JPH0398826A - Package processing system - Google Patents

Package processing system

Info

Publication number
JPH0398826A
JPH0398826A JP23416489A JP23416489A JPH0398826A JP H0398826 A JPH0398826 A JP H0398826A JP 23416489 A JP23416489 A JP 23416489A JP 23416489 A JP23416489 A JP 23416489A JP H0398826 A JPH0398826 A JP H0398826A
Authority
JP
Japan
Prior art keywords
holder
container
pressure
containers
packages
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
JP23416489A
Other languages
Japanese (ja)
Other versions
JP2762126B2 (en
Inventor
Yasuo Togashi
冨樫 康夫
Munetaka Honda
宗隆 本多
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Shibuya Corp
Original Assignee
Shibuya Kogyo Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Shibuya Kogyo Co Ltd filed Critical Shibuya Kogyo Co Ltd
Priority to JP23416489A priority Critical patent/JP2762126B2/en
Publication of JPH0398826A publication Critical patent/JPH0398826A/en
Application granted granted Critical
Publication of JP2762126B2 publication Critical patent/JP2762126B2/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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  • Supplying Of Containers To The Packaging Station (AREA)

Abstract

PURPOSE:To apply to various kinds of packages with a simple structure by providing a carrier line with an air supply/exhaust section for sealing or exhausting pressure-applied gas with respect to a closed slit of each holder in contact with and separate from packages with a holder. CONSTITUTION:Packages arranged and supplied from an unscrambler 15 respectively drop to fit into empty holders 1 led by the unscrambler 15 to be sent on a carrier line, and before they reach a filling machine 16 a pressure-applied gas supply/exhaust unit 14 is brought into contact with an separated from a specific number of holders 1 at a pressure applying section 17, when pressure- applied gas controlled at specific pressure is sealed in a closed slit 11 of each holder 1 via a pressure-reducing valve 18 by coupling between a socket 12 and a plug 13. Then at an exhaustion section 20 on a processing line, a next pressure-applied gas supply/exhaust unit 14 is brought into contact with and separated from the packages with a holder which have been subjected to processing, and by connection with a vacuum source or exposure to the atmosphere at the time of engagement of the socket 12 and the plug 13, gas is exhausted from the sealed slit 11. Thus a package processing system suitable for processing of packages with a holder can be obtained.

Description

【発明の詳細な説明】 (産業上の利用分野) 本発明は、所謂「ほかまjと称される容器ホルダに容器
を嵌入させ、このホルダ付容器群をラインに載せて処理
するのに好適な容器処理システムに関するものである. (従来の技術) 従来、たとえば断面形状が楕円形等の変形容器に対して
充填、打栓等の各種処理を施すに際し、容器の方向付け
やセンタリングの便を得るべく、上述した容器ホルダに
容器を嵌挿して処理ラインに載せるようにしている。
[Detailed Description of the Invention] (Industrial Application Field) The present invention is suitable for fitting a container into a container holder called a holder and placing a group of containers with this holder on a line for processing. (Prior Art) Conventionally, when carrying out various processes such as filling and stoppering on deformed containers having an oval cross-sectional shape, it has been difficult to orient and center the containers. In order to obtain this, the container is inserted into the above-mentioned container holder and placed on the processing line.

しかしながら、一般的にこの容器ホルダは樹脂製ボディ
に特定容器形状に適合した支丞孔を具備するため、異種
容器への兼用が困難であって、ボディ平面上に容器断面
形状をクロスさせるようにして複数の容器支承孔を穿設
したとしても、せいぜい2種容器に兼用させ得るに過ぎ
ないのが実情であった. (発明が解決しようとする課題) 従来の容器処理システムは、上述のように容器ホルダの
兼用が困難で、予め多種のホルダを準備しなくてはなら
ない不便さを有しており、しかもホルダの上記支丞孔と
容器との間には嵌合のためのクリアランスを必要とする
ため、ホルダによる容器の支丞状態にはガタが伴い、こ
のホルダ付容器に対して充填あるいは打栓等の処理操作
を施すに際しては容器ネックを別途に保持するホールド
機構を要するという欠点を有していた。
However, since this container holder generally has a support hole that matches the shape of a specific container in its resin body, it is difficult to use it for different types of containers, and the cross-sectional shape of the container must be crossed on the plane of the body. Even if multiple container support holes were drilled in a container, the reality was that the container could only be used for two types of containers at most. (Problems to be Solved by the Invention) As mentioned above, conventional container processing systems have the inconvenience of having to prepare multiple types of holders in advance, as it is difficult to use multiple container holders. Since a clearance is required between the support hole and the container for fitting, there is some looseness when the container is supported by the holder, and the container with the holder cannot be filled or capped. This method has the disadvantage that a separate holding mechanism for holding the container neck is required for operation.

本発明は叙上の問題点に鑑み、比較的簡便な構成により
多種容器への適合を可能ならしめるととも(、ホルダに
よる容器の支承状態に伴うガタを極力減じさせ、したが
って上述した容器ネックのホールド機構等を要しないホ
ルダ付容器群の容器処理システムを提供することを目的
としている。
In view of the above-mentioned problems, the present invention has a relatively simple structure that allows it to be adapted to a wide variety of containers (and also reduces as much as possible the backlash that accompanies the state in which the container is supported by the holder, thereby reducing the neck of the container described above). The object of the present invention is to provide a container processing system for a group of containers with a holder that does not require a holding mechanism or the like.

〔課題を解決するための手段〕[Means to solve the problem]

本発明においては、上記目的を達成するため、供給され
たホルダ内に容器を嵌入させ、これらホルダ付容器群を
搬送ラインに沿わせた充填機、打栓機等の容器処理装置
に供給するとともに、処理後の容器群を各ホルダから抜
取って排出させる容器処理システムにおいて、上記ホル
ダを外枠とそれの内側に封11HIJ間を画成して取着
したダイヤフラム部と(より構成し、上記搬送ラインに
は、上記ホルダ付容器群と接Illて該各ホルダの封蟇
陣間(対し加圧気体の封入あるいは排出作動を行う給排
気セクションを配備したことを特徴としている。
In order to achieve the above object, in the present invention, containers are fitted into supplied holders, and these containers with holders are supplied to container processing equipment such as a filling machine and a capping machine along a conveyance line. , a container processing system in which a group of containers after processing is extracted from each holder and discharged; The transport line is characterized by being provided with an air supply/exhaust section that is in contact with the group of containers with holders and performs an operation of filling or discharging pressurized gas between the sealing spaces of each holder.

〔作用〕[Effect]

本発明に係る容器処理システムによれば、ホルダが外枠
とこれに封塞陣間を介して取着したダイヤフラム部とに
より構威されているため、適用容器に応じてこのダイヤ
プラム部を他の異なる容器支丞孔形状のものに取替えた
り、あるいは該ダイヤプラム部の容器支丞孔形状を、こ
れを挟んで設けたべローズ等の加圧変形部材により加圧
変形させて異なる容器形状に適合させるなどして、上記
ホルダの多種容器への適応を可能ならしめ得るとともに
、このホルダを嵌挿させた容器群の搬送ラインには、該
各ホルダの封塞陳間に対して加圧気体を給排する給排気
セクションを配備しているため、この給排気セクション
で上記各ホルダに対してなされる圧気の給排作動調整に
より、上記ダイヤフラム部の容器支丞孔形状を適用容器
に合致させた正確な形状に保持させるようにする該ダイ
ヤプラム部の整形維持機能、あるいは該ダイヤフラム部
で適用容器の外周を密着掴持させるようじする該ダイヤ
プラム部によるグリップ機能をホルダに付与することが
でき、したがってこのシステムによれば容器をホルダ内
にガタなく嵌挿させてその処理時にはネックグリッパ等
を要することなく確実に保持させることができる. 〔実施例〕 以下、図示実施例について本発明を説明する.第2図お
よび第3図に示すようじ1ホルダ(1)は合成樹脂製の
外枠(2)とその内側に取付けた軟質合威樹脂あるいは
硬質ゴムから成るダイヤフラム部(3)とによって構成
される。上記外枠(1)は適用容器(4)の断面形状に
対して所要の余裕を有する支丞孔(5)を備え、数種類
の容器に共通使用できるように構成され、該支承孔(5
)の底部中央には例えば図示しない搬送コンベヤの表面
に形成されている突起に保合可能なセンタリング底穴(
5a)が設けられている.一方、ダイヤプラム部(3)
は特定容器に適合するような支承孔(6)が形成され、
外枠(1)上に抑え板(7)およびねじ(8)を介して
着脱可能に取付けられる.なお、(9)および(lO)
はこのダイヤフラム部(3)と外枠(1)の上面および
底孔(5a)との間に設けられたシールを示し、これら
シール(9) . (10)で封止されて外枠(1)と
ダイヤフラム郎(3)の支丞孔(6)との間に封塞陣間
(11)が画威されている. 然して、上記外枠(1) k:は配管接続用の逆止弁付
ソケット(12)が上記封MK間(11)に連通させて
ー側に設けられており、このソケット(12)に接続可
能な逆止弁付ブラグ(13)を複数個備えた圧気給排部
(14)がホルダ(1)の所定数のものに対して接離可
能に設置される。そして、これらホルダ(1)の封塞陣
間(1工)に対する圧気の給排操作は容器処理ライン上
の給排気セクションで下記の如く、この実施例では加圧
セクションと排気セクションとで分離して実施される。
According to the container processing system according to the present invention, since the holder is constituted by the outer frame and the diaphragm part attached to the outer frame through the sealing ring, the diaphragm part can be attached to other parts depending on the container to which it is applied. The shape of the container support hole in the diaphragm can be changed to one with a different container support hole shape, or the shape of the container support hole in the diaphragm can be deformed under pressure using a pressure deformation member such as a bellows provided between the diaphragm parts to adapt to a different container shape. In addition, the holder can be adapted to a wide variety of containers, and pressurized gas is supplied to the sealing area of each holder in the conveyance line for the group of containers into which this holder is fitted. Since a supply/exhaust section is provided, the shape of the container support hole in the diaphragm part can be matched to the applicable container by adjusting the supply/exhaust operation of pressurized air to each of the holders in this supply/exhaust section. The holder can be provided with a shaping maintenance function of the diaphragm part to hold it in an accurate shape, or a gripping function by the diaphragm part that allows the diaphragm part to closely grip the outer periphery of the applied container, Therefore, according to this system, the container can be inserted into the holder without play and can be held securely during processing without the need for a neck gripper or the like. [Examples] The present invention will be described below with reference to illustrated embodiments. The toothpick 1 holder (1) shown in Figures 2 and 3 consists of an outer frame (2) made of synthetic resin and a diaphragm part (3) made of soft synthetic resin or hard rubber attached to the inside of the outer frame (2). . The outer frame (1) is provided with a support hole (5) having a necessary margin for the cross-sectional shape of the applicable container (4), and is configured so that it can be used commonly for several types of containers.
) has a centering bottom hole (
5a) is provided. On the other hand, diaphragm part (3)
A bearing hole (6) is formed to fit a specific container,
It is removably attached to the outer frame (1) via a restraining plate (7) and screws (8). In addition, (9) and (lO)
9 indicates seals provided between this diaphragm portion (3) and the top surface and bottom hole (5a) of the outer frame (1), and these seals (9) . (10), and a blockade (11) is defined between the outer frame (1) and the support hole (6) of the diaphragm (3). However, the above-mentioned outer frame (1) k: is provided with a socket (12) with a check valve for connecting the piping on the side communicating with the above-mentioned sealing MK (11), and is connected to this socket (12). A pressurized air supply/discharge unit (14) equipped with a plurality of check valve-equipped plugs (13) is installed so as to be able to approach and separate from a predetermined number of holders (1). The operation of supplying and discharging pressurized air to and from the sealing section (1) of these holders (1) is carried out in the supply and exhaust section on the container processing line, as shown below. In this embodiment, the pressurization section and the exhaust section are separated. will be implemented.

すなわち、第1図に示すように、アンスクランブラ(1
5)から整列供給される容器群は、該アンスクランブラ
(15)に導入された空のホルダ(1)内にそれぞれ落
下嵌入して搬送ライン上を送られ、充填機(16)k:
至る前に矢印(17)で示す加圧セクションにおいて、
所定数のホルダ(1)に対して上述の圧気給排部(14
)が接離され、このときのソケット(12)とプラグ(
l3)の結合により各ホルダ(1)の封塞隙間(l1)
に減圧弁(18)を介し所定圧に制御導入された圧気が
封入される。したがって、上記ダイヤフラム部(3)は
所定圧で容器(4)をホルダ(1)内に確実C掴持し、
その後の充填am (16)、打栓機(l9)での処理
作業にネックグリッパ等を要することなく正確容易C作
業を行わせることができる。
That is, as shown in FIG.
The containers supplied in alignment from 5) fall into the empty holders (1) introduced into the unscrambler (15) and are sent on the conveyance line, and are sent to the filling machine (16) k:
In the pressurized section indicated by arrow (17) before reaching
The above-mentioned pressure air supply/discharge unit (14) is connected to a predetermined number of holders (1).
) are connected and separated, and the socket (12) and plug (
The sealing gap (l1) of each holder (1) is
Pressure air controlled to a predetermined pressure is introduced into the chamber via a pressure reducing valve (18). Therefore, the diaphragm part (3) securely holds the container (4) in the holder (1) at a predetermined pressure,
The subsequent filling operation (16) and capping machine (19) do not require a neck gripper or the like, and the C operation can be performed accurately and easily.

そして、処理作業終了後のホルダ付容器群には、処理ラ
イン上の矢印(20)で示す排気セクションにおいて次
の圧気給排部(l4)が接離され、ソケット(12)と
プラグ(13)との係合時にバキュウム源への接続もし
くは大気開放により上述の封塞陳間(11)からの排気
がなされる。次いで、圧気が排出されてダイヤフラム部
(3)による容器(4)のグリップが解除されたこれら
ホルダ付容器群は、ホルダ抜取機(21)においてホル
ダ(1)と容器(4)とに容易に分離されて容器(4)
は実線矢印のように次行程へ、またホルダ(1)は点線
矢印のようにアンスクランブラ(l5)に回送される。
Then, after the processing work is completed, the next pressurized air supply/discharge part (l4) is connected to and separated from the container group with the holder in the exhaust section indicated by the arrow (20) on the processing line, and the socket (12) and plug (13) When engaged, the above-mentioned sealing space (11) is evacuated by connection to a vacuum source or by opening to the atmosphere. Next, the containers with holders are easily separated into holders (1) and containers (4) by the holder extraction machine (21), from which the pressure has been discharged and the grip of the containers (4) by the diaphragm portion (3) has been released. Separated into containers (4)
is sent to the next step as shown by the solid line arrow, and the holder (1) is sent to the unscrambler (15) as shown by the dotted line arrow.

上述のように、ホルダ(1)の外枠(2)が共通部材で
あるのに対してダイヤフラム部(3)は各容器形状に適
合されたアタッチメントとして形威されるが、それらの
態様は、たとえば第4図に示すようにして行われる.同
図中、(a)は丸容器に対するダイヤプラム部(3)の
容器支承孔形状を示しており、(b)はより小径の丸容
器の場合、(C)は偏平容器、(d)は角容器の場合を
それぞれ示している。なお、同図(b)に示す小径丸容
器の場合には、矢印(22)で示すように、ダイヤフラ
ム部(3)の底部上に容器径に適合した凹入部を有する
底板(23)を挿入してホルダ長手方向のセンタリング
に役立てることができる, また、第5図(a)に示すように、ダイヤフラム部(3
)の支承孔(6)に容器形状に合致した湾曲部(24)
を設けたり、あるいは同図(b) に示すように断面V
字状の突起(25)を設けることにより容器の確実なセ
ンタリングを行うことが可能である.上述のようにこの
実施例においては、加圧気体の給排気セクションを容器
処理装置の上流側と下流側とに分割配置した加圧セクシ
ョン(17)と排気セクション(20)とより構威して
、これら両セクション間のホルダ(1)に容器(4)の
グリップ機能を付与できるようにしているが、必要に応
じ、例えばダイヤフラム部(3)の容器支承孔部分の可
撓性のレベルによっては、該ダイヤプラム部(3)に給
気による保形機能のみを付与すれば良い場合も生ずる。
As mentioned above, while the outer frame (2) of the holder (1) is a common member, the diaphragm part (3) is shaped as an attachment adapted to the shape of each container. For example, this is done as shown in Figure 4. In the figure, (a) shows the shape of the container support hole of the diaphragm part (3) for a round container, (b) shows the shape of the container support hole of the diaphragm part (3) for a round container with a smaller diameter, (C) shows a flat container, and (d) shows the shape of the container support hole for a round container. The cases of square containers are shown respectively. In addition, in the case of a small-diameter round container shown in FIG. 6(b), a bottom plate (23) having a recess corresponding to the container diameter is inserted on the bottom of the diaphragm (3) as shown by the arrow (22). In addition, as shown in Figure 5(a), the diaphragm part (3
) with a curved part (24) that matches the shape of the container in the support hole (6).
Or, as shown in the same figure (b), the cross section V
By providing the letter-shaped protrusion (25), it is possible to ensure centering of the container. As mentioned above, in this embodiment, the pressurized gas supply and exhaust section is composed of a pressurization section (17) and an exhaust section (20) that are divided into upstream and downstream sides of the container processing device. , the holder (1) between these two sections can be provided with a grip function for the container (4), but if necessary, for example, depending on the level of flexibility of the container support hole portion of the diaphragm portion (3). In some cases, it is sufficient to provide the diaphragm portion (3) only with a shape-retaining function by supplying air.

この場合には、上述の加圧セクション(17)および排
気セクション(20)は第1図のように配置することを
要せず、同図の点線示部分のようなホルダ(1)の供給
経路に給排気セクションとしてiケ所設け、ホルダ(1
)群の所要数のものC給気をすれば、該給気して整形さ
れたホルダ(1)群を循環させて作業終了後に上記給排
気セクションで排気させるようにすれば良い。
In this case, the above-mentioned pressurizing section (17) and exhaust section (20) do not need to be arranged as shown in FIG. Provide air supply and exhaust sections at i locations, and attach a holder (1
) After supplying air to the required number of groups, the holder (1) group that has been supplied with air and shaped may be circulated, and after the work is completed, the air can be exhausted in the air supply/exhaust section.

次に前述した実施例では、ホルダ(1)の樹脂製の外枠
(2)を共通部材とし、内部のダイヤフラム郎(3)を
その容器支丞孔形状を異にする複数種類のものに取替え
可能として多種容器に適合できるようにしているが、次
の第6図および第7図に示す第2の実施例においては、
外枠(2)内にベローズ等の給気により変形する一対の
加圧変形部材を設け、この加圧変形部材に吸気してこれ
社接触するダイヤフラム部(3)の容器支承孔形状を種
々変形させることにより、多種容器への適用を可能なら
しめるようにしている。つまり、この実施例のものは前
述したダイヤフラム部(3)の保形機能を得させる場合
に相当するものと言える.すなわち、第6図に示すよう
に、第2.3図の実施例のものに加えて、ダイヤフラム
部(3)の容器支承孔(6)に対して接触可能なように
、その長径方向に対向させて外枠(2)内に、第2のダ
イヤフラム部(26). (26)として構威された加
圧変形部材を設けている。このダイヤフラム部(28)
.  (26)へは、外枠(2)内に穿設された横方向
通路(27)および縦方向通路(28)を介して配管接
続用の第2の逆止弁付ソケット(29)から圧気の給排
が行われる。
Next, in the above-mentioned embodiment, the resin outer frame (2) of the holder (1) is used as a common member, and the internal diaphragm (3) is replaced with multiple types with different container support hole shapes. Although it is possible to adapt it to a wide variety of containers, in the second embodiment shown in FIGS. 6 and 7 below,
A pair of pressurized deformable members such as bellows that are deformed by supplied air are provided inside the outer frame (2), and the shape of the container support hole of the diaphragm portion (3) that comes into contact with this pressurized deformable member by drawing in air is variously modified. This makes it possible to apply it to a wide variety of containers. In other words, this embodiment corresponds to the case where the shape-retaining function of the diaphragm portion (3) described above is achieved. That is, as shown in FIG. 6, in addition to the embodiment shown in FIG. and the second diaphragm part (26). A pressure deformation member configured as (26) is provided. This diaphragm part (28)
.. (26) is supplied with pressurized air from a second socket with a check valve (29) for pipe connection via a horizontal passage (27) and a vertical passage (28) bored in the outer frame (2). is supplied and discharged.

したがって、この第2の実施例の場合には、ソケット(
12)から給気された圧気により第6図の横軸方向から
容器支丞孔(6)に及ぼされる加圧力と、前述した第2
のソケット(29)から給気されてダイヤフラム部(2
6). (26)を加圧変形させて第6図の縦軸方向か
ら加えられる加圧力とによって縦横から挾圧ざれ、容器
支丞孔(6)の形状は上記各加圧力の強弱の度合いに応
じ第7図(a)〜(f)に示すような種々の形状に変形
可能である。すなわち、同図(a)は給気零の楕円形、
(b)ないし(f)はそれぞれ縦横加圧力の変化Cより
、(b)は長方形、(c)は円形、(d)は偏平楕円、
(e)は長い菱形、(f)は菱形のような種々の断面形
状を適用容器に応じて選ぶことができる。
Therefore, in the case of this second embodiment, the socket (
12) applied to the container support hole (6) from the horizontal axis direction in FIG.
Air is supplied from the socket (29) of the diaphragm part (2
6). (26) is pressurized and deformed, and is compressed vertically and horizontally by the pressing force applied from the vertical axis direction in Fig. 6, and the shape of the container support hole (6) is determined according to the degree of strength of each pressing force. It can be deformed into various shapes as shown in FIGS. 7(a) to 7(f). In other words, the figure (a) shows an ellipse with zero supply air,
(b) to (f) are respectively based on the change in vertical and horizontal pressure force, (b) is a rectangle, (c) is a circle, (d) is an oblate ellipse,
Various cross-sectional shapes can be selected depending on the applicable container, such as (e) long rhombus and (f) rhombus.

この第2の実施例においては、上記構戒となっているた
め、ソケット(l2)およびソケット(29)からの給
気を適当な割合とすることにより適用容器の断面形状に
近似させた形状にホルダ(1)の容器支丞孔(6)形状
を選択変形することができる。
In this second embodiment, since the above-mentioned structure is adopted, the air supply from the socket (l2) and the socket (29) is adjusted to an appropriate ratio to create a shape that approximates the cross-sectional shape of the applicable container. The shape of the container support hole (6) of the holder (1) can be selectively modified.

なお、この第2の実施例の場合でも必要に応じダイヤフ
ラム部(3)にグリップ機能を次のよう(して付与する
こともできる。
Note that even in the case of this second embodiment, a gripping function can be provided to the diaphragm portion (3) as follows, if necessary.

予め縦方向および横方向からの加圧給気によりホルダ(
1)群の容器支丞孔形状を適用容器形状に適合させてか
ら、これらホルダ(1)群を第1図に示す容器処理ライ
ンに載せ、各ホルダ(1)のソケット(12)もしくは
ソケット(29)から追加給気を加圧セクション(l7
)において施し、また排気セクション(20)において
そのぶん排出させるなどして上記第1の実施例のホルダ
と同様の作用効果を達成させることができる。
The holder (
After adapting the shape of the container support hole of group 1) to the shape of the applicable container, these holders (1) group are placed on the container processing line shown in Fig. 1, and the sockets (12) or sockets ( 29) to the pressurizing section (l7).
), and by discharging it in the exhaust section (20), the same effect as the holder of the first embodiment can be achieved.

なお、ホルダ(1)の上記ソケット(12)から外枠(
2)とダイヤフラム部(3)との間の封11間(l1)
に圧気を給排するとき、この第2の実施例の場合は、該
封蒸陳間(11)は筒状をなす上記ダイヤプラム部(2
6). (211)によって図示の右側と左側とに分断
されるため,この分断された左右陣間を連通させるため
の連通路を例えば外枠(2)の底部内に穿設することが
望ましい。また、上述の例では可圧変形部材としてダイ
ヤフラム部(26)を設けているが、これをベローズあ
るいはピストン構成などのものに替えても同効を期待す
ることができる.(発明の効果) 以上述べたように、本発明によれば、多種容器への適合
を可能ならしめるホルダを用い、このホルダによるガタ
のない容器保持を行わせ得るようにし、これによりホル
ダ付容器群の処理に好通な容器処理システムを提供する
ことができる.
Note that the outer frame (
2) and the seal 11 (l1) between the diaphragm part (3)
When supplying and discharging pressurized air, in the case of this second embodiment, the sealing space (11) is connected to the diaphragm portion (2
6). (211) into the right side and left side as shown in the figure, it is desirable to provide a communication path, for example, in the bottom of the outer frame (2) to communicate between the divided left and right sides. Further, in the above example, the diaphragm portion (26) is provided as the pressurizably deformable member, but the same effect can be expected even if this is replaced with a bellows or piston structure. (Effects of the Invention) As described above, according to the present invention, a holder that can be adapted to various types of containers is used, and the container can be held without play by the holder. It is possible to provide a container processing system that is suitable for processing groups.

【図面の簡単な説明】[Brief explanation of drawings]

図はいずれも本発明の実施例を示すものであって、第1
図は容器処理システムを示す説明図、第2図は容器を嵌
挿したホルダとそれへの圧気給排部とを示す一部破断側
面図、第3図はその平面図、第4図(a) . (b)
 , (c) . (d)はホルダに取付けられるダイ
ヤフラムの容器支承孔を容器形状に応じてそれぞれ示す
平面図、第5図(a) , (b)はダイヤフラムの容
器支承孔に設けられるセンタリング保持手段をそれぞれ
示す平面図、第6図は本発明の第2の実施例を示す第3
図相当図、第7図はこの第2の実施例(よって変形可能
なホルダ容器支丞孔形状の変化例を示す説明図である。 (1)・・・ホルダ、 (2)・・・外枠、 (3)・・・ダイヤフラム部、 (4)・・・容器、 (11)・・・封蒸隙間、 (16)・・・充填機、 (17)・・・加圧セクション、 (19)・・・打栓機、 (20)・・・排気セクション。
All figures show embodiments of the present invention, and the first
The figure is an explanatory diagram showing a container processing system, Figure 2 is a partially cutaway side view showing a holder into which a container is fitted and a pressurized air supply/discharge part to the holder, Figure 3 is a plan view thereof, and Figure 4 (a). ). (b)
, (c). (d) is a plan view showing the container support hole of the diaphragm attached to the holder according to the container shape, and FIGS. 5(a) and (b) are plan views each showing the centering holding means provided in the container support hole of the diaphragm. FIG. 6 is a third embodiment showing a second embodiment of the present invention.
FIG. 7 is an explanatory diagram showing an example of a change in the shape of the deformable holder container support hole. (1)...Holder, (2)...Outside Frame, (3)...Diaphragm part, (4)...Container, (11)...Sealing gap, (16)...Filling machine, (17)...Pressure section, (19)... )...Pottering machine, (20)...Exhaust section.

Claims (1)

【特許請求の範囲】[Claims] 供給されたホルダ内に容器を嵌入させ、これらホルダ付
容器群を搬送ラインに沿わせた充填機、打栓機等の容器
処理装置に供給するとともに、処理後の容器群を各ホル
ダから抜取って排出させる容器処理システムにおいて、
上記ホルダを外枠とそれの内側に封塞隙間を画成して取
着したダイヤフラム部とにより構成し、上記搬送ライン
には、上記ホルダ付容器群と接離して該各ホルダの封塞
隙間に対し加圧気体の封入あるいは排出作動を行う給排
気セクションを配備したことを特徴とする容器処理シス
テム。
The containers are fitted into the supplied holders, and the containers with holders are fed to container processing equipment such as filling machines and capping machines along the conveyance line, and the processed containers are extracted from each holder. In a container processing system that discharges
The holder is constituted by an outer frame and a diaphragm portion attached to the outer frame defining a sealing gap inside the holder, and the conveyance line is provided with a sealing gap between each holder in contact with and separating from the group of containers with holders. A container processing system characterized by being equipped with an air supply/exhaust section for filling or discharging pressurized gas into a container.
JP23416489A 1989-09-08 1989-09-08 Container processing system Expired - Fee Related JP2762126B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP23416489A JP2762126B2 (en) 1989-09-08 1989-09-08 Container processing system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP23416489A JP2762126B2 (en) 1989-09-08 1989-09-08 Container processing system

Publications (2)

Publication Number Publication Date
JPH0398826A true JPH0398826A (en) 1991-04-24
JP2762126B2 JP2762126B2 (en) 1998-06-04

Family

ID=16966666

Family Applications (1)

Application Number Title Priority Date Filing Date
JP23416489A Expired - Fee Related JP2762126B2 (en) 1989-09-08 1989-09-08 Container processing system

Country Status (1)

Country Link
JP (1) JP2762126B2 (en)

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5687874A (en) * 1995-02-14 1997-11-18 Kao Corporation Device for holding article
EP2615047A1 (en) * 2012-01-16 2013-07-17 Krones Aktiengesellschaft Carrier element for articles or containers
JP2014091554A (en) * 2012-11-02 2014-05-19 Daizo:Kk Container holder
EP3594134A1 (en) * 2018-07-12 2020-01-15 IWK Verpackungstechnik GmbH Tube holder for a tube filling machine
US10676221B2 (en) 2015-07-10 2020-06-09 Tetra Laval Holdings & Finance S.A. Assembly and method for handling packaging containers
US11040832B2 (en) 2019-04-30 2021-06-22 The Unique Puck Company Multi-functional carrier puck
EP3904241A1 (en) * 2020-04-28 2021-11-03 The Unique Puck Company Multi-functional carrier puck

Cited By (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5687874A (en) * 1995-02-14 1997-11-18 Kao Corporation Device for holding article
EP2615047A1 (en) * 2012-01-16 2013-07-17 Krones Aktiengesellschaft Carrier element for articles or containers
CN103204381A (en) * 2012-01-16 2013-07-17 克罗内斯股份公司 Carrier Element For Articles Or Containers
CN103204381B (en) * 2012-01-16 2015-07-29 克罗内斯股份公司 For the load-carrying unit of article or container
JP2014091554A (en) * 2012-11-02 2014-05-19 Daizo:Kk Container holder
US10676221B2 (en) 2015-07-10 2020-06-09 Tetra Laval Holdings & Finance S.A. Assembly and method for handling packaging containers
EP3594134A1 (en) * 2018-07-12 2020-01-15 IWK Verpackungstechnik GmbH Tube holder for a tube filling machine
DE102018005511A1 (en) * 2018-07-12 2020-01-16 Iwk Verpackungstechnik Gmbh Tube holder for a tube filling machine
US11713150B2 (en) 2018-07-12 2023-08-01 Iwk Verpackungstechnik Gmbh Tube holder for a tube-filling machine
US11040832B2 (en) 2019-04-30 2021-06-22 The Unique Puck Company Multi-functional carrier puck
EP3904241A1 (en) * 2020-04-28 2021-11-03 The Unique Puck Company Multi-functional carrier puck

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