JP6356942B2 - Discharge container - Google Patents

Discharge container Download PDF

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JP6356942B2
JP6356942B2 JP2012192172A JP2012192172A JP6356942B2 JP 6356942 B2 JP6356942 B2 JP 6356942B2 JP 2012192172 A JP2012192172 A JP 2012192172A JP 2012192172 A JP2012192172 A JP 2012192172A JP 6356942 B2 JP6356942 B2 JP 6356942B2
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discharge
container
contents
inner plug
measuring
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JP2014046961A (en
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古澤 光夫
古澤  光夫
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Yoshino Kogyosho Co Ltd
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Yoshino Kogyosho Co Ltd
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本発明は、吐出容器に関する。   The present invention relates to a discharge container.

従来、内容物が収容される弾性変形可能な容器本体と、容器本体の口部に装着され、容器本体内に連通可能な連通孔が形成された中栓と、中栓に容器本体の底部側の下方に向けて延設され、内部が連通孔内に連通し、かつ下端開口が内容物中に浸漬される吸い上げ筒部材と、中栓を中栓の上方から覆い、かつ中栓との間に計量空間を画成する計量筒部材と、を備えた吐出容器が知られている。
例えば、下記特許文献1には、計量筒部材の頂壁に注出口が形成されており、計量筒部材を中栓に対して上下動させることで、注出口を通した計量空間と外部との連通または遮断が切り替えられるようになっている。
Conventionally, an elastically deformable container body that contains contents, an inner plug that is attached to the mouth of the container main body and has a communication hole that can communicate with the inside of the container main body, and a bottom side of the container main body on the inner plug A suction cylinder member that extends downward from the inside, communicates with the inside of the communication hole, and has a lower end opening immersed in the contents, and covers the inner plug from above the inner plug and between the inner plug There is known a discharge container including a measuring cylinder member that defines a measuring space.
For example, in Patent Document 1 below, a spout is formed on the top wall of the measuring cylinder member, and by moving the measuring cylinder member up and down with respect to the inner plug, the measuring space through the spout and the outside Communication or blocking can be switched.

この構成によれば、容器本体をスクイズ変形させることで、容器本体内の内容物が吸い上げ筒部材内を通って吸い上げられ、中栓の連通孔から計量空間内に流入する。そして、計量筒部材を中栓に対して上方へ移動させて注出口を開放することで、注出口を通して計量空間と外部とが連通する。この状態で、吐出容器を傾けることで、計量空間内の内容物が注出口を通して吐出される。   According to this configuration, by squeezing the container main body, the contents in the container main body are sucked up through the suction tube member and flow into the measurement space from the communication hole of the inner plug. Then, by moving the measuring cylinder member upward with respect to the inner plug and opening the spout, the measuring space and the outside communicate with each other through the spout. In this state, the contents in the measurement space are discharged through the spout by tilting the discharge container.

実開平04−13557号公報Japanese Utility Model Publication No. 04-13557

しかしながら、上述した従来の吐出容器では、吐出容器を傾けるだけで注出口から内容物が吐出されるため、計量空間内の内容物を少量ずつ吐出することが難しく、優れた操作性を具備させることに対しては改善の余地があった。   However, in the above-described conventional discharge container, the contents are discharged from the spout simply by tilting the discharge container. Therefore, it is difficult to discharge the contents in the measurement space little by little, and it has excellent operability. There was room for improvement.

そこで、本発明は、上述した事情に鑑みてなされたものであって、その目的は、計量空間内に収容される内容物を少量ずつ吐出することができ、優れた操作性を具備させることができる吐出容器を提供することである。   Therefore, the present invention has been made in view of the above-described circumstances, and the object thereof is to discharge the contents stored in the measurement space little by little, and to have excellent operability. It is to provide a discharge container that can be used.

上記課題を解決するために、本発明は以下の手段を提案している。
本発明に係る吐出容器は、内容物が収容される弾性変形可能な容器本体と、該容器本体の口部に装着され、前記容器本体内に連通可能な連通孔が形成された中栓と、該中栓に前記容器本体の底部側の下方に向けて延設され、内部が前記連通孔内に連通し、かつ下端開口が内容物中に浸漬される吸い上げ筒部材と、前記中栓を該中栓の上方から覆い、かつ当該中栓との間に計量空間を画成する計量筒部材と、該計量筒部材の上端開口を閉塞し、かつ弾性変形することで前記計量空間内の内容物が通過可能な開口が形成される吐出膜部材と、を備え、前記計量筒部材は、前記吐出膜部材が配設された縮径筒部と、前記縮径筒部より下方に配置され、前記連通孔を径方向の外側から取り囲む拡径筒部と、前記縮径筒部の下端部と前記拡径筒部の上端部とを接続する環板部と、を備えた多段筒状に形成され、前記縮径筒部の下端部が前記連通孔より上方に位置し、前記縮径筒部の下端部に、径方向の内側に向けて突出する内フランジ部が形成され、前記計量筒部材は、透明または半透明な材料からなり、内側が視認可能になっていることを特徴としている。
In order to solve the above problems, the present invention proposes the following means.
The discharge container according to the present invention is an elastically deformable container main body in which contents are accommodated, an inner plug that is attached to the mouth of the container main body and has a communication hole that can communicate with the container main body, A suction cylinder member that extends downward from the bottom side of the container body to the inner plug, communicates inside the communication hole, and has a lower end opening immersed in the contents, and the inner plug includes the inner plug. A measuring cylinder member which covers from above the inner plug and defines a measuring space with the inner plug, and the contents in the measuring space by closing the upper end opening of the measuring cylinder member and elastically deforming it. A discharge membrane member in which an opening through which the discharge membrane member can pass is formed, and the measuring tube member is disposed below the diameter-reduced tube portion , the diameter-reduced tube portion where the discharge film member is disposed , a flare tube portion surrounding the communication hole from the outer side in the radial direction, the upper end of the lower portion and the enlarged diameter cylindrical portion of the reduced diameter cylindrical portion Is formed on the ring plate portion and the multi-stage cylindrical shape with a connecting bets, the lower end of the reduced diameter cylindrical portion is positioned above said communicating hole, the lower end of the reduced diameter cylindrical portion, in the radial direction An inner flange portion projecting inward is formed, and the measuring tube member is made of a transparent or translucent material, and the inside is visible.

このような特徴により、まず、容器本体を弾性変形させることで、容器本体の内圧が正圧となり、この正圧によって容器本体内の内容物が吸い上げ筒部材を通して吸い上げられる。吸い上げ筒部材を通して吸い上げられた内容物は、中栓の連通孔を通して計量空間内に流入する。この場合、計量空間内には、容器本体の変形量に応じた量の内容物が流入する。そのため、計量空間内に所望の量の内容物を計量できる。つまり、計量空間内に過剰に流入した内容物は容器本体の弾性変形を停止、若しくは解除することにより、前記連通孔を通して容器本体内に戻される。これによって、常に一定の容量を計量することができる。
そして、計量後に、吐出膜部材を例えば頭皮等の被供給箇所に押し当て弾性変形させることで、この吐出膜部材に計量筒部材内の内容物が通過可能な開口が形成され、この開口を通して内容物が被供給箇所に吐出されることとなる。
この際、吐出膜部材を被供給箇所に押し当てる力を調整することで、形成される開口の大きさ、つまり内容物の供給量を調整することが可能になる。そのため、開口の大きさに応じた量の内容物を計量空間内から少量ずつ吐出することができ、優れた操作性を具備させることができる。
With such a feature, first, the container body is elastically deformed, whereby the internal pressure of the container body becomes a positive pressure, and the contents in the container body are sucked up through the sucking cylinder member by this positive pressure. The content sucked up through the sucking cylinder member flows into the measuring space through the communication hole of the inner plug. In this case, an amount of contents corresponding to the deformation amount of the container body flows into the measurement space. Therefore, a desired amount of contents can be measured in the measurement space. In other words, the contents excessively flowing into the measuring space are returned to the container body through the communication hole by stopping or releasing the elastic deformation of the container body. This makes it possible to always measure a certain capacity.
After the measurement, the discharge film member is pressed against a supply location such as the scalp to be elastically deformed, thereby forming an opening in the discharge film member through which the contents in the measurement tube member can pass. A thing will be discharged to a to-be-supplied location.
At this time, it is possible to adjust the size of the opening to be formed, that is, the supply amount of the contents, by adjusting the force with which the ejection film member is pressed against the supply location. Therefore, an amount of contents corresponding to the size of the opening can be discharged little by little from the measurement space, and excellent operability can be provided.

また、前記吐出膜部材は、下方に向けて窪む曲面形状に形成されるとともに、前記吐出膜部材における外周部の一部には、上方に向けて突出する突起部が形成されていてもよい。   In addition, the discharge film member may be formed in a curved shape that is recessed downward, and a protrusion that protrudes upward may be formed on a part of the outer peripheral portion of the discharge film member. .

この場合、吐出膜部材は、下方に向けて窪む曲面形状に形成されるとともに、吐出膜部材における外周部の一部には、上方に向けて突出する突起部が形成されているので、吐出膜部材を被供給箇所に押し当てたときに、突起部を起点に吐出膜部材が歪な変形を起こすことになる。これにより、吐出膜部材の開口を形成し易くなり、操作性の更なる向上を図ることができる。   In this case, the discharge film member is formed in a curved shape that is recessed downward, and a protrusion projecting upward is formed on a part of the outer periphery of the discharge film member. When the film member is pressed against the supply location, the discharge film member is deformed in a distorted manner starting from the protrusion. Thereby, it becomes easy to form the opening of the ejection film member, and the operability can be further improved.

本発明に係る吐出容器によれば、計量空間内に収容される内容物を少量ずつ吐出することができ、優れた操作性を具備させることができる。   According to the discharge container according to the present invention, the contents stored in the measurement space can be discharged little by little, and excellent operability can be provided.

本発明の実施形態における吐出容器の部分断面図である。It is a fragmentary sectional view of the discharge container in the embodiment of the present invention. 吐出膜部材の平面図である。It is a top view of a discharge film member. 吐出容器から内容物を吐出する方法を説明するための説明図である。It is explanatory drawing for demonstrating the method of discharging the content from a discharge container. 吐出容器から内容物を吐出する方法を説明するための説明図である。It is explanatory drawing for demonstrating the method of discharging the content from a discharge container. 吐出膜部材の他の構成を示す平面図である。It is a top view which shows the other structure of a discharge film | membrane member.

以下、図面を参照し、本発明の実施形態に係る吐出容器を説明する。
図1に示すように、本実施形態の吐出容器1は、内容物が収容される弾性変形可能な有底筒状の容器本体2と、容器本体2の口部3に装着され、容器本体2内に連通可能な連通孔4が形成された有頂筒状の中栓5と、中栓5に容器本体2の底部6側に向けて延設された吸い上げ筒部材7と、容器本体2の口部3に装着されて中栓5との間に計量空間Kを画成する計量筒部材8と、計量筒部材8を閉塞し、かつ弾性変形することで計量空間K内の内容物が通過可能な開口が形成される有頂筒状の吐出膜部材9と、有頂筒状のオーバーキャップ10と、を備えている。
Hereinafter, a discharge container according to an embodiment of the present invention will be described with reference to the drawings.
As shown in FIG. 1, the discharge container 1 of the present embodiment is mounted on an elastically deformable bottomed cylindrical container body 2 in which contents are accommodated, and a mouth 3 of the container body 2. An inner stopper 5 having a top tube shape in which a communication hole 4 capable of communicating therein is formed, a sucking cylinder member 7 extending from the inner stopper 5 toward the bottom 6 side of the container body 2, A measuring cylinder member 8 which is mounted on the mouth portion 3 and defines the measuring space K between the inner plug 5 and the measuring cylinder member 8 is closed and elastically deformed so that the contents in the measuring space K pass through. A top-cylindrical discharge film member 9 in which a possible opening is formed and a top-cylindrical overcap 10 are provided.

なお、容器本体2、中栓5、吸い上げ筒部材7、計量筒部材8、吐出膜部材9、及びオーバーキャップ10は、それぞれの中心軸線が共通軸上に配置されている。本実施形態では、この共通軸を容器軸Oといい、容器軸O方向に沿うオーバーキャップ10側を上側、容器本体2側を下側という、また、容器軸Oに直交する方向を径方向といい、容器軸O回りに周回する方向を周方向という。   The container body 2, the inner stopper 5, the suction cylinder member 7, the measuring cylinder member 8, the discharge film member 9, and the overcap 10 have their respective central axes arranged on a common axis. In the present embodiment, this common axis is referred to as the container axis O, the overcap 10 side along the container axis O direction is the upper side, the container body 2 side is the lower side, and the direction orthogonal to the container axis O is the radial direction. The direction that goes around the container axis O is called the circumferential direction.

容器本体2は、上述した口部3と、口部3の下端に連設されて径方向の外側に向けて突設された肩部11と、肩部11の外周縁から下方に向けて延設された胴部12と、胴部12の下端開口部を閉塞する上述した底部6と、を有している。
口部3は、下部に位置する厚肉部3aと、厚肉部3aの上端部に連設されるとともに厚肉部3aに対して外径が縮小する薄肉部3bと、を有している。厚肉部3aの外周面には雄ねじ部13が形成されている。
The container body 2 includes the mouth 3 described above, a shoulder 11 connected to the lower end of the mouth 3 and projecting outward in the radial direction, and extends downward from the outer peripheral edge of the shoulder 11. It has the trunk | drum 12 provided, and the bottom part 6 mentioned above which obstruct | occludes the lower end opening part of the trunk | drum 12. FIG.
The mouth portion 3 has a thick portion 3a located at the lower portion and a thin portion 3b that is connected to the upper end portion of the thick portion 3a and whose outer diameter is reduced with respect to the thick portion 3a. . A male screw portion 13 is formed on the outer peripheral surface of the thick portion 3a.

中栓5は、口部3(薄肉部3b)の上端開口縁上に配設された環状の頂壁部21と、頂壁部21の外周部分から下方に向けて延設されて口部3内に配設されるシール筒22と、頂壁部21の内周縁から上方に向けて延設された連通筒23と、を有している。
頂壁部21は、外径が薄肉部3bの外径と同等とされ、その外周縁には上方に向けて案内筒24が立設されている。この案内筒24は、連通筒23の周囲を取り囲むとともに、容器軸O方向に沿う長さが連通筒23よりも短くなっている。
The inner plug 5 has an annular top wall portion 21 disposed on an upper end opening edge of the mouth portion 3 (thin wall portion 3b), and extends downward from the outer peripheral portion of the top wall portion 21 to open the mouth portion 3. It has a seal cylinder 22 disposed inside, and a communication cylinder 23 extending upward from the inner peripheral edge of the top wall portion 21.
The top wall portion 21 has an outer diameter equivalent to the outer diameter of the thin portion 3b, and a guide tube 24 is erected upward on the outer peripheral edge thereof. The guide tube 24 surrounds the periphery of the communication tube 23 and has a shorter length along the container axis O direction than the communication tube 23.

シール筒22は、上部の外径が下部に比べて大きくなっており、例えば上部の外周面が口部3の内周面に液密に嵌合されている。
連通筒23は、有頂筒状をなし、その上端部には径方向に向けて開口する上述した連通孔4が周方向に間隔をあけて形成されている。連通孔4は、容器軸O方向に長くなっており、図示の例では90度間隔で4つ形成されている。
The outer diameter of the upper portion of the seal cylinder 22 is larger than that of the lower portion. For example, the outer peripheral surface of the upper portion is liquid-tightly fitted to the inner peripheral surface of the mouth portion 3.
The communication tube 23 has a top tube shape, and the communication hole 4 described above that opens in the radial direction is formed at an upper end portion thereof at intervals in the circumferential direction. The four communication holes 4 are elongated in the container axis O direction, and four communication holes 4 are formed at intervals of 90 degrees in the illustrated example.

吸い上げ筒部材7は、上端部が中栓5の連通筒23内に嵌合され、その内部を通して容器本体2内と連通孔4とが連通している。また、吸い上げ筒部材7は、容器本体2内を下方に向けて延設され、その下端開口が内容物中に浸漬されている。   The upper end portion of the sucking cylinder member 7 is fitted into the communication cylinder 23 of the inner plug 5, and the inside of the container body 2 and the communication hole 4 communicate with each other through the inside. Further, the sucking cylinder member 7 extends downward in the container main body 2 and its lower end opening is immersed in the contents.

計量筒部材8は、上方に位置するものほど径の小さい多段筒状に形成され、中栓5を上方から覆うように配設されている。具体的に、計量筒部材8は、大径部31、中径部32、及び小径部33と、これらのうち大径部31及び中径部32を接続する第1環板部34と、中径部32及び小径部33を接続する第2環板部35と、を備えている。なお、計量筒部材8は、例えば透明または半透明な材料からなり、内側が視認可能になっている。   The measuring cylinder member 8 is formed in a multi-stage cylindrical shape having a smaller diameter as it is positioned above, and is disposed so as to cover the inner plug 5 from above. Specifically, the measuring cylinder member 8 includes a large-diameter portion 31, a medium-diameter portion 32, and a small-diameter portion 33, and a first ring plate portion 34 that connects the large-diameter portion 31 and the medium-diameter portion 32 among these, A second ring plate portion 35 connecting the diameter portion 32 and the small diameter portion 33. The measuring cylinder member 8 is made of, for example, a transparent or translucent material, and the inside thereof is visible.

大径部31は、上述した口部3の薄肉部3bにアンダーカット嵌合されている。
第1環板部34は、大径部31の上端縁から径方向の内側に向けて突設され、その下面が上述した案内筒24の上端縁上に支持されている。すなわち、中栓5の案内筒24は、容器軸O方向で口部3の上端縁と第1環板部34との間に挟持されている。
The large diameter portion 31 is undercut fitted to the thin portion 3b of the mouth portion 3 described above.
The first ring plate portion 34 projects from the upper end edge of the large diameter portion 31 toward the inside in the radial direction, and the lower surface thereof is supported on the upper end edge of the guide tube 24 described above. That is, the guide tube 24 of the inner stopper 5 is sandwiched between the upper end edge of the mouth portion 3 and the first ring plate portion 34 in the container axis O direction.

中径部32は、中栓5の連通筒23を径方向の外側から取り囲むように配設されるとともに、下端部が第1環板部34よりも下方に向けて突出している。中径部32の下端部は、上述した中栓5の案内筒24内に嵌合されている。なお、図示の例では、中径部32は、案内筒24内にアンダーカット嵌合されている。   The middle diameter portion 32 is disposed so as to surround the communication tube 23 of the inner plug 5 from the outside in the radial direction, and a lower end portion projects downward from the first ring plate portion 34. The lower end portion of the middle diameter portion 32 is fitted in the guide tube 24 of the inner plug 5 described above. In the illustrated example, the medium diameter portion 32 is undercut fitted in the guide tube 24.

小径部33は、第2環板部35の内周縁から上方に向けて延設されている。小径部33の下端部には、径方向の内側に向けて突出する内フランジ部36が形成されている。また、小径部33の上部は下部に比べて外径が縮小されている。そして、中栓5と計量筒部材8とで画成された内側空間が、容器本体2内の内容物が容器本体2の外部で貯留される計量空間Kとなっている。   The small diameter portion 33 extends upward from the inner peripheral edge of the second ring plate portion 35. An inner flange portion 36 that protrudes inward in the radial direction is formed at the lower end portion of the small diameter portion 33. Moreover, the outer diameter of the upper part of the small diameter part 33 is reduced compared with the lower part. The inner space defined by the inner plug 5 and the measuring cylinder member 8 is a measuring space K in which the contents in the container body 2 are stored outside the container body 2.

図1、図2に示すように、吐出膜部材9は、円板状の頂部41と、頂部41の外周縁から下方に向けて延びる胴部42と、を一体に有している。
胴部42は、上方に位置するものほど径の小さい多段筒状に形成され、下段部43、及び上段部44が一体に連設されている。
As shown in FIGS. 1 and 2, the ejection film member 9 integrally includes a disc-shaped top portion 41 and a body portion 42 that extends downward from the outer peripheral edge of the top portion 41.
The body portion 42 is formed in a multi-stage cylindrical shape having a smaller diameter as it is located on the upper side, and a lower step portion 43 and an upper step portion 44 are integrally connected.

下段部43は、上述した計量筒部材8の小径部33内に配設されるとともに、容器軸O方向に沿う上端縁の高さ位置が小径部33の上端縁と同等になっている。
上段部44は、上部が上方に向かうに従い縮径され、かつ上方に向かうに従い薄肉に形成されている。
The lower step portion 43 is disposed in the small diameter portion 33 of the measuring cylinder member 8 described above, and the height position of the upper end edge along the container axis O direction is equal to the upper end edge of the small diameter portion 33.
The upper stage portion 44 is reduced in diameter as the upper portion is directed upward, and is formed thinner as it is directed upward.

頂部41は、計量筒部材8の上端開口を閉塞するとともに、下方に向けて突の凹曲面形状に形成されている。また、頂部41は、弾性変形可能に構成され、その中央部には頂部41が弾性変形したときに拡開され、計量空間K内と外部とを連通させる開口となるスリット45が形成されている。図示の例では、スリット45はX字(十字)状をなしている。
また、頂部41の上面のうち、外周部における周方向の一部分には上方に向けて突出する上面突起部(突起部)46が形成されている。
The top portion 41 closes the upper end opening of the measuring cylinder member 8 and is formed in a concave curved shape that protrudes downward. The top 41 is configured to be elastically deformable, and a slit 45 serving as an opening for communicating the inside of the measuring space K with the outside is formed at the center of the top 41 when the top 41 is elastically deformed. . In the illustrated example, the slit 45 has an X-shape (cross shape).
Further, an upper surface protrusion (projection) 46 that protrudes upward is formed on a part of the outer surface of the top 41 in the circumferential direction.

上述した計量筒部材8の小径部33には、吐出膜部材9の下段部43を上方から覆うカバー部材51が装着されている。カバー部材51は、容器軸O方向に延びる筒状の装着筒52を備え、上述した小径部33の上部にアンダーカット嵌合されている。   A cover member 51 that covers the lower step portion 43 of the ejection film member 9 from above is attached to the small diameter portion 33 of the measuring cylinder member 8 described above. The cover member 51 includes a cylindrical mounting cylinder 52 extending in the container axis O direction, and is undercut fitted to the upper portion of the small-diameter portion 33 described above.

装着筒52の上端縁には、径方向の内側に向けて突出する止めリング部55が形成されている。この止めリング部55は、計量筒部材8の小径部33及び吐出膜部材9の下段部43上に位置しており、吐出膜部材9の下段部43を計量筒部材8の内フランジ部36との間で挟持している。   A stopper ring portion 55 that protrudes inward in the radial direction is formed on the upper end edge of the mounting cylinder 52. The retaining ring portion 55 is located on the small diameter portion 33 of the measuring cylinder member 8 and the lower step portion 43 of the discharge film member 9, and the lower step portion 43 of the discharge film member 9 is connected to the inner flange portion 36 of the measurement tube member 8. Sandwiched between.

また、止めリング部55のうち、内周縁よりも径方向の外側に位置する部分には、吐出膜部材9の上段部44との間に径方向に間隔をあけた状態で、上段部44を囲繞する囲繞壁部56が形成されている。この囲繞壁部56は、吐出膜部材9の上段部44よりも容器軸O方向に沿う長さが短くなっている。   Further, in the retaining ring portion 55, the upper step portion 44 is provided at a portion located on the outer side in the radial direction from the inner peripheral edge with a radial space between the upper step portion 44 and the discharge film member 9. A surrounding wall 56 is formed. The surrounding wall portion 56 has a shorter length along the container axis O direction than the upper step portion 44 of the ejection film member 9.

図1に示すように、オーバーキャップ10は、容器本体2の肩部11、吐出膜部材9、及び計量筒部材8を上方から覆うように配設され、容器本体2の口部3に着脱可能に装着されている。具体的に、オーバーキャップ10は、吐出膜部材9、及び計量筒部材8を覆う有頂筒状のキャップ体61と、キャップ体61の下端縁からキャップ肩部62を介して下方に延びる螺着筒63と、螺着筒63を囲繞する外装体64と、を備えている。   As shown in FIG. 1, the overcap 10 is disposed so as to cover the shoulder portion 11 of the container body 2, the discharge film member 9, and the measuring cylinder member 8 from above, and can be attached to and detached from the mouth portion 3 of the container body 2. It is attached to. Specifically, the overcap 10 includes a top cylindrical cap body 61 that covers the discharge film member 9 and the measuring cylinder member 8, and a screwing that extends downward from the lower end edge of the cap body 61 via the cap shoulder 62. A cylinder 63 and an exterior body 64 surrounding the screwed cylinder 63 are provided.

螺着筒63は、その内周面に雌ネジ部65が形成されており、口部3の雄ねじ部13に螺着されている。なお、オーバーキャップ10は、アンダーカット嵌合により容器本体2に着脱可能に装着しても構わない。
外装体64は、キャップ肩部62の外周縁から下方に向けて延設されており、その下端縁が容器本体2の肩部11に近接している。
The screwed cylinder 63 has a female threaded portion 65 formed on the inner peripheral surface thereof, and is screwed to the male threaded portion 13 of the mouth 3. The overcap 10 may be detachably attached to the container body 2 by undercut fitting.
The exterior body 64 is extended downward from the outer peripheral edge of the cap shoulder portion 62, and the lower end edge thereof is close to the shoulder portion 11 of the container body 2.

キャップ体61は、キャップ肩部62の内周縁から上方に向けて延設された周壁部66と、周壁部66の上端開口を閉塞する天壁部67と、を有している。
天壁部67の中央部には、下方に向けて膨出した当接部68が形成されている。当接部68は、下方に向けて突出するドーム状または半球面状に形成され、吐出膜部材9の頂部41のうちスリット45が形成された領域に当接している。
The cap body 61 has a peripheral wall portion 66 that extends upward from the inner peripheral edge of the cap shoulder portion 62, and a top wall portion 67 that closes the upper end opening of the peripheral wall portion 66.
A contact portion 68 bulging downward is formed at the center of the top wall portion 67. The contact portion 68 is formed in a dome shape or a hemispherical shape that protrudes downward, and is in contact with a region of the top portion 41 of the ejection film member 9 where the slit 45 is formed.

なお、オーバーキャップ10を口部3に装着した際には、当接部68が頂部41におけるスリット45が形成された領域に当接して、スリット45が容器本体2の内側に向けて変形し、若干開いた状態になるが、この場合、吐出容器1の待機時においてスリット45が粘着してしまうのが防止されるので、使用時においてスリット45が容易に拡開できる状態を長期にわたり維持することが可能となる。なお、当接部68が頂部41におけるスリット45が形成された領域に当接した状態において、スリット45の内面同士が密接していても構わない。   When the overcap 10 is attached to the mouth portion 3, the contact portion 68 contacts the region where the slit 45 is formed in the top portion 41, and the slit 45 is deformed toward the inside of the container body 2, In this case, since the slit 45 is prevented from sticking when the discharge container 1 is on standby, a state where the slit 45 can be easily expanded during use is maintained for a long time. Is possible. It should be noted that the inner surfaces of the slits 45 may be in close contact with each other in a state where the contact portion 68 is in contact with the region of the top portion 41 where the slit 45 is formed.

また、天壁部67のうち、当接部68に対して径方向の外側に位置する部分には、下方へ向けて突出するキャップ側内筒部69が形成されている。キャップ側内筒部69は、吐出膜部材9の上段部44の外周面と、止めリング部55の内周面との間に挿入されている。   In addition, a cap-side inner cylinder portion 69 that protrudes downward is formed in a portion of the top wall portion 67 that is located radially outside the contact portion 68. The cap-side inner cylinder portion 69 is inserted between the outer peripheral surface of the upper step portion 44 of the ejection film member 9 and the inner peripheral surface of the retaining ring portion 55.

次に、上述した吐出容器1の作用について説明する。
まず、図3に示すように、容器本体2の口部3とオーバーキャップ10との螺着を解除し、オーバーキャップ10を取り外す。その後、容器本体2の胴部12を径方向の内側に向けて押圧し、容器本体2をスクイズ変形(弾性変形)させる(図3中矢印参照)。これにより、容器本体2が減容変形する。
Next, the effect | action of the discharge container 1 mentioned above is demonstrated.
First, as shown in FIG. 3, the screwing between the mouth 3 of the container body 2 and the overcap 10 is released, and the overcap 10 is removed. Thereafter, the body 12 of the container body 2 is pressed toward the inside in the radial direction, and the container body 2 is squeezed (elastically deformed) (see the arrow in FIG. 3). As a result, the volume of the container body 2 is reduced.

そして、この減容変形に伴い容器本体2の内圧が正圧となり、この正圧によって容器本体2内の内容物が吸い上げ筒部材7を通して上方へ吸い上げられる。吸い上げ筒部材7を通して吸い上げられた内容物Lは、中栓5の連通孔4を通して計量空間K内に流入する。この場合、計量空間K内には、容器本体2の変形量に応じた量の内容物Lが流入する。そして、計量空間K内に流入した内容物Lの液面の高さを、計量筒部材8を通して吐出容器1の外側から確認することで、計量空間K内に所望の量の内容物を計量できる。   And the internal pressure of the container main body 2 becomes a positive pressure with this volume reduction deformation, and the contents in the container main body 2 are sucked upward through the sucking cylinder member 7 by this positive pressure. The contents L sucked up through the sucking cylinder member 7 flows into the measuring space K through the communication hole 4 of the inner plug 5. In this case, an amount of the content L corresponding to the deformation amount of the container body 2 flows into the measurement space K. Then, a desired amount of contents can be measured in the measurement space K by checking the level of the liquid level of the contents L flowing into the measurement space K from the outside of the discharge container 1 through the measurement cylinder member 8. .

なお、容器本体2のスクイズ変形に伴って計量空間K内が圧力上昇した場合、この圧力上昇により吐出膜部材9の頂部41が弾性変形することで、スリット45が拡開されてスリット45間に開口が形成される。これにより、計量空間Kと外部とが連通して、計量空間K内の圧力を逃がすことができるので、容器本体2をスムーズにスクイズ変形させることができる。
その後、計量空間K内に所望の量の内容物Lが貯留されたら、容器本体2の押圧を解除して、容器本体2を復元させる。このとき、計量空間K内において、仮に連通孔4の下端開口縁(吸い上げ筒部材7の上端開口縁)よりも上方まで内容物Lが流入すると、連通孔4の下端開口縁よりも上方に位置する過剰な内容物は、容器本体2の弾性変形を停止、若しくは解除することにより、連通孔4を通して容器本体2内に戻される。したがって、容器軸O方向において、計量空間K内での内容物の液面高さが、連通孔4の下端開口縁と同等の高さになるように常に一定量を計量することが可能となる。
When the pressure in the measuring space K rises due to the squeeze deformation of the container body 2, the top portion 41 of the discharge film member 9 is elastically deformed by this pressure rise, so that the slit 45 is expanded and the space between the slits 45 is increased. An opening is formed. Thereby, since the measurement space K communicates with the outside and the pressure in the measurement space K can be released, the container body 2 can be smoothly squeezed and deformed.
Thereafter, when a desired amount of the contents L is stored in the measurement space K, the container body 2 is released from being pressed, and the container body 2 is restored. At this time, if the content L flows into the measuring space K above the lower end opening edge of the communication hole 4 (upper end opening edge of the suction cylinder member 7), the position is positioned above the lower end opening edge of the communication hole 4. The excessive contents to be returned are returned into the container body 2 through the communication hole 4 by stopping or releasing the elastic deformation of the container body 2. Therefore, in the container axis O direction, it becomes possible to always measure a certain amount so that the liquid level of the content in the measuring space K becomes the same height as the lower end opening edge of the communication hole 4. .

そして、図4に示すように、計量後に、例えば吐出容器1を傾けたり上下反転させたりして、容器本体2が上側、吐出膜部材9が下側に位置する吐出姿勢とする。すると、計量空間K内に貯留された内容物Lは、自重によって吐出膜部材9の頂部41側に移動する。但し、この状態では、スリット45の内面同士が密接して、計量空間Kは吐出膜部材9によって閉塞されているため、計量空間K内に貯留された内容物Lの外部への流出は防止されている。   Then, as shown in FIG. 4, after the measurement, for example, the discharge container 1 is tilted or turned upside down so that the discharge posture is such that the container body 2 is on the upper side and the discharge film member 9 is on the lower side. Then, the content L stored in the measurement space K moves to the top 41 side of the ejection film member 9 by its own weight. However, in this state, since the inner surfaces of the slits 45 are in close contact with each other and the measurement space K is closed by the discharge film member 9, the content L stored in the measurement space K is prevented from flowing out to the outside. ing.

ここで、吐出膜部材9の頂部41を例えば頭皮等の被供給箇所Tに押し当て弾性変形させることで(図4中矢印参照)、スリット45同士の間が離間して、計量筒部材8(計量空間K)内の内容物Lが通過可能な開口が形成され、この開口を通して内容物Lが被供給箇所Tに吐出されることとなる。
この際、吐出膜部材9を被供給箇所Tに押し当てる力を調整することで、形成される開口の大きさ、つまり内容物Lの供給量を調整することが可能になり、優れた操作性を具備させることができる。なお、吐出膜部材9を被供給箇所Tから離間させると、頂部41が復元変形することで、スリット45の内面同士が密接して、吐出膜部材9が閉塞される。これにより、内容物Lの吐出が停止される。
前記供給量の調整は、吐出膜部材9の弾性変形量を調整することで可能となり、例えば、囲繞壁部56の突出高さを調整することで前記弾性変形量を規制し、計量された内容物を一定量ずつ小分けにして吐出することが可能となる。
Here, the top part 41 of the ejection film member 9 is pressed and elastically deformed, for example, against the supply site T such as the scalp (see the arrow in FIG. 4), the slits 45 are separated from each other, and the measuring cylinder member 8 ( An opening through which the content L in the measuring space K) can pass is formed, and the content L is discharged to the supply location T through this opening.
At this time, it is possible to adjust the size of the opening to be formed, that is, the supply amount of the contents L, by adjusting the force with which the ejection film member 9 is pressed against the supply location T, and excellent operability. Can be provided. When the discharge film member 9 is separated from the supply location T, the top 41 is restored and deformed, so that the inner surfaces of the slits 45 are brought into close contact with each other and the discharge film member 9 is closed. Thereby, the discharge of the content L is stopped.
The supply amount can be adjusted by adjusting the elastic deformation amount of the discharge film member 9. For example, the elastic deformation amount is regulated by adjusting the protruding height of the surrounding wall portion 56, and the measured content is adjusted. It becomes possible to divide and discharge objects by a certain amount.

このように、本実施形態によれば、弾性変形可能な容器本体2を備え、中栓5と計量筒部材8との間に、容器本体2内に連通孔4を通して連通する計量空間Kが画成されているので、容器本体2をスクイズ変形することで、連通孔4を通して所望の量の内容物を計量空間K内に貯留することができる。
そして、計量後に、吐出膜部材9を弾性変形させることで、計量空間K内の内容物が通過可能な開口が形成され、この開口を通して内容物が被供給箇所Tに吐出されることになる。これにより、開口の大きさに応じた量の内容物を計量空間K内から少量ずつ吐出することができるので、優れた操作性を具備させることができる。
As described above, according to this embodiment, the container body 2 that can be elastically deformed is provided, and the measuring space K that communicates through the communication hole 4 in the container body 2 is defined between the inner stopper 5 and the measuring cylinder member 8. Therefore, a desired amount of contents can be stored in the measurement space K through the communication hole 4 by squeezing the container body 2.
Then, after the measurement, the discharge film member 9 is elastically deformed to form an opening through which the contents in the measurement space K can pass, and the contents are discharged to the supply location T through this opening. Thereby, since the content of the amount according to the size of the opening can be discharged from the measuring space K little by little, excellent operability can be provided.

しかも、本実施形態の吐出容器1は、吐出膜部材9の頂部41に上面突起部46が形成されているため、頂部41を被供給箇所Tに押し当てたときに、上面突起部46を起点に頂部41が歪な変形を起こすことになる。これにより、頂部41のスリット45間の開口を形成し易くなり、操作性の更なる向上を図ることができる。   Moreover, since the upper surface protrusion 46 is formed on the top 41 of the discharge film member 9 in the discharge container 1 of the present embodiment, when the top 41 is pressed against the supply location T, the upper surface protrusion 46 starts. Therefore, the top 41 is distorted. Thereby, it becomes easy to form the opening between the slits 45 of the top portion 41, and the operability can be further improved.

以上、本発明の実施形態について図面を参照して詳述したが、具体的な構成はこの実施形態に限られるものではなく、本発明の要旨を逸脱しない範囲の設計変更等も含まれる。   As mentioned above, although embodiment of this invention was explained in full detail with reference to drawings, the concrete structure is not restricted to this embodiment, The design change etc. of the range which does not deviate from the summary of this invention are included.

例えば、上述した実施形態では、スリット45をX字状に形成した場合について説明したが、これに限らず、Y字状やI字状でもよく、図5に示すような小孔47にしてもよい。この場合にも、吐出膜部材9を弾性変形させて小孔47が拡径することや、弾性変形によって生じる振動などで、計量空間K内の内容物が開口を通過可能となり、この開口を通して内容物が被供給箇所Tに吐出されることになる。   For example, in the above-described embodiment, the case where the slit 45 is formed in the X shape has been described. However, the present invention is not limited to this, and the Y shape or the I shape may be used, and the small hole 47 as illustrated in FIG. Good. Also in this case, the contents in the measuring space K can pass through the opening due to the elastic deformation of the discharge film member 9 to enlarge the small hole 47 or the vibration generated by the elastic deformation. The object is discharged to the supply location T.

さらに、上述した実施形態では、上面突起部46を周方向の一箇所に形成する構成について説明したが、周方向に複数形成しても構わない。
また、容器本体2は、有底筒状に限らず、チューブ状等であっても構わない。
さらに、上述した実施形態では、頂部41を下方に向けて突の曲面状に形成した場合について説明したが、これに限られない。例えば、上方に向けて突の曲面状に形成したり、曲面状以外に形成したりしても構わない。
また、上述した実施形態では、計量筒部材8が容器本体2に装着された構成について説明したが、例えば中栓5に装着された構成にしても構わない。
Further, in the above-described embodiment, the configuration in which the upper surface protrusion 46 is formed at one place in the circumferential direction has been described, but a plurality of the upper face projections 46 may be formed in the circumferential direction.
Further, the container body 2 is not limited to a bottomed cylindrical shape, and may be a tube shape or the like.
Furthermore, although embodiment mentioned above demonstrated the case where the top part 41 was formed in the protruding curved surface shape toward the downward direction, it is not restricted to this. For example, it may be formed in a curved shape protruding upward or in a shape other than a curved shape.
In the above-described embodiment, the configuration in which the measuring cylinder member 8 is mounted on the container body 2 has been described. However, for example, a configuration in which the measuring tube member 8 is mounted on the inner plug 5 may be used.

その他、本発明の趣旨を逸脱しない範囲で、上述した実施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、上述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 meaning of this invention, it is possible to replace suitably the component in the embodiment mentioned above by the known component, and you may combine the modification mentioned above suitably.

1…吐出容器
2…容器本体
3…口部
4…連通孔
5…中栓
6…底部
7…吸い上げ筒部材
8…計量筒部材
9…吐出膜部材
46…上面突起部(突起部)
K…計量空間
L…内容物
O…容器軸
DESCRIPTION OF SYMBOLS 1 ... Discharge container 2 ... Container main body 3 ... Mouth part 4 ... Communication hole 5 ... Inner plug 6 ... Bottom part 7 ... Suction cylinder member 8 ... Metering cylinder member 9 ... Discharge membrane member 46 ... Top surface protrusion part (projection part)
K ... Weighing space L ... Contents O ... Container axis

Claims (2)

内容物が収容される弾性変形可能な容器本体と、
該容器本体の口部に装着され、前記容器本体内に連通可能な連通孔が形成された中栓と、
該中栓に前記容器本体の底部側の下方に向けて延設され、内部が前記連通孔内に連通し、かつ下端開口が内容物中に浸漬される吸い上げ筒部材と、
前記中栓を該中栓の上方から覆い、かつ当該中栓との間に計量空間を画成する計量筒部材と、
該計量筒部材の上端開口を閉塞し、かつ弾性変形することで前記計量空間内の内容物が通過可能な開口が形成される吐出膜部材と、を備え、
前記計量筒部材は、前記吐出膜部材が配設された縮径筒部と、前記縮径筒部より下方に配置され、前記連通孔を径方向の外側から取り囲む拡径筒部と、前記縮径筒部の下端部と前記拡径筒部の上端部とを接続する環板部と、を備えた多段筒状に形成され、
前記縮径筒部の下端部が前記連通孔より上方に位置し、
前記縮径筒部の下端部に、径方向の内側に向けて突出する内フランジ部が形成され、
前記計量筒部材は、透明または半透明な材料からなり、内側が視認可能になっていることを特徴とする吐出容器。
An elastically deformable container body in which the contents are stored;
An inner plug that is attached to the mouth of the container main body and has a communication hole that can communicate with the container main body;
A suction cylinder member extending toward the lower side of the bottom side of the container main body to the inner plug, the inside communicating with the communication hole, and the lower end opening being immersed in the contents;
A measuring tube member that covers the inner plug from above the inner plug and defines a measuring space with the inner plug;
A discharge membrane member that closes the upper end opening of the measuring cylinder member and is elastically deformed to form an opening through which the contents in the measuring space can pass;
The metering cylinder member includes a reduced diameter cylinder part in which the discharge film member is disposed, a diameter expansion cylinder part disposed below the diameter reduction cylinder part and surrounding the communication hole from a radially outer side, and the reduction cylinder part. Formed in a multi-stage cylindrical shape including an annular plate portion connecting a lower end portion of the diameter cylindrical portion and an upper end portion of the enlarged diameter cylindrical portion ,
A lower end portion of the reduced diameter cylindrical portion is positioned above the communication hole;
An inner flange portion protruding toward the inside in the radial direction is formed at the lower end portion of the reduced diameter cylindrical portion,
The discharge cylinder, wherein the measuring cylinder member is made of a transparent or translucent material, and the inside thereof is visible.
前記吐出膜部材は、下方に向けて窪む曲面形状に形成されるとともに、前記吐出膜部材における外周部の一部には、上方に向けて突出する突起部が形成されていることを特徴とする請求項1記載の吐出容器。   The discharge film member is formed in a curved shape that is recessed downward, and a protruding portion that protrudes upward is formed on a part of the outer periphery of the discharge film member. The discharge container according to claim 1.
JP2012192172A 2012-08-31 2012-08-31 Discharge container Active JP6356942B2 (en)

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JP6564721B2 (en) * 2016-02-29 2019-08-21 株式会社吉野工業所 Weighing application container
JP6564722B2 (en) * 2016-02-29 2019-08-21 株式会社吉野工業所 Application container for weighing and applying contents
JP7080156B2 (en) * 2017-10-31 2022-06-03 株式会社吉野工業所 Coating container
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JP4684485B2 (en) * 2001-07-31 2011-05-18 株式会社吉野工業所 Liquid dispensing container
JP2007022545A (en) * 2005-07-12 2007-02-01 Yoshinori Watanabe One-touch metering bottle cap without need of combination of small spoon and large spoon
JP2007176589A (en) * 2005-12-28 2007-07-12 Kao Corp Liquid measuring cap
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