JP6976185B2 - A coating container that weighs and applies the contents - Google Patents

A coating container that weighs and applies the contents Download PDF

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JP6976185B2
JP6976185B2 JP2018014295A JP2018014295A JP6976185B2 JP 6976185 B2 JP6976185 B2 JP 6976185B2 JP 2018014295 A JP2018014295 A JP 2018014295A JP 2018014295 A JP2018014295 A JP 2018014295A JP 6976185 B2 JP6976185 B2 JP 6976185B2
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cylinder
container
measuring
measuring chamber
coating
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JP2019131236A (en
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孝之 阿部
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Yoshino Kogyosho Co Ltd
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本発明は、塗布容器に関する。 The present invention relates to a coating container.

従来から、以下に示すような塗布容器が知られている。塗布容器は、被塗布部に塗布する内容物が収容される有底筒状の容器本体と、容器本体の口部に装着され、容器本体内に連通する連通孔が形成された中栓部材と、中栓部材との間に、連通孔を通して容器本体内に連通する計量室を形成するとともに、頂部に計量室に連通する吐出孔が形成された計量筒部材と、計量室に設けられるとともに、先端部が吐出孔から計量室の外部に突出される塗布栓と、を備える。塗布栓は、吐出孔と計量室との連通を遮断し、かつ計量室と連通孔とを連通させる計量位置と、計量位置よりも下方に位置するとともに、計量室と連通孔との連通を遮断し、かつ吐出孔と計量室とを連通させる塗布位置と、の間を容器軸方向に移動自在に配設されている。 Conventionally, coating containers as shown below have been known. The coating container includes a bottomed tubular container body that houses the contents to be applied to the coated portion, and an inner plug member that is attached to the mouth of the container body and has a communication hole that communicates with the inside of the container body. A measuring chamber is formed between the inner plug member and the inner plug member to communicate with the inside of the container body through a communication hole, and a measuring cylinder member having a discharge hole communicating with the measuring chamber at the top is provided in the measuring chamber. A coating plug whose tip portion protrudes from the discharge hole to the outside of the measuring chamber is provided. The coating plug cuts off the communication between the discharge hole and the measuring chamber, and is located at the measuring position where the measuring chamber and the communicating hole communicate with each other and below the measuring position, and also cuts off the communication between the measuring chamber and the communication hole. In addition, it is movably arranged in the direction of the container axis between the coating position that communicates the discharge hole and the measuring chamber.

特許第5229542号公報Japanese Patent No. 5229542

ところでこの種の塗布容器では、光が当たると例えば効能が低下する等、光に敏感な内容物が容器本体に充填されることがある。この場合、容器本体から計量室に流入した内容物についても、被塗布部への塗布が完了するまでの間に、光が当たらないようにすることが求められる。
その一方、計量室の内容物の残量を確認しながら、内容物を被塗布部に塗布することについての要望もある。
By the way, in this kind of coating container, the container body may be filled with light-sensitive contents such as a decrease in efficacy when exposed to light. In this case, it is required that the contents flowing into the measuring chamber from the container body are not exposed to light until the coating on the portion to be coated is completed.
On the other hand, there is also a request to apply the contents to the part to be coated while checking the remaining amount of the contents in the measuring chamber.

本発明は、前述した事情に鑑みてなされたものであって、容器本体から計量室に流入した内容物に光が当たるのを抑制しつつ、計量室の内容物の残量を確認しながら、内容物を被塗布部に塗布することができる塗布容器を提供することを目的とする。 The present invention has been made in view of the above-mentioned circumstances, and while suppressing the light from shining on the contents flowing into the measuring chamber from the container body, while checking the remaining amount of the contents in the measuring chamber. It is an object of the present invention to provide a coating container capable of applying the contents to a portion to be coated.

前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。
本発明に係る塗布容器は、被塗布部に塗布する内容物が収容される有底筒状の容器本体と、前記容器本体の口部に装着され、前記容器本体内に連通する連通孔が形成された中栓部材と、前記中栓部材との間に、前記連通孔を通して前記容器本体内に連通する計量室を形成するとともに、頂部に前記計量室に連通する吐出孔が形成された計量筒部材と、前記計量室に設けられるとともに、先端部が前記吐出孔から前記計量室の外部に突出される塗布栓と、を備え、前記塗布栓は、前記吐出孔と前記計量室との連通を遮断し、かつ前記計量室と前記連通孔とを連通させる計量位置と、前記計量位置よりも容器軸方向に沿う前記容器本体の底部側に位置するとともに、前記計量室と前記連通孔との連通を遮断し、かつ前記吐出孔と前記計量室とを連通させる塗布位置と、の間を容器軸方向に移動自在に配設され、前記容器本体は、全域にわたって容器外部から内部が視認不能に形成され、前記計量筒部材のうち計量室を画成する壁部は、前記計量室を容器外部から視認可能な透視部と、前記計量室を容器外部から視認不能な遮光部と、により構成されていることを特徴とする。
In order to solve the above problems, the present invention proposes the following means.
The coating container according to the present invention has a bottomed tubular container body for accommodating the contents to be applied to the coated portion and a communication hole which is attached to the mouth of the container body and communicates with the inside of the container body. A measuring cylinder in which a measuring chamber communicating with the inside of the container body is formed between the inner plug member and the inner plug member, and a discharge hole communicating with the measuring chamber is formed at the top. A member and a coating plug provided in the measuring chamber and having a tip portion protruding from the discharging hole to the outside of the measuring chamber are provided, and the coating plug provides communication between the discharge hole and the measuring chamber. A measuring position that shuts off and communicates the measuring chamber and the communication hole, and is located on the bottom side of the container body along the container axial direction from the measuring position, and also communicates between the measuring chamber and the communication hole. The container body is formed so that the inside of the container body cannot be seen from the outside of the container over the entire area. The wall portion of the measuring cylinder member that defines the measuring chamber is composed of a see-through portion in which the measuring chamber can be seen from the outside of the container and a light-shielding portion in which the measuring chamber cannot be seen from the outside of the container. It is characterized by being.

この発明によれば、計量筒部材の前記壁部が透視部を備えるので、計量室の内容物を被塗布部に塗布する際に、透視部を通して計量室の内容物の残量を確認することが可能になり、優れた取り扱い性を具備させることができる。
しかも、計量筒部材の前記壁部が、透視部だけでなく遮光部も備えているので、前記壁部の全体が透視部で構成されている場合と比べて、容器本体から計量室に流入した内容物に光が当たるのを抑制することができる。
According to the present invention, since the wall portion of the measuring cylinder member is provided with a fluoroscopic portion, when the contents of the measuring chamber are applied to the coated portion, the remaining amount of the contents of the measuring chamber is confirmed through the fluoroscopic portion. It is possible to provide excellent handleability.
Moreover, since the wall portion of the measuring cylinder member includes not only a fluoroscopic portion but also a light-shielding portion, the wall portion flows into the measuring chamber from the container body as compared with the case where the entire wall portion is composed of the fluoroscopic portion. It is possible to prevent the contents from being exposed to light.

ここで、前記計量筒部材のうち、少なくとも前記壁部は、透明若しくは半透明な材質で形成された透視層と、遮光性を有する材質で形成されるとともに、前記透視層を、その一部を除いて覆う遮光層と、を備え、前記透視部は、前記透視層の前記一部を備えてもよい。 Here, among the measuring cylinder members, at least the wall portion is formed of a transparent or translucent material and a light-shielding material, and the transparent layer is partially formed. A light-shielding layer that is removed and covered may be provided, and the see-through portion may include the part of the see-through layer.

この場合、計量筒部材のうちの少なくとも前記壁部が、積層された透視層および遮光層を備えるので、例えば、透視層および遮光層が、厚さ方向に直交する方向に並べられた構成と比べて、計量筒部材を容易かつ精度よく形成することができる。 In this case, since at least the wall portion of the measuring cylinder member includes the laminated transparent layer and the light-shielding layer, for example, as compared with the configuration in which the transparent layer and the light-shielding layer are arranged in the direction orthogonal to the thickness direction. Therefore, the measuring cylinder member can be easily and accurately formed.

本発明によれば、容器本体から計量室に流入した内容物に光が当たるのを抑制しつつ、計量室の内容物の残量を確認しながら、内容物を被塗布部に塗布することができる。 According to the present invention, it is possible to apply the contents to the portion to be coated while suppressing the light from shining on the contents flowing into the measuring chamber from the container body and checking the remaining amount of the contents in the measuring chamber. can.

本発明の一実施形態に係る塗布容器の一部縦断面図である。It is a partial vertical sectional view of the coating container which concerns on one Embodiment of this invention. 図1に示す塗布容器の拡大図である。It is an enlarged view of the coating container shown in FIG. 1. 図2に示す塗布容器であって、透視部を正面から見た側面図である。FIG. 2 is a side view of the coating container shown in FIG. 2 when the fluoroscopic portion is viewed from the front. 本発明の一実施形態に係る塗布容器の拡大図であって、塗布栓が計量位置に引き上げられた状態にある一部縦断面図である。It is an enlarged view of the coating container which concerns on one Embodiment of this invention, and is a partial vertical sectional view in a state where a coating plug is pulled up to a measuring position. 本発明の一実施形態に係る塗布容器の拡大図であって、塗布栓が塗布位置に位置した状態にある一部縦断面図である。It is an enlarged view of the coating container which concerns on one Embodiment of this invention, and is a partial vertical sectional view in a state where a coating plug is located at a coating position.

以下、図1から図5を参照し、本発明の一実施形態に係る塗布容器を説明する。この塗布容器1には、例えば人体の頭皮や皮膚等の被塗布部Sに塗布される育毛剤や薬液等の内容物が収容される。 Hereinafter, the coating container according to the embodiment of the present invention will be described with reference to FIGS. 1 to 5. The coating container 1 contains contents such as a hair restorer and a chemical solution to be applied to the coated portion S such as the scalp and skin of the human body.

図1に示すように、塗布容器1は、被塗布部Sに塗布する内容物が収容される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内に連通する連通孔5が形成された中栓部材4と、中栓部材4との間に、連通孔5を通して容器本体2内に連通する計量室6を形成するとともに、頂部19に計量室6に連通する吐出孔8が形成された計量筒部材7と、計量室6に設けられるとともに、先端部26が吐出孔8から計量室6の外部に突出される塗布栓9と、を備える。 As shown in FIG. 1, the coating container 1 is attached to a bottomed tubular container body 2 in which the contents to be applied to the coated portion S are housed, and a mouth portion 3 of the container body 2, and is inside the container body 2. A measuring chamber 6 is formed between the inner plug member 4 having the communication hole 5 communicating with the inner plug member 4 and the inner plug member 4 to communicate with the inside of the container body 2 through the communication hole 5, and the measuring chamber 6 is formed at the top 19. A measuring cylinder member 7 having a discharge hole 8 communicating with the measuring chamber 6 and a coating plug 9 provided in the measuring chamber 6 and having a tip portion 26 protruding from the discharge hole 8 to the outside of the measuring chamber 6 are provided.

ここで、容器本体2の口部3、および計量筒部材7それぞれの中心軸線が共通軸上に配置されている。以下、この共通軸を容器軸Oといい、容器軸O方向に沿う容器本体2の底部2a側(図1における下側)を下側、容器軸O方向に沿う容器本体2の口部3側(図1における上側)を上側という。また、容器軸O方向から見た平面視で容器軸Oに交差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。 Here, the central axes of the mouth portion 3 of the container body 2 and the measuring cylinder member 7 are arranged on a common axis. Hereinafter, this common shaft is referred to as a container shaft O, the bottom 2a side (lower side in FIG. 1) of the container body 2 along the container shaft O direction is the lower side, and the mouth 3 side of the container body 2 along the container shaft O direction. (Upper side in FIG. 1) is referred to as upper side. Further, the direction that intersects the container axis O in a plan view from the container axis O direction is referred to as a radial direction, and the direction that orbits around the container axis O is referred to as a circumferential direction.

容器本体2の口部3は、容器本体2のうち、口部3以外の胴部2b、底部2aおよび肩部2cよりも小径とされている。口部3の外周面には雄ねじ部が形成されている。この雄ねじ部は、例えば二条ねじであってもよい。口部3の上端部の外径は、口部3のうち、上端部より下方に位置する部分の外径より小さくなっており、口部3の上端部の外周面には、径方向の外側に突出するとともに周方向に延びる環状または円弧状の突起が形成されている。口部3の下端部には、径方向の外側に向けて突出する回り止めリブ3bが形成されている。 The mouth portion 3 of the container body 2 has a smaller diameter than the body portion 2b, the bottom portion 2a, and the shoulder portion 2c other than the mouth portion 3 of the container body 2. A male screw portion is formed on the outer peripheral surface of the mouth portion 3. The male thread portion may be, for example, a double thread. The outer diameter of the upper end portion of the mouth portion 3 is smaller than the outer diameter of the portion of the mouth portion 3 located below the upper end portion, and the outer peripheral surface of the upper end portion of the mouth portion 3 is radially outside. An annular or arcuate protrusion is formed that protrudes in the circumferential direction and extends in the circumferential direction. At the lower end of the mouth portion 3, a detent rib 3b is formed so as to project outward in the radial direction.

図2に示すように、中栓部材4は、容器本体2の口部3内に配設された有底筒状のシリンダ筒12と、シリンダ筒12の底壁から上側に向けて突出した支持体11と、シリンダ筒12より大径に形成されるとともに、シリンダ筒12から上側に向けて突出し、容器本体2の口部3内に嵌合した主嵌合筒13と、主嵌合筒13の上部を径方向の外側から囲繞するとともに主嵌合筒13に連結された外嵌合筒17と、を有している。 As shown in FIG. 2, the inner plug member 4 has a bottomed cylindrical cylinder cylinder 12 arranged in the mouth portion 3 of the container main body 2 and a support protruding upward from the bottom wall of the cylinder cylinder 12. The main fitting cylinder 13 and the main fitting cylinder 13 which are formed to have a larger diameter than the body 11 and the cylinder cylinder 12 and which protrude upward from the cylinder cylinder 12 and are fitted in the mouth portion 3 of the container main body 2. It has an outer fitting cylinder 17 connected to the main fitting cylinder 13 while surrounding the upper portion of the above from the outside in the radial direction.

なお、本実施形態では、中栓部材4のシリンダ筒12、支持体11、主嵌合筒13および外嵌合筒17が一体に形成されている。なお、中栓部材4は、例えば着色樹脂材料等の遮光性を有する樹脂材料で一体に形成されても、透明若しくは半透明の樹脂材料等で一体に形成されてもよい。また、中栓部材4を、遮光性を有する例えばフィルム若しくは塗膜等の被覆体で覆った構成とする等適宜変更してもよい。 In this embodiment, the cylinder cylinder 12, the support 11, the main fitting cylinder 13, and the outer fitting cylinder 17 of the inner plug member 4 are integrally formed. The inner plug member 4 may be integrally formed of, for example, a colored resin material or the like having a light-shielding property, or may be integrally formed of a transparent or translucent resin material or the like. Further, the inner plug member 4 may be appropriately modified such that the inner plug member 4 is covered with a covering body such as a film or a coating film having a light-shielding property.

支持体11は、シリンダ筒12の底壁に立設されて容器軸Oと同軸に配置された案内軸11aと、案内軸11aの下端部から径方向の外側に向けて突出する規制部11bと、を備えている。
案内軸11aは、シリンダ筒12における径方向の内側に配置され、案内軸11aの上端部は、シリンダ筒12および主嵌合筒13よりも上側に突出している。
The support 11 includes a guide shaft 11a that is erected on the bottom wall of the cylinder cylinder 12 and is arranged coaxially with the container shaft O, and a restricting portion 11b that projects radially outward from the lower end of the guide shaft 11a. , Is equipped.
The guide shaft 11a is arranged inside the cylinder cylinder 12 in the radial direction, and the upper end portion of the guide shaft 11a projects upward from the cylinder cylinder 12 and the main fitting cylinder 13.

規制部11bは、全周にわたって連続して延びる筒状体となっている。規制部11bは、シリンダ筒12の底壁および案内軸11aに一体に連結されている。規制部11bの内周面は、案内軸11aの外周面と一体に形成されている。規制部11bの上端縁は、シリンダ筒12の周壁の上端開口縁よりも下側に位置している。
なお、規制部11bとして、容器軸O方向に延びる縦長のリブ状体が周方向に間隔をあけて複数配置されてなる構成を採用してもよい。また、規制部11bは、案内軸11aおよびシリンダ筒12と別体に形成されてもよい。
The regulating portion 11b is a cylindrical body that extends continuously over the entire circumference. The regulating portion 11b is integrally connected to the bottom wall of the cylinder cylinder 12 and the guide shaft 11a. The inner peripheral surface of the regulating portion 11b is integrally formed with the outer peripheral surface of the guide shaft 11a. The upper end edge of the restricting portion 11b is located below the upper end opening edge of the peripheral wall of the cylinder cylinder 12.
As the regulating portion 11b, a configuration may be adopted in which a plurality of vertically long rib-shaped bodies extending in the container axis O direction are arranged at intervals in the circumferential direction. Further, the regulating portion 11b may be formed separately from the guide shaft 11a and the cylinder cylinder 12.

シリンダ筒12は、容器軸Oと同軸に配置されている。シリンダ筒12には、周方向に間隔をあけて複数の連通孔5が形成され、シリンダ筒12内は、連通孔5を通して容器本体2内に連通している。なお、連通孔5は1つでもよい。連通孔5は、シリンダ筒12における周壁および底壁にわたって一体に形成されている。ここで、規制部11bは、シリンダ筒12の底壁における連通孔5の開口周縁部に配置されている。連通孔5の内周面のうち、径方向の内側に位置して径方向の外側を向く面、および規制部11bの表面のうち、径方向の外側を向く面それぞれの径方向の位置が互いに同等になっている。なお、連通孔5の内周面のうち、シリンダ筒12の周壁に位置して下方を向く面は、規制部11bの上端縁よりも下側に位置している。
シリンダ筒12の周壁の内周面のうち、連通孔5より上側に位置する部分に、塗布栓9の下端部が上下摺動可能に嵌合している。
The cylinder cylinder 12 is arranged coaxially with the container shaft O. A plurality of communication holes 5 are formed in the cylinder cylinder 12 at intervals in the circumferential direction, and the inside of the cylinder cylinder 12 communicates with the inside of the container body 2 through the communication holes 5. The number of communication holes 5 may be one. The communication hole 5 is integrally formed over the peripheral wall and the bottom wall of the cylinder cylinder 12. Here, the regulating portion 11b is arranged at the opening peripheral portion of the communication hole 5 in the bottom wall of the cylinder cylinder 12. The radial positions of the inner peripheral surface of the communication hole 5 that is located inside the radial direction and faces the outer side in the radial direction and the surface of the regulating portion 11b that faces the outer side in the radial direction are mutual. It is equivalent. Of the inner peripheral surface of the communication hole 5, the surface located on the peripheral wall of the cylinder cylinder 12 and facing downward is located below the upper end edge of the restricting portion 11b.
The lower end of the coating plug 9 is slidably fitted to a portion of the inner peripheral surface of the peripheral wall of the cylinder cylinder 12 located above the communication hole 5.

主嵌合筒13の上部は、容器本体2の口部3から上方に突出している。主嵌合筒13の下端部は、フランジ部を介してシリンダ筒12の上端部に連結されている。
外嵌合筒17は、主嵌合筒13の上部の外周面に連結され、その下端縁が容器本体2の口部3の上端開口縁に当接している。外嵌合筒17の外周面には、径方向の外側に向けて突出するとともに周方向に延びる環状または円弧状の突起が形成されている。
The upper portion of the main fitting cylinder 13 projects upward from the mouth portion 3 of the container body 2. The lower end of the main fitting cylinder 13 is connected to the upper end of the cylinder cylinder 12 via the flange portion.
The outer fitting cylinder 17 is connected to the outer peripheral surface of the upper part of the main fitting cylinder 13, and its lower end edge is in contact with the upper end opening edge of the mouth portion 3 of the container body 2. An annular or arcuate protrusion is formed on the outer peripheral surface of the outer fitting cylinder 17 so as to project outward in the radial direction and extend in the circumferential direction.

計量筒部材7は、容器本体2の口部3に装着された装着筒部18と、装着筒部18より上側に位置して内側が吐出孔8とされた筒状の頂部19と、装着筒部18と頂部19との間に位置してこれら18、19を連結する連結筒部(壁部)20と、を有する。
図示の例では、計量筒部材7は下側から上側へ向かって、装着筒部18、連結筒部20、および頂部19の順に段階的に縮径している。
The measuring cylinder member 7 includes a mounting cylinder portion 18 mounted on the mouth portion 3 of the container body 2, a tubular top portion 19 located above the mounting cylinder portion 18 and having a discharge hole 8 inside, and a mounting cylinder. It has a connecting cylinder portion (wall portion) 20 located between the portion 18 and the top portion 19 and connecting the portions 18 and 19.
In the illustrated example, the measuring cylinder member 7 is gradually reduced in diameter from the lower side to the upper side in the order of the mounting cylinder portion 18, the connecting cylinder portion 20, and the top portion 19.

装着筒部18は、環状の天壁と、周壁と、を有する有頂筒状をなしている。装着筒部18の周壁は、容器本体2の口部3の上端部、および中栓部材4の外嵌合筒17に外嵌している。装着筒部18の周壁の内周面には、径方向の内側に向けて突出するとともに周方向に延びる環状または円弧状の突起が、容器軸O方向に間隔をあけて2つ形成されている。これら2つの突起のうち、下側に位置する突起は、口部3の前記突起にアンダーカット嵌合し、上側に位置する突起は、外嵌合筒17の前記突起にアンダーカット嵌合している。 The mounting cylinder portion 18 has an ecstatic cylinder shape having an annular top wall and a peripheral wall. The peripheral wall of the mounting cylinder portion 18 is externally fitted to the upper end portion of the mouth portion 3 of the container body 2 and the outer fitting cylinder 17 of the inner plug member 4. On the inner peripheral surface of the peripheral wall of the mounting cylinder portion 18, two annular or arcuate protrusions projecting inward in the radial direction and extending in the circumferential direction are formed at intervals in the container axis O direction. .. Of these two protrusions, the protrusion located on the lower side is undercut-fitted to the protrusion of the mouth portion 3, and the protrusion located on the upper side is undercut-fitted to the protrusion of the outer fitting cylinder 17. There is.

装着筒部18の天壁の下面は、中栓部材4における主嵌合筒13の上端開口縁に近接し、かつ外嵌合筒17の上端開口縁に当接している。装着筒部18の天壁、および主嵌合筒13それぞれの内周面の径方向の位置は互いに同等になっている。装着筒部18の天壁には、下方に向けて突出するとともに、外嵌合筒17と主嵌合筒13の上部との間に挿入された筒体が形成されている。この筒体は、主嵌合筒13および外嵌合筒17のうちの少なくとも一方に嵌合し、計量室6における中栓部材4と計量筒部材7との連結部分の液密性を確保している。 The lower surface of the top wall of the mounting cylinder portion 18 is close to the upper end opening edge of the main fitting cylinder 13 in the inner plug member 4 and is in contact with the upper end opening edge of the outer fitting cylinder 17. The radial positions of the top wall of the mounting cylinder portion 18 and the inner peripheral surfaces of the main fitting cylinder 13 are equal to each other. On the top wall of the mounting cylinder portion 18, a cylinder body is formed which protrudes downward and is inserted between the outer fitting cylinder 17 and the upper portion of the main fitting cylinder 13. This cylinder is fitted to at least one of the main fitting cylinder 13 and the outer fitting cylinder 17 to ensure the liquidtightness of the connecting portion between the inner plug member 4 and the measuring cylinder member 7 in the measuring chamber 6. ing.

連結筒部20は、環状の天壁と、周壁と、を有する有頂筒状をなしている。連結筒部20の周壁は、装着筒部18の天壁の内周縁部から上側に向けて突出している。連結筒部20の周壁の内周面における径方向の位置は、装着筒部18の天壁、および主嵌合筒13それぞれの内周面の径方向の位置と同等になっている。
頂部19は、円筒状に形成されるとともに、連結筒部20の天壁の内周縁部から上側に向けて突出している。頂部19の内周面と、連結筒部20の天壁の下面と、の接続部分は、径方向の内側に向けて突の曲面状に形成されている。なお、頂部19は例えば角筒状に形成してもよい。また、頂部19を設けずに、連結筒部20の環状の天壁の内周縁を吐出孔8としてもよい。つまり、計量筒部材7の頂部を、連結筒部20の天壁としてもよい。
本実施形態では、計量筒部材7の連結筒部20と、中栓部材4の主嵌合筒13と、により画成される空間が計量室6とされている。すなわち、計量室6の内周面は、中栓部材4の主嵌合筒13の内周面と、計量筒部材7の連結筒部20の周壁の内周面と、により構成される。図示の例では、計量筒部材7のうち、連結筒部20が、計量室6を画成する壁部となっている。
The connecting cylinder portion 20 has an ecstatic cylinder shape having an annular top wall and a peripheral wall. The peripheral wall of the connecting cylinder portion 20 projects upward from the inner peripheral edge portion of the top wall of the mounting cylinder portion 18. The radial position of the peripheral wall of the connecting cylinder 20 on the inner peripheral surface is the same as the radial position of the inner peripheral surface of the top wall of the mounting cylinder 18 and the main fitting cylinder 13.
The top portion 19 is formed in a cylindrical shape and protrudes upward from the inner peripheral edge portion of the top wall of the connecting cylinder portion 20. The connecting portion between the inner peripheral surface of the top portion 19 and the lower surface of the top wall of the connecting cylinder portion 20 is formed in a curved surface shape with a protrusion toward the inside in the radial direction. The top portion 19 may be formed in the shape of a square cylinder, for example. Further, the inner peripheral edge of the annular top wall of the connecting cylinder portion 20 may be used as the discharge hole 8 without providing the top portion 19. That is, the top of the measuring cylinder member 7 may be the top wall of the connecting cylinder portion 20.
In the present embodiment, the space defined by the connecting cylinder portion 20 of the measuring cylinder member 7 and the main fitting cylinder 13 of the inner plug member 4 is the measuring chamber 6. That is, the inner peripheral surface of the measuring chamber 6 is composed of the inner peripheral surface of the main fitting cylinder 13 of the inner plug member 4 and the inner peripheral surface of the peripheral wall of the connecting cylinder portion 20 of the measuring cylinder member 7. In the illustrated example, of the measuring cylinder member 7, the connecting cylinder portion 20 is a wall portion defining the measuring chamber 6.

塗布栓9は、吐出孔8と計量室6との連通を遮断し、かつ計量室6と連通孔5とを連通させる計量位置(例えば図4に示す状態)と、計量位置よりも下側(容器軸方向に沿う容器本体の底部側)に位置するとともに、計量室6と連通孔5との連通を遮断し、かつ吐出孔8と計量室6とを連通させる(ここでいう「連通させる」とは、「連通する、または連通可能な状態とする」の両方の意味を含む)塗布位置(例えば図1、図2、図5に示す状態)と、の間を容器軸O方向(上下方向)に移動自在に配設されている。
図示の例では、塗布栓9が塗布位置に位置した状態で、塗布栓9の外周面と吐出孔8の内周面との間の隙間を通して、計量室6の内容物が吐出可能とされている。
The coating plug 9 blocks the communication between the discharge hole 8 and the measuring chamber 6 and communicates the measuring chamber 6 with the communication hole 5 (for example, the state shown in FIG. 4) and the lower side than the measuring position (for example, the state shown in FIG. 4). It is located on the bottom side of the container body along the container axis direction), blocks the communication between the measuring chamber 6 and the communication hole 5, and communicates the discharge hole 8 and the measuring chamber 6 (“communication” here. Means both "communicate or enable communication") between the coating position (for example, the state shown in FIGS. 1, 2, and 5) and the container axis O direction (vertical direction). ) Is movably arranged.
In the illustrated example, with the coating plug 9 located at the coating position, the contents of the measuring chamber 6 can be discharged through the gap between the outer peripheral surface of the coating plug 9 and the inner peripheral surface of the discharge hole 8. There is.

塗布栓9は、計量筒部材7内に配設された有頂筒状のシール筒24と、シール筒24の天壁から下方に向けて延び、シール筒24の周壁により径方向の外側から囲繞された外挿筒25と、シール筒24の天壁に立設された筒状の先端部26と、を有する。シール筒24、外挿筒25および先端部26は、容器軸Oと同軸に配置されるとともに、一体に形成されている。 The coating stopper 9 extends downward from the ridged cylinder-shaped seal cylinder 24 arranged in the measuring cylinder member 7 and the top wall of the seal cylinder 24, and is surrounded from the outside in the radial direction by the peripheral wall of the seal cylinder 24. It has an extrapolated cylinder 25 and a tubular tip portion 26 erected on the top wall of the seal cylinder 24. The seal cylinder 24, the extrapolation cylinder 25, and the tip portion 26 are arranged coaxially with the container shaft O and are integrally formed.

シール筒24の上部は、図4に示すように、塗布栓9が計量位置に位置するときに、吐出孔8の内側に摺動自在に嵌合しており、吐出孔8と計量室6との連通を遮断する。シール筒24の下端部は、塗布栓9が、図2および図5に示すように塗布位置に位置するときに、シリンダ筒12の内側に摺動自在に嵌合している。図示の例では、シール筒24のうち、下端部の厚さは、他の部分の厚さより薄くなっている。
このようなシール筒24の下端部は、塗布位置に位置するときに、シリンダ筒12内に嵌合し計量室6と連通孔5との連通を遮断する一方、計量位置に位置するときに、シリンダ筒12内から上方に離脱し計量室6と連通孔5とを連通させる。
As shown in FIG. 4, the upper portion of the seal cylinder 24 is slidably fitted inside the discharge hole 8 when the coating plug 9 is located at the measuring position, and the discharge hole 8 and the measuring chamber 6 are fitted together. Block communication. The lower end of the seal cylinder 24 is slidably fitted inside the cylinder cylinder 12 when the coating stopper 9 is located at the coating position as shown in FIGS. 2 and 5. In the illustrated example, the thickness of the lower end portion of the seal cylinder 24 is thinner than the thickness of the other portion.
When the lower end portion of such a seal cylinder 24 is positioned at the coating position, it fits inside the cylinder cylinder 12 and blocks communication between the measuring chamber 6 and the communication hole 5, while when it is located at the measuring position. It separates upward from the inside of the cylinder cylinder 12 and communicates the measuring chamber 6 with the communication hole 5.

塗布栓9は、径方向の外側に向けて突出するストッパー段部24cを備える。ストッパー段部24cは、シール筒24の外周面における容器軸O方向の中間部分に形成されている。ストッパー段部24cは、周方向に沿って延びる環状に形成されている。ストッパー段部24cは、図4に示すように、塗布栓9が計量位置に位置するときに、計量筒部材7内における吐出孔8の開口周縁部に対して、下側から当接可能である。図示の例では、ストッパー段部24cは、計量筒部材7のうち連結筒部20の天壁の内周縁部に対して、その下側から当接可能となっている。 The coating plug 9 includes a stopper step portion 24c that projects outward in the radial direction. The stopper step portion 24c is formed at an intermediate portion in the container axis O direction on the outer peripheral surface of the seal cylinder 24. The stopper step portion 24c is formed in an annular shape extending along the circumferential direction. As shown in FIG. 4, the stopper step portion 24c can come into contact with the opening peripheral portion of the discharge hole 8 in the measuring cylinder member 7 from the lower side when the coating plug 9 is located at the measuring position. .. In the illustrated example, the stopper step portion 24c can come into contact with the inner peripheral edge portion of the top wall of the connecting cylinder portion 20 of the measuring cylinder member 7 from below.

塗布栓9が計量位置に位置した状態では、塗布栓9のストッパー段部24cが、計量筒部材7における吐出孔8の開口周縁部にその下側から当接することで、たとえ計量室6に対して塗布栓9を上側へ移動させる向きの外力が作用した場合でも、計量位置に位置した塗布栓9がそれ以上に上側に向けて移動することが規制されている。
ここで、シール筒24の上部における外周面には、径方向の外側に向けて突出するとともに周方向に延びる環状または円弧状の第1係合突部24aが形成されている。この第1係合突部24aは、塗布栓9が塗布位置から計量位置に移動したときに、吐出孔8の内周面に形成された第2係合突部8aを上方に乗り越え、第2係合突部8aに第1係合突部24aの下側から係合する。なお、第1係合突部24aおよび第2係合突部8aは、互いに全周にわたって連続して係合しなくてもよい。
In the state where the coating plug 9 is located at the measuring position, the stopper step portion 24c of the coating plug 9 abuts on the peripheral edge of the opening of the discharge hole 8 in the measuring cylinder member 7 from below, so that even with respect to the measuring chamber 6. Even when an external force is applied to move the coating plug 9 upward, the coating plug 9 located at the weighing position is restricted from moving further upward.
Here, an annular or arcuate first engaging protrusion 24a is formed on the outer peripheral surface of the upper portion of the seal cylinder 24 so as to project outward in the radial direction and extend in the circumferential direction. When the coating plug 9 moves from the coating position to the measuring position, the first engaging protrusion 24a overcomes the second engaging protrusion 8a formed on the inner peripheral surface of the discharge hole 8 upward and is second. It engages with the engaging protrusion 8a from below the first engaging protrusion 24a. The first engaging protrusion 24a and the second engaging protrusion 8a do not have to be continuously engaged with each other over the entire circumference.

外挿筒25は、中栓部材4の案内軸11aに上下動自在に外挿されている。図示の例では、外挿筒25は、中栓部材4の案内軸11aに非接触状態で上下動する。これにより、塗布栓9を円滑に上下動させることができる。また、外挿筒25の下端開口縁は、シール筒24の下端開口縁よりも下側に位置している。 The extrapolation cylinder 25 is extrapolated to the guide shaft 11a of the inner plug member 4 so as to be vertically movable. In the illustrated example, the extrapolation cylinder 25 moves up and down in a non-contact state with the guide shaft 11a of the inner plug member 4. As a result, the coating plug 9 can be smoothly moved up and down. Further, the lower end opening edge of the extrapolation cylinder 25 is located below the lower end opening edge of the seal cylinder 24.

図2に示すように、塗布栓9が塗布位置に位置した状態で、外挿筒25の下端開口縁は、支持体11の規制部11bの上端縁と当接し、支持体11の規制部11bに下側から支持されている。このとき、支持体11の案内軸11aの上端縁と、シール筒24の天壁と、の間には、容器軸O方向の隙間が設けられている。なおこれに代えて、案内軸11aの上端縁、およびシール筒24の天壁を互いに当接させて、塗布栓9のこれ以上の下降移動を規制してもよい。 As shown in FIG. 2, with the coating plug 9 located at the coating position, the lower end opening edge of the extrapolation cylinder 25 comes into contact with the upper end edge of the restricting portion 11b of the support 11, and the restricting portion 11b of the support 11b. It is supported from below. At this time, a gap in the container axis O direction is provided between the upper end edge of the guide shaft 11a of the support 11 and the top wall of the seal cylinder 24. Instead of this, the upper end edge of the guide shaft 11a and the top wall of the seal cylinder 24 may be brought into contact with each other to restrict further downward movement of the coating plug 9.

塗布栓9が塗布位置に位置した状態で、塗布栓9の先端部26は、計量筒部材7の頂部19内に配設されている。先端部26の外径は、塗布栓9が計量位置に位置するときに、吐出孔8の内側に嵌合したシール筒24の上部の外径より小さい。塗布栓9が塗布位置に位置した状態で、シール筒24のうち、第1係合突部24aより上方に位置する上端部、および先端部26それぞれの外周面と、吐出孔8の内周面と、の間に、内容物が流通可能な隙間が設けられている。そして、この隙間を通して、計量室6内と容器外部とが連通されている。
先端部26の上端部における内周面には、径方向の内側に向けて突出するとともに周方向に延びる環状または円弧状の被係合部26aが形成されている。
The tip portion 26 of the coating plug 9 is arranged in the top portion 19 of the measuring cylinder member 7 with the coating plug 9 positioned at the coating position. The outer diameter of the tip portion 26 is smaller than the outer diameter of the upper part of the seal cylinder 24 fitted inside the discharge hole 8 when the coating plug 9 is located at the measuring position. With the coating plug 9 located at the coating position, the outer peripheral surface of each of the upper end portion and the tip portion 26 located above the first engaging protrusion 24a and the inner peripheral surface of the discharge hole 8 of the seal cylinder 24. There is a gap between the and, where the contents can be distributed. Then, the inside of the measuring chamber 6 and the outside of the container are communicated with each other through this gap.
An annular or arcuate engaged portion 26a is formed on the inner peripheral surface of the upper end portion of the tip portion 26 so as to project inward in the radial direction and extend in the circumferential direction.

塗布容器1は、容器本体2の口部3に着脱自在に装着されて吐出孔8および塗布栓9の先端部26を覆うキャップ体10を備える。
キャップ体10は、有頂筒状をなしており、その周壁の下部における内周面に、口部3の雄ねじ部に螺着する雌ねじ部が形成されている。雌ねじ部は、例えば二条ねじであってもよい。
なお、キャップ体10が、口部3に着脱可能に螺着されるのに代えて例えば、キャップ体10の平滑な内周面に、口部3の平滑な外周面を着脱可能に嵌合したり、あるいはキャップ体10が口部3に着脱可能にアンダーカット嵌合したりする等、適宜変更してもよい。また、キャップ体10を、口部3に装着するのに代えて例えば、計量筒部材7に装着してもよい。
The coating container 1 includes a cap body 10 that is detachably attached to the mouth portion 3 of the container body 2 and covers the discharge hole 8 and the tip portion 26 of the coating plug 9.
The cap body 10 has a ridged cylinder shape, and a female screw portion screwed to the male screw portion of the mouth portion 3 is formed on the inner peripheral surface at the lower portion of the peripheral wall thereof. The female thread portion may be, for example, a double thread.
Instead of the cap body 10 being detachably screwed to the mouth portion 3, for example, the smooth outer peripheral surface of the mouth portion 3 is detachably fitted to the smooth inner peripheral surface of the cap body 10. Alternatively, the cap body 10 may be detachably fitted to the mouth portion 3 undercut, and the like may be appropriately changed. Further, the cap body 10 may be attached to, for example, the measuring cylinder member 7 instead of being attached to the mouth portion 3.

キャップ体10の天壁には、下方に向けて突出するとともに、下端部が、塗布位置に位置する塗布栓9の先端部26内に着脱自在に嵌合された引き上げ筒31が形成されている。引き上げ筒31の外周面には、径方向の外側に向けて突出するとともに周方向に延びる環状または円弧状の引き上げ突起31aが形成されている。引き上げ突起31aは、塗布栓9の先端部26の被係合部26aにアンダーカット嵌合されており、キャップ体10の、口部3および計量筒部材7に対する上昇移動に伴い、塗布栓9が引き上げられて塗布位置から計量位置に移動する。 On the top wall of the cap body 10, a pull-up cylinder 31 is formed so as to project downward and the lower end thereof is detachably fitted in the tip portion 26 of the coating plug 9 located at the coating position. .. An annular or arcuate pulling protrusion 31a is formed on the outer peripheral surface of the pulling cylinder 31 so as to project outward in the radial direction and extend in the circumferential direction. The pull-up protrusion 31a is undercut fitted to the engaged portion 26a of the tip portion 26 of the coating plug 9, and the coating plug 9 is moved as the cap body 10 moves upward with respect to the mouth portion 3 and the measuring cylinder member 7. It is pulled up and moves from the coating position to the weighing position.

ここで、キャップ体10の引き上げ突起31aが、塗布栓9の被係合部26aから外れるときには、計量位置に位置する塗布栓9のストッパー段部24cが、計量筒部材7における吐出孔8の開口周縁部にその下側から当接することで、塗布栓9がそれ以上に上側に向けて移動することが規制された状態となる。したがって、キャップ体10の引き上げ突起31aが、塗布栓9の被係合部26aから外れる際、塗布栓9には下方に向けた弾性反発力が生ずることとなる。
しかしながら、前述したように、塗布栓9の第1係合突部24aが、計量筒部材7の第2係合突部8aに、第1係合突部24aの下側から係合しているので、塗布栓9の計量位置から下方に向けた移動を規制することができる。
Here, when the pulling protrusion 31a of the cap body 10 is disengaged from the engaged portion 26a of the coating plug 9, the stopper step portion 24c of the coating plug 9 located at the measuring position opens the discharge hole 8 in the measuring cylinder member 7. By contacting the peripheral edge portion from the lower side, the coating plug 9 is restricted from moving further upward. Therefore, when the pulling protrusion 31a of the cap body 10 is disengaged from the engaged portion 26a of the coating plug 9, the coating plug 9 is subjected to an elastic repulsive force downward.
However, as described above, the first engaging protrusion 24a of the coating plug 9 is engaged with the second engaging protrusion 8a of the measuring cylinder member 7 from the lower side of the first engaging protrusion 24a. Therefore, it is possible to restrict the downward movement of the coating plug 9 from the weighing position.

キャップ体10の天壁には、下方に向けて突出し、計量筒部材7の頂部19に着脱自在に外嵌された外嵌筒28が形成されている。
キャップ体10は、計量筒部材7の頂部19にその上方から当接する当接部27を備える。当接部27は、キャップ体10の天壁から下方に向けて突出している。当接部27は、キャップ体10の天壁において、外嵌筒28の内側に位置する部分に配置されている。当接部27は、周方向に間隔をあけて複数配置され、外嵌筒28の内周面と一体に形成されている。当接部27の下端縁は、外嵌筒28の下端開口縁より上方に位置している。当接部27の下端縁が、計量筒部材7の頂部19の上端開口縁に当接している。なお、当接部27は環状に形成されてもよい。
The top wall of the cap body 10 is formed with an outer fitting cylinder 28 that protrudes downward and is detachably fitted to the top 19 of the measuring cylinder member 7.
The cap body 10 includes a contact portion 27 that abuts on the top portion 19 of the measuring cylinder member 7 from above. The contact portion 27 projects downward from the top wall of the cap body 10. The contact portion 27 is arranged on the top wall of the cap body 10 at a portion located inside the outer fitting cylinder 28. A plurality of abutting portions 27 are arranged at intervals in the circumferential direction, and are integrally formed with the inner peripheral surface of the outer fitting cylinder 28. The lower end edge of the contact portion 27 is located above the lower end opening edge of the outer fitting cylinder 28. The lower end edge of the contact portion 27 is in contact with the upper end opening edge of the top portion 19 of the measuring cylinder member 7. The contact portion 27 may be formed in an annular shape.

キャップ体10の周壁の下端部の内周面には、周方向を向く壁面を備えた段部32が形成されている。キャップ体10が容器本体2の口部3に装着された状態において、段部32は、容器本体2の回り止めリブ3bに周方向から当接可能とされている。段部32が回り止めリブ3bに周方向から当接することで、キャップ体10が口部3に過度に締め込まれることが規制される。 A stepped portion 32 having a wall surface facing in the circumferential direction is formed on the inner peripheral surface of the lower end portion of the peripheral wall of the cap body 10. In a state where the cap body 10 is attached to the mouth portion 3 of the container main body 2, the step portion 32 can be brought into contact with the detent rib 3b of the container main body 2 from the circumferential direction. When the step portion 32 comes into contact with the detent rib 3b from the circumferential direction, the cap body 10 is restricted from being excessively tightened to the mouth portion 3.

そして、本実施形態では、容器本体2は、全域にわたって容器外部から内部が視認不能に形成されている。図示の例では、容器本体2は、遮光性を有する樹脂材料で一体に形成されている。なお、容器本体2としては、透明若しくは半透明の樹脂材料等で形成した成形体を、全域にわたって遮光性を有する例えばフィルム若しくは塗膜等の被覆体で覆った構成とする等適宜変更してもよい。 In the present embodiment, the container body 2 is formed so that the inside of the container body 2 cannot be visually recognized from the outside of the container over the entire area. In the illustrated example, the container body 2 is integrally formed of a resin material having a light-shielding property. The container body 2 may be appropriately modified, for example, by covering a molded body made of a transparent or translucent resin material or the like with a covering body such as a film or a coating film having a light-shielding property over the entire area. good.

計量筒部材7のうち計量室6を画成する連結筒部20は、計量室6を容器外部から視認可能な透視部21と、計量室6を容器外部から視認不能な遮光部22と、により構成されている。
透視部21の表面積は遮光部22の表面積より小さい。透視部21は、図3に示されるように、径方向の外側から見て、容器軸O方向に長い長方形状を呈する。透視部21は、連結筒部20の周壁および天壁にわたって配設されている。透視部21は、連結筒部20の周壁における下端部を除く容器軸O方向の全長にわたって配設されている。透視部21は、連結筒部20の天壁における径方向の全長にわたって配設されている。
Of the measuring cylinder members 7, the connecting cylinder portion 20 that defines the measuring chamber 6 is composed of a fluoroscopic portion 21 in which the measuring chamber 6 is visible from the outside of the container and a light-shielding portion 22 in which the measuring chamber 6 is invisible from the outside of the container. It is configured.
The surface area of the fluoroscopic portion 21 is smaller than the surface area of the light-shielding portion 22. As shown in FIG. 3, the fluoroscopic unit 21 exhibits a long rectangular shape in the container axis O direction when viewed from the outside in the radial direction. The fluoroscopic portion 21 is arranged over the peripheral wall and the top wall of the connecting cylinder portion 20. The fluoroscopic portion 21 is arranged over the entire length in the container axis O direction excluding the lower end portion of the peripheral wall of the connecting cylinder portion 20. The fluoroscopic portion 21 is arranged over the entire length in the radial direction on the top wall of the connecting cylinder portion 20.

計量筒部材7のうち、少なくとも連結筒部20は、透明若しくは半透明な材質で形成された透視層23と、遮光性を有する材質で形成されるとともに、透視層23を、その一部を除いて覆う遮光層33と、を備える。前述の透視部21は、透視層23のうち、遮光層33で覆われていない前記一部を備える。透視層23を形成する材質は、無色でも有色でもよい。なお、本明細書でいう半透明とは、内部が視認可能な光透過性を有することを意味する。
図示の例では、遮光層33は、透視層23の外面を覆っている。また、計量筒部材7の全体が、透視層23および遮光層33が積層されてなる積層構造となっている。計量筒部材7の全体が、透視層23および遮光層33により構成された2層構造となっている。
Of the measuring cylinder members 7, at least the connecting cylinder portion 20 is formed of a transparent or semi-transparent transparent material and a light-shielding material, and the transparent layer 23 is removed except for a part thereof. A light-shielding layer 33 for covering the surface is provided. The fluoroscopic unit 21 includes a part of the fluoroscopic layer 23 that is not covered with the light-shielding layer 33. The material forming the transparent layer 23 may be colorless or colored. The term "semi-transparent" as used herein means that the inside has visible light transmission.
In the illustrated example, the light-shielding layer 33 covers the outer surface of the fluoroscopic layer 23. Further, the entire measuring cylinder member 7 has a laminated structure in which the fluoroscopic layer 23 and the light-shielding layer 33 are laminated. The entire measuring cylinder member 7 has a two-layer structure composed of a fluoroscopic layer 23 and a light-shielding layer 33.

遮光層33は、計量筒部材7において、装着筒部18における周壁の外周面、および天壁の上面と、連結筒部20における周壁の外周面、および天壁の上面と、頂部19の外周面および上端開口縁と、を構成している。透視層23は、計量筒部材7において、少なくとも内容物が接触する、吐出孔8の内周面と、連結筒部20における周壁の内周面、および天壁の下面と、を構成している。
透視層23のうち、前記一部は、前記一部を除く部分より、遮光層33の厚さ分だけ厚くなっている。透視層23の前記一部の外面は、遮光層33の外面と面一になっており、連結筒部20における周壁の外周面の一部、および天壁の上面の一部を構成している。透視部21の外面は、遮光部22の外面と面一になっている。
In the measuring cylinder member 7, the light-shielding layer 33 includes an outer peripheral surface of the peripheral wall of the mounting cylinder portion 18, an upper surface of the top wall, an outer peripheral surface of the peripheral wall of the connecting cylinder portion 20, an upper surface of the top wall, and an outer peripheral surface of the top portion 19. And the upper end opening edge. The fluoroscopic layer 23 constitutes, in the measuring cylinder member 7, at least the inner peripheral surface of the discharge hole 8 to which the contents come into contact, the inner peripheral surface of the peripheral wall of the connecting cylinder portion 20, and the lower surface of the top wall. ..
The part of the fluoroscopic layer 23 is thicker than the part excluding the part by the thickness of the light-shielding layer 33. The outer surface of the part of the fluoroscopic layer 23 is flush with the outer surface of the light-shielding layer 33, and constitutes a part of the outer peripheral surface of the peripheral wall of the connecting cylinder portion 20 and a part of the upper surface of the top wall. .. The outer surface of the fluoroscopic portion 21 is flush with the outer surface of the light-shielding portion 22.

計量筒部材7は、例えば、透視層23および遮光層33のうちのいずれか一方をインサート品として、いずれか他方を射出成形する、いわゆるインサート成形、若しくは2色成形等により形成される。
なお、これに代えて例えば、遮光層33を、透視層23の外面に遮光性を有する材料を塗布することで形成してもよく、また、遮光層33は、透視層23の外面に貼着したフィルムであってもよく、また、透視層23および遮光層33を別部材として、遮光層33の内側に透視層23を嵌合してもよい。
透視層23および遮光層33は、互いに異なる材質で形成されてもよく、また、主剤が同じで、含有する顔料の種類若しくは量等が異なる材料で形成されてもよい。
The measuring cylinder member 7 is formed, for example, by so-called insert molding, two-color molding, or the like, in which one of the fluoroscopic layer 23 and the light-shielding layer 33 is used as an insert product and the other is injection-molded.
Instead of this, for example, the light-shielding layer 33 may be formed by applying a material having a light-shielding property to the outer surface of the transparent layer 23, and the light-shielding layer 33 may be attached to the outer surface of the transparent layer 23. The film may be formed, or the fluoroscopic layer 23 may be fitted inside the light-shielding layer 33 with the fluoroscopic layer 23 and the light-shielding layer 33 as separate members.
The fluoroscopic layer 23 and the light-shielding layer 33 may be formed of different materials from each other, or may be formed of materials having the same main agent but different types or amounts of pigments contained therein.

塗布容器1は、中栓部材4、計量筒部材7、および塗布栓9が組み立てられてなる計量塗布具を、内容物の充填された容器本体2の口部3に装着した後に、キャップ体10を口部3に螺着することで形成される。 The coating container 1 has a cap body 10 after the measuring applicator in which the inner plug member 4, the measuring cylinder member 7, and the coating plug 9 are assembled is attached to the mouth portion 3 of the container body 2 filled with the contents. Is formed by screwing to the mouth portion 3.

以下、本実施形態の塗布容器1の作用について説明する。 Hereinafter, the operation of the coating container 1 of the present embodiment will be described.

図2に示すように、塗布容器1の使用前では、塗布栓9のシール筒24の下端部がシリンダ筒12の周壁の内側に嵌合して、計量室6と連通孔5との連通が遮断されている。
容器本体2内の内容物を被塗布部Sに塗布するには、まず、キャップ体10を上側へ移動させて容器本体2の口部3から離脱させ、吐出孔8および塗布栓9の先端部26を容器外部に露出させる。ここで、キャップ体10が離脱される際には、引き上げ筒31の引き上げ突起31aと、塗布栓9の先端部26の被係合部26aと、が互いに容器軸O方向に係合することで、キャップ体10により塗布栓9が引き上げられて計量位置に移動する。この際、口部3の雄ねじ部、およびキャップ体10の雌ねじ部は、二条ねじであるため、一条ねじである構成と比較して、ねじのリードが大きくなる。このため、キャップ体10の周方向の回転量に対する容器軸O方向の変位量を大きくすることができる。これにより、塗布栓9を速やかに上側に移動させることができるとともに、キャップ体10を容器本体2の口部3から速やかに離脱させることができる。
As shown in FIG. 2, before using the coating container 1, the lower end of the sealing cylinder 24 of the coating plug 9 fits inside the peripheral wall of the cylinder cylinder 12, and the measuring chamber 6 and the communication hole 5 communicate with each other. It is blocked.
In order to apply the contents in the container body 2 to the coated portion S, first, the cap body 10 is moved upward to be separated from the mouth portion 3 of the container body 2, and the tip portions of the discharge hole 8 and the coating plug 9 are applied. 26 is exposed to the outside of the container. Here, when the cap body 10 is disengaged, the pulling protrusion 31a of the pulling cylinder 31 and the engaged portion 26a of the tip portion 26 of the coating plug 9 engage with each other in the container shaft O direction. , The coating plug 9 is pulled up by the cap body 10 and moved to the weighing position. At this time, since the male threaded portion of the mouth portion 3 and the female threaded portion of the cap body 10 are double-threaded threads, the lead of the screw is larger than that of the single-threaded thread. Therefore, the amount of displacement in the container axis O direction with respect to the amount of rotation of the cap body 10 in the circumferential direction can be increased. As a result, the coating stopper 9 can be quickly moved upward, and the cap body 10 can be quickly detached from the mouth portion 3 of the container body 2.

図4に示すように、塗布栓9が計量位置へ移動させられると、塗布栓9のシール筒24の上部が吐出孔8の内側に嵌合し、塗布栓9のストッパー段部24cが計量筒部材7の連結筒部20の天壁(吐出孔8の開口周縁部)に当接し、また、塗布栓9の第1係合突部24aが、計量筒部材7の第2係合突部8aを上方に乗り越え、第1係合突部24aが、第2係合突部8aに第1係合突部24aの下側から係合する。この際、吐出孔8と計量室6との連通が遮断されている。この状態から、さらに容器本体2の口部3に対してキャップ体10が上側へ移動することで、キャップ体10の引き上げ筒31の引き上げ突起31aが、塗布栓9の先端部26の被係合部26aを上方に乗り越えて、キャップ体10が容器本体2および塗布栓9から取り外される。 As shown in FIG. 4, when the coating plug 9 is moved to the measuring position, the upper part of the seal cylinder 24 of the coating plug 9 fits inside the discharge hole 8, and the stopper step portion 24c of the coating plug 9 is the measuring cylinder. The first engaging protrusion 24a of the coating plug 9 abuts on the top wall (opening peripheral edge of the discharge hole 8) of the connecting cylinder portion 20 of the member 7, and the second engaging protrusion 8a of the measuring cylinder member 7 The first engaging protrusion 24a engages with the second engaging protrusion 8a from below the first engaging protrusion 24a. At this time, the communication between the discharge hole 8 and the measuring chamber 6 is cut off. From this state, the cap body 10 is further moved upward with respect to the mouth portion 3 of the container body 2, so that the pulling protrusion 31a of the pulling cylinder 31 of the cap body 10 is engaged with the tip portion 26 of the coating plug 9. The cap body 10 is removed from the container body 2 and the coating plug 9 by overcoming the portion 26a upward.

次いで、塗布栓9が計量位置に位置した状態で、塗布容器1を倒立姿勢にすることで、容器本体2内の内容物を連通孔5を通して計量室6内に流入させる。この際、塗布栓9により吐出孔8と計量室6との連通が遮断されているので、計量室6に所定量の内容物が計量される。
次いで、図5に示すように、計量位置に位置する塗布栓9の先端部26を、被塗布部Sに押し付けると、塗布栓9は、塗布位置に向けて移動する。この過程において、塗布栓9の外周面と吐出孔8の内周面との間の隙間を容器外部に開口させるとともに、外挿筒25を中栓部材4の規制部11bに突き当て、また、シール筒24の下端部をシリンダ筒12の周壁の内側に嵌合させる。
これにより、塗布容器1は、計量室6と連通孔5との連通が遮断されるとともに、吐出孔8と計量室6とが連通し、吐出孔8の内周面と塗布栓9の先端部26の外周面との間の隙間を通して内容物を被塗布部Sに塗布することができる。
Next, with the coating plug 9 positioned at the measuring position, the coating container 1 is placed in an inverted position so that the contents in the container body 2 flow into the measuring chamber 6 through the communication hole 5. At this time, since the communication between the discharge hole 8 and the measuring chamber 6 is blocked by the coating plug 9, a predetermined amount of contents are weighed in the measuring chamber 6.
Next, as shown in FIG. 5, when the tip portion 26 of the coating plug 9 located at the measuring position is pressed against the coated portion S, the coating plug 9 moves toward the coating position. In this process, a gap between the outer peripheral surface of the coating plug 9 and the inner peripheral surface of the discharge hole 8 is opened to the outside of the container, and the extrapolation cylinder 25 is abutted against the regulating portion 11b of the inner plug member 4 and also. The lower end of the seal cylinder 24 is fitted inside the peripheral wall of the cylinder cylinder 12.
As a result, in the coating container 1, the communication between the measuring chamber 6 and the communication hole 5 is cut off, the discharge hole 8 and the measuring chamber 6 communicate with each other, and the inner peripheral surface of the discharge hole 8 and the tip portion of the coating plug 9 are communicated with each other. The contents can be applied to the portion S to be coated through the gap between the outer peripheral surface of 26 and the outer peripheral surface of 26.

そして使用後(塗布後)は、キャップ体10の引き上げ筒31の下端部を、塗布栓9の先端部26内に嵌合させつつ、引き上げ筒31の引き上げ突起31aを、先端部26の被係合部26aに被係合部26aの上方から当接させた状態で、キャップ体10の雌ねじ部を容器本体2の口部3の雄ねじ部に螺合することによって、引き上げ突起31aを、被係合部26aを下方に乗り越えさせるとともに、キャップ体10を容器本体2の口部3に装着する。 After use (after coating), the lower end of the pulling cylinder 31 of the cap body 10 is fitted into the tip portion 26 of the coating plug 9, and the pulling protrusion 31a of the pulling cylinder 31 is engaged with the tip portion 26. The pull-up protrusion 31a is engaged by screwing the female threaded portion of the cap body 10 into the male threaded portion of the mouth portion 3 of the container body 2 in a state where the cap body 10 is in contact with the mating portion 26a from above the engaged portion 26a. The joint portion 26a is made to ride downward, and the cap body 10 is attached to the mouth portion 3 of the container body 2.

以上説明したように、本実施形態による塗布容器1によれば、計量筒部材7のうち、計量室6を画成する連結筒部20が透視部21を備えるので、計量室6の内容物を被塗布部Sに塗布する際に、透視部21を通して計量室6の内容物の残量を確認することが可能になり、例えば計量した内容物を確実に使い切ることができる等、優れた取り扱い性を具備させることができる。
しかも、連結筒部20が、透視部21だけでなく遮光部22も備えているので、連結筒部20の全体が透視部21で構成されている場合と比べて、容器本体2から計量室6に流入した内容物に光が当たるのを抑制することができる。
また、計量筒部材7のうち計量室6を画成する連結筒部20が、積層された透視層23および遮光層33を備えるので、例えば、透視層23および遮光層33が、厚さ方向に直交する方向に並べられた構成と比べて、計量筒部材7を容易かつ精度よく形成することができる。
As described above, according to the coating container 1 according to the present embodiment, among the measuring cylinder members 7, the connecting cylinder portion 20 defining the measuring chamber 6 includes the fluoroscopic portion 21, so that the contents of the measuring chamber 6 can be used. When applying to the part to be coated S, it becomes possible to check the remaining amount of the contents of the measuring chamber 6 through the fluoroscopic part 21, and for example, the measured contents can be surely used up, and the excellent handleability is achieved. Can be provided.
Moreover, since the connecting cylinder portion 20 includes not only the see-through portion 21 but also the light-shielding portion 22, the container body 2 to the measuring chamber 6 are compared with the case where the entire connecting cylinder portion 20 is composed of the see-through portion 21. It is possible to prevent the contents flowing into the container from being exposed to light.
Further, since the connecting cylinder portion 20 that defines the measuring chamber 6 of the measuring cylinder member 7 includes the laminated transparent layer 23 and the light-shielding layer 33, for example, the transparent layer 23 and the light-shielding layer 33 are in the thickness direction. Compared with the configuration in which the measuring cylinder members 7 are arranged in the orthogonal directions, the measuring cylinder member 7 can be formed easily and accurately.

なお、本発明の技術的範囲は前記実施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 technical scope of 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.

例えば、塗布栓9の少なくとも一部を軟材質等で形成することで、塗布栓9の塗布感触を、刺激が少なく快適で心地よい感触にすることも可能である。
また、前記実施形態では、計量筒部材7として、遮光層33が透視層23の外面を覆う構成を示したが、遮光層33が透視層23の内面を覆う構成を採用してもよい。
また、前記実施形態では、計量筒部材7として、透視層23および遮光層33を有する2層構造を示したが、例えば、透視層23および遮光層33が、厚さ方向に直交する方向に並べられてなる1層構造、または3層以上の多層構造としてもよい。後者の場合、遮光層33は、計量室6の内周面を構成する最内層、計量筒部材7の外面を構成する最外層、若しくは最内層と最外層との間の中間層に配設してもよい。
また、前記実施形態では、計量筒部材7の全体が、透視層23および遮光層33が積層されてなる積層構造とされた構成を示したが、計量筒部材7のうち連結筒部20のみがこのような積層構造とされた構成を採用してもよい。
For example, by forming at least a part of the coating plug 9 with a soft material or the like, it is possible to make the coating feel of the coating plug 9 comfortable and comfortable with less irritation.
Further, in the above-described embodiment, the light-shielding layer 33 covers the outer surface of the transparent layer 23 as the measuring cylinder member 7, but the light-shielding layer 33 may cover the inner surface of the transparent layer 23.
Further, in the above-described embodiment, the measuring cylinder member 7 has a two-layer structure having a see-through layer 23 and a light-shielding layer 33. For example, the see-through layer 23 and the light-shielding layer 33 are arranged in a direction orthogonal to the thickness direction. It may be a one-layer structure or a multi-layer structure having three or more layers. In the latter case, the light-shielding layer 33 is arranged in the innermost layer constituting the inner peripheral surface of the measuring chamber 6, the outermost layer constituting the outer surface of the measuring cylinder member 7, or the intermediate layer between the innermost layer and the outermost layer. You may.
Further, in the above-described embodiment, the entire measuring cylinder member 7 has a laminated structure in which the fluoroscopic layer 23 and the light-shielding layer 33 are laminated, but only the connecting cylinder portion 20 of the measuring cylinder members 7 is shown. A configuration having such a laminated structure may be adopted.

前記実施形態では、連結筒部20のうちの天壁および周壁の双方に透視部21が配設された構成を示したが、連結筒部20において、天壁および周壁のうちのいずれか一方のみに、透視部21を配設してもよい。
前記実施形態では、透視部21の外面が、遮光部22の外面と面一になっている構成を示したが、透視部21の外面と遮光部22の外面との間に段部が配設されてもよい。
また、中栓部材4のうち、少なくとも一部が容器本体2の上方に位置する主嵌合筒13および外嵌合筒17を、透明若しくは半透明な材質で形成した場合、計量筒部材7の装着筒部18に透視部21を配設してもよい。
In the above embodiment, the fluoroscopic portion 21 is arranged on both the top wall and the peripheral wall of the connecting cylinder portion 20, but in the connecting cylinder portion 20, only one of the top wall and the peripheral wall is provided. In addition, the fluoroscopic unit 21 may be arranged.
In the above embodiment, the outer surface of the see-through portion 21 is flush with the outer surface of the light-shielding portion 22, but a step portion is arranged between the outer surface of the see-through portion 21 and the outer surface of the light-shielding portion 22. May be done.
Further, when the main fitting cylinder 13 and the outer fitting cylinder 17 having at least a part of the inner plug member 4 located above the container main body 2 are made of a transparent or translucent material, the measuring cylinder member 7 The fluoroscopic portion 21 may be arranged on the mounting cylinder portion 18.

その他、本発明の趣旨に逸脱しない範囲で、前記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、前記した変形例を適宜組み合わせてもよい。 In addition, it is appropriately possible to replace the constituent elements in the above-described embodiment with well-known constituent elements without departing from the spirit of the present invention, and the above-mentioned modifications may be appropriately combined.

1 塗布容器
2 容器本体
2a 底部
3 口部
4 中栓部材
5 連通孔
6 計量室
7 計量筒部材
8 吐出孔
9 塗布栓
19 頂部
20 連結筒部(壁部)
21 透視部
22 遮光部
23 透視層
26 先端部
33 遮光層
O 容器軸
S 被塗布部
1 Coating container 2 Container body 2a Bottom 3 Mouth 4 Inner plug member 5 Communication hole 6 Measuring chamber 7 Measuring cylinder member 8 Discharge hole 9 Coating plug 19 Top 20 Connecting cylinder (wall)
21 See-through part 22 Light-shielding part 23 See-through layer 26 Tip part 33 Light-shielding layer O Container shaft S Applied part

Claims (2)

被塗布部に塗布する内容物が収容される有底筒状の容器本体と、
前記容器本体の口部に装着され、前記容器本体内に連通する連通孔が形成された中栓部材と、
前記中栓部材との間に、前記連通孔を通して前記容器本体内に連通する計量室を形成するとともに、頂部に前記計量室に連通する吐出孔が形成された計量筒部材と、
前記計量室に設けられるとともに、先端部が前記吐出孔から前記計量室の外部に突出される塗布栓と、を備え、
前記塗布栓は、
前記吐出孔と前記計量室との連通を遮断し、かつ前記計量室と前記連通孔とを連通させる計量位置と、
前記計量位置よりも容器軸方向に沿う前記容器本体の底部側に位置するとともに、前記計量室と前記連通孔との連通を遮断し、かつ前記吐出孔と前記計量室とを連通させる塗布位置と、の間を容器軸方向に移動自在に配設され、
前記容器本体は、全域にわたって容器外部から内部が視認不能に形成され、
前記計量筒部材のうち前記計量室を画成する壁部は、前記計量室を容器外部から視認可能な透視部と、前記計量室を容器外部から視認不能な遮光部と、により構成されていることを特徴とする塗布容器。
A bottomed cylindrical container body that houses the contents to be applied to the part to be coated,
An inner plug member that is attached to the mouth of the container body and has a communication hole that communicates with the inside of the container body.
A measuring cylinder member having a measuring chamber communicating with the inside of the container body through the communicating hole between the inner plug member and a discharge hole communicating with the measuring chamber at the top.
A coating plug provided in the measuring chamber and having a tip protruding from the discharge hole to the outside of the measuring chamber is provided.
The coating plug is
A measuring position that blocks communication between the discharge hole and the measuring chamber and allows communication between the measuring chamber and the communication hole.
A coating position located on the bottom side of the container body along the container axial direction from the measuring position, blocking communication between the measuring chamber and the communication hole, and communicating the discharge hole and the measuring chamber. , Which is movably arranged in the direction of the container axis,
The inside of the container body is invisible from the outside of the container over the entire area.
The wall portion of the measuring cylinder member that defines the measuring chamber is composed of a fluoroscopic portion in which the measuring chamber can be seen from the outside of the container and a light-shielding portion in which the measuring chamber cannot be seen from the outside of the container. A coating container characterized by that.
前記計量筒部材のうち、少なくとも前記壁部は、
透明若しくは半透明な材質で形成された透視層と、
遮光性を有する材質で形成されるとともに、前記透視層を、その一部を除いて覆う遮光層と、を備え、
前記透視部は、前記透視層の前記一部を備えることを特徴とする請求項1に記載の塗布容器。
Of the measuring cylinder members, at least the wall portion is
A see-through layer made of a transparent or translucent material,
It is formed of a material having a light-shielding property, and is provided with a light-shielding layer that covers the fluoroscopic layer except for a part thereof.
The coating container according to claim 1, wherein the fluoroscopic unit includes the partial portion of the fluoroscopic layer.
JP2018014295A 2018-01-31 2018-01-31 A coating container that weighs and applies the contents Active JP6976185B2 (en)

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JP3759428B2 (en) * 2001-05-21 2006-03-22 キタノ製作株式会社 Metering container
JP2005212851A (en) * 2004-01-30 2005-08-11 Yoshino Kogyosho Co Ltd Container for quantitative coating
JP2009001283A (en) * 2007-06-19 2009-01-08 Koa Glass Kk Decorative container and method for manufacturing decorative container
JP5302247B2 (en) * 2010-03-10 2013-10-02 株式会社ドリーム・ワールド Garden flowerpot
WO2013052627A1 (en) * 2011-10-04 2013-04-11 Church & Dwight Co., Inc. Dispensing/measuring cap/cup
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