification itself.
Furthermore, in the weather under tropical cyclones and in the vicinity of the coast, the outside air contains a large amount of salt in addition to dust and moisture, so the degree of the above-mentioned adverse effect is increased, and filter clogging and pressure loss are further increased due to deliquescence phenomena. There are drawbacks.

上記課題を解決するための本発明のフィルター装置は、第1に枠状のフレーム9内に濾材11を空気の流れを遮断する方向に保持させて収容し、導入した外気を次工程に送風する風道3内に設置して上記濾材11に付着した水分を外気より分離捕集する空気清浄用フィルター装置であって、上記濾材11の下端側と対応するフレーム9内の底部に上記濾材11に捕集された水分を受け止める耐水性を備えたシール底12を設け、該シール底12を水平面に対して傾斜させてなることを特徴としている。   In the filter device of the present invention for solving the above-mentioned problem, first, the filter medium 11 is held in the frame-shaped frame 9 while being held in a direction to block the air flow, and the introduced outside air is blown to the next process. An air cleaning filter device that is installed in the air passage 3 and separates and collects moisture adhering to the filter medium 11 from outside air, and is attached to the filter medium 11 at the bottom of the frame 9 corresponding to the lower end side of the filter medium 11. A seal bottom 12 having water resistance for receiving the collected water is provided, and the seal bottom 12 is inclined with respect to a horizontal plane.

第2に、前記シール底12の傾斜下端側にシール底12の表面に沿って流出する水分を受け止めてフレーム9又は風道3の外部に導いて排水する排水受け13を設けたことを特徴としている。   Secondly, the drain bottom 13 is provided on the inclined lower end side of the seal bottom 12 to receive the water flowing out along the surface of the seal bottom 12 and lead it to the outside of the frame 9 or the air passage 3 to drain the water. Yes.

第3に、フレーム9を風道3のエア供給側に傾斜させることにより、シール底12を傾斜させたことを特徴としている。   Thirdly, the seal bottom 12 is inclined by inclining the frame 9 toward the air supply side of the air passage 3.

第4に、濾材11自体を風道3のエア供給側に傾斜させてなることを特徴としている。   Fourth, the filter medium 11 itself is inclined to the air supply side of the air passage 3.

第5に、濾材11を耐水性材料よりなる不織布製とし、風道3の供給側の面に撥水加工を施してなることを特徴としている。   Fifth, the filter medium 11 is made of a non-woven fabric made of a water-resistant material, and the supply side surface of the air passage 3 is subjected to water repellent finishing.

第6に、濾材11を平面視で蛇腹状に折り曲げ形成してなることを特徴としている。   Sixth, the filter medium 11 is formed by bending in a bellows shape in plan view.

第7に、前記濾材11に蛇腹形状を保持するスペーサー11aを設け、該スペーサー11aを水平面に対して傾斜させてなることを特徴としている。   Seventh, the filter medium 11 is provided with a spacer 11a for maintaining a bellows shape, and the spacer 11a is inclined with respect to a horizontal plane.

以上のように構成される本発明の装置は次のような効果を奏する。
(1)フィルター装置のフレーム内で、濾材の下端側にあるシール底を傾斜させて設けたので、濾材に捕集された水分はシール底に滴下又は流下して傾斜下端側に導かれて、外部に排出される。その結果フィルター装置や風道内に水分が流出しないので、風道やフィルター装置の水分による腐食や錆び等による損傷も防止され、これら水分による空気浄化への悪影響も防止される。
The apparatus of the present invention configured as described above has the following effects.
(1) Since the seal bottom on the lower end side of the filter medium is inclined in the frame of the filter device, the moisture collected on the filter medium is dripped or flowed down to the seal bottom and guided to the inclined lower end side, It is discharged outside. As a result, moisture does not flow out into the filter device or the air passage, so that damage due to corrosion or rust due to moisture in the air passage or the filter device is prevented, and adverse effects on air purification due to the water are also prevented.

(2)また上記のような捕集水分の流下、排出により粉塵や塩分等も水とともに外部に排出される利点があり、特に濾材の通風上流(供給)側の表面に撥水加工を施すことにより、捕集された水分は濾材下流側に運ばれる前に濾材の表面側で下方に滴下又は流下するので、粉塵や塩分を濾材表面より洗い流す効果があり、粉塵や潮解による目詰まりや圧力損失を防止でき、特に塩害対策に有効である。 (2) In addition, there is an advantage that dust, salt, etc. are discharged together with water by the flow and discharge of the collected water as described above, and in particular, the surface of the filter medium on the upstream side (supply) side is subjected to water repellent treatment The collected water drops or flows down on the surface of the filter medium before being transported downstream of the filter medium, so that dust and salt can be washed away from the surface of the filter medium. This is particularly effective in combating salt damage.

その他フレームや濾材自体をエア供給側に傾斜させることにより、濾材に当る風により撥水加工された濾材表面には下向きの気流が発生し、水分を下向きに滴下又は流出させるのを助長するとともに、濾材の洗浄効果を高める効果を生じさせる利点がある。   In addition, by tilting the frame and the filter medium itself to the air supply side, a downward airflow is generated on the surface of the filter medium that has been water-repellent processed by the wind hitting the filter medium, and it helps to drip or flow out moisture downwards, There is an advantage of producing an effect of enhancing the cleaning effect of the filter medium.

本発明の装置を利用した空気浄化システムの1例を示す全体構成図である。It is a whole lineblock diagram showing an example of an air purification system using a device of the present invention. (A),(B)は本発明のフィルター装置の正面図及び側面図である。(A), (B) is the front view and side view of the filter apparatus of this invention. 本発明装置の底部排水構造を示す図2(A)のIII−III断面図である。It is III-III sectional drawing of FIG. 2 (A) which shows the bottom part drainage structure of this invention apparatus. (A),(B)は本発明の装置に用いた濾材の1例を示す部分拡大平面図及び正面図である。(A), (B) is the elements on larger scale and front view which show an example of the filter medium used for the apparatus of this invention. フィルター装置の別実施例を示した要部斜視図である。It is the principal part perspective view which showed another Example of the filter apparatus.

以下図示する本発明の実施形態につき詳述すると、図1はこの発明の装置の適用例を示す空気浄化システムの1例を示す全体構成図である。例えば電子部品製造、理化学薬品や医療品の製造等のために空気浄化された浄化ルーム1に、浄化された空気を供給する空気浄化装置2は、風道3の上流側吸入口に粗大なゴミ類等を捕集するルーバー4が設置され、その排出側に風道3内に仕切るように縦方向に粗大粒径の粉塵と空気中に含まれるミストや液滴又は水蒸気等の水分を捕集する気水分離用(空気清浄用)のフィルター装置6が内部を仕切るように設置されている。   The embodiment of the present invention illustrated below will be described in detail. FIG. 1 is an overall configuration diagram showing an example of an air purification system showing an application example of the apparatus of the present invention. For example, an air purification device 2 that supplies purified air to a purification room 1 that has been purified for the manufacture of electronic components, physicochemicals, medical products, etc. A louver 4 is installed that collects varieties, etc., and collects dust with a coarse particle size in the vertical direction and water such as mist, liquid droplets or water vapor contained in the air so as to be partitioned in the air passage 3 on the discharge side. A filter device 6 for separating air and water (for cleaning air) is installed so as to partition the inside.

上記風道3内の末端には浄化ルーム1に求められる空気浄化の程度(必要)に応じて、さらに微細な粒子を捕集する微細粒子フィルター7が設置され、この例では微細粒子フィルター7によって浄化されたエアが浄化ルーム1内に導入されて排気され、一部の空気は循環路8より、前記風道3内の気水分離用のフィルター装置6の上流側に返送される。上記空気浄化システム自体は、浄化ルーム1の種類や求められる空気浄化の度合等によって異なるので、図1に示すものに限定されるものではない。   A fine particle filter 7 for collecting finer particles is installed at the end of the air passage 3 according to the degree (necessity) of air purification required for the purification room 1, and in this example, the fine particle filter 7 The purified air is introduced into the purification room 1 and exhausted, and a part of the air is returned from the circulation path 8 to the upstream side of the filter device 6 for separating air and water in the air passage 3. The air purification system itself is not limited to that shown in FIG. 1 because it varies depending on the type of purification room 1 and the required degree of air purification.

図2〜図4は本発明の装置に使用されるフィルター装置6の詳細なフィルター(濾材)の構成等を示す図面であり、フィルター装置6は例えば610×610×150(mm)程度のサイズでアルミ押し出し成形材等により製造された直方体状のフレーム9により本体部や構成される。上記フレーム9内には、図4(A),(B)に示すように平面視で蛇腹状に折り曲げ形成され、耐水性,耐酸性等を備えたフッ素樹脂HEPAフィルター(フッ素樹脂複合膜)からなる濾材11がフレーム9の内部形状に略適合するサイズに加工されて収容されている。   2 to 4 are drawings showing a detailed configuration of the filter (filter material) of the filter device 6 used in the device of the present invention. The filter device 6 has a size of about 610 × 610 × 150 (mm), for example. The main body and the frame are constituted by a rectangular parallelepiped frame 9 made of an aluminum extruded material or the like. In the frame 9, as shown in FIGS. 4A and 4B, a fluororesin HEPA filter (fluororesin composite film) that is bent in a bellows shape in a plan view and has water resistance, acid resistance, and the like. The filter medium 11 to be formed is processed and accommodated in a size substantially matching the internal shape of the frame 9.

上記濾材11は、通気性に優れ通水性を持たないフッ素樹脂複合膜からなる不織布製のシート材で、少なくとも空気供給側(上流側)表面は撥水加工が施されるとともに、エンボス加工により裏面から表面側に突出する突起部(スペーサー)11aが形成されている。   The filter medium 11 is a non-woven sheet material made of a fluororesin composite film that has excellent air permeability and does not have water permeability. At least the air supply side (upstream side) surface is subjected to water-repellent finish and the back surface is embossed. A protrusion (spacer) 11a protruding from the surface to the surface side is formed.

このスペーサー11aは蛇腹を構成する平面視逆V字形の断面内に突出して、図4(A),(B)に示すようにその逆V字形(裏面側は平面視V字形)自体を保持するスペーサーとして作用するように逆V字形断面内で互いに当接し合い且つホットメルト等により互いに固着されている。またスペーサー11a同士が当接してV字形を保つためには逆V字形断面の中心の折目に近い程突起の高さが小さくなるように形成されている。上記エンボス加工は空気の接触面を増大させて浄化効率を高める機能を有し、濾材11の裏側(排出側)にも突出するように加工することができる。   This spacer 11a protrudes in the cross-section of the inverted V shape in plan view that constitutes the bellows, and holds the inverted V shape (the back side is V shape in plan view) itself as shown in FIGS. 4 (A) and 4 (B). They are in contact with each other in the inverted V-shaped cross section so as to act as spacers and are fixed to each other by hot melt or the like. Further, in order to keep the spacers 11 a in contact with each other and keep the V shape, the height of the protrusion is made smaller as the distance from the center of the inverted V-shaped cross section is closer. The embossing has a function of increasing the air contact surface to increase the purification efficiency, and can be processed so as to protrude also to the back side (discharge side) of the filter medium 11.

前記フレーム9の底枠9aは1枚の金属プレートよりなるが、その上面にはエア供給側に向って僅かな傾斜角θ(例えば水平面に対して3°〜5°程度)で加工傾斜したシール底12がポリウレタン等のプレスチック材又は金属板等で形成・設置され、これに応じて濾材11の下端も傾斜してシール底12の傾斜面に対応する形状になっている。濾材11の下端とシール底12の上面は、後述するように濾材11の表面に凝結した水分がシール底12の上面に滴下又は流下して傾斜に沿って排出されれば足りるので、固定の安定性が図れる限り、接触しなくても良い。 The bottom frame 9a of the frame 9 is made of a single metal plate, but its upper surface is processed and inclined at a slight inclination angle θ 1 (for example, about 3 ° to 5 ° with respect to the horizontal plane) toward the air supply side. The seal bottom 12 is formed and installed with a plastic material such as polyurethane or a metal plate, and the lower end of the filter medium 11 is also inclined corresponding to the inclined surface of the seal bottom 12 accordingly. Since the lower end of the filter medium 11 and the upper surface of the seal bottom 12 need only be dripped or flowed down the upper surface of the seal medium 12 and discharged along an inclination as will be described later, stable fixation It is not necessary to make contact as long as the characteristics can be achieved.

そして上記シール底12の傾斜下端側には、図3に示すようにフレーム9の左右幅の長さに沿って桶状(チャンネル状)断面の排水受け13が設置され、シール底12の上面に沿って流れた水分はこの排水受け13に受け止められ、図示しない排水孔等により外部に排水される。このため排水受け13はフレーム9に対して左右いずれかに傾斜させるか、左右の中間のいずれかの位置に向って漏斗状に下降傾斜させて形成したものを取付けることが望ましい。   Further, as shown in FIG. 3, a drainage receiver 13 having a bowl-shaped (channel-shaped) cross section is installed on the inclined lower end side of the seal bottom 12 along the left and right width of the frame 9. Moisture that has flowed along is received by the drain receiver 13 and drained to the outside through a drain hole (not shown). For this reason, it is desirable to attach the drain receiver 13 that is inclined to the left or right with respect to the frame 9 or that is formed to be inclined downward in a funnel shape toward any position between the left and right.

上記のように構成される本発明のフィルター装置6によれば、風道3に導入されたエアは先ずフィルター装置6内の濾材11のエア供給面側の表面(正面)に衝突又は当接しながら背面側に通過する。この時空気中の粉塵が濾材11に付着して捕集されるが、それと同時に空気中に含まれるミストや水滴又は水蒸気等の水分も同時に濾材11に凝結し又は付着して、濾材11表面に沿って下方に流下するが、捕集された粉塵も上記水分によって下方に流される。この水分の流下は濾材11表面に撥水加工が施されることによって短時間で確実に行われ且つ粉塵を簡単に洗い流す効果もある。   According to the filter device 6 of the present invention configured as described above, the air introduced into the air passage 3 first collides with or comes into contact with the surface (front surface) on the air supply surface side of the filter medium 11 in the filter device 6. Passes to the back side. At this time, dust in the air adheres to the filter medium 11 and is collected. At the same time, water such as mist, water droplets or water vapor contained in the air simultaneously condenses or adheres to the filter medium 11 and is deposited on the surface of the filter medium 11. However, the collected dust is also caused to flow downward by the moisture. This water flow is reliably performed in a short time by applying a water-repellent treatment to the surface of the filter medium 11 and also has an effect of easily washing away dust.

上記実施例ではフレーム9に対してシール底12自体を傾斜させているが、図2(B)に示すようにフレーム9の中心0を上流側に向って3°〜5°程度の傾斜角θだけ前傾させて風道3に取付けることによってもシール底12自体を傾けることが可能である。またこの方法では濾材11自体前傾するので、濾材11正面に衝突した空気流が下向きに案内され、濾材表面に付着した水分の下方への流出と付着粉塵の洗い流し効果が高まる利点がある。この濾材11の前傾は、シール底12とは無関係に行うことも可能である。 In the above embodiment, the seal bottom 12 itself is inclined with respect to the frame 9, but as shown in FIG. 2 (B), the inclination angle θ of about 3 ° to 5 ° with the center 0 of the frame 9 toward the upstream side. It is also possible to tilt the seal bottom 12 itself by tilting it forward by 2 and attaching it to the air passage 3. Further, in this method, since the filter medium 11 itself tilts forward, the air flow that collides with the front face of the filter medium 11 is guided downward, and there is an advantage that the outflow of moisture adhering to the filter medium surface and the washing out effect of the adhering dust are enhanced. The forward tilting of the filter medium 11 can be performed independently of the seal bottom 12.

ちなみに、前記シール底12は、後方傾斜させて濾材11(フィルター装置6)の後部側に配置した排水受け13により捕集された水分を回収するように構成しても良い。   Incidentally, the seal bottom 12 may be configured to collect moisture collected by a drain receiver 13 disposed on the rear side of the filter medium 11 (filter device 6) by being inclined rearward.

なお、本発明に使用する濾材11は、上記に示した不織布製のフッ素樹脂HEPAフィルターに限定されず、ガラス繊維布やカーボンファイバー布、又はその他のメッシュ材の使用が可能であるが、空気中の水分をより確実に捕集するには、供給される空気の流れを濾材11によって遮る機構にすることが望ましい。また本発明の説明で使用される風道は、独立した管状の風道に限らず、壁や床等にフィルター装置6を設置するために設けた窓その他の広く空気が流通するために形成された空間を指称するものである。   The filter medium 11 used in the present invention is not limited to the non-woven fluororesin HEPA filter described above, and glass fiber cloth, carbon fiber cloth, or other mesh materials can be used. In order to more reliably collect the moisture, it is desirable to use a mechanism that blocks the flow of supplied air by the filter medium 11. In addition, the air passage used in the description of the present invention is not limited to an independent tubular air passage, and is formed to allow air to circulate widely, such as a window provided for installing the filter device 6 on a wall or a floor. It refers to a space.

さらに、前記濾材11は、難燃性のシート状部材を用いることにより、原子力発電所等の施設にも利用可能なフィルター装置6を構成しても良い。具体的に説明すると、該濾材11は、ポリプロピレン(pp)と、撥水加工されたポリエステルとの2層からなる不織布を用い、これをフッ素系撥水剤と、無機系難燃剤(ブロムアンチモン系難燃剤)と、塩ビ系バインダー(接着剤)によりコーティングして難燃性のシート状部材に形成されている。   Further, the filter medium 11 may constitute a filter device 6 that can be used in facilities such as a nuclear power plant by using a flame-retardant sheet-like member. Specifically, the filter medium 11 uses a non-woven fabric composed of two layers of polypropylene (pp) and water-repellent polyester, and is made of a fluorine-based water repellent and an inorganic flame retardant (brom antimony-based). It is formed into a flame retardant sheet-like member by coating with a flame retardant) and a vinyl chloride binder (adhesive).

次に、図5に基づき、フィルター装置の別実施例について説明する。図5は、フィルター装置におけるスペーサーの別実施例を示した要部斜視図である。図示する例では、前記濾材11に用いるスペーサー11aを、エンボス加工による突起部に代えてシート状の部材を蛇腹状に折り曲げて形成した蛇腹部材を用いている。該蛇腹部材11aは、折目を前後方向に向けた状態で前記濾材11の正面側に挿込まれることにより、濾材11の蛇腹形状を保持するスペーサーとして機能する。   Next, another embodiment of the filter device will be described with reference to FIG. FIG. 5 is a perspective view of a principal part showing another embodiment of the spacer in the filter device. In the illustrated example, a bellows member formed by bending a sheet-like member into a bellows shape is used as the spacer 11a used for the filter medium 11 instead of the protruding portion by embossing. The bellows member 11a functions as a spacer that holds the bellows shape of the filter medium 11 by being inserted into the front side of the filter medium 11 with the folds directed in the front-rear direction.

このとき、前記蛇腹部材11aは、前後方向の前記蛇腹部材11aの折目が、濾材11のエア供給側から排出側に向かって下降する方向に、所定の傾斜角θ(例えば水平面に対して3°〜5°程度)傾斜させた状態で差し込まれている(図5参照)。 At this time, the bellows member 11a has a predetermined inclination angle θ 3 (for example, with respect to a horizontal plane) in a direction in which the fold of the bellows member 11a in the front-rear direction descends from the air supply side to the discharge side of the filter medium 11. It is inserted in an inclined state (see FIG. 5).

該構成により、濾材11及び蛇腹部材11aの表面に付着した水滴は、フィルター装置6に送風される風に押出されるようにして蛇腹部材11aの折目の傾斜に沿って後方に流れ易くなる。このため、濾材11及び蛇腹部材11の表面に表れた水滴を効率的に濾材11の後方側から前記シール底12側に落として集めることができる。   With this configuration, water droplets adhering to the surfaces of the filter medium 11 and the bellows member 11a are likely to flow backward along the inclination of the folds of the bellows member 11a so as to be pushed by the air blown to the filter device 6. For this reason, water drops appearing on the surfaces of the filter medium 11 and the bellows member 11 can be efficiently dropped and collected from the rear side of the filter medium 11 to the seal bottom 12 side.

なお、前記スペーサー11aは、蛇腹部材に代えて濾材11の折目を挟持するU字状のクリップによって、同様に構成しても良い。   In addition, you may comprise similarly the said spacer 11a with the U-shaped clip which clamps the fold of the filter medium 11 instead of a bellows member.

1 浄化ルーム
2 空気浄化装置
3 風道
4 ルーバー
6 フィルター装置
7 微粒子フィルター
9 フレーム
9a 底フレーム
11 濾材
11a 突起部(スペーサー)
12 シール底
13 排水受け
θ,θ 傾斜角
DESCRIPTION OF SYMBOLS 1 Purification room 2 Air purification apparatus 3 Air path 4 Louver 6 Filter apparatus 7 Fine particle filter 9 Frame 9a Bottom frame 11 Filter material 11a Protrusion part (spacer)
12 Seal bottom 13 Drainage receptacle θ 1 , θ 2 Inclination angle

Claims (7)

枠状のフレーム(9)内に濾材(11)を空気の流れを遮断する方向に保持させて収容し、導入した外気を次工程に送風する風道(3)内に設置して上記濾材(11)に付着した水分を外気より分離捕集する空気清浄用フィルター装置であって、上記濾材(11)の下端側と対応するフレーム(9)内の底部に上記濾材(11)に捕集された水分を受け止める耐水性を備えたシール底(12)を設け、該シール底(12)を水平面に対して傾斜させてなる空気清浄用フィルター装置。   The filter medium (11) is held in a frame-shaped frame (9) while being held in a direction to block air flow, and the filter medium (11) is installed in the air passage (3) for blowing the introduced outside air to the next process. 11) A filter device for air purification that separates and collects moisture adhering to the outside air from the outside air, and is collected by the filter medium (11) at the bottom of the frame (9) corresponding to the lower end side of the filter medium (11). An air purifying filter device provided with a seal bottom (12) having water resistance for receiving moisture, and inclining the seal bottom (12) with respect to a horizontal plane. 前記シール底(12)の傾斜下端側にシール底(12)の表面に沿って流出する水分を受け止めてフレーム(9)又は風道(3)の外部に導いて排水する排水受け(13)を設けた請求項1に記載の空気清浄用フィルター装置。   A drainage receptacle (13) that receives moisture flowing out along the surface of the seal bottom (12) on the inclined lower end side of the seal bottom (12) and guides it to the outside of the frame (9) or the air passage (3) and drains it. The air cleaning filter device according to claim 1 provided. フレーム(9)を風道(3)のエア供給側に傾斜させることにより、シール底(12)を傾斜させた請求項1又は2の何れかに記載の空気清浄用フィルター装置。   The air cleaning filter device according to claim 1 or 2, wherein the seal bottom (12) is inclined by inclining the frame (9) toward the air supply side of the air passage (3). 濾材(11)自体を風道(3)のエア供給側に傾斜させてなる請求項1乃至3の何れかに記載の空気清浄用フィルター装置。   The air cleaning filter device according to any one of claims 1 to 3, wherein the filter medium (11) is inclined toward the air supply side of the air passage (3). 濾材(11)を耐水性材料よりなる不織布製とし、風道(3)の供給側の面に撥水加工を施してなる請求項1乃至4の何れかに記載の空気清浄用フィルター装置。   The air cleaning filter device according to any one of claims 1 to 4, wherein the filter medium (11) is made of a non-woven fabric made of a water-resistant material, and a water repellent finish is applied to a supply side surface of the air passage (3). 濾材(11)を平面視で蛇腹状に折り曲げ形成してなる請求項5に記載の空気清浄用フィルター装置。   6. The air cleaning filter device according to claim 5, wherein the filter medium (11) is formed in a bellows shape when viewed from above. 前記濾材(11)に蛇腹形状を保持するスペーサー(11a)を設け、該スペーサー(11a)を水平面に対して傾斜させてなる請求項6に記載の空気清浄用フィルター。   The filter for air purification according to claim 6, wherein a spacer (11a) for maintaining a bellows shape is provided on the filter medium (11), and the spacer (11a) is inclined with respect to a horizontal plane.
JP2016211617A 2016-10-28 2016-10-28 Filter device for air cleaning Pending JP2018069152A (en)

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