JP3201238U - Three-dimensional color glare pattern container with high cold and heat insulation effect - Google Patents

Three-dimensional color glare pattern container with high cold and heat insulation effect Download PDF

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JP3201238U
JP3201238U JP2015004724U JP2015004724U JP3201238U JP 3201238 U JP3201238 U JP 3201238U JP 2015004724 U JP2015004724 U JP 2015004724U JP 2015004724 U JP2015004724 U JP 2015004724U JP 3201238 U JP3201238 U JP 3201238U
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李坤▲テツ▼
李坤穆
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李坤▲テツ▼
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Abstract

【課題】保冷・保温効果が高い立体カラーグレアパターンの容器を提供する。【解決手段】保冷・保温効果が高い立体カラーグレアパターンの容器は、容器本体内層1と、容器本体内層1と結合された立体カラーグレアパターン外層2とを含む。容器本体内層1は、中空微小球12が混合された射出プラスチック材料11からなる。立体カラーグレアパターン外層2は、発泡底材層21、底材層22、反射性層23、印刷層24及び凹凸パターン25を含み、発泡底材層21、底材層22、反射性層23が順次積層されて一体化され、発泡底材層21、底材層22及び反射性層23が結合一体化された後、凹凸パターン25が熱圧着される。印刷層22は、凹凸パターン25が形成された後に、反射性層23上に積層される。【選択図】図1A container having a three-dimensional color glare pattern having a high effect of cooling and keeping warm is provided. A container having a three-dimensional color glare pattern having a high effect of cooling and keeping warm includes a container main body inner layer 1 and a three-dimensional color glare pattern outer layer 2 combined with the container main body inner layer 1. The container body inner layer 1 is made of an injection plastic material 11 mixed with hollow microspheres 12. The three-dimensional color glare pattern outer layer 2 includes a foam bottom material layer 21, a bottom material layer 22, a reflective layer 23, a printed layer 24, and an uneven pattern 25, and the foam bottom material layer 21, the bottom material layer 22, and the reflective layer 23 include After the laminated bottom material layer 21, the bottom material layer 22, and the reflective layer 23 are combined and integrated, the uneven pattern 25 is thermocompression bonded. The printing layer 22 is laminated on the reflective layer 23 after the concave / convex pattern 25 is formed. [Selection] Figure 1

Description

本考案は、容器に関し、特に、保冷・保温効果が高い立体カラーグレアパターンの容器に関する。   The present invention relates to a container, and in particular, to a container having a three-dimensional color glare pattern that has a high effect of cooling and keeping warm.

発泡スチロールは、石油を精製して得たポリスチレン(polystyrene:PS)に発泡材を加え、加熱製造した材料である。発泡スチロールは、体積の90〜95%が空気であるため、軽量、低吸水性、高衝撃性、高保温、高断熱である特長を有し、例えば、使い捨て食器、飲料容器、電気製品の衝撃吸収材など、様々な種類の包装材に広く応用される。   Styrofoam is a material obtained by heating a polystyrene foam (polystyrene: PS) obtained by refining petroleum. Styrofoam is characterized by lightness, low water absorption, high impact properties, high heat retention, and high heat insulation since 90 to 95% of the volume is air, for example, shock absorption of disposable tableware, beverage containers, and electrical products. Widely applied to various kinds of packaging materials such as wood.

しかし、発泡スチロールは自然環境で分解され難いため、廃棄された発泡スチロールを埋設処理することは適切でない上、発泡スチロールを加熱するとスチレンモノマーなどの有毒物質が発生し、体内に長期間蓄積されるとガンが発症する虞がある。
また、発泡スチロールの容器に酸性又は高温の飲み物が注ぎ入れられると、有毒物質が溶け出してガンが発症する危険性が高まる。そのため、ヨーロッパの多くの国では発泡スチロールの使用を全面的に禁止している。
However, because polystyrene foam is difficult to be decomposed in the natural environment, it is not appropriate to dispose of discarded polystyrene foam, and when the polystyrene foam is heated, toxic substances such as styrene monomer are generated, and if it accumulates in the body for a long time, the cancer There is a risk of developing it.
In addition, when an acidic or high-temperature drink is poured into a polystyrene foam container, the risk of toxic substances melting out and developing cancer increases. For this reason, the use of expanded polystyrene is completely prohibited in many European countries.

従来市販されている複合容器は、紙製容器の内壁面に、保冷、保温効果を有する発泡層が結合されている。しかし、このような複合容器の場合、発泡スチロール容器が受ける酸性又は過熱した液体により有毒物質が溶け出し、人体に害をおよぼす虞があった。また発泡層が紙製容器の内壁面に結合されているため、回収及び分別を行うことが困難である問題点を有する。   Conventionally commercially available composite containers have a foam layer having cold and heat retaining effects bonded to the inner wall surface of a paper container. However, in the case of such a composite container, the toxic substance may be dissolved by the acidic or superheated liquid received by the foamed polystyrene container, which may cause harm to the human body. In addition, since the foam layer is bonded to the inner wall surface of the paper container, there is a problem that it is difficult to collect and sort.

本考案の主な目的は、保冷・保温効果が高い容器を提供することにある。
本考案のもう一つの目的は、立体カラーグレアパターンの容器を提供することにある。
The main object of the present invention is to provide a container having a high effect of cooling and keeping warm.
Another object of the present invention is to provide a container having a three-dimensional color glare pattern.

上記課題を解決するための本考案の第1の形態によれば、容器本体内層と、前記容器本体内層と結合された立体カラーグレアパターン外層と、を含む、保冷・保温効果が高い立体カラーグレアパターンの容器であって、前記容器本体内層は、中空微小球が混合された射出プラスチック材料からなり、前記立体カラーグレアパターン外層は、発泡底材層、底材層、反射性層、印刷層及び凹凸パターンを含み、前記発泡底材層、前記底材層、前記反射性層が順次積層されて一体化され、前記発泡底材層、前記底材層及び前記反射性層が結合一体化された後、前記凹凸パターンが熱圧着され、前記印刷層は、前記凹凸パターンが形成された後に、前記反射性層上に積層されることを特徴とする、保冷・保温効果が高い立体カラーグレアパターンの容器が提供される。   According to the first aspect of the present invention for solving the above-mentioned problem, a solid color glare having a high temperature-retaining and heat-retaining effect, comprising a container body inner layer and a three-dimensional color glare pattern outer layer combined with the container body inner layer. The container body inner layer is made of an injection plastic material mixed with hollow microspheres, and the three-dimensional color glare pattern outer layer is a foam bottom material layer, a bottom material layer, a reflective layer, a printing layer, and Including a concavo-convex pattern, the foam bottom material layer, the bottom material layer, and the reflective layer are sequentially laminated and integrated, and the foam bottom material layer, the bottom material layer, and the reflective layer are combined and integrated. Thereafter, the uneven pattern is thermocompression-bonded, and the printed layer is laminated on the reflective layer after the uneven pattern is formed. Yong There is provided.

前記射出プラスチック材料は、ポリプロピレン(PP)、アクリロニトリル−ブタジエン−スチレン(ABS)、ポリスチレン(PS)、ポリカーボネート(PC)、アクリル(PMMA)又はEVA(Ethylenevinyl Acetate Copolymer)からなり、前記中空微小球は、二酸化ケイ素(SiO)及びAlが1400℃で高温焼成されて形成されることが好ましい。 The injection plastic material is made of polypropylene (PP), acrylonitrile-butadiene-styrene (ABS), polystyrene (PS), polycarbonate (PC), acrylic (PMMA), or EVA (Ethylene Vinyl Acetate Polymer), Silicon dioxide (SiO 2 ) and Al 2 O 3 are preferably formed by high-temperature firing at 1400 ° C.

前記発泡底材層は、前記射出プラスチック材料に対応したポリプロピレン発泡材、アクリロニトリル−ブタジエン−スチレン発泡材、ポリスチレン発泡材、ポリカーボネート発泡材、アクリル発泡材又はEVA発泡材からなり、前記底材層は、EVA又はポリプロピレンからなることが好ましい。   The foam bottom material layer is composed of a polypropylene foam material, acrylonitrile-butadiene-styrene foam material, polystyrene foam material, polycarbonate foam material, acrylic foam material or EVA foam material corresponding to the injection plastic material, It is preferably made of EVA or polypropylene.

本考案の保冷・保温効果が高い立体カラーグレアパターンの容器は、保冷・保温効果が高い上、立体的なカラーグレアパターンを提供する。   The three-dimensional color glare pattern container of the present invention having a high effect of cooling and keeping warm provides a three-dimensional color glare pattern as well as having a high effect of cooling and keeping warm.

本考案の一実施形態に係る保冷・保温効果が高い立体カラーグレアパターンの容器の断面拡大図である。1 is an enlarged cross-sectional view of a three-dimensional color glare pattern container having a high cold insulation effect according to an embodiment of the present invention. 本考案の一実施形態に係る保冷・保温効果が高い立体カラーグレアパターンの容器を製作するときの状態を示す断面図である。It is sectional drawing which shows a state when manufacturing the container of the solid color glare pattern with the high cool-and-heat-retaining effect which concerns on one Embodiment of this invention. 本考案の一実施形態に係る保冷・保温効果が高い立体カラーグレアパターンの容器を示す斜視図である。It is a perspective view which shows the container of the three-dimensional color glare pattern with the high cold-retaining / heat-retaining effect which concerns on one Embodiment of this invention.

以下、本考案の実施形態について図に基づいて説明する。なお、これによって本考案が限定されるものではない。   Hereinafter, embodiments of the present invention will be described with reference to the drawings. Note that the present invention is not limited thereby.

図1を参照する。図1は、本考案の一実施形態に係る保冷・保温効果が高い立体カラーグレアパターンの容器の断面拡大図である。図1に示すように、本考案の一実施形態に係る保冷・保温効果が高い立体カラーグレアパターンの容器は、容器本体内層1と、容器本体内層1と結合された立体カラーグレアパターン外層2と、を含む。   Please refer to FIG. FIG. 1 is an enlarged cross-sectional view of a container having a three-dimensional color glare pattern having a high effect of cooling and keeping warm according to an embodiment of the present invention. As shown in FIG. 1, a container with a three-dimensional color glare pattern having a high effect of cooling and keeping warm according to an embodiment of the present invention includes a container body inner layer 1 and a three-dimensional color glare pattern outer layer 2 combined with the container body inner layer 1. ,including.

容器本体内層1は、中空微小球12が混合された射出プラスチック材料11からなり、周壁内に含まれる中空微小球12により断熱し、保温・保冷効果を得る。   The container body inner layer 1 is made of an injection plastic material 11 in which hollow microspheres 12 are mixed, and is insulated by the hollow microspheres 12 included in the peripheral wall to obtain a heat retaining / cooling effect.

立体カラーグレアパターン外層2は、発泡底材層21、底材層22、反射性層23、印刷層24及び凹凸パターン25を含む。   The three-dimensional color glare pattern outer layer 2 includes a foam bottom material layer 21, a bottom material layer 22, a reflective layer 23, a printing layer 24, and an uneven pattern 25.

射出プラスチック材料11は、ポリプロピレン(PP)、アクリロニトリル−ブタジエン−スチレン(ABS)、ポリスチレン(PS)、ポリカーボネート(PC)、アクリル(PMMA)又はEVA(Ethylenevinyl Acetate Copolymer)からなる。   The injection plastic material 11 is made of polypropylene (PP), acrylonitrile-butadiene-styrene (ABS), polystyrene (PS), polycarbonate (PC), acrylic (PMMA), or EVA (Ethylenvinyl Acetate Polymer).

中空微小球12は、二酸化ケイ素(SiO)及びAlが1400℃で高温焼成されて形成される。 The hollow microspheres 12 are formed by high-temperature firing of silicon dioxide (SiO 2 ) and Al 2 O 3 at 1400 ° C.

発泡底材層21、底材層22、反射性層23、印刷層24は順次積層される。凹凸パターン25は、発泡底材層21、底材層22及び反射性層23が順次積層されて結合一体化された後、金型により熱圧すると、すでに積層されて一体化された発泡底材層21、底材層22及び反射性層23上に凹凸パターン25が形成される。印刷層24は、凹凸パターン25が形成された後に、反射性層23上に積層され、立体カラーグレアパターン効果を有する容器外層が形成される。   The foam bottom material layer 21, the bottom material layer 22, the reflective layer 23, and the printing layer 24 are laminated in order. The concavo-convex pattern 25 is obtained by sequentially laminating the foam bottom material layer 21, the bottom material layer 22 and the reflective layer 23 and combining and integrating them. An uneven pattern 25 is formed on the layer 21, the bottom material layer 22, and the reflective layer 23. After the concave / convex pattern 25 is formed, the printing layer 24 is laminated on the reflective layer 23 to form an outer container layer having a three-dimensional color glare pattern effect.

発泡底材層21は、射出プラスチック材料11の材料に対応した、ポリプロピレン発泡材、アクリロニトリル−ブタジエン−スチレン発泡材、ポリスチレン発泡材、ポリカーボネート発泡材、アクリル発泡材又はEVA発泡材からなってもよい。   The foam bottom material layer 21 may be made of a polypropylene foam material, an acrylonitrile-butadiene-styrene foam material, a polystyrene foam material, a polycarbonate foam material, an acrylic foam material or an EVA foam material corresponding to the material of the injection plastic material 11.

底材層22は、EVA又はポリプロピレンからなってもよい。   The bottom material layer 22 may be made of EVA or polypropylene.

反射性層23は、ポリエチレンテレフタレート(polyethylene terephthalate)からなるフィルムであり、表面に電解メッキにより形成された膜層により光反射機能を得てもよい。   The reflective layer 23 is a film made of polyethylene terephthalate, and a light reflecting function may be obtained by a film layer formed on the surface by electrolytic plating.

図2を参照する。図2は、本考案の一実施形態に係る保冷・保温効果が高い立体カラーグレアパターンの容器を製作するときの状態を示す断面図である。
本実施形態に係る保冷・保温効果が高い立体カラーグレアパターンの容器を実際に製作する際、まず、立体カラーグレアパターン外層2を形成してから、雌金型32のキャビティ321中に立体カラーグレアパターン外層2を形成し、続いて雄金型31と雌金型32とを結合し、中空微小球12が混合された射出プラスチック材料11を投入口322から注入し、雄金型31及び雌金型32を外すと、容器本体内層1の外側に立体カラーグレアパターン外層2が形成され、立体カラーグレアパターンを有して保冷・保温効果が高い容器4が完成する(図3参照)。
Please refer to FIG. FIG. 2 is a cross-sectional view illustrating a state in which a container having a three-dimensional color glare pattern having a high cold insulation / heat insulation effect according to an embodiment of the present invention is manufactured.
When actually manufacturing a container having a three-dimensional color glare pattern having a high effect of cooling and keeping warm according to the present embodiment, first, the three-dimensional color glare pattern outer layer 2 is formed, and then the three-dimensional color glare is formed in the cavity 321 of the female mold 32. The pattern outer layer 2 is formed, and then the male mold 31 and the female mold 32 are joined together, and the injection plastic material 11 mixed with the hollow microspheres 12 is injected from the inlet 322. When the mold 32 is removed, the three-dimensional color glare pattern outer layer 2 is formed on the outer side of the container main body inner layer 1, and the container 4 having the three-dimensional color glare pattern and having a high cold insulation and heat insulation effect is completed (see FIG. 3).

1 容器本体内層
2 立体カラーグレアパターン外層
4 容器
11 射出プラスチック材料
12 中空微小球
21 発泡底材層
22 底材層
23 反射性層
24 印刷層
25 凹凸パターン
31 雄金型
32 雌金型
321 キャビティ
322 投入口
DESCRIPTION OF SYMBOLS 1 Container body inner layer 2 Three-dimensional color glare pattern outer layer 4 Container 11 Injection plastic material 12 Hollow microsphere 21 Foam bottom material layer 22 Bottom material layer 23 Reflective layer 24 Printing layer 25 Concavity and convexity pattern 31 Male mold 32 Female mold 321 Cavity 322 Slot

Claims (3)

容器本体内層と、前記容器本体内層と結合された立体カラーグレアパターン外層と、を含む、保冷・保温効果が高い立体カラーグレアパターンの容器であって、
前記容器本体内層は、中空微小球が混合された射出プラスチック材料からなり、
前記立体カラーグレアパターン外層は、発泡底材層、底材層、反射性層、印刷層及び凹凸パターンを含み、前記発泡底材層、前記底材層、前記反射性層が順次積層されて一体化され、前記発泡底材層、前記底材層及び前記反射性層が結合一体化された後、前記凹凸パターンが熱圧着され、前記印刷層は、前記凹凸パターンが形成された後に、前記反射性層上に積層されることを特徴とする、
保冷・保温効果が高い立体カラーグレアパターンの容器。
A container having a three-dimensional color glare pattern having a high effect of cooling and keeping warm, comprising a container body inner layer and a three-dimensional color glare pattern outer layer combined with the container body inner layer,
The inner layer of the container body is made of an injection plastic material mixed with hollow microspheres,
The outer layer of the three-dimensional color glare pattern includes a foam bottom material layer, a bottom material layer, a reflective layer, a printed layer, and an uneven pattern, and the foam bottom material layer, the bottom material layer, and the reflective layer are sequentially laminated and integrated. After the foamed bottom material layer, the bottom material layer, and the reflective layer are combined and integrated, the concave / convex pattern is thermocompression bonded, and the printed layer is formed after the concave / convex pattern is formed. Characterized in that it is laminated on an adhesive layer,
A three-dimensional color glare pattern container with a high effect of cooling and heat insulation.
前記射出プラスチック材料は、ポリプロピレン(PP)、アクリロニトリル−ブタジエン−スチレン(ABS)、ポリスチレン(PS)、ポリカーボネート(PC)、アクリル(PMMA)又はEVA(Ethylenevinyl Acetate Copolymer)からなり、前記中空微小球は、二酸化ケイ素(SiO)及びAlが1400℃で高温焼成されて形成されることを特徴とする、請求項1に記載の保冷・保温効果が高い立体カラーグレアパターンの容器。 The injection plastic material is made of polypropylene (PP), acrylonitrile-butadiene-styrene (ABS), polystyrene (PS), polycarbonate (PC), acrylic (PMMA), or EVA (Ethylene Vinyl Acetate Polymer), The container of a three-dimensional color glare pattern having a high cold insulation and heat insulation effect according to claim 1, wherein silicon dioxide (SiO 2 ) and Al 2 O 3 are formed by high-temperature baking at 1400 ° C. 前記発泡底材層は、前記射出プラスチック材料に対応したポリプロピレン発泡材、アクリロニトリル−ブタジエン−スチレン発泡材、ポリスチレン発泡材、ポリカーボネート発泡材、アクリル発泡材又はEVA発泡材からなり、前記底材層は、EVA又はポリプロピレンからなることを特徴とする、請求項2に記載の保冷・保温効果が高い立体カラーグレアパターンの容器。   The foam bottom material layer is composed of a polypropylene foam material, acrylonitrile-butadiene-styrene foam material, polystyrene foam material, polycarbonate foam material, acrylic foam material or EVA foam material corresponding to the injection plastic material, The container having a three-dimensional color glare pattern having a high cold insulation and heat insulation effect according to claim 2, wherein the container is made of EVA or polypropylene.
JP2015004724U 2015-09-16 2015-09-16 Three-dimensional color glare pattern container with high cold and heat insulation effect Expired - Fee Related JP3201238U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20200034345A (en) * 2018-09-21 2020-03-31 (주)엘지하우시스 Insulating material for building and method of manufacturing the same

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20200034345A (en) * 2018-09-21 2020-03-31 (주)엘지하우시스 Insulating material for building and method of manufacturing the same

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