JP2016043286A - Ultrasonic atomization device - Google Patents

Ultrasonic atomization device Download PDF

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JP2016043286A
JP2016043286A JP2014167747A JP2014167747A JP2016043286A JP 2016043286 A JP2016043286 A JP 2016043286A JP 2014167747 A JP2014167747 A JP 2014167747A JP 2014167747 A JP2014167747 A JP 2014167747A JP 2016043286 A JP2016043286 A JP 2016043286A
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liquid
annular holder
ultrasonic
pieces
arm
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次良 雪本
Jiro Yukimoto
次良 雪本
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YUTAKA MEIKU KK
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YUTAKA MEIKU KK
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B17/00Apparatus for spraying or atomising liquids or other fluent materials, not covered by the preceding groups
    • B05B17/04Apparatus for spraying or atomising liquids or other fluent materials, not covered by the preceding groups operating with special methods
    • B05B17/06Apparatus for spraying or atomising liquids or other fluent materials, not covered by the preceding groups operating with special methods using ultrasonic or other kinds of vibrations
    • B05B17/0607Apparatus for spraying or atomising liquids or other fluent materials, not covered by the preceding groups operating with special methods using ultrasonic or other kinds of vibrations generated by electrical means, e.g. piezoelectric transducers
    • B05B17/0653Details
    • B05B17/0676Feeding means
    • B05B17/0684Wicks or the like

Abstract

PROBLEM TO BE SOLVED: To provide an ultrasonic atomization device capable of always stable atomization by allowing a vibration plate to abut and support on the upper end surface whole surface of a liquid absorption material by uniform pressing force with a simple structure.SOLUTION: An ultrasonic atomization device is formed in a structure that having a liquid storage container 3 having a liquid absorption material 4 in a case body 1, and an annular ring-shaped holder 6 for fixing a vibration plate 5a and a piezoelectric vibrator 5b is arranged on the lid body 2 side of the case body 1, and a boss 17 provided in an arm piece 16 projected in the annular ring-shaped holder 6, is vertically movably loosely fitted in a vertically long guide hole 20 projected in a bearing piece 19 suspended from the lid body 2 side, and rash action in the circumferential direction of the annular ring-shaped holder 6 is suppressed, and an under surface of the vibration plate 5a is always allowed to abut and support on the upper end surface whole surface of the liquid absorption material 4 by uniform pressing force by dead weight of the annular ring-shaped holder 6.SELECTED DRAWING: Figure 1

Description

本発明は、圧電振動子と振動板とからなる超音波発振部の振動により水や芳香剤、殺虫剤、小動物等の忌避剤などの液体を噴霧する超音波霧化装置に係わり、特に、吸液材を用いて上記超音波発振部の振動板に液体の供給を行う方式の超音波霧化装置に関する。   The present invention relates to an ultrasonic atomizer that sprays liquid such as water, fragrances, insecticides, repellents such as small animals, etc. by vibration of an ultrasonic oscillating unit comprising a piezoelectric vibrator and a diaphragm. The present invention relates to an ultrasonic atomizer that uses a liquid material to supply liquid to the diaphragm of the ultrasonic oscillator.

液体収容容器等の貯液室内の液体を吸液材によって吸い上げて超音波発振部の振動板に供給し、振動板に付着した液体を超音波発振部の振動エネルギーによって霧化する超音波霧化装置としては、従来から種々の構造のものが開発されてあり、例えば、特許文献1には貯液室内に筒状のガイドを立設し、このガイドに、スプリングによって常時上方に付勢されている吸液材を上下動自在に挿嵌している一方、貯液室の上方に圧電振動子に固着、支持されている振動板を配設して、この振動板の下面に貯液室から上方に突出している上記吸液材の上端面を上記スプリングの弾圧力によって圧接させた超音波霧化装置が記載されている。   Ultrasonic atomization in which liquid in a liquid storage chamber such as a liquid container is sucked up by a liquid absorbing material and supplied to the vibration plate of the ultrasonic oscillation unit, and the liquid adhering to the vibration plate is atomized by the vibration energy of the ultrasonic oscillation unit As a device, devices having various structures have been developed. For example, in Patent Document 1, a cylindrical guide is erected in a liquid storage chamber, and this guide is always urged upward by a spring. The liquid absorbing material is inserted so as to be movable up and down, and a vibration plate fixed and supported by the piezoelectric vibrator is disposed above the liquid storage chamber, and the lower surface of the vibration plate is provided from the liquid storage chamber. An ultrasonic atomizing device is described in which the upper end surface of the liquid absorbing material protruding upward is brought into pressure contact with the elastic pressure of the spring.

また、特許文献2には、振動板を一体に設けている圧電振動子をリング状の支持部材に固定することによって超音波振動ユニットを構成し、この超音波振動ユニットを円筒形状のガイド部材に僅かな隙間を存して上下動自在に収容し、この超音波ユニットの自重により、スプリングを用いることなく圧電振動子に固着している上記振動板を、貯液室にその下部を没入させた状態で配設している吸液材における貯液室から突出した上端面に当接、支持させてなる超音波霧化装置が記載されている。   In Patent Document 2, an ultrasonic vibration unit is configured by fixing a piezoelectric vibrator integrally provided with a diaphragm to a ring-shaped support member, and the ultrasonic vibration unit is formed into a cylindrical guide member. The ultrasonic vibration unit is housed movably up and down with a slight gap, and the lower part of the vibration plate fixed to the piezoelectric vibrator without using a spring is immersed in the liquid storage chamber by its own weight. An ultrasonic atomizing device is described in which a liquid absorbing material disposed in a state is in contact with and supported by an upper end surface protruding from a liquid storage chamber.

特開平6−320083号公報JP-A-6-320083 特許第5099410号公報Japanese Patent No. 5099410

しかしながら、前者の超音波霧化装置によれば、吸液材を押し上げているスプリングによって吸液材の下端部と貯液室の内底面との間に隙間が発生し、長時間の使用によって貯液室内の液体が減少してその液面が吸液材の下端面よりも低くなると、貯液室の底部に液体が残存しているにもかかわらず、霧化させることができなくなって底部の液体が無駄になるといった問題点がある。   However, according to the former ultrasonic atomizing device, a gap is generated between the lower end of the liquid absorbing material and the inner bottom surface of the liquid storage chamber by the spring pushing up the liquid absorbing material, and the material is stored for a long time. When the liquid in the liquid chamber decreases and its liquid level becomes lower than the lower end surface of the liquid absorbing material, it cannot be atomized even though the liquid remains at the bottom of the liquid storage chamber. There is a problem that the liquid is wasted.

さらに、スプリング力の調整が難しくて振動板に対する押圧力が大きくなりすぎ、振動板と吸液材との間に安定した接触状態を確保することが困難となって円滑な霧化機能が損なわれるといった問題点がある。   Furthermore, it is difficult to adjust the spring force and the pressing force against the diaphragm becomes too large, making it difficult to ensure a stable contact state between the diaphragm and the liquid absorbing material, and the smooth atomization function is impaired. There is a problem.

一方、後者の超音波霧化装置によれば、振動板を一体に設けている圧電振動子をリング状の支持部材に固定してなる超音波振動ユニットの自重によって振動板を吸液材の上端面に当接、支持させているので、吸液材の下端面を貯液室の内底面に当接、支持させた構造とすることができて貯液室内の液体を残存させることなく全て霧化させることができると共にリング状の支持部材の軽量化によって振動板と吸液材との接触関係を良好な霧化が可能となる接圧状態に設定することができるが、超音波振動ユニットは円筒形状のガイド部材に僅かな隙間を存して上下動自在に収容されているので、輸送時や使用に際しての設置時などにおいて、振動等によって超音波振動ユニットが傾いた場合には、超音波振動ユニットにおけるリング状の支持部材の外周角部がガイド部材の内周面に突っ張り状態に係止して振動板が吸液材の吸液面である上端面に対して斜めに接触し、振動板と吸液材の上端面との接触状態が不均一になって吸液材から振動板への給液が充分に行われない部分が発生し、安定した霧化ができなくなるといった問題点があった。   On the other hand, according to the latter ultrasonic atomizer, the diaphragm is placed on the liquid absorbing material by the weight of the ultrasonic vibration unit in which the piezoelectric vibrator integrally provided with the diaphragm is fixed to the ring-shaped support member. Since it is in contact with and supported by the end surface, the lower end surface of the liquid absorbing material can be brought into contact with and supported by the inner bottom surface of the liquid storage chamber, so that all the liquid in the liquid storage chamber can be fogged without remaining. The contact relationship between the diaphragm and the liquid absorbing material can be set to a contact pressure state that enables good atomization by reducing the weight of the ring-shaped support member. Since the cylindrical guide member is accommodated in a vertically movable manner with a slight gap, if the ultrasonic vibration unit is tilted due to vibration during transportation or installation, the ultrasonic wave Ring-shaped support in the vibration unit The outer peripheral corner portion of the guide member is locked to the inner peripheral surface of the guide member so that the diaphragm is in contact with the upper end surface which is the liquid absorbing surface of the liquid absorbing material obliquely, and the diaphragm and the upper end surface of the liquid absorbing material There is a problem that the contact state with the liquid is not uniform, and there is a portion where the liquid is not sufficiently supplied from the liquid absorbing material to the diaphragm, and stable atomization cannot be performed.

本発明はこのような問題点に鑑みてなされたもので、その目的とするところは、簡単な構造によって振動板を吸液材の上端面全面に均一な押圧力でもって当接、支持させることができ、常に安定した霧化を可能にすることができる超音波霧化装置を提供するにある。   The present invention has been made in view of such problems, and the object of the present invention is to bring the diaphragm into contact with and support the entire upper end surface of the liquid absorbent material with a uniform pressing force with a simple structure. Therefore, it is an object of the present invention to provide an ultrasonic atomizing apparatus that can always perform stable atomization.

上記目的を達成するために本発明の超音波霧化装置は、請求項1に記載したように、ケース体と、ケース体に着脱自在に被せその中央部に噴霧口を開設している蓋体と、上記ケース体内に配置した液体収容容器と、この液体収容容器内にその下半部を没入させ上端部を液体収容容器の口部から上方に突出させている吸液材と、通電によって振動する圧電振動子と振動板とを備えその振動板の下面を上記吸液材の上端面に当接、受止させている超音波発振部と、上記蓋体の噴霧口の下方に配設され上記超音波発振部を内嵌状態に固定させている円環状ホルダーと、この円環状ホルダーの外周面に突設している腕片と、この腕片の先端部における側面に突設している短軸状のボスと、上記蓋体の下面側から垂設されその下部に上記腕片のボスを上下方向に移動自在に遊嵌させた縦長のガイド孔を有する軸受片とを備えていることを特徴とする。   In order to achieve the above object, an ultrasonic atomizing device according to the present invention includes a case body and a lid body that is detachably covered with the case body and has a spray port at the center thereof. And a liquid storage container disposed in the case body, a liquid absorbing material in which the lower half of the liquid storage container is immersed in the liquid storage container, and an upper end of the liquid storage container protrudes upward from the mouth of the liquid storage container. An ultrasonic oscillator having a piezoelectric vibrator and a diaphragm that are in contact with and receiving the lower surface of the diaphragm against the upper end surface of the liquid-absorbing material; and disposed below the spray port of the lid. An annular holder that fixes the ultrasonic oscillator in an internally fitted state, an arm piece that projects from the outer peripheral surface of the annular holder, and a projecting surface that projects from the side of the tip of the arm piece A short-axis boss and the arm piece boss above the lid that is suspended from the lower surface of the lid Characterized in that it comprises a bearing piece having a vertically long guide hole movably loosely fitted in the direction.

このように構成した超音波霧化装置において請求項2に係る発明は、上記腕片を円環状ホルダーの周方向に小間隔を存して一対、互いに平行に突設していると共にこれらの腕片の互いに相反する方向に向けている外側面にボスを突設している一方、蓋体の下面側からこれらの腕片を挟むようにして一対の軸受片を垂設してあり、これらの軸受片に設けているガイド孔に上記一対の腕片に突設しているボスをそれぞれ上下方向に移動自在に遊嵌させていることを特徴とする。   In the ultrasonic atomizing apparatus configured as described above, the invention according to claim 2 is a pair of the arm pieces projecting in parallel with each other at a small interval in the circumferential direction of the annular holder and these arms. While the bosses project from the outer surfaces of the pieces facing in opposite directions, a pair of bearing pieces are suspended from the lower surface side of the lid so as to sandwich the arm pieces, and these bearing pieces Bosses projecting from the pair of arm pieces are loosely fitted in the guide holes provided in the upper and lower directions, respectively.

請求項3に係る発明は、上記一対の軸受片に設けているガイド孔の下端を軸受片の下端面から下方に開口させていると共に、これらの軸受片の下端面間に受け板部材を架設状態に固定してこの受け板部材によりガイド孔の開口端を閉止してあり、さらに、軸受片の上記ガイド孔にボスを遊嵌させている円環状ホルダーの腕片の下面よりも上記軸受片の下端を下方に位置させて上記受け板部材の上面と円環状ホルダーの腕片の下端面との間に隙間を形成していることを特徴とする。   In the invention according to claim 3, the lower ends of the guide holes provided in the pair of bearing pieces are opened downward from the lower end surfaces of the bearing pieces, and a receiving plate member is installed between the lower end surfaces of these bearing pieces. The bearing piece is closed to the open end of the guide hole by the receiving plate member, and the bearing piece is more than the lower surface of the arm piece of the annular holder in which the boss is loosely fitted in the guide hole of the bearing piece. A gap is formed between the upper surface of the receiving plate member and the lower end surface of the arm piece of the annular holder with the lower end of the ring plate positioned downward.

また、請求項4に係る発明は、上記円環状ホルダーにおける一対の腕片間の周壁部分を切除して超音波発振部からのリード線を円環状ホルダー外に引き出すリード線導出口に形成していることを特徴とする。   According to a fourth aspect of the present invention, the peripheral wall portion between the pair of arm pieces in the annular holder is cut out to form a lead wire outlet for drawing out the lead wire from the ultrasonic oscillator to the outside of the annular holder. It is characterized by being.

請求項5に係る発明は、上記ケース体内の中央部に短筒形状の仕切壁を設けて、この仕切壁で囲まれた空間部を上記液体収容容器の収納室に形成している一方、仕切壁とケース体の外周縁に突設している周壁との間の空間部を超音波発振部に電力を供給する電源収納室に形成していることを特徴とする。   According to a fifth aspect of the present invention, a short cylindrical partition wall is provided in the center of the case body, and a space surrounded by the partition wall is formed in the storage chamber of the liquid container. A space between the wall and the peripheral wall protruding from the outer peripheral edge of the case body is formed in a power storage chamber that supplies power to the ultrasonic oscillator.

さらに、請求項6に係る発明は、上記液体収容容器の口部にキャップを取り付けてあり、このキャップの中心部に縦筒体を設けてこの縦筒体に吸液材を挿通、支持させていることを特徴とする。   Furthermore, in the invention according to claim 6, a cap is attached to the mouth of the liquid container, and a vertical cylinder is provided at the center of the cap, and a liquid absorbing material is inserted into and supported by the vertical cylinder. It is characterized by being.

請求項1に係る発明によれば、ケース体内に配置した液体収容容器内にその下半部を没入させ上端部を液体容器の口部から上方に突出させている吸液材の給液面となる上端面に、超音波発振部の振動板を当接、支持させ、吸液材によって吸い上げた液体を通電により振動する上記振動板の振動によって霧化するように構成した超音波霧化装置において、上記超音波発振部を円環状ホルダー内に嵌合、固定すると共にこの円環状ホルダーの外周面に腕片を突設してこの腕片の先端部側面に突設している短軸状のボスを、上記ケース体の蓋体の下面側から垂設している軸受片の下部に設けた縦長のガイド孔に上下方向に移動自在に遊嵌させているので、円環状ホルダー内に嵌合、固定している超音波発振部の振動板の下面中央部を常に吸液材の上端面に安定した状態で正確に当接、受止させておくことができる。   According to the first aspect of the present invention, the liquid supply surface of the liquid absorbent material in which the lower half portion is immersed in the liquid storage container disposed in the case body and the upper end portion protrudes upward from the mouth portion of the liquid container; An ultrasonic atomizer configured to abut and support the vibration plate of the ultrasonic oscillator on the upper end surface, and to atomize the liquid sucked up by the liquid absorbing material by vibration of the vibration plate that vibrates by energization The ultrasonic oscillator is fitted and fixed in an annular holder, and an arm piece projects from the outer peripheral surface of the annular holder and projects from the side of the tip of the arm piece. The boss is loosely fitted in a vertically long guide hole provided in the lower part of the bearing piece suspended from the lower surface side of the lid of the case body, so that it can be freely moved in the vertical direction, so it fits in the annular holder. The center of the bottom surface of the diaphragm of the fixed ultrasonic oscillator Can be kept accurately abut, is the receiving in a stable state to the surface.

さらに、輸送時や携行時、或いは、使用に際しての設置時などにおいて、揺れや振動等により円環状ホルダーが傾動しても、円環状ホルダーの外周面に突設している上記腕片の先端部に設けた短軸状のボスが蓋体の下面側から垂設している軸受片の下部に設けた縦長ガイド孔内を上下方向に移動しながら上記傾動に順応し、揺れや振動等が収まった際には振動板の下面が吸液材の上端面全面に正確に密接するように自動的に復帰させることができる。   Furthermore, even when the annular holder is tilted due to shaking or vibration during transportation, carrying or installation, the tip of the arm piece protruding from the outer peripheral surface of the annular holder The short-shaft boss provided on the bottom adjusts to the above-mentioned tilt while moving in the vertical guide hole provided at the lower part of the bearing piece that is suspended from the lower surface side of the lid body, and the vibration and vibration are reduced. In this case, it is possible to automatically return the diaphragm so that the lower surface of the diaphragm is in close contact with the entire upper end surface of the liquid absorbing material.

従って、簡単な構造によって超音波発振部の振動板の下面を吸液材の上端面全面に亘ってこの超音波発振部を有する円環状ホルダーの自重を利用して均一な押圧力でもって当接、支持させることができると共に、吸液材によって吸い上げた液体を吸液材の上端面からこの上端面に接触している振動板の下面全面に均等に給液することができ、振動板に付着した液体を超音波発振部の振動エネルギーによって常に安定した霧化を可能にすることができる。   Accordingly, the lower surface of the vibration plate of the ultrasonic oscillation unit is brought into contact with the entire upper end surface of the liquid absorbing material with a simple structure by utilizing the weight of the annular holder having the ultrasonic oscillation unit with a uniform pressing force. The liquid sucked up by the liquid absorbing material can be evenly supplied from the upper end surface of the liquid absorbing material to the entire lower surface of the diaphragm in contact with the upper end surface, and adheres to the diaphragm. The liquid can always be atomized stably by the vibration energy of the ultrasonic oscillator.

また、請求項2に係る発明によれば、上記円環状ホルダーの外周面に上記腕片を一対、円環状ホルダーのホルダーの周方向に小間隔を存して互いに平行に突設し、これらの腕片の相反する方向に向けている外側面にボスを突設している一方、上記蓋体の下面側からこれらの腕片を挟むようにして一対の軸受片を垂設して、これらの軸受片に設けているガイド孔に上記一対の腕片に突設しているボスをそれぞれ上下方向に移動自在に遊嵌させているので、円環状ホルダーの周方向への妄動を阻止しながら、この円環状ホルダーに内嵌、固定している上記超音波発振部の振動板の下面中央部を吸液材の上端面全面に当接させた状態に保持しておくことができ、安定した霧化機能を維持することができる。   According to the invention of claim 2, the arm pieces are paired on the outer peripheral surface of the annular holder, and protrude in parallel with each other at a small interval in the circumferential direction of the holder of the annular holder. While projecting bosses on the outer surfaces of the arm pieces facing in opposite directions, a pair of bearing pieces are suspended from the lower surface side of the lid so as to sandwich the arm pieces, and these bearing pieces Since the bosses projecting from the pair of arm pieces are freely fitted in the guide holes provided in the upper and lower directions, the circular holders are prevented from moving in the circumferential direction while preventing the circular holders from moving in the circumferential direction. Stable atomization function that can keep the central part of the lower surface of the diaphragm of the ultrasonic oscillation part fitted and fixed to the annular holder in contact with the entire upper surface of the liquid absorbent material Can be maintained.

請求項3に係る発明によれば、上記一対の軸受片に設けているガイド孔の下端を軸受片の下端面から下方に開口させているので、超音波霧化装置の組立、作製時において、超音波発振部を備えた上記円環状ホルダーの外周面に突設している一対の腕片を、これらの腕片の外面に突設したボスを上記ガイド孔の下端からガイド孔内に挿入しながら上記一対の軸受片間に介入させることによって上記円環状ホルダーを上記一対の軸受片に簡単に組み込むことができ、ついで、これらの軸受片の下端面間に受け板部材を架設状態に固定してこの受け板部材によりガイド孔の開口端を閉止することによって、円環状ホルダーを軸受片から不測に離脱できないように装着しておくことができると共に、上記蓋体を開いた際に、この受け板部材の上面によって円環状ホルダーの腕片を受止して円環状ホルダーが下方に離脱しないように受止することができる。   According to the invention of claim 3, since the lower end of the guide hole provided in the pair of bearing pieces is opened downward from the lower end surface of the bearing piece, when assembling and producing the ultrasonic atomizer, Insert a pair of arm pieces projecting from the outer peripheral surface of the annular holder provided with the ultrasonic oscillation portion into the guide hole from the lower end of the guide hole with a boss projecting from the outer surface of these arm pieces. However, it is possible to easily incorporate the annular holder into the pair of bearing pieces by intervening between the pair of bearing pieces, and then fix the receiving plate member between the lower end surfaces of the bearing pieces in an erected state. By closing the open end of the guide hole with the lever receiving plate member, the annular holder can be mounted so that it cannot be unintentionally detached from the bearing piece, and when the lid is opened, According to the top surface of the plate member An annular holder by the receiving arm piece annular holder Te can be catch to prevent withdrawal downwardly.

さらに、軸受片の上記ガイド孔にボスを遊嵌させている円環状ホルダーの腕片の下面よりも上記軸受片の下端を下方に位置させて上記受け板部材の上面と円環状ホルダーの腕片の下端面との間に隙間を形成しているので、円環状ホルダーが受け板部材に邪魔されることなくこの円環状ホルダーに内嵌、固定している超音波発振部の振動板を吸液材の上面全面に正確に安定した状態に当接、受止させておくことができ、振動板に付着した液体を超音波発振部の振動エネルギーによって効率よく霧化することができる。   Furthermore, the lower end of the bearing piece is positioned below the lower surface of the arm piece of the annular holder in which the boss is loosely fitted in the guide hole of the bearing piece, and the upper surface of the backing plate member and the arm piece of the annular holder Since the gap is formed between the lower end surface of the ring and the ultrasonic holder that is fitted and fixed to the annular holder without being obstructed by the receiving plate member, It is possible to contact and receive the entire upper surface of the material in an accurate and stable state, and the liquid adhering to the diaphragm can be efficiently atomized by the vibration energy of the ultrasonic oscillator.

請求項4に係る発明によれば、上記円環状ホルダーにおける一対の腕片間の周壁部分を切除して超音波発振部からのリード線を円環状ホルダー外に引き出すリード線導出口に形成しているので、超音波発振部が円環状ホルダー内に装着されているもかかわらず、超音波発振部に接続しているリード線を上記導出口を通じて引き出してケース内での配線が簡単且つ正確に行うことができる。   According to the invention of claim 4, the peripheral wall portion between the pair of arm pieces in the annular holder is excised to form a lead wire outlet for drawing out the lead wire from the ultrasonic oscillator part to the outside of the annular holder. Therefore, even if the ultrasonic oscillator is mounted in the annular holder, the lead wire connected to the ultrasonic oscillator can be pulled out through the outlet and the wiring in the case can be done easily and accurately. be able to.

請求項5に係る発明によれば、上記ケース体内の中央部に短筒形状の仕切壁を設けて、この仕切壁で囲まれた空間部を上記液体収容容器の収納室に形成している一方、仕切壁とケース体の外周縁に突設している周壁との間の空間部を超音波発振部に電力を供給する電源収納室に形成しているので、液体収容容器及び電源をケース体内における所定位置に簡単に装着することができるばかりでなく、液体収容容器や電源の交換が容易となり、また、電源から、液体収容容器の上方に配設される超音波発振部へのリード線などの配線簡単且つ正確に行うことができる。 According to the invention of claim 5, a short cylindrical partition wall is provided at the center of the case body, and a space surrounded by the partition wall is formed in the storage chamber of the liquid container. The space between the partition wall and the peripheral wall projecting from the outer peripheral edge of the case body is formed in the power supply storage chamber for supplying power to the ultrasonic oscillator, so that the liquid storage container and the power supply are connected to the case body. In addition to being able to be easily mounted at a predetermined position, the liquid container and the power source can be easily replaced, and the lead wire from the power source to the ultrasonic oscillator disposed above the liquid container, etc. it can be carried out of the wiring easily and accurately.

また、請求項6に係る発明によれば、上記液体収容容器の口部にキャップを取り付け、このキャップの中心部に縦筒体を設けてこの縦筒体に吸液材を挿通、支持させているので、液体収容容器の中央部に吸液材をその下端が液体収容容器の内底面に当接するように簡単且つ正確に配設することができると共に、液体収容容器の底部に液体を残存させることなく全ての液体を霧化させることができる。   According to the sixth aspect of the present invention, a cap is attached to the mouth of the liquid container, a vertical cylinder is provided at the center of the cap, and a liquid absorbing material is inserted into and supported by the vertical cylinder. Therefore, the liquid absorbing material can be easily and accurately disposed at the center of the liquid storage container so that the lower end of the liquid absorption material is in contact with the inner bottom surface of the liquid storage container, and the liquid remains at the bottom of the liquid storage container. All liquids can be atomized without any problems.

超音波霧化装置の縦断正面図。The longitudinal section front view of an ultrasonic atomizer. 蓋体を開放させた状態の超音波霧化装置の斜視図。The perspective view of the ultrasonic atomizer of the state which opened the cover body. 蓋体と液体収容容器との間の超音波発振部の配設部分の分解斜視図。The disassembled perspective view of the arrangement | positioning part of the ultrasonic oscillation part between a cover body and a liquid storage container. 振動板の一部拡大断面図。The partial expanded sectional view of a diaphragm. 液体収容容器上に装着した超音波発振部と蓋体の一部の縦断正面図。FIG. 6 is a longitudinal front view of a part of the ultrasonic wave oscillating unit and the lid mounted on the liquid container. その斜視図。FIG. 超音波発振部を装着している円環状ホルダー取付部の簡略断面図。The simplified sectional view of the annular holder attachment part which has equipped the ultrasonic oscillation part. 蓋体をケース体から上方に開いた状態の縦断正面図。The longitudinal cross-sectional front view of the state which opened the cover body upwards from the case body. 使用状態を示す斜視図。The perspective view which shows a use condition.

本発明の具体的な実施例を図面について説明すると、超音波霧化装置は、図1〜図3に示すように、底板部1aの外周縁に一定高さの短い円筒形状の周壁1bを一体に設けてなるケース体1と、天板部2aの外周縁に下方に向かって一定高さの周壁2bを垂設し、この周壁2bの下端部を上記ケース体1の周壁1bの上半部外周面に着脱自在に被せている蓋体2とを備え、上記ケース体1側に水や芳香剤、或いは殺虫剤、小動物等の忌避剤などの液体を入れている液体収容容器3と、この液体収容容器3内の液体を吸い上げる吸液材4とを配している一方、上記蓋体2側に通電によって超音波振動する超音波発振部5と、この超音波発振部5を内嵌状態に固着させている円環状ホルダー6とを配して、上記液体収容容器3内の液体を吸液材4によって上記超音波発振部5側に供給し、この超音波発振部5の振動によって液体を霧化して上記蓋体2の中央部に開設している噴霧口7から噴霧させるように構成している。   A specific embodiment of the present invention will be described with reference to the drawings. As shown in FIGS. 1 to 3, the ultrasonic atomizing device integrally includes a cylindrical peripheral wall 1 b having a short height on the outer peripheral edge of the bottom plate portion 1 a. And a peripheral wall 2b having a fixed height downward from the outer peripheral edge of the top plate portion 2a. The lower half of the peripheral wall 2b is the upper half of the peripheral wall 1b of the case body 1. A liquid container 3 that includes a lid 2 that is detachably placed on the outer peripheral surface, and in which liquid such as water, fragrance, insecticide, repellents such as small animals is placed on the case body 1 side, While a liquid absorbing material 4 for sucking up the liquid in the liquid container 3 is disposed, an ultrasonic oscillation unit 5 that ultrasonically vibrates when energized on the lid 2 side, and the ultrasonic oscillation unit 5 is fitted in And an annular holder 6 fixed to the liquid container 3 so that the liquid in the liquid container 3 is struck by the liquid absorbing material 4. Is supplied to the oscillation portion 5, the liquid is atomized are configured to spray from the spray port 7 is opened in a central portion of the cover body 2 by the vibration of the ultrasonic generator 5.

この超音霧化装置の構成をさらに詳しく説明すると、上記超音波発振部5は一定厚みと一定径を有する円板状に形成された振動板5aの外周縁部にリング状の圧電振動子5bを固着してなり、圧電振動子5bの上下両面に設けられた電極(図示せず)にリミットスイッチLSを備えているリード線8a、8bをそれぞれ接続してこれらのリード線8a、8bを上記蓋部材2の下面に取り付けている回路基板9の発振回路に接続していると共にこの発振回路を電源10に接続してあり、電源10から発振回路に通電することによって発振回路から上記超音波発振部5に駆動電圧を印加して超音波発振部5を超音波振動させるように構成している。   The ultrasonic oscillating device 5 will be described in more detail. The ultrasonic oscillating unit 5 has a ring-shaped piezoelectric vibrator 5b on the outer peripheral edge of a diaphragm 5a formed in a disk shape having a constant thickness and a constant diameter. The lead wires 8a and 8b having limit switches LS are connected to electrodes (not shown) provided on the upper and lower surfaces of the piezoelectric vibrator 5b, respectively, and the lead wires 8a and 8b are connected to the above. The ultrasonic circuit is connected to the oscillation circuit of the circuit board 9 attached to the lower surface of the lid member 2 and this oscillation circuit is connected to the power source 10, and the ultrasonic oscillation is generated from the oscillation circuit by energizing the oscillation circuit from the power source 10. The drive voltage is applied to the unit 5 to cause the ultrasonic oscillation unit 5 to vibrate ultrasonically.

上記超音波発振部5における振動板5aは、例えば、ニッケル、ステンレスなどの薄い金属材料からなり、圧電振動子5bは圧電セラミックスによって構成されている。振動板5aには図4に示すように、下端から上端に向かって小径に形成された無数の先細り形状の微細な小孔11が振動板5aの厚み方向に貫通形成されている。また、上記吸液材4は、合成樹脂繊維などの繊維束のほか、ウレタンフォームその他の発泡樹脂などの吸液性に富んだ材料によって一定径と長さを有する棒状の芯形状に形成されている。なお、上記ケース体1と蓋体2及び液体収容容器3と上記円環状ホルダー6は合成樹脂によって形成されている。   The diaphragm 5a in the ultrasonic oscillator 5 is made of a thin metal material such as nickel or stainless steel, and the piezoelectric vibrator 5b is made of piezoelectric ceramics. As shown in FIG. 4, the diaphragm 5a is formed with countless fine holes 11 having a small diameter from the lower end toward the upper end, penetrating in the thickness direction of the diaphragm 5a. The liquid absorbent material 4 is formed into a rod-shaped core shape having a constant diameter and length by a material having a high liquid absorbency such as urethane foam and other foamed resins in addition to fiber bundles such as synthetic resin fibers. Yes. The case body 1, the lid body 2, the liquid container 3, and the annular holder 6 are made of synthetic resin.

上記ケース体1内の中央部には底板部1aから立設した一定高さの円形状の仕切壁1cが設けられていて、この仕切壁1cによって囲まれた空間部を上記液体収容容器3の収納室12に形成してあり、さらに、この仕切壁1cとケース体1の底板部外周縁に突設している上記周壁1bとの間の空間部を、上記超音波発振部5に電力を供給するバッテリーからなる電源の収納室13に形成している。   A circular partition wall 1c having a fixed height standing from the bottom plate portion 1a is provided at the center of the case body 1, and a space surrounded by the partition wall 1c is formed in the liquid container 3. The space between the partition wall 1c and the peripheral wall 1b projecting from the outer peripheral edge of the bottom plate portion of the case body 1 is formed in the storage chamber 12, and power is supplied to the ultrasonic oscillator 5. It is formed in a power storage chamber 13 composed of a battery to be supplied.

液体収容容器3は、上記収納室12に嵌合状態に収納される容器本体部3aの上端中央部に容器本体部3aよりも小径で上記収納室12から上方に突出する口部3bを一体に設けてなり、この口部3bにキャップ3cを螺合させている。さらに、キャップ体3c内の中心部に、その上端をキャップ体3cの天面部の下面に連結している縦筒体14を一体に設けていると共に、この縦筒体14の下端を容器本体部3a内に向かった開口させ、上端を上記キャップ体3cの天面部中央に穿設した縦筒体14の内径と同径の通孔15を通じて上方に開口させていあり、この縦筒体14に上記吸液材4を挿嵌して吸液材4の下端面が液体収納容器3の内底面に当接し、上端部が上記通孔15から上方に突出した状態となるように縦筒体14によって吸液材4を支持している。   The liquid storage container 3 is integrally formed with a mouth 3b that is smaller in diameter than the container main body 3a and protrudes upward from the storage chamber 12 at the center of the upper end of the container main body 3a stored in the storage chamber 12 in a fitted state. The cap 3c is screwed into the opening 3b. Further, a vertical cylindrical body 14 having an upper end connected to the lower surface of the top surface portion of the cap body 3c is integrally provided at the center of the cap body 3c, and the lower end of the vertical cylindrical body 14 is connected to the container body section. 3a is opened upward, and the upper end is opened upward through a through hole 15 having the same diameter as the inner diameter of the vertical cylinder 14 drilled in the center of the top surface of the cap body 3c. By inserting the liquid absorbing material 4, the vertical cylindrical body 14 causes the lower end surface of the liquid absorbing material 4 to abut the inner bottom surface of the liquid storage container 3 and the upper end portion protrudes upward from the through hole 15. The liquid absorbing material 4 is supported.

一方、上記超音波発振部5は、蓋体2における天板部2aの中央部に開設している上記噴霧口7の下方において、その振動板5aの下面中央部を上記吸液材4の上端面に当接、支持させた状態にして蓋体2内に配設されている。この超音波発振部5を内嵌状態に固着させている上記円環状ホルダー6は、図3に示すように、中心部に上記吸液材4よりも大径の吸液材挿通孔6cを設けている円形枠状の底部6aの外周縁に上方に向かって高さが超音波発振部5のリング状の圧電振動子5bの厚みよりも大きい円環状壁部6bを突設してなり、この円環状壁部6bの下半部側の内周面にリング状の圧電振動子5bの外周面を嵌着させると共に上記円形枠状の底部6a上にリング状の圧電振動子5bの下端面を当接、支持させた状態にして円環状ホルダー6内に圧電振動子5bを固着させている。 On the other hand, the ultrasonic wave oscillating unit 5 has a lower surface central portion of the vibration plate 5a on the liquid absorbing material 4 below the spray port 7 provided in the central portion of the top plate portion 2a of the lid 2. It is disposed in the lid 2 so as to be in contact with and supported by the end face. As shown in FIG. 3, the annular holder 6 in which the ultrasonic wave oscillating portion 5 is fixed in the fitted state is provided with a liquid absorbing material insertion hole 6c having a diameter larger than that of the liquid absorbing material 4 at the center. An annular wall portion 6b having a height higher than the thickness of the ring-shaped piezoelectric vibrator 5b of the ultrasonic wave oscillating portion 5 is projected from the outer peripheral edge of the circular frame-shaped bottom portion 6a. The outer peripheral surface of the ring-shaped piezoelectric vibrator 5b is fitted to the inner peripheral surface of the lower half portion of the annular wall portion 6b, and the lower end surface of the ring-shaped piezoelectric vibrator 5b is placed on the circular frame-shaped bottom portion 6a. The piezoelectric vibrator 5b is fixed in the annular holder 6 in a contacted and supported state.

この円環状ホルダー6には、その円環状壁部6bの下半部外周面における一部から円環状ホルダー6の周方向に小間隔を存して円環状ホルダー6の径の延長方向の仮想線を中央にしてこの仮想線の両側に互いに平行となるように一定長さを有する左右一対の横長長方形状の腕片16、16を突設していると共に、これらの腕片16、16の先端部における互いに相反する方向に向けている外側面にこれらの腕片16、16の突設方向に対して直交する方向に短軸状のボス17、17を突設している。   The annular holder 6 includes an imaginary line extending in the extending direction of the diameter of the annular holder 6 with a small gap in the circumferential direction of the annular holder 6 from a part of the outer peripheral surface of the lower half of the annular wall 6b. A pair of left and right horizontally elongated rectangular arm pieces 16, 16 having a fixed length so as to be parallel to each other on both sides of the imaginary line with the center as the center, and the tips of these arm pieces 16, 16 Short-axis bosses 17 and 17 are projected in a direction perpendicular to the projecting direction of the arm pieces 16 and 16 on the outer surfaces facing the directions opposite to each other.

さらに、上記円環状ホルダー6の円環状壁部6bにおいて、上記一対の腕片16、16間の周壁部分を円環状壁部6bの全高さに亘って切除して円環状ホルダー6内に装着されている上記超音波発振部5の圧電振動子5bに接続しているリード線8a、8bを円環状ホルダー6外に引き出すリード線導出口18に形成している。このリード線8a、8bは上述したように、蓋体2の下面に装着している回路基板9の発振回路に接続してあり、さらに、この発振回路から上記電源10に接続している。   Further, in the annular wall portion 6b of the annular holder 6, the peripheral wall portion between the pair of arm pieces 16, 16 is cut out over the entire height of the annular wall portion 6b and mounted in the annular holder 6. The lead wires 8a and 8b connected to the piezoelectric vibrator 5b of the ultrasonic oscillating unit 5 are formed in a lead wire outlet 18 for drawing out the annular holder 6. As described above, the lead wires 8a and 8b are connected to the oscillation circuit of the circuit board 9 mounted on the lower surface of the lid 2, and are further connected to the power source 10 from the oscillation circuit.

一方、上記蓋体2の天板部2aの中央部に開設している噴霧口7の外周方における天板部2aの下面に、上記円環状ホルダー6の外周面に突設している上記一対の腕片16、16に対応してこれらの腕片16、16間よりも広い間隔を存して一対の矩形板状の軸受片19、19を互いに平行に垂設してあり、これらの軸受片19、19によって上記一対の腕片16、16を挟むようにして腕片16、16の外面を軸受片19、19の対向する内面下部に沿わせ、軸受片19、19の下端部間にこれら一対の腕片16、16を介入させている。   On the other hand, the pair of protrusions projecting from the outer peripheral surface of the annular holder 6 on the lower surface of the top plate portion 2a on the outer peripheral side of the spray port 7 established at the center of the top plate portion 2a of the lid 2. Corresponding to the arm pieces 16, 16, a pair of rectangular plate-like bearing pieces 19, 19 are suspended in parallel with each other at a wider interval than between the arm pieces 16, 16. The pair of arm pieces 16 and 16 are sandwiched between the pair of arm pieces 16 and 16 so that the outer surfaces of the arm pieces 16 and 16 are along the lower portions of the inner surfaces of the bearing pieces 19 and 19 facing each other, and The arm pieces 16 and 16 are intervened.

さらに、これらの軸受片19、19の下部には幅が上記腕片16、16に突設しているボス17、17の径よりも僅かに大きく、下端が軸受片19、19の下端から下方に向かって開口している縦長のガイド孔20、20を形成してあり、これらのガイド孔20、20の下端開口部から上記ボス17、17をガイド孔20、20内に挿入して、これらのボス17、17をガイド孔20、20内に上下方向に移動自在に且つガイド孔20、20の幅方向、即ち、腕片16、16の長さ方向に微動可能に遊嵌させている。例えば、上記ボス17の径が2mm である場合には、ガイド孔20の幅が2.5mm 、長さが3.25mmとなるように形成している。   Further, the lower part of these bearing pieces 19 and 19 has a width slightly larger than the diameter of the bosses 17 and 17 projecting from the arm pieces 16 and 16, and the lower end is below the lower ends of the bearing pieces 19 and 19. The vertically long guide holes 20 and 20 that are open toward the center are formed, and the bosses 17 and 17 are inserted into the guide holes 20 and 20 through the lower end openings of the guide holes 20 and 20, The bosses 17 and 17 are loosely fitted in the guide holes 20 and 20 so as to be movable in the vertical direction and finely movable in the width direction of the guide holes 20 and 20, that is, in the length direction of the arm pieces 16 and 16. For example, when the diameter of the boss 17 is 2 mm, the width of the guide hole 20 is 2.5 mm and the length is 3.25 mm.

上記軸受片19、19の下端の位置は、液体収容容器3に立設状態に配設している吸液材4の上端面の高さ位置よりも下方に位置するように蓋体2側からの垂下長さを設定して、これらの軸受片19、19に設けている上記ガイド孔20、20の下端部を、上記吸液材4の上端面よりも下方に位置させてあり、円環状ホルダー6内に装着している上記超音波発振部5の振動板5aが吸液材4の上端面に当接、支持されている状態においては、円環状ホルダー6に突設している上記腕片16、16の下端面が軸受片19、19の下端面よりも僅かに上方に位置し、腕片16、16に突設している上記ボス17、17がガイド孔20、20の上下長さ方向の中央部に遊嵌した構造となるように構成している。   The position of the lower end of the bearing pieces 19, 19 is from the lid body 2 side so as to be positioned lower than the height position of the upper end surface of the liquid absorbing material 4 disposed in a standing state in the liquid container 3. The lower end portion of the guide holes 20 and 20 provided in the bearing pieces 19 and 19 is positioned below the upper end surface of the liquid absorbing material 4 and has an annular shape. In a state where the diaphragm 5a of the ultrasonic oscillator 5 mounted in the holder 6 is in contact with and supported by the upper end surface of the liquid absorbing material 4, the arm protruding from the annular holder 6 is provided. The lower ends of the pieces 16 and 16 are located slightly above the lower ends of the bearing pieces 19 and 19, and the bosses 17 and 17 projecting from the arm pieces 16 and 16 are vertically long of the guide holes 20 and 20. It is configured to have a structure loosely fitted in the central portion in the vertical direction.

上記一対の軸受片19、19の下端面には、開蓋時にその上面で上記円環状ホルダー6を受止して円環状ホルダー6が上記軸受片19、19から下方に離脱するのを阻止する受け板部材21が配設されている。この受け板部材21は、上記円環状ホルダー6の腕片16、16の下面に沿ってこの腕片16、16から小間隔を存して配設された長方形状の中央板片部21a と、この中央板片部21a の両側端面に中央板片部21a の長さ方向に小間隔を存して一体に設けられ、且つ、中央板片部21a の幅延長方向に向かって突設している両側板片部21b 、21b ;21c 、21c とからなり、これらの両側板片部21b 、21b ;21c 、21c の上面は水平方向に平坦な面に形成されていると共にその突出端部(先端部)に取付用小孔26、26が穿設されてあり、これらの小孔26を蓋体2の下面から垂設している支持棒25、25の下端に嵌着することにより、上記円環状ホルダー6における腕片16、16の突出端部の下方に位置する端部側の両側板片部21b 、21b の上面を上記軸受片19、19の下端面に当接させてガイド孔20、20の開口下端を上記両側板片部21b 、21b によって閉止した状態となるようにこの受け板部材21を軸受片19、19の下端面間に架設している。   The lower end surface of the pair of bearing pieces 19 and 19 receives the annular holder 6 on the upper surface when the lid is opened, and prevents the annular holder 6 from being detached downward from the bearing pieces 19 and 19. A receiving plate member 21 is provided. The receiving plate member 21 includes a rectangular central plate piece 21a disposed at a small distance from the arm pieces 16, 16 along the lower surface of the arm pieces 16, 16 of the annular holder 6. The both ends of the central plate piece 21a are integrally provided with a small interval in the length direction of the central plate piece 21a, and project toward the width extending direction of the central plate piece 21a. 21b, 21b; 21c, 21c, and the upper surfaces of these side plate pieces 21b, 21b; 21c, 21c are formed in a horizontally flat surface and projecting ends (tips). ) Are provided with small holes for mounting 26, 26, and these small holes 26 are fitted to the lower ends of the support rods 25, 25 suspended from the lower surface of the lid body 2, so that the above-mentioned annular shape is obtained. The upper surface of both end plate pieces 21b, 21b on the lower side of the projecting ends of the arm pieces 16, 16 in the holder 6 is brought into contact with the lower end surfaces of the bearing pieces 19, 19 to guide holes 2 The receiving plate member 21 is constructed between the lower end surfaces of the bearing pieces 19 and 19 so that the lower ends of the openings 0 and 20 are closed by the side plate pieces 21b and 21b.

さらに、この受け板部材21における上記中央板片部21a は、その上面を上記円環状ホルダー6に突設している腕片16、16の先端側から基端側に向かって下方に緩傾斜した傾斜面に形成されてあり、蓋体3を開いた際に、軸受片19、19に設けているガイド孔20、20に遊嵌させたボス17、17を支点として下方に回動する円環状ホルダー6の腕片16、16をその傾斜面によって受止させるように構成している。   Further, the central plate piece portion 21a of the receiving plate member 21 is gently inclined downward from the distal end side to the proximal end side of the arm pieces 16 and 16 projecting from the upper surface of the annular holder 6. An annular shape that is formed on an inclined surface and rotates downward with the bosses 17 and 17 loosely fitted in the guide holes 20 and 20 provided in the bearing pieces 19 and 19 when the lid 3 is opened. The arm pieces 16 and 16 of the holder 6 are configured to be received by the inclined surfaces.

また、受け板部材21における上記中央板片部21a の幅方向の中央部に先端から基端に向かって上記円環状ホルダー6に突設している腕片16、16の下方に対応させて上記リード線8a、8bを挿通させる配線用孔部27を設けていると共に上記両側板片部21b 、21b ;21c 、21c における一つの側板片部21c から外側方に向かって支持片部21d を突設してこの支持片部21d の先端部に上記リミットスイッチLSを取り外し可能に挿嵌させているスイッチ取付筒部28を設けている。   Further, in the receiving plate member 21, the central plate piece 21 a has a central portion in the width direction corresponding to below the arm pieces 16, 16 projecting from the annular holder 6 from the distal end toward the proximal end. A wiring hole 27 through which the lead wires 8a and 8b are inserted is provided, and a supporting piece portion 21d is projected outwardly from one side plate piece portion 21c of the both side plate piece portions 21b and 21b; 21c and 21c. In addition, a switch mounting cylinder portion 28 into which the limit switch LS is removably inserted is provided at the distal end portion of the support piece portion 21d.

そして、超音波発振部5の圧電振動子5bに接続しているリード線8a、8bは、円環状ホルダー6の壁部6bに設けているリード線導出口18から円環状ホルダー6に突設している腕片16、16間とこの下方の上記受け板部材21における上記中央板片部21a に設けた配線用孔部27を通じて蓋体2内の外周部側に引き出され、このリード線8a、8bに取付けている上記リミットスイッチLSを受け板部材21に設けている上記スイッチ取付筒部28に装着すると共にリード線8a、8bを回路基板9の発振回路を介して電源10に接続している。なお上述したように、上記一対の軸受片19、19の下端面は、円環状ホルダー6に突設している腕片16、16の下端面よりも下方に位置しているので、この受け板部材21の上面と腕片16、16の下端面との間には隙間22が形成されている。   The lead wires 8a and 8b connected to the piezoelectric vibrator 5b of the ultrasonic oscillating portion 5 project from the lead wire outlet 18 provided in the wall portion 6b of the annular holder 6 to the annular holder 6. Between the arm pieces 16 and 16 and through the wiring hole portion 27 provided in the central plate piece portion 21a of the receiving plate member 21 below the lead piece member 16 and the lead plate 8a, The limit switch LS mounted on 8b is mounted on the switch mounting cylinder 28 provided on the receiving plate member 21 and the lead wires 8a and 8b are connected to the power source 10 via the oscillation circuit of the circuit board 9. . As described above, since the lower end surfaces of the pair of bearing pieces 19 and 19 are located below the lower end surfaces of the arm pieces 16 and 16 projecting from the annular holder 6, the receiving plate A gap 22 is formed between the upper surface of the member 21 and the lower end surfaces of the arm pieces 16 and 16.

また、蓋体2は、上記円環状ホルダー6に突設している腕片16、16の突出端側に面するケース体1の周壁外周面において、ケース体1に対して開閉自在に枢着29されている。この蓋体2の下面において、この蓋体2の中央部に設けている上記噴霧口7の周囲から下方に向かって上記円環状ホルダー6を囲む円筒状のホルダー収納室23を垂設してあり、このホルダー収納室23内に円環状ホルダー6をこの円環状ホルダー6の外周面がホルダー収納室23の内周面に当接することがない間隔を存して収納していると共に、このホルダー収納室23の一部を全長に亘って切除してホルダー収納室23から円環状ホルダー6の上記一対の腕片16、16を上記軸受片19、19間に突出させる腕片導出口24を設けている。   The lid 2 is pivotally attached to the case body 1 so as to be openable and closable on the outer peripheral surface of the peripheral wall of the case body 1 facing the projecting end side of the arm pieces 16 and 16 projecting from the annular holder 6. 29. On the lower surface of the lid body 2, a cylindrical holder storage chamber 23 surrounding the annular holder 6 is suspended from the periphery of the spray port 7 provided at the center of the lid body 2 downward. The annular holder 6 is stored in the holder storage chamber 23 with a space where the outer peripheral surface of the annular holder 6 does not contact the inner peripheral surface of the holder storage chamber 23. A part of the chamber 23 is cut out over its entire length, and an arm piece outlet 24 is provided for projecting the pair of arm pieces 16, 16 of the annular holder 6 from the holder storage chamber 23 between the bearing pieces 19, 19. Yes.

このように構成した超音波噴霧装置によれば、超音波発振部5を装着している円環状ホルダー6は、その円環状壁部6bの一部からこの円環状壁部6bの径の延長方向に向けて突設している上記一対の腕片16、16を蓋体2の下面側から垂設している一対の軸受片19、19間に介挿し、さらに、腕片16、16の外側面に突設しているボス17、17を上記一対の軸受片19、19に設けている縦長のガイド孔20、20に上下動自在に遊嵌させているので、円環状ホルダー6が周方向に妄動することなくこの円環状ホルダー6内に装着している超音波発振部5の振動板5aの中心部下面を液体収容容器3側に設けている上記吸液材4の上端面に当接、支持させておくことができると共に振動板5aがその下面を吸液材4の上端面全面に均等に当接するように円環状ホルダー6が自動的に変動調整し、超音波発振部5を備えた円環状ホルダー6の自重によって振動板5aを所定の押圧力でもって吸液材4の上端面全面に当接、支持させることができる。なお、この押圧力は、超音波発振部5に錘を装着してこの錘と超音波発振部5の自重とによって調整するように構成しておいてもよい。   According to the ultrasonic spraying device configured as described above, the annular holder 6 to which the ultrasonic oscillator 5 is attached is extended from a part of the annular wall 6b to the diameter of the annular wall 6b. The pair of arm pieces 16, 16 projecting toward the bottom are inserted between a pair of bearing pieces 19, 19 suspended from the lower surface side of the lid 2, and Since the bosses 17 and 17 projecting on the side surfaces are loosely fitted in the vertically long guide holes 20 and 20 provided in the pair of bearing pieces 19 and 19 so as to be movable up and down, the annular holder 6 is arranged in the circumferential direction. The lower surface of the central portion of the diaphragm 5a of the ultrasonic wave oscillating portion 5 mounted in the annular holder 6 is brought into contact with the upper end surface of the liquid absorbing material 4 provided on the liquid container 3 side. The annular holder 6 can be automatically supported so that the vibration plate 5a is in contact with the entire upper end surface of the liquid absorbing material 4 evenly. Varies, adjusted to abut against the upper end face the entire surface of the liquid absorbing material 4 with the vibrating plate 5a by a predetermined pressing force by the weight of the annular holder 6 with the ultrasonic generator 5 can be supported. The pressing force may be adjusted by attaching a weight to the ultrasonic oscillating unit 5 and adjusting the weight with the weight of the ultrasonic oscillating unit 5.

ケース体1に蓋体2を被せると、円環状ホルダー6に装着している超音波発振部5の振動板5aが級液材4の上端面に当接、受止されて、吸液材4によって吸い上げられる液体収容容器3内の液体は吸液材4の上端面から振動板5aの下面に付着すると共に、この状態においてリミットスイッチLSを作動させて電源10から発振回路への通電をオンにすると、圧電振動子5bに交流駆動電圧が印加されて圧電振動子5bが励振され、振動板5aは圧電振動子5bと一体となって振動する。この振動板5aの振動によって液体は振動板5aに無数に設けている小孔11内に毛細管現象によって導かれ、上端に向かって先細に形成されているこの小孔11内で液体は絞り作用を受けて微小で均一な粒子となって霧化されながら小孔11から噴出し、図9に示すように蓋体2の中央部に設けている噴霧口7から外部に噴霧される。   When the case body 1 is covered with the lid body 2, the diaphragm 5 a of the ultrasonic wave oscillating unit 5 attached to the annular holder 6 is brought into contact with and received by the upper end surface of the class liquid material 4, and the liquid absorbing material 4. The liquid in the liquid container 3 sucked up by the liquid adheres to the lower surface of the diaphragm 5a from the upper end surface of the liquid absorbing material 4, and in this state, the limit switch LS is activated to turn on the power supply from the power source 10 to the oscillation circuit. Then, an AC drive voltage is applied to the piezoelectric vibrator 5b to excite the piezoelectric vibrator 5b, and the diaphragm 5a vibrates integrally with the piezoelectric vibrator 5b. Due to the vibration of the diaphragm 5a, the liquid is guided into the small holes 11 provided innumerably in the diaphragm 5a by capillarity, and the liquid has a squeezing action in the small holes 11 that are tapered toward the upper end. In response to this, fine and uniform particles are ejected from the small holes 11 while being atomized, and sprayed to the outside from the spray port 7 provided at the center of the lid 2 as shown in FIG.

長時間の使用によって液体収容容器3内の液体がなくなると、蓋体2をケース体1から取り外し、ケース体1内の容器収納室12から空になった液体収容容器3を抜き取るようにして除去し、新たな液体収容容器3を容器収納室12内に配設する。この際、液体収容容器3には、その口部3bに吸液材4を支持している縦筒体14を備えたキャップ3cが取り付けられているが、使用前の液体収容容器3には、このキャップ3cから上方に突出している吸液材4の上端部をキャップ3cと共に被覆している外キャップ(図示せず)がキャップ3cに螺合させてあり、使用する際には、この外キャップを取り外したのち、容器収納室12内に配設する。   When the liquid in the liquid container 3 runs out due to long-term use, the lid 2 is removed from the case body 1 and removed by removing the emptied liquid container 3 from the container storage chamber 12 in the case body 1. Then, a new liquid storage container 3 is disposed in the container storage chamber 12. At this time, the liquid storage container 3 is attached with a cap 3c having a vertical cylindrical body 14 supporting the liquid absorbing material 4 at the mouth 3b. An outer cap (not shown) that covers the upper end of the liquid absorbing material 4 protruding upward from the cap 3c together with the cap 3c is screwed into the cap 3c. Is removed and placed in the container storage chamber 12.

また、ケース体1に対して蓋体2を上記枢着部29を支点として上方に回動させて開蓋すると、円環状ホルダー6内に装着している超音波発振部5の振動板5aが吸液材4の上端面から上方に離れるが、その際、超音波発振部5を固着させている円環状ホルダー6は、受片19、19に設けているガイド孔20、20に遊嵌させたボス17、17を支点として下方に回動してその腕片16、16をその傾斜面によって受止され、円環状ホルダー6がそれ以上傾動することなく受け板部材21上に支持された状態で蓋体2と一体的にケース体1から離脱させることができる。 Further, when the lid 2 is pivoted upward with respect to the case body 1 with the pivoting portion 29 as a fulcrum, the diaphragm 5a of the ultrasonic oscillator 5 mounted in the annular holder 6 is opened. While away upwardly from the upper end surface of the liquid absorbing material 4, where the annular holder 6 that is fixed to the ultrasonic oscillation section 5, loosely fitted in the guide holes 20, 20 are provided on the shaft receiving piece 19 The arm pieces 16 and 16 are received by the inclined surface by rotating downward with the bosses 17 and 17 as fulcrums, and the annular holder 6 is supported on the receiving plate member 21 without further tilting. In this state, it can be detached from the case body 1 integrally with the lid body 2.

そして、液体収容容器3の交換後に蓋体2をケース体1に被せると、超音波発振部5の振動板5aの下面中心部が液体収容容器3の口部3bから突出している吸液材4の上端面に当接、受止されると共に振動板5aが上方に押圧され、円環状ホルダー6に突設している腕片16、16が受け板部材21から上方に移動してボス17、17がガイド孔20、20の長さ方向の中間部に位置し、上述したように、超音波発振部5を装着している円環状ホルダー6の自重によって超音波発振部5の振動板5aを吸液材4の上端面全面に均一に当接、支持させた状態にすることができる。   When the lid 2 is placed on the case body 1 after the liquid container 3 is replaced, the liquid absorbing material 4 in which the center of the lower surface of the diaphragm 5a of the ultrasonic oscillator 5 protrudes from the mouth 3b of the liquid container 3 is used. And the diaphragm 5a is pressed upward, and the arm pieces 16 and 16 projecting from the annular holder 6 are moved upward from the receiving plate member 21 to move to the boss 17, 17 is located in the middle portion of the guide holes 20 and 20 in the longitudinal direction, and as described above, the diaphragm 5a of the ultrasonic oscillator 5 is moved by the weight of the annular holder 6 on which the ultrasonic oscillator 5 is mounted. The liquid absorbing material 4 can be uniformly brought into contact with and supported by the entire upper end surface.

この状態において、円環状ホルダー6が超音波霧化装置が輸送時や使用に際しての設置時等で揺動しても、輸送後、或いは、設置後には振動板5aの下面が吸液材4の上端面に全面的に均一に密接、受止させた状態に自動的に復帰させることができる。   In this state, even if the annular holder 6 swings during installation of the ultrasonic atomizer during transportation or use, the lower surface of the diaphragm 5a remains on the liquid absorbing material 4 after transportation or after installation. It is possible to automatically return to the state in which the upper end surface is evenly closely and completely received.

なお、上記ガイド孔20、20を設けている一対の軸受片19、19は蓋体2の下面に端を連設させているホルダー収納室23にその内端を一体に接続させているが、ホルダー収納室23が設けられていない場合、或いは、設けられていてもホルダー収納室23とは別体にして蓋体2の下面にその上端面を一体に接続しておいてもよく、要するに、蓋体2の下面側から垂設しておけばよい。   The pair of bearing pieces 19 and 19 provided with the guide holes 20 and 20 have their inner ends integrally connected to a holder storage chamber 23 whose ends are connected to the lower surface of the lid 2. When the holder storage chamber 23 is not provided, or even if it is provided, the upper end surface may be integrally connected to the lower surface of the lid 2 separately from the holder storage chamber 23. What is necessary is just to suspend from the lower surface side of the cover body 2.

また、上記軸受片19、19に設けているガイド孔20、20の下端を軸受け片19、19から下方に向かって開口させることなく、軸受片19、19の下端近傍部にまで達した縦長のガイド孔に形成しておいてもよい。   Also, without opening the lower ends of the guide holes 20 and 20 provided in the bearing pieces 19 and 19 downward from the bearing pieces 19 and 19, a vertically long shape reaching the vicinity of the lower ends of the bearing pieces 19 and 19 You may form in a guide hole.

1 ケース体
2 蓋体
3 液体収容容器
4 吸液材
5 超音波発振部
5a 振動板
5b 圧電振動子
6 円環状ホルダー
7 噴霧口
12 容器収納室
13 電源収納室
14 縦筒体
16、16 腕片
17、17 ボス
18 リード線導出口
19、19 軸受片
20、20 ガイド孔
21 受け板部材
DESCRIPTION OF SYMBOLS 1 Case body 2 Cover body 3 Liquid container 4 Liquid absorbing material 5 Ultrasonic oscillation part
5a Diaphragm
5b Piezoelectric vibrator 6 Toroidal holder 7 Spray port
12 Container storage room
13 Power storage room
14 Vertical cylinder
16, 16 arms
17, 17 Boss
18 Lead wire outlet
19, 19 Bearing piece
20, 20 Guide hole
21 Back plate member

Claims (6)

ケース体と、ケース体に着脱自在に被せその中央部に噴霧口を開設している蓋体と、上記ケース体内に配置した液体収容容器と、この液体収容容器内にその下半部を没入させ上端部を液体収容容器の口部から上方に突出させている吸液材と、通電によって振動する圧電振動子と振動板とを備えその振動板の下面を上記吸液材の上端面に当接、受止させている超音波発振部と、上記蓋体の噴霧口の下方に配設され上記超音波発振部を内嵌状態に固定させている円環状ホルダーと、この円環状ホルダーの外周面に突設している腕片と、この腕片の先端部における側面に突設している短軸状のボスと、上記蓋体の下面側から垂設されその下部に上記腕片のボスを上下方向に移動自在に遊嵌させた縦長のガイド孔を有する軸受片とを備えていることを特徴とする超音波霧化装置。   A case body, a cover body that is detachably covered with the case body, a spray opening at the center of the case body, a liquid storage container disposed in the case body, and a lower half portion of the liquid storage container being immersed A liquid-absorbing material having an upper end projecting upward from the mouth of the liquid container, a piezoelectric vibrator that vibrates when energized, and a vibration plate are in contact with the upper surface of the liquid-absorbing material. An ultrasonic oscillator that is received, an annular holder that is disposed below the spray port of the lid and fixes the ultrasonic oscillator in an internally fitted state, and an outer peripheral surface of the annular holder An arm piece projecting on the side, a short shaft boss projecting on the side surface at the tip of the arm piece, and a boss of the arm piece suspended from the lower surface side of the lid. A bearing piece having a vertically long guide hole that is freely fitted in a vertically movable manner. Ultrasonic atomizing device according to symptoms. 円環状ホルダーの外周面にこの円環状ホルダーの周方向に小間隔を存して一対の腕片を平行に突設していると共にこれらの腕片の互いに相反する方向に向けている外側面にボスを突設している一方、蓋部材の下面側からこれらの腕片を挟むようにして一対の軸受片を垂設してあり、これらの軸受片に設けているガイド孔に上記一対の腕片に突設しているボスをそれぞれ上下方向に移動自在に遊嵌させていることを特徴とする請求項1に記載の超音波霧化装置。   On the outer peripheral surface of the annular holder, a pair of arm pieces project in parallel with a small interval in the circumferential direction of the annular holder, and on the outer side surface of these arm pieces facing away from each other. While the boss is projected, a pair of bearing pieces are suspended from the lower surface side of the lid member so as to sandwich the arm pieces, and the pair of arm pieces are inserted into the guide holes provided in the bearing pieces. The ultrasonic atomizer according to claim 1, wherein the protruding bosses are loosely fitted so as to be movable in the vertical direction. 一対の軸受片に設けているガイド孔の下端を軸受片の下端面から下方に開口させていると共に、これらの軸受片の下端面間に受け板部材を架設状態に固定してこの受け板部材によりガイド孔の開口端を閉止してあり、さらに、軸受片の上記ガイド孔にボスを遊嵌させている円環状ホルダーの腕片の下面よりも上記軸受片の下端を下方に位置させて上記受け板部材の上面と円環状ホルダーの腕片の下端面との間に隙間を形成していることを特徴とする請求項1又は請求項2に記載の超音波霧化装置。   The lower end of the guide hole provided in the pair of bearing pieces is opened downward from the lower end surface of the bearing piece, and the receiving plate member is fixed between the lower end surfaces of the bearing pieces in a erected state. The opening end of the guide hole is closed, and the lower end of the bearing piece is positioned below the lower surface of the arm piece of the annular holder in which the boss is loosely fitted in the guide hole of the bearing piece. The ultrasonic atomizer according to claim 1 or 2, wherein a gap is formed between the upper surface of the backing plate member and the lower end surface of the arm piece of the annular holder. 円環状ホルダーにおける一対の腕片間の周壁部分を切除して超音波発振部からのリード線を円環状ホルダー外に引き出すリード線導出口に形成していることを特徴とする請求項1又は請求項2に記載の超音波霧化装置。   2. A lead wire outlet port for cutting out a peripheral wall portion between a pair of arm pieces in an annular holder and drawing out a lead wire from an ultrasonic wave oscillation portion to the outside of the annular holder. Item 3. The ultrasonic atomizer according to Item 2. ケース体内の中央部に短筒形状の仕切壁を設けて、この仕切壁で囲まれた内部を液体収容容器の収納室に形成している一方、仕切壁とケース体の外周縁に突設している周壁との間の空間部を超音波発振部に電力を供給する電源収納室に形成していることを特徴とする請求項1に記載の超音波霧化装置。   A short cylindrical partition wall is provided at the center of the case body, and the interior surrounded by the partition wall is formed in the storage chamber of the liquid storage container, while protruding from the partition wall and the outer periphery of the case body. The ultrasonic atomizer according to claim 1, wherein a space between the peripheral wall and the surrounding wall is formed in a power storage chamber that supplies electric power to the ultrasonic oscillator. 液体収容容器の口部に容器キャップを取り付けてあり、このキャップの中心部に縦筒体を設けてこの縦筒体に吸液材を挿通、支持させていることを特徴とする請求項1に記載の超音波霧化装置。   A container cap is attached to the mouth of the liquid container, and a vertical cylinder is provided at the center of the cap, and a liquid absorbing material is inserted into and supported by the vertical cylinder. The ultrasonic atomizer described.
JP2014167747A 2014-08-20 2014-08-20 Ultrasonic atomization device Pending JP2016043286A (en)

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Application Number Priority Date Filing Date Title
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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110122925A (en) * 2018-02-09 2019-08-16 湖南中烟工业有限责任公司 A kind of ultrasonic atomizatio electronic cigarette smoke grenade and ultrasonic atomizatio electronic cigarette
JP2020058744A (en) * 2018-10-12 2020-04-16 ダイキン工業株式会社 Agent spray device
CN114950766A (en) * 2022-05-31 2022-08-30 温州瓯斯达电器实业有限公司 Atomization diffusion device
JP7408141B2 (en) 2020-02-21 2024-01-05 株式会社カドー Aroma diffuser and aroma liquid container

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110122925A (en) * 2018-02-09 2019-08-16 湖南中烟工业有限责任公司 A kind of ultrasonic atomizatio electronic cigarette smoke grenade and ultrasonic atomizatio electronic cigarette
JP2020058744A (en) * 2018-10-12 2020-04-16 ダイキン工業株式会社 Agent spray device
JP7408141B2 (en) 2020-02-21 2024-01-05 株式会社カドー Aroma diffuser and aroma liquid container
CN114950766A (en) * 2022-05-31 2022-08-30 温州瓯斯达电器实业有限公司 Atomization diffusion device
CN114950766B (en) * 2022-05-31 2023-02-28 温州瓯斯达电器实业有限公司 Atomization diffusion device

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