JP6004672B2 - Container - Google Patents

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JP6004672B2
JP6004672B2 JP2012048809A JP2012048809A JP6004672B2 JP 6004672 B2 JP6004672 B2 JP 6004672B2 JP 2012048809 A JP2012048809 A JP 2012048809A JP 2012048809 A JP2012048809 A JP 2012048809A JP 6004672 B2 JP6004672 B2 JP 6004672B2
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container
housing portion
spout
housing
exterior
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JP2013184709A (en
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幸夫 石井
幸夫 石井
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Nihon Kim Co Ltd
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Nihon Kim Co Ltd
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Description

本発明は、注出されるべき流動物(例えば、粘性が高い流動物)を収容するための収容体に関する。   The present invention relates to a container for containing a fluid to be dispensed (for example, a fluid having high viscosity).

従来、例えば、特許文献1に開示されているように、印刷用のインキのような粘性が高い流動物(以下、収容物と称する)を収容可能な収容体が知られている。このような収容体は、プリンタのような外部装置の所定位置に装填されるようになっており、収容物は、外部装置に設けられた吸引機構によって注出されて所定の位置に供給される。具体的に、特許文献1に開示された収容体は、薄膜状の樹脂フィルムによって袋状に形成された容器本体と、この容器本体の内部に封入され、容器本体を箱型に保形すると共に、容器本体から突出する注出口を有する支持部材とを備えた構成となっている。   2. Description of the Related Art Conventionally, as disclosed in, for example, Patent Document 1, a container that can store a fluid (hereinafter referred to as a container) having a high viscosity such as printing ink is known. Such a container is loaded in a predetermined position of an external device such as a printer, and the container is poured out by a suction mechanism provided in the external device and supplied to the predetermined position. . Specifically, the container disclosed in Patent Document 1 includes a container body formed in a bag shape with a thin-film resin film, and enclosed in the container body, and the container body is shaped like a box. And a support member having a spout protruding from the container main body.

そして、上記した構成において、注出口からポンプなどで吸引を行うと、薄膜状の樹脂フィルムは、収容物の流出に伴って支持部材の内部へまくれかえるように反転し、収容物が注出し終わると、樹脂フィルムは、支持部材の内部に入り込んだ状態に変化する。   In the configuration described above, when suction is performed from the spout with a pump or the like, the thin film-like resin film is inverted so as to be turned back into the support member with the outflow of the contents, and the contents are completely poured out. Then, the resin film changes into a state of entering the inside of the support member.

ところで、上記した収容体は、支持部材の表面と容器本体が広く密着する構造であることから、容器本体に皺が入る等、両者の密着性が不十分となり易く、これにより、吸引時に、両者の隙間(支持部材の外面側)に収容物が残留してしまい、収容物に無駄が生じる可能性がある。また、樹脂フィルムによって形成される容器本体については、保形性を考慮して箱型となる構造(有底構造)となっているが、このような形状では、吸引時に支持部材の内部に入り込んでも、最終的に支持部材の内面との密着性に劣ってしまい、この結果、支持部材の内面側においても収容物が残留し易くなってしまう。   By the way, since the above-mentioned container has a structure in which the surface of the support member and the container main body are in close contact with each other, the adhesiveness between the two tends to be insufficient, for example, wrinkles enter the container main body. There is a possibility that the stored matter remains in the gap (the outer surface side of the support member) and waste is generated in the stored item. In addition, the container body formed of a resin film has a box-shaped structure (bottomed structure) in consideration of shape retention, but in such a shape, it enters the inside of the support member during suction. However, the adhesiveness with the inner surface of the support member is ultimately inferior, and as a result, the contents are likely to remain on the inner surface side of the support member.

そこで、このような吸引作用によって収容物を注出する際、収容物を無駄なく注出できるように、本出願人は、容器本体の形状を注出方向に沿って変化させた構造を提案している(特許文献2参照)。   In view of this, the present applicant has proposed a structure in which the shape of the container body is changed along the dispensing direction so that the contained items can be poured out without waste when the contained items are poured out by such a suction action. (See Patent Document 2).

特開2001−199455号JP 2001-199455 A 特許第4885265号Patent No. 4885265

上記した構成の収容体は、いずれも、収容物を収容する収容部(容器)の少なくとも一部が収容物の注出に伴って変形し得る軟質な素材から成るため、収容体を出荷等のために輸送、搬送する場合などにおいては、衝撃等によって前記軟質な収容部が損傷する可能性がある。これは、従来のこの種の収容体では、収容物を収容する軟質な収容部の破損に対する保護が何ら考慮されていないからであり、前記収容部の破損に対する何らかの保護的措置が早急に望まれる。   In any of the containers having the above-described configuration, since at least a part of the container (container) that stores the container is made of a soft material that can be deformed as the container is dispensed, Therefore, in the case of transporting and transporting, the soft accommodating portion may be damaged by an impact or the like. This is because the conventional container of this type does not consider any protection against breakage of the soft housing portion that accommodates the object, and some protective measures against the breakage of the housing portion are urgently desired. .

本発明は、上記した問題に着目してなされたものであり、収容物を無駄なく注出できると共に、収容物を収容する軟質な収容部を衝撃から保護できる収容体を提供することを目的とする。   The present invention has been made paying attention to the above-described problems, and an object thereof is to provide a container that can pour out stored items without waste and can protect a soft storage portion that stores the stored items from impact. To do.

上記した目的を達成するために、本発明に係る収容体は、一端側の中央領域に収容物を注出可能な注出口を具備するとともに、他端側に円形開口を具備し、前記一端側に向けて断面が円形状から楕円形状に変化する樹脂成型された筒状の第1の収容部と、前記第1の収容部の前記円形開口に沿って溶着され、前記注出口からの収容物の注出時に前記第1の収容部内に入り込んでその内面に密着可能な薄膜フィルムによって非自立体となる袋状に形成された第2の収容部と、前記第1の収容部の前記円形開口に沿って止着され、前記第2の収容部の外側を全体的に覆うとともに、前記第2の収容部との間に、前記第2の収容部を衝撃から保護する緩衝層を形成する外装部と、を有し、前記外装部には、外気により前記収容物を前記注出口から押し出し可能とする注入口が形成されており、前記外装部は袋状のフィルムで構成され、前記第2の収容部との間に形成された前記緩衝層は空気層であって、前記第2の収容部は全ての方向において前記緩衝層及び前記外装部を介して収容体の外部と接していることを特徴とする。 In order to achieve the above-described object, a container according to the present invention includes a spout capable of pouring a stored material in a central region on one end side, a circular opening on the other end side, and the one end side A cylindrically-shaped first housing part whose cross section changes from a circular shape to an elliptical shape toward the surface, and a material to be welded along the circular opening of the first housing part, A second storage part formed into a bag shape that is non-self-solid with a thin film that enters into the first storage part and adheres closely to the inner surface of the first storage part, and the circular opening of the first storage part And a buffer layer that covers the entire outside of the second housing portion and protects the second housing portion from impacts between the second housing portion and the second housing portion. It includes a part, wherein the exterior portion, press the receiving material from the spout by the outside air Inlet to allow out is formed, the outer portion is constituted by a bag-like film, the buffer layer formed between the second housing part is an air layer, the second The housing portion is in contact with the outside of the housing body through the buffer layer and the exterior portion in all directions .

上記した構成によれば、薄膜フィルムによって非自立体となる袋状に形成された軟質な第2の収容部は、その外側が外装部による緩衝層で保護されることから、輸送中や搬送中など、第2の収容部の破損、損傷を防止することができる。また、収容物の注出は、外装部に形成されている注入口から外気(例えば、空気、ガス等の気体)を外装部内に注入することで、袋状に形成された第2の収容部は、その圧力によって第1の収容部内に入り込み、収容物は、第1の収容部に形成された注出口から取り出すことが可能となる。この場合、第2の収容部は、非自立体として構成されていることから、第1の収容部の円形開口に沿って溶着されると、その断面形状は、溶着部では円形状になるものの、溶着部から離間するにしたがい、断面は楕円形状に変化する。このような形状を考慮して、第1の収容部は、溶着部から注出口側に向けて断面を円形状から楕円形状に形状変化させているため、外気を注入して第2の収容部が第1の収容部内に入り込むと、その内面に密着するようになり、第2の収容部には、しわ等が生じることなく、収容物を効率良く注出することが可能となる。   According to the above-described configuration, the soft second accommodating portion formed in a bag shape that is non-self-solid with the thin film is protected on the outside by the buffer layer by the exterior portion, so that it is being transported or transported. For example, breakage and damage of the second housing portion can be prevented. In addition, the container is poured out by injecting outside air (for example, gas such as air or gas) from the inlet formed in the exterior part into the exterior part, thereby forming the second accommodation part formed in a bag shape. Enters the first accommodating portion by the pressure, and the contents can be taken out from the spout formed in the first accommodating portion. In this case, since the second accommodating portion is configured as a non-self-solid, when the welded portion is welded along the circular opening of the first accommodating portion, the cross-sectional shape is circular at the welded portion. As the distance from the welded portion increases, the cross section changes to an elliptical shape. In consideration of such a shape, the first storage portion has a cross-sectional shape changed from a circular shape to an elliptical shape from the welded portion toward the spout side. When it enters the first housing portion, it comes into close contact with the inner surface thereof, and the second housing portion can be efficiently poured out without wrinkles or the like.

また、第1の収容部は、第2の収容部との溶着部分が円形状に構成されているため、収容物を押し出し注出する際、つぶれ等が生じることもなく、さらに、第1の収容部は、その基本的な形状が断面円形から断面楕円形状に変化する構成であり、内面全体が湾曲面として構成されるため、収容物の押し出し注出時に収容物が残留し難くなる。   Moreover, since the welding part with the 2nd accommodating part is comprised circularly by the 1st accommodating part, when extruding and pouring a thing, a crush etc. do not arise, and also 1st The storage portion has a configuration in which the basic shape changes from a circular cross-section to an elliptical cross-section, and the entire inner surface is configured as a curved surface, so that it is difficult for the storage to remain when the stored item is pushed out.

なお、上記した構成において、前記外装部は、袋状のフィルムで構成し、前記第2の収容部との間に空気層(緩衝層)を形成したものとして構成しても良い。
或いは、前記外装部は、前記第2の収容部を覆うように、緩衝層となる合成樹脂の成型品で構成しても良い。
In the above-described configuration, the exterior portion may be configured as a bag-shaped film and an air layer (buffer layer) may be formed between the exterior portion and the second storage portion.
Or you may comprise the said exterior part by the molded article of the synthetic resin used as a buffer layer so that the said 2nd accommodating part may be covered.

本発明の収容体によれば、収容物を無駄なく注出できると共に、収容物を収容する軟質な収容部を衝撃から保護できる収容体が得られる。   According to the container of the present invention, it is possible to obtain a container that can pour out the stored material without waste and can protect the soft storage portion that stores the stored material from impact.

本発明に係る収容体の一実施形態を示す斜視図。The perspective view which shows one Embodiment of the container which concerns on this invention. (a)は一部断面を含む収容体の側面図、(b)は(a)のX部の部分拡大断面図。(A) is a side view of a container including a partial cross-section, and (b) is a partial enlarged cross-sectional view of a portion X in (a). (a)は外装部を除去した状態の収容体の正面図、(b)は外装部を除去した状態の収容体の側面図。(A) is a front view of the container in a state where the exterior part is removed, and (b) is a side view of the container in a state where the exterior part is removed. (a)は図3(a)のA−A線に沿った断面図、(b)は図3(b)のB−B線に沿った断面図、(c)は図3(b)のC−C線に沿った断面図。3A is a cross-sectional view taken along the line AA in FIG. 3A, FIG. 3B is a cross-sectional view taken along the line BB in FIG. 3B, and FIG. Sectional drawing along CC line. 図1に示す収容体において、緩衝層内に空気を充填した状態を模式的に示す図。The figure which shows typically the state which filled the buffer layer with the air in the container shown in FIG. (a)〜(f)は、図1に示す収容体に高粘性の収容物を収容し、注出口から押圧注出した際の第2の収容部の変形状態を順に示す図。(A)-(f) is a figure which shows the deformation | transformation state of the 2nd accommodating part at the time of accommodating a highly viscous accommodation thing in the container shown in FIG. 1, and pressing out from a spout.

図1〜図4は、本発明に係る収容体の一実施形態を示す図であり、図1は収容体の斜視図、図2(a)は一部断面を含む収容体の側面図、図2(b)は図2(a)のX部の部分拡大断面図、図3(a)は外装部を除去した状態の収容体の正面図、図3(b)は外装部を除去した状態の収容体の側面図、図4(a)は図3(a)のA−A線に沿った断面図、図4(b)は図3(b)のB−B線に沿った断面図、そして、図4(c)は図3(b)のC−C線に沿った断面図である。   1-4 is a figure which shows one Embodiment of the container which concerns on this invention, FIG. 1 is a perspective view of a container, FIG. 2 (a) is a side view of a container including a partial cross section, FIG. 2 (b) is a partially enlarged sectional view of the portion X in FIG. 2 (a), FIG. 3 (a) is a front view of the container with the exterior part removed, and FIG. 3 (b) is a state with the exterior part removed. 4A is a cross-sectional view taken along the line AA in FIG. 3A, and FIG. 4B is a cross-sectional view taken along the line BB in FIG. 3B. FIG. 4C is a cross-sectional view taken along the line CC of FIG.

本実施形態に係る収容体1は、インクなど粘性の高い流動物(以下、収容物と称する)が収容されるようになっており、後述するように、断面形状が、円形(溶着部側)から楕円形(注出口側)に変化する筒状の第1の収容部2と、この筒状の第1の収容部2の下方の円形開口2fの全周に沿って溶着される袋状の第2の収容部3と、第1の収容部2の下方の円形開口2fの全周に沿って溶着(止着)されると共に、第2の収容部3の外側全てを覆うように配設される袋状の外装部7と、を備えている。この場合、外装部7の下端部には、内部に外気(空気、ガス等)を注入できるように注入口7aが形成されている。   The container 1 according to the present embodiment is configured to store a fluid with high viscosity such as ink (hereinafter referred to as a container), and has a circular cross section (welded portion side) as described later. A cylindrical first accommodating portion 2 that changes from an elliptical shape to a spout shape (a spout side), and a bag-like shape welded along the entire circumference of a circular opening 2 f below the cylindrical first accommodating portion 2. The second accommodating portion 3 is welded (fixed) along the entire circumference of the circular opening 2 f below the first accommodating portion 2, and is disposed so as to cover the entire outside of the second accommodating portion 3. The bag-shaped exterior part 7 is provided. In this case, an inlet 7 a is formed at the lower end of the exterior portion 7 so that outside air (air, gas, etc.) can be injected therein.

第1の収容部2には、一端側の中心軸上に、収容物を注出可能な注出口2aが形成されている。本実施形態では、注出口2aは、ネジ付きの口栓によって構成されており、図示しないキャップ(封止部材)を着脱することで、収容物を封止、注出できるようになっている。すなわち、収容体1を実際に使用する際には、前記封止部材を取り外した状態で外部装置の所定箇所に装填し、後述するように、注入される外気の押圧力によって収容物が注出される。なお、注出口2aは、収容物を注出するだけではなく、最初に収容物を充填する充填口としての機能を兼ね備えていても良い。   The first accommodating portion 2 is formed with a spout 2a on the central axis on one end side through which the contents can be poured out. In the present embodiment, the spout 2a is constituted by a screw cap, and the contents can be sealed and poured out by detaching a cap (sealing member) (not shown). That is, when the container 1 is actually used, the container 1 is loaded in a predetermined location of the external device with the sealing member removed, and the contents are poured out by the pressing force of the injected outside air as will be described later. It is. In addition, the spout 2a may not only pour out the contents, but may also have a function as a filling port for filling the contents first.

第1の収容部2は、例えば、ポリエチレン、ポリスチレン、ポリプロピレン、ポリ塩化ビニール等のプラスチック材料によって一体成型(ブロー成型、インジェクション成型など)されており、低コストで製造可能な製法、及び素材によって構成されている。また、その肉厚については、注出時において、袋状の第2の収容部3が内部に反転して押し出されても、その形状が維持される程度(例えば、0.8mm〜2.0mm程度)あれば良い。   The 1st accommodating part 2 is integrally molded (blow molding, injection molding, etc.) by plastic materials, such as polyethylene, polystyrene, a polypropylene, a polyvinyl chloride, for example, and is comprised with the manufacturing method and material which can be manufactured at low cost. Has been. Moreover, about the thickness, even if the bag-shaped 2nd accommodating part 3 is reversed and extruded inside at the time of pouring, the shape is maintained (for example, 0.8 mm-2.0 mm) About)

また、第1の収容部2の外形状に関しては、袋状の第2の収容部3との溶着部2dから注出口2a側に向けて、断面が円形状から楕円形状に形状変化している。これは、後述するように、外装部7内に、注入口7aから外気を注入して収容物を注出口2aから注出する際、第1の収容部2内に入り込む(押し出される)第2の収容部3の断面形状と対応させるためである。すなわち、袋状の第2の収容部3は、後述するように、容易に製造される非自立体(側部、及び底部の三方が溶着された状態)として構成されていることから、第1の収容部2の円形開口2fに沿って溶着されると、その断面形状は、溶着部2dでは円形状になるものの、溶着部から離間するにしたがい、断面は楕円形状に変化するためである。   Moreover, regarding the outer shape of the first housing portion 2, the cross section changes from a circular shape to an elliptical shape from the welded portion 2d with the bag-like second housing portion 3 toward the spout 2a side. . As will be described later, this is because, when the outside air is injected into the exterior portion 7 from the inlet 7a and the stored item is discharged from the spout 2a, the second portion enters (is pushed out) into the first storage portion 2. It is for making it respond | correspond with the cross-sectional shape of the accommodating part 3. That is, since the bag-like second accommodating portion 3 is configured as a non-self-solid body (a state in which the three sides of the side portion and the bottom portion are welded) that is easily manufactured, as described later, the first This is because, when welded along the circular opening 2f of the housing portion 2, the cross-sectional shape becomes circular at the welded portion 2d, but the cross-section changes to an elliptical shape as the distance from the welded portion increases.

これにより、袋状の第2の収容部3は、注入外気による押圧作用によって筒状の第1の収容部2内に反転して入り込んだ際、しわ等が生じることなく第1の収容部2の内面に密着し、注出口2aから収容物を効率良く注出することが可能となる。この場合、形状の変化については、特に限定されないが、円形から楕円形に急激に変化させるよりも、連続的に緩やかに形状変化させることが好ましい。すなわち、両者の間に大きな段差が形成されない構成であることが好ましい。   Thereby, when the bag-like second accommodating portion 3 is reversed and enters into the cylindrical first accommodating portion 2 by the pressing action by the injected outside air, the first accommodating portion 2 does not cause wrinkles or the like. It becomes possible to pour out the contents efficiently from the spout 2a. In this case, the shape change is not particularly limited, but it is preferable to change the shape gradually and gradually rather than abruptly changing from a circle to an ellipse. That is, it is preferable that a large step is not formed between the two.

また、第1の収容部2の形状については、特に限定されることはないが、本実施形態では、図1及び図3に示すように、収容物が効果的に注出できるように、円周状の側壁の上端側から中心軸上に位置する注出口2aに向けて、次第に縮径する湾曲部2bが形成されている。そして、この湾曲部2bの内面には、注出口2aに向けて延出するように、放射状突部2cを形成しておくことが好ましい。この放射状突部2cは、収容物の注出時において、収容物が効果的に注出口2aに向けて移動できるように流路ガイドを構成するものであり、成型時において一体形成することが可能である。この場合、放射状突部2cの具体的な延出長さ、間隔、高さについては、第1の収容部2の大きさ、収容物の種類(粘性)等に応じて適宜変形することが可能である。このような放射状突部2cを形成すると、注出口2aに向かう流路が確保され易くなって、効率的に収容物を注出することが可能となる。   Further, the shape of the first accommodating portion 2 is not particularly limited, but in the present embodiment, as shown in FIGS. 1 and 3, a circle is used so that the contents can be effectively poured out. A curved portion 2b that gradually decreases in diameter is formed from the upper end side of the circumferential side wall toward the spout 2a located on the central axis. And it is preferable to form the radial protrusion 2c in the inner surface of this curved part 2b so that it may extend toward the spout 2a. The radial protrusions 2c constitute a flow path guide so that the contained material can effectively move toward the spout 2a when the contained material is poured out, and can be integrally formed during molding. It is. In this case, the specific extension length, interval, and height of the radial protrusions 2c can be appropriately modified according to the size of the first storage part 2, the type (viscosity) of the storage object, and the like. It is. When such a radial protrusion 2c is formed, a flow path toward the spout 2a can be easily secured, and the contained material can be efficiently poured out.

なお、上記した筒状の第1の収容部2に形成される湾曲部2bについては、袋状の第2の収容部3に形成される後述する切欠部3d(図3(a)参照)に対応していれば良く、適宜、変形することが可能である。すなわち、注入口7aから注入される外気による押圧作用を受けた際、収容物が、均等に注出口2aに向けて移動できる構成となっていれば、その形状については適宜変形することが可能である。   In addition, about the curved part 2b formed in the above-mentioned cylindrical 1st accommodating part 2, it is in the notch part 3d (refer FIG. 3 (a)) mentioned later formed in the bag-shaped 2nd accommodating part 3. FIG. It only needs to be compatible, and can be appropriately modified. In other words, when the container is configured to be able to move evenly toward the spout 2a when subjected to a pressing action by outside air injected from the inlet 7a, the shape thereof can be appropriately modified. is there.

前述したように、第1の収容部2には、袋状の第2の収容部3の開口端部が溶着されるようになっている。この場合、第1の収容部2は、少なくとも円形開口2fが所定の長さLに亘って同一径に形成されており、袋状の第2の収容部3は、第1の収容部2の同一径となっている領域(所定の長さLの範囲内であり、この範囲内で溶着部2dが構成される)の外周面に溶着されるようになっている。溶着部2dにおける開口2fをこのように円形状に構成すると、後述する収容物の押し出し時に、この領域でのつぶれ等の発生を防止することができる。   As described above, the opening end portion of the bag-like second housing portion 3 is welded to the first housing portion 2. In this case, at least the circular opening 2 f is formed in the same diameter over the predetermined length L in the first housing portion 2, and the bag-like second housing portion 3 is formed of the first housing portion 2. It is welded to the outer peripheral surface of a region having the same diameter (within a predetermined length L and the welded portion 2d is configured within this range). If the opening 2f in the welded portion 2d is configured in such a circular shape, it is possible to prevent occurrence of crushing or the like in this region when pushing out the contents to be described later.

具体的に、溶着部2dは、例えば、5mm〜15mm程度あれば良く、ここに第2の収容部3の開口領域を被せておき、その後、リング状のヒートバー等を用いて熱溶着することで、第1の収容部2に対して第2の収容部3を容易に溶着することが可能となる。   Specifically, the welding portion 2d may be, for example, about 5 mm to 15 mm, and the opening region of the second housing portion 3 is covered here, and then heat welding is performed using a ring-shaped heat bar or the like. The second housing part 3 can be easily welded to the first housing part 2.

また、第1の収容部2には、第2の収容部が溶着される領域に、180度間隔で外方に向けて突出する一対の突起2eが形成されている。このような一対の突起2eを形成しておくことで、上記したように、リング状のヒートバーによって第2の収容部3を溶着する際、溶着部2dに対する未溶着領域をなくすことができ、シール状態を安定化することが可能となる。   Further, the first accommodating portion 2 is formed with a pair of protrusions 2e projecting outward at an interval of 180 degrees in an area where the second accommodating portion is welded. By forming such a pair of protrusions 2e, as described above, when the second housing 3 is welded by the ring-shaped heat bar, an unwelded region with respect to the welded portion 2d can be eliminated, and the seal It becomes possible to stabilize the state.

また、本実施形態の袋状の第2の収容部3は、ポリエチレン、ポリプロピレン、ポリ塩化ビニール等、柔軟性を有する薄膜状のフィルム(厚さが0.05mm〜0.15mm程度の薄膜フィルムで、例えば、シール部層をポリエチレンとした積層フィルム)の周囲を溶着した袋状に構成されたものであり、低コスト化が図れるように、例えば、2枚の薄膜状のフィルムを重ねて周囲を溶着した三方シール袋として構成されている。   In addition, the bag-like second housing part 3 of the present embodiment is a thin film having flexibility (such as a thin film having a thickness of about 0.05 mm to 0.15 mm) such as polyethylene, polypropylene, and polyvinyl chloride. For example, a laminated film having a seal layer made of polyethylene) and is formed in a bag shape around the periphery of the film, so that, for example, two thin film films are stacked around the periphery so that the cost can be reduced. It is configured as a welded three-side seal bag.

また、袋状の第2の収容部3は、第1の収容部2の円形開口2f部分の外周面(溶着部2d)に対して溶着できるように、一端が開口すると共に、他端は平面となる底部が形成されていない構造(非自立体構造)となっており(溶着領域3Aを斜線で示す)、それにより、第1の収容部2の内部に連通する収容物収容空間S1(図2参照)を形成している。また、袋状の第2の収容部3は、溶着部2dとは反対の端部側の隅部が切り欠かれた形状となっている。具体的には、側面の形状が矩形状ではなく、図3(a)に示すように、第1の収容部2の湾曲部2bに対応させて、端部側の隅部を湾曲状に切り欠く(切欠部3dを形成する)ことで、収容内部の底縁3aと横縁3bとの間に、略90度以下となるような角部が生じない形状となっている。そのため、第2の収容部3は、皺が生じた状態で第1の収容部2の内面と密着し難くなり、可能な限り収容物を押し出すことが可能となる。   In addition, the bag-like second accommodating portion 3 is open at one end and is flat at the other end so that it can be welded to the outer peripheral surface (welded portion 2d) of the circular opening 2f portion of the first accommodating portion 2. The bottom portion is not formed (non-self-solid structure) (the welding region 3A is indicated by slanting lines), and thereby, the accommodation object accommodation space S1 communicating with the inside of the first accommodation portion 2 (FIG. 2). Further, the bag-like second accommodating portion 3 has a shape in which a corner on the end side opposite to the welded portion 2d is cut out. Specifically, the shape of the side surface is not rectangular, but as shown in FIG. 3A, the corner on the end side is cut into a curved shape so as to correspond to the curved portion 2b of the first housing portion 2. By notching (forming the notch portion 3d), a corner portion of approximately 90 degrees or less is not formed between the bottom edge 3a and the lateral edge 3b inside the housing. Therefore, it becomes difficult for the second storage portion 3 to be in close contact with the inner surface of the first storage portion 2 in the state where wrinkles are generated, and the stored object can be pushed out as much as possible.

このように、第2の収容袋3の端部側に切欠部3dを形成しておくことで、収容物が隅部に残存する可能性を低減することが可能となる。   Thus, by forming the notch 3d on the end side of the second storage bag 3, it is possible to reduce the possibility that the stored item remains in the corner.

なお、袋状の第2の収容部3の内容量(容積)については、筒状の第1の収容部2の内容量と同じ(略同じものを含む)に設定しておくことが好ましい。これにより、第2の収容部3が注入外気の作用を受けて、注出口2aから収容物が流出されるのに伴って、第2の収容部3が第1の収容部2の内部空間に反転して押し出されつつ、第2の収容部3の内面が第1の収容部2の内面に密着した際、両者を上記した容積関係に設定しておくことで、第2の収容部の底縁3aを、注出口2aの収容部側の開口2A近くに位置させることができ、効果的、かつ無駄なく収容物を注出することが可能となる。   Note that the internal volume (volume) of the bag-like second housing part 3 is preferably set to be the same (including substantially the same) as the internal volume of the cylindrical first housing part 2. As a result, the second accommodating portion 3 is subjected to the action of the injected outside air, and the accommodated material flows out from the spout 2 a, so that the second accommodating portion 3 enters the internal space of the first accommodating portion 2. When the inner surface of the second housing part 3 comes into close contact with the inner surface of the first housing part 2 while being pushed out in reverse, the bottom of the second housing part is set by setting both to the above-described volume relationship. The edge 3a can be positioned near the opening 2A on the container portion side of the spout 2a, and it becomes possible to pour out the contents effectively and without waste.

すなわち、第2の収容部3の内容量が、第1の収容部2よりも大きいと、収容物の流出に伴って第2の収容部3が反転しながら第1の収容部2の内部空間に押し出された際、第2の収容部3の底縁3aが折れ曲がる等、注出口2aの収容部側の開口2Aを塞ぐ傾向が強くなり、これにより、注出口2aから収容物が排出されなくなって注出口2aの収容部側の開口2A付近に収容物を残留させてしまう可能性が高くなる。   That is, when the internal capacity of the second storage part 3 is larger than that of the first storage part 2, the internal space of the first storage part 2 is reversed while the second storage part 3 is reversed with the outflow of the stored items. When pushed out, the bottom edge 3a of the second accommodating part 3 is bent, and the tendency to block the opening 2A on the accommodating part side of the spout 2a is increased, and thus the contents are not discharged from the spout 2a. Therefore, there is a high possibility that the contents will remain in the vicinity of the opening 2A on the container side of the spout 2a.

一方、第2の収容部3の内容量が、第1の収容部2よりも少ないと、収容物の流出に伴って第2の収容部3が反転しながら第1の収容部2の内部空間に押し出された際、第2の収容部3の内部の底縁3aと注出口2aの収容部側の開口2Aとの距離が離間してしまい、これにより、第2の収容部3に作用する外気の押圧力が収容物に伝わらず、その離間間隔内に位置される収容物をそのまま残留させてしまう可能性が高くなる。   On the other hand, if the internal volume of the second storage unit 3 is less than that of the first storage unit 2, the internal space of the first storage unit 2 is reversed while the second storage unit 3 is reversed with the outflow of the stored items. When pushed out, the distance between the bottom edge 3a inside the second housing portion 3 and the opening 2A on the housing portion side of the spout 2a is separated, thereby acting on the second housing portion 3. There is a high possibility that the pressing force of the outside air is not transmitted to the stored item, and the stored item located within the separation interval remains as it is.

前記袋状の外装部7は、第1の収容部2の円形開口2fに対し、前記第2の収容部3の溶着部2dより上側の全周に沿って、溶着部2hによって溶着されており、第2の収容部3の外側を全体的に覆っている(勿論、外装部7を溶着する溶着部2hは、前記溶着部2dと重なるように形成しても良い)。この場合、外装部7は、薄膜フィルム(例えば、第2の収容部3を形成する材料と同様な材料)によって構成されており、第2の収容部3の外側を覆うことによって、第2の収容部3との間に、予め緩衝層S2を形成することが可能となる。この緩衝層S2は、輸送時等において第2の収容部3が受ける可能性がある衝撃から第2の収容部3を保護する機能を備えており、予め空気(注入される外気と同じであることが好ましい)が充填されている。   The bag-shaped exterior portion 7 is welded to the circular opening 2f of the first housing portion 2 by the welded portion 2h along the entire circumference above the welded portion 2d of the second housing portion 3. The outer side of the second housing part 3 is entirely covered (of course, the welded part 2h for welding the exterior part 7 may be formed so as to overlap the welded part 2d). In this case, the exterior part 7 is made of a thin film (for example, a material similar to the material forming the second accommodation part 3), and covers the outside of the second accommodation part 3, thereby The buffer layer S2 can be formed in advance between the housing portion 3 and the housing portion 3. This buffer layer S2 has a function of protecting the second housing portion 3 from an impact that the second housing portion 3 may receive during transportation or the like, and is the same as air (injected outside air) in advance. Are preferred).

次に、上記構成の収容体1の作用(緩衝作用)について、図5を参照して説明する。
図5は、外装部7によって形成される緩衝層S2内に空気を充填した状態を模式的に示す図である。
Next, the action (buffer action) of the container 1 having the above-described configuration will be described with reference to FIG.
FIG. 5 is a diagram schematically showing a state where the buffer layer S2 formed by the exterior portion 7 is filled with air.

図に示すように、第1の収容部2及び第2の収容部3に、収容物を収容した状態で、外装部7と第2の収容部3との間の隙間に空気Gを充填することで、空気Gによる層が第2の収容部3を外部衝撃から保護する(衝撃を吸収する)緩衝層S2となる。また、この緩衝層S2を構成する空気は、外装部7内で、第2の収容部3の位置を安定化するようにその圧力が設定される。すなわち、第2の収容部3は、全ての方向において、緩衝層S2を介して外部と接するようになる。このため、収容体1を出荷等のために輸送、搬送する場合などにおいて、衝撃等によって軟質な第2の収容部3が損傷、破損することが防止される(第2の収容部3を衝撃から効果的に保護できる)。   As shown in the drawing, air G is filled in the gap between the exterior portion 7 and the second storage portion 3 in a state in which the first storage portion 2 and the second storage portion 3 store the stored items. Thus, the layer of air G serves as a buffer layer S2 that protects the second housing portion 3 from external impact (absorbs impact). The pressure of the air constituting the buffer layer S <b> 2 is set so as to stabilize the position of the second housing portion 3 in the exterior portion 7. That is, the second accommodating portion 3 comes into contact with the outside through the buffer layer S2 in all directions. For this reason, when the container 1 is transported or transported for shipment or the like, the soft second container 3 is prevented from being damaged or broken by an impact or the like (the second container 3 is shocked). Can be effectively protected from).

次に、上記した構成の収容体1の収容物注出作用(押圧注出作用)について図6(a)〜(f)を参照して説明する。
図6(a)は、第1の収容部2の内部および第2の収容部3の内部(収容物収容空間S1)に収容物を収容した状態で、緩衝層S2内に、空気Gを充填した状態を示している(図5参照)。この状態から、注入口7aを通じて緩衝層S2内に外気を注入すると、予め緩衝層S2内に充填されている空気と共に、第2の収容部3を押圧し始め、それにより、注出口2aから収容物が注出され始める。
Next, the contents extraction action (pressing extraction action) of the container 1 having the above-described configuration will be described with reference to FIGS.
FIG. 6 (a) shows that the buffer layer S2 is filled with air G in a state in which the storage object is stored in the first storage part 2 and in the second storage part 3 (storage object storage space S1). The state is shown (see FIG. 5). From this state, when outside air is injected into the buffer layer S2 through the injection port 7a, the second storage portion 3 starts to be pressed together with the air previously filled in the buffer layer S2, thereby storing from the spout 2a. Things begin to be poured out.

そのまま更に注入口7aを通じて緩衝層S2内に外気を注入し続けると、袋状の第2の収容部3は縦じわが発生しながら次第に萎んでいき、底縁3aが第1の収容部2の円形開口2f(溶着部2dの領域)に向けて上昇する(図6(b)及び(c)参照)。   If the outside air is continuously injected into the buffer layer S2 through the injection port 7a as it is, the bag-like second storage portion 3 gradually shrinks while vertical wrinkles are generated, and the bottom edge 3a becomes the first storage portion 2. It rises toward the circular opening 2f (region of the welded portion 2d) (see FIGS. 6B and 6C).

更に外気を注入していくと、収容物の流出に伴って第2の収容部3の内部の底縁3aが第1の収容部2の円形開口2f(溶着部2d,2hの領域)を通過して上昇し、第2の収容部3は、第1の収容部2の内部空間に反転して押し込まれる(図6(d)及び(e)参照)。そして、更に外気を注入し続けると、第2の収容部3の内面が、第1の収容部2の内面に密着し(図6(f)参照)、収容物は注出口2aの収容部側開口領域に集中するようになる。   When the outside air is further injected, the bottom edge 3a inside the second accommodating portion 3 passes through the circular opening 2f (the region of the welded portions 2d and 2h) of the first accommodating portion 2 as the contents flow out. Then, the second accommodating portion 3 is inverted and pushed into the internal space of the first accommodating portion 2 (see FIGS. 6D and 6E). When the outside air continues to be further injected, the inner surface of the second housing portion 3 comes into close contact with the inner surface of the first housing portion 2 (see FIG. 6 (f)), and the stored material is on the housing portion side of the spout 2a. It becomes concentrated in the opening area.

なお、図6(f)に示すように、袋状の第2の収容部3が筒状の第1の収容部2の内部空間に反転して押し込まれると、第2の収容部3の内面は、第1の収容部2の内面に密着するようになる。この場合、第1の収容部2は、上述したように、溶着部2d(2h)から注出口2a側に向けて、断面が円形状から楕円形状に形状変化しており、入り込む第2の収容部3の断面形状と対応させているため、第2の収容部3には、しわ等が生じることなく第1の収容部2の内面に密着し易くなり、収容物を効率良く注出することが可能となる。また、第2の収容部2は、図3に示したように、円形開口2fが所定の長さLに亘って同一径に形成されており、この範囲内に第2の収容部3が溶着されることから、溶着部領域で第2の収容部3が反転して入り込んだ際、この部分でしわ等が生じることが防止され、収容物が残存する可能性が低減される。   As shown in FIG. 6 (f), when the bag-like second housing part 3 is inverted and pushed into the internal space of the cylindrical first housing part 2, the inner surface of the second housing part 3 Comes in close contact with the inner surface of the first housing portion 2. In this case, as described above, the first accommodating portion 2 has a cross section that changes from a circular shape to an elliptical shape toward the spout 2a side from the welded portion 2d (2h), and enters the second accommodating portion. Since it is made to correspond to the cross-sectional shape of the part 3, the second accommodating part 3 is easily adhered to the inner surface of the first accommodating part 2 without causing wrinkles or the like, and the contents are efficiently poured out. Is possible. Further, as shown in FIG. 3, the second accommodating portion 2 has a circular opening 2f having the same diameter over a predetermined length L, and the second accommodating portion 3 is welded within this range. Therefore, when the second accommodating portion 3 is reversed and enters in the welded portion region, wrinkles and the like are prevented from occurring in this portion, and the possibility that the contents remain is reduced.

以上説明したように、本実施形態によれば、薄膜フィルムによって非自立体となる袋状に形成された軟質な第2の収容部3を外側から覆う外装部7が設けられ、この外装部7と第2の収容部3との間に、予め空気が充填された緩衝層S2を形成したことから、第2の収容部3を衝撃から効果的に保護することができ、軟質な第2の収容部3が損傷、破損することを防ぐことができる。また、緩衝層S2内に空気を充填することで、外装部7内で第2の収容部3の位置が安定して保持され、衝撃耐性を更に高めることができる。   As described above, according to the present embodiment, the exterior portion 7 that covers the soft second housing portion 3 formed in a bag shape that is a non-self-solid body by the thin film is provided from the outside. Since the buffer layer S2 previously filled with air is formed between the second accommodating portion 3 and the second accommodating portion 3, the second accommodating portion 3 can be effectively protected from the impact, and the soft second It is possible to prevent the housing portion 3 from being damaged or broken. Further, by filling the buffer layer S2 with air, the position of the second accommodating portion 3 is stably held in the exterior portion 7, and the impact resistance can be further enhanced.

また、本実施形態では、第2の収容部3および外装部7がいずれも薄膜フィルムによって構成されているため、収容体1を廃棄する際には、外装部7を第2の収容部3と同様に第1の収容部2内に押し込むことで、嵩張ることなく実質的に第1の収容部2の体積分の廃棄体積量で廃棄することができ、環境に優しい収容体1を実現できる。   Moreover, in this embodiment, since both the 2nd accommodating part 3 and the exterior part 7 are comprised with the thin film film, when discarding the container 1, the exterior part 7 and the 2nd accommodating part 3 are used. Similarly, by being pushed into the first housing part 2, it is possible to dispose of the first housing part 2 in a waste volume amount substantially equivalent to the volume of the first housing part 2, and the environment-friendly container 1 can be realized.

以上、本発明の実施の形態について説明したが、本発明は、上記した実施形態に限定されることはなく、例えば、以下のように種々変形することが可能である。   Although the embodiments of the present invention have been described above, the present invention is not limited to the above-described embodiments, and can be variously modified as follows, for example.

上記した実施形態では、外装部7は、薄膜フィルムによって構成したが、第1の収容部2と同様、合成樹脂の成型品で構成しても良い。このような構成では、外装部7そのものが緩衝層となり、第2の収容部3をより確実に保護することが可能となる。   In the above-described embodiment, the exterior portion 7 is configured by a thin film, but may be configured by a synthetic resin molded product as in the first housing portion 2. In such a structure, the exterior part 7 itself becomes a buffer layer, and it becomes possible to protect the 2nd accommodating part 3 more reliably.

また、前記筒状の第1の収容部2の大きさ、側面から注出口2に至る形状、筒状の収容部2における注出口2aの構成等については、適宜変形することが可能である。さらに、前述した実施形態では、緩衝層S2内に、予め空気を充填して緩衝作用を持たせていたが、空気に限らず、水などの液体であってもよい。   Moreover, about the magnitude | size of the said cylindrical 1st accommodating part 2, the shape from the side to the spout 2, the structure of the spout 2a in the cylindrical accommodating part 2, etc. can be changed suitably. Further, in the above-described embodiment, the buffer layer S2 is preliminarily filled with air to provide a buffering action. However, the buffer layer S2 is not limited to air but may be a liquid such as water.

1 収容体
2 第1の収容部
2a 注出口
2f 円形開口
3 第2の収容部
7 外装部
7a 注入口
S2 緩衝層
DESCRIPTION OF SYMBOLS 1 Container 2 1st accommodating part 2a Spout 2f Circular opening 3 2nd accommodating part 7 Exterior part 7a Inlet S2 Buffer layer

Claims (1)

一端側の中央領域に収容物を注出可能な注出口を具備するとともに、他端側に円形開口を具備し、前記一端側に向けて断面が円形状から楕円形状に変化する樹脂成型された筒状の第1の収容部と、
前記第1の収容部の前記円形開口に沿って溶着され、前記注出口からの収容物の注出時に前記第1の収容部内に入り込んでその内面に密着可能な薄膜フィルムによって非自立体となる袋状に形成された第2の収容部と、
前記第1の収容部の前記円形開口に沿って止着され、前記第2の収容部の外側を全体的に覆うとともに、前記第2の収容部との間に、前記第2の収容部を衝撃から保護する緩衝層を形成する外装部と、
を有し、
前記外装部には、外気により前記収容物を前記注出口から押し出し可能とする注入口が形成されており、
前記外装部は袋状のフィルムで構成され、前記第2の収容部との間に形成された前記緩衝層は空気層であって、
前記第2の収容部は全ての方向において前記緩衝層及び前記外装部を介して収容体の外部と接していることを特徴とする収容体。
Resin molded with a spout capable of pouring the contents in the central region on one end side, a circular opening on the other end side, and a cross section changing from a circular shape to an elliptical shape toward the one end side A cylindrical first accommodating portion;
It is welded along the circular opening of the first housing portion, and becomes a non-self-solid body by a thin film that enters into the first housing portion and adheres closely to the inner surface thereof when the matter is poured out from the spout. A second accommodating portion formed in a bag shape;
The second housing portion is fixed along the circular opening of the first housing portion and entirely covers the outside of the second housing portion, and the second housing portion is disposed between the second housing portion and the second housing portion. An exterior that forms a buffer layer that protects against impact;
Have
The exterior portion is formed with an inlet that allows the stored items to be pushed out from the spout by outside air ,
The exterior part is composed of a bag-like film, and the buffer layer formed between the second housing part is an air layer,
The container, wherein the second container is in contact with the outside of the container through the buffer layer and the exterior in all directions .
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JPS5628301A (en) * 1979-08-15 1981-03-19 Kazuo Sugimura Accumulator improved in feeding and discharging of liquid
US5871119A (en) * 1996-07-19 1999-02-16 Blackinton, Jr.; Richard E. Ink dispensing container
JP2008100754A (en) * 2006-10-20 2008-05-01 Nippon Kimu Kk Container
DE102008014773A1 (en) * 2008-03-18 2009-10-08 Delo Industrieklebstoffe Gmbh & Co. Kg Container for flowable substances
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