JP2016052261A - Pest control device - Google Patents

Pest control device Download PDF

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JP2016052261A
JP2016052261A JP2014178903A JP2014178903A JP2016052261A JP 2016052261 A JP2016052261 A JP 2016052261A JP 2014178903 A JP2014178903 A JP 2014178903A JP 2014178903 A JP2014178903 A JP 2014178903A JP 2016052261 A JP2016052261 A JP 2016052261A
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evaporation chamber
pest control
evaporation
housing
control apparatus
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JP6534112B2 (en
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敬昭 柳田
Takaaki Yanagida
敬昭 柳田
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Kankyo Plus Co Ltd
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Kankyo Plus Co Ltd
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Abstract

PROBLEM TO BE SOLVED: To provide a pest control device capable of reducing an evaporation residue of insecticidal liquid by efficiently transpiring the insecticidal liquid.SOLUTION: There is provided a pest control device 1 in which a medical fluid is dripped and transpired inside an evaporation chamber 20 heated by a heater 9. A transpiration port 5 opening on one surface 2a of a housing 2 and an intake port 25 opening another surface or inside of the housing 2 are formed in the evaporation chamber 20. Accordingly, air is taken from the intake port 25 and evaporated medical fluid is likely to blow out of the transpiration port 5. As a result, the evaporated medical fluid is prevented from accumulating in the evaporation chamber 20, and evaporation of the medical fluid is facilitated.SELECTED DRAWING: Figure 5

Description

本発明は、不快害虫を駆除する害虫駆除装置に関し、特に、ヒータで加熱される蒸散皿の上に薬液を滴下して蒸散させる燻蒸式の害虫駆除装置に関する。   The present invention relates to a pest control apparatus for controlling unpleasant pests, and more particularly, to a fumigation type pest control apparatus that drops a chemical solution on a transpiration dish heated by a heater to evaporate.

従来、この種の害虫駆除装置として、例えば、特許文献1に開示された環境衛生機が知られている。同文献に開示された環境衛生機は、殺虫液を充填するタンクと、該タンクから流出する殺虫液を間欠的に送出する液体定量供給装置と、前記液体定量供給装置によって送出される殺虫液を蒸散させる蒸散プレートと、前記蒸散プレートを加熱するヒータと、を有する害虫駆除装置を備えている。   Conventionally, as this kind of pest control apparatus, for example, an environmental hygiene machine disclosed in Patent Document 1 is known. The environmental hygiene machine disclosed in the same document includes a tank filled with an insecticidal solution, a liquid metering supply device for intermittently delivering the insecticide flowing out from the tank, and an insecticidal solution delivered by the liquid metering device. A pest control device having a transpiration plate for transpiration and a heater for heating the transpiration plate is provided.

また、同文献の環境衛生機は、ファンと、そのファンに接続されるダクトと、を備えている。そして、前記ダクトの吹出口及び蒸散された殺虫液の吹出口(蒸散口)は、環境衛生機の筐体の前面に形成されている。   In addition, the environmental hygiene machine of the same document includes a fan and a duct connected to the fan. And the blower outlet of the said duct and the blower outlet (transpiration mouth) of the insecticide which was transpired are formed in the front surface of the housing | casing of an environmental sanitary machine.

上記構成により、前記環境衛生機では、ファンを作動させて送風を行い、ヒータを通電して蒸散プレートを加熱し、タンク内の殺虫液を液体定量供給装置によって送出して加熱された蒸散プレートの上に滴下する。これにより、殺虫液を蒸散させて環境衛生機が設置される施設内の殺虫を行うことができる。   With the above configuration, in the environmental hygiene machine, the fan is operated to blow air, the heater is energized to heat the evaporation plate, the insecticide in the tank is sent out by the liquid quantitative supply device, and the heated evaporation plate is heated. Drip on top. Thereby, insecticide in the facility where an environmental sanitary machine is installed can be performed by evaporating the insecticide.

また、他の従来技術の例として、特許文献2に開示された不快害虫駆除機が知られている。同文献に開示された不快害虫駆除機では、害虫駆除液蒸散皿は、不快害虫駆除機の前面から引き抜くことができるようにカセット化されている。そして、前記害虫駆除液蒸散皿は、害虫駆除液蒸散ヒータに接続される害虫駆除液蒸散プレートに密着するよう差し込まれる。これにより、害虫駆除液蒸散皿の清掃、交換を簡単に行えるようになり、最適な蒸散を維持することができる。   As another example of the prior art, an unpleasant insect extermination machine disclosed in Patent Document 2 is known. In the unpleasant insect pest control machine disclosed in this document, the insect pest controlling liquid evaporation tray is formed into a cassette so that it can be pulled out from the front of the unpleasant insect control machine. The pest control liquid evaporation tray is inserted so as to be in close contact with the pest control liquid evaporation plate connected to the pest control liquid evaporation heater. This makes it possible to easily clean and replace the pest control liquid evaporation tray and maintain optimum evaporation.

特開平11−253089号公報(第2−3頁、第3図)Japanese Patent Laid-Open No. 11-253089 (page 2-3, FIG. 3) 特開2001−309743号公報(第2頁、第3、4図)Japanese Unexamined Patent Publication No. 2001-309743 (2nd page, FIGS. 3 and 4)

しかしながら、上記した従来技術では、殺虫液を滴下して蒸発させる空間(蒸発室)とその外部とを連通する開口は、筐体前面に形成される蒸散口のみであったので、蒸発した殺虫液が外部に吹き出し難く、前記蒸発室の内部に滞留し易いという問題点があった。   However, in the above-described prior art, the space (evaporation chamber) in which the insecticide is dropped and evaporated and the opening communicating with the outside is only the transpiration port formed on the front surface of the housing. However, there is a problem that it is difficult to blow out to the outside and easily stays in the evaporation chamber.

蒸発した殺虫液が蒸発室の内部に滞留すると、殺虫液の蒸発を阻害して蒸発不良を招くことになる。また、滞留する殺虫液の蒸気が蒸発室の壁面等に付着するので、蒸発室の内部にタール状の蒸発残渣が蓄積され、蒸発の効率を更に悪化させてしまう。   If the evaporated insecticide stays in the evaporation chamber, the evaporation of the insecticide is inhibited, resulting in evaporation failure. Further, since the vapor of the staying insecticidal liquid adheres to the wall surface of the evaporation chamber or the like, tar-like evaporation residues are accumulated inside the evaporation chamber, and the evaporation efficiency is further deteriorated.

また、殺虫液を蒸発させる蒸発室に隣接して空気を流すダクトを配設する構成では、ファンの送風によって蒸発室が冷やされて殺虫液の蒸発が阻害されるという問題点があった。また同様に、ファンによって送りだされる空気の一部を直接的に蒸発室に導く構成においても蒸発室の温度が低下して蒸発不良を招くことになる。   Further, in the configuration in which the duct for flowing air is disposed adjacent to the evaporation chamber for evaporating the insecticide, there is a problem that the evaporation chamber is cooled by the blowing of the fan and the evaporation of the insecticide is inhibited. Similarly, even in a configuration in which a part of the air sent out by the fan is directly guided to the evaporation chamber, the temperature of the evaporation chamber is lowered to cause evaporation failure.

本発明は、上記の事情に鑑みてなされたものであり、その目的とするところは、殺虫液を効率良く蒸散させて、殺虫液の蒸発残渣を少なくすることができる害虫駆除装置を提供することにある。   The present invention has been made in view of the above circumstances, and an object of the present invention is to provide a pest control apparatus capable of efficiently evaporating insecticide and reducing evaporation residue of the insecticide. It is in.

本発明の害虫駆除装置は、ヒータによって加熱される蒸発室の内部に薬液を滴下して蒸散させる害虫駆除装置であって、前記蒸発室には、筐体の一面に開口する蒸散口と前記筐体の他面若しくは内部に開口する吸気口とが形成されることを特徴とする。   The pest control apparatus according to the present invention is a pest control apparatus that drops a chemical solution inside a vaporization chamber heated by a heater to evaporate, wherein the vaporization chamber includes a transpiration port that opens on one surface of the case and the case. An air inlet opening on the other side or inside of the body is formed.

本発明の害虫駆除装置によれば、薬液を蒸発させる蒸発室には、筐体の一面に開口する蒸散口と、筐体の他面若しくは内部に開口する吸気口と、が形成される。これにより、吸気口から空気を取り入れることができ、蒸発した薬液が蒸散口から吹き出し易くなる。その結果、蒸発室の内部に蒸発した薬液が滞留することを抑制し、薬液の蒸発を促進することができる。   According to the pest control apparatus of the present invention, the evaporation chamber that evaporates the chemical solution is formed with a transpiration port that opens on one surface of the housing and an air intake port that opens on the other surface or inside of the housing. Thereby, air can be taken in from an inlet and it becomes easy to blow out the evaporated chemical | medical solution from a transpiration opening. As a result, it can suppress that the chemical | medical solution which evaporated inside the evaporation chamber stays, and can accelerate | stimulate vaporization of a chemical | medical solution.

また、送風機によって送り出される空気を流すダクトの吹出口を筐体の一面に開口するように形成し、前記蒸散口を前記吹出口に隣接して形成しても良い。これにより、吹出口から吐出される空気の流れによって蒸発室の内部から蒸発した薬液を吸引することができる。その結果、薬液の蒸発及び拡散を効率良く行うことができる。   Moreover, the blower outlet of the duct which flows the air sent out by an air blower may be formed so that it may open in one surface of a housing | casing, and the said transpiration port may be formed adjacent to the said blower outlet. Thereby, the chemical | medical solution evaporated from the inside of an evaporation chamber with the flow of the air discharged from a blower outlet can be attracted | sucked. As a result, the chemical solution can be efficiently evaporated and diffused.

また、吸気口は、蒸散口よりも開口面積が小さく形成されても良い。これにより、吸気口から蒸発室の内部へと多量の空気が流入することによる蒸発室の温度低下を抑制することができ、蒸発に好適な温度を維持することができる。また、蒸発した薬液は、吸気口へと逆流することなく、蒸散口から効率良く吹き出される。   Further, the intake port may be formed with a smaller opening area than the transpiration port. Thereby, the temperature fall of the evaporation chamber due to a large amount of air flowing into the evaporation chamber from the intake port can be suppressed, and a temperature suitable for evaporation can be maintained. Further, the evaporated chemical liquid is efficiently blown out from the transpiration port without flowing back to the intake port.

また、薬液を蒸発させる蒸発室と空気を流すダクトとの間には、各々を画成する仕切部材の間に空隙部を形成しても良い。これにより、ダクト内を流れる空気によって蒸発室が冷却されることを抑制できる。その結果、効率的な蒸発を維持することができ、薬液の残渣が発生することを抑えることができる。   Moreover, you may form a space | gap part between the partition member which defines each between the evaporation chamber which evaporates a chemical | medical solution, and the duct which flows air. Thereby, it can suppress that an evaporation chamber is cooled with the air which flows through the inside of a duct. As a result, it is possible to maintain efficient evaporation and suppress the generation of chemical residue.

本発明の実施形態に係る害虫駆除装置の外観を示す透視図である。It is a perspective view which shows the external appearance of the pest control apparatus which concerns on embodiment of this invention. 本発明の実施形態に係る害虫駆除装置の概略構造を示す正面図である。It is a front view which shows schematic structure of the pest control apparatus which concerns on embodiment of this invention. 本発明の実施形態に係る害虫駆除装置の概略構造を示す側面断面図である(図2に示すA−A線断面)。It is side surface sectional drawing which shows schematic structure of the pest control apparatus which concerns on embodiment of this invention (AA line cross section shown in FIG. 2). 本発明の実施形態に係る害虫駆除装置の蒸発室近傍の正面断面図(図3に示すB−B線断面)である。It is front sectional drawing (BB sectional view shown in FIG. 3) of the evaporation chamber vicinity of the pest control apparatus which concerns on embodiment of this invention. 本発明の実施形態に係る害虫駆除装置の蒸発室近傍の側面断面図(図2に示すA−A線断面)である。It is side surface sectional drawing (the AA line cross section shown in FIG. 2) of the evaporation chamber vicinity of the pest control apparatus which concerns on embodiment of this invention. 本発明の実施形態に係る害虫駆除装置の前面近傍における蒸発室の側面断面図(図5に示すC部拡大断面図)である。It is side surface sectional drawing (C section enlarged sectional view shown in FIG. 5) of the evaporation chamber in the front surface vicinity of the pest control apparatus which concerns on embodiment of this invention. 本発明の実施形態に係る害虫駆除装置の吹出口及び蒸散口近傍の透視図である。It is a perspective view near the blower outlet and the transpiration mouth of the pest control apparatus according to the embodiment of the present invention. 本発明の実施形態に係る害虫駆除装置の蒸発室背面近傍の側面断面図(図5に示すD部拡大断面図)である。It is side surface sectional drawing (D section enlarged sectional drawing shown in FIG. 5) of the evaporation chamber back surface vicinity of the pest control apparatus which concerns on embodiment of this invention.

以下、本発明の実施形態に係る害虫駆除装置を図面に基づき詳細に説明する。
図1は、本発明の実施形態に係る害虫駆除装置1の外観を示す透視図である。害虫駆除装置1は、薬液(殺虫液)を加熱して蒸散させる燻蒸式(加熱蒸散式)の害虫駆除装置であり、ホテル、オフィス、飲食店、倉庫その他各種の施設で利用されるものである。また、害虫駆除装置1は、除菌機能及び脱臭機能も備えている。
Hereinafter, a pest control apparatus according to an embodiment of the present invention will be described in detail with reference to the drawings.
FIG. 1 is a perspective view showing an appearance of a pest control apparatus 1 according to an embodiment of the present invention. The pest control device 1 is a fumigation type (heated transpiration type) pest control device that heats and evaporates a chemical solution (insecticide solution), and is used in hotels, offices, restaurants, warehouses, and other various facilities. . The pest control apparatus 1 also has a sterilization function and a deodorization function.

図1に示すように、害虫駆除装置1は、例えば、ステンレス鋼板等から形成される略直方体状の筐体2を有し、筐体2の一面である前面には、空気を吐出する吹出口4と、蒸発した薬液を放出する蒸散口5と、が形成されている。また、筐体2の上面には、空気を取り入れる吸込口6が形成されている。後述するファン12(図3参照)を作動させることにより、吸込口6から空気が吸入されて筐体2の前面の吹出口4から吹き出される。   As shown in FIG. 1, the pest control apparatus 1 has a substantially rectangular parallelepiped casing 2 formed of, for example, a stainless steel plate or the like, and a blower outlet that discharges air to the front surface that is one surface of the casing 2. 4 and a transpiration port 5 for discharging the evaporated chemical liquid. A suction port 6 for taking in air is formed on the upper surface of the housing 2. By operating a fan 12 (see FIG. 3) to be described later, air is sucked from the suction port 6 and blown out from the air outlet 4 on the front surface of the housing 2.

蒸散口5は、吹出口4に隣接して、その直下に形成されている。これにより、蒸散口5につながる後述する蒸発室20(図3参照)の内部で蒸発した薬液は、吹出口4から吹き出される空気流によって吸引されて、蒸散口5から筐体2の外部へと放出され、害虫駆除装置1が設置される施設内に拡散される。   The transpiration port 5 is formed adjacent to the blower outlet 4 and immediately below it. Thereby, the chemical liquid evaporated inside the evaporation chamber 20 (see FIG. 3), which will be described later, connected to the transpiration port 5 is sucked by the air flow blown out from the blowout port 4, and is transferred from the transpiration port 5 to the outside of the housing 2. And is diffused in the facility where the pest control apparatus 1 is installed.

筐体2の前面の略中央は、水平断面略コ字状に凹んでおり、この凹んだ部分の面である前面2aには、操作表示部3が設けられる。操作表示部3は、薬液の蒸散を開始若しくは停止するため操作、薬液の蒸散量の設定、自動運転の各種設定(例えば、タイマー設定等)等を行うためのものであり、各操作を行うための各種スイッチ類を備えている。また、操作表示部3は、各設定値や運転状況を表示する表示部等を有する。   The substantially center of the front surface of the housing 2 is recessed in a substantially U-shaped horizontal section, and the operation display unit 3 is provided on the front surface 2a which is the surface of the recessed portion. The operation display unit 3 is for performing an operation for starting or stopping the transpiration of the chemical solution, setting of the transpiration amount of the chemical solution, various settings for automatic operation (for example, timer setting, etc.), etc. It is equipped with various switches. In addition, the operation display unit 3 includes a display unit that displays each set value and operation status.

図2は、害虫駆除装置1の概略構造を示す正面図である。図2に示すように、害虫駆除装置1は、筐体2の内部に、薬液を入れるタンク7と、薬液を送り出すポンプ8と、ポンプ8の駆動を制御する制御装置19と、を備えている。   FIG. 2 is a front view showing a schematic structure of the pest control apparatus 1. As shown in FIG. 2, the pest control apparatus 1 includes a tank 7 for storing a chemical solution, a pump 8 for sending out the chemical solution, and a control device 19 for controlling the driving of the pump 8 inside the housing 2. .

タンク7は、内部に薬液を貯留する容器であり、例えば、ポリエチレン等の合成樹脂から成形される。タンク7は、筐体2の下部に配置される。これにより、薬液を入れた状態において、害虫駆除装置1は、その重心が低く抑えられて安定する。   The tank 7 is a container for storing a chemical solution therein, and is formed from, for example, a synthetic resin such as polyethylene. The tank 7 is disposed at the lower part of the housing 2. Thereby, in the state which put the chemical | medical solution, the pest control apparatus 1 is stabilized with the gravity center kept low.

ポンプ8は、例えば、電磁ポンプであり、制御装置19からの信号によって流量調整自在に構成される。ポンプ8は、タンク7と蒸発室20とをつなぐ配管17に介装され、薬液をタンク7の内部から蒸発室20の内部へと圧送する。   The pump 8 is an electromagnetic pump, for example, and is configured so that the flow rate can be adjusted by a signal from the control device 19. The pump 8 is interposed in a pipe 17 that connects the tank 7 and the evaporation chamber 20, and pumps the chemical solution from the inside of the tank 7 to the inside of the evaporation chamber 20.

このように、流量調整自在なポンプ8を設けることにより、薬液を、その種類等に応じて蒸発に適した供給量に調整して滴下することができ、蒸発残渣を少なく効率的に蒸散させることができる。   In this way, by providing the pump 8 with adjustable flow rate, the chemical liquid can be dripped after being adjusted to a supply amount suitable for evaporation according to the type and the like, and evaporation residue is efficiently evaporated. Can do.

図3は、害虫駆除装置1の概略構造を示す側面断面図であり、図2に示すA−A線断面を示している。なお、図3において、空気流れを実線矢印で、蒸発した薬液の流れを破線矢印で模式的に示している。   FIG. 3 is a side sectional view showing a schematic structure of the pest control apparatus 1, and shows a cross section taken along line AA shown in FIG. In FIG. 3, the air flow is schematically indicated by solid arrows, and the flow of the evaporated chemical liquid is schematically indicated by broken arrows.

図3に示すように、筐体2の内部には、筐体2の上面に形成される吸込口6と、筐体2の前面に形成される吹出口4と、をつなぐダクト10が形成される。ダクト10は、例えば、ステンレス鋼板等から所定の形状に曲折成形される複数の仕切部材を組み合わせることにより構成される。   As shown in FIG. 3, a duct 10 that connects a suction port 6 formed on the upper surface of the housing 2 and an air outlet 4 formed on the front surface of the housing 2 is formed inside the housing 2. The The duct 10 is configured by combining, for example, a plurality of partition members that are bent into a predetermined shape from a stainless steel plate or the like.

ダクト10の内部、詳しくは、ダクト10の吸込口6近傍には、筐体2の外部から空気を吸い込んでダクト10の内部に送り出すファン12(送風機)が配設される。ファン12は、例えば、軸流式のプロペラファンとモータとを備えた送風機である。前述のとおり、ファン12を作動させることにより、吸込口6から空気が吸入されて筐体2の前面の吹出口4から吹き出される。   A fan 12 (blower) that sucks air from the outside of the housing 2 and sends it out to the inside of the duct 10 is disposed inside the duct 10, specifically, in the vicinity of the suction port 6 of the duct 10. The fan 12 is a blower including, for example, an axial flow type propeller fan and a motor. As described above, by operating the fan 12, air is sucked from the suction port 6 and blown out from the air outlet 4 on the front surface of the housing 2.

なお、害虫駆除装置1は、ダクト10の内部を流れる空気を除菌、脱臭する除菌脱臭装置(図示せず)を備えている。除菌脱臭装置としては、例えば、ダクト10の内部にオゾンを発生させるオゾン発生装置等である。また、ダクト10の内部または外部に紫外線を照射するUV殺菌装置を設けても良い。除菌脱臭装置及びファン12を作動させることにより、オゾン発生装置によって発生したオゾンを施設内に拡散させて、またはUV殺菌装置によりダクト10内等を流れる空気を除菌、脱臭して、施設内の除菌及び脱臭を行うことができる。   The pest control device 1 includes a sterilization and deodorization device (not shown) that sterilizes and deodorizes the air flowing inside the duct 10. Examples of the sterilization deodorizer include an ozone generator that generates ozone inside the duct 10. Moreover, you may provide the UV sterilizer which irradiates an ultraviolet-ray inside or the outside of the duct 10. FIG. By operating the sterilization deodorization device and the fan 12, the ozone generated by the ozone generator is diffused in the facility, or the air flowing in the duct 10 is sterilized and deodorized by the UV sterilization device. Can be sterilized and deodorized.

筐体2の内部のダクト10の前方には、制御装置19が配設される。制御装置19は、所定の設定値及び温度センサ18等の入力値に基づき所定の演算を実行し、ポンプ8(図2参照)、ファン12、ヒータ9及び前記除菌脱臭装置等の作動を制御するものである。   A control device 19 is disposed in front of the duct 10 inside the housing 2. The control device 19 executes a predetermined calculation based on the predetermined set value and the input value of the temperature sensor 18 and the like, and controls the operation of the pump 8 (see FIG. 2), the fan 12, the heater 9, and the sterilization deodorizing device. To do.

ダクト10の下方には、薬液を蒸発させる蒸発室20が形成される。蒸発室20は、例えば、ステンレス鋼板やアルミニウム鋼板等から曲折成形される複数の仕切部材(後述する下部材22と上部材23)を組み合わせることによって画成される空間である。蒸発室20には、筐体2の前面2aに開口する蒸散口5と、筐体2の内部若しくは背面に開口する吸気口25と、が形成される。   Below the duct 10 is formed an evaporation chamber 20 for evaporating the chemical solution. The evaporation chamber 20 is a space defined by combining a plurality of partition members (a lower member 22 and an upper member 23 described later) bent from, for example, a stainless steel plate or an aluminum steel plate. In the evaporation chamber 20, a transpiration port 5 that opens to the front surface 2 a of the housing 2 and an intake port 25 that opens to the inside or the back surface of the housing 2 are formed.

図4は、害虫駆除装置1の蒸発室20近傍の正面断面図であり、図3に示すB−B線断面を示している。図4に示すように、蒸発室20は、加熱プレートを構成する下部材22と、上蓋を構成する上部材23と、を接合することによって画成される。   4 is a front cross-sectional view of the vicinity of the evaporation chamber 20 of the pest control apparatus 1, and shows a cross section taken along line BB shown in FIG. As shown in FIG. 4, the evaporation chamber 20 is defined by joining a lower member 22 constituting a heating plate and an upper member 23 constituting an upper lid.

下部材22は、良熱伝導性の材料、例えば、アルミニウム鋼板等から形成され、正面断面において、下方に凸状となる略ハット状の形態を成している。具体的には、下部材22は、薬液を加熱するプレートとなる略板状の底面部22aと、底面部22aの左右両端部から連続して上方に略垂直に曲折される側面部22bと、左右の側面部22bの上端部から連続して外側に略水平に曲折されるフランジ部22dと、を有する。   The lower member 22 is formed of a material having good heat conductivity, such as an aluminum steel plate, and has a substantially hat-like shape that protrudes downward in the front cross section. Specifically, the lower member 22 includes a substantially plate-shaped bottom surface portion 22a serving as a plate for heating the chemical solution, and a side surface portion 22b bent substantially vertically upward from the left and right ends of the bottom surface portion 22a. And a flange portion 22d that is bent substantially horizontally outward from the upper end portions of the left and right side surface portions 22b.

上部材23は、例えば、ステンレス鋼板等から成る板状体であり、その左右両端部近傍が下部材22のフランジ部22dに溶接若しくはねじ締結等によって接合され、蒸発室20の上部を塞ぐ蓋状体を構成している。   The upper member 23 is a plate-like body made of, for example, a stainless steel plate or the like, and a lid shape in which the vicinity of both left and right ends is joined to the flange portion 22d of the lower member 22 by welding or screw fastening or the like and closes the upper portion of the evaporation chamber 20. Make up body.

蒸発室20には、蒸発室20の内部を加熱して、蒸発室20内に滴下される薬液を蒸発させるためのヒータ9が取り付けられる。ヒータ9は、略板状の形態を成す電気抵抗式の加熱器であり、例えば、ニクロム線等の略板状の加熱抵抗体と、その上下面を覆う絶縁体と、更にその外面を覆う金属板と、を有する。   The evaporation chamber 20 is attached with a heater 9 for heating the inside of the evaporation chamber 20 and evaporating the chemical liquid dropped into the evaporation chamber 20. The heater 9 is an electric resistance heater having a substantially plate-like form, for example, a substantially plate-like heating resistor such as a nichrome wire, an insulator covering the upper and lower surfaces, and a metal covering the outer surface. And a board.

ヒータ9は、良熱伝導性の金属板等から成る伝熱部材26を介して下部材22の底面部22aの下面に密着するよう配設され、固定部材27と底面部22aとの間に挟まれるようにねじ締結等によって固定される。なお、伝熱部材26は、後述する温度センサ18を取り付けることによってヒータ9と底面部22aとの間に生ずる隙間を埋めるためのスペーサとして機能する。これにより、ヒータ9の熱を効率良く下部材22に伝えることができる。   The heater 9 is disposed so as to be in close contact with the lower surface of the bottom surface portion 22a of the lower member 22 via a heat transfer member 26 made of a metal plate or the like having good heat conductivity, and is sandwiched between the fixing member 27 and the bottom surface portion 22a. It is fixed by screw fastening or the like. The heat transfer member 26 functions as a spacer for filling a gap generated between the heater 9 and the bottom surface portion 22a by attaching a temperature sensor 18 described later. Thereby, the heat of the heater 9 can be efficiently transmitted to the lower member 22.

蒸発室20には、ヒータ9による加熱温度を検出する温度センサ18が取り付けられる。具体的には、温度センサ18は、ヒータ9の略中央に形成される貫通孔に上方から挿通され、その先端部近傍が下部材22の底面部22aとヒータ9との間に挟持されて底面部22aに直接接触するように固定される。これにより、薬液を加熱するプレートとなる底面部22a近傍の温度を正確に検出することができる。   A temperature sensor 18 for detecting the heating temperature by the heater 9 is attached to the evaporation chamber 20. Specifically, the temperature sensor 18 is inserted from above into a through-hole formed at substantially the center of the heater 9, and the vicinity of the tip is sandwiched between the bottom surface portion 22 a of the lower member 22 and the heater 9, and the bottom surface thereof. It is fixed so as to be in direct contact with the portion 22a. Thereby, the temperature of the bottom face part 22a vicinity used as the plate which heats a chemical | medical solution can be detected correctly.

つまり、例えば、温度センサ18を側面部22bや背面部22c(図5参照)に取り付ける場合には、吸気口25から流入する空気や蒸発室20の周囲の空気等によって温度センサ18の近傍が冷却されて検出温度が低くなるという問題点があった。これに対し本願では、温度センサ18を、ヒータ9の略中央に、且つ加熱するプレートとなる底面部22aに接触させて取り付けているので、薬液を加熱する加熱面近傍の正確な温度を検出することができる。   That is, for example, when the temperature sensor 18 is attached to the side surface portion 22b or the back surface portion 22c (see FIG. 5), the vicinity of the temperature sensor 18 is cooled by air flowing in from the intake port 25, air around the evaporation chamber 20, or the like. As a result, the detection temperature is lowered. On the other hand, in the present application, the temperature sensor 18 is attached in the approximate center of the heater 9 and in contact with the bottom surface portion 22a serving as a heating plate, so that an accurate temperature in the vicinity of the heating surface for heating the chemical solution is detected. be able to.

そして、制御装置19(図2参照)は、温度センサ18によって検出される蒸発室20の底面部22aの温度が所定の目標温度(例えば、320℃)を維持するようヒータ9の通電を制御する。これにより、薬液の好適な蒸発を維持することができる。   And the control apparatus 19 (refer FIG. 2) controls electricity supply of the heater 9 so that the temperature of the bottom face part 22a of the evaporation chamber 20 detected by the temperature sensor 18 may maintain predetermined | prescribed target temperature (for example, 320 degreeC). . Thereby, suitable evaporation of a chemical | medical solution can be maintained.

図5は、害虫駆除装置1の蒸発室20近傍の側面断面図であり、図2に示すA−A線断面を示している。なお、図5において、ダクト10内の空気流れを実線矢印で、蒸発した薬液の流れを破線矢印で、吸気口25から蒸発室20内に取り込まれる空気流れを鎖線矢印で、夫々模式的に示している。   FIG. 5 is a side cross-sectional view of the vicinity of the evaporation chamber 20 of the pest control apparatus 1, and shows a cross section taken along line AA shown in FIG. In FIG. 5, the air flow in the duct 10 is schematically shown by solid line arrows, the flow of evaporated chemical liquid is shown by broken line arrows, and the air flow taken into the evaporation chamber 20 from the intake port 25 is shown by chain line arrows. ing.

図5に示すように、蒸発室20を画成する下部材22の前端は、上方に曲折されて筐体2の前面2aに形成される蒸散口5に接続される。他方、下部材22の背面端には、底面部22aの背面端から連続して略垂直に上方に曲折される背面部22cが形成される。   As shown in FIG. 5, the front end of the lower member 22 defining the evaporation chamber 20 is bent upward and connected to the transpiration port 5 formed on the front surface 2 a of the housing 2. On the other hand, a back surface portion 22c is formed at the back surface end of the lower member 22 so as to bend upward substantially vertically from the back surface end of the bottom surface portion 22a.

蒸発室20の内部には、その上面に薬液を滴下させて蒸発させる蒸発皿21が挿脱自在に収納される。蒸発皿21は、例えば、ステンレス鋼板若しくはアルミニウム鋼板等から曲折成形される略箱状の形態を成し、その底面は、蒸発室20の底面部22aに密着するよう配設される。   Inside the evaporation chamber 20, an evaporating dish 21 that drops and evaporates a chemical solution on the upper surface of the evaporation chamber 20 is removably accommodated. The evaporating dish 21 has a substantially box-like shape bent from, for example, a stainless steel plate or an aluminum steel plate, and the bottom surface thereof is disposed in close contact with the bottom surface portion 22 a of the evaporation chamber 20.

ここで、筐体2の前面2aに形成される蒸散口5は、蒸発皿21が通過可能な大きさに開口している。つまり、蒸散口5を通過させて蒸発皿21を蒸発室20の内部に出し入れすることができる。これにより、害虫駆除装置1を使用した後に、蒸発皿21を取り外して容易に清浄若しくは交換することができる。そのため、薬液の蒸発残渣が蒸発面に蓄積することによって伝熱が阻害されることを抑止でき、薬液の好適な蒸散を維持することができる。   Here, the transpiration port 5 formed in the front surface 2a of the housing 2 is opened to a size through which the evaporating dish 21 can pass. That is, the evaporating dish 21 can be taken in and out of the evaporating chamber 20 through the evaporating port 5. Thereby, after using the pest control apparatus 1, the evaporating dish 21 can be removed and easily cleaned or replaced. Therefore, it can suppress that heat transfer is inhibited by the evaporation residue of a chemical | medical solution accumulating on an evaporation surface, and can maintain the suitable transpiration of a chemical | medical solution.

ダクト10の下部を画成する仕切部材11と、蒸発室20の上部を画成する仕切部材である上部材23とは、所定の隙間(空隙部15)を設けて離間して配設される。即ち、ダクト10の仕切部材11と蒸発室20の上部材23との間には、空隙部15が形成される。これにより、ダクト10内を流れる空気によって蒸発室20が冷却されることを抑制できる。その結果、効率的な蒸発を維持することができ、薬液の残渣が発生することを抑えることができる。   The partition member 11 that defines the lower portion of the duct 10 and the upper member 23 that is the partition member that defines the upper portion of the evaporation chamber 20 are spaced apart from each other with a predetermined gap (gap portion 15). . That is, a gap 15 is formed between the partition member 11 of the duct 10 and the upper member 23 of the evaporation chamber 20. Thereby, it is possible to suppress the evaporation chamber 20 from being cooled by the air flowing through the duct 10. As a result, it is possible to maintain efficient evaporation and suppress the generation of chemical residue.

なお、筐体2の前面近傍においては、仕切部材11と上部材23とは近接している。即ち、蒸発室20につながり筐体2の前面2aに開口する蒸散口5は、ファン12によって送り出される空気を流すダクト10の吹出口4に隣接してその直下に形成され、吹出口4と蒸散口5とは、仕切部材11及び上部材23によって画成される。   Note that the partition member 11 and the upper member 23 are close to each other in the vicinity of the front surface of the housing 2. That is, the transpiration port 5 connected to the evaporation chamber 20 and opened to the front surface 2a of the housing 2 is formed adjacent to and directly below the air outlet 4 of the duct 10 through which the air sent out by the fan 12 flows. The mouth 5 is defined by the partition member 11 and the upper member 23.

図6は、害虫駆除装置1の前面2a近傍における蒸発室20の側面断面図であり、図5に示すC部を拡大して示している。図7は、吹出口4及び蒸散口5の近傍を前方斜め上から見た透視図である。なお、図6において、ダクト10内の空気流れを実線矢印、蒸発した薬液の流れを破線矢印、吸気口25から蒸発室20内に取り込まれる空気流れを鎖線矢印で夫々模式的に示している。   FIG. 6 is a side cross-sectional view of the evaporation chamber 20 in the vicinity of the front surface 2a of the pest control apparatus 1, and shows an enlargement of the portion C shown in FIG. FIG. 7 is a perspective view of the vicinity of the air outlet 4 and the transpiration port 5 as viewed from diagonally forward. In FIG. 6, the air flow in the duct 10 is schematically indicated by solid arrows, the flow of evaporated chemical liquid is indicated by broken arrows, and the air flow taken into the evaporation chamber 20 from the intake port 25 is indicated by chain arrows.

図6に示すように、吹出口4の近傍において、ダクト10の上面を構成する仕切部材13及び下面を構成する仕切部材11は、前方に延設されて筐体2の前面2a(前面略中央の凹んだ部分の面)よりも前に突出している。仕切部材11の前端11aは、下方に略垂直に曲折されて、その下端は更に内側(背面側)に折り返されている。   As shown in FIG. 6, in the vicinity of the air outlet 4, the partition member 13 that configures the upper surface of the duct 10 and the partition member 11 that configures the lower surface extend forward, and the front surface 2 a of the housing 2 (substantially the front center). It protrudes in front of the surface of the recessed part. The front end 11a of the partition member 11 is bent substantially vertically downward, and the lower end thereof is further folded inward (back side).

ここで、吹出口4と蒸散口5との境界において、仕切部材11の前端11bは、筐体2の凹んだ部分の前面2aと略同一平面上若しくは前面2aよりも内側になるよう、また、上部材23の前端23aと同じ位置になるよう形成されている。   Here, at the boundary between the air outlet 4 and the transpiration port 5, the front end 11b of the partition member 11 is substantially flush with the front surface 2a of the recessed portion of the housing 2 or on the inner side of the front surface 2a. The upper member 23 is formed at the same position as the front end 23a.

図7のE部に示すように、筐体2の前面2aよりも前方に延設される仕切部材11の前端11aは、蒸散口5の上方部分においては、筐体2の前面2aと略同じ位置若しくは前面2aよりも内側になるよう、上面視略コ字状に切り欠かれている(前端11b)。これにより、吹出口4から吐出される空気の流れによって蒸発室20の内部から蒸発した薬液を効率良く吸引して拡散することができる。   As shown in part E of FIG. 7, the front end 11 a of the partition member 11 extending forward from the front surface 2 a of the housing 2 is substantially the same as the front surface 2 a of the housing 2 in the upper part of the evaporation port 5. It is cut out in a generally U-shape when viewed from the top so that it is located inside the position or the front surface 2a (front end 11b). Thereby, the chemical | medical solution evaporated from the inside of the evaporation chamber 20 with the flow of the air discharged from the blower outlet 4 can be efficiently sucked and diffused.

図8は、害虫駆除装置1の蒸発室20の背面近傍の側面断面図であり、図5に示すD部を拡大して示している。なお、図8において、ダクト10内の空気流れを実線矢印で、吸気口25から蒸発室20内に取り込まれる空気流れを鎖線矢印で模式的に示している。   FIG. 8 is a side cross-sectional view of the vicinity of the back surface of the evaporation chamber 20 of the pest control apparatus 1, and shows an enlarged portion D shown in FIG. In FIG. 8, the air flow in the duct 10 is schematically indicated by solid line arrows, and the air flow taken into the evaporation chamber 20 from the intake port 25 is schematically indicated by chain line arrows.

図8に示すように、底面部22aから連続して曲折され立設される背面部22cは、前述した左右の側面部22b(図4参照)よりも低く形成されている。これにより、背面部22cの上端と上部材23との間には、空気が流通可能な隙間である吸気口25が形成される。即ち、吸気口25によって蒸発室20の内部と外部とが連通される。   As shown in FIG. 8, the back surface portion 22c that is continuously bent and erected from the bottom surface portion 22a is formed lower than the left and right side surface portions 22b (see FIG. 4). As a result, an air inlet 25 that is a gap through which air can flow is formed between the upper end of the back surface portion 22 c and the upper member 23. That is, the inside and the outside of the evaporation chamber 20 are communicated with each other by the intake port 25.

このように、蒸発室20の背面部22cの上方に吸気口25を形成することにより、吸気口25から蒸発室20の内部に空気を取り入れることができる。これにより、蒸発室20の内部に蒸発した薬液が滞留することが抑制されて、薬液が蒸散口5から吹き出し易くなり、薬液の蒸発を促進することができる。   In this manner, by forming the intake port 25 above the back surface portion 22c of the evaporation chamber 20, air can be taken into the evaporation chamber 20 from the intake port 25. Thereby, it is suppressed that the chemical | medical solution which evaporated in the inside of the evaporation chamber 20 stays, a chemical | medical solution becomes easy to blow out from the transpiration port 5, and evaporation of a chemical | medical solution can be accelerated | stimulated.

ここで、吸気口25は、蒸散口5よりも開口面積が小さく、背面部22cの上端と上部材23との間に僅かな隙間が確保されていれば良い。例えば、吸気口25の開口高さ、即ち、背面部22cの上端と上部材23との距離は、1〜2mm程度である。   Here, the intake port 25 has a smaller opening area than the transpiration port 5, and it is sufficient that a slight gap is secured between the upper end of the back surface portion 22 c and the upper member 23. For example, the opening height of the intake port 25, that is, the distance between the upper end of the back surface portion 22c and the upper member 23 is about 1 to 2 mm.

これにより、吸気口25から蒸発室20の内部へと多量の空気が流入することを防止して、蒸発室20の温度低下を抑えることができる。そして、蒸発室20の内部を蒸発に好適な温度に維持することができる。また、蒸発した薬液は、吸気口25へと逆流することなく、蒸散口5から効率良く吹き出される。   Thereby, it is possible to prevent a large amount of air from flowing into the interior of the evaporation chamber 20 from the intake port 25 and to suppress a temperature drop of the evaporation chamber 20. And the inside of the evaporation chamber 20 can be maintained at a temperature suitable for evaporation. Further, the evaporated chemical liquid is efficiently blown out from the transpiration port 5 without flowing back to the intake port 25.

また、吸気口25を、筐体2の内部に連通するよう形成することにより、ヒータ9から外部に漏れる熱によって暖められる蒸発室20の周囲の空気を蒸発室20の内部へと吸入することができる。これにより、蒸発室20の内部の温度が低下することを抑制して良好な蒸発を維持することができると共に、筐体2の内部が過熱する不具合を防止することができる。   Further, by forming the intake port 25 so as to communicate with the inside of the housing 2, the air around the evaporation chamber 20 heated by heat leaking from the heater 9 to the outside can be sucked into the evaporation chamber 20. it can. Thereby, it can suppress that the temperature inside the evaporation chamber 20 falls, can maintain favorable evaporation, and can prevent the malfunction which the inside of the housing | casing 2 overheats.

なお、上記の実施形態では、空気を吐出する吹出口4と、蒸発した薬液を放出する蒸散口5と、が筐体2の前面に形成される例を説明したが、吹出口4及び蒸散口5の位置は、これに限定されない。吹出口4及び蒸散口5は、筐体2の何れか一面に形成されていれば良く、例えば、吹出口4及び蒸散口5を筐体2の上面、側面若しくは底面に形成しても良い。この場合、吸気口25は、吹出口4及び蒸散口5が形成される一面とは別の面である他面に開口するよう形成されても良い。   In addition, in said embodiment, although the blower outlet 4 which discharges air and the transpiration port 5 which discharge | releases the evaporated chemical | medical solution were formed in the front surface of the housing | casing 2, the blower outlet 4 and the transpiration port were demonstrated. The position of 5 is not limited to this. The blower outlet 4 and the transpiration port 5 should just be formed in any one surface of the housing | casing 2, for example, you may form the blower outlet 4 and the transpiration port 5 in the upper surface of the housing | casing 2, a side surface, or a bottom face. In this case, the intake port 25 may be formed so as to open to the other surface, which is a surface different from the one surface on which the air outlet 4 and the transpiration port 5 are formed.

本発明は、上記実施形態に限定されるものではなく、その他、本発明の要旨を逸脱しない範囲で、種々の変更実施が可能である。   The present invention is not limited to the above embodiment, and various modifications can be made without departing from the spirit of the present invention.

1 害虫駆除装置
2 筐体
4 吹出口
5 蒸散口
6 吸込口
7 タンク
8 ポンプ
9 ヒータ
10 ダクト
11 仕切部材
12 ファン
15 空隙部
20 蒸発室
21 蒸発皿
22 下部材
22a 底面部
23 上部材
25 吸気口
DESCRIPTION OF SYMBOLS 1 Pest control apparatus 2 Housing | casing 4 Outlet 5 Evaporation port 6 Suction port 7 Tank 8 Pump 9 Heater 10 Duct 11 Partition member 12 Fan 15 Cavity part 20 Evaporating chamber 21 Evaporating dish 22 Lower member 22a Bottom surface part 23 Upper member 25 Inlet port

Claims (4)

ヒータによって加熱される蒸発室の内部に薬液を滴下して蒸散させる害虫駆除装置であって、
前記蒸発室には、筐体の一面に開口する蒸散口と前記筐体の他面若しくは内部に開口する吸気口とが形成されることを特徴とする害虫駆除装置。
A pest control device that drops and evaporates a chemical solution inside an evaporation chamber heated by a heater,
The pest control apparatus, wherein the evaporation chamber is formed with a transpiration port opening on one surface of the housing and an air inlet opening on the other surface or inside of the housing.
送風機によって送り出される空気を流すダクトと、
前記ダクトにつながり前記筐体の一面に開口する吹出口と、を有し、
前記蒸散口は、前記吹出口に隣接して形成され、
前記吸気口は、前記蒸散口よりも開口面積が小さく形成されることを特徴とする請求項1に記載の害虫駆除装置。
A duct for flowing air sent out by a blower;
A blower opening connected to the duct and opening in one surface of the housing;
The transpiration port is formed adjacent to the air outlet,
The pest control apparatus according to claim 1, wherein the air inlet has an opening area smaller than that of the transpiration port.
前記蒸発室と前記ダクトとの間には、各々を画成する仕切部材の間に空隙部が形成されることを特徴とする請求項2に記載の害虫駆除装置。   The pest control apparatus according to claim 2, wherein a gap is formed between partitioning members defining each of the evaporation chamber and the duct. 前記薬液を入れるタンクと、
前記タンクから薬液を送り出して前記蒸発室の内部に滴下させるポンプと、
前記蒸発室の底面に設けられるヒータと、
前記蒸発室の内部に挿脱自在に収納される蒸発皿と、を有し、
前記薬液は、前記蒸発皿の上に滴下されることを特徴とする請求項1ないし請求項3の何れか1項に記載の害虫駆除装置。
A tank for storing the chemical solution;
A pump for sending out a chemical from the tank and dropping it into the evaporation chamber;
A heater provided on the bottom surface of the evaporation chamber;
An evaporating dish that is removably accommodated inside the evaporating chamber,
The pest control apparatus according to any one of claims 1 to 3, wherein the chemical liquid is dropped on the evaporating dish.
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105900954A (en) * 2016-04-19 2016-08-31 北京农业信息技术研究中心 Pest monitoring system and method

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Publication number Priority date Publication date Assignee Title
JPH09133409A (en) * 1995-11-07 1997-05-20 Sanyo Electric Co Ltd Air conditioner
JPH1156196A (en) * 1997-08-11 1999-03-02 Ookurin:Kk Device for exterminating insect pest
JPH11253089A (en) * 1998-03-09 1999-09-21 Techno Kogyo Kk Machine for environmental hygiene and operation thereof
JP2001309743A (en) * 2000-05-02 2001-11-06 Arutekku:Kk Detachable disk for vaporizing insect pest exterminating chemical fluid of exterminating machine for unpleasant insect pest
JP2003009748A (en) * 2001-07-02 2003-01-14 Ookurin:Kk Apparatus for exterminating insect pest
JP2005027638A (en) * 2003-07-10 2005-02-03 Tadahisa Iwasaki Transpiration device of insecticide

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH09133409A (en) * 1995-11-07 1997-05-20 Sanyo Electric Co Ltd Air conditioner
JPH1156196A (en) * 1997-08-11 1999-03-02 Ookurin:Kk Device for exterminating insect pest
JPH11253089A (en) * 1998-03-09 1999-09-21 Techno Kogyo Kk Machine for environmental hygiene and operation thereof
JP2001309743A (en) * 2000-05-02 2001-11-06 Arutekku:Kk Detachable disk for vaporizing insect pest exterminating chemical fluid of exterminating machine for unpleasant insect pest
JP2003009748A (en) * 2001-07-02 2003-01-14 Ookurin:Kk Apparatus for exterminating insect pest
JP2005027638A (en) * 2003-07-10 2005-02-03 Tadahisa Iwasaki Transpiration device of insecticide

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105900954A (en) * 2016-04-19 2016-08-31 北京农业信息技术研究中心 Pest monitoring system and method

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