JP2008001423A - Two-part mixing delivery pack - Google Patents

Two-part mixing delivery pack Download PDF

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Publication number
JP2008001423A
JP2008001423A JP2006198744A JP2006198744A JP2008001423A JP 2008001423 A JP2008001423 A JP 2008001423A JP 2006198744 A JP2006198744 A JP 2006198744A JP 2006198744 A JP2006198744 A JP 2006198744A JP 2008001423 A JP2008001423 A JP 2008001423A
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Japan
Prior art keywords
container
mixing
nozzle
product container
components
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Pending
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JP2006198744A
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Japanese (ja)
Inventor
Katsuhiro Baba
勝広 馬場
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SANKYO YAKUHIN KK
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SANKYO YAKUHIN KK
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Priority to JP2006198744A priority Critical patent/JP2008001423A/en
Publication of JP2008001423A publication Critical patent/JP2008001423A/en
Pending legal-status Critical Current

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Abstract

<P>PROBLEM TO BE SOLVED: To aim at the reduction of manufacturing costs and an environmental load due to waste by excluding waste of the material of a container. <P>SOLUTION: A product container and a nozzle in which a mixing mechanism is built are made into one piece from a film material. Thereby, since the number of parts is only two items which are the container and a mixer of a mixing part, the structure is simple. The volume of the product container after use can be reduced by making the section of the product container into a tube structure. <P>COPYRIGHT: (C)2008,JPO&INPIT

Description

本発明は、2つの液状合成樹脂成分からなる反応型接着剤、塗料或いは封止材の製品容器に関する。  The present invention relates to a product container of a reactive adhesive, paint or sealing material comprising two liquid synthetic resin components.

従来、2つの液状合成樹脂成分を配合する事で固化するエポキシ樹脂、ウレタン樹脂、アクリル樹脂及びシリコン樹脂などの反応型接着剤、塗料或いは封止材は使用時に計量し配合する必要がある。この作業を正確に効率よく行うには混合吐出機を使用するのが有効である。  Conventionally, reactive adhesives such as epoxy resins, urethane resins, acrylic resins and silicone resins, paints or sealing materials that are solidified by blending two liquid synthetic resin components must be weighed and blended during use. In order to perform this work accurately and efficiently, it is effective to use a mixed discharge machine.

混合吐出機は、主に大量消費用専用機械と製品容器自体に混合吐出機能を持たせた少量消費用とがある。製品容器に混合吐出機能を持たせる場合、各成分を配合比率に一致した断面積を持つ独立したシリンダー構造の容器より各々ピストンで同時に押し出し、スタティックミキサーなど混合機構を持つノズル内を通過させ、吐出まで連続して行う。これにより配合比誤りや混合不足などの原因による接着不良を防止しできるものである。  The mixing and discharging machine is mainly classified into a dedicated machine for mass consumption and a small quantity consumption in which the product container itself has a mixing and discharging function. When a product container has a mixing and discharging function, each component is extruded from a container with an independent cylinder structure with a cross-sectional area that matches the blending ratio with each piston and passed through a nozzle with a mixing mechanism such as a static mixer. To continue. As a result, it is possible to prevent adhesion failure due to a cause such as a mixing ratio error or insufficient mixing.

以上に述べた従来の混合吐出機能を持つ製品容器は、容器本体が硬質プラスチック素材などによるシリンダー、ピストン、キャップなど部品点数が多く、形状も複雑である。これに別途で製造されたスタティックミキサーなどの混合機構を内臓したノズルを使用時に取り付けるものであるため容器全体のコストが高い。しかしながら使用後は容器容量そのままにすべて不要となり廃棄物となるので容器材料の無駄が多い。  The conventional product containers having the mixing and discharging function described above have a large number of parts such as cylinders, pistons, caps and the like made of a hard plastic material, and are complicated in shape. In addition, since a nozzle incorporating a mixing mechanism such as a static mixer manufactured separately is attached at the time of use, the cost of the entire container is high. However, after use, all of the container capacity is no longer necessary and becomes waste, so the container material is wasted.

本発明は、混合吐出機能のメリットはそのままに容器及び混合機構であるスタティックミキサーの構造を簡素化し、容器製造コストの低減と廃棄物による環境負荷の低減を目的とするものである。  An object of the present invention is to simplify the structure of a container and a static mixer, which is a mixing mechanism, while maintaining the merit of the mixing and discharging function, and to reduce the manufacturing cost of the container and the environmental load due to waste.

本発明は上記目的を達成する為に、製品容器を合成樹脂単一又は、金属との複層からなる屈曲性に優れるが伸縮し難いフィルム素材を使用し、加熱溶着することで成型したチューブ構造とするものである。  In order to achieve the above object, the present invention uses a tube structure formed by heat-welding a product container using a film material that is excellent in flexibility but is not easily stretchable but is composed of a single layer of synthetic resin or a multilayer with metal. It is what.

容器をチューブ構造とし、成分を搾り出して使用する事で使用後の容器の嵩を縮小させる事が出来る。  By making the container into a tube structure and squeezing and using the components, the volume of the container after use can be reduced.

また、混合機構であるスタティックミキサーを製品容器と一体化させる事で容器全体の簡素化とコスト低減を図る構造としたものである。  In addition, by integrating a static mixer, which is a mixing mechanism, with the product container, the entire container is simplified and the cost is reduced.

本発明の作用は次の通りである。ノズルとは反対側の容器末端より平行した2つのチューブを同時に残渣の無いよう搾る。これにより設定された配合比で搾り出される2つの成分は混合機構であるスタティックミキサーを通過し、均一に混合された状態で吐出口より吐出される。  The operation of the present invention is as follows. Squeeze the two tubes parallel to the end of the container opposite to the nozzle at the same time without any residue. Thus, the two components squeezed out with the set blending ratio pass through the static mixer, which is a mixing mechanism, and are discharged from the discharge port in a uniformly mixed state.

使用済みの空容器は混合機構であるスタティックミキサー部分を除き、ほぼ平坦な屈曲性に富んだ板状になる。  Except for the static mixer part which is a mixing mechanism, the used empty container becomes a substantially flat plate having a high flexibility.

上述したように本発明の混合パックは、2つの成分の正確な配合比と充分な混合を得ながらも、容器構造は単純で構成部品点数もわずか2点であることより低コストの容器とすることが出来るので結果として製品価格の低減に寄与するものである。  As described above, the mixing pack of the present invention is a low-cost container because the container structure is simple and the number of component parts is only two, while obtaining an accurate blending ratio and sufficient mixing of the two components. As a result, the product price can be reduced.

また、使用済みの容器は中に空間を持たない最小の容量で尚且つ屈曲性に飛んでいる為廃棄物の容量を最小にすることが出来る。  In addition, since the used container has a minimum capacity that does not have a space in it and is flying flexibly, the capacity of the waste can be minimized.

発明の実施するための最良の形態BEST MODE FOR CARRYING OUT THE INVENTION

以下、本発明の実施の形態を図1〜図5に基づいて説明する。  Hereinafter, embodiments of the present invention will be described with reference to FIGS.

図においては、1は合成樹脂単体又はアルミなど金属との複層構造のフィルム素材を加熱溶着により成型した配合比が主剤2部対硬化剤1部の容器例であり、未充填の状態である。  In the figure, 1 is an example of a container in which a blending ratio obtained by heating and welding a film material having a multilayer structure with a synthetic resin alone or a metal such as aluminum is 2 parts main agent to 1 part curing agent, and is in an unfilled state. .

図においては、2は混合機構であるスタティックミキサーであり、容器成型時に組み込んだものである。  In the figure, reference numeral 2 denotes a static mixer which is a mixing mechanism, which is incorporated at the time of container molding.

図においては、3はA成分充填部とB成分充填部の断面図であり、充填部のほぼ全長にわたり断面積の変らない平行したチューブ形状且つ設定された配合比と一致した断面積を持たせる寸法とする。  In the figure, 3 is a cross-sectional view of the A component filling portion and the B component filling portion, and has a parallel tube shape in which the cross-sectional area does not change over the entire length of the filling portion and a cross-sectional area that matches the set blending ratio. Dimension.

A成分とB成分は設定された配合比と一致した容量を充填した外観図である。端部より充填し、加熱溶着によりシールする。少量充填のシール例は図4であり、多量の場合のシール例は図5である。  A component and B component are the external views with which the capacity | capacitance corresponded to the set compounding ratio was filled. Fill from the end and seal by heat welding. FIG. 4 shows an example of a seal with a small amount, and FIG. 5 shows an example of a seal with a large amount.

保管時及び使用前は図1の*の部分で180度折り曲げ、又はクリップなどで挟みA、B成分の接触を防止する。  During storage and before use, the portion of * in FIG. 1 is bent 180 degrees or sandwiched between clips to prevent contact between components A and B.

使用時はノズル先端を切除開封し、且つ*部分を開放する。  During use, the tip of the nozzle is cut open and the * part is opened.

ノズルとは反対側の容器端部から指または2本の棒などで挟みA、B成分とも残渣が残らないように丁寧且つ同時に搾る。  Squeeze from the end of the container opposite to the nozzle with fingers or two sticks and squeeze carefully and at the same time so that no residues remain in the A and B components.

A、B成分は設定された配合比率で混合機構内を通過し、均一に混合された状態でノズルより吐出される。  The A and B components pass through the mixing mechanism at a set mixing ratio, and are discharged from the nozzle in a uniformly mixed state.

フィルム素材による容器例の外観図(未充填状態)  Appearance of container example with film material (unfilled state) チューブ状フィルム素材による容器例の外観図(未充填状態)  External view of container example with tube-shaped film material (unfilled state) ノズル混合機構部拡大図  Enlarged view of nozzle mixing mechanism 成分充填場所の構造説明図  Structure explanatory diagram of component filling place 充填量が少量の場合の容器末端溶着の例  Example of container end welding when the filling amount is small 充填量が多量の場合の容器末端溶着の例  Example of container end welding when the filling amount is large

Claims (1)

2種類の液状合成樹脂成分からなる反応型接着剤、塗料或いは封止材を混合吐出する為の製品容器と2種類の成分の混合機構を一体化したフィルム素材のチューブ容器。  A tube container made of a film material in which a reaction container composed of two kinds of liquid synthetic resin components, a product container for mixing and discharging a paint or a sealing material, and a mixing mechanism of two kinds of components are integrated.
JP2006198744A 2006-06-22 2006-06-22 Two-part mixing delivery pack Pending JP2008001423A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2006198744A JP2008001423A (en) 2006-06-22 2006-06-22 Two-part mixing delivery pack

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2006198744A JP2008001423A (en) 2006-06-22 2006-06-22 Two-part mixing delivery pack

Publications (1)

Publication Number Publication Date
JP2008001423A true JP2008001423A (en) 2008-01-10

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Application Number Title Priority Date Filing Date
JP2006198744A Pending JP2008001423A (en) 2006-06-22 2006-06-22 Two-part mixing delivery pack

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JP (1) JP2008001423A (en)

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