JP2014213927A - Method for manufacturing double container and double container - Google Patents

Method for manufacturing double container and double container Download PDF

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JP2014213927A
JP2014213927A JP2013095229A JP2013095229A JP2014213927A JP 2014213927 A JP2014213927 A JP 2014213927A JP 2013095229 A JP2013095229 A JP 2013095229A JP 2013095229 A JP2013095229 A JP 2013095229A JP 2014213927 A JP2014213927 A JP 2014213927A
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layer body
outer layer
inner layer
double container
outside air
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JP6091982B2 (en
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桑原 和仁
Kazuhito Kuwabara
和仁 桑原
村田 良幸
Yoshiyuki Murata
良幸 村田
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Yoshino Kogyosho Co Ltd
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D1/00Containers having bodies formed in one piece, e.g. by casting metallic material, by moulding plastics, by blowing vitreous material, by throwing ceramic material, by moulding pulped fibrous material, by deep-drawing operations performed on sheet material
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D77/00Packages formed by enclosing articles or materials in preformed containers, e.g. boxes, cartons, sacks or bags
    • B65D77/04Articles or materials enclosed in two or more containers disposed one within another
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D81/00Containers, packaging elements, or packages, for contents presenting particular transport or storage problems, or adapted to be used for non-packaging purposes after removal of contents
    • B65D81/24Adaptations for preventing deterioration or decay of contents; Applications to the container or packaging material of food preservatives, fungicides, pesticides or animal repellants
    • B65D81/26Adaptations for preventing deterioration or decay of contents; Applications to the container or packaging material of food preservatives, fungicides, pesticides or animal repellants with provision for draining away, or absorbing, or removing by ventilation, fluids, e.g. exuded by contents; Applications of corrosion inhibitors or desiccators

Abstract

PROBLEM TO BE SOLVED: To provide a method for manufacturing a double container and a double container capable of preventing a failure in peeling an inner layer body and deformation of an outer layer body by facilitating the peeling of the inner layer body from the outer layer body, and introducing ambient air between the inner layer body and the outer layer body when a content is discharged.SOLUTION: A method for manufacturing a double container provided with a bottle-like outer layer body 2 and an inner layer body 3 laminated inside the outer layer body 2 so as to be peeled includes: a molding process for blow molding laminate parison and forming an outside air introduction hole 4 in the outer layer body 2; a peeling process for peeling the inner layer body 3 from the outer layer body 2 after the molding process; a pressing process for deforming the outer layer body 2 at least temporarily by applying pressing force from outside of the outer layer body 2; and a restoration process for restoring the inner layer body 3 toward the deformed outer layer body 2.

Description

本発明は、内容物を収容する内層体が、外層体の内部に収容された二重容器の製造方法および二重容器に関する。   The present invention relates to a method of manufacturing a double container in which an inner layer body that contains contents is accommodated inside an outer layer body, and a double container.

化粧水などの化粧料や、シャンプーやリンスあるいは液体石鹸、また食品調味料などを収納する容器としては、内容物を収容する収容部を備えた内層体と、この内層体を剥離可能に収容する外層体とを備え、外層体の胴部を押圧することで内容物を注出する一方、押圧解除後は、外層体の注出口に設けた外気導入孔から、内層体と外層体との間に外気を導入して、内層体を減容したまま胴部が復元できるようにした二重容器が知られている(例えば特許文献1参照)。この種の容器は、内容物と外気との置換を行うことなく、注出を行うことができるので、内容物の外気との接触を減らして、その劣化や変質を抑制することができる。   As a container for storing cosmetics such as skin lotion, shampoo, rinse, liquid soap, food seasoning, etc., an inner layer body having a storage section for storing contents and the inner layer body are detachably stored. The outer layer body is provided and the contents are poured out by pressing the body portion of the outer layer body. A double container is known in which outside air is introduced into the body so that the body can be restored while reducing the volume of the inner layer body (see, for example, Patent Document 1). Since this type of container can be poured out without replacing the contents with the outside air, the contact of the contents with the outside air can be reduced, and deterioration and alteration can be suppressed.

特開2001−106263号公報JP 2001-106263 A

このような二重容器としては、デラミ容器とも呼ばれる積層剥離容器が知られており、この場合の二重容器は、相溶性の低い外層用の合成樹脂と内層用の合成樹脂とを共押出して積層パリソンとし、この積層パリソンを、金型を用いてブロー成形することにより、外層体と内層体とが密着した積層構造に形成される。そのため、ブロー成形の後に、例えば、外気導入孔から空気を圧送し、または注出口から負圧吸引をして内層体を収縮させて、その全体を外層体から剥離させ、次いで、内層体の内部に空気を送り込み、その全体を再度外層体に密着させて、収容物の注出時に、内層体が外層体から剥離し易くなるようにしている。   As such a double container, a delamination container called a delamination container is known. In this case, the double container is formed by coextruding a synthetic resin for an outer layer and a synthetic resin for an inner layer, which have low compatibility. A laminated parison is formed, and this laminated parison is blow-molded using a mold to form a laminated structure in which the outer layer body and the inner layer body are in close contact with each other. Therefore, after blow molding, for example, air is pumped from the outside air introduction hole, or negative pressure is sucked from the spout to shrink the inner layer body, and the whole is peeled off from the outer layer body. Air is fed into the outer layer body, and the whole is again brought into close contact with the outer layer body so that the inner layer body can be easily separated from the outer layer body when the contents are poured out.

しかしながら、従来の二重容器では、上記のように、ブロー成形後に、内層体を一旦外層体から全剥離するようにしても、内層体は、その外面全体が再度外層体の内面全体に密着するため、収容物の注出時に、内層体と外層体との間に外気を導入することができなくなることがあった。その結果、内層体の剥離不良や、外層体が元の形状に復元せずに変形してしまう場合があった。   However, in the conventional double container, as described above, even after the inner layer body is once completely peeled off from the outer layer body after blow molding, the entire inner surface of the inner layer body is again in close contact with the entire inner surface of the outer layer body. For this reason, it may not be possible to introduce outside air between the inner layer body and the outer layer body when the contents are poured out. As a result, there are cases where the inner layer body is poorly peeled or the outer layer body is deformed without being restored to its original shape.

本発明は、このような従来の問題点を解決することを課題とするものであり、その目的は、内層体を外層体から剥離し易くして、内容物の注出時に内層体と外層体との間に外気を導入させることによって、内層体の剥離不良や外層体の変形が生じることを防止することができる二重容器の製造方法および二重容器を提案することにある。   An object of the present invention is to solve such a conventional problem, and the object thereof is to facilitate peeling of the inner layer body from the outer layer body, and when the contents are poured out, the inner layer body and the outer layer body are provided. It is to propose a method of manufacturing a double container and a double container that can prevent the inner layer body from being peeled badly and the outer layer body from being deformed by introducing outside air between them.

上記課題を解決するため、本発明に係る二重容器の製造方法は、ボトル状の外層体と、該外層体の内側に剥離可能に積層された内層体とを備えた二重容器の製造方法であって、前記外層体となる外層パリソンおよび前記内層体となる内層パリソンにより成形された積層パリソンをブロー成形するとともに、前記外層体に、前記内層体との相互間に外気を導入する外気導入孔を形成する成形工程と、前記成形工程の後、前記内層体を前記外層体から剥離する剥離工程と、前記外層体の外側から押圧力を付加することにより、前記外層体を少なくとも一時的に変形させる押圧工程と、変形した前記外層体に向けて前記内層体を復元する復元工程と、を含むことを特徴とする。   In order to solve the above problems, a method for producing a double container according to the present invention comprises a bottle-shaped outer layer body and a method for producing a double container comprising an inner layer body that is detachably laminated on the inner side of the outer layer body. An outside air introduction that blow-molds a laminated parison formed by the outer layer parison that becomes the outer layer body and the inner layer parison that becomes the inner layer body, and introduces outside air between the inner layer body and the outer layer body. A molding step for forming a hole; a peeling step for peeling the inner layer body from the outer layer body after the molding step; and applying a pressing force from the outside of the outer layer body, so that the outer layer body is at least temporarily A pressing step for deforming, and a restoring step for restoring the inner layer body toward the deformed outer layer body.

また、本発明の二重容器の製造方法は、前記復元工程の後、前記押圧力を解除して前記外層体と前記内層体の間に空間を形成するが好ましい。   Moreover, it is preferable that the manufacturing method of the double container of this invention cancels | releases the said pressing force after the said restoration process, and forms a space between the said outer layer body and the said inner layer body.

また、本発明の二重容器の製造方法は、前記押圧工程において、加熱した押圧部材で外層体を押圧することにより、前記外層体を塑性変形させてなることが好ましい。   Moreover, it is preferable that the manufacturing method of the double container of this invention deforms the said outer layer body plastically by pressing an outer layer body with the heated pressing member in the said press process.

また、本発明の二重容器の製造方法は、前記押圧工程を行う前の前記外層体が、外側に突出した凸形状を有し、前記押圧工程で、前記凸形状を押圧力により反転変形させてなるが好ましい。   Further, in the method for manufacturing a double container according to the present invention, the outer layer body before the pressing step has a convex shape protruding outward, and the convex shape is reversed and deformed by a pressing force in the pressing step. It is preferable.

また、本発明の二重容器は、ボトル状の外層体と、該外層体の内側に剥離可能に積層された内層体とを備えた二重容器であって、前記外層体となる外層パリソンおよび前記内層体となる内層パリソンにより成形された積層パリソンをブロー成形するとともに、前記外層体に、前記内層体との相互間に外気を導入する外気導入孔を形成した後、前記内層体を前記外層体から剥離し、前記外層体の外側から押圧力を付加して前記外層体を少なくとも一時的に変形させ、変形した前記外層体に向けて前記内層体を復元したことにより、前記外層体と前記内層体の間に前記外気導入孔に連通する空間が形成されてなることを特徴とする。   Further, the double container of the present invention is a double container comprising a bottle-shaped outer layer body and an inner layer body that is peelably laminated on the inner side of the outer layer body, the outer layer parison serving as the outer layer body and The laminated parison formed by the inner layer parison to be the inner layer body is blow-molded, and the outer layer body is formed with outside air introduction holes for introducing outside air between the inner layer body, and then the inner layer body is moved to the outer layer. Peeling from the body, applying a pressing force from the outside of the outer layer body to at least temporarily deform the outer layer body, and restoring the inner layer body toward the deformed outer layer body, the outer layer body and the A space communicating with the outside air introduction hole is formed between the inner layer bodies.

また、本発明の二重容器は、ボトル状の外層体と、該外層体の内側に剥離可能に積層された内層体とを備えた二重容器であって、前記外層体となる外層パリソンおよび前記内層体となる内層パリソンにより成形された積層パリソンをブロー成形するとともに、前記外層体に、前記内層体との相互間に外気を導入する外気導入孔を設けた後、前記外層体の外側から押圧力を付加して前記外層体を少なくとも一時的に変形させるとともに前記内層体を前記外層体から剥離し、変形した前記外層体に向けて前記内層体を復元したことにより、前記外層体と前記内層体の間に前記外気導入孔に連通する空間が形成されてなることを特徴とする。   Further, the double container of the present invention is a double container comprising a bottle-shaped outer layer body and an inner layer body that is peelably laminated on the inner side of the outer layer body, the outer layer parison serving as the outer layer body and After blow molding the laminated parison formed by the inner layer parison to be the inner layer body and providing the outer layer body with outside air introduction holes for introducing outside air between the inner layer body and the outside layer body, from the outside of the outer layer body The outer layer body is deformed at least temporarily by applying a pressing force, and the inner layer body is peeled from the outer layer body, and the inner layer body is restored toward the deformed outer layer body. A space communicating with the outside air introduction hole is formed between the inner layer bodies.

本発明の二重容器の製造方法および二重容器によれば、内層体を外層体から剥離し易くして、内容物の注出時に内層体と外層体との間に外気を導入させることによって、内層体の剥離不良や外層体の変形が生じることを防止することができる。   According to the double container manufacturing method and the double container of the present invention, the inner layer body is easily peeled from the outer layer body, and the outside air is introduced between the inner layer body and the outer layer body when the contents are poured out. Further, it is possible to prevent the peeling failure of the inner layer body and the deformation of the outer layer body.

(a)は、本発明の二重容器の一実施形態である積層剥離容器の斜視図であり、(b)は、成形工程後、剥離工程前の積層剥離容器の部分断面図である。(c)は、剥離工程後、押圧工程前の積層剥離容器を示す部分断面図であり、(d)は、押圧工程および復元工程における積層剥離容器を示す部分断面図であり、(e)は、復元工程後に押圧力を解除した積層剥離容器を示す斜視図である。(a) is a perspective view of the lamination peeling container which is one Embodiment of the double container of this invention, (b) is a fragmentary sectional view of the lamination peeling container after a formation process and before a peeling process. (C) is a partial cross-sectional view showing the delamination container after the peeling process and before the pressing process, (d) is a partial cross-sectional view showing the delamination container in the pressing process and the restoration process, and (e) It is a perspective view which shows the delamination container which canceled the pressing force after the decompression | restoration process. (a)は、成形工程後、剥離工程前の積層剥離容器を示す部分断面図であり、(b)は、剥離工程を行った後での、押圧工程における積層剥離容器を示す図である。(c)は、押圧工程後、復元工程前の、塑性変形した積層剥離容器を示す部分断面図であり、(d)は、復元工程後の積層剥離容器を示す部分断面図であり、(e)は、押圧工程後の積層剥離容器を示す斜視図である。(a) is a fragmentary sectional view which shows the lamination peeling container before a peeling process after a shaping | molding process, (b) is a figure which shows the lamination peeling container in a press process after performing a peeling process. (C) is a partial cross-sectional view showing the delamination container that has been plastically deformed after the pressing process and before the restoration process, and (d) is a partial cross-sectional view showing the delamination container after the restoration process, ) Is a perspective view showing the delamination container after the pressing step. (a)は、成形工程後の積層剥離容器を示す部分断面図であり、(b)は、剥離工程後の積層剥離容器を示す図である。(c)は、押圧工程後の、変形した積層剥離容器を示す部分断面図であり、(d)は、復元工程後の積層剥離容器を示す部分断面図であり、(e)は、成形工程後、押圧工程前の積層剥離容器を示す斜視図であり、(f)は、押圧工程後の積層剥離容器を示す斜視図である。(a) is a fragmentary sectional view which shows the delamination container after a formation process, (b) is a figure which shows the delamination container after a peeling process. (C) is a partial cross-sectional view showing a deformed delamination container after the pressing step, (d) is a partial cross-sectional view showing the delamination container after the restoration step, and (e) is a forming step. It is a perspective view which shows the delamination container before a press process later, (f) is a perspective view which shows the delamination container after a press process.

以下、本発明の実施の形態を図面に基づいて詳細に例示説明する。   Hereinafter, embodiments of the present invention will be described in detail with reference to the drawings.

図1に示すように、本発明の二重容器の一実施の形態である積層剥離容器1は、外殻を構成するボトル状の外層体2と、外層体2の内側に剥離可能に積層された内層体3とを有している。   As shown in FIG. 1, a delamination container 1 which is an embodiment of a double container of the present invention is laminated in a bottle-like outer layer body 2 constituting an outer shell, and inside the outer layer body 2 so as to be peelable. And an inner layer body 3.

外層体2は、断面円形の筒状に形成された注出口2aと、この注出口2aに一体に連なる断面円形の胴部2bとを有するボトル状に形成されている。胴部2bは可撓性を有しており、スクイズされて凹むことができるとともに、凹んだ状態から元の形状に復元することができる。なお、この例において外層体2の形状は、胴部2bの断面を円形としているが、これに限られず、任意の形状とすることができる。また、外層体2の素材樹脂として、例えばポリエチレン(PE)、ポリプロピレン(PP)、ポリエチレンテレフタレート(PET)等を用いることができるが、これに限られるものではない。   The outer layer body 2 is formed in a bottle shape having a spout 2a formed in a cylindrical shape having a circular cross section and a body portion 2b having a circular cross section integrally connected to the spout 2a. The trunk | drum 2b has flexibility, and while being squeezed and can be dented, it can restore | restore from the dented state to the original shape. In this example, the shape of the outer layer body 2 has a circular cross section of the body portion 2b, but is not limited thereto, and can be any shape. Moreover, as raw material resin of the outer layer body 2, for example, polyethylene (PE), polypropylene (PP), polyethylene terephthalate (PET) or the like can be used, but is not limited thereto.

内層体3は、外層体2の内側に、薄肉の袋状に形成されている。内層体3の開口部3aは、外層体2の注出口2aの開口端に連ねられ、内層体3は、開口部3aから収容部3bに連なっている。この収容部3bには、例えば、化粧水などの化粧料、シャンプーやリンスあるいは液体石鹸、また食品調味料などの液体状の内容物が収納される。内層体3の素材樹脂としては、例えば、ナイロン、EVOH等を用いることができるが、これに限られるものではない。なお、剥離性の観点から、外層体2および内層体3の素材樹脂は、相互に相溶性が低い樹脂の組合せとなることが好ましく、例えば、外層体2をポリエチレン(PE)とし、内層体3をナイロンまたはEVOHとすることができる。   The inner layer body 3 is formed in a thin bag shape inside the outer layer body 2. The opening 3a of the inner layer body 3 is continued to the opening end of the spout 2a of the outer layer body 2, and the inner layer body 3 is continued from the opening 3a to the accommodating portion 3b. For example, cosmetics such as lotion, shampoo, rinse, liquid soap, and liquid contents such as food seasonings are stored in the storage unit 3b. For example, nylon, EVOH, or the like can be used as the material resin of the inner layer body 3, but is not limited thereto. From the viewpoint of peelability, the material resin of the outer layer body 2 and the inner layer body 3 is preferably a combination of resins having low compatibility with each other. For example, the outer layer body 2 is made of polyethylene (PE), and the inner layer body 3 Can be nylon or EVOH.

外層体2の注出口2aの側部(外周部)には、それぞれ注出口2aを径方向に沿って内外に貫通する一対の外気導入孔4が設けられている。これらの外気導入孔4は、互いに注出口2aの軸心を挟んだ対称な位置に配置されている。外気導入孔4は、外層体2と内層体3の間に連通しており、内層体3が外層体2から剥離したときに、外層体2と内層体3との間に外気を導入することができる。   A pair of outside air introduction holes 4 that penetrates the spout 2 a inward and outward along the radial direction are provided on the side (outer peripheral portion) of the spout 2 a of the outer layer body 2. These outside air introduction holes 4 are arranged at symmetrical positions with the axis of the spout 2a interposed therebetween. The outside air introduction hole 4 communicates between the outer layer body 2 and the inner layer body 3, and introduces outside air between the outer layer body 2 and the inner layer body 3 when the inner layer body 3 peels from the outer layer body 2. Can do.

外層体2の注出口2aには、例えば、注出用弁が配設された注出キャップ、各種ノズルまたは注出ポンプ等の部材が装着され、これらの部材を介して、内容物が注出される。これらの部材は、注出口2aに設けられたねじ部2cにねじ結合して当該注出口2aに固定されるが、アンダーカット等の他の手段により固定される構成とすることもできる。   For example, a member such as a pouring cap, various nozzles, or a pouring pump provided with a pouring valve is attached to the pouring port 2a of the outer layer body 2, and the contents are poured through these members. It is. These members are screwed to a screw portion 2c provided at the spout 2a and fixed to the spout 2a, but may be fixed by other means such as an undercut.

このような積層剥離容器1は、注出口2aに注出用弁が配設された注出キャップを装着した場合には、外層体2の胴部2bをスクイズすることによって、注出口2aから内容物を注出することができる。内容物の注出後、外層体2が元の形状に復元する際には、外気導入孔4から外層体2と内層体3との間に外気が流入するので、内層体3の収容部3bを減容させたまま、外層体2を元の形状に復元させることができる。したがって、内容物を注出しても、注出口2aから内層体3の収容部3bの内部へ外気が流入することがないので、収容部3bに収容された内容物は空気に触れることなく、その劣化が防止される。また、ボール弁を備えた注出キャップを装着した場合には、外層体2を傾けることにより、内層体3の収容部3bに収容した内容物を自重で注出口2aから注出することもできる。なお、注出口2aにポンプを装着した場合には、外層体2として可撓性を有していないものを用いることができる。   When such a delamination container 1 is equipped with a pour-out cap provided with a pour-out valve at the pour-out port 2a, the contents from the pour-out port 2a can be obtained by squeezing the body 2b of the outer layer body 2. Things can be poured out. When the outer layer body 2 is restored to its original shape after the contents have been poured out, the outside air flows between the outer layer body 2 and the inner layer body 3 from the outer air introduction hole 4. The outer layer body 2 can be restored to the original shape while the volume is reduced. Therefore, even if the contents are poured out, outside air does not flow from the spout 2a into the accommodating portion 3b of the inner layer body 3, so that the contents accommodated in the accommodating portion 3b are not exposed to the air. Deterioration is prevented. In addition, when a pouring cap equipped with a ball valve is attached, the contents accommodated in the accommodating portion 3b of the inner layer body 3 can be poured out from the spout 2a by its own weight by tilting the outer layer body 2. . In addition, when a pump is attached to the spout 2a, an outer layer 2 that does not have flexibility can be used.

上述の積層剥離容器1のような二重容器の製造に適した、本発明における二重容器の製造方法について、以下に例示説明する。先ず、成形工程において、相溶性の低い合成樹脂からなる外層用の外層パリソンと内層用の内層パリソンとを、共押出して積層パリソンを成形する。その後、この積層パリソンを、金型を用いてブロー成形すると、外層体2の内側に内層体3が剥離可能に積層された構造が形成される。この時点で、図1(b)に示すように内層体3は外層体2の内面に剥離可能に密着している。さらに成形工程において外層体2に、外気導入孔4を設ける。外気導入孔4を設ける方法は特に限定されず、例えば、ブロー成形によって形成された底部のピンチオフを利用してもよいし、ブロー成形後に外層体2の注出口2aや胴部2bに、ポンチカッターや溶融手段によって孔を形成してもよい。   A method for manufacturing a double container according to the present invention suitable for manufacturing a double container such as the above-described delamination container 1 will be described below by way of example. First, in the molding step, an outer layer parison for an outer layer made of a synthetic resin having low compatibility and an inner layer parison for an inner layer are coextruded to form a laminated parison. Thereafter, when this laminated parison is blow-molded using a mold, a structure in which the inner layer body 3 is peeled and laminated inside the outer layer body 2 is formed. At this point, the inner layer body 3 is in close contact with the inner surface of the outer layer body 2 as shown in FIG. Furthermore, the outside air introduction hole 4 is provided in the outer layer body 2 in the molding process. The method for providing the outside air introduction hole 4 is not particularly limited. For example, a pinch-off at the bottom formed by blow molding may be used, or a punch cutter may be provided at the spout 2a or the body 2b of the outer layer body 2 after blow molding. Alternatively, the holes may be formed by melting means.

その後、外気導入孔4から空気を圧送し、または負圧吸引により内層体3を収縮させて、図1(c)に示すように、開口部3aを除いた全体を外層体2から剥離させる剥離工程を行う。剥離工程の後、図1(d)に示すように、外層体2の外側から押圧治具5等により押圧力を付加し、外層体2を弾性変形させる押圧工程を行う。さらに、外層体2に押圧力が付加されている状態で、内層体3の内部に空気を送り込むことにより、変形した外層体2に向けて内層体3を復元する復元工程を行う。弾性変形している外層体2の形状と、復元された内層体3の形状とは一致しないため、図1(e)に示すように、外層体2と、復元工程により復元された内層体3との間には、外気導入孔4に連通する空間(隙間)Sが形成される。なお、この例では、剥離工程の後で押圧工程を行っているが、押圧工程と同時に剥離工程を行うことも可能である。すなわち、外層体2の外側から押圧治具5等により押圧力を付加し、外層体2を弾性変形させるとともに、外気導入孔4から空気を圧送し、または負圧吸引により内層体3を収縮させて外層体2から剥離させてもよい。   Thereafter, air is pumped from the outside air introduction hole 4 or the inner layer body 3 is contracted by negative pressure suction so that the whole except the opening 3a is peeled off from the outer layer body 2 as shown in FIG. Perform the process. After the peeling step, as shown in FIG. 1 (d), a pressing step is performed in which the outer layer body 2 is elastically deformed by applying a pressing force from the outside of the outer layer body 2 with the pressing jig 5 or the like. Furthermore, a restoration process is performed to restore the inner layer body 3 toward the deformed outer layer body 2 by sending air into the inner layer body 3 in a state in which the pressing force is applied to the outer layer body 2. Since the shape of the elastically deformed outer layer body 2 does not match the shape of the restored inner layer body 3, as shown in FIG. 1 (e), the outer layer body 2 and the inner layer body 3 restored by the restoring step A space (gap) S communicating with the outside air introduction hole 4 is formed between the two. In this example, the pressing step is performed after the peeling step, but the peeling step can be performed simultaneously with the pressing step. In other words, a pressing force is applied from the outside of the outer layer body 2 by the pressing jig 5 to elastically deform the outer layer body 2, and air is pumped from the outside air introduction hole 4 or the inner layer body 3 is contracted by negative pressure suction. The outer layer body 2 may be peeled off.

上記製造方法によって製造された積層剥離容器1は、内層体3に内容物を収容後、この内容物を注出口2aから注出する際に、空間Sが空気の流路となって、外気導入孔4から外気を導入し、胴部2b(および底部)における外層体2と内層体3との間に、容易に外気を流入させることができる。これにより、内層体3を外層体2から剥がれ易くして、積層剥離容器1の内層体3の剥離不良や、外層体2が元の形状に復元せずに変形することを防止することができる。また、この製造方法によれば、押圧工程において外層体2を弾性変形させ、その後形状を復元させるため、押圧力が付加された部分に外観上の変化は見られない。   In the delamination container 1 manufactured by the above manufacturing method, after the contents are accommodated in the inner layer body 3, when the contents are poured out from the spout 2a, the space S serves as an air flow path, so that the outside air is introduced. Outside air can be introduced from the hole 4 to allow the outside air to easily flow between the outer layer body 2 and the inner layer body 3 in the trunk portion 2b (and the bottom portion). Thereby, the inner layer body 3 can be easily peeled off from the outer layer body 2, and the peeling failure of the inner layer body 3 of the laminate peeling container 1 and the deformation of the outer layer body 2 without being restored to the original shape can be prevented. . Moreover, according to this manufacturing method, since the outer layer body 2 is elastically deformed in the pressing step and then the shape is restored, no change in appearance is observed in the portion to which the pressing force is applied.

本発明の他の実施形態としての二重容器の製造方法について、以下に例示説明する。本実施形態における積層剥離容器21の製造方法では、ブロー成形するとともに外気導入孔4を設けた後、上記の製造方法と同様に剥離工程を行う。そして、図2(b)に示すように、加熱された押圧治具(押圧ピン等)5´で外層体2を押圧することにより、外層体2を熱によって塑性変形させる。なお、上記の製造方法と同様に、剥離工程は、押圧工程と同時に行うことも可能である。図2(c)に示すように、押圧工程後の外層体2には、凹部6が形成される。そして、押圧工程の後に、復元工程にて内層体3を復元することで、図2(d)に示すように、凹部6の周囲における外層体2と内層体3との間に空間Sを形成することができる。したがって、上記実施形態と同様、この製造方法によって、形成された空間Sが空気の流路となって、外気導入孔4から流入した外気は、外層体2と内層体3の間に容易に流入することができる。図2(e)は、押圧工程によって凹部6が形成された積層剥離容器21の斜視図である。なお、先の製造方法では、外層体2は、押圧力を解除することにより押圧箇所の形状が復元するものであったが、この製造方法では、押圧力を解除しても凹部6の形状は復元しないため、押圧力の付加と、内層体3の復元工程を同時に行う必要がない。   A method for manufacturing a double container as another embodiment of the present invention will be described below by way of example. In the manufacturing method of the lamination peeling container 21 in this embodiment, after carrying out blow molding and providing the outside air introduction hole 4, a peeling process is performed similarly to said manufacturing method. Then, as shown in FIG. 2B, the outer layer body 2 is plastically deformed by heat by pressing the outer layer body 2 with a heated pressing jig (such as a pressing pin) 5 '. In addition, similarly to said manufacturing method, a peeling process can also be performed simultaneously with a press process. As shown in FIG. 2C, a recess 6 is formed in the outer layer body 2 after the pressing step. Then, after the pressing step, the inner layer body 3 is restored in the restoration step, thereby forming a space S between the outer layer body 2 and the inner layer body 3 around the recess 6 as shown in FIG. can do. Therefore, as in the above-described embodiment, the space S formed by this manufacturing method serves as an air flow path, and the outside air flowing in from the outside air introduction hole 4 easily flows between the outer layer body 2 and the inner layer body 3. can do. FIG.2 (e) is a perspective view of the lamination peeling container 21 in which the recessed part 6 was formed by the press process. In the previous manufacturing method, the outer layer body 2 was designed to restore the shape of the pressed portion by releasing the pressing force. However, in this manufacturing method, the shape of the recess 6 is not changed even if the pressing force is released. Since the restoration is not performed, it is not necessary to simultaneously apply the pressing force and the restoration process of the inner layer body 3.

本発明のさらに他の実施形態としての二重容器の製造方法について、以下に例示説明する。本実施形態における積層剥離容器31の製造方法では、先ず、図3(a)に示すように、押圧工程を行う前の外層体2が凸形状7を有するようブロー成形する。その後剥離工程を行い(図3(b)参照)、さらに押圧工程において押圧治具(図示しない)等で押圧力を付加し、凸形状7を図3(c)に示すように、凹形状7’となるよう反転変形させる。なお、上記の製造方法と同様に、剥離工程は、押圧工程と同時に行うことも可能である。その後、復元工程にて、内層体3を復元すると、凹形状7’付近で外層体2と内層体3との間に空間Sが形成される。なお、本製造方法の場合には、復元工程の後に凸形状7を押し込むことも可能であり、同様に外層体2と内層体3との間に空間Sを形成することができる。   A method for manufacturing a double container as still another embodiment of the present invention will be described below by way of example. In the manufacturing method of the lamination peeling container 31 in this embodiment, first, as shown to Fig.3 (a), it blow-molds so that the outer-layer body 2 before performing a press process may have the convex shape 7. FIG. Thereafter, a peeling process is performed (see FIG. 3B). Further, in the pressing process, a pressing force is applied with a pressing jig (not shown) or the like, so that the convex shape 7 has a concave shape 7 as shown in FIG. Invert and deform to become '. In addition, similarly to said manufacturing method, a peeling process can also be performed simultaneously with a press process. Thereafter, when the inner layer body 3 is restored in the restoration step, a space S is formed between the outer layer body 2 and the inner layer body 3 in the vicinity of the concave shape 7 ′. In the case of this manufacturing method, it is possible to push the convex shape 7 after the restoration step, and similarly, the space S can be formed between the outer layer body 2 and the inner layer body 3.

したがって、この製造方法においても上記実施形態と同様に、外気導入孔4から外層体2と内層体3との間に容易に外気を取り込むことができる。これにより、内層体3を外層体2から剥がれ易くして、積層剥離容器31の内層体3の剥離不良や外層体2の変形を防止することができる。   Therefore, also in this manufacturing method, the outside air can be easily taken in between the outer layer body 2 and the inner layer body 3 from the outside air introduction hole 4 as in the above embodiment. Thereby, the inner layer body 3 can be easily peeled off from the outer layer body 2, and the peeling failure of the inner layer body 3 of the laminated peeling container 31 and the deformation of the outer layer body 2 can be prevented.

ここで、本発明において、外層体2に押圧力を付加する位置およびその形状は、特に限定されず、適宜設定することが可能であるが、外気導入孔4の近傍であることが好ましい。これによれば、外層体2と内層体3との間に形成される空間Sが、外気導入孔4と連通し易くなり、空間Sへの外気の流入をより容易にすることができる。   Here, in the present invention, the position at which the pressing force is applied to the outer layer body 2 and the shape thereof are not particularly limited and can be set as appropriate, but are preferably in the vicinity of the outside air introduction hole 4. According to this, the space S formed between the outer layer body 2 and the inner layer body 3 can easily communicate with the outside air introduction hole 4, and the inflow of outside air into the space S can be made easier.

なお、本発明は前記実施の形態に限定されるものではなく、その要旨を逸脱しない範囲で種々変更可能であることはいうまでもない。例えば、前記実施の形態においては、注出口2aに一対の外気導入孔4を設けているが、外気導入孔4は、2つに限らず、1つまたは3つ以上設けることもでき、注出口2a以外の胴部2bや底部に設けることもできる。また、本発明の二重容器は、内層体3と外層体2のみの2層構造に限られず、内層体3と外層体2を含む3層以上の多層構造とすることもできる。さらに、本発明の二重容器は、容器の使用目的に応じて、遮光材や再生材等の樹脂を用いることも可能である。   Needless to say, the present invention is not limited to the above-described embodiment, and various modifications can be made without departing from the scope of the invention. For example, in the above-described embodiment, the pair of outside air introduction holes 4 is provided in the spout 2a. However, the number of outside air introduction holes 4 is not limited to two, and one or three or more can be provided. It can also be provided on the body 2b or the bottom other than 2a. Further, the double container of the present invention is not limited to a two-layer structure including only the inner layer body 3 and the outer layer body 2, and may have a multilayer structure including three or more layers including the inner layer body 3 and the outer layer body 2. Furthermore, the double container of the present invention can use a resin such as a light shielding material or a recycled material depending on the purpose of use of the container.

1 積層剥離容器(二重容器)
2 外層体
2a 注出口
2b 胴部
2c ねじ部
3 内層体
3a 開口部
3b 収容部
4 外気導入孔
5 押圧治具
6 凹部
7 凸形状
1 Delamination container (double container)
2 outer layer body 2a spout 2b trunk 2c thread 3 inner layer body 3a opening 3b housing 4 outside air introduction hole 5 pressing jig 6 recess 7 convex

Claims (6)

ボトル状の外層体と、該外層体の内側に剥離可能に積層された内層体とを備えた二重容器の製造方法であって、
前記外層体となる外層パリソンおよび前記内層体となる内層パリソンにより成形された積層パリソンをブロー成形するとともに、前記外層体に、前記内層体との相互間に外気を導入する外気導入孔を設ける成形工程と、
前記成形工程の後、前記内層体を前記外層体から剥離する剥離工程と、
前記外層体の外側から押圧力を付加することにより、前記外層体を少なくとも一時的に変形させる押圧工程と、
変形した前記外層体に向けて前記内層体を復元する復元工程と、
を含むことを特徴とする二重容器の製造方法。
A method for producing a double container comprising a bottle-shaped outer layer body and an inner layer body that is detachably laminated inside the outer layer body,
Blow molding of an outer layer parison to be the outer layer body and a laminated parison formed by the inner layer parison to be the inner layer body, and forming an outside air introduction hole for introducing outside air between the outer layer body and the inner layer body Process,
After the molding step, a peeling step of peeling the inner layer body from the outer layer body,
A pressing step of deforming the outer layer body at least temporarily by applying a pressing force from the outside of the outer layer body;
A restoration step of restoring the inner layer body toward the deformed outer layer body;
The manufacturing method of the double container characterized by including.
前記復元工程の後、前記押圧力を解除して前記外層体と前記内層体の間に空間を形成する、請求項1に記載された二重容器の製造方法。   The method for producing a double container according to claim 1, wherein after the restoration step, the pressing force is released to form a space between the outer layer body and the inner layer body. 前記押圧工程において、加熱した押圧部材で外層体を押圧することにより、前記外層体を塑性変形させてなる、請求項1に記載された二重容器の製造方法。   The method for producing a double container according to claim 1, wherein in the pressing step, the outer layer body is plastically deformed by pressing the outer layer body with a heated pressing member. 前記押圧工程を行う前の前記外層体が、外側に突出した凸形状を有し、
前記押圧工程で、前記凸形状を押圧力により反転変形させてなる、請求項1に記載された二重容器の製造方法。
The outer layer body before performing the pressing step has a convex shape protruding outward,
The method for manufacturing a double container according to claim 1, wherein the convex shape is reversed and deformed by a pressing force in the pressing step.
ボトル状の外層体と、該外層体の内側に剥離可能に積層された内層体とを備えた二重容器であって、
前記外層体となる外層パリソンおよび前記内層体となる内層パリソンにより成形された積層パリソンをブロー成形するとともに、前記外層体に、前記内層体との相互間に外気を導入する外気導入孔を設けた後、
前記内層体を前記外層体から剥離し、
前記外層体の外側から押圧力を付加して前記外層体を少なくとも一時的に変形させ、
変形した前記外層体に向けて前記内層体を復元したことにより、
前記外層体と前記内層体の間に前記外気導入孔に連通する空間が形成されてなることを特徴とする二重容器。
A double container comprising a bottle-shaped outer layer body and an inner layer body that is releasably laminated inside the outer layer body,
The outer layer parison to be the outer layer body and the laminated parison formed by the inner layer parison to be the inner layer body are blow molded, and the outer layer body is provided with an outside air introduction hole for introducing outside air between the inner layer body and the outer layer parison. rear,
Peeling the inner layer body from the outer layer body,
Applying a pressing force from the outside of the outer layer body to deform the outer layer body at least temporarily;
By restoring the inner layer body toward the deformed outer layer body,
A double container, wherein a space communicating with the outside air introduction hole is formed between the outer layer body and the inner layer body.
ボトル状の外層体と、該外層体の内側に剥離可能に積層された内層体とを備えた二重容器であって、
前記外層体となる外層パリソンおよび前記内層体となる内層パリソンにより成形された積層パリソンをブロー成形するとともに、前記外層体に、前記内層体との相互間に外気を導入する外気導入孔を設けた後、
前記外層体の外側から押圧力を付加して前記外層体を少なくとも一時的に変形させるとともに前記内層体を前記外層体から剥離し、
変形した前記外層体に向けて前記内層体を復元したことにより、
前記外層体と前記内層体の間に前記外気導入孔に連通する空間が形成されてなることを特徴とする二重容器。
A double container comprising a bottle-shaped outer layer body and an inner layer body that is releasably laminated inside the outer layer body,
The outer layer parison to be the outer layer body and the laminated parison formed by the inner layer parison to be the inner layer body are blow molded, and the outer layer body is provided with an outside air introduction hole for introducing outside air between the inner layer body and the outer layer parison. rear,
Applying a pressing force from the outside of the outer layer body to deform the outer layer body at least temporarily and peel the inner layer body from the outer layer body,
By restoring the inner layer body toward the deformed outer layer body,
A double container, wherein a space communicating with the outside air introduction hole is formed between the outer layer body and the inner layer body.
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JP2020070046A (en) * 2018-10-30 2020-05-07 キョーラク株式会社 Manufacturing method of delamination container
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JP7391480B2 (en) 2020-09-30 2023-12-05 株式会社吉野工業所 laminated peel container

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