JP3583203B2 - Aerosol container - Google Patents

Aerosol container Download PDF

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Publication number
JP3583203B2
JP3583203B2 JP23928595A JP23928595A JP3583203B2 JP 3583203 B2 JP3583203 B2 JP 3583203B2 JP 23928595 A JP23928595 A JP 23928595A JP 23928595 A JP23928595 A JP 23928595A JP 3583203 B2 JP3583203 B2 JP 3583203B2
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JP
Japan
Prior art keywords
container body
container
ridge
cylinder
nozzle cap
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
JP23928595A
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Japanese (ja)
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JPH0958764A (en
Inventor
早川  茂
利一 小川
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Yoshino Kogyosho Co Ltd
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Yoshino Kogyosho Co Ltd
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Filing date
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Priority to JP23928595A priority Critical patent/JP3583203B2/en
Publication of JPH0958764A publication Critical patent/JPH0958764A/en
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Publication of JP3583203B2 publication Critical patent/JP3583203B2/en
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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D83/00Containers or packages with special means for dispensing contents
    • B65D83/14Containers or packages with special means for dispensing contents for delivery of liquid or semi-liquid contents by internal gaseous pressure, i.e. aerosol containers comprising propellant for a product delivered by a propellant
    • B65D83/16Containers or packages with special means for dispensing contents for delivery of liquid or semi-liquid contents by internal gaseous pressure, i.e. aerosol containers comprising propellant for a product delivered by a propellant characterised by the actuating means
    • B65D83/20Containers or packages with special means for dispensing contents for delivery of liquid or semi-liquid contents by internal gaseous pressure, i.e. aerosol containers comprising propellant for a product delivered by a propellant characterised by the actuating means operated by manual action, e.g. button-type actuator or actuator caps
    • B65D83/205Actuator caps, or peripheral actuator skirts, attachable to the aerosol container

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  • Chemical & Material Sciences (AREA)
  • Dispersion Chemistry (AREA)
  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Containers And Packaging Bodies Having A Special Means To Remove Contents (AREA)
  • Nozzles (AREA)

Description

【0001】
【発明の属する技術分野】
本発明はエアゾール容器に関する。
【0002】
【従来の技術】
エアゾール容器として、上端に上方付勢状態で上下動可能にステムを突設し、該ステムを押し下げることにより、内部の吐出弁が開弁して、収納液を吐出する如く構成したエアゾール容器体と、該ステムに嵌着固定させるとともに、前方注出孔に至る通液路を内部に設けてなる筒状ヘッドとからなるものが極一般的に知られている。
【0003】
これらは、ヘッドを押し下げることによりステムが押し下げられ、その際容器体内部に設けた押し下げ開弁式の吐出弁が開いて、収納ガス圧により液がステム上端より通液路を介してヘッドの注出孔より霧状,泡状等の形態で吐出される如く構成している。
【0004】
また、最近では、上記筒状ヘッドに代えて、上方へ起立する注出筒を備えたノズルキャップを装着したものが提案されている。これらは、容器体外周上端縁部に突設した突条部外周に支持筒内周下部を嵌合させ、この支持筒上端一部にヒンジを介して揺動板を内方へ一体に突設し、更に、該揺動板を貫通して一体に形成した注出筒の下端をステム上端に嵌着させて構成している。そして、上記ヒンジと反対側に一体に設けた押圧用突起を押し下げることにより、ステムを押し下げて容器体内の液が注出筒より外部へ注出される如く構成している。
【0005】
また、これらノズルキャップの容器体への固定は、例えば、支持筒内面上部に周方向複数突設した各リブの下面を容器体上面周縁部に当接するとともに、上記リブ下方に突周設した係合突条を容器体の上記突条部下面に強制的に乗り越え係合させて固定する。
【0006】
これらは吐出目的部位へ注出筒先端を近接させ或いは接触させて液(泡)の吐出を行えるため、毛髪化粧品を収納して使用する場合等に便利であり、使い易い優れたものである。
【0007】
【発明が解決しようとする課題】
これらの容器は、一般にエアゾール容器体の殆ど部分を金属により形成し(内部の極一部に樹脂等を使用しているが)、また、ノズルキャップは合成樹脂により形成している。一方、近年の廃棄物処理に於いて、物品のリサイクル,焼却等の問題から、その分別処理が望まれており、従って、これらの容器も廃棄に当たって容器体とノズルキャップを別々に廃棄することが望まれている。
【0008】
しかしながら、従来のこの種容器では、容器体からノズルキャップを外すことに考慮が払われておらず、上記した係合固定手段では、道具を使用しないと容易に外すことが出来ない場合が多く、分離廃棄するのが面倒で手間の掛かるものであった。
【0009】
そこで本発明では、これら金属製の容器体と、合成樹脂製のノズルキャップとを収納液の使用後には簡単に分離出来、しかも使用時には確実に両者が固定される優れた容器を提案するものである。
【0010】
【課題を解決するための手段】
本請求項1発明容器は上記課題を解決するため、上端縁部外周に突条部6を突周設し、上面中央よりステム7を突設させた金属製のエアゾール容器体2と、該容器体上部に下端を嵌合させた支持筒15上端一部に薄肉ヒンジ16を介して内方へ揺動板17を突設するとともに、該揺動板を貫通して一体に形成した注出筒18の下端を上記ステム7上端に嵌着させ、且つ、上記ヒンジと反対側の注出筒側方に押圧用突部19を一体に設けてなる合成樹脂製のノズルキャップ4とを備え、上記押圧用突部19の押し下げにより容器体内の吐出機構が作用して容器体内の液を注出筒より注出する如く構成してなるエアゾール容器に於いて、上記突条部6外周に嵌合させる周壁8上端縁より容器体上面周縁部に当接させるフランジ9を延設するとともに、上記突条部6下面に係合させる係合突条10を周壁8内面に周設し、且つ、押し窄み可能な開環状態で形成した合成樹脂製の取り付け筒3を設け、該取り付け筒3の周壁外周に上記支持筒15下部内周を螺着可能に構成するとともに、支持筒15の螺着により取り付け筒3を容器体2に閉環固定させ、以てノズルキャップ4を容器体2に装着する如く構成したことを特徴とするエアゾール容器として構成した。
【0011】
【発明の実施の形態】
以下、本発明の実施例の形態を図面を参照して説明する。
本発明容器1は、エアゾール容器体2と、取り付け筒3と、ノズルキャップ4とを備えている。
【0012】
エアゾール容器体2は、内部の極一部を除いて金属により形成されたもので、上端部外周をテーパ状に順次縮径した肩部5に形成するとともに、肩部5の上端外周に突条部6を突周設し、また、上面中央に上方付勢状態で押し込み可能にステム7を突設させ、該ステムを押し下げることにより内蔵吐出弁が開き、ガス圧で収納液をステム上端より吐出する如く構成した公知の吐出機構を有するものである。
【0013】
取り付け筒3は合成樹脂により形成されたもので、図1に示す如く、上記突条部6外周に嵌合させた周壁8上端縁より容器体上面周縁部に下面を当接するフランジ9を延設し、また、周壁8内面に周設した係合突条10を上記突条部6下面に係合させて容器体2に固定している。また、周壁8外周にはノズルキャップを螺着させるための螺条11を周設している。
【0014】
図示例では、周壁8下端縁より外方へフランジ12を延設し、該フランジ外周縁より、下端縁が上記肩部5上面外周縁部に当接する垂下壁13を垂設している。この取り付け筒3は、図2に示す如く、押し窄み可能な開環状態で形成されている。従って、常時は、容器体2上方からその周壁8を突条部6外周に嵌合させると容易に遊嵌し、一方、両側から押圧して離間部分両面が当接する如く押圧すると、その周壁8が容器体の上記突条部6外周にピッタリ嵌合し、また、その係合突条10が突条部6下面にピッタリ係合する如き大きさを有している。また、その際、離間部分で分離している螺条11が連結する。
【0015】
ノズルキャップ4も合成樹脂により形成されたもので、下部内周に螺条14を周設し、該螺条を上記取り付け筒3の周壁8外周の螺条11に螺着さて上方へ起立させた支持筒15を有し、該支持筒の上端一部に薄肉ヒンジ16を介して内方へ揺動板17を揺動可能に突設し、また、この揺動板17を貫通して一体に設けた注出筒18の下端部を上記ステム7上端に液密に嵌合させている。更に、上記ヒンジ16と反対側の注出筒18側方に押圧用突部19を一体に設けている。そして、この押圧用突部19を押し下げることにより、下降する注出筒18によりステム7を押し下げ、容器体2の液をステム7から注出筒18を介して吐出する如く構成している。また、押圧用突部19の押圧を解除すると、ステム7の上方付勢力により注出筒18が元の状態に復帰する如く構成している。尚、この押圧用突部19の押し下げの際に注出筒18は厳密にはヒンジ16を中心として回動することとなるが、ステム7の注出に要する押し下げストロークが小さいため、また、注出筒は合成樹脂製で若干の弾力性を保持するため、ステム嵌合部分の液密性は充分に維持できる如く構成している。
【0016】
図示例では、支持筒15上端より内方へフランジ20を延設し、該フランジ内側一端部にヒンジ16を介して揺動板17を連結している。また、支持筒15内面上部に周方向複数の縦リブ21を縦設し、また、支持筒15外周上部からフランジ22を介して外周壁23を垂設し、その下端を取り付け筒の上記フランジ12上面外周縁に垂下させている。また、フランジ22上方の支持筒15外周に周壁24下端縁を着脱可能に嵌合させてカバーキャップ25を装着させている。
【0017】
上記如く構成した取り付け筒3及びノズルキャップ4を容器体2に装着する場合は、例えば、まず、取り付け筒を容器体上方より押し下げ、その周壁8を容器体2の突条部6外周に遊嵌させ、次いで、上方よりノズルキャップ4を、その支持筒15を取り付け筒周壁8外周に螺着させて固定する。
【0018】
この際、取り付け筒3の垂下壁13部分を両側から押して縮径しつつノズルキャップ4を螺着させる。
【0019】
一方、容器体内液を使い切った際には、ノズルキャップ4を螺脱すると、取り付け筒3は弾性で所定の大きさに拡開し遊嵌状態となり、上方へ簡単に引き抜ける状態となる。
【0020】
尚、容器体は、上記した押し下げ開弁式のものに代えて、従来公知のステムを側方に倒すことにより開弁する方式(所謂ティルトタイプ)のものを使用することも可能である。
【0021】
【発明の効果】
以上説明した如く本発明容器は、既述構成としたことにより、容器体内液を使い切った際に、簡単にノズルキャップ,取り付け筒の合成樹脂材を取り外すことができ、従来のこの種容器と比較して、道具を必要とせずに極めて容易に金属,と合成樹脂の分別廃棄を行うことができる。
【0022】
また、容器体へのノズルキャップの取り付けに当たっても取り付け筒を遊嵌した後ノズルキャップを螺着するという極めて簡単な方法により行える。
【図面の簡単な説明】
【図1】本発明の一実施例を示す要部縦断面図である。
【図2】同実施例の取り付け筒の斜視図である。
【図3】同実施例のノズルキャップを外している状態の斜視図である。
【図4】同実施例の容器体から取り付け筒を外した状態の斜視図である。
【符号の説明】
2…エアゾール容器体,3…取り付け筒,4…ノズルキャップ,
6…突条部,7…ステム,8…周壁,9…フランジ,10…係合突条
15…支持筒,16…薄肉ヒンジ,17…揺動板,18…注出筒,19…押圧用突部
[0001]
TECHNICAL FIELD OF THE INVENTION
The present invention relates to aerosol containers.
[0002]
[Prior art]
As an aerosol container, an aerosol container body configured to protrude vertically at the upper end so as to be vertically movable in an upwardly biased state, and by pushing down the stem, an internal discharge valve is opened to discharge the stored liquid. A cylindrical head, which is fitted and fixed to the stem and has a liquid passage leading to a front pouring hole therein, is generally known.
[0003]
In these, the stem is pushed down by pushing down the head, and at that time, a push-down open type discharge valve provided inside the container body is opened, and the liquid is injected into the head from the upper end of the stem through the liquid passage by the stored gas pressure. It is configured so that it is discharged from the outlet in the form of mist, foam, or the like.
[0004]
In recent years, a type in which a nozzle cap provided with a pouring cylinder rising upward is mounted instead of the cylindrical head has been proposed. In these, the lower part of the inner periphery of the support cylinder is fitted to the outer periphery of the protruding ridge projecting from the upper edge of the outer periphery of the container body, and the swing plate is integrally protruded inward at a part of the upper end of the support cylinder via a hinge. Further, the lower end of the pouring cylinder which is formed integrally through the swinging plate is fitted to the upper end of the stem. Then, by pressing down a pressing projection integrally provided on the opposite side to the hinge, the stem is pressed down, so that the liquid in the container is discharged from the discharge tube to the outside.
[0005]
Further, the nozzle cap is fixed to the container body by, for example, contacting the lower surface of each of a plurality of ribs protruding circumferentially above the inner surface of the support cylinder with the peripheral edge of the upper surface of the container body and protruding below the rib. The joint ridge is forcibly climbed over and engaged with the lower surface of the ridge portion of the container body and fixed.
[0006]
Since these can discharge the liquid (bubble) by bringing the tip of the discharge cylinder close to or in contact with the discharge target portion, they are convenient when storing and using hair cosmetics and are easy to use and excellent.
[0007]
[Problems to be solved by the invention]
In these containers, generally, most of the aerosol container body is formed of metal (although a resin or the like is used for an extremely small part of the inside), and the nozzle cap is formed of synthetic resin. On the other hand, in waste disposal in recent years, the separation and disposal of articles is desired due to problems such as recycling and incineration. Therefore, when disposing of these containers, it is necessary to dispose of the container body and the nozzle cap separately. Is desired.
[0008]
However, in this type of conventional container, consideration is not given to removing the nozzle cap from the container body, and in the above-described engagement and fixing means, it is often difficult to remove the nozzle cap without using a tool, Separating and disposing was troublesome and time-consuming.
[0009]
Therefore, the present invention proposes an excellent container in which the metal container and the synthetic resin nozzle cap can be easily separated after use of the storage liquid, and both are securely fixed at the time of use. is there.
[0010]
[Means for Solving the Problems]
In order to solve the above-mentioned problem, the container according to the first aspect of the present invention has a metal aerosol container body 2 in which a ridge 6 is provided on the outer periphery of an upper edge and a stem 7 is provided from the center of the upper surface. A swing plate 17 protrudes inward through a thin hinge 16 at a part of an upper end of a support cylinder 15 having a lower end fitted to the upper part of the body, and a pouring cylinder integrally formed through the swing plate. And a synthetic resin nozzle cap 4 having a lower end 18 fitted to an upper end of the stem 7 and a pressing projection 19 integrally provided on a side of the ejection cylinder opposite to the hinge. In the aerosol container which is configured so that the ejection mechanism in the container works by pushing down the pressing projection 19 and the liquid in the container is discharged from the discharge tube, the aerosol container is fitted to the outer periphery of the protrusion 6. A flange 9 that extends from the upper edge of the peripheral wall 8 to the peripheral edge of the upper surface of the container body is provided. An engaging projection 10 to be engaged with the lower surface of the projection 6 is provided around the inner surface of the peripheral wall 8 and a mounting cylinder 3 made of a synthetic resin formed in a ring-opened state capable of being pressed down is provided. The inner periphery of the lower part of the support cylinder 15 can be screwed to the outer peripheral wall of the cylinder 3, and the mounting cylinder 3 is closed and fixed to the container body 2 by screwing the support cylinder 15, whereby the nozzle cap 4 is fixed to the container body 2. The aerosol container was characterized in that it was configured to be mounted on the aerosol container.
[0011]
BEST MODE FOR CARRYING OUT THE INVENTION
Hereinafter, embodiments of the present invention will be described with reference to the drawings.
The container 1 of the present invention includes an aerosol container body 2, a mounting cylinder 3, and a nozzle cap 4.
[0012]
The aerosol container body 2 is formed of metal except for a very small portion of the inside, and has an upper end outer periphery formed into a shoulder portion 5 whose diameter is gradually reduced in a tapered shape. A protruding portion 6 is provided, and a stem 7 is protruded at the center of the upper surface so as to be able to be pushed in an upwardly biased state. When the stem is depressed, the built-in discharge valve is opened, and the stored liquid is discharged from the upper end of the stem by gas pressure. A known ejection mechanism configured as described above is provided.
[0013]
The mounting cylinder 3 is made of a synthetic resin, and as shown in FIG. 1, a flange 9 extending from the upper edge of the peripheral wall 8 fitted to the outer periphery of the ridge 6 to the lower surface of the upper surface of the container body. In addition, the engaging ridge 10 provided on the inner surface of the peripheral wall 8 is fixed to the container body 2 by engaging with the lower surface of the ridge 6. A thread 11 for screwing the nozzle cap is provided around the outer periphery of the peripheral wall 8.
[0014]
In the illustrated example, the flange 12 extends outward from the lower edge of the peripheral wall 8, and a hanging wall 13 whose lower edge contacts the outer peripheral edge of the upper surface of the shoulder portion 5 extends downward from the outer peripheral edge of the flange. As shown in FIG. 2, the mounting cylinder 3 is formed in a ring-opened state in which it can be pressed. Therefore, normally, when the peripheral wall 8 is fitted to the outer periphery of the ridge 6 from above the container body 2, the peripheral wall 8 is easily loosely fitted. Are fitted to the outer periphery of the ridge 6 of the container body, and the engaging ridge 10 has a size such that it fits perfectly with the lower surface of the ridge 6. At this time, the threads 11 separated at the separated portion are connected.
[0015]
The nozzle cap 4 is also made of a synthetic resin, and has a thread 14 provided on the inner periphery of the lower portion. The thread 14 is screwed to the thread 11 on the outer periphery of the peripheral wall 8 of the mounting cylinder 3 to be raised up. A support cylinder 15 is provided, and a swing plate 17 is protruded inward from a part of the upper end of the support cylinder via a thin hinge 16 so as to be swingable. The lower end of the dispensing tube 18 is fitted to the upper end of the stem 7 in a liquid-tight manner. Further, a pressing projection 19 is integrally provided on the side of the ejection tube 18 opposite to the hinge 16. Then, by pushing down the pressing projection 19, the stem 7 is pushed down by the descending pouring tube 18, and the liquid in the container body 2 is discharged from the stem 7 through the pouring tube 18. Further, when the pressing of the pressing projection 19 is released, the discharging cylinder 18 is returned to the original state by the upward biasing force of the stem 7. When the pressing projection 19 is pushed down, the ejection tube 18 is strictly rotated about the hinge 16. However, since the pushing stroke required to eject the stem 7 is small, The outlet cylinder is made of synthetic resin and has a certain elasticity, so that the liquid tightness of the stem fitting portion can be sufficiently maintained.
[0016]
In the illustrated example, a flange 20 extends inward from the upper end of the support cylinder 15, and a swing plate 17 is connected to one end inside the flange via a hinge 16. Further, a plurality of vertical ribs 21 in the circumferential direction are vertically provided on the upper surface of the inner surface of the support cylinder 15, and an outer peripheral wall 23 is vertically suspended from the upper outer periphery of the support cylinder 15 via a flange 22, and the lower end thereof is attached to the flange 12 It is hung on the outer peripheral edge of the upper surface. Further, the cover cap 25 is attached by detachably fitting the lower end edge of the peripheral wall 24 to the outer periphery of the support cylinder 15 above the flange 22.
[0017]
When attaching the mounting cylinder 3 and the nozzle cap 4 configured as described above to the container body 2, for example, first, the mounting cylinder is pushed down from above the container body, and the peripheral wall 8 is loosely fitted to the outer periphery of the ridge 6 of the container body 2. Then, the nozzle cap 4 is fixed to the nozzle cap 4 by screwing the support cylinder 15 to the outer periphery of the cylinder peripheral wall 8 from above.
[0018]
At this time, the nozzle cap 4 is screwed while the diameter of the hanging wall 13 of the mounting cylinder 3 is reduced by pushing from both sides.
[0019]
On the other hand, when the liquid in the container has been used up, when the nozzle cap 4 is unscrewed, the mounting cylinder 3 is elastically expanded to a predetermined size to be in a loose fit state, and is easily pulled upward.
[0020]
Note that, instead of the above-described push-down valve type, the container body may be a conventional type (so-called tilt type) in which the valve is opened by tilting the stem to the side.
[0021]
【The invention's effect】
As described above, the container of the present invention has the above-described configuration, so that when the liquid in the container is used up, the synthetic resin material of the nozzle cap and the mounting cylinder can be easily removed. As a result, the metal and the synthetic resin can be separated and discarded very easily without using any tools.
[0022]
Further, even when the nozzle cap is attached to the container body, the nozzle cap can be screwed in after the fitting cylinder is loosely fitted, and then the nozzle cap is screwed.
[Brief description of the drawings]
FIG. 1 is a vertical sectional view showing a main part of an embodiment of the present invention.
FIG. 2 is a perspective view of the mounting cylinder of the embodiment.
FIG. 3 is a perspective view of the embodiment with a nozzle cap removed.
FIG. 4 is a perspective view showing a state where a mounting cylinder is removed from the container body of the embodiment.
[Explanation of symbols]
2 ... Aerosol container body, 3 ... Mounting cylinder, 4 ... Nozzle cap,
Reference numeral 6: ridge, 7: stem, 8: peripheral wall, 9: flange, 10: engagement ridge 15: support cylinder, 16: thin hinge, 17: rocking plate, 18: ejection cylinder, 19: pressing Protrusion

Claims (1)

上端縁部外周に突条部6を突周設し、上面中央よりステム7を突設させた金属製のエアゾール容器体2と、該容器体上部に下端を嵌合させた支持筒15上端一部に薄肉ヒンジ16を介して内方へ揺動板17を突設するとともに、該揺動板を貫通して一体に形成した注出筒18の下端を上記ステム7上端に嵌着させ、且つ、上記ヒンジと反対側の注出筒側方に押圧用突部19を一体に設けてなる合成樹脂製のノズルキャップ4とを備え、上記押圧用突部19の押し下げにより容器体内の吐出機構が作用して容器体内の液を注出筒より注出する如く構成してなるエアゾール容器に於いて、上記突条部6外周に嵌合させる周壁8上端縁より容器体上面周縁部に当接させるフランジ9を延設するとともに、上記突条部6下面に係合させる係合突条10を周壁8内面に周設し、且つ、押し窄み可能な開環状態で形成した合成樹脂製の取り付け筒3を設け、該取り付け筒3の周壁外周に上記支持筒15下部内周を螺着可能に構成するとともに、支持筒15の螺着により取り付け筒3を容器体2に閉環固定させ、以てノズルキャップ4を容器体2に装着する如く構成したことを特徴とするエアゾール容器。A metal aerosol container body 2 having a ridge 6 protruding around the outer periphery of the upper edge and a stem 7 protruding from the center of the upper surface, and a support cylinder 15 having a lower end fitted to the upper part of the container. A swinging plate 17 protruding inward through a thin hinge 16 at the portion, and a lower end of an injection tube 18 integrally formed through the swinging plate is fitted to an upper end of the stem 7; A synthetic resin nozzle cap 4 integrally provided with a pressing projection 19 on the side of the ejection cylinder opposite to the hinge, and a discharge mechanism in the container body is provided by pushing down the pressing projection 19. In the aerosol container configured to act to discharge the liquid in the container from the discharge tube, the upper edge of the peripheral wall 8 fitted to the outer periphery of the ridge 6 is brought into contact with the peripheral edge of the upper surface of the container. An engaging ridge 10 for extending the flange 9 and engaging with the lower surface of the ridge 6 A mounting tube 3 made of synthetic resin is provided around the inner surface of the peripheral wall 8 and formed in a ring-opened state that can be squeezed. An aerosol container wherein the mounting cylinder 3 is closed and fixed to the container body 2 by screwing the support cylinder 15 and the nozzle cap 4 is attached to the container body 2.
JP23928595A 1995-08-23 1995-08-23 Aerosol container Expired - Fee Related JP3583203B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP23928595A JP3583203B2 (en) 1995-08-23 1995-08-23 Aerosol container

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP23928595A JP3583203B2 (en) 1995-08-23 1995-08-23 Aerosol container

Publications (2)

Publication Number Publication Date
JPH0958764A JPH0958764A (en) 1997-03-04
JP3583203B2 true JP3583203B2 (en) 2004-11-04

Family

ID=17042475

Family Applications (1)

Application Number Title Priority Date Filing Date
JP23928595A Expired - Fee Related JP3583203B2 (en) 1995-08-23 1995-08-23 Aerosol container

Country Status (1)

Country Link
JP (1) JP3583203B2 (en)

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
MXPA02003784A (en) 1999-10-16 2002-12-13 Glaxo Group Ltd Device housing for an aerosol container.
JP2024145243A (en) * 2023-03-31 2024-10-15 サントリーホールディングス株式会社 ACTUATOR FOR AEROSOL CONTAINER, CONTAINER FOR LIQUID FOOD, AND PACKAGED LIQUID FOOD

Also Published As

Publication number Publication date
JPH0958764A (en) 1997-03-04

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