JP2010095308A - Spouting container - Google Patents

Spouting container Download PDF

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JP2010095308A
JP2010095308A JP2008270034A JP2008270034A JP2010095308A JP 2010095308 A JP2010095308 A JP 2010095308A JP 2008270034 A JP2008270034 A JP 2008270034A JP 2008270034 A JP2008270034 A JP 2008270034A JP 2010095308 A JP2010095308 A JP 2010095308A
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cap
rib
movable
movable plug
engagement
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JP5161027B2 (en
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Tomoaki Yoshino
智明 吉野
Kazuhisa Yoshimura
和寿 吉村
Takayuki Goto
孝之 後藤
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Taisho Pharmaceutical Co Ltd
Yoshino Kogyosho Co Ltd
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Taisho Pharmaceutical Co Ltd
Yoshino Kogyosho Co Ltd
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a new spouting container which can perform a sure spouting by one operation and is ease to use without forcing a user to do a complicated operation. <P>SOLUTION: The spouting container includes: a container body having an opening part and filled with a content on its inside; a spouting tool which has a shell member mounted on the opening part of the container body, and makes it possible to spout the content by pulling up a movable plug exposing from the shell member to make it possible to feed the content from the container body to the inside of the shell member; and a cap attachably/detachably fitted on the opening part of the container body. A peripheral wall 31b surrounding the movable plug 13 when the cap is closed is hung from the top wall 31a of the inserting body 31 of the cap. On the inner face of the peripheral wall, a plurality of ribs 31c1-31c3 attachably/detachably engaging to the lip 13h expanding from the outer face of the movable plug when the cap is closed is provided. A plurality of the ribs are provided at certain intervals in the vertical direction, and the heights are made successively lower toward the lower parts. <P>COPYRIGHT: (C)2010,JPO&INPIT

Description

本発明は、容器本体の口部に装着されたシェル部材から露出する可動栓の引き上げで、容器本体からの内容物をシェル部材の内側に供給することにより、当該内容物の注出を可能にする注出器を備え、当該可動栓の引き上げをキャップの取り外しに同期させた注出容器に関するものである。   The present invention allows the contents to be poured out by supplying the contents from the container body to the inside of the shell member by pulling up the movable stopper exposed from the shell member attached to the mouth of the container body. It is related with the extraction container which provided the extractor which carries out and synchronized raising of the said movable stopper with removal of the cap.

注出容器では、可動栓の先端周りに、外向きに環状に膨出する係合部(第一係合部)を設け、この係合部をキャップの裏面に設けた被係合部(第二係合部)に着脱可能に係合させることで、キャップの取り外しと同時に、可動栓を引き上げるように構成するものがある(例えば、特許文献1参照)。
特許第3759428号明細書
In the dispensing container, an engaging portion (first engaging portion) that bulges outward in an annular shape is provided around the tip of the movable stopper, and the engaged portion (first engaging portion) provided on the back surface of the cap. There is a configuration in which the movable stopper is pulled up simultaneously with the removal of the cap by detachably engaging the two engaging portions) (see, for example, Patent Document 1).
Japanese Patent No. 3759428

しかしながら、上記係合は一般的に、可動栓に設けた係合部に対してキャップに設けた被係合部をアンダーカット嵌合(段差による引っ掛かりを伴う嵌合)させる構成によって実現されるものであるところから、可動栓の被係合部からキャップの係合部が外れるときには、互いを弾くように外れるため、その反力によって折角引き上げた可動栓を再び押し下げてしまうことがあった。   However, the above engagement is generally realized by a configuration in which an engaged portion provided on the cap is undercut fitted (fitted with a catch due to a step) to an engaging portion provided on the movable stopper. Therefore, when the engaging portion of the cap is disengaged from the engaged portion of the movable plug, the cap is disengaged so as to repel each other, so that the movable plug, which has been raised by the reaction force, may be pushed down again.

こうした可動栓の下げ戻しは、可動栓を確実に押し上げることで実現される流路形成を妨げるため、折角、キャップを開けると同時に可動栓を引き上げたにもかかわらず、それとは別に再度の引き上げという煩雑な操作を使用者に強制することになる。   Such lowering of the movable stopper prevents the formation of the flow path realized by reliably pushing up the movable stopper, so that the movable stopper is lifted at the same time as the movable stopper is lifted at the same time when the cap is opened. A complicated operation is forced on the user.

これに対し、可動栓に対してシェル部材で抵抗を与えて当該可動栓の上下動を規制する方法も考えられるが、この場合、可動栓本来の動作(内容物の貯留及び注出の切り換えを司る上下動)が損なわれてしまうという新たな問題が生じる。   On the other hand, a method of restricting the vertical movement of the movable plug by giving resistance to the movable plug with a shell member is also conceivable. A new problem arises that the up-and-down movement) is impaired.

また、物を製造するのに際して、寸法誤差等の製品バラツキを免れ得ないが、係合部に対して被係合部を着脱可能に係合させるような構成の場合、そのバラツキが大きく影響することがある。このため、同一規格品として生産したものであっても、被係合部が係合部に掛かり過ぎて互いの係合が解除され難い製品や、反対に、係合部に対する被係合部の掛かりが小さくて互いの係合が解除され易い製品が混在する場合がある。   Further, when manufacturing an object, product variations such as dimensional errors cannot be avoided, but in the case of a configuration in which the engaged portion is detachably engaged with the engaging portion, the variation greatly affects. Sometimes. For this reason, even if the product is produced as the same standard product, the engaged part is excessively engaged with the engaging part and the mutual engagement is difficult to be released. There may be a mixture of products that are small in engagement and easily disengaged from each other.

特に、嵌合強度が高く係合を解除し難い製品では、キャップを取り外した後に生じる反力も大きいため、それに起因する可動栓の押し下げも起こり易い。このため、可動栓を引き上げつつも、製造バラツキに関係なく、一定の適切な力で係合を解除することができる製品の需要が高まっている。   In particular, in a product that has a high fitting strength and is difficult to release the engagement, the reaction force generated after the cap is removed is large, so that the movable stopper is easily pushed down. For this reason, there is an increasing demand for products that can be disengaged with a certain appropriate force regardless of manufacturing variations while pulling up the movable stopper.

本発明の目的とするところは、可動栓に設けた第一係合部にキャップの裏側に設けた第二係合部を着脱可能に係合させることで、キャップの取り外しと同時に可動栓を引き上げる構成の注出容器において、使用者に煩雑な操作を強要することなく、1回の操作により確実な注出を可能にする使い勝手の良好な、新規な注出容器を提供することである。   An object of the present invention is to pull up the movable plug simultaneously with the removal of the cap by detachably engaging the second engagement portion provided on the back side of the cap with the first engagement portion provided on the movable plug. An object of the present invention is to provide a novel dispensing container that is easy to use and enables reliable dispensing by a single operation without forcing the user to perform complicated operations.

本発明の注出容器は、口部を有しその内側に内容物が充填される容器本体と、
この容器本体の口部に装着されるシェル部材を有し、当該シェル部材から露出する可動栓の引き上げで、容器本体からの内容物をシェル部材の内側に供給可能とすることにより、当該内容物の注出を可能にする注出器と、
この注出器の上側に配置される天壁を有し、容器本体の口部に着脱可能に取り付けられるキャップとを備え、
このキャップの天壁から当該キャップを閉じたときに可動栓を取り囲む周壁を垂下させると共に、当該周壁の内面に、当該キャップを閉じたときに可動栓の外面から膨出する第一係合部に着脱可能に係合する第二係合部を設け、キャップの取り外しと同時に、可動栓を引き上げる注出容器であって、
前記第二係合部を上下方向に沿って間隔を空けて複数設け、当該第二係合部の高さを下方に向かうに従って順次低くすることを特徴とするものである。
The dispensing container of the present invention has a container body that has a mouth portion and is filled with contents inside, and
A shell member attached to the mouth of the container body, and the contents from the container body can be supplied to the inside of the shell member by pulling up the movable stopper exposed from the shell member. A dispenser that enables the dispensing of
It has a top wall arranged on the upper side of the dispenser, and includes a cap that is detachably attached to the mouth of the container body.
When the cap is closed from the top wall of the cap, the peripheral wall surrounding the movable plug is suspended, and the inner surface of the peripheral wall is extended to the first engagement portion that bulges from the outer surface of the movable plug when the cap is closed. A second container that is detachably engaged, and is a dispensing container that raises the movable stopper simultaneously with the removal of the cap,
A plurality of the second engaging portions are provided at intervals along the vertical direction, and the height of the second engaging portions is sequentially lowered as it goes downward.

可動栓に設ける第一係合部としては、先端注出口(軸線)周りに環状に膨出させたものや、先端注出口(軸線)周りに間隔を空けて膨出させ、間欠に形成されたもの等が挙げられる。但し、先端注出口(軸線)周りに間隔を空けて膨出させる場合には、キャップに設けた第二係合部との係合が確実に実現されるように配置するのは勿論である。   As the first engaging portion provided in the movable stopper, it was formed in an annular shape around the tip spout (axis) or swelled at intervals around the tip spout (axis) and formed intermittently And the like. However, when expanding around the tip spout (axis) with an interval, it is of course arranged so that the engagement with the second engagement portion provided on the cap is reliably realized.

これに対し、キャップに設けた第二係合部も、可動栓を取り囲むように周壁の内面に沿って軸線周りに環状に膨出させたリブや、当該周壁の内面に沿って軸線周りに間隔を空けて膨出させ、間欠に形成された複数のリブ等が挙げられる。第二係合部を間欠のリブとした場合、当該リブ(間欠部分)を、軸線方向に隣り合うリブ(間欠部分)と、軸線周りに互い違いになるように配置できる。但し、周壁の内面に沿って軸線周りに間隔を空けて膨出させる場合にも、可動栓に設けた第一係合部との係合が確実に実現されるように配置するのは勿論である。   On the other hand, the second engaging portion provided on the cap is also spaced around the axis along the inner surface of the peripheral wall and the rib bulged around the axis along the inner surface of the peripheral wall so as to surround the movable plug. And a plurality of ribs formed intermittently. When the second engaging portion is an intermittent rib, the rib (intermittent portion) can be arranged so as to alternate with the rib (intermittent portion) adjacent in the axial direction around the axis. However, it is of course arranged so that the engagement with the first engagement portion provided on the movable stopper is reliably realized even when the gap is expanded around the axis along the inner surface of the peripheral wall. is there.

第二係合部の高さを下方に向かうに従って順次低くするときには、例えば、上下の中間に位置する第二係合部の高さを基準寸法とし、上側にある第二係合部程、その高さを高くする一方、下側にある第二係合部程、その高さを低くする方法が挙げられる。また、当該第二係合部を上下(軸線)方向に設けるに際し、その間隔は、適宜調整できるが、各第二係合部が可動栓の第一係合部との係合を、各々解除し得る間隔を採ることが好ましい。   When the height of the second engagement portion is gradually decreased as it goes downward, for example, the height of the second engagement portion located in the middle between the upper and lower sides is set as a reference dimension, There is a method of increasing the height while decreasing the height of the second engaging portion on the lower side. Moreover, when providing the said 2nd engaging part in an up-down (axis) direction, the space | interval can be adjusted suitably, but each 2nd engaging part cancels | releases each engagement with the 1st engaging part of a movable stopper, respectively. It is preferable to take a possible interval.

キャップは、単一部材で構成することも、内装体と外装体との二重壁構造からなり、第二係合部を内装体に設けてなるものとすることもできる。キャップは、容器本体から上向きに外す構成であれば、容器本体に対しては、螺着させたものでも、着脱可能にアンダーカット嵌合させたものでもよい。   The cap may be formed of a single member, or may have a double wall structure of an interior body and an exterior body, and the second engagement portion may be provided on the interior body. As long as the cap is configured to be removed upward from the container body, the cap may be screwed or detachably undercut fitted to the container body.

本発明では、キャップの天壁から垂下する周壁の内面に、上下方向(キャップ軸線方向)に沿って間隔を空けて複数の第二係合部を設けたことで、キャップを閉めた状態では、複数の第二係合部のうち、最上段にある第二係合部を可動栓に設けた第一係合部に係合させる。しかも、当該第二係合部の高さは、下方に向かうに従って順次低くなるため、最上段にある第二係合部は、第一係合部に対して最も高い係合力(嵌合強度)を発揮し、他の第二係合部は、下方に向かって順次、その嵌合強度が弱まる構成となる。   In the present invention, on the inner surface of the peripheral wall depending from the top wall of the cap, by providing a plurality of second engaging portions at intervals along the vertical direction (cap axis direction), in a state where the cap is closed, Of the plurality of second engaging portions, the second engaging portion at the uppermost stage is engaged with the first engaging portion provided on the movable stopper. And since the height of the said 2nd engaging part becomes low sequentially as it goes below, the 2nd engaging part in the uppermost stage has the highest engaging force (fitting strength) with respect to the 1st engaging part. The other second engaging portions are configured such that the fitting strength is gradually reduced downward.

このため、キャップを引き上げた当初は、複数の第二係合部のうち、最上段にある第二係合部が可動栓の第一係合部に引っ掛かった状態で可動栓を引き上げるが、その嵌合強度を越える力が加わると、当該係合が解除される。このとき、最上段にある第二係合部の高さが可動栓に設けた第一係合部との関係で適正であれば、当該第二係合部と第一係合部との嵌合強度も適正であるため、可動栓の第一係合部が最上段の第二係合部を乗り越えて互いの係合が解除されるときに、可動栓が下向きに弾かれることで、再び押し下げられることはない。   For this reason, when the cap is initially lifted, the movable plug is pulled up with the second engaging portion at the top of the plurality of second engaging portions being caught by the first engaging portion of the movable plug. When a force exceeding the fitting strength is applied, the engagement is released. At this time, if the height of the second engaging portion in the uppermost stage is appropriate in relation to the first engaging portion provided in the movable stopper, the fitting between the second engaging portion and the first engaging portion is performed. Since the combined strength is also appropriate, when the first engaging part of the movable plug gets over the second engaging part of the uppermost stage and the mutual engagement is released, the movable plug is flipped downward, so that It will not be pushed down.

これに対し、最上段にある第二係合部の高さが可動栓に設けた第一係合部との関係で適正ではなく、当該第二係合部と第一係合部との嵌合強度が過度である場合には、可動栓は、その第一係合部が最上段の第二係合部との係合の解除に伴い当該最上段の第二係合部によって下向きに弾かれる場合がある。この場合であっても、最上段の第二係合部の下に存在する他の第二係合部が第一係合部と係合することで、再度可動栓を引き上げることが可能である。   On the other hand, the height of the second engaging portion at the uppermost stage is not appropriate in relation to the first engaging portion provided in the movable stopper, and the fitting between the second engaging portion and the first engaging portion is not appropriate. When the combined strength is excessive, the movable stopper is elastically moved downward by the uppermost second engaging portion when the first engaging portion is disengaged from the uppermost second engaging portion. There is a case where Even in this case, it is possible to pull up the movable stopper again by engaging another second engaging portion existing below the second engaging portion in the uppermost stage with the first engaging portion. .

しかも、当該他の第二係合部は、最上段の第二係合部よりも嵌合強度が弱いため、当初の嵌合強度よりも弱い力で、当該係合が解除される。かかる構成によれば、第二係合部との係合の解除に伴い当該第二係合部によって下向きに弾かれる力(第一係合部に加わる反力)が弱まることで、可動栓の押し下げを抑制することができる。   Moreover, since the other second engaging portion has a lower fitting strength than the uppermost second engaging portion, the engagement is released with a force weaker than the initial fitting strength. According to such a configuration, as the engagement with the second engagement portion is released, the force repelled downward by the second engagement portion (reaction force applied to the first engagement portion) is weakened, so that the movable plug Pushing down can be suppressed.

即ち、本発明によれば、キャップの第二係合部を可動栓の第一係合部に係合させることでキャップの取り外しと同時に可動栓を引き上げても、当該係合の解除に伴い可動栓が再び押し下げられることがないため、可動栓を使用者に再び引き上げさせるような煩雑な操作を強要することなく、1回の操作により確実な注出を可能にすることができる。従って、本発明によれば、使い勝手の良好な、新規な注出容器を提供することができる。   That is, according to the present invention, even if the movable plug is pulled up simultaneously with the removal of the cap by engaging the second engaging portion of the cap with the first engaging portion of the movable plug, the cap can be moved along with the release of the engagement. Since the plug is not pushed down again, it is possible to reliably dispense by one operation without forcing a complicated operation to cause the user to lift the movable plug again. Therefore, according to the present invention, it is possible to provide a novel dispensing container that is easy to use.

しかも、キャップの第二係合部又は可動栓の第一係合部に製造バラツキが生じても、キャップに設けた複数の第二係合部のうちのいずれかが、当該係合に係る第一、第二係合部における寸法誤差等のバラツキを補完するため、製造バラツキに関係なく、一定の適切な力で係合を解除することができる。   In addition, even if manufacturing variation occurs in the second engagement portion of the cap or the first engagement portion of the movable stopper, any one of the plurality of second engagement portions provided in the cap is associated with the first engagement portion. In order to compensate for variations such as dimensional errors in the first and second engaging portions, the engagement can be released with a certain appropriate force regardless of manufacturing variations.

なお、本発明に従えば、キャップに係る第二係合部は、少なくとも上下方向に二段あればよいが、好適には三段以上あれば、より確実にキャップの第二係合部に係合させた可動栓の第一係合部を緩やかに解除することができる。   According to the present invention, the second engaging portion related to the cap may be at least two stages in the vertical direction, but preferably three or more stages are more reliably engaged with the second engaging portion of the cap. The first engaging portion of the combined movable stopper can be released gently.

特に、第二係合部を軸線方向に間隔を空けて三段に設ければ、中段に存在する第二係合部での第一係合部との引っ掛かりを基準とすることで、上段に存在する第二係合部では、中段に存在する第二係合部よりも大きく引っ掛かり、下段に存在する第二係合部では、中段に存在する第二係合部よりも小さく引っ掛かる。   In particular, if the second engagement portion is provided in three stages at intervals in the axial direction, the upper engagement can be achieved by using the second engagement portion existing in the middle as a reference. The existing second engaging portion is hooked larger than the second engaging portion existing in the middle stage, and the second engaging portion existing in the lower stage is hooked smaller than the second engaging portion existing in the middle stage.

即ち、少なくとも、第二係合部を軸線方向に間隔を空けて三段に設ければ、寸法公差が大きいときと、小さいときの両方を考慮することができるので、最も単純な構造で、寸法公差の大小を考慮に入れた可動栓の押し下げ防止を実現することができる。また、かかる構成によれば、大量生産を安価に実現することができる。   In other words, at least if the second engagement portion is provided in three stages with an interval in the axial direction, it is possible to consider both when the dimensional tolerance is large and when it is small. It is possible to prevent the movable stopper from being pushed down in consideration of the tolerance. Moreover, according to this structure, mass production can be realized at low cost.

また、第二係合部を、軸線周りに形成された間欠のリブとすれば、係合面積が効率的に削減されるため、係合が外れるに際に生じる弾きの抑制に更に有効である。   In addition, if the second engagement portion is an intermittent rib formed around the axis, the engagement area is efficiently reduced, which is more effective in suppressing the flipping that occurs when the engagement is disengaged. .

更に、第二係合部を間欠のリブとした場合には、当該リブを、軸線方向に隣り合う間欠部分が軸線周りに互い違いになるように配置すれば、キャップとの係合機能を確保しつつも軸線方向に隣り合うリブを効率的に接近させることができるので、キャップの設計自由度を高めつつ係合が外れるに際に生じる弾きを抑制することができる。   Furthermore, when the second engagement portion is an intermittent rib, the engagement function with the cap is ensured by disposing the rib so that intermittent portions adjacent to each other in the axial direction are staggered around the axis. However, since the ribs adjacent to each other in the axial direction can be efficiently approached, the flipping that occurs when the engagement is disengaged can be suppressed while increasing the degree of freedom in designing the cap.

加えて、本発明に係るキャップを、内装体と外装体との二重壁構造とし、第二係合部を内装体に設ければ、内装体を交換するだけで済むため、既存の外装体を流用することで汎用性の高い注出容器とすることができる。   In addition, if the cap according to the present invention has a double wall structure of an interior body and an exterior body, and the second engagement portion is provided in the interior body, it is only necessary to replace the interior body. By diverting, a highly versatile dispensing container can be obtained.

以下、図面を参照して、本発明の注出容器を詳細に説明する。   Hereinafter, the dispensing container of the present invention will be described in detail with reference to the drawings.

図1は、本発明の一形態である計量注出容器を側面から示す要部断面図である。また、図2は、同形態に係る計量注出器10を、キャップ30を取り外した状態で示す要部断面図である。更に、図3は、容器本体20の口部21を省略して示す図2のX−X断面図である。なお、図2は、本発明に従う計量注出容器を図3のY−Y断面に相当する断面にて示す。加えて、図4(a),(b)はそれぞれ、同形態に係る計量注出器からの注出が可能な状態及び、その注出時の状態を示す要部断面図である。図5は、キャップ30の内装体31を一部断面で示す正面図である。   FIG. 1 is a cross-sectional view of an essential part showing a weighing and dispensing container according to one embodiment of the present invention from the side. Moreover, FIG. 2 is principal part sectional drawing which shows the metering dispenser 10 which concerns on the form with the cap 30 removed. 3 is a cross-sectional view taken along the line XX of FIG. 2 with the mouth 21 of the container body 20 omitted. 2 shows a metering container according to the present invention in a cross section corresponding to the YY cross section of FIG. In addition, FIGS. 4 (a) and 4 (b) are cross-sectional views of the main part showing the state in which the metering dispenser according to the same embodiment can be dispensed and the state at the time of dispensing. FIG. 5 is a front view showing the inner body 31 of the cap 30 in a partial cross section.

符号11は、図1に示すように、容器本体20の口部21の外側に装着される装着筒11aを有し当該装着筒11aから上方に膨出するドーム部11b及び当該ドーム部11bから起立する筒状部11cが形成されたシェル部材である。   As shown in FIG. 1, the reference numeral 11 has a mounting cylinder 11a mounted on the outside of the mouth portion 21 of the container body 20, and has a dome 11b that bulges upward from the mounting cylinder 11a and stands up from the dome 11b. It is a shell member in which the cylindrical part 11c to be formed was formed.

符号12は、シェル部材11の内側に嵌合して当該シェル部材11と口部21とを仕切る仕切壁12aを有する中栓である。仕切壁12aからは、シャフト部12bが軸線Oに沿って起立する。   Reference numeral 12 denotes an inner plug having a partition wall 12 a that fits inside the shell member 11 and partitions the shell member 11 and the mouth portion 21. From the partition wall 12a, the shaft portion 12b rises along the axis O.

また、仕切壁12aには、図2に示すように、軸線O(シャフト部12b)周りに下向きに窪んだ環状凹部12cが形成されている。環状凹部12cには、図3に示すように、軸線O周りに間隔を空けて、容器本体20の倒立によって当該容器本体20の内容物をシェル部材11の内側に供給する3つの貫通孔(以下、「供給孔」という)A1が形成されている。本形態の供給孔A1は、図2に示すように、環状凹部12cを形作る内筒部12c1と底部12c2との間の領域に形成されている。 Further, as shown in FIG. 2, the partition wall 12a is formed with an annular recess 12c that is recessed downward around the axis O (shaft portion 12b). As shown in FIG. 3, the annular recess 12 c has three through-holes (hereinafter referred to as the contents of the container main body 20 supplied to the inside of the shell member 11 when the container main body 20 is inverted with a space around the axis O. , referred to as "feed holes") A 1 is formed. As shown in FIG. 2, the supply hole A 1 in this embodiment is formed in a region between the inner cylinder portion 12 c 1 and the bottom portion 12 c 2 that form the annular recess 12 c.

なお、本形態では、仕切壁12aの裏面(下面)に、口部21の内側を垂下する筒状部12dが一体に設けられている。この筒状部12dの外面には更に、当該外面の一部から膨出し、口部21の内面を液密状態に保持する環状のシール部12eが一体に設けられている。   In this embodiment, a cylindrical portion 12d that hangs down from the inside of the mouth portion 21 is integrally provided on the back surface (lower surface) of the partition wall 12a. Further, an annular seal portion 12e that bulges from a part of the outer surface and holds the inner surface of the mouth portion 21 in a liquid-tight state is integrally provided on the outer surface of the cylindrical portion 12d.

また、本発明によれば、中栓12がシェル部材11の内側に嵌合することで、シェル部材11と中栓12とを一体化させているが、本形態では、仕切壁12aの外縁上部に軸線O周りに環状の嵌合膨出部12fを形成し、この嵌合膨出部12fを、シェル部材11の装着筒11aとドーム部11bとの連結部内側に環状に設けられた嵌合溝部11dにアンダーカット嵌合(段差による引っ掛かりを伴う嵌合)させることで、かかる一体化を実現している。   In addition, according to the present invention, the inner plug 12 is fitted inside the shell member 11 so that the shell member 11 and the inner plug 12 are integrated. However, in this embodiment, the outer edge upper portion of the partition wall 12a. An annular fitting bulging portion 12f is formed around the axis O, and the fitting bulging portion 12f is fitted in an annular shape inside the connecting portion between the mounting cylinder 11a of the shell member 11 and the dome portion 11b. Such integration is realized by undercut fitting (fitting with a catch due to a step) to the groove 11d.

符号13は、シャフト部12bに沿って上下に移動可能に支持される可動栓である。可動栓13は、その内側に貫通孔が形成された筒体からなる。可動栓13を形作る周壁13aは、シャフト部12bを取り囲む大径の可動栓基部13a1と、この可動栓基部13a1と一体に繋がり、当該可動栓基部13a1よりも小径な可動栓本体部13a2とからなる。 Reference numeral 13 denotes a movable stopper supported so as to be movable up and down along the shaft portion 12b. The movable plug 13 is formed of a cylindrical body having a through hole formed therein. Wall 13a which forms a movable plug 13, the large diameter movable plug base 13a 1 of which surrounds the shaft portion 12b, connected integrally with the movable plug base 13a 1, small diameter movable cap body 13a than the movable plug base 13a 1 It consists of two .

周壁13aのうち、可動栓基部13a1の内面には、シャフト部12bに摺動可能に接触する内面シール部13bを備える。また、内面シール部13bよりも上方の貫通孔によって先端注出口A2に通じる流路Cが形成される。内面シール部13bは、可動栓基部13a1の内面からシャフト部12bを取り囲むように環状に膨出することで、シャフト部12bとの間の液密性を確保すると共に、シャフト部12bに沿った可動栓13のスムースな上下動も確保する。 Of the peripheral wall 13a, the inner surface of the movable plug base portion 13a 1 is provided with an inner surface seal portion 13b that slidably contacts the shaft portion 12b. Further, the flow path C leading to the tip spout A 2 by the upper through hole is formed from the inner surface seal portion 13b. The inner surface seal portion 13b, by bulging circular to surround the shaft portion 12b from the inner surface of the movable plug base 13a 1, while securing liquid tightness between the shaft portion 12b, along the shaft portion 12b Smooth vertical movement of the movable stopper 13 is also ensured.

可動栓13の流路Cには、可動栓基部13a1と可動栓本体部13a2との内径差によって、軸線O周りに内向きに突出する環状段差13cが形成されている。 In the flow path C of the movable plug 13, an annular step 13 c that protrudes inward around the axis O is formed due to the difference in inner diameter between the movable plug base 13 a 1 and the movable plug main body 13 a 2 .

これに対し、シャフト部12bには、その先端外縁を軸線O周りに環状に窪ませてなる環状段差12gが形成されている。この環状段差12gは、可動栓13の環状段差13cと接触することで、可動栓13の下死点を規定する。可動栓13の先端(以下、「可動栓先端」という)13eは、当該可動栓13が下死点にある状態でも、図1等に示すように、シェル部材11の筒状部11cを通って外界に露出する。   On the other hand, an annular step 12g is formed in the shaft portion 12b. The annular step 12g is formed by recessing the outer edge of the tip portion around the axis O. The annular step 12g defines the bottom dead center of the movable plug 13 by contacting the annular step 13c of the movable plug 13. The tip of the movable plug 13 (hereinafter referred to as “movable plug tip”) 13e passes through the cylindrical portion 11c of the shell member 11 as shown in FIG. 1 and the like even when the movable plug 13 is at the bottom dead center. Exposed to the outside world.

また、可動栓13には、図2に示すように、可動栓基部13a1と可動栓本体部13a2との外径差によって、軸線O周りに外向きに突出する環状段差13dが形成されている。 Further, as shown in FIG. 2, the movable stopper 13 is formed with an annular step 13d protruding outward around the axis O due to the difference in outer diameter between the movable stopper base 13a 1 and the movable stopper body 13a 2. Yes.

これに対し、筒状部11cには、その下端内縁を軸線O周りに環状に窪ませてなる環状段差11eが形成されている。この環状段差11eは、可動栓13の環状段差13dと接触することで、可動栓13の上死点を規定する。これにより、可動栓13が上死点に達しても、当該可動栓13は、図2等に示すように、シェル部材11から抜け落ちることがない。   On the other hand, the cylindrical part 11c is formed with an annular step 11e formed by recessing the inner edge of the lower end around the axis O in an annular shape. The annular step 11 e defines the top dead center of the movable plug 13 by contacting the annular step 13 d of the movable plug 13. Thereby, even if the movable stopper 13 reaches the top dead center, the movable stopper 13 does not fall off from the shell member 11 as shown in FIG.

なお、筒状部11cの内面には、可動栓本体部13a2を取り囲んで当該内面の一部から一体に膨出する環状のシール部11fが一体に形成されている。シール部11fは、可動栓本体部13a2に摺動可能に接触することで、可動栓本体部13a2との間の液密性を確保すると共に、シャフト部12bに沿った可動栓13のスムースな上下動も確保する。 Note that the inner surface of the cylindrical portion 11c, the seal portion 11f of the annular bulging integrally from a portion of the inner surface are integrally formed surrounding the movable cap body 13a 2. Seal portion 11f, by slidably contacting the movable cap body 13a 2, while ensuring the tightness between the movable cap body 13a 2, Smooth movable plug 13 along the shaft portion 12b Secure vertical movement.

これに対し、中栓12の環状凹部12cは、図1等に示すように、可動栓13を押し下げたときに、その可動栓基部13a1の下端部を収納するように形成されている。このため、本発明では、可動栓13の下端部外面を、環状凹部12cを形作る外筒部12c3の側面fに摺動可能に接触して当該供給孔A1を閉じるシール部として機能させる。 On the other hand, as shown in FIG. 1 and the like, the annular recess 12c of the inner plug 12 is formed so as to accommodate the lower end portion of the movable plug base 13a 1 when the movable plug 13 is pushed down. Therefore, in the present invention, the lower end outer face of the movable plug 13, to function as a seal portion for closing the supply holes A 1 and slidably contact with the side surface f of the outer cylindrical portion 12c 3 which form an annular recess 12c.

特に、本形態では、図2に示すように、可動栓基部13a1の下端部外面の一部を、その軸線O周りに環状に膨出させ、膨出部13fを設け、この膨出部13fを外面シール部(以下、「外面シール部13f」という)とする。これにより、後述のキャップ30の取り外しに伴う可動栓13の引き上げで、図2に示すように、供給孔A1を開いてシェル部材11の内側に容器本体20からの内容物を供給する一方、当該キャップ30の取り付けに伴う可動栓13の押し下げで、図1に示すように、供給孔A1を閉じてシェル部材11の内側に容器本体20からの内容物が供給されることを阻止する。 In particular, in this embodiment, as shown in FIG. 2, a part of the outer surface of the lower end of the movable plug base 13a 1 is bulged around its axis O to provide a bulged portion 13f, and this bulged portion 13f Is an outer seal part (hereinafter referred to as “outer seal part 13f”). Thereby, by pulling up the movable stopper 13 with the removal of the cap 30 described later, as shown in FIG. 2, the supply hole A 1 is opened to supply the contents from the container body 20 to the inside of the shell member 11, As shown in FIG. 1, the push-down of the movable stopper 13 accompanying the attachment of the cap 30 closes the supply hole A 1 and prevents the contents from the container body 20 from being supplied inside the shell member 11.

これに対し、可動栓本体部13a2を形作る周壁には、図4に示すように、シェル部材11と中栓12との間に形成された貯留空間Rを流路Cに通じさせる複数の連通孔A3が形成されている。連通孔A3は、可動栓13の引き上げで、図2に示すように、筒状部11cの内面で閉じられるときには、貯留空間R内の内容物を流路Cに導くことなく封止される一方、可動栓13の押し下げで、図4に示すように、貯留空間R内の内容物を当該流路Cに導く。これにより、可動栓13の引き上げで、先端注出口A2に通じる連通孔A3を筒状部11cで閉じる一方、当該可動栓13の押し下げで、連通孔A3を筒状部11cから開くことでシェル部材11内の内容物を先端注出口A2から注出することができる。 On the other hand, the peripheral wall forming the movable plug body 13a 2 has a plurality of communication paths that allow the storage space R formed between the shell member 11 and the inner plug 12 to communicate with the flow path C, as shown in FIG. A hole A 3 is formed. The communication hole A 3 is sealed without leading the contents in the storage space R to the flow path C when the movable plug 13 is pulled up and closed on the inner surface of the cylindrical portion 11 c as shown in FIG. On the other hand, the contents in the storage space R are guided to the flow path C as shown in FIG. Thus, in pulling the movable plug 13, while closing the communication hole A 3 leading to the tip spout A 2 in the cylindrical portion 11c, with depression of the movable plug 13, opening the communication hole A 3 from the cylindrical portion 11c in may be pouring the contents of the shell member 11 from the tip spout a 2.

符号14は、図4に示すように、シャフト部12bの先端に、可動栓13を押し下げたときに、先端注出口A2を流路Cから開閉可能に封止する弾性弁である。弾性弁14は、弁体14aを有し、この弁体14aが波形の弾性部14bを介して一体成形されている。 Reference numeral 14, as shown in FIG. 4, the tip of the shaft portion 12b, when depressing the movable plug 13 is an elastic valve for openably sealing the tip spout A 2 from the channel C. The elastic valve 14 has a valve body 14a, and the valve body 14a is integrally formed through a corrugated elastic portion 14b.

弁体14aは、図4(a)に示すように、先端注出口A2を形作る先端注出口縁部13gに抜け止め保持されるフランジ部14a1と、このフランジ部14a1に一体に繋がり先端注出口A2から露出する押圧部14a2とからなる。 The valve body 14a, as shown in FIG. 4 (a), a flange portion 14a 1 which is retaining held at the tip spout edge portion 13g which forms the tip spout A 2, tip lead integrally with the flange portion 14a 1 Note consisting pressing part 14a 2 Metropolitan exposed from the outlet A 2.

押圧部14a2には、その軸線O周りに複数の切り欠き14a3が形成されている。これにより、弁体14aが弾性部14bからの付勢力に抗して可動栓13の流路C内に押し込まれて、フランジ部14a1が先端注出口縁部13gから離間すると、図4(b)に示すように、流路C内の内容物は、先端注出口A2と切り欠き14a3との間の隙間を経て外界に注出することができる。逆に、弁体14aの押し込みを解除すれば、図4(a)に示すように、弁体14aは弾性部14bからの付勢力により先端注出口A2を封止する。 A plurality of notches 14a 3 are formed around the axis O of the pressing portion 14a 2 . As a result, when the valve body 14a is pushed into the flow path C of the movable plug 13 against the urging force from the elastic portion 14b and the flange portion 14a 1 is separated from the tip spout edge portion 13g, FIG. ), The content in the channel C can be poured out to the outside through a gap between the tip spout A 2 and the notch 14a 3 . Conversely, if released pushing the valve body 14a, as shown in FIG. 4 (a), the valve body 14a is to seal the tip spout A 2 by the urging force of the elastic portion 14b.

また、可動栓13には、その先端注出口A2周りに、外向きに環状に膨出する第一係合部たるリップ13hが設けられている。本形態では、リップ13hをキャップ30の裏側から垂下された周壁31b内面に設けた第二係合部たるリブ31cに着脱可能にアンダーカット嵌合させることで、図2に示すように、キャップ30の取り外しと同時に、可動栓13を引き上げるように構成している。 Further, the movable plug 13 at its distal end spout A 2 around the first engagement portion serving lip 13h bulged annularly disposed outwardly. In this embodiment, the lip 13h is detachably undercut fitted to the rib 31c, which is the second engaging portion provided on the inner surface of the peripheral wall 31b suspended from the back side of the cap 30, so that the cap 30 is shown in FIG. Simultaneously with the removal, the movable stopper 13 is configured to be pulled up.

キャップ30は、内装体31と外装体32との二重壁構造である。内装体31は、図1に示すように、計量注出器10の上側に配置される天壁31aを有し、この天壁31aからは、同図に示すように、当該キャップ30を閉じたときに可動栓13を取り囲む周壁31bが一体に垂下している。   The cap 30 has a double wall structure of an interior body 31 and an exterior body 32. As shown in FIG. 1, the interior body 31 has a top wall 31a disposed on the upper side of the metering dispenser 10, and the cap 30 is closed from the top wall 31a as shown in FIG. Sometimes, the peripheral wall 31b surrounding the movable stopper 13 hangs down integrally.

周壁31bの内面には、図5に示すように、当該内面の一部を軸線O周りに間隔を空けて膨出させ、間欠に形成されてなる複数のリブ31cが一体に設けられている。本形態のリブ31cは、後述のように、軸線O方向に三段に配置され、図1に示すように、キャップ30を閉じたときに可動栓13のリップ13hに着脱可能にアンダーカット嵌合する。   As shown in FIG. 5, a plurality of ribs 31 c are formed integrally on the inner surface of the peripheral wall 31 b, with a part of the inner surface bulging around the axis O at intervals. As will be described later, the ribs 31c in this embodiment are arranged in three stages in the direction of the axis O, and as shown in FIG. 1, when the cap 30 is closed, the ribs 31c can be detachably attached to the lip 13h of the movable plug 13. To do.

図6(a),(b)はそれぞれ、図5に示すキャップ30に係るリブ31cを示す要部断面図及び、リブ31cを有する周壁31bをその内側から展開した状態で示す要部展開図である。   6 (a) and 6 (b) are main part sectional views showing ribs 31c related to the cap 30 shown in FIG. 5, and main part development views showing the peripheral wall 31b having the ribs 31c developed from the inside thereof. is there.

リブ31cは、図6に示すように、上下方向(軸線O)に沿って間隔を空けて三段に設けられている。更に詳細には、図6(a)に示すように、最上段に存在するリブ(以下、「第1リブ」という)31c1は、その突出高さH1が最も高く、それから下方に向かって順次、低くなっている。即ち、中段に存在するリブ(以下、「第2リブ」という)31c2は、その高さH2が第1リブ31c1よりも低く(H2<H1)、最下段に存在するリブ(以下、「第3リブ」という)31c3は、その高さH3が第2リブ31c2よりも低く(H3<H2)構成されている。従って、各リブ先端によって形成されるキャップ周壁の内径は、第1リブ31c1<第2リブ31c2<第3リブ31c3の関係となっている。 As shown in FIG. 6, the ribs 31c are provided in three stages at intervals along the vertical direction (axis O). More specifically, as shown in FIG. 6 (a), the uppermost rib (hereinafter referred to as “first rib”) 31c 1 has the highest protrusion height H 1 and then downwards. It becomes lower sequentially. That is, a rib (hereinafter referred to as “second rib”) 31c 2 existing in the middle stage has a height H 2 lower than that of the first rib 31c 1 (H 2 <H 1 ), and a rib ( Hereinafter, 31c 3 (referred to as “third rib”) has a height H 3 lower than that of the second rib 31c 2 (H 3 <H 2 ). Therefore, the inner diameter of the cap peripheral wall formed by the tip of each rib is in the relationship of the first rib 31c 1 <the second rib 31c 2 <the third rib 31c 3 .

符号L1,L2はそれぞれ、第1リブ31c1と第2リブ31c2との軸線O方向での間隔(以下、「軸線方向間隔」という)及び、第2リブ31c2と第3リブ31c3との軸線O方向での間隔(以下、「軸線方向間隔」という)である。なお、本形態では、軸線方向間隔L1及びL2を等しく構成している。 Reference numerals L 1 and L 2 denote an interval between the first rib 31c 1 and the second rib 31c 2 in the direction of the axis O (hereinafter referred to as an “axis direction interval”), and a second rib 31c 2 and a third rib 31c, respectively. 3 in the direction of the axis O (hereinafter referred to as “axis direction spacing”). In this embodiment, the axial intervals L 1 and L 2 are configured to be equal.

第1リブ31c1は、図6(b)に示すように、周壁31bの内面に沿って、軸線O周りに間隔D1を空けて断続的に設けられている。また、第3リブ31c3も、同図に示すように、周壁31bの内面に沿って、軸線O周りに間隔D1を空けて断続的に設けられている。特に、本形態では、同図に示すように、第1リブ31c1及び第3リブ31c3を軸線Oに沿って整列する位置に設けている。 As shown in FIG. 6B, the first rib 31c 1 is intermittently provided with an interval D 1 around the axis O along the inner surface of the peripheral wall 31b. Further, as shown in the figure, the third rib 31c 3 is also provided intermittently with an interval D 1 around the axis O along the inner surface of the peripheral wall 31b. In particular, in this embodiment, as shown in the figure, the first rib 31c 1 and the third rib 31c 3 are provided at positions aligned along the axis O.

これに対し、第2リブ31c2も、図6(b)に示すように、周壁31bの内面に沿って、軸線O周りに間隔D2を空けて断続的に設けられているが、本形態では、第2リブ31c2を、同図に示すように、第1リブ31c1及び第3リブ31c3に対して軸線O周りに互い違いとなるように設けている。なお、本形態では、第2リブ31c2を、第1リブ31c1と第3リブ31c3との中間の位置に配置している。 On the other hand, as shown in FIG. 6B, the second rib 31c 2 is also provided intermittently with an interval D 2 around the axis O along the inner surface of the peripheral wall 31b. Then, the second ribs 31c 2 are provided so as to be staggered around the axis O with respect to the first ribs 31c 1 and the third ribs 31c 3 as shown in FIG. In the present embodiment, the second rib 31c 2 is disposed at an intermediate position between the first rib 31c 1 and the third rib 31c 3 .

ここで、図7(a)〜(c)はそれぞれ、リブ31cとリップ13hとの関係を模式的に示す作用図である。なお、以下の説明では、第2リブ31c2の高さH2を基準寸法として第2リブ31c2がリップ13hと係合すべきところ、リップ13hが第2リブ31c2に引っ掛からない状態を「掛り小」の状態と、また、リップ13hが第2リブ31c2に引っ掛かる状態を「中心値」の状態とし、更に、リップ13hが第2リブ31c2に対して過度に引っ掛かる状態を「掛り大」の状態とする。 Here, FIGS. 7A to 7C are operation diagrams schematically showing the relationship between the rib 31c and the lip 13h, respectively. In the following description, the second rib 31c 2 is a place to be engaged with the lip 13h of the height H 2 second rib 31c 2 as reference dimension, a state in which the lip 13h is not caught by the second rib 31c 2 " The state of “small hook” and the state in which the lip 13 h is hooked on the second rib 31 c 2 are “center value”, and the state in which the lip 13 h is excessively hooked on the second rib 31 c 2 is “large hook”. State.

図7(a)は、「掛り小」状態での作用図である。この場合、キャップ30と可動栓13との係合は、製品バラツキ等の影響により実質、第1リブ31c1がリップ13hに対して引っ掛かり代ΔC1をもってアンダーカット嵌合していることで達成されている。このため、キャップ30を引き上げた当初は、複数のリブ31cのうち、第1リブ31c1がリップ13hに引っ掛かった状態で可動栓13を引き上げるが、その嵌合強度を越える力が加わると、当該引っ掛かりが解除される。 FIG. 7A is an operation diagram in the “small hanging” state. In this case, the engagement between the cap 30 and the movable stopper 13 is achieved by the fact that the first rib 31c 1 is undercut-fitted with a catching margin ΔC 1 with respect to the lip 13h due to the influence of product variation or the like. ing. For this reason, when the cap 30 is initially pulled up, the movable plug 13 is pulled up with the first rib 31c 1 being hooked on the lip 13h among the plurality of ribs 31c. The hook is released.

この場合、従来のように、リブ31cが第2リブ31c2のみの単体構造であれば、そもそもキャップ30の取り外しに伴い可動栓13を引き上げることができないところ、本発明に従えば、第1リブ31c1がリップ13hに引っ掛かるため、キャップ30の取り外しに伴い可動栓13を引き上げることができる。 In this case, if the rib 31c is a single-piece structure having only the second rib 31c 2 as in the prior art, the movable plug 13 cannot be pulled up with the removal of the cap 30 in the first place. Since 31c 1 is caught by the lip 13h, the movable stopper 13 can be pulled up with the removal of the cap 30.

加えて、そもそもの引っ掛かり代ΔC1が小さく、第1リブ31c1とリップ13hとの嵌合強度も適正であるため、第1リブ31c1からリップ13hの引っ掛かりが解除されても、可動栓13の押し下げを生起させる程の反力は生じない。また、キャップ30の取り外しに伴い第1リブ31c1の下に存在する第2リブ31c2が上昇しても、リップ13hを掠める程度で通過し、可動栓13に押し下げ方向の反力を生じさせない。 In addition, since the catching margin ΔC 1 is small in the first place and the fitting strength between the first rib 31c 1 and the lip 13h is appropriate, even when the catch of the lip 13h from the first rib 31c 1 is released, the movable plug 13 There is no reaction force to cause the depression of the. Further, even if the second rib 31c 2 existing under the first rib 31c 1 rises as the cap 30 is removed, it passes through the lip 13h so as not to cause a reaction force in the push-down direction on the movable plug 13. .

従って、製品バラツキ等の影響により、第2リブ31c2がリップ13hに対して「掛り小」の状態であっても、キャップ30の取り外しと同時に可動栓13を引き上げることができ、しかも、当該係合の解除に伴い可動栓13が再び押し下げられることがない。 Therefore, even if the second rib 31c 2 is “smallly hooked” with respect to the lip 13h due to the product variation or the like, the movable stopper 13 can be pulled up simultaneously with the removal of the cap 30. The movable stopper 13 is not pushed down again with the release of the combination.

図7(b)は、「中間値」の状態での作用図である。この場合、キャップ30と可動栓13との係合は、第2リブ31c2がリップ13hに対して引っ掛かり代ΔC2をもって適正にアンダーカット嵌合できる状態であるが、実際にキャップ30を閉じた状態では、第1リブ31c1がリップ13hに対して引っ掛かり代ΔC1をもってアンダーカット嵌合していることで達成されている。 FIG. 7B is an operation diagram in the “intermediate value” state. In this case, the cap 30 and the movable stopper 13 are engaged with each other in a state where the second rib 31c 2 can be properly undercut and fitted with a hook allowance ΔC 2 with respect to the lip 13h, but the cap 30 is actually closed. In the state, the first rib 31c 1 is achieved by the undercut fitting with the catching margin ΔC 1 with respect to the lip 13h.

このため、キャップ30を引き上げた当初は、第1リブ31c1がリップ13hに引っ掛かった嵌合強度が高めの状態で可動栓13を引き上げるが、その嵌合強度を越える力が加わると、当該引っ掛かりが解除される。この場合、可動栓13は、そのリップ13hが第1リブ31c1との係合の解除に伴い当該第1リブ31c1に下向きに弾かれることで、再び押し下げられる場合がある。しかし、第1リブ31c1の下に存在する第2リブ31c2が再度リップ13hと係合することで、適正な嵌合強度での可動栓13の引き上げを達成する。 For this reason, when the cap 30 is initially lifted, the movable plug 13 is pulled up with a high fitting strength in which the first rib 31c 1 is hooked on the lip 13h. However, when a force exceeding the fitting strength is applied, the hook 30 is caught. Is released. In this case, the movable stopper 13, by the lip 13h is repelled downwards to the first rib 31c 1 with the release of the engagement between the first rib 31c 1, which may be depressed again. However, when the second rib 31c 2 existing under the first rib 31c 1 is engaged with the lip 13h again, the movable plug 13 can be lifted with an appropriate fitting strength.

つまり、第2リブ31c2は、第1リブ31c1よりも可動栓13のリップ13hに対する嵌合強度が弱く、可動栓13の押し下げを生起させない程度の嵌合強度であるため、第1リブ31c1よりも弱い力(適正な引っ掛かり代ΔC2)で、当該係合が解除される。また、キャップ30の取り外しに伴い第2リブ31c2の下に存在する第3リブ31c3が上昇しても、リップ13hを掠める程度で通過し、可動栓13に押し下げ方向の反力を生じさせない。 That is, the second rib 31c 2 has a fitting strength with respect to the lip 13h of the movable plug 13 that is weaker than the first rib 31c 1 and has a fitting strength that does not cause the movable plug 13 to be pushed down. The engagement is released with a force weaker than 1 (appropriate catching allowance ΔC 2 ). Further, even if the third rib 31c 3 existing under the second rib 31c 2 rises as the cap 30 is removed, it passes through the lip 13h so as not to cause a reaction force in the push-down direction on the movable plug 13. .

従って、製品バラツキ等の影響により、第1リブ31c1がリップ13hに対して「中間値」の状態であっても、キャップ30の取り外しと同時に可動栓13を適正に引き上げることができ、しかも、当該係合の解除に伴い可動栓13が再び押し下げられることがない。 Therefore, even if the first rib 31c 1 is in an “intermediate value” state with respect to the lip 13h due to the influence of product variation, the movable stopper 13 can be properly lifted simultaneously with the removal of the cap 30, The movable stopper 13 is not pushed down again with the release of the engagement.

図7(c)は、「掛り大」の状態での作用図である。この場合、キャップ30と可動栓13との係合は、第3リブ31c3がリップ13hに対して引っ掛かり代ΔC3をもってアンダーカット嵌合できる状態であるが、この場合も、実際にキャップ30を閉じた状態では、第1リブ31c1がリップ13hに対して引っ掛かり代ΔC1をもってアンダーカット嵌合していることで達成されている。 FIG. 7 (c) is an operation diagram in the state of “large”. In this case, the engagement between the cap 30 and the movable stopper 13 is a state in which the third rib 31c 3 can be engaged with the lip 13h with the hook allowance ΔC 3 , but in this case as well, the cap 30 is actually attached. In the closed state, the first rib 31c 1 is achieved by the undercut fitting with a catch margin ΔC 1 with respect to the lip 13h.

このため、嵌合強度が過度に高く、キャップ30を引き上げた当初は、複数のリブ31cのうち、第1リブ31c1がリップ13hに引っ掛かった状態で可動栓13を引き上げるが、その嵌合強度を越える力が加わると、当該引っ掛かりが解除される。 For this reason, the fitting strength is excessively high, and when the cap 30 is pulled up, the movable plug 13 is pulled up with the first rib 31c 1 being caught by the lip 13h among the plurality of ribs 31c. When a force exceeding is applied, the hook is released.

この場合、可動栓13は、そのリップ13hが第1リブ31c1との係合の解除に伴い当該第1リブ31c1に下向きに弾かれることで、再び押し下げる場合がある。これは、第2リブ31c2とリップ13hとの係合でも同様である。 In this case, the movable stopper 13, by the lip 13h is repelled downwards to the first rib 31c 1 with the release of the engagement between the first rib 31c 1, there is a case to depress again. The same applies to the engagement between the second rib 31c 2 and the lip 13h.

更に、キャップ30を引き上げると、第3リブ31c3がリップ13hに引っ掛かった状態で可動栓13を引き上げるが、その嵌合強度を越える力が加わると、当該引っ掛かりが解除される。 Further, when the cap 30 is pulled up, the movable plug 13 is pulled up with the third rib 31c 3 hooked on the lip 13h. However, when a force exceeding the fitting strength is applied, the hook is released.

この場合、第3リブ31c3は、第1リブ31c1、第2リブ31c2よりも嵌合強度が弱いため、これらよりも弱い力で、当該係合が解除される。ここで、引っ掛かり代ΔC3が適正であれば、当該リブ31c3とリップ13hとの嵌合強度も適正であるため、第3リブ31c3からリップ13hの引っ掛かりが解除されても、可動栓13の押し下げを生起させる程の反力は生じないので、可動栓13の押し下げを抑制することができる。 In this case, since the fitting strength of the third rib 31c 3 is weaker than that of the first rib 31c 1 and the second rib 31c 2 , the engagement is released with a weaker force than these. Here, if the hooking allowance ΔC 3 is appropriate, the fitting strength between the rib 31c 3 and the lip 13h is also appropriate. Therefore, even if the hook of the lip 13h from the third rib 31c 3 is released, the movable plug 13 is released. Since no reaction force is generated to cause the depression of the movable stopper 13, the depression of the movable stopper 13 can be suppressed.

従って、製品バラツキ等の影響により、第2リブ31c2がリップ13hに対して「掛り大」の状態であっても、キャップ30の取り外しと同時に可動栓13を適正に引き上げることができ、しかも、当該係合の解除に伴い可動栓13が再び押し下げられることがない。 Therefore, even if the second rib 31c 2 is “hanging large” with respect to the lip 13h due to the product variation, the movable stopper 13 can be properly lifted simultaneously with the removal of the cap 30, and The movable stopper 13 is not pushed down again with the release of the engagement.

なお、本形態では、キャップ30を内装体31と外装体32との二重壁構造とし、この内装体31に、リブ31c及び押圧用突起31dを設けているが、キャップ30は単一部材からなるキャップであってもよい。   In this embodiment, the cap 30 has a double wall structure of an interior body 31 and an exterior body 32, and the interior body 31 is provided with a rib 31c and a pressing projection 31d. However, the cap 30 is made of a single member. It may be a cap.

また、本形態では、可動栓13の押し下げに関しても、キャップ30の裏側に押圧用の突起31dを設けることで、キャップ30を閉めたときに、図1に示すように、この押圧用突起31dが可動栓13の先端13eを押し下げるように構成している。   Further, in this embodiment, with respect to the pressing of the movable stopper 13, by providing the pressing protrusion 31d on the back side of the cap 30, when the cap 30 is closed, as shown in FIG. The distal end 13e of the movable stopper 13 is configured to be pushed down.

次に、本形態の作用を説明する。   Next, the operation of this embodiment will be described.

本形態では、図1に示す状態からキャップ30を外すべく、当該キャップ30を回して引き上げると、キャップ30に三段に設けたリブ31c1〜31c3のうち、いずれかのリブ31cが可動栓13のリップ13hに引っ掛かっているため、可動栓13もいっしょに引き上がる。リブ31cとリップ13hとの引っ掛かりは、リブ31c1〜31c3のうちのいずれか、好適な係合時(適正な嵌合強度)において外れるため、最終的には、図2に示すように、可動栓13を上死点まで引き上げた後、当該係合が解除されることに伴い可動栓13が押し戻されることなく、キャップ30は容器本体20の口部21から外れる。 In this embodiment, when the cap 30 is turned and pulled up to remove the cap 30 from the state shown in FIG. 1, any one of the ribs 31 c 1 to 31 c 3 provided on the cap 30 in three stages is connected to the movable plug. Since the hook 13 is caught on the lip 13h, the movable stopper 13 is also pulled up together. Since the catch between the rib 31c and the lip 13h is disengaged at any suitable engagement (appropriate fitting strength) among the ribs 31c 1 to 31c 3 , finally, as shown in FIG. After the movable stopper 13 is pulled up to the top dead center, the cap 30 is removed from the mouth portion 21 of the container body 20 without the movable stopper 13 being pushed back as the engagement is released.

この引き上げで、当該可動栓13は、図2に示すように、連通孔A3を筒状部11cで閉じると共に供給孔A1を開く。これにより、その先端注出口A2が下向きになるように、容器本体20ごと倒立させれば、容器本体20の内容物は、その口部21から供給孔A1を経てシェル部材11と中栓12との間に形成された貯留空間R内に供給される。 By this pulling up, as shown in FIG. 2, the movable stopper 13 closes the communication hole A 3 with the cylindrical portion 11c and opens the supply hole A 1 . Thereby, if the container main body 20 is turned upside down so that the tip spout A 2 faces downward, the contents of the container main body 20 are connected to the shell member 11 and the inner plug from the mouth portion 21 through the supply hole A 1. 12 is supplied into the storage space R formed between the two.

次いで、可動栓13を頭皮等に当てる等して再び押し込めば、可動栓13は、その外面シール部13fを介して中栓12の環状凹部12cの外筒部12c3との気密性を確保しながら下降することで、図4(a)に示すように、シェル部材11に押し込まれた状態になり、供給孔A1は、同図に示すように封止されるものの、連通孔A3は、貯留空間Rを流路Cに連通させる。 Then, if pushed again by such shed movable plug 13 to the scalp or the like, movable plug 13, to ensure the airtightness of the outer cylinder portion 12c 3 of the annular recess 12c of the inner plug 12 via its outer face seal portion 13f while by descending, as shown in FIG. 4 (a), becomes a state of being pressed into the shell member 11, the supply holes a 1, although sealed as shown in the figure, the communication hole a 3 is The storage space R is communicated with the flow path C.

しかしながら、本形態では、図4(a)に示すように、弁体14aが弾性部14bからの付勢力により先端注出口A2を封止し続ける。これにより、シェル部材11と中栓12との間の貯留空間に一定量の内容物を閉じ込めることができる。即ち、本形態では、従来と同様の操作で、常に一定量の内容物を計量することができる。 However, in this embodiment, as shown in FIG. 4 (a), the valve element 14a continues to seal the tip spout A 2 by the urging force of the elastic portion 14b. Thereby, a fixed amount of contents can be confined in the storage space between the shell member 11 and the inner plug 12. That is, in this embodiment, it is possible to always measure a certain amount of contents by an operation similar to the conventional one.

しかも、可動栓13を押し込んだ状態でも、当該可動栓13の先端注出口A2は、図4(a)に示すように弾性弁14で封止されるため、計量を行ったり、注出対象物まで移動させても、内容物が先端注出口A2から飛散することがない。 Moreover, even when the movable stopper 13 is pushed in, the tip spout A 2 of the movable stopper 13 is sealed by the elastic valve 14 as shown in FIG. be moved to the object, never contents are scattered from the tip spout A 2.

内容物の注出に際しては、図4(b)に示すように、可動栓13から突出する弁体14aを被注出部(被塗布面)に押し当てて押し込めば、従来と同様、かかる計量済みの内容物を、その押し込み時間に応じた小出しの注出が可能となる。   When the contents are poured out, as shown in FIG. 4 (b), if the valve body 14a protruding from the movable stopper 13 is pressed against the portion to be poured out (surface to be coated) and pushed in, the measurement is performed as in the conventional case. The dispensed contents can be dispensed according to the pushing time.

本発明では、キャップ30の天壁31aから垂下する周壁31bの内面に、上下方向に沿って間隔を空けて複数のリブ31c1〜31c3を設けたことで、キャップ30を閉めた状態では、複数のリブ31c1〜31c3のうち、第1リブ31c1を可動栓13に設けたリップ13hに係合させる。しかも、当該リブ31cの高さH1〜H3は、下方に向かうに従って順次低くなるため、第1リブ31c1は、リップ13hに対して最も高い係合力(嵌合強度)を発揮し、他のリブ31c2,31c3は、下方に向かって順次、その嵌合強度が弱まる構成となる。 In the present invention, by providing a plurality of ribs 31c 1 to 31c 3 at intervals along the vertical direction on the inner surface of the peripheral wall 31b depending from the top wall 31a of the cap 30, in a state where the cap 30 is closed, Of the plurality of ribs 31 c 1 to 31 c 3 , the first rib 31 c 1 is engaged with the lip 13 h provided on the movable plug 13. In addition, since the heights H 1 to H 3 of the ribs 31c are gradually lowered toward the lower side, the first ribs 31c 1 exhibit the highest engagement force (fitting strength) with respect to the lip 13h. The ribs 31c 2 and 31c 3 are configured such that their fitting strengths are gradually reduced downward.

このため、キャップ30を引き上げることによって、最終的には適正な嵌合強度のリブ31c1〜31c3と、リップ13hとの係合によって可動栓13を引き上げることになり、当該リップ13hに対する前記係合の解除によって、可動栓13が再び押し下げられることはない。 Thus, by raising the cap 30, and finally ribs 31c 1 ~31c 3 proper fit strength in, will be raising the movable plug 13 by the engagement between the lip 13h, the engagement against the lip 13h The movable stopper 13 is not pushed down again by releasing the combination.

即ち、本発明によれば、キャップ30のリブ31cを可動栓13のリップ13hに係合させることでキャップ30の取り外しと同時に可動栓13を引き上げても、当該係合の解除に伴い可動栓13が再び押し下げられることがないため、可動栓13を使用者に再び押し上げさせるような煩雑な操作を強要することなく、1回の操作によって確実な注出を可能にすることができる。従って、本発明によれば、使い勝手の良好な、新規な計量注出容器を提供することができる。   That is, according to the present invention, even if the rib 31c of the cap 30 is engaged with the lip 13h of the movable plug 13 and the movable plug 13 is pulled up simultaneously with the removal of the cap 30, the movable plug 13 is released along with the release of the engagement. Is not pushed down again, so that reliable dispensing can be performed by one operation without forcing the user to push up the movable stopper 13 again. Therefore, according to the present invention, it is possible to provide a new metering container that is easy to use.

しかも、キャップ30のリブ31c又は可動栓13のリップ13hに製造バラツキが生じても、キャップ30に設けた複数のリブ31c1〜31c3によって、当該係合部分に係る寸法誤差等のバラツキを補完するため、製造バラツキに関係なく、一定の適正な力で係合を解除することができる。 Moreover, even if the lip 13h to manufacturing variations of the ribs 31c or movable plug 13 of the cap 30, by a plurality of ribs 31c 1 ~31c 3 provided on the cap 30, complement the variations in dimensional errors or the like related to the engagement portion Therefore, the engagement can be released with a certain appropriate force regardless of manufacturing variations.

なお、本発明に従えば、キャップ30に係るリブ31cは、少なくとも二段であればよいが、好適には三段以上であれば、キャップ30のリブ31cに係合させた可動栓13のリップ13hを更に緩やかに解除することができる。   According to the present invention, the rib 31c related to the cap 30 may be at least two stages, but if it is preferably three or more stages, the lip of the movable plug 13 engaged with the rib 31c of the cap 30 is preferable. 13h can be released more gently.

但し、本形態の如く、第二係合部を軸線O方向に間隔を空けて三段に設ければ、中段に存在する第二係合部31c2でのリップ13hとの引っ掛かりを基準とすることで、上段に存在する第二係合部31c1では、第二係合部31c2よりも大きく引っ掛かり、下段に存在する第二係合部31c3では、第二係合部31c2よりも小さく引っ掛かる。 However, if the second engagement portion is provided in three stages with an interval in the direction of the axis O as in the present embodiment, the second engagement portion 31c 2 existing in the middle step is used as a reference. Thus, the second engagement portion 31c 1 existing in the upper stage is caught larger than the second engagement portion 31c 2 , and the second engagement portion 31c 3 existing in the lower stage is more than the second engagement portion 31c 2. It gets caught small.

即ち、少なくとも、第二係合部を軸線O方向に間隔を空けて三段に設ければ、寸法公差が大きいときと、小さいときの両方を考慮することができるので、最も単純な構造で、寸法公差の大小を考慮に入れた可動栓13の押し下げ防止を実現することができる。また、かかる構成によれば、大量生産を安価に実現することができる。   That is, at least if the second engagement portion is provided in three stages with an interval in the direction of the axis O, it is possible to consider both when the dimensional tolerance is large and when it is small, so the simplest structure, It is possible to prevent the movable stopper 13 from being pushed down in consideration of the size tolerance. Moreover, according to this structure, mass production can be realized at low cost.

また、第二係合部を、軸線O周りに形成された間欠のリブ31c1〜31c3とすれば、係合面積が効率的に削減されるため、係合が外れるに際に生じる弾きの抑制に更に有効である。 Further, if the second engagement portion is intermittent ribs 31c 1 to 31c 3 formed around the axis O, the engagement area is efficiently reduced, so that the repelling that occurs when the engagement is disengaged is reduced. More effective for suppression.

更に、第二係合部を間欠のリブ31cとした場合には、当該リブ31cを、軸線O方向に隣り合う間欠部分が軸線周りに互い違いになるように配置すれば、キャップ30との係合機能を確保しつつも軸線O方向に隣り合うリブ31c1〜31c3を効率的に接近させることができるので、キャップ30の設計自由度を高めつつ係合が外れるに際に生じる弾きを抑制することができる。 Furthermore, when the second engaging portion is an intermittent rib 31c, the rib 31c is engaged with the cap 30 if the intermittent portions adjacent to each other in the axis O direction are alternately arranged around the axis. Since the ribs 31c 1 to 31c 3 adjacent to each other in the direction of the axis O can be efficiently approached while ensuring the function, it is possible to suppress the flipping that occurs when the engagement is disengaged while increasing the design freedom of the cap 30. be able to.

加えて、本形態の如く、キャップ30を、内装体31と外装体32との二重壁構造とし、第二係合部を内装体に設ければ、内装体31を交換するだけで済むため、既存の外装体32を流用することで汎用性の高い注出容器20とすることができる。   In addition, if the cap 30 has a double wall structure of the interior body 31 and the exterior body 32 and the second engagement portion is provided in the interior body as in this embodiment, it is only necessary to replace the interior body 31. By diverting the existing exterior body 32, the dispensing container 20 with high versatility can be obtained.

上述したところは、本発明の一形態を示したに過ぎず、特許請求の範囲内において、種々の変更を加えることができる。例えば、可動栓のリップは、その先端周りに設けられているが、その位置は適宜変更することができる。また、キャップに配置されるリブの個数やその配置間隔も適宜変更することができる。更に、可動栓の外観形状は、本形態の如くの円筒形状ではなく、角形状とすることもできる。   The above description shows only one embodiment of the present invention, and various modifications can be made within the scope of the claims. For example, the lip of the movable stopper is provided around the tip, but the position can be changed as appropriate. In addition, the number of ribs arranged on the cap and the arrangement interval thereof can be appropriately changed. Furthermore, the external shape of the movable stopper may be a square shape instead of the cylindrical shape as in the present embodiment.

下記の表1は、第二係合部が単一の環状リブからなる従来の注出容器(比較例)と、第二係合部が軸線周りに形成された間欠のリブとしてなり、かかる第二係合部を軸線方向に互い違いになるように三段に配置した上述した本発明の実施形態に従う注出容器(実施例)との比較結果を示す。   Table 1 below shows a conventional dispensing container (comparative example) in which the second engagement portion is a single annular rib, and intermittent ribs in which the second engagement portion is formed around the axis. The comparison result with the extraction container (example) according to the above-described embodiment of the present invention in which the two engaging portions are arranged in three stages so as to be staggered in the axial direction is shown.

Figure 2010095308
Figure 2010095308

表1の「アンダーカット」の項目は、リブ及びリップの構成を示す。同項目中の「形状」では、比較例である単一リブを「ノーマル」として示し、また、本実施例の三段構造を「複数」として示す。   The item of “undercut” in Table 1 indicates the configuration of the rib and lip. In “shape” in the same item, a single rib as a comparative example is indicated as “normal”, and the three-stage structure of the present example is indicated as “plurality”.

更に、「掛り代(片側)」とは、第一係合部であるリップと第二係合部であるリブとを係合させたときの、図7にて示すところの引っ掛かり代ΔC1〜ΔC3(設計値)であり、その単位系はmm(ミリメートル)である。なお、表1中、上段のリブは、「1段目」として、また、下段のリブは、「3段目」として示す。 Furthermore, the “hanging amount (one side)” means the hooking allowance ΔC 1 to the position shown in FIG. 7 when the lip that is the first engaging portion and the rib that is the second engaging portion are engaged. ΔC 3 (design value), and its unit system is mm (millimeter). In Table 1, the upper rib is indicated as “first stage”, and the lower rib is indicated as “third stage”.

また、本実施例の比較では、「サンプル」の項目に示すように、比較例及び実施例共に、掛り代毎にそれぞれ、1番〜3番(表中は、「#1」〜「#3」として表記)の3つのサンプルを用いた。   Further, in the comparison of the present example, as shown in the item “sample”, both the comparative example and the example are numbered 1 to 3 for each hook (in the table, “# 1” to “# 3”). ”) Were used.

更に、「開閉スピード」とは、キャップの回転速度ではなく、軸線O方向に沿った上昇速度である。軸線方向に沿って、30mm/秒で上昇する場合を基準(普通)とし、3mm/秒で上昇する場合及び60mm/秒で上昇する場合をそれぞれ、「ゆっくり」、「早く」と定義する。   Furthermore, the “opening / closing speed” is not the rotational speed of the cap but the ascending speed along the axis O direction. The case of rising at 30 mm / second along the axial direction is defined as a standard (normal), and the case of rising at 3 mm / second and the case of rising at 60 mm / second are defined as “slow” and “fast”, respectively.

「○」は、試験の結果、可動栓が押し下がることなく、最適な状態でキャップを開けることができた場合を示し、また、「△」は、可動栓が僅かに押し下がるものの、密閉性の確保には何ら問題なく、定量注出を支障なく実現できた場合を示す。但し、「×」は、可動栓が押し下がって密閉性そのものを維持できずに、定量注出に支障がでる場合を示す。   “○” indicates that the cap could be opened in an optimal state without the movable stopper being pushed down as a result of the test, and “△” indicates that the movable stopper was slightly pushed down, but the sealing performance This shows the case where quantitative dispensing can be realized without any problems. However, “X” indicates a case where the movable stopper is pushed down and the sealing performance itself cannot be maintained, and the quantitative dispensing is hindered.

表1に示す結果からも明らかなように、比較例では、いずれの掛り代の場合も、可動栓の押し下げが生じているのに対し、実施例は、そのいずれの掛り代の場合でも、キャップの引き上げ速度を問わず、可動栓の押し下げを生じることがない。従って、本発明によれば、可動栓を再度、引き上げることなく、定量注出を行うことができることは明らかである。   As is clear from the results shown in Table 1, in the comparative example, the movable stopper is pushed down in any of the hanging allowances, whereas in the example, the cap is in any case of the hanging allowance. Regardless of the lifting speed, the movable stopper is not pushed down. Therefore, according to the present invention, it is clear that quantitative dispensing can be performed without pulling up the movable stopper again.

本発明は、一定量だけ計量した後、かかる計量済みの内容物を小出しに注出することが求められるものに採用することができ、その内容物には、例えば、育毛剤等の薬液や化粧液等が挙げられる。   The present invention can be applied to a product that requires a predetermined amount to be dispensed after weighing a certain amount, and includes, for example, a chemical solution such as a hair restorer and a cosmetic. Liquid and the like.

本発明の一形態である計量注出容器を側面から示す要部断面図である。It is principal part sectional drawing which shows the measurement and dispensing container which is one form of this invention from the side. 同形態を、キャップを取り外した状態で示す要部断面図である。It is principal part sectional drawing which shows the same form in the state which removed the cap. 図2のX−X断面図である。It is XX sectional drawing of FIG. (a),(b)はそれぞれ、同形態からの注出が可能な状態及び、その注出時の状態を示す要部断面図である。(a), (b) is the principal part sectional drawing which shows the state in which extraction from the form is possible, respectively, and the state at the time of the extraction. 同形態に係るキャップの内装体を一部断面で示す正面図である。It is a front view which shows the interior body of the cap which concerns on the form with a partial cross section. (a),(b)はそれぞれ、同形態に係るキャップに係るリブを示す要部断面図及び、同リブを有する周壁をその内側から展開した状態で示す要部展開図である。(a), (b) is principal part sectional drawing which shows the rib which concerns on the cap which concerns on the same form, respectively, and the principal part expanded view which shows the surrounding wall which has the rib developed from the inner side. (a)〜(c)はそれぞれ、本発明に従うリブとリップとの関係を模式的に示す作用図である。(a)-(c) is an operation | movement diagram which shows typically the relationship between the rib and lip according to this invention, respectively.

符号の説明Explanation of symbols

10 計量注出器
11 シェル部材
11a 装着筒
11b ドーム部
11c 筒状部
11d 嵌合溝部
11e 環状段差
11f 環状シール部
11g 係止段部
12 中栓
12a 仕切壁
12b シャフト部
12c 環状凹部
12c1 凹部内筒部
12c2 凹部底部
12c3 凹部外筒部
12e 環状シール部
12f 嵌合膨出部
12g 環状段差
13 可動栓
13a 可動栓周壁
13a1 可動栓基部
13a2 可動栓本体部
13b 内面シール部
13c 内側環状段差
13d 外側環状段差
13e 可動栓先端
13f 外面シール部
13g 先端注出口縁部
13h リップ(第一係合部)
14 弾性弁
14a 弁体
14a1 フランジ部
14a2 押圧部
14a3 注出用切り欠き
14b 弾性部
20 容器本体
21 容器本体口部
22 係止突起
30 キャップ
31 キャップ内装体
32 キャップ外装体
31a 天壁
31b 周壁
31c リブ(第二係合部)
31c1 第1リブ
31c2 第2リブ
31c3 第3リブ
31d 押圧用突起
1 供給孔
2 先端注出口
3 連通孔
C 流路
h 貫通孔
R 貯留空間
DESCRIPTION OF SYMBOLS 10 Metering dispenser 11 Shell member 11a Mounting cylinder 11b Dome part 11c Cylindrical part 11d Fitting groove part 11e Annular level | step difference 11f Annular seal | sticker part 11g Locking step part 12 Inner plug 12a Partition wall 12b Shaft part 12c Annular recessed part 12c In 1 recessed part Cylinder part 12c 2 concave bottom part 12c 3 concave outer cylinder part 12e annular seal part 12f fitting bulge part 12g annular step 13 movable stopper 13a movable stopper peripheral wall 13a 1 movable stopper base part 13a 2 movable stopper body part 13b inner seal part 13c inner annular part Step 13d Outer annular step 13e Movable stopper tip 13f Outer seal part 13g Tip spout edge 13h Lip (first engaging part)
DESCRIPTION OF SYMBOLS 14 Elastic valve 14a Valve body 14a 1 Flange part 14a 2 Pressing part 14a 3 Notch for extraction 14b Elastic part 20 Container main body 21 Container main body opening part 22 Locking protrusion 30 Cap 31 Cap interior body 32 Cap exterior body 31a Top wall 31b Peripheral wall 31c rib (second engaging part)
31c 1 1st rib 31c 2 2nd rib 31c 3 3rd rib 31d Protrusion for pressing A 1 supply hole A 2 tip spout A 3 communication hole C flow path h through hole R storage space

Claims (5)

口部を有しその内側に内容物が充填される容器本体と、
この容器本体の口部に装着されるシェル部材を有し、当該シェル部材から露出する可動栓の引き上げで、容器本体からの内容物をシェル部材の内側に供給可能とすることにより、当該内容物の注出を可能にする注出器と、
この注出器の上側に配置される天壁を有し、容器本体の口部に着脱可能に取り付けられるキャップとを備え、
このキャップの天壁から当該キャップを閉じたときに可動栓を取り囲む周壁を垂下させると共に、当該周壁の内面に、当該キャップを閉じたときに可動栓の外面から膨出する第一係合部に着脱可能に係合する第二係合部を設け、キャップの取り外しと同時に、可動栓を引き上げる注出容器であって、
前記第二係合部を上下方向に沿って間隔を空けて複数設け、当該第二係合部の高さを下方に向かうに従って順次低くすることを特徴とする、注出容器。
A container body having a mouth portion and filled with contents;
A shell member attached to the mouth of the container body, and the contents from the container body can be supplied to the inside of the shell member by pulling up the movable stopper exposed from the shell member. A dispenser that enables the dispensing of
It has a top wall arranged on the upper side of the dispenser, and includes a cap that is detachably attached to the mouth of the container body.
When the cap is closed from the top wall of the cap, the peripheral wall surrounding the movable plug is suspended, and the inner surface of the peripheral wall is extended to the first engagement portion that bulges from the outer surface of the movable plug when the cap is closed. A second container that is detachably engaged, and is a dispensing container that raises the movable stopper simultaneously with the removal of the cap,
A dispensing container, wherein a plurality of the second engaging portions are provided at intervals along the up-down direction, and the height of the second engaging portions is gradually lowered toward the lower side.
請求項1において、第二係合部を軸線方向に間隔を空けて三段に設けたことを特徴とする、注出容器。   The dispensing container according to claim 1, wherein the second engaging portion is provided in three stages at intervals in the axial direction. 請求項1又は2において、第二係合部は、軸線周りに形成された間欠のリブであることを特徴とする、注出容器。   The dispensing container according to claim 1 or 2, wherein the second engaging portion is an intermittent rib formed around an axis. 請求項3において、軸線方向に隣り合う間欠部分を軸線周りに互い違いになるように前記リブを配置したことを特徴とする、注出容器。   4. The dispensing container according to claim 3, wherein the ribs are arranged so that intermittent portions adjacent in the axial direction are staggered around the axial line. 請求項1乃至4のいずれか一項において、キャップは、内装体と外装体との二重壁構造からなり、第二係合部を内装体に設けてなることを特徴とする、注出容器。   The dispensing container according to any one of claims 1 to 4, wherein the cap has a double wall structure of an interior body and an exterior body, and a second engagement portion is provided in the interior body. .
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Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5022562A (en) * 1989-07-11 1991-06-11 Lurkis Jeffry L Combination protective cap and valve opener
JP2006117265A (en) * 2004-10-20 2006-05-11 Yoshino Kogyosho Co Ltd Metering type coating container
JP2007008550A (en) * 2005-06-30 2007-01-18 Yoshino Kogyosho Co Ltd Quantitative coating container

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5022562A (en) * 1989-07-11 1991-06-11 Lurkis Jeffry L Combination protective cap and valve opener
JP2006117265A (en) * 2004-10-20 2006-05-11 Yoshino Kogyosho Co Ltd Metering type coating container
JP2007008550A (en) * 2005-06-30 2007-01-18 Yoshino Kogyosho Co Ltd Quantitative coating container

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