JP2013244432A - Operating mechanism for content injection and aerosol type product and pumping type product equipped with the operating mechanism for content injection - Google Patents

Operating mechanism for content injection and aerosol type product and pumping type product equipped with the operating mechanism for content injection Download PDF

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JP2013244432A
JP2013244432A JP2012118436A JP2012118436A JP2013244432A JP 2013244432 A JP2013244432 A JP 2013244432A JP 2012118436 A JP2012118436 A JP 2012118436A JP 2012118436 A JP2012118436 A JP 2012118436A JP 2013244432 A JP2013244432 A JP 2013244432A
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injection
cam
cylindrical
stem
content
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JP5809108B2 (en
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Tatsuo Haneza
達夫 羽座
Masato Suzuki
正人 鈴木
Fumihiko Namiki
文彦 並木
Masaru Higuchi
賢 樋口
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Mitani Valve Co Ltd
ST Corp
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ST Corp
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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
    • B65D83/38Details of the container body
    • B65D83/384Details of the container body comprising an aerosol container disposed in an outer shell or in an external container
    • 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)
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Abstract

PROBLEM TO BE SOLVED: To simplify and facilitate the turning operation in the circumferential direction of a cum actuation type operation part turnable in the circumferential direction of a container by reducing the moving range in turning operation for switching between operation mode and stop mode and in turning operation for setting intermittent injection state.SOLUTION: A cum driving surface 7c for a rotating operation part (injection actuation member 7+ cylindrical operation member 8) in the circumferential direction toward container body 1 and a cum following surface 5d for an injection member 5 fitted to a stem 4 having a valve actuation part and moving up and down together are each set on the cum surface having a shape in which units of cum actuation parts composed of crest parts and successive trough parts are continuously formed.

Description

本発明は、エアゾール式製品やポンプ式製品に用いられるカム作動タイプの内容物噴射操作機構に関する。   The present invention relates to a cam-actuated type content injection operation mechanism used for aerosol type products and pump type products.

特に回動操作される内容物噴射用操作部のカム駆動面および、弁作用部を備えたステムと一体で当該カム駆動面とのカム作用により上下方向に移動する噴射部材のカム従動面のそれぞれが、山部とこれに続く谷部からなるカム面が連続形成された、内容物噴射操作機構に関する。   In particular, each of the cam drive surface of the content injection operation portion to be rotated and the cam driven surface of the injection member that moves integrally with the stem provided with the valve action portion and moves up and down by the cam action with the cam drive surface. However, it is related with the content injection operation mechanism in which the cam surface which consists of a peak part and a trough part following this was formed continuously.

本明細書では、利用者の操作対象であって、弁作用部が形成されたステムおよびこれと一体の噴射部材を上下方向に移動させるための構成を、「操作部」という。図示の内容物噴射操作機構の場合、噴射作動部材7および筒状操作部材8の一体物がこの操作部に相当する。また、ステムおよびこれと一体の噴射部材を必要に応じて「ステム側」という。   In the present specification, a configuration for moving a stem, which is a user's operation target, on which a valve action portion is formed, and an injection member integral therewith, in the vertical direction is referred to as an “operation portion”. In the case of the illustrated content injection operation mechanism, an integrated body of the injection operation member 7 and the cylindrical operation member 8 corresponds to this operation unit. Further, the stem and the injection member integrated therewith are referred to as “stem side” as necessary.

なお、本発明は、操作部の回動に応じてステム側を上下方向に移動させるための内容物噴射操作機構を対象としており、この内容物噴射操作機構におけるステム側の移動にともないどのような形の内容物噴射状態が設定されるかはいわば任意である。   Note that the present invention is directed to a content injection operation mechanism for moving the stem side in the vertical direction in accordance with the rotation of the operation unit, and in accordance with the movement of the stem side in this content injection operation mechanism It is arbitrary whether the shape content injection state is set.

すなわち、本発明にかかるエアゾール式製品としては、
(11)ステム弁作用部が開状態に設定されてから閉状態に復帰するまでの間、継続して内容物が噴射される汎用連続噴射(非定量噴射)や、
(12)ステム弁作用部が閉状態のときに噴射対象内容物が当該ステム弁作用部よりも上流側の定量室に貯留され、ステム弁作用部が閉状態から開状態に変化することにより当該定量室の内容物が噴射される、いわゆる定量噴射や、
(13)ステム弁作用部が閉状態から開状態への移行後に噴射対象内容物が当該ステム弁作用部よりも下流側の定量室に貯留され、ステム弁作用部が開状態から閉状態へと復帰することにともない当該定量室の内容物が噴射される、いわゆる逆定量噴射などの、
各種タイプの噴射態様をとりえる。
That is, as an aerosol type product according to the present invention,
(11) General purpose continuous injection (non-quantitative injection) in which the contents are continuously injected from when the stem valve action part is set to the open state until it returns to the closed state,
(12) When the stem valve action part is in the closed state, the content to be injected is stored in the metering chamber upstream of the stem valve action part, and the stem valve action part changes from the closed state to the open state. So-called quantitative injection, in which the contents of the quantitative chamber are injected,
(13) After the stem valve action part shifts from the closed state to the open state, the contents to be injected are stored in the metering chamber downstream of the stem valve action part, and the stem valve action part changes from the open state to the closed state. The so-called reverse quantitative injection, etc., in which the contents of the quantitative chamber are injected upon returning.
Various types of injection modes are possible.

また、いわゆる吸込弁および吐出弁を備えた各種ポンプ式製品の噴射態様にも本発明の内容物噴射操作機構は適用可能である。   The contents injection operation mechanism of the present invention can also be applied to the injection mode of various pump-type products provided with so-called suction valves and discharge valves.

容器本体の周方向に回動操作される内容物噴射用の操作部のカム駆動面と、弁作用部を備えたステムと一体の噴射部材のカム従動面とのカム作用により、当該ステムが上下方向に移動して、内容物の噴射状態(作動モード)および内容物の非噴射状態(静止モード)の選択的設定をおこなえるようにしたエアゾール式製品は、すでに開示されている(特許文献1,図6参照)。   The stem is moved up and down by the cam action of the cam drive surface of the operation portion for injection of contents rotated in the circumferential direction of the container body and the cam driven surface of the injection member integrated with the stem provided with the valve action portion. An aerosol-type product that has been moved in the direction to enable selective setting of the content injection state (operation mode) and the content non-injection state (stationary mode) has already been disclosed (Patent Document 1, Patent Document 1). (See FIG. 6).

この回動操作部とステム側との間のカム作用は、カム駆動面がいわば一回転することによりカム従動面が上下方向に一往復する態様になっている。   The cam action between the turning operation portion and the stem side is such that the cam driven surface reciprocates once in the up-down direction when the cam drive surface makes one rotation.

すなわち利用者は、回動操作部の半回転操作によりエアゾール式製品の静止モードと作動モードとを選択的に設定できる。   That is, the user can selectively set the stationary mode and the operation mode of the aerosol type product by the half-rotation operation of the rotation operation unit.

特開2003−284977号公報JP2003-284777A

このように従来の、容器本体の周方向への回動操作部を用いた噴射操作機構の場合、その半回転操作の単位で作動モードと静止モードとが個々に設定される。   Thus, in the case of the conventional injection operation mechanism using the rotation operation part in the circumferential direction of the container body, the operation mode and the stationary mode are individually set in units of the half-rotation operation.

したがって、作動モードと静止モードとを切り換える際のいわば回動操作移動範囲が大きくなり、また、作動モードと静止モードとを連続的に繰り返す形のいわば間歇噴射状態の実現には回動操作部を複数回にわたって回転させなければならず、容器本体周方向への回動操作上の利便性にかけるという問題点があった。   Therefore, the range of rotation operation movement when switching between the operation mode and the stationary mode is increased, and the rotation operation unit is provided to realize the intermittent injection state in which the operation mode and the stationary mode are continuously repeated. There has been a problem in that it has to be rotated a plurality of times, which is inconvenient in the rotating operation in the circumferential direction of the container body.

これを解決するため本発明では、容器本体周方向への回動操作部のカム駆動面およびステム側のカム従動面のそれぞれを、山部およびこれに続く谷部からなるカム作用部単位が周方向に連続形成された態様の、カム面に設定している。   In order to solve this problem, in the present invention, each of the cam drive surface of the rotation operation portion in the circumferential direction of the container body and the cam driven surface on the stem side is surrounded by a cam action portion unit including a peak portion and a valley portion that follows this. It is set to the cam surface of the aspect continuously formed in the direction.

このように山部および谷部のカム作用部単位が周方向に連続するカム面を用いることにより、上述の各種噴射態様における作動モードと静止モードとの間の切換え操作や、上記間歇噴射状態の設定回動操作に際しての回動操作移動範囲を少なくして、容器本体周方向への回動操作上の簡単化,利便化を図ることを目的とする。   In this way, by using the cam surface in which the cam action unit of the peak portion and the valley portion continues in the circumferential direction, the switching operation between the operation mode and the stationary mode in the various injection modes described above, and the intermittent injection state in the intermittent injection state are performed. It is an object of the present invention to simplify the rotation operation in the circumferential direction of the container body and to make it convenient by reducing the rotation operation movement range during the setting rotation operation.

本発明は、以上の課題を次の内容物噴射操作機構により解決する。
(1)容器本体(例えば後述の容器本体1)の周方向に回動可能な内容物噴射用の操作部(例えば後述の筒状操作部材8および噴射作動部材7)と、
前記操作部の回動操作にともなうカム作用により前記容器本体の上下方向へ移動する噴射部材(例えば後述の噴射部材5)と、
前記噴射部材に取り付けられて、当該噴射部材との連動により開閉状態が変化する内容物噴射作動用の弁作用部(例えば後述の横孔部4b)を有するステム(例えば後述のステム4)と、を備え、
前記カム作用は、
それぞれ、山部およびこれに続く谷部からなるカム作用部単位が周方向に連続形成された、前記操作部のカム駆動面(例えば後述のカム駆動面7c)と、前記噴射部材のカム従動面(例えば後述のカム従動面5d)との間のカム作用である、
内容物噴射操作機構を用いる。
(2)上記(1)において、
前記カム駆動面は、
前記操作部を構成する上側筒状部(例えば後述のカム作用垂下筒状部7b)の周回下端部分に形成され、
前記カム従動面は、
前記噴射部材を構成する下側筒状部(例えば後述の外側筒状部5c)の周回上端部分に形成されている、
内容物噴射操作機構を用いる。
(3)上記(1),(2)において、
前記容器本体を保持するカバー部材(例えば後述のスカート状保持部材6)を備え、
前記カバー部材は、
前記噴射部材の上下方向への移動を許容し、かつ、当該噴射部材の前記周方向への回動を阻止するための上下方向案内部(例えば後述の縦スリット状部6d)を有している、
内容物噴射操作機構を用いる。
The present invention solves the above problems by the following content injection operation mechanism.
(1) A content injection operation section (for example, a cylindrical operation member 8 and an injection operation member 7 described later) that is rotatable in the circumferential direction of a container main body (for example, a container main body 1 described later),
An injection member (for example, an injection member 5 described later) that moves in the vertical direction of the container main body by a cam action associated with the rotation operation of the operation unit;
A stem (for example, a stem 4 described later) having a valve action part (for example, a lateral hole portion 4b described later) attached to the injection member and whose opening and closing state changes in conjunction with the injection member; With
The cam action is
A cam driving surface (for example, a cam driving surface 7c described later) of the operation unit and a cam driven surface of the injection member, each of which is formed by continuously forming a cam action unit composed of a crest and a trough following the crest. (For example, cam action between the cam follower surface 5d described later)
A content injection operation mechanism is used.
(2) In (1) above,
The cam drive surface is
It is formed at the lower end portion of the upper cylindrical portion (for example, a cam action hanging cylindrical portion 7b described later) constituting the operation portion,
The cam follower surface is
It is formed at the upper end of the circumference of the lower cylindrical portion (for example, outer cylindrical portion 5c described later) constituting the injection member,
A content injection operation mechanism is used.
(3) In the above (1) and (2),
A cover member for holding the container body (for example, a skirt-like holding member 6 described later),
The cover member is
A vertical guide portion (for example, a vertical slit-shaped portion 6d described later) for allowing the injection member to move in the vertical direction and preventing the rotation of the injection member in the circumferential direction is provided. ,
A content injection operation mechanism is used.

本発明は、このような構成からなる内容物噴射操作機構ならびに、当該内容物噴射操作機構を備えたエアゾール式製品およびポンプ式製品を対象としている。   The present invention is directed to a content injection operation mechanism having such a configuration, and an aerosol type product and a pump type product provided with the content injection operation mechanism.

本発明は、このように山部および谷部のカム作用部単位が周方向に連続するカム面を用いることにより、上述の各種噴射態様における作動モードと静止モードとの間の切換え回動操作や、上記間歇噴射状態の設定回動操作に際しての操作部移動範囲を少なくしているので、容器本体周方向への回動操作上の簡単化,利便化を図ることができる。   In the present invention, by using the cam surface in which the cam action unit units of the crests and troughs are continuous in the circumferential direction, the switching rotation operation between the operation mode and the stationary mode in the various injection modes described above can be performed. Since the operation unit moving range during the rotating operation for setting the intermittent injection state is reduced, simplification and convenience in the rotating operation in the circumferential direction of the container body can be achieved.

内容物噴射操作機構の静止モード(例えば定量噴射)における断面状態を示す説明図である。It is explanatory drawing which shows the cross-sectional state in static mode (for example, fixed quantity injection) of the content injection operation mechanism. 内容物噴射操作機構の回動操作後の作動モード(例えば定量噴射)における断面状態を示す説明図である。It is explanatory drawing which shows the cross-sectional state in the operation mode (for example, fixed quantity injection) after the rotation operation of the content injection operation mechanism. ステム4と一体の噴射部材5および、筒状操作部材8と一体で当該噴射部材とのカム作用を呈する噴射作動部材7の各斜視状態を示す説明図である。It is explanatory drawing which shows each perspective state of the injection member 5 integral with the stem 4, and the injection operation member 7 which is integral with the cylindrical operation member 8 and exhibits a cam action with the injection member. 容器本体1,ステム4,噴射部材5,スカート状保持部材6,噴射作動部材7および筒状操作部材8の各構成要素の取付け態様を示す説明図である。It is explanatory drawing which shows the attachment aspect of each component of the container main body 1, the stem 4, the injection member 5, the skirt-shaped holding member 6, the injection operation member 7, and the cylindrical operation member 8. 内容物噴射操作機構を備えたエアゾール式製品全体の断面状態を示す説明図である。It is explanatory drawing which shows the cross-sectional state of the whole aerosol type product provided with the content injection operation mechanism. スカート状保持部材6の構成要素としてのカバー筒状部6aとキャップ状部6nとの取付け態様を示す説明図である。It is explanatory drawing which shows the attachment aspect of the cover cylindrical part 6a as a component of the skirt-shaped holding member 6, and the cap-shaped part 6n.

本発明の内容物噴射機構は上述したように、汎用連続噴射(非定量噴射),定量噴射および逆定量噴射などの各種タイプのエアゾール式製品や、従前より広く使用されているポンプ式製品などに適用されるものである。   As described above, the content injection mechanism of the present invention is applicable to various types of aerosol-type products such as general-purpose continuous injection (non-quantitative injection), fixed-quantity injection and reverse fixed-quantity injection, and pump-type products that have been widely used. Applicable.

ただ以下の実施形態の記載では、単なる説明の便宜上、定量噴射タイプのエアゾール式製品を前提とする。   However, in the following description of the embodiment, for convenience of explanation, a constant-injection type aerosol type product is assumed.

定量噴射機構自体は、例えば特開2003−267462号公報、特開2003−341764号公報、特開2005−306459号公報、特開2010−36947号公報で開示されているように周知である。   The fixed injection mechanism itself is well known as disclosed in, for example, Japanese Patent Application Laid-Open Nos. 2003-267462, 2003-34164, 2005-306459, and 2010-36947.

図1乃至図6を用いて本発明を実施するための形態を説明する。   The form for implementing this invention is demonstrated using FIG. 1 thru | or FIG.

以下のアルファベット付き参照番号の構成要素(例えば環状開口端部1a)は原則として、当該参照番号の数字部分の構成要素(例えば容器本体1)の一部であることを示している。   The components of the following reference numbers with alphabets (for example, the annular opening end 1a) are in principle shown to be a part of the components (for example, the container body 1) of the numeral portions of the reference numbers.

図1〜図6において、
1は内容物を収納したエアゾール式製品の容器本体,
1aは当該容器本体の環状開口端部,
2は環状開口端部1aに固定された周知のマウンティングキャップ,
3はマウンティングキャップ2の中央部分に取り付けられた周知のハウジング,
4はその下部分がハウジング3の内部に配設され、周知のコイルスプリング(図示省略)の弾性作用で図示上方向に付勢されて弁作用を呈し、かつ、後述の筒状操作部材8の回動操作により下動して定量室の入口部分を閉塞する機能を備えた周知のステム,
4aは内容物の通路域,
4bは周知のステムガスケット(図示省略)とともに噴射弁作用を呈する横孔部(弁作用部),
をそれぞれ示している。
1 to 6,
1 is the body of an aerosol-type product containing the contents,
1a is the annular opening end of the container body,
2 is a known mounting cap fixed to the annular opening end 1a;
3 is a known housing attached to the central portion of the mounting cap 2;
The lower portion 4 is disposed inside the housing 3 and is urged upward in the figure by the elastic action of a known coil spring (not shown) to exhibit a valve action. A well-known stem that has the function of closing the entrance of the metering chamber by lowering it by turning operation;
4a is the passage area of the contents,
4b is a well-known stem gasket (not shown) and a lateral hole portion (valve action portion) that exhibits an injection valve action,
Respectively.

また、
5はステム4の出力側外周面と嵌合して上下方向に連動する筒状の噴射部材,
5aは当該噴射部材の中央上下方向に形成された直線状の内容物通路部(内側筒状部),
5bは内容物通路部5aの上端側に形成された噴射口,
5cは内容物通路部(内側筒状部)と環状天板を介して連結された形の外側筒状部(下側筒状部),
5dは山部およびこれに続く谷部からなるカム作用部単位が外側筒状部5cの上端面に連続形成された環状のカム従動面(カム倣い面),
5eは外側筒状部5cの上端側外周面に略180度離間した位置に形成されて、後述の縦スリット状部6d(スカート状保持部材6)との周方向係合作用により当該噴射部材自体の回動を阻止するための計二個の外向き凸状部,
をそれぞれ示している。
Also,
5 is a cylindrical injection member that engages with the outer peripheral surface of the output side of the stem 4 and interlocks vertically.
5a is a linear content passage portion (inner cylindrical portion) formed in the central vertical direction of the injection member,
5b is an injection port formed on the upper end side of the content passage portion 5a,
5c is an outer cylindrical portion (lower cylindrical portion) in the form of being connected to a content passage portion (inner cylindrical portion) via an annular top plate,
5d is an annular cam driven surface (cam copying surface) in which a cam action unit composed of a peak portion and a valley portion following the peak portion is continuously formed on the upper end surface of the outer cylindrical portion 5c.
5e is formed at a position approximately 180 degrees apart from the outer peripheral surface on the upper end side of the outer cylindrical portion 5c, and the injection member itself by a circumferential engagement action with a vertical slit-shaped portion 6d (skirt-shaped holding member 6) described later. A total of two outwardly convex parts to prevent rotation of
Respectively.

また、
6は容器本体1を、その全体がカバーされた状態で保持する有底のスカート状保持部材,
6aは当該スカート状保持部材のカバー筒状部,
6bはカバー筒状部6aの外周面の上部分に形成されて後述の筒状操作部材8の下端面8cを受ける環状の上向き段部,
6cは上向き段部6bよりも上方の外周面に形成されて後述の上向き段部8b(筒状操作部材8)との周方向への係合案内作用を呈する環状の下向き段部,
6dは下向き段部6cよりも上方の外周面上端側に形成されて、噴射部材5の外向き凸状部5eのそれぞれを上下方向に案内し、かつ、当該噴射部材の回動を阻止する計二個の縦スリット状部(上下方向案内部),
6eはカバー筒状部6aの外周面上端側に形成されて、後述の内向き凸状部7e(噴射作動部材7)の上側部分と係合する環状の外向き凸状部,
6fはカバー筒状部6aの外周面下端側に形成されて後述のキャップ状部6nの上端面と当接する環状下端面,
6gは環状下端面6fの下方に延びてコの字状横断面からなる計四個の脚部,
6hは脚部6gそれぞれの外面に形成された外向き横凸状部,
6jは脚部6gそれぞれの外面に形成された外向き縦凸状部、
6kは脚部6gそれぞれの対向側面,
6mは対向側面6kそれぞれの内下端側に形成された切欠状部,
6nは当該スカート状保持部材を構成するキャップ状部,
6pはキャップ状部6nの外筒状部と内筒状部との間に形成されて、カバー筒状部6aとの結合作業の初期段階で脚部6gの底面部分を受ける計四個の低棚状部,
6qはキャップ状部6nの内筒状部の上端部分と、当該上端部分の一方の周方向端部から外筒状部へと延びる部分とで形成されて、カバー筒状部6aおよびキャップ状部6nを上記初期段階から最終結合段階に回動設定する際の、脚部6gの案内保持機能を備えた計四個の高壁状部,
6rはキャップ状部6nの内周面に形成されて、カバー筒状部6aおよび当該キャップ状部の最終結合段階で外向き横凸状部6hの上面側と係合する計四個の内向き横凸状部,
6sは内向き横凸状部6rの上方内周面に形成されて、カバー筒状部6aおよび当該キャップ状部6nの最終結合段階で外向き縦凸状部6jをいわば乗り越えた態様で当該外向き縦凸状部と係合する計四個の内向き縦凸状部,
6tはキャップ状部6nの内周面下端側に形成されて、容器本体1の底部側を保持する計四個の内向きリブ状部,
をそれぞれ示している。
Also,
6 is a bottomed skirt-shaped holding member for holding the container body 1 in a state where the container body 1 is entirely covered;
6a is a cover cylindrical part of the skirt-shaped holding member,
6b is an annular upward step formed on the outer peripheral surface of the cover tubular portion 6a and receiving a lower end surface 8c of a tubular operation member 8 described later,
6c is an annular downward stepped portion that is formed on the outer peripheral surface above the upward stepped portion 6b and exhibits an engaging and guiding action in the circumferential direction with an upward stepped portion 8b (cylindrical operating member 8) described later,
6d is formed on the upper end side of the outer peripheral surface above the downward stepped portion 6c, guides each of the outward convex portions 5e of the injection member 5 in the vertical direction, and prevents rotation of the injection member. Two vertical slits (up and down direction guide),
6e is an annular outward convex portion that is formed on the upper end side of the outer peripheral surface of the cover cylindrical portion 6a and engages with an upper portion of an inward convex portion 7e (injection actuating member 7) described later.
6f is an annular lower end surface that is formed on the lower end side of the outer peripheral surface of the cover tubular portion 6a and contacts an upper end surface of a cap-shaped portion 6n described later;
6g is a total of four legs that extend below the annular lower end surface 6f and have a U-shaped cross section;
6h is an outward lateral convex part formed on the outer surface of each leg part 6g,
6j is an outward vertical convex part formed on the outer surface of each leg part 6g,
6k is the opposite side of each leg 6g,
6m is a notch-like portion formed on the inner lower end side of each of the opposing side surfaces 6k,
6n is a cap-shaped portion constituting the skirt-shaped holding member,
6p is formed between the outer cylindrical portion and the inner cylindrical portion of the cap-shaped portion 6n, and receives a total of four low portions that receive the bottom surface portion of the leg portion 6g in the initial stage of the coupling operation with the cover cylindrical portion 6a. Shelf,
6q is formed by an upper end portion of the inner cylindrical portion of the cap-shaped portion 6n and a portion extending from one circumferential end of the upper end portion to the outer cylindrical portion, and the cover cylindrical portion 6a and the cap-shaped portion A total of four high wall-shaped portions having a guide holding function for the leg portion 6g when 6n is rotated from the initial stage to the final coupling stage,
6r is formed on the inner peripheral surface of the cap-shaped portion 6n, and is engaged with the cover cylindrical portion 6a and the upper surface side of the outward lateral convex portion 6h at the final joining stage of the cap-shaped portion in total four inward directions. Lateral convex part,
6s is formed in the upper inner peripheral surface of the inward lateral convex part 6r, and the outer cylindrical part 6a and the cap-like part 6n are overcome in the form of overcoming the outward longitudinal convex part 6j at the final joining stage. A total of four inward vertical convex portions that engage with the vertical vertical convex portions,
6t is formed on the lower end side of the inner peripheral surface of the cap-shaped part 6n, and a total of four inward rib-shaped parts for holding the bottom side of the container body 1,
Respectively.

また、
7は噴射部材5との間のカム作用により当該噴射部材およびこれと一体のステム4を上下動させる天板筒状の噴射作動部材(操作部),
7aは内容物通路部(内側筒状部)5aの周りに配設される中央垂下筒状部,
7bは中央垂下筒状部7aの直外側に形成されたカム作用垂下筒状部(外側筒状部5cに対する上側筒状部),
7cは山部およびこれに続く谷部からなるカム作用部単位がカム作用垂下筒状部7bの下端面に連続形成されて、カム従動面5dとのカム作用を呈するカム駆動面,
7dはカム作用垂下筒状部7bの直外側に形成されて当該噴射作動部材の上下方向位置を決めるための位置決め用垂下筒状部,
7eは位置決め用垂下筒状部7dの下側内周面に形成されて、外向き凸状部6e(スカート状保持部材6)の下側部分との間で周方向への係合案内作用を呈し、当該噴射作動部材が上方へ抜けるのを阻止する機能を備えた環状の内向き凸状部,
7fは当該噴射作動部材の最外側(位置決め用垂下筒状部7dの直外側)に形成されて後述の筒状操作部材8との同期回動を確保するための計六個の同期回動用垂下部,
7gは同期回動用垂下部7fそれぞれの間の上下方向に形成された操作部嵌合用の計六個の切込み部分,
7hは切込み部分7gそれぞれの周方向両側に形成されて、操作部取付けの際に後述の縦リブ状部8aを当該切込み部分の方に案内する斜面,
をそれぞれ示している。
Also,
7 is a top-plate-shaped injection operation member (operating portion) for moving the injection member and the stem 4 integrated therewith up and down by a cam action with the injection member 5;
7a is a central hanging tubular portion disposed around the content passage portion (inner tubular portion) 5a,
7b is a cam action hanging cylindrical portion (upper cylindrical portion with respect to the outer cylindrical portion 5c) formed just outside the central hanging cylindrical portion 7a;
7c is a cam driving surface in which a cam action portion unit comprising a peak portion and a valley portion following this is continuously formed on the lower end surface of the cam action hanging cylindrical portion 7b, and exhibits a cam action with the cam driven surface 5d;
7d is a drooping cylindrical portion for positioning, which is formed just outside the cam-acting drooping cylindrical portion 7b and determines the vertical position of the injection operation member;
7e is formed on the lower inner peripheral surface of the hanging hanging cylindrical portion 7d for engaging and guiding the engagement with the lower portion of the outward convex portion 6e (skirt-like holding member 6) in the circumferential direction. Presenting an annular inwardly convex portion having a function of preventing the injection actuating member from pulling upward;
7f is a total of six synchronous rotation hangings that are formed on the outermost side of the injection operating member (directly outside the hanging drooping cylindrical portion 7d) to ensure synchronous rotation with a cylindrical operation member 8 described later. Department,
7g is a total of six incisions for fitting the operation parts formed in the vertical direction between the synchronous rotation hanging parts 7f,
7h is a slope that is formed on both sides in the circumferential direction of the cut portion 7g, and guides a vertical rib-like portion 8a (described later) toward the cut portion when the operation portion is attached,
Respectively.

また、
8は噴射作動部材7に、これと一体化して回動する形で取り付けられた筒状操作部材(操作部),
8aは当該筒状操作部材の内周面のいわば直径対向部分の周方向六箇所にそれぞれ二個ずつ形成されて、この二個単位が切込み部分7g(噴射作動部材7)の一つと強く嵌合する計十二個(計六組)の縦リブ状部,
8bは当該筒状操作部材の内周面に形成されて、カバー筒状部6aの下向き段部6cとの間で周方向への係合案内作用を呈し、当該操作部が上方へ抜けるのを阻止する機能を備えた環状の上向き段部,
8cは当該筒状操作部材の環状の下端面,
をそれぞれ示している。
Also,
8 is a cylindrical operation member (operation part) attached to the injection operation member 7 so as to rotate integrally therewith,
8a is formed in each of six locations in the circumferential direction of the inner diameter surface of the cylindrical operation member so as to oppose the diameter, and these two units are strongly fitted to one of the cut portions 7g (injection actuating member 7). A total of twelve (total six sets) vertical ribs,
8b is formed on the inner peripheral surface of the cylindrical operation member, exhibits an engagement guide action in the circumferential direction with the downward stepped portion 6c of the cover cylindrical portion 6a, and the operation portion is released upward. An annular upward step with a blocking function,
8c is the annular lower end surface of the cylindrical operating member,
Respectively.

また、
Aは筒状操作部材8の回動操作方向(図2参照),
Bはカバー筒状部6aをキャップ状部6nに取り付ける際の当該カバー筒状部の回動方向(図6参照),
をそれぞれ示している。
Also,
A is a rotation operation direction of the cylindrical operation member 8 (see FIG. 2),
B is a rotation direction of the cover tubular portion when the cover tubular portion 6a is attached to the cap-shaped portion 6n (see FIG. 6).
Respectively.

ハウジング3,ステム4,噴射部材5,スカート状保持部材6,噴射作動部材7および筒状操作部材8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。容器本体1およびマウンティングキャップ2は金属製のものである。   The housing 3, the stem 4, the injection member 5, the skirt-shaped holding member 6, the injection operation member 7, the cylindrical operation member 8, and the like are made of plastic made of polypropylene, polyethylene, polyacetal, nylon, polybutylene terephthalate, or the like. The container body 1 and the mounting cap 2 are made of metal.

図示の内容物噴射操作機構の基本的特徴は、
(21)回動操作可能な筒状操作部材8およびこれと一体になって周方向に同期回動する噴射作動部材7が、上下方向に移動しない態様で、各構成要素のいわば絶対基準位置といえる有底のスカート状保持部材6に設けられ、
(22)ステム4の出力側に取り付けた噴射部材5が、回動ぜずに上下方向のみに移動する態様で、スカート状保持部材6に対して配設され、
(23)上下動のみ可能な噴射部材5にカム従動面5dが形成され、かつ、回動のみ可能な噴射作動部材7にカム駆動面7cが形成されて、筒状操作部材8の回動操作にともなう当該カム従動面および当該カム駆動面のカム作用により当該噴射部材が下動する、すなわち当該噴射部材と一体のステム4が周知のコイルスプリングの上方向への弾性力に抗しながら下動する、
ことである。
The basic features of the illustrated content injection operation mechanism are:
(21) The cylindrical operation member 8 that can be rotated and the injection operation member 7 that is integrally rotated with the cylindrical operation member 8 are not moved in the vertical direction. It is provided on the bottomed skirt-like holding member 6 that can be said,
(22) The injection member 5 attached to the output side of the stem 4 is disposed with respect to the skirt-like holding member 6 in such a manner that it moves only in the vertical direction without rotating.
(23) The cam driven surface 5d is formed on the injection member 5 that can only move up and down, and the cam drive surface 7c is formed on the injection operation member 7 that can only rotate, so that the cylindrical operation member 8 can be rotated. Accordingly, the injection member is moved downward by the cam action of the cam driven surface and the cam drive surface, that is, the stem 4 integrated with the injection member is moved downward while resisting an upward elastic force of a known coil spring. To
That is.

ここで、上記(21)における筒状操作部材8および噴射作動部材7の同期回動のみが担保されるのは、
(21a)縦リブ状部8aの上端側部分が切込み部分7gに係合し、
(21b)上向き段部8b,下端面8cおよび内向き凸状部7eがそれぞれ、カバー筒状部6a(スカート状保持部材6)の下向き段部6c,上向き段部6bおよび外向き凸状部6eと当接する、
からである。
Here, only the synchronous rotation of the cylindrical operation member 8 and the injection actuating member 7 in the above (21) is ensured.
(21a) The upper end side portion of the longitudinal rib portion 8a is engaged with the cut portion 7g,
(21b) The upward step portion 8b, the lower end surface 8c, and the inward convex portion 7e are respectively the downward step portion 6c, the upward step portion 6b, and the outward convex portion 6e of the cover tubular portion 6a (skirt-shaped holding member 6). Abut,
Because.

また、上記(22)における噴射部材5の上下動のみが担保されるのは、
(22a)外向き凸状部5eがカバー筒状部6a(スカート状保持部材6)の縦スリット状部6dに配設されている、
からである。
In addition, only the vertical movement of the injection member 5 in the above (22) is secured.
(22a) The outward convex part 5e is disposed in the vertical slit-like part 6d of the cover cylindrical part 6a (skirt-like holding member 6).
Because.

そして上記(23)における筒状操作部材8の回動操作にともなうステム4の下動により、まず、ハウジング3内に設けられた定量室(図示省略)への入口部分である流入弁(図示省略)がそれまでの開状態から閉状態へと変化し、その後、ステム4の横孔部4bと周知のステムガスケットとの間の弁作用部がそれまでの閉状態から開状態へと変化する。   By the downward movement of the stem 4 accompanying the turning operation of the cylindrical operation member 8 in the above (23), first, an inflow valve (not shown) that is an inlet portion to a metering chamber (not shown) provided in the housing 3 ) Changes from the previous open state to the closed state, and then the valve action portion between the lateral hole portion 4b of the stem 4 and the known stem gasket changes from the previous closed state to the open state.

すなわち図1の静止モードから図2の作動モードへと移行して、容器本体1から定量室に流入済みの内容物が「ハウジング3内の定量室‐ステム4の横孔部4b−ステム4の通路域4a−噴射部材5の内容物通路部5a−噴射口5b」を経て外部空間域に噴射される。   That is, the stationary mode in FIG. 1 shifts to the operation mode in FIG. 2, and the contents already flowed from the container body 1 into the metering chamber are “the metering chamber in the housing 3 -the horizontal hole portion 4 b of the stem 4- It is injected into the external space area through the passage area 4a-the contents passage portion 5a-the injection port 5b of the injection member 5 ".

図1の静止モードでは、上述のコイルスプリングの弾性作用により、ステム4および噴射部材5の一体物がその最上位置に移動している。   In the stationary mode of FIG. 1, the integral body of the stem 4 and the injection member 5 is moved to its uppermost position by the elastic action of the coil spring.

このとき、噴射作動部材7および筒状操作部材8の一体物は、そのカム駆動面7cの山部(または谷部)と、噴射部材5の谷部(または山部)とが当接した形のいわば初期安定状態にある。   At this time, the integral body of the injection operating member 7 and the cylindrical operation member 8 is a shape in which the peak (or valley) of the cam drive surface 7c and the valley (or peak) of the injection member 5 are in contact with each other. In other words, it is in an initial stable state.

また、容器本体1は、その底部側がキャップ状部6n(スカート状保持部材6)の内向きリブ状部6tおよびその直上の内周面部分に保持されている(図5参照)。   In addition, the container body 1 is held at the bottom side by the inward rib-shaped portion 6t of the cap-shaped portion 6n (skirt-shaped holding member 6) and the inner peripheral surface portion directly above (see FIG. 5).

この初期安定状態(静止モード)の筒状操作部材8をカバー筒状部6aに対して図2の矢印方向に相対回動させると、当該筒状操作部材と一体の噴射作動部材7も同期して回動する。   When the cylindrical operation member 8 in the initial stable state (stationary mode) is rotated relative to the cover cylindrical portion 6a in the direction of the arrow in FIG. 2, the injection operation member 7 integrated with the cylindrical operation member is also synchronized. Rotate.

噴射作動部材7は、その切込み部分7gと筒状操作部材8の縦リブ状部8aとの間の上下方向係止作用および、その7eとカバー筒状部6aの外向き凸状部6eとの間の上下方向係止作用を受けているので、回動操作時の筒状操作部材8および噴射作動部材7は上下動せずに同期回動する。   The injection actuating member 7 has a vertical locking action between the cut portion 7g and the longitudinal rib portion 8a of the cylindrical operation member 8, and the outward projecting portion 6e of 7e and the cover tubular portion 6a. Since the vertical locking action is received, the cylindrical operation member 8 and the injection operation member 7 during the rotation operation rotate synchronously without moving up and down.

この上下位置一定の同期回動にともない、噴射部材5のカム従動面5dが噴射作動部材7のカム駆動面7cからの押下げ作用を受ける。   Along with this synchronous rotation with a constant vertical position, the cam driven surface 5d of the injection member 5 receives a pressing action from the cam drive surface 7c of the injection operation member 7.

一方、噴射部材5は、その外向き凸状部5eに対するカバー筒状部6a(縦スリット状部6d)のガイド作用により、上下方向にのみ移動可能である。   On the other hand, the injection member 5 can move only in the vertical direction by the guide action of the cover cylindrical portion 6a (vertical slit-like portion 6d) with respect to the outward convex portion 5e.

そのため図1の筒状操作部材8およびこれと一体の噴射作動部材7に対する回動操作にともない、カム駆動面7cが、周方向に移動できない噴射部材5のカム従動面5dに対して回動する。   Therefore, the cam drive surface 7c rotates with respect to the cam driven surface 5d of the injection member 5 that cannot move in the circumferential direction in accordance with the rotation operation with respect to the cylindrical operation member 8 and the injection operation member 7 integrated therewith in FIG. .

このカム駆動面7cの回動により、噴射部材5およびこれと一体のステム4がカム従動面5dを介して、上述のコイルスプリングの上方向への弾性力に抗する形で押し下げられる。   By the rotation of the cam drive surface 7c, the injection member 5 and the stem 4 integral therewith are pushed down through the cam driven surface 5d so as to resist the above-described upward elastic force of the coil spring.

そして噴射部材5およびステム4は、図2に示すように、カム駆動面7cの頂部分(山部)がカム従動面5dの頂部分(山部)と当接する位置まで下動する。   As shown in FIG. 2, the injection member 5 and the stem 4 are moved down to a position where the top portion (mountain portion) of the cam drive surface 7 c comes into contact with the top portion (mountain portion) of the cam driven surface 5 d.

この噴射部材5の最下動位置では勿論、上述のようにステム4の横孔部4bと周知のステムガスケットとの間の弁作用部が開状態に設定され、容器本体1から定量室に流入済みの内容物が噴射口5bから外部空間域に噴射される。すなわち内容物定量噴射状態の作動モードに設定される。   Of course, in the lowest position of the injection member 5, the valve action part between the lateral hole part 4b of the stem 4 and the known stem gasket is set in an open state as described above, and flows into the metering chamber from the container body 1. The finished contents are injected from the injection port 5b into the external space area. That is, the operation mode is set to the content quantitative injection state.

筒状操作部材8をこの作動モード位置からさらに図2のA方向に回動させると、カム駆動面7cの頂部分(山部)の、カム従動面5dとの対向位置が谷部の方へと変化する。   When the cylindrical operation member 8 is further rotated in the direction A in FIG. 2 from this operation mode position, the position of the top portion (mountain portion) of the cam drive surface 7c facing the cam driven surface 5d is directed toward the valley portion. And change.

この対向位置の変化に応じる形で、噴射部材5およびステム4は上述のコイルスプリングの上方向への弾性力により、そのカム従動面5dがカム駆動面7cの頂部分(山部)に当接する位置まで上動する。   In response to the change in the facing position, the cam driven surface 5d of the injection member 5 and the stem 4 abuts on the top portion (mountain portion) of the cam drive surface 7c by the upward elastic force of the coil spring described above. Move up to position.

そして、カム駆動面7cの山部および谷部がそれぞれカム従動面5dの谷部および山部といわば合致した状態、すなわち図1の静止モードへと復帰する。   Then, the cam drive surface 7c returns to the state where the crest and trough of the cam driven surface 7c coincide with the trough and crest of the cam driven surface 5d, that is, the stationary mode of FIG.

この復帰過程において、ステム4の横孔部4bと周知のステムガスケットとの間の弁作用部がそれまでの開状態から閉状態へと変化し、その後、流入弁がそれまでの閉状態から開状態へと変化して、容器本体1から次回放出分の内容物が定量室に流入する。   In this returning process, the valve action part between the lateral hole 4b of the stem 4 and the well-known stem gasket changes from the previously opened state to the closed state, and then the inflow valve opens from the previously closed state. It changes to a state, and the content for the next discharge | release flows from the container main body 1 into a fixed_quantity | quantitative_assay chamber.

その後も筒状操作部材8のA方向への回動操作を続けると、図2の作動モードと図1の静止モードとがカム駆動面7c,カム従動面5dの半周期単位で交互に設定される。いわば定量噴射の間歇作動モードが設定される。   Thereafter, when the rotation operation of the cylindrical operation member 8 in the A direction is continued, the operation mode of FIG. 2 and the stationary mode of FIG. 1 are alternately set in half-cycle units of the cam drive surface 7c and the cam driven surface 5d. The In other words, the intermittent operation mode is set for the fixed quantity injection.

このように筒状操作部材8の回動操作にともない、ステム4の弁作用部が閉状態で定量室の内容物が外部空間域に噴射されない静止モード(図1)と、当該弁作用部が開状態で定量室の内容物が外部空間域に噴射される作動モード(図2)とが選択的に設定される。   As described above, in accordance with the turning operation of the cylindrical operation member 8, the stationary mode (FIG. 1) in which the valve action portion of the stem 4 is closed and the contents of the metering chamber are not injected into the external space area, and the valve action portion is An operation mode (FIG. 2) in which the contents of the metering chamber are injected into the external space area in the open state is selectively set.

図2の作動モードから図1の静止モードへ復帰させる際、筒状操作部材8をAとは逆方向に回動操作してもよい。   When returning from the operation mode of FIG. 2 to the stationary mode of FIG. 1, the cylindrical operation member 8 may be rotated in a direction opposite to A.

なお、作動モードから静止モードへの復帰動作において、利用者が、筒状操作部材8を積極的にA方向または逆A方向に継続回動操作しなくても、作動モード位置の当該筒状操作部材をいわばトリガ的に初期回動すればよいように設定可能である。   In the return operation from the operation mode to the stationary mode, even if the user does not positively continuously rotate the cylindrical operation member 8 in the A direction or the reverse A direction, the cylindrical operation at the operation mode position is performed. It can be set so that the member may be initially rotated as a trigger.

このトリガ的な初期回動操作の後は、
(31)ステム4およびこれと一体の噴射部材5に対する上述のコイルスプリングの上方向への弾性力により当該噴射部材が上動し、
(32)この噴射部材5の上動を可能とする形のカム従動面5dとカム駆動面7cとのカム作用に基づいて、噴射作動部材7およびこれと一体の筒状操作部材8が回動しながら図1の静止モード位置に自動復帰する。
After this trigger initial rotation operation,
(31) The injection member is moved upward by the upward elastic force of the coil spring with respect to the stem 4 and the injection member 5 integrated therewith,
(32) On the basis of the cam action of the cam driven surface 5d and the cam drive surface 7c that allow the upward movement of the injection member 5, the injection operation member 7 and the cylindrical operation member 8 integrated therewith rotate. However, it automatically returns to the stationary mode position shown in FIG.

本件回動タイプの内容物噴射操作機構の適用対象は、図示のように、ステム4および噴射部材5が下動して横孔部4bと周知のステムガスケットとの間の弁作用部が開くことにより定量室の内容物が噴射される、ものに限定されない。   As shown in the figure, the application target of the rotating type content injection operation mechanism is that the stem 4 and the injection member 5 are moved downward to open a valve action portion between the lateral hole portion 4b and a known stem gasket. Is not limited to the one in which the contents of the quantitative chamber are injected.

例えば、
(41) ステム4および噴射部材5が下動して横孔部4bおよび周知のステムガスケットの弁作用部が開くことにより容器本体1の内容物が連続噴射される汎用連続噴射(非定量噴射)機構、
(42) エアゾール式製品の次回噴射対象内容物の収容空間域としての定量室をハウジング3,ステム4などに設定した上で、筒状操作部材8の回動操作によりステム4が下動したときに、定量室流出弁を閉じたまま、定量室流入弁としての当該弁作用部を開いて定量室に内容物を流入させ、かつ、ステム4の初期位置への上動復帰の際に、当該定量室流出弁を開くとともに当該定量室流入弁を閉じる形の周知のいわば逆定量噴射機構(例えば特開2003−299991号公報、特開2007−204138号公報参照)、
などにも適用可能である。
For example,
(41) General-purpose continuous injection (non-quantitative injection) in which the contents of the container body 1 are continuously injected by the stem 4 and the injection member 5 moving downward to open the lateral hole portion 4b and the valve action portion of a known stem gasket. mechanism,
(42) When the stem 4 is moved downward by the turning operation of the cylindrical operation member 8 after setting the fixed amount chamber as the accommodation space area of the next injection target content of the aerosol type product in the housing 3 and the stem 4 In addition, with the metering chamber outflow valve closed, the valve action portion as the metering chamber inflow valve is opened to allow the contents to flow into the metering chamber, and when the stem 4 is returned to the initial position, A so-called reverse quantitative injection mechanism that opens the metering chamber outflow valve and closes the metering chamber inflow valve (see, for example, Japanese Patent Application Laid-Open Nos. 2003-299991 and 2007-204138),
It is also applicable to.

なお、本件回動タイプの内容物噴射操作機構を汎用連続噴射(非定量噴射)のエアゾール式製品へ適用した場合、図2の作動モードにおいてカム駆動面7cおよびカム従動面5dそれぞれの頂部分(山部)の当接状態が、例えばその当接部分の摩擦作用で自己保持される形にすることにより、利用者の筒状操作部材8の回動操作終了後も内容物の外部空間域への噴射が継続する連続作動モードを設定できる。   When the rotating type content injection operation mechanism is applied to a general-purpose continuous injection (non-quantitative injection) aerosol-type product, the top portions of the cam drive surface 7c and the cam driven surface 5d in the operation mode of FIG. For example, by making the contact state of the (mountain portion) self-held by the frictional action of the contact portion, the user can move to the external space area of the contents even after the user completes the turning operation of the cylindrical operation member 8. The continuous operation mode in which the continuous injection is continued can be set.

このような摩擦作用に代えて例えば、カム駆動面7cおよびカム従動面5dの何れか一方の頂部分もしくは両方の頂部分に平坦な安定部を設ける、またはこの何れか一方の頂部分に凹部を設けることにより、当該頂部分の対向当接状態を自己保持させるようにしてもよい。   Instead of such a frictional action, for example, a flat stable portion is provided at the top portion of either one or both of the cam drive surface 7c and the cam driven surface 5d, or a concave portion is provided at one of the top portions. By providing it, you may make it self-hold the opposing contact state of the said top part.

なお、この連続作動モードは、汎用連続噴射(非定量噴射)のエアゾール式製品の内容物を略消尽した後においては容器本体側の残留ガスを抜くためのガス抜きモードともいえる。   Note that this continuous operation mode can be said to be a degassing mode for removing residual gas from the container body after the contents of the aerosol-type product of general-purpose continuous injection (non-quantitative injection) are almost exhausted.

また、本件回動タイプの噴射操作機構自体は、ポンプ式製品の噴射操作においても適用可能である。   In addition, the rotation type injection operation mechanism itself can be applied to the injection operation of a pump type product.

図4は、容器本体1およびこれのカバー体として作用するスカート状保持部材6と、噴射部材5,噴射作動部材7および筒状操作部材8と、の取付け対応関係を示している。   FIG. 4 shows an attachment correspondence relationship between the container main body 1 and the skirt-like holding member 6 acting as a cover body thereof, the injection member 5, the injection operation member 7, and the cylindrical operation member 8.

ここでは例えば、
(51)噴射部材5を、その外向き凸状部5eがスカート状保持部材6の縦スリット状部6dに合致する周方向位置関係で、ステム4に嵌合させ、
(52)噴射作動部材7の切込み部分7gと筒状操作部材8の縦リブ状部8aとを嵌合させて、噴射作動部材7および筒状操作部材8を一体化し、
(53)この一体化状態の噴射作動部材7および筒状操作部材8を、そのカム駆動面7cの山部および谷部がそれぞれ噴射部材5のカム従動面5dの谷部および山部といわば合致するように回動させながら、スカート状保持部材6の上端側に入れていく。
Here, for example,
(51) The injection member 5 is fitted to the stem 4 in a circumferential positional relationship in which the outward convex portion 5e matches the vertical slit-like portion 6d of the skirt-like holding member 6,
(52) The injection operation member 7 and the cylindrical operation member 8 are integrated by fitting the cut portion 7g of the injection operation member 7 and the vertical rib-shaped portion 8a of the cylindrical operation member 8;
(53) In this integrated state of the injection operating member 7 and the cylindrical operation member 8, the crests and troughs of the cam drive surface 7c match the troughs and crests of the cam driven surface 5d of the injection member 5, respectively. The skirt-shaped holding member 6 is inserted into the upper end side while being rotated.

上記(53)における噴射作動部材7および筒状操作部材8は、最終的に、内向き凸状部7eがスカート状保持部材6の外向き凸状部6eの下側に係止され、上向き段部8bがスカート状保持部材6の下向き段部6cの下側に係止された状態に設定され、かつ当該筒状操作部材の下端面8cが当該スカート状保持部材の上向き段部6bに略当接した状態に、設定される。   In the injection actuating member 7 and the cylindrical operation member 8 in (53) above, the inward convex portion 7e is finally locked to the lower side of the outward convex portion 6e of the skirt-shaped holding member 6, and the upward step The lower end surface 8c of the cylindrical operation member is substantially in contact with the upward step portion 6b of the skirt-shaped holding member. Set to touch.

ここで内向き凸状部7eが外向き凸状部6eの下側に係止され、また上向き段部8bが下向き段部6cの下側に係止されるのは、カバー筒状部6a,噴射作動部材7および筒状操作部材8がいくらかの弾性変形作用を有しているからである。   Here, the inward convex portion 7e is locked to the lower side of the outward convex portion 6e, and the upward step portion 8b is locked to the lower side of the downward step portion 6c. This is because the injection operation member 7 and the cylindrical operation member 8 have some elastic deformation action.

すなわち、噴射作動部材7および筒状操作部材8がスカート状保持部材6の上端側から相対的に下方に入れられて内向き凸状部7eが外向き凸状部6eの上部分にあたり、また、上向き段部8bの下方部分が下向き段部6cの上方部分にあたると、それぞれのあたり双方部分が相対的に押されてへこむように弾性変形するからである。   That is, the injection actuating member 7 and the cylindrical operation member 8 are inserted relatively downward from the upper end side of the skirt-shaped holding member 6 so that the inward convex portion 7e hits the upper portion of the outward convex portion 6e, This is because when the lower portion of the upward step portion 8b corresponds to the upper portion of the downward step portion 6c, both of the respective portions are relatively pressed and elastically deformed so as to be recessed.

この弾性変形により、内向き凸状部7eは外向き凸状部6eを乗り越え、かつ、上向き段部8bの下方部分は下向き段部6cの上方部分を乗り越えて、その直後のそれぞれの弾性復帰による上述の係止作用により噴射作動部材7および筒状操作部材8がスカート状保持部材6のカバー筒状部6aに保持される(図5参照)。   Due to this elastic deformation, the inward convex portion 7e gets over the outward convex portion 6e, and the lower portion of the upward step portion 8b gets over the upper portion of the downward step portion 6c, and immediately after each elastic recovery. The injection operation member 7 and the cylindrical operation member 8 are held by the cover cylindrical portion 6a of the skirt-shaped holding member 6 by the above-described locking action (see FIG. 5).

図6は、スカート状保持部材6のカバー筒状部6aとキャップ状部6nとの取付け対応関係を示している。   FIG. 6 shows a mounting correspondence relationship between the cover cylindrical portion 6a and the cap-shaped portion 6n of the skirt-shaped holding member 6.

この取付けに際しては例えば、
(61)容器本体1の底面側を、キャップ状部6nの内向きリブ状部6tなどの内周面部分で保持し、
(62)カバー筒状部6aの脚部6gをそれぞれキャップ状部6nの低棚状部6pの上に載置し、
(63)この載置状態のカバー筒状部6aを、キャップ状部6nに対して図6のB方向(周方向)に相対回動させる、
といった作業が行なわれる。
For this installation, for example,
(61) Hold the bottom surface side of the container body 1 with an inner peripheral surface portion such as the inward rib-shaped portion 6t of the cap-shaped portion 6n,
(62) The leg portions 6g of the cover tubular portion 6a are respectively placed on the low shelf-like portions 6p of the cap-like portion 6n,
(63) The cover cylindrical portion 6a in the mounted state is rotated relative to the cap-shaped portion 6n in the direction B (circumferential direction) in FIG.
Such work is performed.

上記(63)の相対回動操作により、脚部6gの外向き縦凸状部6jがキャップ状部6nの内向き縦凸状部6sを乗り越えてこれに係合し、脚部6gの外向き横凸状部6hが内向き横凸状部6rに係止され、また、脚部6gの対向側面の片方がキャップ状部6nの高壁状部6q(の非周方向部分)に係止された状態になる。すなわち、スカート状保持部材6のカバー筒状部6aとキャップ状部6nとが一体化して保持される。   By the relative rotation operation of (63) above, the outward vertical convex portion 6j of the leg portion 6g gets over and engages with the inward vertical convex portion 6s of the cap-like portion 6n, and the outward direction of the leg portion 6g. The horizontal convex portion 6h is locked to the inward horizontal convex portion 6r, and one of the opposite side surfaces of the leg portion 6g is locked to the high wall-shaped portion 6q (non-circumferential direction portion) of the cap-shaped portion 6n. It becomes a state. That is, the cover cylindrical portion 6a and the cap-shaped portion 6n of the skirt-like holding member 6 are integrally held.

なお、この相対回動操作に際して、脚部6gの切欠状部6mがキャップ状部6nの高壁状部6qの周方向部分に対応するので、当該脚部と当該周方向部分とがぶつかることはない。   In this relative rotation operation, the notch 6m of the leg 6g corresponds to the circumferential portion of the high wall 6q of the cap 6n, so that the leg and the circumferential portion do not collide. Absent.

また、脚部6gの外向き縦凸状部6jがキャップ状部6nの内向き縦凸状部6sを乗り越えるのは、上述したカバー筒状部6aの外向き凸状部6eおよび噴射作動部材7の内向き凸状部7eの場合と同じように、双方の縦凸状部が弾性変形,弾性復帰するからである。   Further, the outward vertical convex portion 6j of the leg portion 6g gets over the inward vertical convex portion 6s of the cap-shaped portion 6n because the outward convex portion 6e of the cover tubular portion 6a and the injection actuating member 7 described above. This is because, as in the case of the inward convex portion 7e, both the vertical convex portions are elastically deformed and elastically restored.

スカート状保持部材6の一体化されたカバー筒状部6aおよびキャップ状部6nを分離するには、例えばカバー筒状部6aをB方向とは逆方向に回動させて、脚部6g(カバー筒状部)の外向き縦凸状部6jがキャップ状部6nの内向き縦凸状部6sを乗り越えることにより、それまでの両者の係合状態が解除されればよい。   In order to separate the integrated cover cylindrical portion 6a and cap-shaped portion 6n of the skirt-shaped holding member 6, for example, the cover cylindrical portion 6a is rotated in the direction opposite to the B direction to form the leg portion 6g (cover). When the outward vertical convex part 6j of the cylindrical part) rides over the inward vertical convex part 6s of the cap-like part 6n, it is only necessary that the engagement state between the two is released.

このカバー筒状部6aの回動操作はキャップ状部6nに対する相対的なものであり、当該キャップ状部を当該カバー筒状部に対してB方向に回動させてもよい。   The turning operation of the cover tubular portion 6a is relative to the cap-like portion 6n, and the cap-like portion may be turned in the B direction with respect to the cover tubular portion.

スカート状保持部材6のカバー筒状部6aとキャップ状部6nとを分離することにより、例えば内容物消尽済みの容器本体1の取替えなどが可能となる。   By separating the cover cylindrical portion 6a and the cap-shaped portion 6n of the skirt-shaped holding member 6, for example, the container body 1 whose contents have been exhausted can be replaced.

本発明は上述の実施の形態に限定されるものではなく、例えば噴射作動部材7および筒状操作部材8を一体成形加工により作成してもよい。   The present invention is not limited to the above-described embodiment. For example, the injection actuating member 7 and the cylindrical operation member 8 may be formed by integral molding.

本発明が適用されるエアゾール式製品やポンプ式製品としては、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,芳香剤,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-type products and pump-type 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 foam, food, droplets (such as vitamins), pharmaceuticals, quasi-drugs, paints, horticultural agents, repellents (insecticides), cleaners, deodorants, fragrances, laundry pastes, urethane foams, There are various uses such as fire extinguishers, adhesives, and lubricants.

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、ピレスロイド,ジエチルトルアミドなどの殺虫剤・害虫忌避剤、酸化亜鉛などの制汗剤、ローズオイル、リナロールなどの香料、植物抽出物などの消臭剤、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 antiphlogistic analgesics such as methyl salicylate and indomethacin, disinfectants such as sodium benzoate and cresol, insecticides and insect repellents such as pyrethroid and diethyltoluamide, and zinc oxide. Perfumes such as sweat, rose oil and linalool, deodorants such as plant extracts, refreshing agents such as camphor and menthol, anti-asthma drugs such as ephedrine and adrenaline, sweeteners such as sucralose and aspartame, epoxy resins, urethane, etc. Adhesives and paints, dyes such as paraphenylenediamine and aminophenol, fire extinguishing agents such as ammonium dihydrogen phosphate, sodium and potassium hydrogen carbonate, etc. are used.

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.

エアゾール式製品の内容物噴射用ガスとしては、炭酸ガス,窒素ガス,圧縮空気,酸素ガス,希ガス,これらの混合ガスなどの圧縮ガスや、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。   As the gas for injecting the contents of aerosol products, compressed gas such as carbon dioxide, nitrogen gas, compressed air, oxygen gas, rare gas, and mixed gas thereof, and liquefied gas such as liquefied petroleum gas, dimethyl ether, and fluorocarbon are used. .

1:容器本体
1a:環状開口端部
2:マウンティングキャップ
3:ハウジング
4:ステム
4a:内容物の通路域
4b:横孔部
1: container main body 1a: annular opening end 2: mounting cap 3: housing 4: stem 4a: content passage area 4b: side hole

5:筒状の噴射部材
5a:直線状の内容物通路部(内側筒状部)
5b:噴射口
5c:外側筒状部
5d:環状のカム従動面(カム倣い面)
5e:計二個の外向き凸状部
5: Cylindrical injection member 5a: Linear content passage portion (inner cylindrical portion)
5b: injection port 5c: outer cylindrical portion 5d: annular cam driven surface (cam copying surface)
5e: Two outward convex portions in total

6:スカート状保持部材(カバー筒状部6a+キャップ状部6n)
6a:カバー筒状部
6b:環状の上向き段部
6c:環状の下向き段部
6d:計二個の縦スリット状部
6e:環状の外向き凸状部
6f:環状下端面
6g:脚部
6h:外向き横凸状部
6j:外向き縦凸状部
6k:対向側面
6m:切欠状部
6n:キャップ状部
6p:計四個の低棚状部
6q:計四個の高壁状部
6r:計四個の内向き横凸状部
6s:計四個の内向き縦凸状部
6t:計四個の内向きリブ状部
6: Skirt-shaped holding member (cover cylindrical portion 6a + cap-shaped portion 6n)
6a: Cover cylindrical portion 6b: annular upward step portion 6c: annular downward step portion 6d: total of two vertical slit-like portions 6e: annular outward convex portion 6f: annular lower end surface 6g: leg portion 6h: Outward lateral convex portion 6j: Outward vertical convex portion 6k: Opposing side surface 6m: Notch-shaped portion 6n: Cap-shaped portion 6p: Total of four low shelf-shaped portions 6q: Total of four high wall-shaped portions 6r: 4 inward horizontal convex portions 6s in total: 4 inward vertical convex portions 6t in total: 4 inward rib-shaped portions in total

7:天板筒状の噴射作動部材
7a:中央垂下筒状部
7b:カム作用垂下筒状部
7c:カム駆動面
7d:位置決め用垂下筒状部
7e:環状の内向き凸状部
7f:計六個の同期回動用垂下部
7g:計六個の切込み部分
7h:斜面
7: Top plate cylindrical injection operation member 7a: central hanging cylindrical portion 7b: cam acting hanging cylindrical portion 7c: cam drive surface 7d: positioning hanging cylindrical portion 7e: annular inwardly convex portion 7f: total 6 hanging parts for synchronous rotation 7g: 6 incisions 7h: slope

8:筒状操作部材
8a:計十二個(計六組)の縦リブ状部
8b:環状の上向き段部
8c:環状の下端面
8: Cylindrical operation member 8a: A total of twelve (total of six sets) vertical rib-shaped portions 8b: An annular upward stepped portion 8c: An annular lower end surface

A:筒状操作部材8の回動操作方向(図2参照)
B:カバー筒状部6aの回動方向(図6参照)
A: Rotation operation direction of the cylindrical operation member 8 (see FIG. 2)
B: Direction of rotation of the cover tubular portion 6a (see FIG. 6)

Claims (5)

容器本体の周方向に回動可能な内容物噴射用の操作部と、
前記操作部の回動操作にともなう当該操作部との直接のカム作用により、前記容器本体の上下方向へ移動する噴射部材と、
前記噴射部材に取り付けられて、当該噴射部材との連動により開閉状態が変化する内容物噴射作動用の弁作用部を有するステムと、を備え、
前記カム作用は、
それぞれ、山部およびこれに続く谷部からなるカム作用部単位が周方向に連続形成された、前記操作部のカム駆動面と、前記噴射部材のカム従動面との間のカム作用である、
ことを特徴とする内容物噴射操作機構。
An operation unit for jetting contents which can be rotated in the circumferential direction of the container body;
An injection member that moves in the vertical direction of the container main body by a direct cam action with the operation unit in accordance with the rotation operation of the operation unit;
A stem that is attached to the injection member and has a valve action part for contents injection operation in which the opening and closing state changes in conjunction with the injection member;
The cam action is
The cam action between the cam drive surface of the operation portion and the cam driven surface of the injection member, each of which is formed continuously in the circumferential direction by a cam action portion unit consisting of a peak portion and a valley portion following the peak portion,
The content injection operation mechanism characterized by the above-mentioned.
前記カム駆動面は、
前記操作部を構成する上側筒状部の周回下端部分に形成され、
前記カム従動面は、
前記噴射部材を構成する下側筒状部の周回上端部分に形成されている、
ことを特徴とする請求項1記載の内容物噴射操作機構。
The cam drive surface is
Formed at the lower end of the circumference of the upper cylindrical part constituting the operation part,
The cam follower surface is
It is formed at the upper end of the circumference of the lower cylindrical part constituting the injection member,
The content injection operation mechanism according to claim 1.
前記容器本体を保持するカバー部材を備え、
前記カバー部材は、
前記噴射部材の上下方向への移動を許容し、かつ、当該噴射部材の前記周方向への回動を阻止するための上下方向案内部を有している、
ことを特徴とする請求項1または2記載の内容物噴射操作機構。
A cover member for holding the container body;
The cover member is
A vertical guide for allowing the injection member to move in the vertical direction and preventing rotation of the injection member in the circumferential direction;
The content injection operation mechanism according to claim 1 or 2, wherein
請求項1乃至3のいずれかに記載の内容物噴射操作機構を備え、かつ、噴射用ガスおよび噴射対象物を前記容器本体に収容した、
ことを特徴とするエアゾール式製品。
The content injection operation mechanism according to any one of claims 1 to 3 is provided, and an injection gas and an injection object are accommodated in the container body.
Aerosol type product characterized by that.
請求項1乃至3のいずれかに記載の内容物噴射操作機構を備え、かつ、噴射対象物を前記容器本体に収容した、
ことを特徴とするポンプ式製品。
The content injection operation mechanism according to any one of claims 1 to 3 is provided, and an injection target is accommodated in the container body.
This is a pump-type product.
JP2012118436A 2012-05-24 2012-05-24 Contents injection operation mechanism, and aerosol type product and pump type product provided with this content injection operation mechanism Active JP5809108B2 (en)

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