JP5150398B2 - cap - Google Patents

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JP5150398B2
JP5150398B2 JP2008198421A JP2008198421A JP5150398B2 JP 5150398 B2 JP5150398 B2 JP 5150398B2 JP 2008198421 A JP2008198421 A JP 2008198421A JP 2008198421 A JP2008198421 A JP 2008198421A JP 5150398 B2 JP5150398 B2 JP 5150398B2
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inner cylinder
cap
cylinder
pouring
joint member
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JP2010036908A (en
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智 坂本
水嶋  博
一男 鈴木
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Yoshino Kogyosho Co Ltd
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Yoshino Kogyosho Co Ltd
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Description

本発明は、液剤等の内容物を必要に応じて適量注出するのに好適なキャップに関する。   The present invention relates to a cap suitable for dispensing an appropriate amount of contents such as a liquid agent as necessary.

住宅用液体洗剤等に用いられるスクイズ容器として、例えば特許文献1記載のものが知られている。特許文献1記載のスクイズ容器は、スクイズ変形可能な胴部(容器本体)に、排出口(ノズル)が形成された頸部(キャップ)が装着された構造である。
特開2005−96839号公報
As a squeeze container used for a residential liquid detergent or the like, for example, one described in Patent Document 1 is known. The squeeze container described in Patent Document 1 has a structure in which a neck part (cap) in which a discharge port (nozzle) is formed is attached to a body part (container body) that can be squeezed and deformed.
JP 2005-96839 A

特許文献1記載のスクイズ容器では、洗剤等の内容物の注出量は、キャップの形状やノズルの径によりほぼ固定されており、スクイズの程度により若干調整できる程度である。そのため、多量の内容物を注出する場合には、容器本体からキャップを外さなければならず不便である。また、キャップと容器本体とが固着されている場合にはキャップを取り外すことができず、注出量を調整することができない。   In the squeeze container described in Patent Document 1, the amount of the content such as detergent is almost fixed by the shape of the cap and the diameter of the nozzle, and can be slightly adjusted by the degree of squeeze. Therefore, when a large amount of content is poured out, the cap must be removed from the container body, which is inconvenient. Moreover, when the cap and the container main body are fixed, the cap cannot be removed, and the amount of dispensing cannot be adjusted.

本発明は、このような事情に鑑みてなされたものであって、注出形態を変更し内容物の注出量を簡便に切り替えることができるキャップを提供することを目的としている。   This invention is made | formed in view of such a situation, Comprising: It aims at providing the cap which can change the pouring form and can change the pouring amount of the contents simply.

前記目的を達成するために、本発明は以下の手段を提案している。
すなわち本発明のキャップは、スクイズ変形可能な胴部を有する容器の口部に装着される有底筒状の計量室と、前記計量室に第1ヒンジ部を介して連結され前記計量室を開閉させるとともに、内容物を注出する注出筒を備える注出部と、前記注出部に第2ヒンジ部を介して連結され、前記注出筒を開閉させるオーバーキャップと、前記計量室の底壁部に貫設され、前記容器内に連通するとともに、前記注出筒に着脱自在に嵌合されて、前記注出部の前記第1ヒンジ部回りの開閉操作に伴い前記計量室内に連通遮断する連通筒部材と、を備え、前記連通筒部材は、前記底壁部に貫設された筒状のジョイント部材と、前記ジョイント部材の内周側に配設されて、前記注出筒に着脱自在に嵌合されるとともに、前記注出部の前記第1ヒンジ部回りの開閉操作に伴い該ジョイント部材に対しキャップ軸方向に移動させられる内筒と、を備え、前記ジョイント部材において前記底壁部から前記計量室の外側に突出した外壁部分にはジョイント孔部が設けられ、前記内筒の周壁部には内筒孔部が設けられ、前記注出部を閉じた状態で、前記ジョイント孔部と前記内筒孔部とが連通され、前記注出部を開けたときに、前記注出筒が前記内筒から取り外されるとともに該内筒を前記ジョイント部材に対して引き上げて、前記ジョイント孔部と前記内筒孔部とが遮断される構成とされていることを特徴とする。
In order to achieve the above object, the present invention proposes the following means.
That is, the cap of the present invention is connected to the weighing chamber having a bottom having a squeeze-deformable body portion and a bottomed cylindrical weighing chamber, and is connected to the weighing chamber via a first hinge portion to open and close the weighing chamber. A pouring part having a pouring cylinder for pouring out the contents, an overcap connected to the pouring part via a second hinge part and opening and closing the pouring cylinder, and a bottom of the measuring chamber It penetrates the wall, communicates with the inside of the container, and is detachably fitted to the dispensing tube, and is disconnected from the measurement chamber when the dispensing portion is opened and closed around the first hinge portion. A connecting tubular member that is disposed on the inner peripheral side of the joint member and is attached to and detached from the dispensing tube. Freely fitted and around the first hinge part of the pouring part. An inner cylinder that is moved in the cap axial direction with respect to the joint member in accordance with a closing operation, and a joint hole is provided in an outer wall portion of the joint member that protrudes from the bottom wall portion to the outside of the measuring chamber. When the inner cylinder hole portion is provided in the peripheral wall portion of the inner cylinder, and the joint hole portion and the inner cylinder hole portion are communicated with the extraction portion closed, the extraction portion is opened. The dispensing cylinder is removed from the inner cylinder, and the inner cylinder is pulled up with respect to the joint member so that the joint hole and the inner cylinder hole are blocked. And

本発明に係るキャップによれば、注出部を閉じた状態で、連通筒部材は、注出筒に嵌合した状態とされて注出筒と容器内とを連通させるとともに計量室内とは遮断される。この状態でオーバーキャップを開けて注出部の注出筒を露出させ容器を傾けることで、注出筒から容器内の内容物を比較的少量ずつ注出することができる。
また、注出部を開けた状態では、計量室が露出されるとともに、連通筒部材から注出筒が取り外されて連通筒部材が計量室内と連通される。この状態で容器をスクイズ変形させることで、内容物が連通筒部材から計量室内に流出して貯留されることになり、その後容器を傾ければ、内容物を計量室内から比較的多量に注出することができる。
According to the cap of the present invention, the communicating cylinder member is in a state of being fitted to the dispensing cylinder in a state where the dispensing section is closed, and the dispensing cylinder and the inside of the container are communicated with each other, and is disconnected from the measurement chamber. Is done. In this state, the contents in the container can be poured out in a relatively small amount from the dispensing cylinder by opening the overcap to expose the dispensing cylinder in the dispensing part and tilting the container.
Further, in a state where the pouring part is opened, the measuring chamber is exposed, the pouring tube is removed from the communicating cylinder member, and the communicating cylinder member is communicated with the measuring chamber. By squeezing the container in this state, the contents flow out from the communicating cylinder member into the weighing chamber and are stored. If the container is then tilted, the contents are poured out from the weighing chamber in a relatively large amount. can do.

また、内筒がジョイント部材に対してキャップ軸方向に移動することで、ジョイント孔部と内筒孔部とが連通遮断する。すなわち、注出部を閉じた状態ではジョイント孔部と内筒孔部とが連通するので、この状態で容器を傾けることで容器内からジョイント孔部及び内筒孔部を介し連通筒部材の内部に内容物を流入させることができる。また、注出部を開けることで内筒をジョイント部材に対して引き上げたときに、ジョイント孔部と内筒孔部とが遮断するので、この状態で容器をスクイズ変形させることでジョイント部材の容器側開口部から内容物が連通筒部材に流入するとともに、この内容物をジョイント孔部及び内筒孔部を通して容器内に漏出させることなく、内筒を介し計量室へと流出させて、計量室に貯留することができる。 Further , the joint hole and the inner cylinder hole are disconnected from each other by moving the inner cylinder in the cap axial direction with respect to the joint member. That is, since the joint hole portion and the inner cylinder hole portion communicate with each other in a state where the pouring portion is closed, the inside of the communicating cylinder member is connected from the inside of the container through the joint hole portion and the inner cylinder hole portion by tilting the container in this state. The contents can be flowed into. In addition, when the inner cylinder is pulled up with respect to the joint member by opening the pouring part, the joint hole and the inner cylinder hole are blocked, so that the container of the joint member can be deformed by squeezing the container in this state. The contents flow into the communicating cylinder member from the side opening, and the contents are allowed to flow into the measuring chamber through the inner cylinder without leaking into the container through the joint hole and the inner cylinder hole. Can be stored.

また、本発明に係るキャップにおいて、前記内筒には第1係合部が形成され、前記注出筒には前記第1係合部に係合する第2係合部が形成されていることとしてもよい。   Moreover, the cap which concerns on this invention WHEREIN: The 1st engaging part is formed in the said inner cylinder, and the 2nd engaging part engaged with the said 1st engaging part is formed in the said extraction pipe | tube. It is good.

本発明に係るキャップによれば、注出部を閉じた際には、連通筒部材の内筒の第1係合部と注出部の注出筒の第2係合部とが係合するので、内筒と注出筒とを確実に嵌合させることができる。従って、注出部を閉じた状態で、容器の内容物が連通筒部材から計量室内に漏れ出るようなことが防止される。また、注出部を開ける際には、注出筒の第2係合部が内筒の第1係合部に引っ掛かることにより、注出筒が内筒をジョイント部材に対して確実に引き上げることができる。   According to the cap of the present invention, when the extraction portion is closed, the first engagement portion of the inner cylinder of the communicating cylinder member and the second engagement portion of the extraction tube of the extraction portion are engaged. Therefore, the inner cylinder and the extraction cylinder can be reliably fitted. Accordingly, it is possible to prevent the contents of the container from leaking from the communicating cylinder member into the measuring chamber with the pouring portion closed. Further, when opening the pouring part, the second engaging part of the pouring cylinder is caught by the first engaging part of the inner cylinder, so that the pouring cylinder reliably pulls up the inner cylinder with respect to the joint member. Can do.

また、本発明に係るキャップにおいて、前記ジョイント部材の内周及び前記内筒の外周の少なくとも一方には、前記ジョイント孔部及び前記内筒孔部をキャップ軸方向の両側からシールするシール部が形成されていることとしてもよい。   In the cap according to the present invention, a seal portion that seals the joint hole portion and the inner cylinder hole portion from both sides in the cap axial direction is formed on at least one of the inner periphery of the joint member and the outer periphery of the inner tube. It is good also as being done.

本発明に係るキャップによれば、ジョイント部材の内周と内筒の外周との間において、ジョイント孔部及び内筒孔部が位置する部分がキャップ軸方向の両側からシールされているので、容器の内容物が、ジョイント孔部又は内筒孔部を通してジョイント部材の内周と内筒の外周との間から漏れるようなことが防止される。すなわち、注出部を閉めて容器を傾けた場合には、内容物が内筒とジョイント部材との間から計量室内へ漏れ出るようなことが防止される。また、注出部を開けて容器をスクイズ変形した場合には、内容物がジョイント孔部又は内筒孔部を通して容器内に戻されてしまうようなことが防止され、計量室内へ効率よく流出させることができる。   According to the cap of the present invention, the portion where the joint hole and the inner cylinder hole are located is sealed from both sides in the cap axial direction between the inner periphery of the joint member and the outer periphery of the inner cylinder. Is prevented from leaking from between the inner circumference of the joint member and the outer circumference of the inner cylinder through the joint hole or the inner cylinder hole. That is, when the pouring part is closed and the container is tilted, the contents are prevented from leaking into the measuring chamber from between the inner cylinder and the joint member. In addition, when the container is squeezed and deformed by opening the pouring part, it is prevented that the contents are returned into the container through the joint hole or the inner cylinder hole, and efficiently flow into the measuring chamber. be able to.

また、本発明に係るキャップにおいて、前記ジョイント部材には第1位置合わせ部が形成され、前記内筒には前記第1位置合わせ部に噛み合い前記ジョイント部材と前記内筒とのキャップ周方向に沿った相対移動を規制する第2位置合わせ部が形成されていることとしてもよい。   Moreover, the cap which concerns on this invention WHEREIN: The 1st alignment part is formed in the said joint member, The said inner cylinder meshes with the said 1st alignment part, and it follows the cap circumferential direction of the said joint member and the said inner cylinder. Alternatively, a second alignment portion that restricts relative movement may be formed.

本発明に係るキャップによれば、ジョイント部材の第1位置合わせ部と内筒の第2位置合わせ部とが噛み合いジョイント部材と内筒とのキャップ周方向に沿った相対移動を規制するので、このキャップを形成するに際し、ジョイント孔部及び内筒孔部夫々のキャップ周方向に沿った位置を容易かつ精度よく一致させることができる。   According to the cap of the present invention, the first alignment portion of the joint member and the second alignment portion of the inner cylinder mesh with each other, and the relative movement along the circumferential direction of the cap between the joint member and the inner cylinder is restricted. When forming the cap, the positions of the joint hole and the inner cylinder hole along the circumferential direction of the cap can be easily and accurately matched.

また、本発明に係るキャップにおいて、前記注出筒には、前記注出部を閉じたときに前記内筒を押し込み可能な押し込み部が形成されていることとしてもよい。   Moreover, the cap which concerns on this invention WHEREIN: The pushing-in part which can push in the said inner cylinder when the said pouring part is closed is formed in the said pouring cylinder.

本発明に係るキャップによれば、注出部を閉じた際に、注出筒の押し込み部が内筒を押し込むので、ジョイント孔部と内筒孔部とが確実に連通し、この状態で容器を傾けることで容器内からジョイント孔部及び内筒孔部を介し連通筒部材の内部に内容物を流入させることができる。   According to the cap of the present invention, when the pouring portion is closed, the pushing portion of the pouring tube pushes the inner tube, so that the joint hole portion and the inner tube hole portion are reliably communicated with each other in this state. By tilting, the contents can be caused to flow into the communicating cylinder member from the inside of the container through the joint hole and the inner cylinder hole.

本発明に係るキャップによれば、計量室と注出部、及び注出部とオーバーキャップの夫々を連結する第1及び第2ヒンジ部を備えているので、注出部及びオーバーキャップのいずれを開ける場合にも注出部やオーバーキャップがキャップから外れてしまうことはなく、簡便に開閉操作を行うことができる。従って、簡便に注出形態を変更し注出量を切り替えることができる。   The cap according to the present invention includes the first and second hinge portions that connect the weighing chamber and the pouring portion, and the pouring portion and the overcap, respectively. Even when opening, the pouring part and the overcap are not detached from the cap, and the opening / closing operation can be easily performed. Therefore, it is possible to easily change the dispensing form and switch the dispensing amount.

図1は本発明の一実施形態に係るキャップの概略構成を示す側断面図、図2は本発明の一実施形態に係るキャップの注出筒を用いた注出を説明する概略側断面図、図3は本発明の一実施形態に係るキャップの計量室に内容物を貯留した状態を示す概略側断面図、図4は本発明の一実施形態に係るキャップの計量室を用いた注出を説明する概略側断面図である。   FIG. 1 is a side sectional view showing a schematic configuration of a cap according to an embodiment of the present invention, FIG. 2 is a schematic side sectional view for explaining dispensing using a dispensing cylinder of the cap according to an embodiment of the present invention, FIG. 3 is a schematic side sectional view showing a state in which contents are stored in a measuring chamber of a cap according to an embodiment of the present invention, and FIG. 4 is a view of dispensing using the measuring chamber of the cap according to an embodiment of the present invention. It is a schematic sectional side view to explain.

本実施形態のキャップ1は、図1に示すように、容器2の口部に取り付けられて使用されるものであり、容器2内に収容された液剤(内容物)を注出させるものである。
容器2は、軟質又は薄肉の樹脂材料等で形成されてスクイズ変形可能な胴部を有している。また、容器2の内部には液剤(不図示)が貯留されている。また、容器2の口部の外周面には雄ねじ2aが形成されている。
As shown in FIG. 1, the cap 1 of the present embodiment is used by being attached to the mouth portion of the container 2, and discharges the liquid agent (contents) stored in the container 2. .
The container 2 has a trunk portion that is formed of a soft or thin resin material or the like and can be squeezed. A liquid agent (not shown) is stored in the container 2. A male screw 2 a is formed on the outer peripheral surface of the mouth of the container 2.

キャップ1は、容器2の口部に装着される有底筒状のキャップ本体3と、キャップ本体3の先端側(図1における上方側)に配される注出部4と、注出部4の先端側に配されるオーバーキャップ5とを備えている。これらのキャップ本体3、注出部4、及びオーバーキャップ5はそれぞれ略筒状に形成されるとともに共通軸と同軸に配設されている。以下この共通軸をキャップ軸Oと言い、このキャップ軸O方向に沿ってキャップ本体3側を下側、オーバーキャップ5側を上側と言う。   The cap 1 has a bottomed cylindrical cap body 3 attached to the mouth of the container 2, a pouring part 4 disposed on the tip side (the upper side in FIG. 1) of the cap body 3, and a pouring part 4. And an overcap 5 disposed on the tip side of the. The cap body 3, the extraction portion 4, and the overcap 5 are each formed in a substantially cylindrical shape and are disposed coaxially with the common shaft. Hereinafter, the common axis is referred to as a cap axis O, and the cap body 3 side is referred to as a lower side and the overcap 5 side is referred to as an upper side along the cap axis O direction.

キャップ本体3は、容器2の口部に装着される外筒部32と、有底筒状に形成され外筒部32の径方向内側に配設された内筒部(計量室)31と、これら内筒部31及び外筒部32を一体に繋ぐ略リング状の鍔部33とから構成される。内筒部31は、その外径が容器2の口部の内径と略同一又は僅かに小さく設定されており、キャップ軸O方向の長さが容器2の口部のキャップ軸O方向の長さよりも長く設定されている。なお、内筒部31の内周面には、図示しない計量目盛りが形成されていてもよい。   The cap body 3 includes an outer cylinder part 32 attached to the mouth part of the container 2, an inner cylinder part (metering chamber) 31 formed in a bottomed cylinder shape and disposed radially inside the outer cylinder part 32, It is comprised from the substantially ring-shaped collar part 33 which connects these inner cylinder parts 31 and the outer cylinder parts 32 integrally. The outer diameter of the inner cylinder portion 31 is set to be substantially the same as or slightly smaller than the inner diameter of the mouth portion of the container 2, and the length in the cap axis O direction is longer than the length of the mouth portion of the container 2 in the cap axis O direction. Is also set longer. A measurement scale (not shown) may be formed on the inner peripheral surface of the inner cylinder portion 31.

また、内筒部31の底壁部31aには、容器2内に連通する後述の連通筒部材6が貫設されている。また内筒部31の底壁部31aには、この連通筒部材6を配設するための筒状のジョイント固定部31bが立設されている。また、内筒部31の上端部は、鍔部33よりも上側に配されるとともに、内筒部31に貯留した液剤の注出時の液切れ性を考慮して、その内径が下側から上側に向かうに連れ漸次拡径したリップ状に形成されている。   In addition, a below-described communication cylinder member 6 communicating with the inside of the container 2 is provided in the bottom wall portion 31 a of the inner cylinder part 31. In addition, a cylindrical joint fixing portion 31 b for arranging the communication tubular member 6 is erected on the bottom wall portion 31 a of the inner cylindrical portion 31. In addition, the upper end portion of the inner cylinder portion 31 is arranged above the flange portion 33, and the inner diameter is set from the lower side in consideration of the liquid running out property at the time of dispensing the liquid agent stored in the inner cylinder portion 31. It is formed in a lip shape that gradually increases in diameter toward the upper side.

また、鍔部33は、内筒部31の上部と外筒部32の上面とを接続している。また、鍔部33と外筒部32との接続部分の外周には、周方向に沿って延びる環状の凹部34が形成されている。
また、外筒部32の内周には、容器2の雄ねじ2aに螺着する雌ねじ32aが形成されている。そして、外筒部32の雌ねじ32aが容器2の口部の雄ねじ2aに螺着され締め込まれることで、容器2の口部の上端面と鍔部33の下面とが密接し液剤を封止する構成とされている。なお、図示の実施例では、容器2の口部の上端面と鍔部33の下面との密接に加え、内筒部31の上側部分の外径を容器2の口部の内径より僅かに大きく設定することにより、前記上側部分の外周面と容器2の口部の内周面とも密接することになり、より確実な液剤の封止を達成している。
The flange 33 connects the upper part of the inner cylinder part 31 and the upper surface of the outer cylinder part 32. Further, an annular recess 34 extending along the circumferential direction is formed on the outer periphery of the connection portion between the flange portion 33 and the outer cylindrical portion 32.
Further, on the inner periphery of the outer cylinder portion 32, a female screw 32a that is screwed onto the male screw 2a of the container 2 is formed. Then, the female screw 32a of the outer cylindrical portion 32 is screwed into the male screw 2a of the mouth portion of the container 2 and tightened, so that the upper end surface of the mouth portion of the container 2 and the lower surface of the flange portion 33 are in close contact with each other and seal the liquid agent It is supposed to be configured. In the illustrated embodiment, the outer diameter of the upper portion of the inner cylinder portion 31 is slightly larger than the inner diameter of the mouth portion of the container 2 in addition to the close contact between the upper end surface of the mouth portion of the container 2 and the lower surface of the flange portion 33. By setting, the outer peripheral surface of the upper part and the inner peripheral surface of the mouth portion of the container 2 are brought into close contact with each other, so that more reliable sealing of the liquid agent is achieved.

また、注出部4は有頂筒状をなし、筒状の本体部41と、該本体部41の上端を塞ぐ天壁部42と、該本体部41の径方向外方を覆う傘部43とにより一体に形成されている。本体部41は、その下端部の外径が内筒部31の上端部の内径と略同一に形成され、内筒部31の径方向内側に嵌め合わされて、本体部41及び内筒部31の内部を封止するようになっている。また、天壁部42には、液剤を注出する注出筒44が該天壁部42を貫いて形成されている。   In addition, the pouring portion 4 has a cylindrical shape with a top, a cylindrical main body portion 41, a top wall portion 42 that covers the upper end of the main body portion 41, and an umbrella portion 43 that covers the radially outer side of the main body portion 41. And are integrally formed. The outer diameter of the lower end portion of the main body portion 41 is formed to be substantially the same as the inner diameter of the upper end portion of the inner cylinder portion 31 and is fitted to the inner side of the inner cylinder portion 31 in the radial direction. The inside is sealed. The top wall portion 42 is formed with a pouring tube 44 for pouring the liquid agent through the top wall portion 42.

注出筒44は、その天壁部42よりも上側の部分が、下方から上方に向かうに連れ漸次縮径して形成されたノズル部44aとされている。また、注出筒44の天壁部42よりも下側の部分は、円筒状の注出筒本体44bとされている。また、注出筒本体44bの内周の下端部分には、周方向に沿って延びる環状の凹部(第2係合部)44cが形成されている。また、注出筒本体44bの内周には、天壁部42から凹部44cの上端にかけキャップ軸O方向に延びる板状の押し込み部44dが形成されている。   The dispensing cylinder 44 has a nozzle portion 44a formed such that the portion above the top wall portion 42 is gradually reduced in diameter from the lower side to the upper side. Moreover, the part below the top wall part 42 of the extraction pipe | tube 44 is made into the cylindrical extraction cylinder main body 44b. An annular recess (second engagement portion) 44c extending along the circumferential direction is formed at the lower end portion of the inner periphery of the dispensing tube main body 44b. In addition, a plate-like pushing portion 44d extending in the cap axis O direction from the top wall portion 42 to the upper end of the recess 44c is formed on the inner periphery of the dispensing cylinder main body 44b.

また、傘部43は、キャップ軸O方向の上方から下方に向かうに従い漸次拡径して形成され、その上部が本体部41の上部に繋がっている。また、傘部43の内周の下端部分には、周方向に沿って延びる環状の凸部43aが設けられ、この凸部43aがキャップ本体3の凹部34に係合している。また、傘部43の上端部分は天壁部42の下面の外周部分に接続されており、この接続する部分の外周には、周方向に沿って延びる環状の凹部45が形成されている。   In addition, the umbrella portion 43 is formed with a diameter that gradually increases from the upper side toward the lower side in the cap axis O direction, and the upper portion thereof is connected to the upper portion of the main body portion 41. Further, an annular convex portion 43 a extending along the circumferential direction is provided at the lower end portion of the inner periphery of the umbrella portion 43, and the convex portion 43 a is engaged with the concave portion 34 of the cap body 3. Moreover, the upper end part of the umbrella part 43 is connected to the outer peripheral part of the lower surface of the top wall part 42, and the cyclic | annular recessed part 45 extended along the circumferential direction is formed in the outer periphery of this connected part.

また、注出部4の傘部43の下端部分と、キャップ本体3の外筒部32の上端部分とは、互いに周方向の一部で第1ヒンジ部7を介して連結されている。これにより、注出部4は、第1ヒンジ部7を中心に回動して、キャップ本体3の内筒部31を開閉可能としている。
また、注出部4の傘部43の外周面には、第1ヒンジ部7の配設位置に対してキャップ軸Oを挟んだ反対側に、径方向外方に延びる注出部操作片8が形成されている。
Moreover, the lower end part of the umbrella part 43 of the extraction | pouring part 4 and the upper end part of the outer cylinder part 32 of the cap main body 3 are mutually connected through the 1st hinge part 7 in a part of the circumferential direction. Thereby, the extraction | pouring part 4 rotates centering on the 1st hinge part 7, and can open and close the inner cylinder part 31 of the cap main body 3. FIG.
Further, on the outer peripheral surface of the umbrella portion 43 of the extraction portion 4, an extraction portion operation piece 8 extending radially outwardly on the opposite side of the cap shaft O with respect to the arrangement position of the first hinge portion 7. Is formed.

また、オーバーキャップ5は、有頂筒状に形成され、注出筒44のノズル部44aを覆っている。オーバーキャップ5の天壁部には、略リング状に形成され下方に向け突出するノズル封止部51が設けられている。ノズル封止部51の内径は、注出筒44のノズル部44aの上端部分の外径と略同一に設定されノズル部44aを封止するようになっている。また、オーバーキャップ5の内周の下端部分には、周方向に沿って延びる環状の凸部52が設けられ、この凸部52が注出部4の凹部45に係合している。   In addition, the overcap 5 is formed in a top cylinder shape and covers the nozzle portion 44 a of the dispensing cylinder 44. A nozzle sealing portion 51 that is formed in a substantially ring shape and protrudes downward is provided on the top wall portion of the overcap 5. The inner diameter of the nozzle sealing portion 51 is set to be substantially the same as the outer diameter of the upper end portion of the nozzle portion 44a of the dispensing tube 44 so as to seal the nozzle portion 44a. An annular convex portion 52 extending along the circumferential direction is provided at the lower end portion of the inner periphery of the overcap 5, and this convex portion 52 is engaged with the concave portion 45 of the extraction portion 4.

また、オーバーキャップ5の下端部分と注出部4の本体部41及び傘部43の上端部分とは、互いに周方向の一部で第2ヒンジ部9を介して連結されている。これにより、オーバーキャップ5は、第2ヒンジ部9を中心に回動して、注出筒44のノズル部44aを開閉可能としている。
また、第2ヒンジ部9と注出部操作片8とは、互いに周方向の位置を同じくして配置されている。従って、第1ヒンジ部7と第2ヒンジ部9とは、互いに注出部4の外周面を回り込んだ反対側に配設されている。
In addition, the lower end portion of the overcap 5 and the upper end portion of the body portion 41 and the umbrella portion 43 of the extraction portion 4 are connected to each other through the second hinge portion 9 at a part in the circumferential direction. As a result, the overcap 5 rotates about the second hinge portion 9 so that the nozzle portion 44a of the dispensing tube 44 can be opened and closed.
Moreover, the 2nd hinge part 9 and the extraction | pouring part operation piece 8 are mutually arrange | positioned so that the position of the circumferential direction may be the same. Therefore, the first hinge portion 7 and the second hinge portion 9 are disposed on opposite sides of the outer peripheral surface of the extraction portion 4.

また、オーバーキャップ5の外周面には、第2ヒンジ部9の配設位置に対してキャップ軸Oを挟んだ反対側に、径方向外方に延びるオーバーキャップ操作片10が形成されている。すなわち、オーバーキャップ操作片10と第1ヒンジ部7とは、互いに周方向の位置を同じくして配置されている。
そして、以上のキャップ本体3、注出部4、オーバーキャップ5、第1ヒンジ部7、及び第2ヒンジ部9は一体に形成されている。
In addition, an overcap operation piece 10 extending radially outward is formed on the outer peripheral surface of the overcap 5 on the opposite side of the cap shaft O with respect to the arrangement position of the second hinge portion 9. In other words, the overcap operation piece 10 and the first hinge portion 7 are arranged at the same circumferential position.
And the above cap main body 3, the extraction | pouring part 4, the overcap 5, the 1st hinge part 7, and the 2nd hinge part 9 are integrally formed.

また、連通筒部材6は、筒状をなし底壁部31aに貫設されてジョイント固定部31bの内周面にその外周面が密接して嵌合されたジョイント部材61と、ジョイント部材61の内周側に配設されて注出筒44に着脱自在に嵌合されるとともに、注出部4の第1ヒンジ部7回りの開閉操作に伴いジョイント部材61に対しキャップ軸O方向に移動させられる内筒62と、ジョイント部材61の下端部分に繋がり容器2の底部近傍まで延びるパイプ部材63と、を備えている。   The communication tubular member 6 has a cylindrical shape, a joint member 61 that penetrates the bottom wall portion 31 a and has an outer peripheral surface closely fitted to the inner peripheral surface of the joint fixing portion 31 b, and the joint member 61. It is disposed on the inner peripheral side and is detachably fitted to the extraction tube 44, and is moved in the direction of the cap axis O with respect to the joint member 61 in accordance with the opening / closing operation around the first hinge portion 7 of the extraction portion 4. And a pipe member 63 that is connected to the lower end portion of the joint member 61 and extends to the vicinity of the bottom portion of the container 2.

ジョイント部材61において底壁部31aからキャップ軸O方向に沿って内筒部31の底壁部31a下方に突出した外壁部分には、周方向に間隔を開け複数のジョイント孔部61aが設けられている。ジョイント孔部61aは、前記外壁部分において底壁部31aよりも僅かに下側の部分に配置されて、ジョイント部材61内と容器2内とを連通させている。また、ジョイント部材61の内周側には、キャップ軸O方向に延在する軸体61bがジョイント部材61に同軸一体に形成されている。なお、ジョイント孔部61aは、必ずしも複数設ける必要はなく、少なくとも1つ形成されていればよい。   In the joint member 61, a plurality of joint hole portions 61 a are provided at intervals in the circumferential direction on the outer wall portion that protrudes from the bottom wall portion 31 a along the cap axis O direction and below the bottom wall portion 31 a of the inner cylinder portion 31. Yes. The joint hole portion 61a is disposed in a portion slightly lower than the bottom wall portion 31a in the outer wall portion, and allows the inside of the joint member 61 and the inside of the container 2 to communicate with each other. Further, on the inner peripheral side of the joint member 61, a shaft body 61 b extending in the direction of the cap axis O is formed coaxially with the joint member 61. Note that it is not always necessary to provide a plurality of joint hole portions 61a, and it is sufficient that at least one joint hole portion 61a is formed.

軸体61bは、キャップ軸O方向に延びる軸体本体11と、軸体本体11の下端に接続され多段円板状をなす軸体台部12とを備えている。軸体本体11の外周面には、周方向に間隔を開け配されるとともにキャップ軸O方向に延びる板状の第1位置合わせ部11aが複数形成されている。   The shaft body 61b includes a shaft body main body 11 extending in the direction of the cap axis O, and a shaft body base portion 12 connected to the lower end of the shaft body main body 11 and forming a multistage disk shape. On the outer peripheral surface of the shaft body 11, a plurality of plate-like first alignment portions 11 a that are spaced apart in the circumferential direction and extend in the cap axis O direction are formed.

また、軸体台部12は、ジョイント孔部61aよりも下側に配設されており、キャップ軸O方向に並ぶ下側部分と上側部分とから形成されている。軸体台部12の下側部分は、その外周部分がジョイント部材61の内周面に一体とされて形成されている。また、下側部分は、ジョイント部材61の内周面に、径方向内方に向けて突設された複数の突出部12aを備え、これら突出部12aは、周方向に互いに間隔を開けて配設されている。また、下側部分の突出部12a下面の外周縁部にはパイプ部材63の上端面が当接されており、周方向で隣り合う突出部12a同士の間の隙間及びパイプ部材63の内部が連通している。また、パイプ部材63の外径とジョイント部材61の内径とは略同一に設定され、互いに密接に嵌め合わされている。   Moreover, the shaft body base part 12 is arrange | positioned below the joint hole part 61a, and is formed from the lower part and upper part which are located in a line in the cap axis | shaft O direction. The lower portion of the shaft base 12 is formed such that the outer peripheral portion thereof is integrated with the inner peripheral surface of the joint member 61. The lower portion includes a plurality of projecting portions 12a projecting radially inward on the inner peripheral surface of the joint member 61, and these projecting portions 12a are arranged at intervals in the circumferential direction. It is installed. Further, the upper end surface of the pipe member 63 is in contact with the outer peripheral edge of the lower surface of the projecting portion 12a in the lower portion, and the gap between the projecting portions 12a adjacent to each other in the circumferential direction and the inside of the pipe member 63 communicate with each other. doing. Further, the outer diameter of the pipe member 63 and the inner diameter of the joint member 61 are set to be substantially the same, and are closely fitted to each other.

また、軸体台部12の上側部分は、その上端面が軸体本体11の下端面に接続されて、一体とされている。上側部分には、キャップ軸O方向の中央部分から上側に向かうに連れ漸次縮径したテーパ面12bが形成されている。また、上側部分には、キャップ軸O方向に貫通し周方向に互いに間隔を開け複数の孔部12cが形成されており、この孔部12cは下側部分の突出部12a同士の間の隙間と連通している。
そして、軸体本体11の径方向外方の空間、軸体台部12の上側部分の孔部12c、及び軸体台部12の下側部分の突出部12a同士の間の隙間が互いに連通している。
Further, the upper portion of the shaft body base portion 12 is integrated with the upper end surface thereof connected to the lower end surface of the shaft body main body 11. The upper portion is formed with a tapered surface 12b having a diameter gradually reduced from the central portion in the direction of the cap axis O toward the upper side. The upper portion is formed with a plurality of holes 12c penetrating in the direction of the cap axis O and spaced apart from each other in the circumferential direction. The holes 12c are defined as gaps between the protrusions 12a of the lower portion. Communicate.
A space between the radially outer space of the shaft body 11, the hole 12 c in the upper portion of the shaft base 12, and the protrusions 12 a in the lower portion of the shaft base 12 communicate with each other. ing.

また、ジョイント部材61の内周面には、ジョイント孔部61aのキャップ軸O方向の両側に、径方向内方に向け突出し、周方向に沿って延びる複数のシール部13が形成されている。本実施形態では、シール部13が3つ設けられており、ジョイント孔部61aの上縁部分及び下縁部分に各1つ、及び前記上縁部分の上側に離間して1つが設けられている。また、ジョイント部材61の内周面においては、3つのシール部13のうち最も上側に配されるものよりもさらに上側に位置する部分に、拡径された拡径部61cが形成されており、この拡径部61cのキャップ軸O方向の両端には、夫々縮径されたストッパー部61dが形成されている。   In addition, on the inner peripheral surface of the joint member 61, a plurality of seal portions 13 projecting radially inward and extending along the circumferential direction are formed on both sides of the joint hole portion 61a in the cap axis O direction. In the present embodiment, three seal portions 13 are provided, one on each of the upper edge portion and the lower edge portion of the joint hole 61a, and one on the upper side of the upper edge portion. . Moreover, in the inner peripheral surface of the joint member 61, a diameter-expanded portion 61c having an enlarged diameter is formed in a portion positioned further above the uppermost one of the three seal portions 13, Stopped portions 61d each having a reduced diameter are formed at both ends of the enlarged diameter portion 61c in the cap axis O direction.

また、内筒62は有頂筒状をなし、ジョイント部材61の内周面と軸体本体11の外周面との間に配設されて、ジョイント部材61に対しキャップ軸O方向に移動可能とされている。内筒62の外周面のキャップ軸O方向の中央部分には、周方向に沿った略リング状をなし径方向外方に突出するフランジ部62aが形成されている。フランジ部62aは、その外径がジョイント部材61の拡径部61cの内径と略同一に形成されている。   In addition, the inner cylinder 62 has a crested cylindrical shape, and is disposed between the inner peripheral surface of the joint member 61 and the outer peripheral surface of the shaft body 11, and is movable in the cap axis O direction with respect to the joint member 61. Has been. A flange portion 62a is formed in the central portion of the outer peripheral surface of the inner cylinder 62 in the direction of the cap axis O so as to form a substantially ring shape along the circumferential direction and project outward in the radial direction. The outer diameter of the flange portion 62 a is formed substantially the same as the inner diameter of the enlarged diameter portion 61 c of the joint member 61.

また、内筒62においてフランジ部62aよりも下側に位置する部分の外径は、ジョイント部材61のシール部13の内径と略同一に設定されており、内筒62の外周面とシール部13とが摺動可能に密接している。また、内筒62の内周の下端部分には、内筒62の下端面から上方に向かうに従い漸次縮径するテーパ面62bが形成されている。また、内筒62においてフランジ部62aとテーパ面62bとの間に位置する周壁部には、周方向に間隔を開け複数の内筒孔部62cが設けられている。内筒62の内筒孔部62cの内径は、ジョイント部材61のジョイント孔部61aの内径と同等になっている。なお、内筒孔部62cもジョイント孔部61a同様、必ずしも複数設ける必要はなく、ジョイント孔部61aに対応して少なくとも1つ形成されていればよい。   Further, the outer diameter of the portion of the inner cylinder 62 positioned below the flange portion 62 a is set to be substantially the same as the inner diameter of the seal portion 13 of the joint member 61, and the outer peripheral surface of the inner cylinder 62 and the seal portion 13 are set. And are closely slidable. Further, a tapered surface 62 b that gradually decreases in diameter from the lower end surface of the inner cylinder 62 upward is formed at the lower end portion of the inner periphery of the inner cylinder 62. In the inner cylinder 62, a plurality of inner cylinder hole parts 62c are provided in the circumferential wall part located between the flange part 62a and the tapered surface 62b with a gap in the circumferential direction. The inner diameter of the inner cylinder hole 62 c of the inner cylinder 62 is equal to the inner diameter of the joint hole 61 a of the joint member 61. In addition, it is not always necessary to provide a plurality of inner cylinder hole portions 62c as in the joint hole portion 61a, and it is sufficient that at least one inner cylinder hole portion 62c is formed corresponding to the joint hole portion 61a.

内筒62は、図1、図2に示すように、内筒62のテーパ面62bと軸体台部12のテーパ面12bとが当接した状態とされることで、ジョイント部材61に対するキャップ軸O方向の下方への移動を規制される。また、この状態において、フランジ部62aの下面の外周縁部と、ジョイント部材61の拡径部61cに形成された2つのストッパー部61dのうち、下側に位置するストッパー部61dとが当接している。また、このように内筒62がジョイント部材61に対しキャップ軸O方向の移動範囲の下端に配された状態で、内筒62の内筒孔部62cとジョイント部材61のジョイント孔部61aとが対向配置されて連通している。   As shown in FIGS. 1 and 2, the inner cylinder 62 is in a state in which the tapered surface 62 b of the inner cylinder 62 and the tapered surface 12 b of the shaft base 12 are in contact with each other, so that the cap shaft with respect to the joint member 61. The downward movement in the O direction is restricted. Further, in this state, the outer peripheral edge portion of the lower surface of the flange portion 62a and the stopper portion 61d located on the lower side of the two stopper portions 61d formed on the enlarged diameter portion 61c of the joint member 61 are in contact with each other. Yes. Further, in this state where the inner cylinder 62 is arranged at the lower end of the movement range in the cap axis O direction with respect to the joint member 61, the inner cylinder hole 62c of the inner cylinder 62 and the joint hole 61a of the joint member 61 are connected. Oppositely arranged and communicated.

また、内筒62においてフランジ部62aよりも上側に位置する部分には、大径部14と、この大径部14の上側の小径部15とが形成されている。小径部15は、有頂筒状をなし、その外周面には、周方向に間隔を開け複数の側面注出孔15aが形成されている。側面注出孔15aは、注出筒44の内部と内筒62の内部とを連通させている。大径部14は円筒状をなし、その外周の上端部分には、周方向に沿った略リング状をなし径方向外方に向け突出するとともに注出筒本体44bの凹部44cに係合する凸部(第1係合部)14aが形成されている。   Further, a large diameter portion 14 and a small diameter portion 15 above the large diameter portion 14 are formed in a portion of the inner cylinder 62 positioned above the flange portion 62a. The small-diameter portion 15 has a crested cylindrical shape, and a plurality of side surface extraction holes 15a are formed on the outer peripheral surface thereof at intervals in the circumferential direction. The side pouring hole 15a allows the inside of the pouring cylinder 44 and the inside of the inner cylinder 62 to communicate with each other. The large-diameter portion 14 has a cylindrical shape, and has a substantially ring shape along the circumferential direction at the upper end portion of the outer periphery thereof, and protrudes outward in the radial direction and engages with the concave portion 44c of the dispensing cylinder main body 44b. A portion (first engagement portion) 14a is formed.

また、図1、図2に示すように、注出部4を閉じた状態で、大径部14の上面には、注出筒44の押し込み部44dの下端部分が当接している。詳しくは、注出部4が閉じられることで、注出筒44の凹部44cが内筒62の凸部14aに係合するとともに注出筒44と内筒62とが嵌合し、嵌合の後、さらに押し込み部44dが大径部14の上面を下方へと押し込み、内筒62がジョイント部材61に対し下方へ移動して移動範囲の下端に配されるとともに、内筒孔部62cとジョイント孔部61aとが連通するようにされている。これにより、注出筒44と容器2内とが連通される。   As shown in FIGS. 1 and 2, the lower end portion of the push-in portion 44 d of the extraction tube 44 is in contact with the upper surface of the large-diameter portion 14 with the extraction portion 4 closed. Specifically, when the pouring portion 4 is closed, the concave portion 44c of the pouring tube 44 engages with the convex portion 14a of the inner tube 62, and the pouring tube 44 and the inner tube 62 are fitted to each other. Thereafter, the push-in portion 44d pushes the upper surface of the large-diameter portion 14 downward, the inner cylinder 62 moves downward with respect to the joint member 61, and is arranged at the lower end of the moving range, and the inner cylinder hole 62c and the joint The hole 61a communicates with the hole 61a. Thereby, the extraction pipe | tube 44 and the inside of the container 2 are connected.

また、内筒62の内周面には、周方向に間隔を開け配されるとともに大径部14の上端部分から内筒孔部62cの下端縁部までキャップ軸O方向に延び、軸体本体11の第1位置合わせ部11aに噛み合いジョイント部材61と内筒62とのキャップ周方向に沿った相対移動を規制する板状の第2位置合わせ部14bが複数形成されている。   The inner cylinder 62 has an inner circumferential surface spaced in the circumferential direction and extends from the upper end portion of the large diameter portion 14 to the lower end edge of the inner cylinder hole portion 62c in the cap axis O direction. A plurality of plate-like second alignment portions 14b that engage with the first first alignment portion 11a and restrict relative movement of the joint member 61 and the inner cylinder 62 along the circumferential direction of the cap are formed.

次に、このように構成されたキャップ1を利用した液剤の注出について説明する。
注出筒44のノズル部44aを用いて液剤を注出する場合は、予め注出部4を閉じた状態で、図1におけるオーバーキャップ5のオーバーキャップ操作片10を押し上げて該オーバーキャップ5を開けるとともに、注出筒44のノズル部44aを外部に露出させる。そして、図2に示すように、容器2の胴部を把持してキャップ1側を下方へ向けるように傾ける。
Next, the dispensing of the liquid agent using the cap 1 configured as described above will be described.
When the liquid agent is to be poured out using the nozzle portion 44a of the dispensing cylinder 44, the overcap operating piece 10 of the overcap 5 in FIG. While opening, the nozzle part 44a of the extraction pipe | tube 44 is exposed outside. And as shown in FIG. 2, it inclines so that the trunk | drum of the container 2 may be hold | gripped and the cap 1 side may be faced below.

容器2が傾けられると、容器2内に貯留されている液剤がジョイント部材61のジョイント孔部61a及び内筒62の内筒孔部62cを介して内筒62の内部に流れ込み、次いで内筒62の側面注出孔15aを介して注出筒44の内部に流れ込む。注出筒44の内部に流れ込んだ液剤は、ノズル部44aを介して外部へと注出される。この際、ジョイント孔部61a及び内筒孔部62cはキャップ軸O方向の両側をシール部13によりシールされており、かつ、内筒62の凸部14aと注出筒44の凹部44cとが密接に係合しているので、液剤が内筒部31内に漏れ出てしまうことがない。すなわち、注出部4が閉じた状態において、連通筒部材6内は内筒部31内と遮断されている。
また、容器2の胴部をスクイズすることで、注出する液剤の注出量を調整することができる。
When the container 2 is tilted, the liquid agent stored in the container 2 flows into the inner cylinder 62 through the joint hole 61a of the joint member 61 and the inner cylinder hole 62c of the inner cylinder 62, and then the inner cylinder 62 Flows into the extraction tube 44 through the side surface extraction hole 15a. The liquid agent that has flowed into the dispensing tube 44 is poured out through the nozzle portion 44a. At this time, the joint hole 61a and the inner cylinder hole 62c are sealed by the seal part 13 on both sides in the cap axis O direction, and the convex part 14a of the inner cylinder 62 and the concave part 44c of the dispensing cylinder 44 are in close contact with each other. Therefore, the liquid agent does not leak into the inner cylinder portion 31. That is, in the state where the extraction part 4 is closed, the inside of the communicating cylinder member 6 is blocked from the inside of the inner cylinder part 31.
Moreover, the amount of liquid to be dispensed can be adjusted by squeezing the body of the container 2.

また、キャップ本体3の内筒部31を用いて液剤を注出する場合は、予めオーバーキャップ5を閉じた状態で、図1における注出部4の注出部操作片8を押し上げて該注出部4を開けるとともに、内筒部31内を外部に露出させる。このように注出部4が開くことで、注出筒44の凹部44cが、その係合する内筒62の凸部14aを持ち上げるので、内筒62がジョイント部材61に対しキャップ軸O方向の上方に移動される。   When the liquid agent is to be poured out using the inner cylinder portion 31 of the cap body 3, the pouring portion operating piece 8 of the pouring portion 4 in FIG. While opening the protrusion part 4, the inside of the inner cylinder part 31 is exposed outside. Thus, when the extraction | pouring part 4 opens, the recessed part 44c of the extraction | injection cylinder 44 lifts the convex part 14a of the inner cylinder 62 to which it engages, Therefore The inner cylinder 62 is a cap axis | shaft O direction with respect to the joint member 61. Moved upwards.

すなわち、注出部4を開けるに従い、内筒62は注出筒44に引っ掛けられた状態で持ち上げられていき、図3に示すように、フランジ部62aの上面の外周縁部とジョイント部材61の拡径部61cの上端のストッパー部61dの下面とが当接する。すると、内筒62のキャップ軸O方向の上方へのそれ以上の移動が規制されるので、注出筒44の凹部44cと内筒62の凸部14aとの係合が解除される。このように、内筒62がジョイント部材61に対しキャップ軸O方向の移動範囲の上端に配された状態とされる。   That is, as the pouring part 4 is opened, the inner cylinder 62 is lifted while being hooked on the pouring cylinder 44, and as shown in FIG. 3, the outer peripheral edge part of the upper surface of the flange part 62a and the joint member 61 The lower surface of the stopper portion 61d at the upper end of the enlarged diameter portion 61c comes into contact. Then, further movement of the inner cylinder 62 upward in the cap axis O direction is restricted, so that the engagement between the concave portion 44c of the extraction cylinder 44 and the convex portion 14a of the inner cylinder 62 is released. Thus, the inner cylinder 62 is arranged at the upper end of the movement range in the cap axis O direction with respect to the joint member 61.

尚、図示しないが、内筒62が前記移動範囲の上端に配された状態において確実に保持されるように、ジョイント部材61の拡径部61cにフランジ部62aの外周縁部を支持する突起部を設けて内筒62を支持したり、拡径部61cの下端のストッパー部61dの上面とフランジ部62aの下面との間に圧縮コイルばね等の弾性部材を設けて内筒62を上方へ向け付勢して支持したりしても構わない。   Although not shown in the drawings, the protruding portion that supports the outer peripheral edge portion of the flange portion 62a on the enlarged-diameter portion 61c of the joint member 61 so that the inner cylinder 62 is securely held in the state where it is disposed at the upper end of the moving range. To support the inner cylinder 62, or to provide an elastic member such as a compression coil spring between the upper surface of the stopper portion 61d at the lower end of the enlarged diameter portion 61c and the lower surface of the flange portion 62a so that the inner cylinder 62 faces upward. It may be energized and supported.

また、このように内筒62がジョイント部材61に対しキャップ軸O方向の移動範囲の上端に配された状態において、内筒62の内筒孔部62cとジョイント部材61のジョイント孔部61aとはキャップ軸O方向に離間して互いの液剤の流通が遮断されている。またこの状態で、内筒62の内筒孔部62cのキャップ軸O方向の両側にはシール部13が配された状態とされる。また、内筒62のテーパ面62bと軸体台部12のテーパ面12bとがキャップ軸O方向に離間されることにより、パイプ部材63の内部、軸体台部12の突出部12a同士の間の隙間、軸体台部12の孔部12c、軸体本体11の径方向外方の空間、及び内筒62の内部が連通される。従って、注出部4が開けられた状態において、連通筒部材6内は、側面注出孔15aを介して内筒部31内と連通している。   Further, in this state where the inner cylinder 62 is arranged at the upper end of the movement range in the cap axis O direction with respect to the joint member 61, the inner cylinder hole 62c of the inner cylinder 62 and the joint hole 61a of the joint member 61 are defined as follows. The liquid agents are separated from each other in the direction of the cap axis O and the flow of the liquid agents is blocked. Further, in this state, the seal portions 13 are arranged on both sides of the inner tube hole portion 62c of the inner tube 62 in the cap axis O direction. Further, the taper surface 62b of the inner cylinder 62 and the taper surface 12b of the shaft body base portion 12 are separated from each other in the direction of the cap axis O, so that the inside of the pipe member 63 and between the protrusions 12a of the shaft body base portion 12 are arranged. , The hole 12c of the shaft body base portion 12, the radially outer space of the shaft body 11 and the inside of the inner cylinder 62 are communicated. Therefore, in the state where the extraction part 4 is opened, the inside of the communication cylinder member 6 communicates with the inside of the inner cylinder part 31 via the side surface extraction hole 15a.

次いで、容器2の胴部をスクイズ変形させることで、容器2内の液剤をパイプ部材63内、ジョイント部材61内、及び内筒62内に流通させ、側面注出孔15aを通して内筒部31内へと流入させる。これにより、内筒部31内に一定量の液剤を貯留することができる。また、内筒部31の内周面に計量目盛りを形成した場合には、この計量目盛りを用いても液剤の計量を行うことができる。
その後、容器2の変形を元に戻し、図4に示すように容器2を傾けることにより、内筒部31の上端開口部から液剤を注出する。
Next, the body part of the container 2 is squeezed and deformed so that the liquid agent in the container 2 is circulated in the pipe member 63, the joint member 61, and the inner cylinder 62, and inside the inner cylinder part 31 through the side surface extraction hole 15a. To flow into. Thereby, a fixed amount of liquid agent can be stored in the inner cylinder part 31. Further, when a measurement scale is formed on the inner peripheral surface of the inner cylinder portion 31, the liquid agent can be measured even using this measurement scale.
Thereafter, the deformation of the container 2 is returned to its original state, and the liquid agent is poured out from the upper end opening of the inner cylinder portion 31 by tilting the container 2 as shown in FIG.

以上説明したように、本実施形態のキャップ1によれば、注出部4を閉じた状態で、連通筒部材6は、注出筒44に嵌合した状態とされて注出筒44と容器2内とを連通させるとともに内筒部31内とは遮断される。この状態でオーバーキャップ5を開けて注出部4のノズル部44aを露出させ容器2を傾けることで、ノズル部44aから容器2内の液剤を比較的少量ずつ注出することができる。   As described above, according to the cap 1 of the present embodiment, the communication cylinder member 6 is fitted to the extraction cylinder 44 with the extraction section 4 closed, and the extraction cylinder 44 and the container 2 and the inside cylinder portion 31 are blocked. In this state, the overcap 5 is opened to expose the nozzle portion 44a of the dispensing portion 4 and the container 2 is tilted, whereby the liquid agent in the container 2 can be dispensed relatively little by little from the nozzle portion 44a.

また、注出部4を開けた状態では、内筒部31内が露出されるとともに、連通筒部材6から注出筒44が取り外されて連通筒部材6が内筒部31内と連通される。この状態で容器2をスクイズ変形させることで、液剤が連通筒部材6から内筒部31内に流出して貯留されることになり、その後容器2を傾ければ、液剤を内筒部31内から比較的多量に注出することができる。   Further, in the state in which the extraction part 4 is opened, the inside of the inner cylinder part 31 is exposed and the extraction cylinder 44 is removed from the communication cylinder member 6 so that the communication cylinder member 6 communicates with the inside of the inner cylinder part 31. . When the container 2 is squeezed and deformed in this state, the liquid agent flows out of the communication cylinder member 6 and is stored in the inner cylinder portion 31. After that, if the container 2 is tilted, the liquid agent is stored in the inner cylinder portion 31. Can be dispensed in a relatively large amount.

また、内筒62がジョイント部材61に対してキャップ軸O方向に移動することで、ジョイント孔部61aと内筒孔部62cとが連通遮断する。すなわち、注出部4を閉じた状態ではジョイント孔部61aと内筒孔部62cとが連通するので、この状態で容器2を傾けることで容器2内からジョイント孔部61a及び内筒孔部62cを介し連通筒部材6の内部に液剤を流入させることができる。また、注出部4を開けることで内筒62をジョイント部材61に対して引き上げたときに、ジョイント孔部61aと内筒孔部62cとが遮断するので、この状態で容器2をスクイズ変形させることでジョイント部材61の容器2側に繋がるパイプ部材63の下端部分の開口部から液剤が連通筒部材6に流入するとともに、この液剤をジョイント孔部61a及び内筒孔部62cを通して容器2内に漏出させることなく、内筒62を介し内筒部31内へと流出させて貯留することができる。   Further, the inner cylinder 62 moves in the cap axis O direction with respect to the joint member 61, whereby the joint hole 61a and the inner cylinder hole 62c are disconnected from each other. That is, since the joint hole portion 61a and the inner cylinder hole portion 62c communicate with each other in the state in which the dispensing portion 4 is closed, the joint hole portion 61a and the inner cylinder hole portion 62c from the inside of the container 2 by tilting the container 2 in this state. The liquid agent can be caused to flow into the communication cylinder member 6 via the. Further, when the inner cylinder 62 is pulled up with respect to the joint member 61 by opening the pouring part 4, the joint hole 61a and the inner cylinder hole 62c are blocked, so that the container 2 is squeezed in this state. As a result, the liquid agent flows into the communicating cylindrical member 6 from the opening at the lower end portion of the pipe member 63 connected to the container 2 side of the joint member 61, and this liquid agent enters the container 2 through the joint hole portion 61a and the inner cylindrical hole portion 62c. Without being leaked, it can flow out into the inner cylinder portion 31 through the inner cylinder 62 and be stored.

また、注出部4を閉じた際には、連通筒部材6の内筒62の凸部14aと注出部4の注出筒44の凹部44cとが係合するので、内筒62と注出筒44とを確実に嵌合させることができる。従って、注出部4を閉じた状態で、容器2の液剤が連通筒部材6から内筒部31内に漏れ出るようなことが防止される。また、注出部4を開ける際には、注出筒44の凹部44cが内筒62の凸部14aに引っ掛かることにより、注出筒44が内筒62をジョイント部材61に対して確実に引き上げることができる。   Further, when the pouring portion 4 is closed, the convex portion 14a of the inner tube 62 of the communicating tube member 6 and the concave portion 44c of the pouring tube 44 of the pouring portion 4 are engaged with each other. The exit tube 44 can be securely fitted. Accordingly, it is possible to prevent the liquid agent in the container 2 from leaking from the communicating cylinder member 6 into the inner cylinder part 31 with the pouring part 4 closed. Further, when the pouring portion 4 is opened, the concave portion 44 c of the pouring tube 44 is caught by the convex portion 14 a of the inner tube 62, so that the pouring tube 44 reliably pulls up the inner tube 62 with respect to the joint member 61. be able to.

また、ジョイント部材61の内周と内筒62の外周との間において、ジョイント孔部61a及び内筒孔部62cが位置する部分がキャップ軸O方向の両側からシールされているので、容器2の液剤が、ジョイント孔部61a又は内筒孔部62cを介しジョイント部材61の内周と内筒62の外周との間から漏れるようなことが防止される。すなわち、注出部4を閉めて容器2を傾けた場合には、液剤が内筒62とジョイント部材61との間から内筒部31内へ漏れ出るようなことが防止される。また、注出部4を開けて容器2をスクイズ変形した場合には、液剤がジョイント孔部61a又は内筒孔部62cを介し容器2内に戻されてしまうようなことが防止され、内筒部31内へ効率よく流出させることができる。   Moreover, since the part in which the joint hole 61a and the inner cylinder hole 62c are located between the inner periphery of the joint member 61 and the outer periphery of the inner cylinder 62 is sealed from both sides in the cap axis O direction, The liquid agent is prevented from leaking from between the inner periphery of the joint member 61 and the outer periphery of the inner tube 62 via the joint hole 61a or the inner tube hole 62c. That is, when the dispensing part 4 is closed and the container 2 is tilted, the liquid agent is prevented from leaking into the inner cylinder part 31 from between the inner cylinder 62 and the joint member 61. Further, when the dispensing portion 4 is opened and the container 2 is squeezed and deformed, the liquid agent is prevented from returning into the container 2 through the joint hole portion 61a or the inner tube hole portion 62c. It is possible to efficiently flow out into the portion 31.

また、ジョイント部材61の第1位置合わせ部11aと内筒62の第2位置合わせ部14bとが噛み合いジョイント部材61と内筒62とのキャップ周方向に沿った相対移動を規制するので、このキャップ1を形成するに際し、ジョイント孔部61a及び内筒孔部62c夫々のキャップ周方向に沿った位置を容易かつ精度よく一致させることができる。また、このようにジョイント部材61と内筒62とのキャップ周方向に沿った相対移動が規制されるので、注出部4を閉じ、内筒62がジョイント部材61に対しキャップ軸O方向の下端に配された際に、ジョイント孔部61a及び内筒孔部62cが精度よく対向配置されて連通する。   Further, since the first alignment portion 11a of the joint member 61 and the second alignment portion 14b of the inner cylinder 62 are engaged with each other, the relative movement of the joint member 61 and the inner cylinder 62 along the circumferential direction of the cap is restricted. When forming 1, the positions of the joint hole 61 a and the inner cylinder hole 62 c along the circumferential direction of the cap can be easily and accurately matched. Since the relative movement of the joint member 61 and the inner cylinder 62 along the circumferential direction of the cap is restricted in this way, the pouring portion 4 is closed, and the inner cylinder 62 is lower than the joint member 61 in the cap axis O direction. The joint hole 61a and the inner cylinder hole 62c are arranged opposite to each other with high accuracy and communicate with each other.

また、注出部4を閉じた際に、注出筒44の押し込み部44dが内筒62を押し込むので、ジョイント孔部61aと内筒孔部62cとが確実に連通し、この状態で容器2を傾けることで容器2内からジョイント孔部61a及び内筒孔部62cを介し連通筒部材6の内部に液剤を流入させることができる。   Further, when the pouring portion 4 is closed, the pushing portion 44d of the pouring tube 44 pushes the inner tube 62, so that the joint hole portion 61a and the inner tube hole portion 62c are reliably communicated with each other in this state. By tilting, the liquid agent can be caused to flow into the communicating cylinder member 6 from the container 2 through the joint hole 61a and the inner cylinder hole 62c.

また、本実施形態のキャップ1は、キャップ本体3と注出部4、及び注出部4とオーバーキャップ5の夫々を連結する第1及び第2ヒンジ部7,9を備えているので、注出部4及びオーバーキャップ5のいずれを開ける場合にも注出部4やオーバーキャップ5がキャップ1から外れてしまうことはなく、簡便に開閉操作を行うことができる。従って、簡便に注出形態を変更し液剤の注出量を切り替えることができる。   Moreover, since the cap 1 of this embodiment is provided with the 1st and 2nd hinge parts 7 and 9 which each connect the cap main body 3 and the extraction | pouring part 4, and the extraction part 4 and the overcap 5, note When either the outlet 4 or the overcap 5 is opened, the pouring part 4 and the overcap 5 are not detached from the cap 1, and the opening / closing operation can be easily performed. Therefore, it is possible to easily change the dispensing form and switch the amount of liquid to be dispensed.

また、第1ヒンジ部7と第2ヒンジ部9とが互いに注出部4の外周面を回り込んだ反対側に配置されているので、閉まった状態のオーバーキャップ5を開ける際に注出部4が誤って一緒に開いてしまうようなことが防止される。従って、オーバーキャップ5の開閉操作をより円滑に行うことができる。   Moreover, since the 1st hinge part 7 and the 2nd hinge part 9 are mutually arrange | positioned on the opposite side which wraps around the outer peripheral surface of the extraction | pouring part 4, when extracting the closed overcap 5, the extraction | pouring part It is prevented that 4 opens accidentally together. Therefore, the opening / closing operation of the overcap 5 can be performed more smoothly.

尚、本発明は前述の実施の形態に限定されるものではなく、本発明の趣旨を逸脱しない範囲において種々の変更を加えることが可能である The present invention is not limited to the above-described embodiment, and various modifications can be made without departing from the spirit of the present invention .

また、本実施形態では、連通筒部材6が、ジョイント部材61の下端部分に繋がるパイプ部材63を備えていることとして説明したが、パイプ部材63を設けなくてもよく、例えばジョイント部材61の下端部分を容器2の底部近傍まで延ばして形成しても構わない。   In the present embodiment, the communication tubular member 6 is described as including the pipe member 63 connected to the lower end portion of the joint member 61. However, the pipe member 63 may not be provided. The portion may be formed to extend to the vicinity of the bottom of the container 2.

また、本実施形態では、内筒62に凸部14aが形成され、注出筒44には凸部14aに係合する凹部44cが形成されていることとして説明したが、これに限定されるものではなく、例えば内筒62に凹部を形成するとともに、注出筒44に該凹部に係合する凸部を形成することとしてもよい。また、係合手段は、凹部及び凸部の係合に限定されるものではない。   In the present embodiment, the convex portion 14a is formed on the inner cylinder 62, and the concave portion 44c that engages with the convex portion 14a is formed on the dispensing cylinder 44. However, the present invention is not limited to this. Instead, for example, a concave portion may be formed in the inner cylinder 62 and a convex portion that engages with the concave portion may be formed in the dispensing cylinder 44. Further, the engagement means is not limited to the engagement of the concave portion and the convex portion.

また、本実施形態では、シール部13がジョイント部材61の内周に3つ設けられていることとして説明したが、これに限定されるものではない。すなわち、シール部13はジョイント部材61の内周及び内筒62の外周の少なくとも一方に形成されていればよく、内筒62の外周のみに形成したり、ジョイント部材61の内周及び内筒62の外周の両方に形成したりしても構わない。またシール部13は、その数量が本実施形態の3つに限定されるものではない。また、シール部13はジョイント部材61の内周と内筒62の外周との間をシールできればよく、本実施形態の形状に限定されない。   Moreover, although this embodiment demonstrated that the three seal parts 13 were provided in the inner periphery of the joint member 61, it is not limited to this. That is, the seal portion 13 only needs to be formed on at least one of the inner circumference of the joint member 61 and the outer circumference of the inner cylinder 62, and can be formed only on the outer circumference of the inner cylinder 62, or the inner circumference and the inner cylinder 62 of the joint member 61. It may be formed on both of the outer circumferences. Further, the number of the seal portions 13 is not limited to three in the present embodiment. Moreover, the seal part 13 should just seal between the inner periphery of the joint member 61, and the outer periphery of the inner cylinder 62, and is not limited to the shape of this embodiment.

また、注出部4を開けた開位置で該注出部4を固定する固定手段を用いたり、オーバーキャップ5を開けた開位置で該オーバーキャップ5を固定する固定手段を用いたりしても構わない。これによれば、液剤を注出する操作性がより向上する。   Alternatively, a fixing means for fixing the pouring part 4 at an open position where the pouring part 4 is opened or a fixing means for fixing the overcap 5 at an open position where the overcap 5 is opened may be used. I do not care. According to this, the operativity which pours out a liquid agent improves more.

その他、本発明の主旨を逸脱しない範囲で、上記した実施の形態における構成要素を周知の構成要素に置き換えることは適宜可能であり、また、上記した変形例を適宜組み合わせてもよい。   In addition, in the range which does not deviate from the main point of this invention, it is possible to replace suitably the component in above-mentioned embodiment with a well-known component, and you may combine the above-mentioned modification suitably.

本発明の一実施形態に係るキャップの概略構成を示す側断面図である。It is a sectional side view showing the schematic structure of the cap concerning one embodiment of the present invention. 本発明の一実施形態に係るキャップの注出筒を用いた注出を説明する概略側断面図である。It is a schematic sectional side view explaining extraction using the extraction cylinder of the cap which concerns on one Embodiment of this invention. 本発明の一実施形態に係るキャップの計量室に内容物を貯留した状態を示す概略側断面図である。It is a schematic sectional side view which shows the state which stored the content in the measurement chamber of the cap which concerns on one Embodiment of this invention. 本発明の一実施形態に係るキャップの計量室を用いた注出を説明する概略側断面図である。It is a schematic sectional side view explaining extraction using the measuring chamber of the cap which concerns on one Embodiment of this invention.

符号の説明Explanation of symbols

1 キャップ
2 容器
4 注出部
5 オーバーキャップ
6 連通筒部材
7 第1ヒンジ部
9 第2ヒンジ部
11a 第1位置合わせ部
13 シール部
14a 凸部(第1係合部)
14b 第2位置合わせ部
31 内筒部(計量室)
31a 底壁部
44 注出筒
44a ノズル部
44c 凹部(第2係合部)
44d 押し込み部
61 ジョイント部材
61a ジョイント孔部
62 内筒
62c 内筒孔部
O キャップ軸
DESCRIPTION OF SYMBOLS 1 Cap 2 Container 4 Outlet part 5 Overcap 6 Communication cylinder member 7 1st hinge part 9 2nd hinge part 11a 1st position alignment part 13 Seal part 14a Convex part (1st engaging part)
14b 2nd alignment part 31 Inner cylinder part (measurement chamber)
31a Bottom wall 44 Extraction tube 44a Nozzle 44c Recessed part (second engaging part)
44d Push-in part 61 Joint member 61a Joint hole 62 Inner cylinder 62c Inner cylinder hole O Cap shaft

Claims (5)

スクイズ変形可能な胴部を有する容器の口部に装着される有底筒状の計量室と、
前記計量室に第1ヒンジ部を介して連結され前記計量室を開閉させるとともに、内容物を注出する注出筒を備える注出部と、
前記注出部に第2ヒンジ部を介して連結され、前記注出筒を開閉させるオーバーキャップと、
前記計量室の底壁部に貫設され、前記容器内に連通するとともに、前記注出筒に着脱自在に嵌合されて、前記注出部の前記第1ヒンジ部回りの開閉操作に伴い前記計量室内に連通遮断する連通筒部材と、を備え
前記連通筒部材は、前記底壁部に貫設された筒状のジョイント部材と、前記ジョイント部材の内周側に配設されて、前記注出筒に着脱自在に嵌合されるとともに、前記注出部の前記第1ヒンジ部回りの開閉操作に伴い該ジョイント部材に対しキャップ軸方向に移動させられる内筒と、を備え、
前記ジョイント部材において前記底壁部から前記計量室の外側に突出した外壁部分にはジョイント孔部が設けられ、前記内筒の周壁部には内筒孔部が設けられ、
前記注出部を閉じた状態で、前記ジョイント孔部と前記内筒孔部とが連通され、前記注出部を開けたときに、前記注出筒が前記内筒から取り外されるとともに該内筒を前記ジョイント部材に対して引き上げて、前記ジョイント孔部と前記内筒孔部とが遮断される構成とされていることを特徴とするキャップ。
A bottomed cylindrical weighing chamber attached to the mouth of a container having a squeeze-deformable body,
A pouring part that is connected to the weighing chamber via a first hinge part to open and close the weighing chamber and includes a pouring cylinder for pouring contents.
An overcap connected to the pouring part via a second hinge part to open and close the pouring cylinder;
The metering chamber penetrates the bottom wall, communicates with the container, is detachably fitted to the dispensing cylinder, and is opened and closed around the first hinge portion of the dispensing portion. A communication cylinder member that cuts off and communicates with the measurement chamber ;
The communicating cylinder member is disposed on the inner peripheral side of the cylindrical joint member penetrating the bottom wall portion, and is detachably fitted to the dispensing cylinder. An inner cylinder that is moved in the cap axial direction with respect to the joint member in accordance with an opening / closing operation around the first hinge portion of the extraction portion,
In the joint member, a joint hole portion is provided in an outer wall portion protruding from the bottom wall portion to the outside of the measuring chamber, and an inner cylinder hole portion is provided in a peripheral wall portion of the inner cylinder,
With the pouring portion closed, the joint hole portion and the inner tube hole portion are communicated, and when the pouring portion is opened, the pouring tube is removed from the inner tube and the inner tube The cap is configured so that the joint hole and the inner cylinder hole are blocked by pulling up the joint member .
請求項に記載のキャップであって、
前記内筒には第1係合部が形成され、前記注出筒には前記第1係合部に係合する第2係合部が形成されていることを特徴とするキャップ。
The cap according to claim 1 ,
A cap characterized in that a first engagement portion is formed on the inner cylinder, and a second engagement portion that engages with the first engagement portion is formed on the dispensing cylinder.
請求項又はに記載のキャップであって、
前記ジョイント部材の内周及び前記内筒の外周の少なくとも一方には、前記ジョイント孔部及び前記内筒孔部をキャップ軸方向の両側からシールするシール部が形成されていることを特徴とするキャップ。
The cap according to claim 1 or 2 ,
A seal portion that seals the joint hole portion and the inner cylinder hole portion from both sides in the cap axial direction is formed on at least one of the inner periphery of the joint member and the outer periphery of the inner tube. .
請求項からのいずれか一項に記載のキャップであって、
前記ジョイント部材には第1位置合わせ部が形成され、前記内筒には前記第1位置合わせ部に噛み合い前記ジョイント部材と前記内筒とのキャップ周方向に沿った相対移動を規制する第2位置合わせ部が形成されていることを特徴とするキャップ。
The cap according to any one of claims 1 to 3 ,
The joint member is formed with a first alignment portion, and the inner cylinder engages with the first alignment portion to restrict relative movement of the joint member and the inner cylinder along the circumferential direction of the cap. A cap characterized in that a mating portion is formed.
請求項からのいずれか一項に記載のキャップであって、
前記注出筒には、前記注出部を閉じたときに前記内筒を押し込み可能な押し込み部が形成されていることを特徴とするキャップ。
The cap according to any one of claims 1 to 4 ,
The cap is characterized in that a push-in portion is formed on the pouring tube so that the inner tube can be pushed in when the pouring portion is closed.
JP2008198421A 2008-07-31 2008-07-31 cap Expired - Fee Related JP5150398B2 (en)

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JP6190668B2 (en) * 2013-08-30 2017-08-30 株式会社吉野工業所 Pouring cap
JP6255293B2 (en) * 2014-03-31 2017-12-27 株式会社吉野工業所 Discharge member
JP2016210914A (en) * 2015-05-11 2016-12-15 積水化学工業株式会社 Polymer, and method for producing the polymer

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