JP5227294B2 - Heating sprayer - Google Patents

Heating sprayer Download PDF

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JP5227294B2
JP5227294B2 JP2009273190A JP2009273190A JP5227294B2 JP 5227294 B2 JP5227294 B2 JP 5227294B2 JP 2009273190 A JP2009273190 A JP 2009273190A JP 2009273190 A JP2009273190 A JP 2009273190A JP 5227294 B2 JP5227294 B2 JP 5227294B2
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heating element
element support
heating
liquid
air pump
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JP2011115053A (en
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和央 山本
利男 佐▲崎▼
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Hosiden Corp
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本発明は、例えば駆虫薬剤や芳香剤などの液体を加熱して噴霧する加熱式噴霧器に関する。   The present invention relates to a heating sprayer that heats and sprays liquids such as anthelmintic drugs and fragrances.

駆虫薬剤や芳香剤などの液体を加熱して蒸散する加熱式蒸散器の一例として、特許文献1に開示される加熱式蒸散器を挙げることができる。この加熱式蒸散器は、発熱体の発熱により生じる上昇熱気流を送風機で増速し、当該上昇熱気流が薬剤を含浸保持する薬剤保持体の表面に沿って流れることで、薬剤保持体の表面を加熱して薬剤を蒸散させるものである。   As an example of a heating evaporator that heats and evaporates a liquid such as an anthelmintic drug or a fragrance, a heating evaporator disclosed in Patent Document 1 can be cited. This heating type vaporizer accelerates the rising hot air flow generated by the heat generation of the heating element with a blower, and the rising hot air current flows along the surface of the drug holding body impregnating and holding the drug, whereby the surface of the drug holding body Is used to evaporate the drug.

また、加熱式蒸散器に準ずる例として、超音波霧化器や静電霧化器などが知られている(例えば、特許文献2、3参照)。   Moreover, an ultrasonic atomizer, an electrostatic atomizer, etc. are known as an example according to a heating type evaporator (for example, refer patent document 2, 3).

特開2006−006184号公報JP 2006-006184 A 特開平05−031421号公報JP 05-031421 A 特開2005−296753号公報JP 2005-296653 A

超音波霧化器や静電霧化器は、液体を超音波や高電圧で微粒子化して放散するため、加熱により液体を気化させた場合に比べてその粒子径が大きい、つまり十分に霧化できない。また、超音波霧化器や静電霧化器は、超音波発生機構や高電圧印加機構に或る程度の規模が必要であり霧化器全体の小型化が難しい。
また、上記特許文献1に開示されるような加熱式蒸散器は、加熱方式であるため液体を十分に霧化することができるが、霧化した薬剤を上昇熱気流により蒸散するため、霧化した薬剤を噴霧するという機能を持っていない。
Ultrasonic atomizers and electrostatic atomizers disperse liquids by pulverizing them with ultrasonic waves or high voltage, so the particle size is larger than when vaporizing liquids by heating. Can not. In addition, the ultrasonic atomizer and the electrostatic atomizer require a certain scale for the ultrasonic generation mechanism and the high voltage application mechanism, and it is difficult to reduce the size of the entire atomizer.
Moreover, since the heating type evaporator as disclosed in the above-mentioned Patent Document 1 is a heating method, the liquid can be sufficiently atomized, but the atomized medicine is evaporated by the rising hot air flow, and thus the atomization. Does not have the function of spraying the medicine.

そこで本発明は、液体を霧化してこれを噴霧することのできる加熱式噴霧器を提供することを目的とする。   Then, an object of this invention is to provide the heating type sprayer which can atomize a liquid and can spray this.

上記課題を解決するため、本発明の加熱式噴霧器は、次の構成とされる。即ち、液体を含浸して保持する保持体を収容する第1収容体と、通電により発熱する発熱体と、発熱体を支持する発熱体支持部と、エアポンプと、発熱体支持部とエアポンプを収容する第2収容体とを含み、発熱体支持部は筒状に構成されており、発熱体支持部の一方の端部に発熱体が配置され、第1収容体は、着脱可能且つ装着状態では保持体が発熱体と接触しないように、発熱体支持部の一方の端部に取り付けられ、エアポンプが送り出す気体は発熱体支持部の他方の端部から発熱体支持部の内部空間に送り込まれ、さらに発熱体支持部の一方の端部から送り出される当該気体が、発熱体の発熱により得られる液体の蒸気を吹き払うように構成されている。   In order to solve the above problems, the heating sprayer of the present invention has the following configuration. That is, a first container that houses a holding body that is impregnated with liquid, a heating element that generates heat when energized, a heating element support that supports the heating element, an air pump, a heating element support, and an air pump are accommodated. The heating element support is configured in a cylindrical shape, the heating element is disposed at one end of the heating element support, and the first container is detachable and in a mounted state. It is attached to one end of the heating element support so that the holding body does not come into contact with the heating element, and the gas sent out by the air pump is sent from the other end of the heating element support to the internal space of the heating element support, Further, the gas fed from one end of the heating element support is configured to blow off the liquid vapor obtained by the heat generation of the heating element.

小型化の観点からは、エアポンプはダイアフラムポンプであることが好ましい。   From the viewpoint of miniaturization, the air pump is preferably a diaphragm pump.

また、発熱体支持部は、発熱体と触れないように発熱体の周囲に、毛細管現象によって上記液体を輸送する液体輸送具を備えていてもよい。これにより液体の気化が効率よく進む。   Further, the heating element support section may include a liquid transporter that transports the liquid by capillary action around the heating element so as not to touch the heating element. Thereby, vaporization of the liquid proceeds efficiently.

本発明によれば、エアポンプが送り出す気体で発熱体の発熱により得られる液体の蒸気を吹き払うため、当該蒸気を加熱式噴霧器の外側へ噴霧することができる。   According to the present invention, since the vapor of the liquid obtained by the heat generated by the heating element is blown out by the gas sent out by the air pump, the vapor can be sprayed to the outside of the heating sprayer.

(a)実施形態に係る加熱式噴霧器の正面図。(b)この加熱式噴霧器のA1−A1断面図。(A) The front view of the heating type sprayer which concerns on embodiment. (B) A1-A1 sectional view of this heating type sprayer. (a)図1に対応する加熱式噴霧器の背面図。(b)右側面図。(c)底面図。(d)平面図。(A) The rear view of the heating type sprayer corresponding to FIG. (B) Right side view. (C) Bottom view. (D) Top view. 図1に対応する加熱式噴霧器の分解斜視図。The disassembled perspective view of the heating type sprayer corresponding to FIG. 発熱体支持部の分解斜視図。The disassembled perspective view of a heat generating body support part. (a)発熱体支持部の平面図。(b)組立斜視図。(c)側面図。(d)この発熱体支持部のE1−E1断面図。(A) The top view of a heat generating body support part. (B) Assembly perspective view. (C) Side view. (D) E1-E1 sectional drawing of this heat generating body support part. 液体輸送具を外した状態での発熱体支持部の斜視図。The perspective view of the heat generating body support part in the state which removed the liquid transporter. (a)発熱体支持部に第1収容体を取り付けた状態の正面図。(b)B1−B1断面図。(c)平面図。(d)底面図。(A) The front view of the state which attached the 1st container to the heat generating body support part. (B) B1-B1 sectional drawing. (C) Top view. (D) Bottom view. (a)第1収容体の正面図。(b)この第1収容体のC1−C1断面図。(c)底面図。(d)この第1収容体のD1−D1断面図。(A) The front view of a 1st container. (B) C1-C1 sectional drawing of this 1st container. (C) Bottom view. (D) D1-D1 sectional drawing of this 1st container.

図面を参照しながら、この発明の実施形態を説明する。各図面において対応する部分については、同一の参照符号をつけて重複説明を省略する。   Embodiments of the present invention will be described with reference to the drawings. Corresponding portions in the drawings are denoted by the same reference numerals, and redundant description is omitted.

本発明の実施形態の一例である加熱式噴霧器100を図1−図3に示す。加熱式噴霧器100は、液体を含浸して保持する保持体41を収容する第1収容体40と、通電により発熱する発熱体36と、発熱体36を支持する発熱体支持部30と、エアポンプ20と、少なくとも発熱体支持部30とエアポンプ20を収容する第2収容体10を含む。   A heated sprayer 100 as an example of an embodiment of the present invention is shown in FIGS. The heating sprayer 100 includes a first container 40 that houses a holding body 41 that is impregnated with a liquid, a heating element 36 that generates heat when energized, a heating element support 30 that supports the heating element 36, and the air pump 20. And the 2nd accommodating body 10 which accommodates the heat generating body support part 30 and the air pump 20 at least is included.

この実施形態の第2収容体10は、大小各一つの開口部を有する漏斗状の形状を持つ外装部101と、円板状の形状を持つ蓋部102を含む。外装部101では、外装部101の小さい開口部から内部空間に向けて円筒体101aが形成されている。蓋部102は、外装部101の大きい開口部を塞ぐように外装部101に取り付けられている。この実施形態では、蓋部102を底面として加熱式噴霧器100を使用することを想定している。   The second container 10 of this embodiment includes an exterior part 101 having a funnel shape having one large and a small opening, and a lid part 102 having a disk shape. In the exterior part 101, a cylindrical body 101a is formed from a small opening of the exterior part 101 toward the internal space. The lid portion 102 is attached to the exterior portion 101 so as to close a large opening of the exterior portion 101. In this embodiment, it is assumed that the heating sprayer 100 is used with the lid 102 as a bottom surface.

外装部101の側壁には、二つの貫通孔が設けられており、一方の貫通孔には商用電源の交流電力がAC−DCアダプタ(図示しない)により変換された直流電力を供給するためのプラグを受けるプラグ受け105が嵌め込まれており、他方の貫通孔にはロッカースイッチ106が嵌め込まれている。なお、商用電源を動力源とするのではなく、1次電池や2次電池を動力源としてもよく、この場合、プラグ受け105もそのための貫通孔も不要である。また、スイッチをロッカースイッチ106に限定する趣旨ではなく、これに替えて、その他のスイッチ(タクティルスイッチ、押しボタンスイッチ、トグルスイッチなど)を用いてもよい。   Two through holes are provided in the side wall of the exterior part 101, and a plug for supplying DC power obtained by converting AC power of a commercial power source by an AC-DC adapter (not shown) into one of the through holes. A plug receiver 105 is received, and a rocker switch 106 is inserted into the other through hole. Instead of using a commercial power source as a power source, a primary battery or a secondary battery may be used as a power source. In this case, neither the plug receiver 105 nor a through hole therefor is required. Further, the switch is not limited to the rocker switch 106, and other switches (such as a tactile switch, a push button switch, and a toggle switch) may be used instead.

蓋部102によって大きい開口部を塞がれた外装部101の内部空間には、昇圧レギュレータなどが搭載された電源回路基板109や発振回路基板108が固定して収められている。電源回路基板109と、発熱体36や発振回路基板108とはリード線60で結ばれており、電源回路基板109は、ロッカースイッチ106がON状態になった時に、電力を発熱体36や発振回路基板108に供給する。   A power supply circuit board 109 and an oscillation circuit board 108 on which a boost regulator and the like are mounted are fixedly housed in the internal space of the exterior part 101 whose large opening is blocked by the lid part 102. The power supply circuit board 109 is connected to the heating element 36 and the oscillation circuit board 108 by lead wires 60. The power supply circuit board 109 supplies power to the heating element 36 and the oscillation circuit when the rocker switch 106 is turned on. It is supplied to the substrate 108.

蓋部102によって大きい開口部を塞がれた外装部101の内部空間には、蓋部102のほぼ中央部、つまり外装部101の小さい開口部の下方にエアポンプ20が固定して置かれている。エアポンプ20は、加熱式噴霧器100を小型化する観点から、ダイアフラムポンプ(diaphragm pump)であることが好ましい。ダイアフラムポンプには、ダイアフラムの振動に伴うポンプ室の圧力変化により、吸気口から吸い込まれたポンプ室内の空気を吐出口21から送り出す構成を持つものや、あるいは、ポンプ室に連接されたベンチュリ管部において上記圧力変化により発生するベンチュリ効果を利用して、ベンチュリ管部に連接された流路から吸い込んだ空気をその吐出口21から連続的に送り出す構成を持つものなどがある。後者のダイアフラムポンプの例として参考特許文献1,2が挙げられる。なお、ダイアフラムに振動を与える機構には、交流電力による電磁力によるもの、モーターにより駆動されるクランクの往復運動によるもの、圧電素子の振動によるものなどが知られている。加熱式噴霧器100を小型化する観点から、ダイアフラムに振動を与える機構として圧電素子の振動によるものが好ましい。ダイアフラムに取り付けられた圧電素子には、発振回路基板108から電圧が供給される。
(参考特許文献1)特開2009−097393号公報
(参考特許文献2)特開2009−097414号公報
In the internal space of the exterior part 101 whose large opening is closed by the lid part 102, the air pump 20 is fixedly placed almost at the center of the lid part 102, that is, below the small opening part of the exterior part 101. . The air pump 20 is preferably a diaphragm pump from the viewpoint of downsizing the heating sprayer 100. The diaphragm pump has a configuration in which the air in the pump chamber sucked from the intake port is sent out from the discharge port 21 due to a pressure change in the pump chamber caused by vibration of the diaphragm, or a venturi pipe portion connected to the pump chamber. In this case, there is a configuration in which the air sucked from the flow path connected to the venturi pipe portion is continuously sent out from the discharge port 21 by using the venturi effect generated by the pressure change. Reference Patent Documents 1 and 2 are examples of the latter diaphragm pump. As a mechanism for applying vibration to the diaphragm, there are known a mechanism based on electromagnetic force by AC power, a mechanism based on reciprocating motion of a crank driven by a motor, a mechanism based on vibration of a piezoelectric element, and the like. From the viewpoint of reducing the size of the heating sprayer 100, a mechanism that applies vibration to the diaphragm is preferable as a mechanism for applying vibration to the diaphragm. A voltage is supplied from the oscillation circuit board 108 to the piezoelectric element attached to the diaphragm.
(Reference Patent Document 1) JP 2009-097393 A (Reference Patent Document 2) JP 2009-097414 A

この実施形態では、エアポンプ20の吐出口21はシリコンチューブ22の一端に嵌め込まれており、シリコンチューブ22の他端には樹脂製パイプ23の一端が嵌め込まれている。   In this embodiment, the discharge port 21 of the air pump 20 is fitted into one end of a silicon tube 22, and one end of a resin pipe 23 is fitted into the other end of the silicon tube 22.

次に、発熱体支持部30は、例えばコイル状電熱器とされる発熱体36、第1の筒状体31、第2の筒状体34、発熱体36を固定する発熱体固定具35、液体輸送具38を含み、筒状に構成されている(図4−図6参照)。   Next, the heating element support 30 includes, for example, a heating element 36 that is a coiled electric heater, a first cylindrical body 31, a second cylindrical body 34, a heating element fixture 35 that fixes the heating element 36, It includes a liquid transport device 38 and is configured in a cylindrical shape (see FIGS. 4 to 6).

第1の筒状体31は、中央に貫通孔(以下、中央貫通孔という)31dを有する肉厚円筒形状を持つ。具体的には、第1の筒状体31は、内径は等しいが外径が異なる二つの円筒部31a,31bを両者の中心軸(両者の貫通孔が伸びる方向)を一致させるように組み合わせた形状である。なお、説明の都合、小なる外径を持つ円筒部31aと大なる外径を持つ円筒部31bの二つの部品から第1の筒状体31が構成されるように説明したが、通常は第1の筒状体31は例えば耐熱性樹脂をモールド成型などで成形して得られる一つの部品である。円筒部31bの肉厚円筒壁部は、中央貫通孔31dと平行な二つの貫通孔31cを有する。この二つの貫通孔31cはリード線60が通されるための貫通孔である。   The first cylindrical body 31 has a thick cylindrical shape having a through hole (hereinafter referred to as a central through hole) 31d in the center. Specifically, in the first cylindrical body 31, two cylindrical portions 31a and 31b having the same inner diameter but different outer diameters are combined so that their central axes (the direction in which both through holes extend) coincide with each other. Shape. For convenience of explanation, it has been described that the first cylindrical body 31 is composed of two parts, a cylindrical portion 31a having a small outer diameter and a cylindrical portion 31b having a large outer diameter. One cylindrical body 31 is one component obtained by molding a heat-resistant resin by molding or the like. The thick cylindrical wall portion of the cylindrical portion 31b has two through holes 31c parallel to the central through hole 31d. The two through holes 31c are through holes through which the lead wires 60 are passed.

第2の筒状体34は例えば金属で形成された円筒状の形状を持ち、この外径は円筒部31bの外径よりも小とされている。また、第2の筒状体34の内径は、第2の筒状体34を第1の筒状体31に両者の中心軸(両者の貫通孔が伸びる方向)を一致させるように取り付けたときに、円筒部31bに設けられた二つの貫通孔31cを含むことのできる長さとされている。なお、第2の筒状体34は、例えばインサート成型や接着剤により第1の筒状体31に取り付けられる。   The second cylindrical body 34 has a cylindrical shape made of, for example, metal, and has an outer diameter smaller than the outer diameter of the cylindrical portion 31b. Further, the inner diameter of the second cylindrical body 34 is set such that the second cylindrical body 34 is attached to the first cylindrical body 31 so that their central axes (the direction in which both through holes extend) coincide with each other. In addition, the length can include two through holes 31c provided in the cylindrical portion 31b. In addition, the 2nd cylindrical body 34 is attached to the 1st cylindrical body 31 by insert molding or an adhesive agent, for example.

発熱体固定具35は、例えばセラミックスで形成され、略直方体状の形状を持つ。発熱体固定具35の長手方向の一端面からこれに対向する端面に向けて貫通孔35dが設けられている。また、長手方向と直交する方向の一方平面壁部とこれに対向する他方平面壁部はそれぞれ長手方向に沿って並ぶ二つの貫通孔35a,35bを有する。貫通孔35aは発熱体36を保持するためのものであり、貫通孔35bはリード線60を通すためのものである。発熱体36の両端は二つの貫通孔35aに嵌め込まれており、これにより発熱体36は発熱体固定具35にしっかりと固定されている。発熱体36からのリード線60は、発熱体固定具35の貫通孔35dを通り、途中で貫通孔35bを抜けて発熱体固定具35の外側へと導かれている。貫通孔35a,35bを有する上記両平面壁部の外幅は、円筒部31bに設けられた二つの貫通孔31cの開口間距離よりも短い。また、長手方向と直交する方向の一方壁部とこれに対向する他方壁部であって、貫通孔35a,35bが設けられていない両壁部の外面は、第2の筒状体34の内壁面に合うように曲面成形されている。   The heating element fixture 35 is formed of ceramics, for example, and has a substantially rectangular parallelepiped shape. A through-hole 35d is provided from one longitudinal end surface of the heating element fixture 35 toward the end surface facing this. In addition, the one planar wall portion in the direction orthogonal to the longitudinal direction and the other planar wall portion opposed thereto have two through holes 35a and 35b arranged along the longitudinal direction. The through hole 35 a is for holding the heating element 36, and the through hole 35 b is for passing the lead wire 60. Both ends of the heating element 36 are fitted into the two through holes 35 a, whereby the heating element 36 is firmly fixed to the heating element fixture 35. The lead wire 60 from the heating element 36 passes through the through hole 35d of the heating element fixture 35, passes through the through hole 35b, and is guided to the outside of the heating element fixture 35. The outer width of the two planar wall portions having the through holes 35a and 35b is shorter than the distance between the openings of the two through holes 31c provided in the cylindrical portion 31b. Further, the outer surface of both wall portions, which are one wall portion in the direction orthogonal to the longitudinal direction and the other wall portion opposite to the wall portion and in which the through holes 35a and 35b are not provided, are the inner surfaces of the second cylindrical body 34. Curved to fit the wall surface.

発熱体36が取り付けられた発熱体固定具35は、円筒部31bに設けられた二つの貫通孔31cを塞がないように、第2の筒状体34の内部空間に収められている。つまり、発熱体固定具35が上述の形状を持つ故に、貫通孔35a,35bを有する上記両平面壁部と第2の筒状体34の内壁面との間に二つの空間ができるので、これら空間に円筒部31bに設けられた二つの貫通孔31cが連通するように位置決めされて、発熱体固定具35は第2の筒状体34の内部空間に収められている。なお、この状態では、第1の筒状体31の中央貫通孔31dと第2の筒状体34の貫通孔35dが連通している。発熱体固定具35を第2の筒状体34の内部空間内で固定させる方法としては接着剤による接合方法が考えられるが、敢えて固定させる必要は無く、例えば、リード線60を余長処理して緩みを少なくし、曲面成形された発熱体固定具35の両壁部の外幅を第2の筒状体34の内径に合うように設計することで、発熱体固定具35の脱落や、発熱体固定具35が第2の筒状体34の内部空間内で徒に回転してしまうことを防止できる。   The heating element fixture 35 to which the heating element 36 is attached is housed in the internal space of the second cylindrical body 34 so as not to block the two through holes 31c provided in the cylindrical portion 31b. That is, since the heating element fixture 35 has the above-described shape, two spaces are formed between the two planar wall portions having the through holes 35a and 35b and the inner wall surface of the second cylindrical body 34. Positioning is made so that the two through holes 31 c provided in the cylindrical portion 31 b communicate with each other in the space, the heating element fixture 35 is accommodated in the internal space of the second cylindrical body 34. In this state, the central through hole 31d of the first cylindrical body 31 and the through hole 35d of the second cylindrical body 34 communicate with each other. As a method of fixing the heating element fixture 35 in the internal space of the second cylindrical body 34, a bonding method using an adhesive is conceivable. However, it is not necessary to fix the heating element 35. For example, the lead wire 60 is processed for an extra length. By designing the outer width of both wall portions of the heating element fixture 35 that is formed into a curved surface to match the inner diameter of the second cylindrical body 34, the heating element fixture 35 can be removed, It is possible to prevent the heating element fixture 35 from rotating in the internal space of the second cylindrical body 34.

液体輸送具38は、例えば金属繊維がメッシュ状に編まれたシートを折り返し屈撓成形されたものであり、このため液体輸送具38は毛細管現象によって上記液体を輸送する機能と熱伝導性を持つ。液体輸送具38はその両端部で挟み込むように発熱体固定具35の端部(発熱体36に近い端部)に固定されている。この状態では、貫通孔35a,35bを有する発熱体固定具35の上記両平面壁部と第2の筒状体34の内壁面との間にできる二つの空間に液体輸送具38の両端部が入り込んでいるから、液体輸送具38が発熱体固定具35の貫通孔35bを覆わないように、液体輸送具38は発熱体固定具35に取り付けられる(図5参照)。また、液体輸送具38の中央部位、つまり、液体輸送具38が発熱体固定具35に取り付けられた状態で発熱体36に対面する部位は、第2の筒状体34の端部よりも外側に突出している。また、この状態では、液体輸送具38は、発熱体36(より詳しくはリード線60)と触れないように発熱体36の周囲に配置されている(図5参照)。   The liquid transport device 38 is formed by bending and bending a sheet in which metal fibers are knitted in a mesh shape, for example. Therefore, the liquid transport device 38 has a function of transporting the liquid by capillary action and thermal conductivity. . The liquid transport device 38 is fixed to the end of the heating element fixture 35 (the end close to the heating element 36) so as to be sandwiched between both ends thereof. In this state, both end portions of the liquid transport device 38 are formed in two spaces formed between both the flat wall portions of the heating element fixture 35 having the through holes 35a and 35b and the inner wall surface of the second cylindrical body 34. Since it has entered, the liquid transporter 38 is attached to the heating element fixture 35 so that the liquid transporter 38 does not cover the through hole 35b of the heating element fixture 35 (see FIG. 5). Further, the central portion of the liquid transport device 38, that is, the portion facing the heat generating body 36 in a state where the liquid transport device 38 is attached to the heat generating body fixing device 35 is outside the end portion of the second cylindrical body 34. Protruding. Further, in this state, the liquid transporter 38 is disposed around the heating element 36 so as not to touch the heating element 36 (more specifically, the lead wire 60) (see FIG. 5).

このような発熱体支持部30は外装部101の円筒体101aに収容固定され、この状態では、第1の筒状体31の中央貫通孔31dに樹脂製パイプ23の他端が挿入されている(図1参照)。また、第1の筒状体31の円筒部31bの外径は外装部101の円筒体101aの内径にほぼ等しいため、発熱体支持部30が円筒体101a内部で遊ぶことがない。なお、この状態では、シリコンチューブ22の内部空間が、樹脂製パイプ23の内部空間を介して、第1の筒状体31の中央貫通孔31dと連通している。   Such a heating element support portion 30 is accommodated and fixed in the cylindrical body 101a of the exterior portion 101. In this state, the other end of the resin pipe 23 is inserted into the central through hole 31d of the first cylindrical body 31. (See FIG. 1). Moreover, since the outer diameter of the cylindrical part 31b of the first cylindrical body 31 is substantially equal to the inner diameter of the cylindrical body 101a of the exterior part 101, the heating element support part 30 does not play inside the cylindrical body 101a. In this state, the internal space of the silicon tube 22 communicates with the central through hole 31 d of the first cylindrical body 31 through the internal space of the resin pipe 23.

第1収容体40は、有底円筒状の形状を持つ筒体45と円筒部材42を含む(図7、8参照)。筒体45の底部45pの中央部に貫通孔45cが設けられている。筒体45の内部空間には、その開口部から筒体45の内径よりも小さい外径を持つ円筒部材42が挿入されて収められている。円筒部材42は、その一方の端部に近い位置にてその内部空間に隔壁板42aが設けられた略円筒状の形状を持つ。隔壁板42aはその中央部に貫通孔42bを有する。円筒部材42は、その側壁部に外側に突出する凸部42dを有し、また、筒体45の内壁の一部が狭まっていることで、円筒部材42と筒体45とが圧接し、円筒部材42は筒体45の内部空間に固定されている。なお、円筒部材42が筒体45の内部空間に固定された状態では、筒体45の開口端部と、円筒部材42の端部(筒体45の底部45pから離れた側の端部)とは十分な距離が保たれているとする。この筒体45の開口端部と円筒部材42の端部との間に在る筒体45の内部空間を内部空間Xと呼称することにする。   The first container 40 includes a cylindrical body 45 having a cylindrical shape with a bottom and a cylindrical member 42 (see FIGS. 7 and 8). A through hole 45 c is provided at the center of the bottom 45 p of the cylindrical body 45. A cylindrical member 42 having an outer diameter smaller than the inner diameter of the cylindrical body 45 is inserted into and stored in the internal space of the cylindrical body 45. The cylindrical member 42 has a substantially cylindrical shape in which a partition plate 42a is provided in the internal space at a position near one end thereof. The partition plate 42a has a through hole 42b at the center thereof. The cylindrical member 42 has a convex portion 42d protruding outward on the side wall portion thereof, and a part of the inner wall of the cylindrical body 45 is narrowed, so that the cylindrical member 42 and the cylindrical body 45 are in pressure contact with each other. The member 42 is fixed in the internal space of the cylindrical body 45. In the state where the cylindrical member 42 is fixed in the internal space of the cylindrical body 45, the opening end of the cylindrical body 45 and the end of the cylindrical member 42 (the end on the side away from the bottom 45p of the cylindrical body 45) and Suppose that a sufficient distance is maintained. The internal space of the cylindrical body 45 existing between the opening end portion of the cylindrical body 45 and the end portion of the cylindrical member 42 is referred to as an internal space X.

円筒部材42の内部空間は、隔壁板42aによって大小二つの空間に分けられており、大きい方の内部空間Cには、液体を含浸して保持する保持体41が収容されている。液体としては、例えば駆虫薬剤、芳香剤、蒸留水など揮発性を有する液体が挙げられる。保持体41としては、例えばスポンジや吸水シートなどが挙げられる。   The internal space of the cylindrical member 42 is divided into two large and small spaces by a partition plate 42a, and the larger internal space C accommodates a holding body 41 that is impregnated and held with liquid. Examples of the liquid include volatile liquids such as anthelmintic drugs, fragrances, and distilled water. Examples of the holding body 41 include a sponge and a water absorbing sheet.

円筒部材42の小さい方の内部空間を囲む円筒部材42の側壁には、貫通孔(スリットなどでもよい)42cが設けられている。このため、円筒部材42が筒体45の内部空間に固定された状態では、内部空間Xは、筒体45の内壁面と円筒部材42の外壁面との間に生じている空間45dと、貫通孔42cと、筒体45の底部45pと円筒部材42の隔壁板42aとの間に生じる空間45eと、底部45pの貫通孔45cを介して、加熱式噴霧器100の外側空間に連通している。また、円筒部材42の大きい方の内部空間Cは、隔壁板42aの貫通孔42bと、空間45eと、貫通孔45cを介して、加熱式噴霧器100の外側空間に連通している。   A through hole (which may be a slit or the like) 42c is provided on the side wall of the cylindrical member 42 surrounding the smaller internal space of the cylindrical member 42. For this reason, in a state where the cylindrical member 42 is fixed in the internal space of the cylindrical body 45, the internal space X penetrates the space 45 d formed between the inner wall surface of the cylindrical body 45 and the outer wall surface of the cylindrical member 42. It communicates with the outer space of the heating sprayer 100 through the hole 42c, a space 45e formed between the bottom 45p of the cylindrical body 45 and the partition plate 42a of the cylindrical member 42, and a through hole 45c in the bottom 45p. The larger internal space C of the cylindrical member 42 communicates with the outer space of the heating sprayer 100 through the through hole 42b, the space 45e, and the through hole 45c of the partition plate 42a.

このような第1収容体40は、その内部空間Xに発熱体支持部30の第2の筒状体34を収容するように、発熱体支持部30に脱着可能に取り付けられる(図7参照)。この状態では、発熱体支持部30の液体輸送具38は保持体41と接触するが、発熱体36は、液体輸送具38により保持体41と接触しない。また、第1収容体40は発熱体支持部30に脱着可能に取り付けられるため、第1収容体40の交換が容易である。   Such a first container 40 is detachably attached to the heating element support 30 so as to accommodate the second cylindrical body 34 of the heating element support 30 in the internal space X (see FIG. 7). . In this state, the liquid transport device 38 of the heating element support 30 is in contact with the holding body 41, but the heating element 36 is not in contact with the holding body 41 by the liquid transport device 38. Moreover, since the 1st container 40 is attached to the heat generating body support part 30 so that attachment or detachment is possible, replacement | exchange of the 1st container 40 is easy.

次に、加熱式噴霧器100の動作を説明する。ロッカースイッチ106がON状態にされると、電力源(商用電力や電池など)からの電力が電源回路基板109に供給され、電源回路基板109から発振回路基板108と発熱体36に通電する。発振回路基板108は、エアポンプ20のダイアフラムに取り付けられた圧電素子を制御し、ダイアフラムが振動することで、エアポンプ20の吐出口21から気体(空気)が送り出される。また、発熱体36は通電により発熱する。   Next, the operation of the heating sprayer 100 will be described. When the rocker switch 106 is turned on, power from a power source (commercial power, battery, etc.) is supplied to the power supply circuit board 109, and the oscillation circuit board 108 and the heating element 36 are energized from the power supply circuit board 109. The oscillation circuit board 108 controls a piezoelectric element attached to the diaphragm of the air pump 20, and gas (air) is sent out from the discharge port 21 of the air pump 20 when the diaphragm vibrates. The heating element 36 generates heat when energized.

発熱体36を熱源として、発熱体36に比べて広い面積を持つ液体輸送具38が熱放射により加熱される。ところで、液体輸送具38が保持体41に接触しているため、保持体41に含浸される液体は毛細管現象により液体輸送具38に沿って移動する。この液体輸送具38に沿って移動した液体が、液体輸送具38からの熱伝導ないし発熱体36からの熱放射により効率的に加熱され、液体が気化する。この蒸気は、液体の種類などにもよるが、粒子径が3〜5μm程度の霧状であり、発熱体固定具35の貫通孔35dに充満していく。   Using the heating element 36 as a heat source, the liquid transport device 38 having a larger area than the heating element 36 is heated by heat radiation. By the way, since the liquid transport device 38 is in contact with the holding body 41, the liquid impregnated in the holding body 41 moves along the liquid transport device 38 by capillary action. The liquid moved along the liquid transport device 38 is efficiently heated by heat conduction from the liquid transport device 38 or heat radiation from the heating element 36, and the liquid is vaporized. Although this vapor | steam is based on the kind of liquid etc., it is a mist shape with a particle diameter of about 3-5 micrometers, and it fills the through-hole 35d of the heat generating body fixing tool 35. FIG.

ところで、エアポンプ20の吐出口21から送り出された気体は、シリコンチューブ22の内部空間、樹脂製パイプ23の内部空間、第1の筒状体31の中央貫通孔31d、発熱体固定具35の貫通孔35dを、この順で通り抜け、発熱体固定具35の貫通孔35dに充満している蒸気を吹き払う。吹き払われた蒸気は、第1の流路として、空間45d、貫通孔42c、空間45e、底部45pの貫通孔45cを、この順で通り抜け、加熱式噴霧器100の外側空間へと噴き出されることとなる。また、吹き払われた蒸気は、第2の流路として、隔壁板42aの貫通孔42b、空間45e、底部45pの貫通孔45cを、この順で通り抜け、加熱式噴霧器100の外側空間へと噴き出されることとなる。ただし、第2の流路は、例えば吸水シートや薬液含浸シートなどのシート状の保持体41が渦巻状に畳まれている場合のように、円筒部材42の大きい方の内部空間に保持体41が収容されている状態にて当該内部空間に気体が通り抜けられる流路が確保されている場合に成立するのであり、保持体41の種類や形状などによっては、第2の流路が成立しない場合もある。このような場合であっても第1の流路により、蒸気は加熱式噴霧器100の外側空間へと噴き出されることとなる。   By the way, the gas sent out from the discharge port 21 of the air pump 20 passes through the internal space of the silicon tube 22, the internal space of the resin pipe 23, the central through hole 31 d of the first cylindrical body 31, and the heating element fixture 35. The holes 35d pass through in this order, and the steam filling the through holes 35d of the heating element fixture 35 is blown off. The blown off steam passes through the space 45d, the through hole 42c, the space 45e, and the through hole 45c of the bottom 45p in this order as a first flow path, and is jetted to the outer space of the heating sprayer 100. It becomes. The blown off steam passes through the through hole 42b of the partition wall plate 42a, the space 45e, and the through hole 45c of the bottom 45p in this order as a second flow path, and is sprayed into the outer space of the heating sprayer 100. Will be issued. However, the second flow path is formed in the larger inner space of the cylindrical member 42 as in the case where the sheet-like holding body 41 such as a water absorbing sheet or a chemical liquid impregnated sheet is folded in a spiral shape. This is established when a flow path through which gas can pass through is secured in the internal space in a state in which the second flow path is not established depending on the type or shape of the holding body 41. There is also. Even in such a case, the steam is ejected into the outer space of the heating sprayer 100 by the first flow path.

また、エアポンプ20から気体を連続して吐出するのではなく、発振回路基板108の制御により、気体を間欠吐出してもよい。これにより発熱体36の温度低下を低減することができる。   Further, instead of continuously discharging the gas from the air pump 20, the gas may be intermittently discharged under the control of the oscillation circuit substrate 108. Thereby, the temperature fall of the heat generating body 36 can be reduced.

以上の実施形態の他、本発明は上述の実施形態に限定されるものではなく、本発明の趣旨を逸脱しない範囲で適宜変更が可能である。   In addition to the above-described embodiments, the present invention is not limited to the above-described embodiments, and various modifications can be made without departing from the spirit of the present invention.

Claims (3)

液体を含浸して保持する保持体を収容する第1収容体と、
通電により発熱する発熱体と、
上記発熱体を支持する発熱体支持部と、
エアポンプと、
上記発熱体支持部と上記エアポンプを収容する第2収容体と
を含み、
上記発熱体支持部は筒状に構成されており、
上記発熱体支持部の一方の端部に上記発熱体が配置され、
上記発熱体支持部は、上記発熱体と触れないように上記発熱体の周囲に、毛細管現象によって上記液体を輸送する液体輸送具を備えており、
上記第1収容体は、着脱可能且つ装着状態では上記保持体が上記発熱体と接触しないように、上記発熱体支持部の上記一方の端部に取り付けられ、
上記エアポンプが送り出す気体は上記発熱体支持部の他方の端部から上記発熱体支持部の内部空間に送り込まれ、さらに、上記発熱体支持部の上記一方の端部から送り出される当該気体が、上記発熱体の発熱により得られる上記液体の蒸気を吹き払うように構成された
加熱式噴霧器。
A first container that houses a holding body that is impregnated and held with liquid;
A heating element that generates heat when energized;
A heating element support for supporting the heating element;
An air pump,
Including the second heating element housing the heating element support and the air pump,
The heating element support is configured in a cylindrical shape,
The heating element is disposed at one end of the heating element support,
The heating element support portion includes a liquid transporter that transports the liquid by capillary action around the heating element so as not to touch the heating element.
The first container is detachably attached to the one end of the heating element support so that the holding body does not come into contact with the heating element when mounted.
The gas sent out by the air pump is sent from the other end of the heating element support to the internal space of the heating element support, and the gas sent from the one end of the heating element support is A heating type sprayer configured to blow off the liquid vapor obtained by the heat generation of the heating element.
請求項1に記載の加熱式噴霧器であって、
上記エアポンプはダイアフラムポンプである
ことを特徴とする加熱式噴霧器。
The heated sprayer according to claim 1, wherein
The heating atomizer, wherein the air pump is a diaphragm pump.
液体を含浸して保持する保持体を収容する第1収容体と、
通電により発熱する発熱体と、
上記発熱体を支持する発熱体支持部と、
エアポンプと、
上記発熱体支持部と上記エアポンプを収容する第2収容体と
を含み、
上記発熱体支持部は筒状に構成されており、
上記発熱体支持部の一方の端部の内部空間に上記発熱体が配置され、
上記第1収容体は、着脱可能且つ装着状態では上記保持体が上記発熱体と接触しないように、上記発熱体支持部の上記一方の端部に取り付けられ、
上記エアポンプが送り出す気体は上記発熱体支持部の他方の端部から上記発熱体支持部の内部空間に送り込まれ、さらに、上記発熱体支持部の上記一方の端部から送り出される当該気体が、上記発熱体の発熱により得られる上記液体の蒸気を吹き払うように構成された
加熱式噴霧器。
A first container that houses a holding body that is impregnated and held with liquid;
A heating element that generates heat when energized;
A heating element support for supporting the heating element;
An air pump,
Including the second heating element housing the heating element support and the air pump,
The heating element support is configured in a cylindrical shape,
The heating element is disposed in an internal space at one end of the heating element support,
The first container is detachably attached to the one end of the heating element support so that the holding body does not come into contact with the heating element when mounted.
The gas sent out by the air pump is sent from the other end of the heating element support to the internal space of the heating element support, and the gas sent from the one end of the heating element support is A heating type sprayer configured to blow off the liquid vapor obtained by the heat generation of the heating element.
JP2009273190A 2009-12-01 2009-12-01 Heating sprayer Expired - Fee Related JP5227294B2 (en)

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Publication number Priority date Publication date Assignee Title
CN103134116B (en) * 2013-02-01 2015-03-25 宁波翔龙金属制品有限公司 Vehicle-mounted forest air engine and control method of heating circuit for same
JP6983884B2 (en) * 2016-11-02 2021-12-17 ザ プロクター アンド ギャンブル カンパニーThe Procter & Gamble Company A volatile composition dispenser with an air pump, and a method of using it to deliver the volatile composition to an evaporative surface.
CN107182990B (en) * 2017-07-19 2023-04-28 周普元 Remove atomizing device of bee mite

Family Cites Families (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS4728558Y1 (en) * 1968-12-28 1972-08-28
JPS5928370B2 (en) * 1977-02-21 1984-07-12 松下電工株式会社 Pest control smoke generator
JPS54145672U (en) * 1978-03-31 1979-10-09
JPH0168785U (en) * 1987-10-28 1989-05-08
JPH0117181Y2 (en) * 1988-02-10 1989-05-18
JP2564537Y2 (en) * 1992-03-27 1998-03-09 高砂熱学工業 株式会社 Scent generator
JP4389212B2 (en) * 2004-06-25 2009-12-24 フマキラー株式会社 Heated chemical vaporizer
JP2006159056A (en) * 2004-12-06 2006-06-22 Seiko Epson Corp Liquid chemical spray apparatus, liquid chemical cartridge and method of controlling liquid chemical spray apparatus
JP3134999U (en) * 2007-06-20 2007-08-30 有限会社創造舎 Wet air treatment structure

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