JP4203869B2 - Cap with dropper - Google Patents

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Publication number
JP4203869B2
JP4203869B2 JP27165698A JP27165698A JP4203869B2 JP 4203869 B2 JP4203869 B2 JP 4203869B2 JP 27165698 A JP27165698 A JP 27165698A JP 27165698 A JP27165698 A JP 27165698A JP 4203869 B2 JP4203869 B2 JP 4203869B2
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Japan
Prior art keywords
cylinder
dropper
assembled
cap
tube
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JP27165698A
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Japanese (ja)
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JP2000095262A (en
Inventor
健 馬部
晶仁 鳥居
智之 芳賀
治夫 土田
當麻  徹
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Shiseido Co Ltd
Yoshino Kogyosho Co Ltd
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Shiseido Co Ltd
Yoshino Kogyosho Co Ltd
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Description

【0001】
【発明の属する技術分野】
本発明は、容器体内に収納された化粧水とか薬液等の内容液を、スポイト機能により取り出すことができるスポイト付きキャップに関するものである。
【0002】
【従来の技術】
スポイト付きキャップの従来技術の代表例として、実開平5−10258号公報に開示された構造、すなわち容器に対する螺合組付き部分を構成すると共に、スポイト管と弾性吸引体との組合せ物であるスポイト機能部を組付けた内蓋と、この内蓋に対して、抜け出し不能かつ一定角度だけ回動自在に組付き、内蓋に対する回動により弾性吸引体操作用の釦を昇降変位する外蓋と、を組合せて構成したものが知られている。
【0003】
この従来技術にあっては、容器の閉状態では、釦が弾性吸引体を押し潰した状態にあり、この閉状態から外蓋を開方向に回動させると、釦が上昇して弾性吸引体を原形復帰させてスポイト管に内容液を吸引し、次いで内蓋が螺脱回動して、キャップは容器から離脱するので、このキャップを持って釦を操作して吸引した内容液を目的箇所に注出する。
【0004】
【発明が解決しようとする課題】
しかしながら、上記した従来技術にあっては、容器の閉状態では、弾性吸引体が潰れ姿勢のままに保持されるので、弾性吸引体がどうしても早期に弾性疲労または変形疲労することになり、これによりスポイト機能が早期に劣化すると云う問題があった。
【0005】
また、キャップを構成する内蓋と外蓋とは、相互に回動変位可能に組付く必要があると共に、この相互回動組付きは、内蓋と外蓋とを相対回動させるのに要する操作力に比べて、内蓋を容器から螺脱させるのに要する回動操作力の方が確実に大きいと云う関係を満たす必要があり、このため内蓋と外蓋との組付き構造および組付き強度の設定が面倒となると云う問題があった。
【0006】
そこで、本発明は、上記した従来技術における問題点を解消すべく創案されたもので、弾性ドームの弾性変形とは別に、キャップの容器体に対する螺脱動作を利用して、スポイト管への内容液の定量吸引を達成することを技術的課題とし、もって内容液吸引力の発生源である弾性ドームの変形疲労の発生を皆無として、長期間にわたって安定して良好なスポイト機能を発揮できるようにし、また螺脱に伴う上下方向への相対変位に従って、スポイト機能部が内容液を吸引する構成とすることにより、構造および取扱いを簡単化させることを目的とする。
【0007】
【課題を解決するための手段】
上記技術的課題を解決する本発明の内、請求項1記載の発明の手段は、
スポイト管を有し、このスポイト管の管本体を閉姿勢で容器体内に垂下位置させるスポイト付きキャップであること、
上端部に操作釦を、抜け出し不能かつ突出状に昇降変位自在に内装し、下半部で容器体の口部に螺合により着脱する外筒の中央部に、内鍔状の隔壁を介して内筒を連設したキャップ本体を有すること、
主体筒に、中央に通気孔を開設した頂板を連設すると共に、主体筒の外周面に鍔筒片を周設し、この鍔筒片でキャップ本体の外筒の上半部に不動に内装組付きする組付き支持体を有すること、
この組付き支持体の主体筒に上方から密に外装組付きし、操作釦で押し潰し操作される半球殻状の弾性ドームを有すること、
組付き支持体の主体筒に下方から密に外装組付きし、主体筒内に立ち上がり位置する伸縮筒部の中央部に、通気開口を開設した嵌着筒片を垂設した弾性材製のベロー体を有すること、
このベロー体の伸縮筒部中央部と組付き支持体の頂板中央部との間に装着され、ベロー体の伸縮筒部中央部を下方に付勢するばねを有すること、
直線細管状の管本体の上端部に、容器体の口部上端面に対向する大きさの鍔片を周設し、この鍔片より上方に突出した組付き筒部を、キャップ本体の内筒に対して抜け出し不能であるが昇降変位可能に嵌入組付けし、キャップ本体の内筒から上方に突出した組付き筒部の上端部を、ベロー体の嵌着筒片に密に外嵌組付けしたスポイト管を有すること、
にある。
【0008】
閉姿勢状態では、スポイト管の管本体を容器体内に垂下状に位置させたスポイト付きキャップは、容器体の口部に対するキャップ本体の螺合組付き力により、ばねの弾力に逆らって、ベロー体とスポイト管との組合せ物である第二の組合せ物を、キャップ本体と操作釦と組付け支持体と弾性ドームとの組合せ物である第一の組合せ物に対して、ベロー体の中央部が組付け支持体の主体筒内に最も深く侵入する第一の侵入位置に位置させている。
【0009】
閉姿勢状態からキャップ本体を螺脱方向に回動させると、この回動により、第一の組合せ物は容器体に対して上昇変位するものの、第二の組合せ物は、ばねの作用により容器体に対して上昇変位せず、第一の組合せ物と第二の組合せ物との間に昇降方向に沿った相対変位が発生する。
【0010】
この第一の組合せ物と第二の組合せ物との間の相対変位により、ベロー体の中央部が組付け支持体の主体筒に対して第一の侵入位置から、侵入程度の浅い第二の侵入位置に変位し、これにより組付け支持体と弾性ドームとベロー体との組合せが形成するスポイト空間に負圧が発生する。
【0011】
このスポイト空間の負圧は、ベロー体の通気開口を通してスポイト管の管本体内に作用し、容器体の内容液を管本体内に吸引する。
【0012】
第一の組合せ物と第二の組合せ物との間の相対変位は、キャップ本体の内筒に対するスポイト管の抜け出し不能な突き当たりにより停止し、以降は両組合せ物は螺脱回動に従って容器体に対して一緒に上昇変位し、これによりスポイト付きキャップの容器体からの離脱が達成される。
【0013】
このように、容器体から取り外した状態で、スポイト付きキャップのスポイト管には所望量の内容液が吸引収納されているので、使用者は、取り外したスポイト付きキャップに対して、操作釦を押し下げて弾性ドームを押し潰す内容液注出処理を施して、内容液の注出を達成する。
【0014】
スポイト付きキャップを容器体の口部に螺合組付けしてゆくと、容器体に対するキャップ本体の螺合の進行に従って、ばねの弾力に逆らって、第一の組合せ物に対して第二の組合せ物が相対的に上昇し、ベロー体の中央部が組付け支持体の主体筒に対して第一の侵入位置まで侵入し、当初の閉姿勢状態に復帰する。
【0015】
このスポイト付きキャップの閉姿勢状態への復帰に際して、ベロー体の中央部の組付け支持体の主体筒に対する第一の侵入位置までの侵入により、例えスポイト管内に内容液が残留していても、スポイト管内の内容液は強制的に排出されることになり、これによりスポイト付きキャップは、常に一定した状態、すなわちスポイト管内に内容液を全く位置させていない状態で待機することになる。
【0016】
請求項2記載の発明は、請求項1記載の発明に、キャップ本体の内筒の内周面にキー縦溝を設けると共に、内筒の上端部を上方に縮径した縮径先端部とし、スポイト管の組付き筒部の外周面下部に、キャップ本体のキー縦溝に周方向から係止するキー縦条を突設すると共に、キャップ本体の内筒から上方に突出した組付き筒部の上端部外周面に、キャップ本体の縮径先端部の上端が乗り越え不能に下方から突き当たるストッパー突条を設けた、ことを加えたものである。
【0017】
この請求項2記載の発明にあっては、縮径先端部のストッパー突条に対する下方からの突き当たりと、スポイト管の鍔片に対するキャップ本体の隔壁の上方からの突き当たりとにより、第一の組合せ物に対する第二の組合せ物の抜け出し不能な一定ストロークでの昇降変位可能な組付きを達成する他に、キー縦溝に対するキー縦条の係合により、第一の組合せ物と第二の組合せ物との相対回動を不能としたので、伸縮変形するベロー体に回動変位力を作用させることがなく、これによりベロー体を安全に伸縮動作させることができる。
【0018】
請求項3記載の発明は、請求項1記載の発明に、キャップ本体を、外筒と内筒とを有する本体筒と、この本体筒の外筒に外装組付けされ、上端部に操作釦を内装組付けしたカバー筒と、から構成した、ことを加えたものである。
【0019】
この請求項3記載の発明にあっては、本体筒に外嵌組付けされるカバー筒を金属製としたので、カバー筒の優れた装飾性をキャップ本体の外観体裁に有効に作用させることができ、また単純な挿入処理により操作釦を内装組付けしたカバー筒を、簡単な嵌装処理により本体筒に外嵌組付けするだけで、キャップ本体に対する操作釦の抜け出し不能かつ突出状に昇降変位可能な組付けを達成することができることになる。
【0020】
請求項4記載の発明は、請求項1記載の発明に、容器体の口部開口部に対向するスポイト管の鍔片部分に、上下に貫通する通孔を開設した、ことを加えたものである。
【0021】
この請求項4記載の発明にあっては、第一の組合せ物と第二の組合せ物との相対昇降変位により発生する、スポイト空間の容積の増減変化に伴う容器体に対する空気の出入りを、ばねの力により容器体の口部上端面に略密接しているスポイト管の鍔片が邪魔しないようにし、これによりスポイト付きキャップの容器体に対する着脱操作に伴う、スポイト機能部による内容液の吸引または吐出が円滑にかつ確実に行われるようにしている。
【0022】
【発明の実施の形態】
以下、本発明の一実施例を、図面を参照しながら説明する。
スポイト付きキャップ1は、第一の組合せ物である、キャップ本体2と操作釦12と組付け支持体16とそして弾性ドーム21との組合せ物と、第二の組合せ物である、ベロー体23とスポイト管29との組合せ物と、組付け支持体16とベロー体23との間に装着されて、ベロー体23を下方に付勢するばね28とから構成され、図2に示すように、キャップ本体2に、操作釦12を突出状に内装組付けすると共に、スポイト管29を垂下状に組付けている。
【0023】
容器体36に対する螺合組付き部分と、スポイト管29の組付け部分を形成するキャップ本体2は、その主体部分である本体筒3と、優れた装飾性を発揮する金属製のカバー筒10とから構成されている。
【0024】
本体筒3は、下半部内周面に、容器体36の口部37に螺合する螺条5を刻設した円筒状の外筒4の内周面中央に、内鍔状の隔壁6を介して内筒7を同軸心状に起立連設して構成され、外筒4の上半部と隔壁6とにより組付け支持体16の組付け部を形成し、内筒7でスポイト管29の組付け部を形成している。
【0025】
カバー筒10は、上方にわずかに縮径した円筒体の上端に、内側に屈曲反転した形態で内鍔筒片11を一体成形し、この内鍔筒片11により、内装された操作釦12の上方への抜け出しを阻止している。
【0026】
組付け支持体16は、円筒形状をした主体筒17の内周面上端部に、中央に上下に貫通した通気孔18を連設し、主体筒17の外周面の略中央部分に、この主体筒17の外周面との間に上方に開放した周溝を形成する鍔筒片20を突周設して構成されている。
【0027】
この組付け支持体16は、鍔筒片20を外筒4の内周面中央部に強固に嵌入係止させて、本体筒3に対して組付けられる。
【0028】
弾性ドーム21は、ゴム等の弾性材により、周端部分を肉厚な組付き縁部22とした半球殻状に成形されており、組付き縁部28を鍔筒片20が形成する組付き周溝に強固にかつ密に嵌入組付けすることにより、組付け支持体16に、頂板18との間にスポイト空間の上半部分を形成して搭載状に組付く。
【0029】
弾性ドーム21を押し潰し操作する操作釦12は、キャップ本体2の上端部内に嵌入可能な有頂筒体の頂壁下面中央から、弾性ドーム21に押し潰し力を作用させる押圧足片13を垂設すると共に、この有頂筒体の周壁下端に拡径してガイド筒片14を垂設した構成となっており、有頂筒体の周壁のカバー筒10の内鍔筒片11に対する、およびガイド筒片14の外筒4上端部に対する軽い摺接により、キャップ本体2に対する昇降変位動作を安定させ、またカバー筒10の内鍔筒片11に対する、ガイド筒片14の上端面である係止段部15の下方からの係止により、キャップ本体2に対する抜け出し不能な組付きを達成している。
【0030】
ベロー体23は、ゴム等の弾性材により、肉厚に成形された周端部分である嵌着縁部27を、組付け支持体16の主体筒17の下端部に、鍔筒片20に下方から当接した状態で密に外嵌組付けし、この嵌着縁部27の下端から、反転して立ち上がった状態で主体筒17内に位置する有頂筒形状の伸縮筒部24を連設し、この伸縮筒部24の頂壁中央から、底壁に通気開口26を開設した有底筒形状の嵌着筒片25を垂下状に連設して構成され、組付け支持体16の本体筒3に対する組付きにより、組付け支持体16に対する密で強固な組付きが確保される。
【0031】
ばね28は、ベロー体23の嵌着筒片25に挿入可能な径寸法のコイルばね構造に成形されており、嵌着筒片25に挿入組付けした状態で、通気開口26の開口状態を害することなく、下端を嵌着筒片25の底壁に弾接させ、同様に通気孔19の開口状態を害することなく、上端を組付け支持体16の頂板18に弾接させ、常時ベロー体23の伸縮筒部24に押し下げ力を付勢している。
【0032】
スポイト管29は、直線細管状の管本体30の上端に、通孔32を上下に貫通させて開設した外鍔状の鍔片31を周設し、この鍔片31の上方に、管本体30を延長させた形態で組付き筒部33を起立連設し、この組付き筒部33の下部外周面に、キャップ本体2の内筒7の内周面に設けたキー縦溝8に昇降変位自在に係合するキー縦条34を刻設し、組付き筒部33の上部外周面に、内筒7の上端部である縮径先端部9が下方から乗り越え不能に突き当たるストッパー突条35を突周設して構成され、この組付き筒部33の上端部に、ベロー体23の嵌着筒片25を強固に密嵌着して、ベロー体23とスポイト管29との組付きが達成される。
【0033】
次に、図示実施例の組立て手順の一例を説明する。
本体筒3の内筒7に、スポイト管29の組付き筒部33を下方から、縮径先端部9がストッパー突条35を強引に乗り越えるまで挿入し、内筒7上に突出した組付き筒部33の上端部にベロー体23の嵌着筒片25を密に嵌着組付けして、第二の組合せ物の組立てを完了する。
【0034】
ベロー体23のスポイト管29への組付けが完了したならば、ベロー体23にばね28を仮組み付けした状態で、弾性ドーム21を組付けた組付け支持体16を、ベロー体23の嵌着縁部27を主体筒17の下部に嵌着させ、かつこの嵌着縁部27を本体筒3との間で強固に挟持する形態で、本体筒3の外筒4上半部内に、アンダーカット結合を利用して装着固定する。
【0035】
本体筒3に対する組付け支持体16の組付けが完了したならば、操作釦12を挿入組付けしたカバー筒10を外筒4に上方から外嵌組付けして、スポイト付きキャップ1の組立てを完了する。
【0036】
スポイト管29の鍔片31に開設された通孔32は、図3の右半分の閉状態と図3の左半分の螺脱状態との間の変化の際に、鍔片31が容器体36の口部37を密閉しないようにし、これにより第一の組合せ物と第二の組合せ物との相対昇降変位による、スポイト空間内の圧力変化に追従した容器体36内の円滑な圧力変化を可能とし、容器体36に対するキャップの螺合着脱操作に伴う、スポイト管29への内容液の吸引および吐出が確実にかつ円滑に達成されるようにする。
【0037】
なお、38は容器体36の口部37に嵌入組付けされた軟質材料製のシゴキ体で、口部37に密嵌入する嵌入筒の上端に、口部37の上端面に搭載してシゴキ体38の嵌入組付き限を設定する外フランジを周設し、嵌入筒の下端に、複数の鍵状に折れ曲がった連結腕片を介して、スポイト管29の管本体30の外周面に軽く弾接して、この管本体30外周面に付着した内容液をシゴキ落とすシゴキリング39を連設して構成されている。
【0038】
【発明の効果】
本発明は、上記した構成となっているので、以下に示す効果を奏する。
弾性復帰力によりスポイト管への内容液の吸引を達成する弾性ドームは、内容液の吸引、吐出動作時にだけ弾性変形し、他は変形せずに自然に安定した姿勢となっているので、変形疲労等による不正変形、弾力劣化の発生する恐れがなく、もって良好で安定したスポイト機能を長期間にわたって確実に発揮する。
【0039】
スポイト付きキャップの容器体に対する螺脱動作に伴う、二つの可動部分の相対的な昇降変位により、スポイト管への内容液の吸引を達成するので、二つの可動部分の間に操作力の大小関係を設定する必要がなく、もって全体構造を簡単化できると共に、その取扱い操作を簡単なものとすることができる。
【0040】
請求項2記載の発明にあっては、キャップ本体に対してスポイト管を、単に離脱不能かつ昇降変位可能に組付けるだけではなく、相互に回動変位不能に組付けることにより、ベロー体に不要な回動力が作用することがなく、これによりベロー体に不要な変形を生じさせることなく、安定して適正なスポイト機能を発揮させることができる。
【0041】
請求項3記載の発明にあっては、キャップ本体を、本体筒と単純な円筒形状のカバー筒との組合せ構造としたので、本体筒に外嵌するカバー筒を金属製とすることができ、これにより金属材料の持つ優れた装飾性を有効に発揮させることができる。
【0042】
請求項4記載の発明にあっては、第一の組合せ物と第二の組合せ物との相対昇降変位に伴う、スポイト空間の圧力変化に対し、容器体内の圧力変化を速やかにかつ正確に追従変化するようにし、これにより容器体に対するキャップの着脱に伴うスポイト管の内容液吸引・吐出動作を、円滑にかつ確実に実現させることができる。
【図面の簡単な説明】
【図1】本発明の一実施例を容器体に組付けた、容器の閉状態全体正面図。
【図2】図1に示した本発明の実施例の、全体正面図。
【図3】図2に示した実施例の、容器本に組付けた閉状態の要部拡大縦断面図。
【図4】図2に示した実施例の、内筒と組付き筒部との組付き構造を示す、要部拡大平断面図。
【符号の説明】
1 ; スポイト付きキャップ
2 ; キャップ本体
3 ; 本体筒
4 ; 外筒
5 ; 螺条
6 ; 隔壁
7 ; 内筒
8 ; キー縦溝
9 ; 縮径先端部
10; カバー筒
11; 内鍔筒片
12; 操作釦
13; 押圧足片
14; ガイド筒片
15; 係止段部
16; 組付け支持体
17; 主体筒
18; 頂板
19; 通気孔
20; 鍔筒片
21; 弾性ドーム
22; 組付き縁部
23; ベロー体
24; 伸縮筒部
25; 嵌着筒片
26; 通気開口
27; 嵌着縁部
28; ばね
29; スポイト管
30; 管本体
31; 鍔片
32; 通孔
33; 組付き筒部
34; キー縦条
35; ストッパー突条
36; 容器体
37; 口部
38; シゴキ体
39; シゴキリング
[0001]
BACKGROUND OF THE INVENTION
The present invention relates to a cap with a dropper capable of taking out a liquid such as a skin lotion or a chemical solution stored in a container by a dropper function.
[0002]
[Prior art]
As a representative example of a conventional cap with a dropper, the structure disclosed in Japanese Utility Model Laid-Open No. 5-10258, that is, a dropper that constitutes a portion with a screwed assembly with respect to a container and is a combination of a dropper tube and an elastic suction body An inner lid with a functional part assembled thereto, an outer lid that is attached to the inner lid so that it cannot be pulled out and can be rotated by a fixed angle, and that moves up and down the button for operating the elastic suction body by rotating with respect to the inner lid; A combination of these is known.
[0003]
In this prior art, in the closed state of the container, the button is in a state of crushing the elastic suction body, and when the outer lid is rotated in the opening direction from this closed state, the button is raised and the elastic suction body is Is restored to its original shape and the content liquid is sucked into the dropper tube, then the inner lid is screwed and rotated, and the cap is detached from the container. To pour out.
[0004]
[Problems to be solved by the invention]
However, in the above-described prior art, in the closed state of the container, since the elastic suction body is held in a collapsed posture, the elastic suction body inevitably undergoes elastic fatigue or deformation fatigue at an early stage. There was a problem that the dropper function deteriorated early.
[0005]
Further, the inner lid and the outer lid constituting the cap need to be assembled so as to be capable of rotational displacement with each other, and this mutual turning assembly is required to relatively rotate the inner lid and the outer lid. It is necessary to satisfy the relationship that the rotational operating force required to unscrew the inner lid from the container is larger than the operating force. For this reason, the assembly structure and assembly of the inner lid and the outer lid must be satisfied. There was a problem that setting the sticking strength was troublesome.
[0006]
Therefore, the present invention was devised to solve the above-described problems in the prior art, and in addition to the elastic deformation of the elastic dome, the contents of the dropper tube are utilized by utilizing the screwing operation of the cap with respect to the container body. Achieving quantitative suction of liquid is a technical issue, so that there is no deformation fatigue of the elastic dome, which is the source of the liquid suction force of the content, so that a good syringe function can be demonstrated stably over a long period of time. Another object of the present invention is to simplify the structure and handling by adopting a configuration in which the dropper function portion sucks the content liquid in accordance with the relative displacement in the vertical direction accompanying screwing.
[0007]
[Means for Solving the Problems]
Among the present invention for solving the above technical problems, the means of the invention according to claim 1 is:
It has a dropper tube, and is a cap with a dropper that makes the tube body of this dropper tube hang down in the container body in a closed position,
An operation button is installed at the upper end so that it cannot be pulled out and can be moved up and down in a protruding manner, and the lower half of the container is screwed into and removed from the mouth of the container body by means of an inner flange-like partition wall. Having a cap body with a continuous inner cylinder;
A top plate with a vent hole in the center is connected to the main cylinder, and an outer cylinder piece is provided around the outer circumference of the main cylinder, and this inner cylinder piece is immovably installed in the upper half of the outer cylinder of the cap body. Having an assembled support to be assembled;
A main body cylinder of this assembly support body is closely assembled with an exterior assembly from above, and has a hemispherical shell-like elastic dome that is crushed by an operation button,
A bellows made of an elastic material, which is closely attached to the main cylinder of the assembly support body from below, and has a fitting cylinder piece suspended from the center of the telescopic cylinder that stands up in the main cylinder. Having a body,
A spring that is mounted between the center part of the expansion / contraction cylinder part of the bellows body and the center part of the top plate of the assembled support, and biases the center part of the expansion / contraction cylinder part of the bellows body downward;
At the upper end of the straight thin tube main body, a flange having a size opposite to the upper end surface of the mouth of the container body is provided, and the assembled cylinder protruding above the flange is used as the inner cylinder of the cap body. The upper end of the assembled cylinder projecting upward from the inner cylinder of the cap body is closely fitted to the fitting cylinder piece of the bellows body. Having a dropper tube,
It is in.
[0008]
In the closed posture state, the cap with the dropper in which the pipe body of the dropper tube is suspended in the container body is against the elasticity of the spring by the force of the screwed assembly of the cap body against the mouth of the container body, and the bellows body The middle part of the bellows body is different from the first combination which is a combination of the cap body, the operation button, the assembly support body and the elastic dome. It is located at the first intrusion position that penetrates most deeply into the main cylinder of the assembly support.
[0009]
When the cap body is rotated in the screwing direction from the closed posture, the first combination is displaced upward with respect to the container body by this rotation, but the second combination is the container body by the action of the spring. However, relative displacement along the ascending / descending direction occurs between the first combination and the second combination.
[0010]
Due to the relative displacement between the first combination and the second combination, the central portion of the bellows body is moved from the first intrusion position to the main cylinder of the assembly support body, and the second invasion is shallow. Displacement to the intrusion position causes negative pressure in the dropper space formed by the combination of the assembly support, the elastic dome and the bellows.
[0011]
The negative pressure in the dropper space acts in the pipe body of the dropper tube through the ventilation opening of the bellows body, and sucks the content liquid in the container body into the tube body.
[0012]
The relative displacement between the first combination and the second combination stops due to the impingement of the dropper tube against the inner cylinder of the cap body, and after that, both the combinations move into the container body according to the screwing rotation. On the other hand, they are displaced upward together, whereby the cap with the dropper is detached from the container body.
[0013]
As described above, since a desired amount of the liquid content is sucked and stored in the dropper tube of the cap with a dropper while being removed from the container body, the user pushes down the operation button against the cap with the dropper removed. The content liquid is discharged by crushing the elastic dome to achieve the content liquid.
[0014]
When the cap with a dropper is screwed and assembled to the mouth of the container body, the second combination is made against the first combination against the elasticity of the spring as the cap body is screwed onto the container body. The object rises relatively, and the central portion of the bellows body enters the first intrusion position with respect to the main cylinder of the assembly support body and returns to the original closed posture state.
[0015]
When returning to the closed posture state of the cap with a dropper, even if the content liquid remains in the dropper tube, for example, by the penetration to the first penetration position with respect to the main cylinder of the assembly support body in the center of the bellows body, The content liquid in the dropper tube is forcibly discharged, so that the cap with a dropper always stands by in a constant state, that is, in a state where no content liquid is positioned in the dropper tube.
[0016]
The invention according to claim 2 is the invention according to claim 1, wherein a key vertical groove is provided on the inner peripheral surface of the inner cylinder of the cap body, and the upper end part of the inner cylinder is a reduced diameter tip part whose diameter is reduced upward, At the lower part of the outer peripheral surface of the tube part with the dropper tube, a key vertical strip that projects from the circumferential direction to the key vertical groove of the cap body is projected, and the cylinder part with the assembly protruding upward from the inner cylinder of the cap body is provided. In addition to this, a stopper ridge is provided on the outer peripheral surface of the upper end portion so that the upper end of the reduced diameter tip end portion of the cap main body can not get over from below.
[0017]
In the invention according to claim 2, the first combination is obtained by the contact from the lower end with respect to the stopper protrusion of the reduced diameter tip and the contact from above the partition wall of the cap body with respect to the flange of the dropper tube. In addition to achieving the assembly in which the second combination with respect to the key can be moved up and down with a fixed stroke, the first combination and the second combination Since the relative rotation of the bellows body is made impossible, no rotational displacement force is applied to the bellows body which is deformed and stretched, so that the bellows body can be safely stretched and contracted.
[0018]
The invention according to claim 3 is the invention according to claim 1, wherein the cap main body is externally assembled to the main cylinder having the outer cylinder and the inner cylinder, and the outer cylinder of the main cylinder, and the operation button is provided at the upper end. It is composed of a cover tube assembled with the interior.
[0019]
In the invention according to claim 3, since the cover tube fitted and fitted to the main body tube is made of metal, the excellent decorativeness of the cover tube can be effectively applied to the appearance of the cap body. It is possible to move up and down in a protruding manner so that the operation button cannot be pulled out of the cap body by simply mounting the cover tube with the operation button built-in by simple insertion processing to the main body tube by simple fitting processing. Possible assembly can be achieved.
[0020]
The invention according to claim 4 is the one according to claim 1 with the addition of the fact that a through-hole penetrating vertically is formed in the dropper portion of the dropper tube facing the mouth opening of the container body. is there.
[0021]
In the invention according to claim 4, the spring enters and exits the air in and out of the container body due to the increase / decrease in the volume of the dropper space, which is caused by the relative lifting displacement of the first combination and the second combination. This prevents the dropper of the dropper tube that is in close contact with the upper end surface of the mouth of the container body from interfering with this, and as a result of the operation of attaching or removing the cap with the dropper to or from the container body, suction of the liquid content or Discharging is performed smoothly and reliably.
[0022]
DETAILED DESCRIPTION OF THE INVENTION
Hereinafter, an embodiment of the present invention will be described with reference to the drawings.
The cap 1 with a dropper is a first combination, that is, a combination of the cap body 2, the operation button 12, the assembly support 16, and the elastic dome 21, and a bellows 23 that is the second combination. A combination with the dropper tube 29 and a spring 28 that is mounted between the assembly support 16 and the bellows body 23 and biases the bellows body 23 downward, as shown in FIG. The operation button 12 is assembled in the main body 2 so as to protrude, and the dropper tube 29 is assembled in a hanging manner.
[0023]
The cap main body 2 that forms a screwed assembly portion with respect to the container body 36 and an assembly portion of the dropper tube 29 includes a main body cylinder 3 that is a main portion thereof, and a metal cover cylinder 10 that exhibits excellent decorativeness. It is composed of
[0024]
The main body cylinder 3 has an inner flange-shaped partition wall 6 in the center of the inner peripheral surface of a cylindrical outer cylinder 4 in which a thread 5 that is screwed into the mouth portion 37 of the container body 36 is formed on the inner peripheral surface of the lower half. The inner cylinder 7 is arranged upright coaxially, and the upper half of the outer cylinder 4 and the partition wall 6 form an assembly portion of the assembly support 16. The assembling part is formed.
[0025]
The cover cylinder 10 is integrally formed with an inner casing cylinder piece 11 in a form that is bent and reversed inwardly at the upper end of a cylindrical body that is slightly reduced in diameter upward. Prevents upward escape.
[0026]
The assembling support 16 is connected to the upper end portion of the inner peripheral surface of the cylindrical main body cylinder 17 with a vent hole 18 penetrating vertically in the center. A flange tube piece 20 is formed so as to protrude from the outer peripheral surface of the tube 17 so as to form a circumferential groove opened upward.
[0027]
The assembly support body 16 is assembled to the main body cylinder 3 by firmly fitting and locking the rod piece 20 to the central portion of the inner peripheral surface of the outer cylinder 4.
[0028]
The elastic dome 21 is formed of an elastic material such as rubber into a hemispherical shell shape with the peripheral end portion being a thick assembled edge portion 22, and the assembled edge portion 28 is formed by the rod tube piece 20. By firmly and tightly fitting and assembling in the circumferential groove, the upper half portion of the dropper space is formed on the assembly support 16 and the top plate 18 and assembled in a mounting form.
[0029]
The operation button 12 that crushes and operates the elastic dome 21 hangs the pressing foot 13 that applies a crushing force to the elastic dome 21 from the center of the bottom surface of the top wall that can be fitted into the upper end of the cap body 2. And the guide cylinder piece 14 is vertically extended at the lower end of the peripheral wall of the top cylinder, and the inner cylinder piece 11 of the cover cylinder 10 on the peripheral wall of the top cylinder, and A light sliding contact with the upper end portion of the outer cylinder 4 of the guide cylinder piece 14 stabilizes the up-and-down displacement operation with respect to the cap body 2, and the upper end surface of the guide cylinder piece 14 with respect to the inner cylinder piece 11 of the cover cylinder 10 Due to the locking of the step portion 15 from below, the cap body 2 is assembled so that it cannot be pulled out.
[0030]
The bellows body 23 has a fitting edge portion 27 which is a peripheral end portion formed thick with an elastic material such as rubber at the lower end portion of the main cylinder 17 of the assembly support body 16, and below the rod tube piece 20. From the lower end of the fitting edge portion 27, the telescopic cylinder portion 24 having a crest-like cylindrical shape located in the main cylinder 17 is provided continuously. Then, a bottomed cylindrical fitting tube piece 25 having a vent opening 26 in the bottom wall is provided in a suspended manner from the center of the top wall of the telescopic tube portion 24, and the main body of the assembly support 16. The assembly to the cylinder 3 ensures a dense and strong assembly to the assembly support 16.
[0031]
The spring 28 is formed into a coil spring structure having a diameter that can be inserted into the fitting cylinder piece 25 of the bellows body 23, and damages the opening state of the ventilation opening 26 in a state where the spring 28 is inserted and assembled into the fitting cylinder piece 25. The lower end is elastically contacted with the bottom wall of the fitting cylinder piece 25, and the upper end is elastically contacted with the top plate 18 of the assembly support body 16 without harming the opening state of the vent hole 19 as well. A push-down force is applied to the telescopic cylinder portion 24.
[0032]
The dropper tube 29 is provided with an outer collar-shaped collar piece 31 that is opened by penetrating a through hole 32 at the upper end of a straight thin tubular pipe body 30, and the pipe body 30 is disposed above the collar piece 31. Assemble the cylindrical part 33 in an extended form, and move up and down to a key vertical groove 8 provided on the inner peripheral surface of the inner cylinder 7 of the cap body 2 on the lower outer peripheral surface of the assembled cylindrical part 33. A key ridge 34 that freely engages is engraved, and a stopper ridge 35 on which the reduced diameter tip portion 9 that is the upper end portion of the inner cylinder 7 abuts on the upper outer peripheral surface of the assembled cylinder portion 33 from the lower side so as not to be able to get over is provided. It is constructed by projecting around, and the fitting cylinder piece 25 of the bellows body 23 is firmly and tightly fitted to the upper end portion of the cylinder part 33 with this assembly, and the assembly of the bellows body 23 and the dropper tube 29 is achieved. Is done.
[0033]
Next, an example of the assembly procedure of the illustrated embodiment will be described.
Inserted into the inner cylinder 7 of the main body cylinder 3 is an assembled cylinder portion 33 of the dropper tube 29 from below until the reduced diameter tip portion 9 forcibly gets over the stopper projection 35 and protrudes on the inner cylinder 7. The fitting cylinder piece 25 of the bellows body 23 is closely fitted and assembled to the upper end of the portion 33 to complete the assembly of the second combination.
[0034]
When the assembly of the bellows body 23 to the dropper tube 29 is completed, the assembly support body 16 assembled with the elastic dome 21 is attached to the bellows body 23 with the spring 28 temporarily mounted on the bellows body 23. In the form in which the edge portion 27 is fitted to the lower portion of the main cylinder 17 and the fitting edge portion 27 is firmly sandwiched between the main barrel 3 and the undercut is formed in the upper half of the outer cylinder 4 of the main barrel 3. It is attached and fixed using coupling.
[0035]
When the assembly of the assembly support 16 to the main body cylinder 3 is completed, the cover cylinder 10 into which the operation button 12 is inserted and assembled is externally fitted to the outer cylinder 4 from above, and the cap 1 with the dropper is assembled. Complete.
[0036]
The through-hole 32 formed in the collar piece 31 of the dropper tube 29 causes the collar piece 31 to move into the container body 36 when changing between the closed state of the right half of FIG. 3 and the screwed state of the left half of FIG. The mouth portion 37 of the container is not sealed, thereby enabling a smooth pressure change in the container body 36 following the pressure change in the dropper space due to the relative lifting displacement of the first combination and the second combination. The suction and discharge of the content liquid to the dropper tube 29 accompanying the screwing operation of the cap with respect to the container body 36 is reliably and smoothly achieved.
[0037]
Reference numeral 38 denotes a soft material made of a soft material fitted and assembled in the mouth portion 37 of the container body 36, which is mounted on the upper end surface of the mouth portion 37 on the upper end of the fitting tube which is tightly fitted into the mouth portion 37. An outer flange that sets the limit of 38 fitting assembly is provided around, and lightly elastically contacts the outer peripheral surface of the pipe body 30 of the dropper tube 29 via a plurality of connecting arm pieces bent into a key shape at the lower end of the fitting cylinder. A squeeze ring 39 for squeezing off the content liquid adhering to the outer peripheral surface of the tube main body 30 is provided continuously.
[0038]
【The invention's effect】
Since the present invention has the above-described configuration, the following effects can be obtained.
The elastic dome that achieves suction of the content liquid to the dropper tube by elastic return force is elastically deformed only during the suction and discharge operation of the content liquid, and the other is not deformed, so it has a naturally stable posture. There is no risk of improper deformation due to fatigue, etc., or deterioration of elasticity, so that a good and stable syringe function can be reliably exhibited over a long period of time.
[0039]
Because the relative displacement of the two movable parts is achieved by the screwing operation of the cap with the dropper relative to the container body, the content liquid is sucked into the dropper tube, so the magnitude of the operating force is related between the two movable parts. Therefore, the entire structure can be simplified and the handling operation can be simplified.
[0040]
In the invention of claim 2, it is not necessary for the bellows body by assembling the dropper tube to the cap body so that it cannot be detached and can be moved up and down, but also cannot be displaced relative to each other. Therefore, the appropriate dropper function can be stably exhibited without causing unnecessary deformation of the bellows body.
[0041]
In the invention according to claim 3, since the cap body is a combined structure of the main body cylinder and a simple cylindrical cover cylinder, the cover cylinder fitted around the main body cylinder can be made of metal, Thereby, the excellent decorativeness of the metal material can be effectively exhibited.
[0042]
In the invention according to claim 4, the pressure change in the container body is quickly and accurately followed with respect to the pressure change in the dropper space due to the relative up-and-down displacement of the first combination and the second combination. As a result, it is possible to smoothly and reliably realize the contents liquid suction / discharge operation of the dropper tube accompanying the attachment / detachment of the cap to / from the container body.
[Brief description of the drawings]
FIG. 1 is an overall front view of a container in a closed state assembled to a container body according to an embodiment of the present invention.
2 is an overall front view of the embodiment of the present invention shown in FIG.
3 is an enlarged vertical cross-sectional view of a main part in a closed state assembled to a container book in the embodiment shown in FIG. 2;
4 is an enlarged plan cross-sectional view of a main part showing an assembled structure of an inner cylinder and an assembled cylinder portion in the embodiment shown in FIG. 2;
[Explanation of symbols]
DESCRIPTION OF SYMBOLS 1; Cap 2 with a dropper; Cap main body 3; Main body cylinder 4; Outer cylinder 5; Screw 6; Partition 7; Inner cylinder 8; Key vertical groove 9; Operation button 13; pressing foot piece 14; guide tube piece 15; locking step 16; assembly support 17; main body tube 18; top plate 19; vent hole 20; Part 23; bellows body 24; telescopic cylinder part 25; fitting cylinder piece 26; vent opening 27; fitting edge 28; spring 29; dropper pipe 30; pipe body 31; Part 34; key vertical strip 35; stopper projection 36; container body 37; mouth 38;

Claims (4)

スポイト管(29)を有し、該スポイト管(29)の管本体(30)を閉姿勢で容器体(36)内に垂下位置させるスポイト付きキャップであって、上端部に操作釦(12)を、抜け出し不能かつ突出状に昇降変位自在に内装し、下半部で前記容器体(36)の口部(37)に螺合により着脱する外筒(4) の中央部に、内鍔状の隔壁(6) を介して内筒(7) を連設したキャップ本体(2) と、主体筒(17)に、中央に通気孔(19)を開設した頂板(18)を連設すると共に、前記主体筒(17)の外周面に鍔筒片(20)を周設し、該鍔筒片(20)で前記外筒(4) の上半部に不動に内装組付きする組付き支持体(16)と、該組付き支持体(16)の主体筒(17)に上方から密に外装組付きし、前記操作釦(12)で押し潰し操作される半球殻状の弾性ドーム(21)と、前記組付き支持体(16)の主体筒(17)に下方から密に外装組付きし、前記主体筒(17)内に立ち上がり位置する伸縮筒部(24)の中央部に、通気開口(26)を開設した嵌着筒片(25)を垂設した弾性材製のベロー体(23)と、該ベロー体(23)の伸縮筒部(24)中央部と前記組付き支持体(16)の頂板(18)中央部との間に装着され、前記伸縮筒部(24)中央部を下方に付勢するばね(28)と、前記管本体(30)の上端部に、前記容器体(36)の口部(37)上端面に対向する大きさの鍔片(31)を周設し、該鍔片(31)より上方に突出した組付き筒部(33)を、前記内筒(7) に対して抜け出し不能であるが昇降変位可能に嵌入組付けし、前記内筒(7) から上方に突出した前記組付き筒部(33)の上端部を、前記ベロー体(23)の嵌着筒片(25)に密に外嵌組付けしたスポイト管(29)と、から成るスポイト付きキャップ。A cap with a dropper that has a dropper tube (29), and that causes the tube body (30) of the dropper tube (29) to hang down in the container body (36) in a closed position, with an operation button (12) at the upper end In the middle of the outer cylinder (4), which can be pulled out and displaced in a projecting manner and is detachably attached to the mouth (37) of the container body (36) in the lower half. The cap body (2) with the inner cylinder (7) connected through the partition wall (6) of the main body (2) and the top plate (18) with a vent hole (19) in the center are connected to the main cylinder (17). An assembly support is provided in which an outer cylinder piece (20) is provided around the outer peripheral surface of the main cylinder (17), and the inner cylinder is immovably attached to the upper half of the outer cylinder (4) with the outer cylinder piece (20). A body (16) and a hemispherical elastic dome (21) which is tightly attached to the main cylinder (17) of the assembly support (16) from above and is crushed by the operation button (12). ), And a main body cylinder (17) of the assembled support body (16), which are closely assembled from below to the main body cylinder (17), the main body cylinder (17) A bellows body (23) made of an elastic material in which a fitting cylinder piece (25) having a ventilation opening (26) is vertically suspended at a central portion of the expansion and contraction cylinder portion (24) standing at a position, and the bellows body (23 ) Of the telescopic cylinder part (24) and the top plate (18) central part of the assembled support (16), and a spring for biasing the central part of the telescopic cylinder part (24) downward ( 28) and a flange piece (31) having a size opposite to the upper end surface of the mouth portion (37) of the container body (36) is provided around the upper end portion of the pipe body (30). The assembled cylinder portion (33) protruding upward is fitted into the inner cylinder (7) so that it cannot be pulled out but can be moved up and down, and is assembled so as to protrude upward from the inner cylinder (7). A dropper cap comprising: a dropper tube (29) in which an upper end portion of the assembled tube portion (33) is closely fitted on the fitting tube piece (25) of the bellows body (23). 内筒(7) の内周面にキー縦溝(8) を設けると共に、前記内筒(7) の上端部を上方に縮径した縮径先端部(9) とし、スポイト管(29)の組付き筒部(33)の外周面下部に、前記キー縦溝(8) に周方向から係止するキー縦条(34)を突設すると共に、前記内筒(7) から上方に突出した組付き筒部(33)の上端部外周面に、前記縮径先端部(9) の上端が乗り越え不能に下方から突き当たるストッパー突条(35)を設けた請求項1記載のスポイト付きキャップ。A key longitudinal groove (8) is provided on the inner peripheral surface of the inner cylinder (7), and the upper end of the inner cylinder (7) is formed as a reduced diameter distal end (9), and the dropper tube (29) A key vertical strip (34) that locks in the key vertical groove (8) from the circumferential direction protrudes from the lower portion of the outer peripheral surface of the assembled cylindrical portion (33) and protrudes upward from the inner cylinder (7). The cap with a dropper according to claim 1, wherein a stopper protrusion (35) is provided on an outer peripheral surface of an upper end portion of the assembled cylinder portion (33) so that an upper end of the reduced diameter distal end portion (9) abuts from below so as not to get over. キャップ本体(2) を、外筒(4) と内筒(7) とを有する本体筒(3) と、該本体筒(3) の外筒(4) に外装組付けされ、上端部に操作釦(12)を内装組付けした金属製のカバー筒(10)と、から構成した請求項1または2記載のスポイト付きキャップ。The cap body (2) is externally assembled to the main cylinder (3) having the outer cylinder (4) and the inner cylinder (7), and the outer cylinder (4) of the main cylinder (3), and is operated at the upper end. 3. A cap with a dropper according to claim 1 or 2, comprising a metal cover cylinder (10) with a button (12) assembled therein. 容器体(36)の口部(37)開口部に対向するスポイト管(29)の鍔片(31)部分に、上下に貫通する通孔(32)を開設した請求項1または2または3記載のスポイト付きキャップ。The through hole (32) penetrating vertically is formed in the hook piece (31) portion of the dropper tube (29) facing the opening (37) of the container body (36). Cap with dropper.
JP27165698A 1998-09-25 1998-09-25 Cap with dropper Expired - Lifetime JP4203869B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP27165698A JP4203869B2 (en) 1998-09-25 1998-09-25 Cap with dropper

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP27165698A JP4203869B2 (en) 1998-09-25 1998-09-25 Cap with dropper

Publications (2)

Publication Number Publication Date
JP2000095262A JP2000095262A (en) 2000-04-04
JP4203869B2 true JP4203869B2 (en) 2009-01-07

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Cited By (1)

* Cited by examiner, † Cited by third party
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KR20230001196A (en) * 2021-06-28 2023-01-04 펌텍코리아 (주) Dropper container to prevent residual quantity

Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP5288412B2 (en) * 2009-09-30 2013-09-11 ポーラ化成工業株式会社 Replacement container for pump
KR101169008B1 (en) * 2010-01-20 2012-07-27 주식회사 탭코리아 Pump of spoid
KR101215420B1 (en) 2011-06-30 2012-12-26 (주)연우 Dispenser for liquid container

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20230001196A (en) * 2021-06-28 2023-01-04 펌텍코리아 (주) Dropper container to prevent residual quantity
WO2023277332A1 (en) * 2021-06-28 2023-01-05 펌텍코리아(주) Dropper container for preventing residue
KR102527876B1 (en) 2021-06-28 2023-05-10 펌텍코리아(주) Dropper container to prevent residual quantity

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