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JP4986145B2 - A unit for adding a metering chamber, a metering valve mechanism to which the unit for adding a metering chamber is attached, and an aerosol type product equipped with this metering valve mechanism - Google Patents

A unit for adding a metering chamber, a metering valve mechanism to which the unit for adding a metering chamber is attached, and an aerosol type product equipped with this metering valve mechanism Download PDF

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JP4986145B2
JP4986145B2 JP2007157511A JP2007157511A JP4986145B2 JP 4986145 B2 JP4986145 B2 JP 4986145B2 JP 2007157511 A JP2007157511 A JP 2007157511A JP 2007157511 A JP2007157511 A JP 2007157511A JP 4986145 B2 JP4986145 B2 JP 4986145B2
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housing
stem
attached
chamber
unit
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JP2008308197A (en
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保夫 大島
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Mitani Valve Co Ltd
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    • 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
    • B65D83/44Valves specially adapted therefor; Regulating devices
    • B65D83/46Tilt valves
    • 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
    • B65D83/44Valves specially adapted therefor; Regulating devices
    • B65D83/48Lift valves, e.g. operated by push action

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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)

Description

本発明は、エアゾール式製品に用いられる定量室追加用ユニットおよび、当該ユニットが取り付けられた定量バルブ機構などに関する。   The present invention relates to a unit for adding a metering chamber used for aerosol products, a metering valve mechanism to which the unit is attached, and the like.

特にエアゾール容器のハウジングの外側に定量室追加用の付加ユニットを設け、噴射操作ごとに容器外部空間に放出される内容物の量を規定する定量室として、ハウジングの内部空間域の外にこれと連通する当該付加ユニットの追加内部空間域を用いるに際し、当該追加内部空間域の容積を選択できるようにしたものである。   In particular, an additional unit for adding a metering chamber is provided outside the housing of the aerosol container, and as a metering chamber that regulates the amount of contents released to the container outer space for each injection operation, it is located outside the inner space area of the housing. When the additional internal space area of the additional unit in communication is used, the volume of the additional internal space area can be selected.

また、操作ボタンを作動モード位置に移動させると定量室の入口側が閉じられる、すなわち定量室にいたる容器内部空間域が操作ボタンの噴射孔から遮断されるといった構造に必然的になってしまう定量バルブ機構におけるガス抜き経路を、簡単な操作で設定できるようにしたものである。   In addition, when the operation button is moved to the operation mode position, the metering valve is closed to the inlet side of the metering chamber, that is, the container internal space area leading to the metering chamber is blocked from the operation button injection hole. The degassing path in the mechanism can be set with a simple operation.

従来、エアゾール式製品の定量バルブ機構はエアゾール容器のハウジング内部に定量室用の空間域を設定している。   Conventionally, the metering valve mechanism of aerosol type products has set a space area for the metering chamber inside the housing of the aerosol container.

そして、このハウジングの内部空間域の一部(=当該内部空間域の全体からステムなどの占有スペースを除いたエリア)からなる定量室に収容された内容物の全体を一回の操作ごとに、その一部が定量室底面部分などに残留することなどなしに、効率的に容器外部空間に放出できるように工夫したものなどがある(特許文献1参照)。
特開2002−263531号公報
And, for each operation, the entire contents accommodated in the quantitative chamber consisting of a part of the internal space area of this housing (= the area excluding the occupied space such as the stem from the entire internal space area) Some of them have been devised so that they can be efficiently discharged into the external space of the container without remaining on the bottom of the quantitative chamber (see Patent Document 1).
JP 2002-263531 A

このようにエアゾール式製品の内容物放出用の定量室としてハウジングの内部空間域のみを用いる手法では、一回の操作で放出される内容物の量が必然的に当該ハウジングのいわば内部容量によって制約されることになる。   As described above, in the method using only the interior space of the housing as the fixed amount chamber for releasing the contents of the aerosol type product, the amount of the contents released in one operation is inevitably limited by the internal capacity of the housing. Will be.

またハウジングの形状や大きさの設定に際しては、当該ハウジングの保持部材であるマウンティングキャップや当該ハウジング内部を移動するステムなどとの兼ね合いを考慮しなければならず、定量室の大きさを優先させたハウジングを設計することも難しい。   Also, when setting the shape and size of the housing, consideration must be given to the mounting cap that is a holding member of the housing and the stem that moves inside the housing, and the size of the quantitative chamber is given priority. It is also difficult to design the housing.

そのため従来のハウジング内部空間域のみからなる定量室を備えた定量バルブ機構は、エアゾール式製品の用途や容器内容物(放出対象内容物)の種類などの違いに応じた定量室容量を確保するという点において、改善の余地を残したものであった。   For this reason, the conventional metering valve mechanism with a metering chamber consisting only of the internal space of the housing secures a metering chamber capacity according to the difference in the use of aerosol products and the type of container contents (contents to be released). In that respect, there was room for improvement.

そこで本発明では、エアゾール容器のハウジングの外側に定量室形成用の付加ユニットを取り付けてこの付加ユニットの内部空間域がハウジング内部の定量室空間域に追加され、かつ、付加ユニット中の追加定量室部分が仕切り部材で選択されるようにして、定量バルブ機構の定量室の容量設定における自由度を積極的に担保し、これにより各種のエアゾール式製品に合致した定量内容物の放出動作の実現化,確実化を一段と図ることを目的とする。   Therefore, in the present invention, an additional unit for forming a quantitative chamber is attached to the outside of the housing of the aerosol container, and the internal space area of this additional unit is added to the quantitative chamber space area inside the housing, and the additional quantitative chamber in the additional unit As the part is selected by the partition member, it actively secures the degree of freedom in setting the volume of the metering chamber of the metering valve mechanism, thereby realizing the dispensing operation of the metered contents that match various aerosol products , The purpose is to further ensure.

また、必然的に、操作ボタンを作動モード位置に移動させると定量室の入口側が閉じられて容器内部空間域が操作ボタンの噴射孔から遮断される形になってしまう、定量バルブ機構におけるガス抜き動作を、簡単な操作で確実に行えることを目的とする。   Inevitably, when the operation button is moved to the operating mode position, the inlet side of the metering chamber is closed, and the internal space of the container is blocked from the injection hole of the operation button. The purpose is to ensure that the operation can be performed with simple operations.

本発明は、以上の課題を次のようにして解決する。
(1)エアゾール容器のハウジング(例えば後述のハウジング4)に取り付けられるハウジング側要素(例えば後述の上カバー体6)、当該ハウジング側要素に取り付けられた定量室入力側要素(例えば後述の下カバー体7)および、当該ハウジング側要素と当該定量室入力側要素との間に設定される付加定量室の容積を選択するための仕切り部材(例えば後述の仕切筒9,10)、からなる定量室追加用ユニットとして、
前記ハウジング側要素は、
前記ハウジングの内部空間域と連通し、かつ内容物の定量噴射操作にともなうステム(例えば後述のステム2,ステム延長用部材3)の移動を可能にするための開口部と、前記ハウジングとの第1の係合部(例えば後述の係合用の凹状部6b)と、前記定量室入力側要素との第2の係合部(例えば後述の係合用の凸状部6d)と、前記仕切り部材に対する第1の受け部(例えば後述の下向き環凹状部6f)と、を有し、
前記定量室入力側要素は、
前記ステムの移動により閉状態に設定される内容物流入部(例えば後述の被シール部分7b)と、前記第2の係合部に対する被係合部(例えば後述の係合用の凹状部7d)と、前記仕切り部材に対する第2の受け部(例えば後述の上向き環凹状部7g)と、を有し、
前記仕切り部材は、
前記第1の受け部に対応した第1の被取付け部(例えば後述の第1の環状細幅部9b,第3の環状細幅部10c)と、前記第2の受け部に対応した第2の被取付け部(例えば後述の第2の環状細幅部9d,第4の環状細幅部10f)と、を有している、
ものを用いる。
(2)上記(1)において、
前記仕切り部材は筒状部であり、
前記第1の受け部および前記第2の受け部はそれぞれ同心円状に複数形成されたものである、
ものを用いる。
(3)上記(2)において、
前記筒状部は、
一方の端部(例えば後述の第3の環状細幅部10c)が前記第1の受け部に取り付けられて、他方の端部(例えば後述の第4の環状細幅部10f)が当該第1の受け部とは異なる径の前記第2の係合部に取り付けられる態様のものである、
ものを用いる。
(4)上記(1)〜(3)に記載の定量室追加用ユニットが前記ハウジングに取り付けられた定量バルブ機構を用いる。
(5)上記(4)において、
前記ステムは、
マウンティングキャップ(例えば後述のマウンティングキャップ11)の開口部に対応した上側部が、噴射用通路を有する本体部分(例えば後述の内筒状部2d)と、当該本体部分に取り外し可能な態様で設けられた外側部分(例えば後述の外筒状部2e)と、からなるものであり、
前記本体部分は、
前記外側部分が取り外された状態で静止モード位置のまま横方向に押されて前記マウンティングキャップの開口部の範囲内で変位することにより、ステムガスケット(例えば後述のステムガスケット12)との間にガス流出路を形成する、
定量バルブ機構を用いる。
The present invention solves the above problems as follows.
(1) A housing-side element (for example, an after-mentioned upper cover body 6) to be attached to an aerosol container housing (for example, an after-mentioned housing 4); 7) and addition of a quantitative chamber comprising a partition member (for example, partition tubes 9 and 10 described later) for selecting the volume of the additional quantitative chamber set between the housing side element and the quantitative chamber input side element As a unit for
The housing side element is
An opening for communicating with the internal space of the housing and enabling movement of a stem (for example, a stem 2 and a stem extension member 3 to be described later) in accordance with a quantitative injection operation of the contents; A first engaging portion (for example, a concave portion 6b for engagement described later), a second engagement portion (for example, a convex portion for engagement 6d described later) with respect to the metering chamber input side element, and the partition member A first receiving portion (for example, a downward annular concave portion 6f described later),
The quantitative chamber input side element is:
A content inflow portion (for example, a sealed portion 7b described later) set in a closed state by the movement of the stem, an engaged portion (for example, a recessed portion 7d for engagement described later) for the second engaging portion, A second receiving portion for the partition member (for example, an upward annular concave portion 7g described later),
The partition member is
A first attached portion (for example, a first annular narrow portion 9b and a third annular narrow portion 10c described later) corresponding to the first receiving portion, and a second corresponding to the second receiving portion. Attached portions (for example, a second annular narrow portion 9d and a fourth annular narrow portion 10f described later),
Use things.
(2) In (1) above,
The partition member is a cylindrical portion;
The first receiving part and the second receiving part are each formed in a plurality of concentric shapes,
Use things.
(3) In (2) above,
The cylindrical part is
One end portion (for example, a third annular narrow portion 10c described later) is attached to the first receiving portion, and the other end portion (for example, a fourth annular narrow portion 10f described later) is the first portion. Is attached to the second engaging portion having a diameter different from that of the receiving portion.
Use things.
(4) A metering valve mechanism in which the unit for adding a metering chamber described in the above (1) to (3) is attached to the housing is used.
(5) In (4) above,
The stem is
An upper portion corresponding to an opening of a mounting cap (for example, a mounting cap 11 described later) is provided in a manner that can be removed from the main body portion (for example, an inner cylindrical portion 2d described later) having an injection passage and the main body portion. An outer portion (for example, an outer cylindrical portion 2e described later),
The body portion is
When the outer portion is removed, the gas is placed between the stem gasket (for example, stem gasket 12 to be described later) by being pushed laterally in the stationary mode position and displaced within the opening of the mounting cap. Forming an outflow channel,
A metering valve mechanism is used.

以上の構成からなる定量室追加用ユニットや定量バルブ機構および、この定量バルブ機構を備えたエアゾール式製品を本発明の対象としている。   The subject of the present invention is a unit for adding a metering chamber and a metering valve mechanism having the above-described configuration and an aerosol type product equipped with this metering valve mechanism.

本発明は、このようにエアゾール容器のハウジングの外側に定量室追加用の付加ユニットが取り付けられ、かつ、この付加ユニット中の追加定量室部分を仕切り部材でいわば選択的に設定できる態様にすることにより、定量バルブ機構の定量室全体の容積設定に際しての自由度が確保されるようにしている。   In the present invention, an additional unit for adding a metering chamber is attached to the outside of the housing of the aerosol container as described above, and the additional metering chamber part in the additional unit can be selectively set with a partition member. Thus, the degree of freedom in setting the volume of the entire metering chamber of the metering valve mechanism is ensured.

そのため、各種のエアゾール式製品に合致した量の内容物放出動作の実現化,確実化を図ることができる。   For this reason, it is possible to realize and ensure the operation of discharging contents in an amount corresponding to various types of aerosol products.

また、あくまでハウジングへの外付けという構成をとっているため、当該ハウジングや、その中のステムおよびその取付け相手であるマウンティングキャップなどの構成要素は既存のものを用いればよく、定量バルブ機構を作成する上での各構成部品の有効利用化,コストダウン化を図ることができる。   In addition, because it is configured to be externally attached to the housing, existing components can be used for the housing, the stem in it, and the mounting cap to which it is attached, creating a metered valve mechanism. Therefore, it is possible to effectively use each component and reduce costs.

さらには、ステムの上側部分を内筒状部とその外筒状部とで構成し、当該外筒状部が取り外された状態でステムをマウンティングキャップの開口部の中で横方向に移動させることによりステム外側から当該開口部を経て外部空間にいたガス抜き経路を設定しているので、操作ボタンを作動モード位置に移動させると定量室の入口側が閉じられて容器内部空間域と噴射孔との間が遮断されてしまう定量バルブ機構におけるガス抜きを、簡単な操作で確実に行うことができる。   Furthermore, the upper part of the stem is composed of an inner cylindrical part and its outer cylindrical part, and the stem is moved laterally in the opening of the mounting cap with the outer cylindrical part removed. Since the degassing path from the outside of the stem to the external space is set from the outside of the stem, the inlet side of the metering chamber is closed when the operation button is moved to the operation mode position, and the container inner space area and the injection hole are The degassing in the metering valve mechanism where the gap is interrupted can be reliably performed with a simple operation.

図1〜図3を用いて本発明を実施するための最良の形態を説明する。   The best mode for carrying out the present invention will be described with reference to FIGS.

ここで、
図1は液化ガスの噴射剤を用いるエアゾール式製品の定量バルブ機構であり、(a)は定量噴射モード、(b)は静止モードをそれぞれ示し、
図2は図1の付加ユニット中の追加定量室部分設定用の仕切り部材であり、(a)は単一筒状部タイプ、(b)は二重筒状部タイプをそれぞれ示し、
図3は図1の定量バルブ機構におけるガス抜きモードを示している。
here,
Fig. 1 shows the quantitative valve mechanism of an aerosol type product that uses a propellant of liquefied gas. (A) shows the quantitative injection mode, (b) shows the stationary mode
FIG. 2 is a partition member for setting an additional quantitative chamber in the additional unit of FIG. 1, (a) shows a single cylindrical part type, (b) shows a double cylindrical part type,
FIG. 3 shows a degassing mode in the metering valve mechanism of FIG.

なお、以下のアルファベット付き参照番号の構成要素(例えば通路部分1a)は原則として、当該参照番号の数字部分の構成要素(例えば操作ボタン1)の一部であることを示している。   It should be noted that the constituent elements (for example, the passage portion 1a) with the following alphabetical reference numbers are in principle part of the constituent elements (for example, the operation buttons 1) of the numerical portions with the reference numbers.

図1〜図3において、
1は利用者の押圧操作に基づき上下動するタイプの操作ボタン,
1aは内容物や噴射剤の通路部分,
1bは当該通路部分に続く噴射孔,
2は操作ボタン1と嵌合して上下方向に連動するステム,
2aは内容物や噴射剤の内部通路域,
2bは当該内部通路域と後述のハウジング4の定量室形成用の内部空間域とを連通させる孔部,
2cは当該孔部より下方の外周面に形成されて後述のコイルスプリング5を受ける環状段部(天井面部分),
2dは孔部2bよりも上側の内筒状部,
2eは当該内筒状部の外周面部分に取り外し可能な形で係合するとともに操作ボタン1と強く嵌合している外筒状部,
3はステム2の下端面部分と係合(嵌合)したスティック状のステム延長用部材,
3aは後述の内容物流入口8に対する閉塞機能を備えたシール作用面(下端側外周面),
3bは当該シール作用面の上方外周面に形成された下側環状段部,
4はステム2を上下動可能な形で収容する筒状のハウジング,
4aは大径の上側筒状部,
4bは小径の下側筒状部,
4cは当該上側筒状部と当該下側筒状部との境界ともいえる内周面側の環状段部,
4dは当該下側筒状部の外周面の周方向に連続してまたは間歇的に形成された係合用の凸状部,
5はステム2の環状段部2cとハウジング4の環状段部4cとの間に配設されて当該ステムを上方向に付勢するコイルスプリング,
6はハウジング4に嵌合して付加ユニット(定量室追加用ユニット)を構成する上カバー体,
6aは中央上筒状部,
6bは当該中央上筒状部(上側部分)の外方にある環状起立部の内周面周方向に、連続してまたは間歇的に形成された係合用の凹状部(ハウジング4の凸状部4dに対応),
6cは当該中央上筒状部の外方に形成された環状垂下部,
6dは当該環状垂下部の下側外周面の周方向に連続してまたは間歇的に形成された係合用の凸状部,
6eは当該上カバー体の天井面部分に当該中央上筒状部を中心とする同心円状に形成された複数の下向き環凸状部,
6fは隣同士の当該下向き環凸状部の間に生成される複数の下向き環凹状部,
7は上カバー体6に嵌合して付加ユニット(定量室追加用ユニット)を構成する下カバー体,
7aは中央下筒状部,
7bは当該中央下筒状部の内周面に形成された環状の被シール部分,
7cは当該中央下筒状部の外方に形成された環鞘状部,
7dは当該環鞘状部の外側内周面の周方向に連続してまたは間歇的に形成された係合用の凹状部(上カバー体6の凸状部6dに対応),
7eは当該中央下筒状部の上面内端側に形成された環状段部,
7fは当該下カバー体の底面部分に当該中央下筒状部を中心として下向き環凸状部6eのそれぞれと同一径からなる同心円状に形成された複数の上向き環凸状部,
7gは隣同士の当該上向き環凸状部の間に生成される複数の上向き環凹状部,
8は静止モードのときステム延長用部材3の下端側外周面と下カバー体7(シール作用部分7b)の内周面との間に形成される内容物流入口(環状空間域),
9は一つの下向き環凹状部6fとこれの真下の上向き環凹状部7gとに係合して付加定量室の空間域を特定(選択)するための単一筒状部タイプの仕切筒、
9aは当該仕切筒の一方の端部側内周面に形成された第1の環状段部,
9bは当該環状段部に対応する(下向き環凹状部6fまたは上向き環凹状部7gとの係合用の)第1の環状細幅部,
9cは当該仕切筒の他方の端部側内周面に形成された第2の環状段部,
9dは当該環状段部に対応する(上向き環凹状部7gまたは下向き環凹状部6fとの係合用の)係合用の第2の環状細幅部,
10は一つの下向き環凹状部6fと、これとは径方向にずれた位置にある一つの上向き環凹状部7gとに係合して、付加定量室の空間域を特定(選択)するための二重筒状部タイプの仕切筒,
10aは小径筒状部,
10bは当該小径筒状部の端部側内周面に形成された第3の環状段部,
10cは当該環状段部に対応する(下向き環凹状部6fまたは上向き環凹状部7gとの)係合用の第3の環状細幅部,
10dは大径筒状部,
10eは当該大径筒状部の端部側内周面に形成された第4の環状段部,
10fは当該環状段部に対応する(上向き環凹状部7gまたは下向き環凹状部6fとの係合用の)係合用の第4の環状細幅部,
11は周知のエアゾール容器本体(図示省略)の開口端部側に取り付けられたマウンティングキャップ,
12はハウジング4の上側開口部分とマウンティングキャップ11の開口部側天井面との間に設けられて当該ハウジングの内部空間域のシール作用を呈するステムガスケット,
13は下カバー体7の中央下筒状部7aに取り付けられた内容物流入用のチューブ,
14はステム2の外筒状部2eが取り外された後の内筒状部2dとマウンティングキャップ11(開口部)との間のクリアランス(隙間)に差し込み、当該内筒状部を横倒ししてガス抜きモードに保持するための棒状,筒状の治具,
Aは容器本体から定量室への内容物の概略的な流れ方向,
Bは定量室から容器外部空間への内容物の概略的な流れ方向,
Cはガス抜きモードにおける残留ガスの概略的な流れ方向
をそれぞれ示している。
1-3,
1 is a type of operation button that moves up and down based on the pressing operation of the user,
1a is a passage portion for contents and propellant,
1b is an injection hole following the passage portion,
2 is a stem that engages with the operation button 1 and interlocks vertically.
2a is the internal passage area of the contents and propellant,
2b is a hole that communicates the internal passage area and an internal space area for forming a fixed-quantity chamber of the housing 4 described later,
2c is an annular step portion (ceiling surface portion) that is formed on the outer peripheral surface below the hole portion and receives a coil spring 5 described later.
2d is an inner cylindrical part above the hole 2b,
2e is an outer cylindrical portion that is detachably engaged with the outer peripheral surface portion of the inner cylindrical portion and is strongly fitted to the operation button 1.
3 is a stick-like stem extension member engaged (fitted) with the lower end surface portion of the stem 2;
3a is a sealing action surface (lower end side outer peripheral surface) having a blocking function for the content distribution inlet 8 described later,
3b is a lower annular step formed on the upper outer peripheral surface of the sealing surface,
4 is a cylindrical housing that accommodates the stem 2 in a vertically movable manner,
4a is a large-diameter upper cylindrical portion,
4b is a lower cylindrical portion having a small diameter,
4c is an annular step on the inner peripheral surface side which can be said to be a boundary between the upper cylindrical portion and the lower cylindrical portion;
4d is a convex portion for engagement formed continuously or intermittently in the circumferential direction of the outer peripheral surface of the lower cylindrical portion,
5 is a coil spring disposed between the annular step 2c of the stem 2 and the annular step 4c of the housing 4 to urge the stem upward.
6 is an upper cover body that fits into the housing 4 and constitutes an additional unit (unit for adding a fixed quantity chamber),
6a is a central upper cylindrical part,
6b is an engaging concave portion (a convex portion of the housing 4) formed continuously or intermittently in the circumferential direction of the inner peripheral surface of the annular upright portion outside the central upper cylindrical portion (upper portion). 4d),
6c is an annular hanging portion formed outside the central upper cylindrical portion,
6d is a convex portion for engagement formed continuously or intermittently in the circumferential direction of the lower outer peripheral surface of the annular hanging portion,
6e is a plurality of downward annular convex portions formed concentrically around the central upper cylindrical portion on the ceiling surface portion of the upper cover body,
6f is a plurality of downward annular concave portions generated between the adjacent downward annular convex portions,
7 is a lower cover body that is fitted to the upper cover body 6 and constitutes an additional unit (unit for adding a quantitative chamber).
7a is a central lower cylindrical part,
7b is an annular sealed portion formed on the inner peripheral surface of the central lower cylindrical portion,
7c is a ring-sheath-shaped part formed outside the central lower cylindrical part,
7d is a concave portion for engagement (corresponding to the convex portion 6d of the upper cover body 6) formed continuously or intermittently in the circumferential direction of the outer peripheral surface of the annular sheath portion,
7e is an annular step formed on the inner side of the upper surface of the central lower cylindrical portion,
7f is a plurality of upward ring convex portions formed concentrically with the same diameter as each of the downward ring convex portions 6e around the central lower cylindrical portion at the bottom surface portion of the lower cover body,
7g is a plurality of upward ring concave portions generated between the adjacent upward ring convex portions,
8 is a content distribution inlet (annular space region) formed between the lower end side outer peripheral surface of the stem extension member 3 and the inner peripheral surface of the lower cover body 7 (sealing portion 7b) in the stationary mode;
9 is a single cylindrical part-type partition tube that is engaged with one downward annular concave part 6f and an upward annular concave part 7g directly below it to specify (select) the space area of the additional quantitative chamber;
9a is a first annular step formed on the inner peripheral surface on one end side of the partition tube,
9b corresponds to the annular stepped portion, a first annular narrow portion (for engagement with the downward annular concave portion 6f or the upward annular concave portion 7g),
9c is a second annular step formed on the inner peripheral surface of the other end side of the partition tube,
9d corresponds to the annular step portion, a second annular narrow portion for engagement (for engagement with the upward annular concave portion 7g or the downward annular concave portion 6f),
10 is used to identify (select) the space area of the additional quantitative chamber by engaging with one downward annular recess 6f and one upward annular recess 7g that is radially offset from this. Double cylindrical section type divider,
10a is a small diameter cylindrical part,
10b is a third annular step portion formed on the inner peripheral surface of the end portion side of the small-diameter cylindrical portion,
10c is a third annular narrow portion for engagement (with the downward annular recess 6f or the upward annular recess 7g) corresponding to the annular step,
10d is a large diameter cylindrical part,
10e is a fourth annular step portion formed on the inner peripheral surface of the end portion side of the large-diameter cylindrical portion,
10f corresponds to the annular stepped portion, a fourth annular narrow portion for engagement (for engagement with the upward annular concave portion 7g or the downward annular concave portion 6f),
11 is a mounting cap attached to the open end side of a known aerosol container body (not shown);
12 is a stem gasket which is provided between the upper opening of the housing 4 and the opening side ceiling surface of the mounting cap 11 and exhibits a sealing action for the internal space of the housing;
13 is a tube for inflow of contents attached to the central lower cylindrical portion 7a of the lower cover body 7,
14 is inserted into a clearance (gap) between the inner cylindrical part 2d after the outer cylindrical part 2e of the stem 2 is removed and the mounting cap 11 (opening part), and the inner cylindrical part is laid sideways to gas. A rod-like or cylindrical jig to hold the punching mode,
A is a schematic flow direction of the contents from the container body to the quantitative chamber,
B is a schematic flow direction of the contents from the quantification chamber to the space outside the container,
C shows the approximate flow direction of the residual gas in the degassing mode.

ここで、操作ボタン1,ステム2,ステム延長用部材3,ハウジング4,上カバー体6,下カバー体7,単一筒状部タイプの仕切筒9,二重筒状部タイプの仕切筒10,チューブ13および治具14などはポリプロピレン,ポリエチレン,ポリアセタール,ナイロン,ポリブチレンテレフタレートなどからなるプラスチック製のものである。   Here, the operation button 1, the stem 2, the stem extension member 3, the housing 4, the upper cover body 6, the lower cover body 7, the single tubular portion type partition tube 9, and the double tubular portion type partition tube 10. The tube 13 and the jig 14 are made of plastic made of polypropylene, polyethylene, polyacetal, nylon, polybutylene terephthalate, or the like.

また、マウンティングキャップ11は金属製のものであり、ステムガスケット12はプラスチック製やゴム製のものである。   The mounting cap 11 is made of metal, and the stem gasket 12 is made of plastic or rubber.

図示の定量バルブ機構(定量室追加用の付加ユニット)の基本的特徴は、ステム2を保持して定量室用空間域を形成するハウジング4の外側に取り付けられる定量室追加用ユニットの内部が、仕切筒9,10(図2参照)で選択的に区分けされる態様にしたことである。   The basic feature of the illustrated metering valve mechanism (addition unit for adding a metering chamber) is that the inside of the unit for adding a metering chamber attached to the outside of the housing 4 that holds the stem 2 and forms the space region for the metering chamber is That is, the partition cylinders 9 and 10 (see FIG. 2) are selectively divided.

これにより当該付加ユニット中の定量室容量は、定量バルブ機構の組立段階などで、エアゾール式製品の用途や容器内容物(放出対象内容物)の種類などの違いに応じた形に適宜設定(選択)されえる。   As a result, the capacity of the metering chamber in the additional unit is appropriately set (selected) according to differences in the application of the aerosol product and the type of container contents (contents to be released) at the assembly stage of the metering valve mechanism. )

図1,図2(a)の仕切筒9は、
(11)第1の環状細幅部9bおよび第2の環状細幅部9dがそれぞれ、上カバー体6の下向き環凹状部6fおよび、これと同一径で真下に位置する下カバー体7の上向き環凹状部7gに係合し、
(12)第1の環状段部9aが、これと同一径で真下に位置する上カバー体6の下向き環凸状部6eの下端面部分に当接し、
(13)当該仕切筒の内周面と上カバー体6の中央上筒状部6aとの間の空間域などを付加定量室に設定している。
The partition tube 9 in FIGS.
(11) The first annular narrow portion 9b and the second annular narrow portion 9d are respectively an upward ring concave portion 6f of the upper cover body 6 and an upward direction of the lower cover body 7 having the same diameter as that of the lower cover body 7 Engage with the annular concave portion 7g,
(12) The first annular step portion 9a is in contact with the lower end surface portion of the downward ring convex portion 6e of the upper cover body 6 having the same diameter and located directly below,
(13) A space between the inner peripheral surface of the partition tube and the central upper cylindrical portion 6a of the upper cover body 6 is set as an additional quantitative chamber.

図2(b)の仕切筒10の場合は、第3の環状細幅部10cが係合する上カバー体6の下向き環凹状部6fの位置と、第4の環状細幅部10fが係合する下カバー体7の上向き環凹状部7gの位置とが、仕切筒9のような真下・真上の関係ではない。   In the case of the partition tube 10 of FIG. 2B, the position of the downward annular recess 6f of the upper cover body 6 with which the third annular narrow portion 10c is engaged and the fourth annular narrow portion 10f are engaged. The position of the upward ring-shaped concave portion 7g of the lower cover body 7 is not directly below or directly above the partition tube 9.

すなわち、第3の環状細幅部10cの上カバー体係合位置と第4の環状細幅部10fの下カバー体係合位置とがこれらカバー体の径方向にずれている。   That is, the upper cover body engaging position of the third annular narrow portion 10c and the lower cover body engaging position of the fourth annular narrow portion 10f are shifted in the radial direction of these cover bodies.

このずれにより、付加定量室の容量を、単一筒状部タイプの仕切筒9では実現できない大きさに設定することができる。   By this deviation, the capacity of the additional fixed quantity chamber can be set to a size that cannot be realized by the single cylindrical portion type partition tube 9.

換言すれば、隣同士の下向き環凹状部6fの間および隣同士の上向き環凹状部7gの間の各特定部分(中間部分など)に仮想の下向き環凹状部および上向き環凹状部を真下・真上の関係で形成して、ここに仕切筒9を取り付けた場合と等価な付加定量室容量を実現できる。   In other words, an imaginary downward annular concave portion and an upward annular concave portion are directly below / true between each adjacent specific portion (such as an intermediate portion) between adjacent downward annular concave portions 6f and adjacent upward annular concave portions 7g. It is formed by the above relationship, and an additional fixed volume capacity equivalent to the case where the partition tube 9 is attached can be realized.

この等価な付加定量室容量の大きさは、仕切筒10の小径筒状部10aの高さと大径筒状部10dのそれとの比や、上述の環状細幅部10cの上カバー体係合位置と環状細幅部10fの下カバー体係合位置との径方向のずれの程度を、パラメータにする形で特定される。   The size of the equivalent additional quantitative chamber capacity depends on the ratio between the height of the small-diameter cylindrical portion 10a of the partitioning cylinder 10 and that of the large-diameter cylindrical portion 10d, and the position of the upper cover body engaging position of the annular narrow width portion 10c described above. And the lower cover body engaging position of the annular narrow width portion 10f are specified as parameters using the degree of radial displacement.

例えば仕切筒10の小径筒状部10aおよび大径筒状部10dそれぞれの高さが同じであって、当該小径筒状部と当該大径筒状部との上述の径方向のずれが下向き環凹状部6f(または上向き環凹状部7g)の一つ分に相当する場合の付加定量室容量は、仕切筒10が取り付けられている下向き環凹状部と上向き環凹状部との径方向における仮想的な中間部分に単一筒状部タイプの仕切筒9を設けたときの、容量と等価になる。   For example, the small-diameter cylindrical portion 10a and the large-diameter cylindrical portion 10d of the partition cylinder 10 have the same height, and the above-described radial shift between the small-diameter cylindrical portion and the large-diameter cylindrical portion is a downward ring. The additional quantitative chamber capacity corresponding to one concave portion 6f (or upward ring concave portion 7g) is an imaginary value in the radial direction of the downward ring concave portion and the upward ring concave portion to which the partition tube 10 is attached. This is equivalent to the capacity when the single cylindrical portion type partition tube 9 is provided at the intermediate portion.

図1の定量バルブ機構は液化ガスの噴射剤を用いるタイプのものである。   The metering valve mechanism of FIG. 1 is of the type using a liquefied gas propellant.

その静止モード(b)におけるステム2はコイルスプリング5の作用によってステムガスケット12と密接した被シール状態にあり、内容物流入口8は開状態になっている。   The stem 2 in the stationary mode (b) is in a sealed state in close contact with the stem gasket 12 by the action of the coil spring 5, and the content distribution inlet 8 is in an open state.

そのため容器本体の内容物は、噴射剤(液化ガス)の作用によりチューブ13を介した概略A方向の流れで付加ユニットの内部空間域(=上カバー体6,下カバー体7およびステム延長用部材3によって画定されるエリア)とハウジング4の内部空間域とからなる定量室に流入して、そこに収容される。   For this reason, the contents of the container main body are flown in the direction of A through the tube 13 by the action of the propellant (liquefied gas), so that the internal space of the additional unit (= the upper cover body 6, the lower cover body 7 and the stem extension member) 3) and an internal space area of the housing 4 and flows into the metering chamber.

そして操作ボタン1が押圧されると、ステム2およびステム延長用部材3がコイルスプリング5の弾性力に抗しながら下動して定量噴射モード(a)に移行する。   When the operation button 1 is pressed, the stem 2 and the stem extension member 3 move downward while resisting the elastic force of the coil spring 5 and shift to the quantitative injection mode (a).

すなわちステム延長用部材3(ステム2)の下動にともない、そのシール作用面3aが下カバー体7の被シール部分7bに密接して内容物流入口8を閉じ、かつ、それまでのステム2とステムガスケット12とのシール状態が解除される。   That is, as the stem extension member 3 (stem 2) moves downward, the sealing action surface 3a closes to the sealed portion 7b of the lower cover body 7 to close the content flow inlet 8, and The seal state with the stem gasket 12 is released.

その結果、ハウジング4の内部空間域がステム2の孔部2b,内部通路域2aおよび操作ボタン1の通路部分1a,噴射孔1bを介して容器外部空間と連通する。   As a result, the inner space area of the housing 4 communicates with the outer space of the container via the hole 2b of the stem 2, the inner passage area 2a, the passage portion 1a of the operation button 1, and the injection hole 1b.

そしてハウジング4の内部空間域の上流側である付加ユニットの定量室空間域(内部空間域)も勿論、当該ハウジング内部空間域を介して容器外部空間と連通する。   And the fixed_quantity | quantitative_assay space space area (internal space area) of the additional unit which is the upstream of the internal space area of the housing 4 is connected with the container exterior space via the said housing internal space area.

この連通により、静止モードの定量室に入っていた所定量の内容物はそれといわば混在している液化ガスの作用により概略B方向の流れで噴射孔1bから外部に噴射される。   Due to this communication, a predetermined amount of contents that have entered the fixed-quantity chamber in the stationary mode are jetted to the outside from the jet hole 1b in a flow in the direction of B in general by the action of the mixed liquefied gas.

ここで上カバー体6の中央上筒状部6aはその下端部分が下カバー体7の定量室底面の近傍まで延びる形で設定されているため、当該中央上筒状部とその外方の環状垂下部5cとの間の追加内部空間域(=定量室の主要空間域)の上側部分に収容されていた内容物は、必然的にいったん下降して中央上筒状部6aの下端部分と下カバー体7の上面(定量室底面)との隙間部分を通ってから当該中央上筒状部の内側域を上昇していくことになる。   Here, the central upper cylindrical portion 6a of the upper cover body 6 is set so that the lower end portion thereof extends to the vicinity of the bottom surface of the metering chamber of the lower cover body 7, and therefore the central upper cylindrical portion and the outer annular shape thereof. The contents accommodated in the upper part of the additional internal space area (= the main space area of the metering chamber) between the hanging part 5c inevitably descends and lowers the lower end part of the central upper cylindrical part 6a and the lower part. After passing through a gap between the cover body 7 and the upper surface (bottom surface of the metering chamber), the inner area of the central upper cylindrical portion rises.

そのため、一般にはステム2の孔部2bから遠くて内容物が容器外部空間に放出されずに残留したままとなりやすい上記定量室底面部分においても、そこの保持内容物は、この「下降−上昇」の流れにいわば引きずられる形で確実に噴射される。   Therefore, generally, the content held in the bottom portion of the quantitative chamber, which is far from the hole 2b of the stem 2 and tends to remain without being discharged into the outer space of the container, It is surely injected in the form that is dragged by the flow.

なお、操作ボタン1の押圧操作の終了にともないステム2がコイルスプリング5の弾性力によって(b)の静止モード位置に復帰することは勿論である。   Needless to say, the stem 2 returns to the stationary mode position (b) by the elastic force of the coil spring 5 with the end of the pressing operation of the operation button 1.

図3は、図1の定量バルブ機構を用いたエアゾール式製品のガス抜きモードを示している。   FIG. 3 shows a degassing mode of an aerosol type product using the metering valve mechanism of FIG.

この定量バルブ機構におけるガス抜き動作の基本的な特徴は、通常は単一部材からなるステム2の上側部分(マウンティングキャップ11とのクリアランスが生じる範囲を含む上側部分)が、噴射対象の内容物などの内部通路域部分を備えた内筒状部2dと、これに取り外し可能な形で取り付けられた外筒状部2eと、から構成されていることである。   The basic feature of the degassing operation in this metering valve mechanism is that the upper part of the stem 2 (usually the upper part including the range in which the clearance with the mounting cap 11), which is usually a single member, is the contents to be injected, etc. It is comprised from the inner cylindrical part 2d provided with this internal passage area part, and the outer cylindrical part 2e attached to this in the form which can be removed.

そしてこの構成により、
(21)ガス抜きモードに設定されていない状態(静止モードや定量噴射モード)では内筒状部2dおよびこれと一体の外筒状部2eにより通常のステム形態(図1参照)をとり、
(22)ガス抜きモードへの移行に際しては、先ず操作ボタン1およびこれと強めに嵌合している外筒状部2eの一体物を内筒状部2dから図示上方にいわば引き抜くことにより、外筒状部が捨象されてマウンティングキャップ11の中央開口縁部とのクリアランス(隙間部分)が大きくなったガス抜き準備モードのステム形態(図示省略)とし、
(23)次に、このクリアランス部分に治具14を差し込んで内筒状部2dの部分をマウンティングキャップ11の中央開口部の中で横倒しにし、この状態を保持している。
And with this configuration,
(21) In a state where the degassing mode is not set (stationary mode or quantitative injection mode), the inner tubular portion 2d and the outer tubular portion 2e integrated therewith take a normal stem form (see FIG. 1),
(22) When shifting to the gas venting mode, first, the operation button 1 and the outer cylindrical part 2e that is strongly fitted with the operating button 1 are pulled out from the inner cylindrical part 2d in the upper direction in the drawing, so that A stem configuration (not shown) in a degassing preparation mode in which the cylindrical portion is discarded and the clearance (gap portion) with the central opening edge of the mounting cap 11 is increased,
(23) Next, the jig 14 is inserted into the clearance portion and the portion of the inner cylindrical portion 2d is laid down in the central opening of the mounting cap 11, and this state is maintained.

また、この横倒し状態では、ステム2(ステム延長用部材3)の上下方向位置は静止モードのそれと同じであり、上記定量室の入力弁(流入弁)として作動するステム延長用部材3のシール作用面3aと下カバー体7の被シール部分7bとは離間している。すなわち定量室入口側の開口域8は閉塞されずに開放されている。   Further, in this sideways state, the vertical position of the stem 2 (stem extension member 3) is the same as that in the stationary mode, and the sealing action of the stem extension member 3 that operates as the input valve (inflow valve) of the metering chamber. The surface 3a and the sealed portion 7b of the lower cover body 7 are separated from each other. That is, the opening area 8 on the metering chamber inlet side is opened without being closed.

そのため容器本体内部の残留ガスなどは、矢印Cで示されるように「チューブ13−開口域8−ステム延長用部材3の外周面と中央上筒状部6a(上カバー体6)の内周面との間の環状域−ハウジング4の内部空間−横倒し状態の内筒状部2d(ステム2)とステムガスケット12との間に形成されるガス流出路」の流れによって、外部空間に放出される。ここで筒状の治具14を用いる場合、残留ガスはこの治具内部空間も通過する。   For this reason, as indicated by an arrow C, the residual gas in the container body is “tube 13 -opening area 8 -the outer peripheral surface of the stem extension member 3 and the inner peripheral surface of the central upper cylindrical portion 6a (upper cover body 6). Is released to the external space by the flow of the “circular gas region formed between the inner cylindrical portion 2d (stem 2) and the stem gasket 12 in an overlying state—the inner space of the housing 4 and the stem gasket 12”. . Here, when the cylindrical jig 14 is used, the residual gas also passes through this jig internal space.

中央上筒状部6aと仕切筒9との間の付加定量室部分の残留ガスも勿論「ステム延長用部材3の外周面と中央上筒状部6a(上カバー体6)の内周面との間の環状域−ハウジング4の内部空間−横倒し状態の内筒状部2d(ステム2)とステムガスケット12との間に形成されるガス流出路」の流れによって、外部空間に放出される。   Of course, the residual gas in the additional quantitative chamber portion between the central upper tubular portion 6a and the partition tube 9 is “the outer peripheral surface of the stem extending member 3 and the inner peripheral surface of the central upper cylindrical portion 6a (upper cover body 6). Annular region between the internal space of the housing 4 and the gas outlet passage formed between the inner cylindrical portion 2d (stem 2) and the stem gasket 12 in a sideways state are discharged into the external space.

本発明が以上の実施形態に限定されないこと勿論であり、例えば、
(31)ステム延長用部材3の下側環状段部3bと下カバー体7の環状段部7eとの間に当該延長用部材を図示上方向に付勢してステム2と一体化させるためのコイルスプリングを設ける(この場合、ステム2とステム延長用部材3との積極的な嵌合用の凹凸状部は省略してもよい)、
(32)ステム2とステム延長用部材3とを一体化する、
(33)仕切筒9を、その上下方向の中間筒状部(第1の環状細幅部9bと第2の環状細幅部9dとの間)の断面形状が外方向または内方向に膨らんだ形のものにする、
(34)仕切筒10を図示とは上下(天地)逆にした状態で使用する、
(35)仕切筒10の筒状部を、その径が図示上下方向の全体で連続して変化し、または当該方向の一部で連続して変化する形にする、
ようにしてもよい。
Of course, the present invention is not limited to the above embodiments, for example,
(31) For extending the extending member between the lower annular step portion 3b of the stem extending member 3 and the annular step portion 7e of the lower cover body 7 so as to be integrated with the stem 2 in the upward direction in the figure. A coil spring is provided (in this case, the concave and convex portions for positive fitting between the stem 2 and the stem extension member 3 may be omitted)
(32) Integrating the stem 2 and the stem extension member 3;
(33) The sectional shape of the vertical cylindrical intermediate cylindrical portion (between the first annular narrow portion 9b and the second annular narrow portion 9d) of the partition tube 9 swells outward or inward. Shape it,
(34) The partition tube 10 is used in a state where it is upside down (upside down) from the illustration.
(35) The cylindrical portion of the partition tube 10 has a shape in which the diameter continuously changes in the entire vertical direction shown in the drawing, or continuously changes in a part of the direction.
You may do it.

本発明が適用されるエアゾール式製品としては、洗浄剤,清掃剤,制汗剤,冷却剤,筋肉消炎剤,ヘアスタイリング剤,ヘアトリートメント剤,染毛剤,育毛剤,化粧品,シェービングフォーム,食品,液滴状のもの(ビタミンなど),医薬品,医薬部外品,塗料,園芸用剤,忌避剤(殺虫剤),クリーナー,消臭剤,洗濯のり,ウレタンフォーム,消火器,接着剤,潤滑剤などの各種用途のものがある。   Aerosol products to which the present invention is applied include cleaning agents, cleaning agents, antiperspirants, cooling agents, muscle anti-inflammatory agents, hair styling agents, hair treatment agents, hair dyes, hair restorers, cosmetics, shaving foams, foods , Droplets (such as vitamins), pharmaceuticals, quasi drugs, paints, gardening agents, repellents (insecticides), cleaners, deodorants, laundry glue, urethane foam, fire extinguishers, adhesives, lubrication There are various uses such as agents.

容器本体に収納する内容物は、液状,クリーム状,ゲル状など種々の形態のものを用いることができ、内容物に配合される成分としては例えば、粉状物,油成分,アルコール類,界面活性剤,高分子化合物,各用途に応じた有効成分,水などが挙げられる。   The contents stored in the container body can be in various forms such as liquid, cream, gel, etc. Examples of ingredients blended in the contents include powdered substances, oil components, alcohols, interfaces Activators, polymer compounds, active ingredients according to each application, water and the like.

粉状物としては、金属塩類粉末,無機物粉末や樹脂粉末などを用いる。例えば、タルク,カオリン,アルミニウムヒドロキシクロライド(アルミ塩),アルギン酸カルシウム,金粉,銀粉,雲母,炭酸塩,硫酸バリウム,セルロース,これらの混合物などを用いる。   As the powder, metal salt powder, inorganic powder, resin powder, or the like is used. For example, talc, kaolin, aluminum hydroxychloride (aluminum salt), calcium alginate, gold powder, silver powder, mica, carbonate, barium sulfate, cellulose, and a mixture thereof are used.

油成分としては、シリコーン油,パーム油,ユーカリ油,ツバキ油,オリーブ油,ホホバ油,パラフィン油,ミリスチン酸,パルミチン酸,ステアリン酸,リノール酸,リノレン酸などを用いる。   As the oil component, silicone oil, palm oil, eucalyptus oil, camellia oil, olive oil, jojoba oil, paraffin oil, myristic acid, palmitic acid, stearic acid, linoleic acid, linolenic acid and the like are used.

アルコール類としては、エタノールなどの1価の低級アルコール,ラウリルアルコールなどの1価の高級アルコール,エチレングリコール,グリセリン,1,3−ブチレングリコールなどの多価アルコールなどを用いる。   Examples of the alcohol include monovalent lower alcohols such as ethanol, monovalent higher alcohols such as lauryl alcohol, and polyhydric alcohols such as ethylene glycol, glycerin, and 1,3-butylene glycol.

界面活性剤としては、ラウリル硫酸ナトリウムなどのアニオン性界面活性剤、ポリオキシエチレンオレイルエーテルなどの非イオン性界面活性剤、ラウリルジメチルアミノ酢酸ベタインなどの両性界面活性剤、塩化アルキルトリメチルアンモニウムなどのカチオン性界面活性剤などを用いる。   Surfactants include anionic surfactants such as sodium lauryl sulfate, nonionic surfactants such as polyoxyethylene oleyl ether, amphoteric surfactants such as lauryldimethylaminoacetic acid betaine, and cations such as alkyltrimethylammonium chloride. A surfactant is used.

高分子化合物としては、メチルセルロース,ゼラチン,デンプン,カゼイン,ヒドロキシエチルセルロース,キサンタンガム,カルボキシビニルポリマーなどを用いる。   As the polymer compound, methyl cellulose, gelatin, starch, casein, hydroxyethyl cellulose, xanthan gum, carboxyvinyl polymer, or the like is used.

各用途に応じた有効成分としては、サリチル酸メチル,インドメタシンなどの消炎鎮痛剤、安息香酸ナトリウム,クレゾールなどの除菌剤、ヒレスロイド,ジエチルトルアミドなどの害虫忌避剤、酸化亜鉛などの制汗剤、カンフル,メントールなどの清涼剤、エフェドリン,アドレナリンなどの抗喘息薬、スクラロース,アスパルテームなどの甘味料、エポキシ樹脂,ウレタンなどの接着剤や塗料、パラフェニレンジアミン,アミノフェノールなどの染料,リン酸二水素アンモニウム,炭酸水素ナトリウム・カリウムなどの消火剤などを用いる。   Active ingredients according to each application include anti-inflammatory analgesics such as methyl salicylate and indomethacin, disinfectants such as sodium benzoate and cresol, insect repellents such as Hillesroid and diethyltoluamide, antiperspirants such as zinc oxide, Softeners such as camphor and menthol, anti-asthma drugs such as ephedrine and adrenaline, sweeteners such as sucralose and aspartame, adhesives and paints such as epoxy resin and urethane, dyes such as paraphenylenediamine and aminophenol, dihydrogen phosphate Use a fire extinguishing agent such as ammonium or sodium bicarbonate.

さらに、上記内容物以外の、懸濁剤,紫外線吸収剤,乳化剤,保湿剤,酸化防止剤、金属イオン封鎖剤なども用いることができる。   Further, other than the above-mentioned contents, suspending agents, ultraviolet absorbers, emulsifiers, humectants, antioxidants, sequestering agents, etc. can be used.

エアゾール式製品における内容物噴射用ガスとしては、液化石油ガス,ジメチルエーテル,フロロカーボンなどの液化ガスを用いる。   Liquefied gas such as liquefied petroleum gas, dimethyl ether, and fluorocarbon is used as the content injection gas in the aerosol type product.

液化ガスの噴射剤を用いるエアゾール式製品の定量バルブ機構であり、(a)は定量噴射モード、(b)は静止モードをそれぞれ示している。It is a quantitative valve mechanism of an aerosol type product using a propellant of liquefied gas, (a) shows a quantitative injection mode, and (b) shows a stationary mode. 図1の付加ユニット中の追加定量室部分設定用の仕切り部材であり、(a)は単一筒状部タイプ、(b)は二重筒状部タイプをそれぞれ示している。It is a partition member for the additional fixed_quantity | quantitative_assay part setting in the additional unit of FIG. 1, (a) has shown the single cylindrical part type, (b) has each shown the double cylindrical part type. 図1の定量バルブ機構におけるガス抜きモードを示している。Fig. 3 shows a degassing mode in the metering valve mechanism of Fig. 1.

符号の説明Explanation of symbols

1:操作ボタン
1a:通路部分
1b:噴射孔
2:ステム
2a:内部通路域
2b:孔部
2c:環状段部(天井面部分)
2d:内筒状部
2e:外筒状部
3:ステム延長用部材
3a:シール作用面(下端側外周面)
3b:下側環状段部
4:ハウジング
4a:上側筒状部
4b:下側筒状部
4c:環状段部
4d:係合用凸状部
5:コイルスプリング
6:上カバー体
6a:中央上筒状部
6b:係合用凹状部(ハウジング4の凸状部4dに対応)
6c:環状垂下部
6d:係合用凸状部,
6e:複数の下向き環凸状部
6f:複数の下向き環凹状部
7:下カバー体
7a:中央下筒状部
7b:環状の被シール部分
7c:環鞘状部
7d:係合用凹状部(上カバー体6の凸状部6dに対応)
7e:環状段部
7f:複数の上向き環凸状部
7g:複数の上向き環凹状部
8:内容物流入口(環状空間域)
9:単一筒状部タイプの仕切筒
9a:第1の環状段部
9b:第1の環状細幅部
9c:第2の環状段部
9d:第2の環状細幅部
10:二重筒状部タイプの仕切筒
10a:小径筒状部,
10b:第3の環状段部
10c:第3の環状細幅部
10d:大径筒状部
10e:第4の環状段部
10f:第4の環状細幅部
11:マウンティングキャップ
12:ステムガスケット
13:チューブ
14:治具
A:容器本体から定量室への内容物の概略的な流れ方向
B:定量室から容器外部空間への内容物の概略的な流れ方向
C:ガス抜きモードにおける残留ガスの概略的な流れ方向
1: Operation button 1a: passage portion 1b: injection hole 2: stem 2a: internal passage area 2b: hole portion 2c: annular step portion (ceiling surface portion)
2d: Inner cylindrical portion 2e: Outer cylindrical portion 3: Stem extension member 3a: Sealing surface (lower end side outer peripheral surface)
3b: Lower annular step portion 4: Housing 4a: Upper tubular portion 4b: Lower tubular portion 4c: Annular step portion 4d: Convex convex portion 5: Coil spring 6: Upper cover body 6a: Center upper tubular shape Part 6b: concave part for engagement (corresponding to the convex part 4d of the housing 4)
6c: annular hanging portion 6d: convex portion for engagement,
6e: a plurality of downward annular convex portions 6f: a plurality of downward annular concave portions 7: a lower cover body 7a: a central lower cylindrical portion 7b: an annular sealed portion 7c: an annular sheath portion 7d: an engaging concave portion (upper (Corresponding to the convex portion 6d of the cover body 6)
7e: annular step portion 7f: plural upward ring convex portions 7g: plural upward ring concave portions 8: content distribution inlet (annular space region)
9: Single tubular portion type partition tube 9a: first annular step 9b: first annular narrow portion 9c: second annular step 9d: second annular narrow portion 10: double tube Partition-type partition tube 10a: small-diameter cylindrical portion,
10b: third annular step portion 10c: third annular narrow portion 10d: large diameter tubular portion 10e: fourth annular step portion 10f: fourth annular narrow portion 11: mounting cap 12: stem gasket 13 : Tube 14: Jig A: Schematic flow direction of contents from the container body to the quantification chamber B: Schematic flow direction of contents from the quantification chamber to the external space of the container C: Residual gas in the degassing mode Schematic flow direction

Claims (6)

エアゾール容器のハウジングに取り付けられるハウジング側要素、当該ハウジング側要素に取り付けられた定量室入力側要素および、当該ハウジング側要素と当該定量室入力側要素との間に設定される付加定量室の容積を選択するための仕切り部材、からなる定量室追加用ユニットであって、
前記ハウジング側要素は、
前記ハウジングの内部空間域と連通し、かつ、内容物の定量噴射操作にともなうステムの移動を可能にするための開口部と、前記ハウジングとの第1の係合部と、前記定量室入力側要素との第2の係合部と、前記仕切り部材に対する第1の受け部と、を有し、
前記定量室入力側要素は、
前記ステムの移動により閉状態に設定される内容物流入部と、前記第2の係合部に対する被係合部と、前記仕切り部材に対する第2の受け部と、を有し、
前記仕切り部材は、
前記第1の受け部に対応した第1の被取付け部と、前記第2の受け部に対応した第2の被取付け部と、を有している、
ことを特徴とするエアゾール容器の定量室追加用ユニット。
The housing side element attached to the housing of the aerosol container, the quantitative chamber input side element attached to the housing side element, and the volume of the additional quantitative chamber set between the housing side element and the quantitative chamber input side element A unit for adding a quantitative chamber comprising a partition member for selection,
The housing side element is
An opening for communicating with the internal space of the housing and enabling movement of the stem in response to a quantitative injection operation of the contents, a first engagement portion with the housing, and the quantitative chamber input side A second engagement portion with the element, and a first receiving portion for the partition member,
The quantitative chamber input side element is:
A contents inflow portion set in a closed state by movement of the stem, an engaged portion with respect to the second engaging portion, and a second receiving portion with respect to the partition member;
The partition member is
A first attached portion corresponding to the first receiving portion; and a second attached portion corresponding to the second receiving portion.
A unit for adding a quantitative chamber to an aerosol container.
前記仕切り部材は筒状部であり、
前記第1の受け部および前記第2の受け部はそれぞれ同心円状に複数形成されたものである、
ことを特徴とする請求項1記載のエアゾール容器の定量室追加用ユニット。
The partition member is a cylindrical portion;
The first receiving part and the second receiving part are each formed in a plurality of concentric shapes,
The unit for adding a metering chamber to an aerosol container according to claim 1.
前記筒状部は、
一方の端部が前記第1の受け部に取り付けられて、他方の端部が当該受け部とは異なる径の前記第2の係合部に取り付けられる態様のものである、
ことを特徴とする請求項2記載のエアゾール容器の定量室追加用ユニット。
The cylindrical part is
One end is attached to the first receiving portion, and the other end is attached to the second engaging portion having a diameter different from that of the receiving portion.
The unit for adding a fixed amount chamber of an aerosol container according to claim 2.
請求項1乃至3のいずれかに記載の定量室追加用ユニットが前記ハウジングに取り付けられている、
ことを特徴とする定量バルブ機構。
The unit for adding a quantitative chamber according to any one of claims 1 to 3, is attached to the housing.
A quantitative valve mechanism characterized by that.
前記ステムは、
マウンティングキャップの開口部に対応した上側部が、噴射用通路を有する本体部分と、当該本体部分に取り外し可能な態様で設けられた外側部分と、からなるものであり、
前記本体部分は、
前記外側部分が取り外された状態で静止モード位置のまま横方向に押されて前記マウンティングキャップの開口部の範囲内で変位することにより、ステムガスケットとの間にガス流出路を形成する、
ことを特徴とする請求項4記載の定量バルブ機構。
The stem is
The upper part corresponding to the opening of the mounting cap is composed of a main body part having an injection passage and an outer part provided in a removable manner on the main body part,
The body portion is
A gas outflow path is formed between the outer side portion and the stem gasket by being pushed laterally while being in the stationary mode position and displaced within the opening of the mounting cap.
The metering valve mechanism according to claim 4, wherein:
請求項4または5に記載の定量バルブ機構を備え、かつ、噴射剤および内容物を収容した、
ことを特徴とするエアゾール式製品。
The metering valve mechanism according to claim 4 or 5, and containing a propellant and contents,
Aerosol type product characterized by that.
JP2007157511A 2007-06-14 2007-06-14 A unit for adding a metering chamber, a metering valve mechanism to which the unit for adding a metering chamber is attached, and an aerosol type product equipped with this metering valve mechanism Expired - Fee Related JP4986145B2 (en)

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