JP4189941B2 - Heat insulating container - Google Patents

Heat insulating container Download PDF

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Publication number
JP4189941B2
JP4189941B2 JP35283599A JP35283599A JP4189941B2 JP 4189941 B2 JP4189941 B2 JP 4189941B2 JP 35283599 A JP35283599 A JP 35283599A JP 35283599 A JP35283599 A JP 35283599A JP 4189941 B2 JP4189941 B2 JP 4189941B2
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JP
Japan
Prior art keywords
outer cylinder
paper cup
insulating container
heat insulating
cup body
Prior art date
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Expired - Lifetime
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JP35283599A
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Japanese (ja)
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JP2001171642A (en
Inventor
憲一 遠藤
秀貴 清水
勝弘 山縣
和弘 日高
幸博 鹿谷
恵一 関根
恭博 櫛田
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Dai Nippon Printing Co Ltd
Original Assignee
Dai Nippon Printing Co Ltd
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Priority to JP35283599A priority Critical patent/JP4189941B2/en
Publication of JP2001171642A publication Critical patent/JP2001171642A/en
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Description

【0001】
【発明の属する技術分野】
本発明は、インスタントラーメンなどの即席食品を入れるカップ状の容器に係り、特に熱湯を注いでそのまま食することのできる断熱性に優れた容器に関するものである。
【0002】
【従来の技術】
一般に、この種のカップ状をした断熱性容器としては、発泡ポリスチレンなどのプラスチック製のものが多用されてきたが、これらは廃棄した場合に公害問題になることから、これに代わるものとして、例えば実開平4−45212号公報に見られるように、胴部を二重にして断熱用の空隙を形成した紙製の断熱性容器が提案されている。
【0003】
【発明が解決しようとする課題】
従来の技術で述べた実開平4−45212号公報に記載の断熱性容器は、通常の紙カップに対してテーパーの異なった底なしの外筒を組み合わせるという簡単な構成により断熱効果を有するカップが得られるという利点がある。そして、断熱用の空隙が下方に行くほど大きくなっているので、通常の持ち方では良好な断熱効果を発揮する。しかしながら、上部寄りのところをつかんで持つ状態が長く続くと、断熱効果を発揮する空隙が無いか又は狭いので、段々と熱くなってくるという問題点がある。
【0004】
本発明は、上記のような問題点を解決するためになされたものであり、その目的とするところは、胴部のいずれの場所を手で持っても内容物の熱が伝わり難い優れた断熱性容器を提供することにある。
【0005】
【課題を解決するための手段】
上記目的を達成するために、本発明に係る断熱性容器は、上方開口縁に外向きカール部を有する上拡がりの紙カップ本体と、上方及び下方共に開口しており下方開口縁に内向きカール部を有する上拡がりの紙製の外筒とからなり、紙カップ本体の胴部上方には外側に突き出た拡大部分が周回方向に設けられており、外筒における内向きカール部にはその内側となるところの一部を除いて表面にOPニスが印刷されており、紙カップ本体に外筒を被せて外筒の上端部分を紙カップ本体における外向きカール部の内側に当接させるとともに外筒の内向きカール部を紙カップ本体の胴部下方にエマルジョン系接着剤で接着して両者を一体とすることにより形成され、紙カップ本体と外筒の間に空隙が形成されていることを特徴とするものである。
【0006】
【発明の実施の形態】
次に、いくつかの例を挙げながら本発明の実施形態について説明する。
【0007】
図1は本発明に係る断熱性容器の一例を示すもので、左半分及び右半分をそれぞれ正面図と断面図で示す概略構成図であり、同図の断熱性容器Cは、紙カップ本体10と上方及び下方共に開口した中空円筒状の外筒20とを組み合わせて構成されている。
【0008】
紙カップ本体10は、内面若しくは内外両面にポリエチレン等の合成樹脂をコーティングした紙からなるもので、通常の紙カップと同様に、扇形状のブランクを丸めた胴部11の下方に円形状の底板12を巻き締めると共に上方開口縁に外向きカール部13を形成したものであり、さらに胴部11の上方には外側に突き出した拡大部分14を設けてある。図示の例では段部aにより拡大部分14を構成している。また、紙カップ本体10の胴部11の中程には、外側に突出する周回方向の凸状部からなる補強リブ15を形成してある。なお、これらの拡大部分14や補強リブ15は、紙カップ本体10と外筒20とを組み合わせる前に、雄型と雌型を用いて紙カップ本体10に形成されるものである。
【0009】
一方、中空円筒状の外筒20は、紙単体若しくは片面又は両面にポリエチレン等の合成樹脂をコーティングした扇形状の紙からできており、胴部21の下方開口縁に内向きカール部22が形成されている。ここで、紙カップ本体10も外筒20も共に上拡がりであるが、この外筒20はその胴部21が紙カップ本体10の胴部11より裾が少し拡がったテーパーを有しており、さらに図示の例では外筒20の上端部分が全周に渡って内側に閉じる方向にテーパー状に曲げられており、その先端が紙カップ本体10の外向きカール部13の内側に当接する大きさになっている。なお、この上端部分23の曲げは、テーパー状に限るものではなく、湾曲状態に曲げられていてもよい。
【0010】
そして、紙カップ本体10に上記構成の外筒20を被せて差し込み、外筒20の上端部分23の先端を紙カップ本体10における外向きカール部13の内側に当接させるか食い込ませた状態にし、予め紙カップ本体10の下部付近の胴部外周面に塗布したエマルジョン系接着剤により、外筒20の内向きカール部22を紙カップ本体10の胴部11の下方に接着して両者を一体とすることにより図1に示す断熱性容器Cが形成されている。
【0011】
上記構成の断熱性容器Cにおいては、紙カップ本体10の胴部11と外筒20の胴部21の間に空隙が形成され、この空隙の部分が断熱作用を果たす。しかも、紙カップ本体10の胴部11の上方には外側に突き出た拡大部分14を周回方向に設けてあるので、下方からこの拡大部分14のところまで空隙がある程度の間隔で形成される。したがって、断熱性容器Cに熱湯を入れた場合、内側の胴部11の熱が外側の胴部21に伝わるのが広い範囲に渡って防止され、この種の容器において通常把持されるどの場所をつかんで持っても熱くなることがない。また、上記の例では紙カップ本体10の胴部11には外面側に突出する周回方向の凸状部からなる補強リブ15を形成してあるので、この補強リブ15により紙カップ本体10の強度が上がると共に、外筒20の胴部21が内側に撓まないように支えの役目を果たすので、手で持って力を入れた場合に紙カップ本体10の胴部11と外筒20の胴部21の間の空隙が狭くなるのが防止される。
【0012】
外筒20はその表面に商品名や絵柄などが印刷されるが、この印刷は原反に対して行われる。そして、この印刷済みの原反を打ち抜くことで扇形状のブランクが形成され、このブランクを丸めて胴貼りし、下方開口縁に内向きカール部22を形成することで外筒20が形成される。ここで、印刷した絵柄等を保護する意味もあるが、紙をカールをしやすくするため、通常は原反の印刷時に最外層にOPニスを印刷している。しかし、このOPニスはエマルジョン系接着剤をはじくので、外筒20の内向きカール部22を紙カップ本体10の胴部下方に接着することができない。エマルジョン系以外の接着剤を使用することも考えられるが、耐熱性や臭いの問題から、さらには扱いやすさの点から、現状では胴貼りに使用しているのと同じエマルジョン系接着剤を使用するのが望まれる。
【0013】
そこで、カールのしやすさと糊付けを両立させるため、図2に示すようなパターンでOPニス24を印刷したブランクBを使用する。すなわち、外筒20の内向きカール部22の内側となるところの一部を除いたパターンでOPニス24を印刷するのである。図2に例示したパターンは、ブランクBの下端に沿って矩形状の未塗布部分25を規則的に残している。実際には、紙カップ本体10の外周を一周してエマルジョン系接着剤を塗布し、そこに外筒20を被せるので、未塗布部分が少なくとも一部にあれば接着することができる。したがって、未塗布部分のパターンは任意でよく、また図2のように全周に渡って均等に残す必要はなく、要は外筒20における内向きカール部の内側となるところの一部にOPニスの未塗布部分があればよい。なお、図中26は胴貼り部となるところで、ここは当然にOPニスを塗工しない。
【0015】
図3は図1に示した断熱性容器の変形例を示すもので、この図3に示される断熱性容器Cは図1に示したものと略同じ構成をしているが、傾斜面bにより外側に突き出した拡大部分14を設けてある。
【0016】
図4は図1に示した断熱性容器の別の変形例を示すもので、この図4に示される断熱性容器Cは図1に示したものと略同じ構成をしているが、湾曲面cにより外側に突き出した拡大部分14を設けてある。
【0017】
図5は図1に示した断熱性容器のさらに別の変形例を示すもので、この図5に示される断熱性容器Cは図1に示したものと略同じ構成をしているが、外筒20の上端部分が全周に渡って内側に閉じる方向にテーパー状に曲げられておらず、真っ直ぐのままになっている。
【0018】
図6は図5に示した断熱性容器の変形例を示すもので、この図6に示される断熱性容器Cは図5に示したものと略同じ構成をしているが、傾斜面bにより外側に突き出した拡大部分14を設けてある。
【0019】
図7は図5に示した断熱性容器の別の変形例を示すもので、この図7に示される断熱性容器Cは図5に示したものと略同じ構成をしているが、湾曲面cにより外側に突き出した拡大部分14を設けてある。
【0020】
なお、本発明の断熱性容器は、印刷する文字や模様が外側へ浮きだして凸部分を形成するようにエンボス加工を施してなる板紙にて形成した外筒を用いてもよい。この凸部分は、すべての文字や模様の部分について形成する必要はなく、強調したい文字や模様のみにしてもよい。このような構成の断熱性容器は図1の断熱性容器Cと同様な断熱作用を発揮するが、特に凸部分では空隙が広いために断熱作用が大きくなる。
【0021】
また、本発明の断熱性容器は、外側となる面の全体に渡って微細なエンボス加工を施してなる板紙にて形成した外筒を用いてもよい。このような構成の断熱性容器は図1の断熱性容器Cと同様な断熱作用を発揮するが、紙カップ本体と外筒の間の空隙による断熱効果が発揮されるのに加え、外筒の表面の微細凹凸により持ちやすい上に手に熱が伝わりにくく、全体的に断熱効果が一層優れたものとなる。なお、エンボス加工による凹凸模様を外筒における胴部の全面に渡って形成してもよいし、凹凸模様を形成しない部分を一部に残した形態にしてもよい。例えば、手で持つ領域を考慮して胴部の上下に帯状に残してもよいし、またデザインを考慮して名前の部分などを模様状に残してもよい。
【0022】
【発明の効果】
本発明の断熱性容器は、上方開口縁に外向きカール部を有する上拡がりの紙カップ本体と、上方及び下方共に開口しており下方開口縁に内向きカール部を有する上拡がりの紙製の外筒とからなり、紙カップ本体の胴部上方には外側に突き出た拡大部分が周回方向に設けられており、外筒における内向きカール部にはその内側となるところの一部を除いて表面にOPニスが印刷されており、紙カップ本体に外筒を被せて外筒の上端部分を紙カップ本体における外向きカール部の内側に当接させるとともに外筒の内向きカール部を紙カップ本体の胴部下方にエマルジョン系接着剤で接着して両者を一体とすることにより形成され、紙カップ本体と外筒の間に空隙が形成されている構成としたので、胴部の下部から上部に至る広い範囲に渡って断熱用の空隙がある程度の間隔で形成されることから、胴部のいずれの場所を手で持っても内容物の熱が伝わりにくいという断熱性に優れたものとなる。
【0023】
また、外筒の上端部分を全周に渡って内側に閉じる方向に曲げた構成を採用することにより、空隙が大きくなり、断熱効果が一層優れたものとなる。
【図面の簡単な説明】
【図1】本発明に係る断熱性容器の一例を示すもので、左半分及び右半分をそれぞれ正面図と断面図で示す概略構成図である。
【図2】外筒のブランクでOPニスの塗工部分を示すための説明図である。
【図3】図1に示した断熱性容器の変形例を示すもので、左半分及び右半分をそれぞれ正面図と断面図で示す概略構成図である。
【図4】図1に示した断熱性容器の別の変形例を示すもので、左半分及び右半分をそれぞれ正面図と断面図で示す概略構成図である。
【図5】図1に示した断熱性容器のさらに別の変形例を示すもので、左半分及び右半分をそれぞれ正面図と断面図で示す概略構成図である。
【図6】図5に示した断熱性容器の変形例を示すもので、左半分及び右半分をそれぞれ正面図と断面図で示す概略構成図である。
【図7】図5に示した断熱性容器の別の変形例を示すもので、左半分及び右半分をそれぞれ正面図と断面図で示す概略構成図である。
【符号の説明】
C 断熱性容器
10 紙カップ本体
11 胴部
12 底板
13 外向きカール部
14 拡大部分
15 補強リブ
20 外筒
21 胴部
22 内向きカール部
23 上端部分
24 OPニス
25 未塗布部分
26 胴貼り部
a 段部
b 傾斜面
c 湾曲面
[0001]
BACKGROUND OF THE INVENTION
The present invention relates to a cup-shaped container for storing instant foods such as instant noodles, and more particularly to a container having excellent heat insulation properties that can be poured into hot water and eaten as it is.
[0002]
[Prior art]
Generally, plastic cups such as expanded polystyrene have been frequently used as this type of cup-shaped heat-insulating containers. However, since these become pollution problems when discarded, as an alternative, for example, As seen in Japanese Utility Model Laid-Open No. 4-45212, a paper heat insulating container has been proposed in which a body portion is doubled to form a heat insulating gap.
[0003]
[Problems to be solved by the invention]
The heat insulating container described in Japanese Utility Model Publication No. 4-45212 described in the prior art can obtain a cup having a heat insulating effect by a simple configuration in which a bottomless outer cylinder having a different taper is combined with a normal paper cup. There is an advantage. And since the space | gap for heat insulation becomes so large that it goes below, it will show a favorable heat insulation effect in the normal way of holding. However, there is a problem that if the state of grasping and holding the portion near the upper part continues for a long time, there is no gap or a narrow gap that exhibits a heat insulation effect, and the temperature gradually increases.
[0004]
The present invention has been made in order to solve the above-described problems, and the object of the present invention is to provide excellent heat insulation in which the heat of the contents is not easily transmitted regardless of where the body portion is held by hand. It is to provide a sex container.
[0005]
[Means for Solving the Problems]
In order to achieve the above object, a heat-insulating container according to the present invention includes an upwardly expanding paper cup body having an outwardly curled portion at an upper opening edge, and an inwardly curled portion at the lower opening edge. The paper cup main body is provided with an enlarged portion protruding outwardly in the circumferential direction above the body portion of the paper cup body, and the inwardly curled portion of the outer cylinder is inside thereof. The OP varnish is printed on the surface except for a part of the case, and the outer cylinder is put on the paper cup body so that the upper end portion of the outer cylinder is in contact with the inner side of the outward curl portion of the paper cup body and the inward of the outer cylinder. It is formed by adhering the curled part to the lower part of the body part of the paper cup body with an emulsion-based adhesive and integrating both, and a gap is formed between the paper cup body and the outer cylinder. .
[0006]
DETAILED DESCRIPTION OF THE INVENTION
Next, embodiments of the present invention will be described with some examples.
[0007]
FIG. 1 shows an example of a heat-insulating container according to the present invention, and is a schematic configuration diagram showing a left half and a right half in a front view and a cross-sectional view, respectively. The heat-insulating container C in FIG. It is configured by combining a hollow cylindrical outer cylinder 20 that is open both upward and downward.
[0008]
The paper cup main body 10 is made of paper whose inner surface or both inner and outer surfaces are coated with a synthetic resin such as polyethylene. Like a normal paper cup, a circular bottom plate 12 is provided below a body portion 11 in which a fan-shaped blank is rolled. The outer curled portion 13 is formed at the upper opening edge while being tightened, and an enlarged portion 14 protruding outward is provided above the trunk portion 11. In the illustrated example, the enlarged portion 14 is constituted by a stepped portion a. Further, in the middle of the body portion 11 of the paper cup body 10, a reinforcing rib 15 is formed which is a convex portion in the circumferential direction protruding outward. These enlarged portions 14 and reinforcing ribs 15 are formed on the paper cup body 10 using a male mold and a female mold before the paper cup body 10 and the outer cylinder 20 are combined.
[0009]
On the other hand, the hollow cylindrical outer cylinder 20 is made of a sheet of paper or fan-shaped paper coated on one or both sides with a synthetic resin such as polyethylene, and an inwardly curled portion 22 is formed at the lower opening edge of the body portion 21. Has been. Here, both the paper cup main body 10 and the outer cylinder 20 are expanded upward, but the outer cylinder 20 has a taper in which the body portion 21 has a hem slightly expanded from the body portion 11 of the paper cup main body 10. In this example, the upper end portion of the outer cylinder 20 is bent in a taper shape so as to close inward over the entire circumference, and the tip thereof is sized to abut on the inner side of the outward curled portion 13 of the paper cup body 10. Yes. The bending of the upper end portion 23 is not limited to the tapered shape, and may be bent in a curved state.
[0010]
Then, the outer cup 20 having the above-described configuration is put on the paper cup main body 10 and inserted, and the tip of the upper end portion 23 of the outer cylinder 20 is brought into contact with or bite into the inside of the outward curled portion 13 in the paper cup main body 10. more emulsion type adhesive applied to the body portion outer peripheral surface near the bottom of the paper cup body 10, be an integral both to adhere the inwardly curled portion 22 of the outer tube 20 below the body portion 11 of the paper cup body 10 Thus, the heat insulating container C shown in FIG. 1 is formed.
[0011]
In the heat insulating container C having the above configuration, a gap is formed between the body portion 11 of the paper cup body 10 and the body portion 21 of the outer cylinder 20, and this space portion performs a heat insulating function. In addition, since the enlarged portion 14 projecting outward is provided in the circumferential direction above the body portion 11 of the paper cup body 10, a gap is formed at a certain interval from below to the enlarged portion 14. Therefore, when hot water is put into the heat insulating container C, the heat of the inner body part 11 is prevented from being transmitted to the outer body part 21 over a wide range, and any place that is normally gripped by this type of container can be prevented. Even if you hold it, it won't get hot. Further, in the above example, since the reinforcing rib 15 is formed on the body portion 11 of the paper cup main body 10 and is formed of a convex portion in the circumferential direction protruding outward, the strength of the paper cup main body 10 is increased by the reinforcing rib 15. At the same time, since the body portion 21 of the outer cylinder 20 serves as a support so as not to bend inwardly, the body portion 11 of the paper cup main body 10 and the body portion 21 of the outer tube 20 when the force is applied by hand. It is prevented that the space | gap between becomes narrow.
[0012]
The outer cylinder 20 has a product name, a pattern, and the like printed on its surface, and this printing is performed on the original fabric. A fan-shaped blank is formed by punching out the printed original fabric, and the blank is rolled and pasted on a cylinder, and the inwardly curled portion 22 is formed at the lower opening edge to form the outer cylinder 20. . Here, there is a meaning to protect the printed pattern and the like, but in order to easily curl the paper, OP varnish is usually printed on the outermost layer when printing the original fabric. However, since this OP varnish repels an emulsion adhesive, the inwardly curled portion 22 of the outer cylinder 20 cannot be adhered to the lower portion of the body portion of the paper cup body 10. It is conceivable to use an adhesive other than the emulsion type, but from the viewpoint of heat resistance and odor, and from the viewpoint of ease of handling, the same emulsion type adhesive that is currently used for body bonding is used. It is desirable to do.
[0013]
Therefore, in order to achieve both curling ease and gluing, a blank B on which the OP varnish 24 is printed with a pattern as shown in FIG. 2 is used. That is, the OP varnish 24 is printed in a pattern excluding a part of the outer cylinder 20 that is inside the inwardly curled portion 22. The pattern illustrated in FIG. 2 regularly leaves a rectangular uncoated portion 25 along the lower end of the blank B. Actually, the emulsion-type adhesive is applied around the outer periphery of the paper cup body 10 and the outer cylinder 20 is covered therewith, so that it can be bonded if there is at least part of the uncoated part. Therefore, the pattern of the uncoated portion may be arbitrary, and it is not necessary to leave it uniformly over the entire circumference as shown in FIG. 2. In short, the OP is applied to a part of the outer cylinder 20 that is inside the inwardly curled portion. It is sufficient if there is an uncoated part of varnish. In the figure, reference numeral 26 is a cylinder pasting portion, and of course, no OP varnish is applied.
[0015]
FIG. 3 shows a modification of the heat insulating container shown in FIG. 1, and the heat insulating container C shown in FIG. 3 has substantially the same structure as that shown in FIG. An enlarged portion 14 protruding outward is provided.
[0016]
FIG. 4 shows another modification of the heat insulating container shown in FIG. 1, and the heat insulating container C shown in FIG. 4 has substantially the same structure as that shown in FIG. An enlarged portion 14 protruding outward is provided by c.
[0017]
FIG. 5 shows still another modified example of the heat insulating container shown in FIG. 1. The heat insulating container C shown in FIG. 5 has substantially the same configuration as that shown in FIG. The upper end portion of the cylinder 20 is not bent in a taper shape so as to be closed inward over the entire circumference, and remains straight.
[0018]
FIG. 6 shows a modification of the heat insulating container shown in FIG. 5. The heat insulating container C shown in FIG. 6 has substantially the same structure as that shown in FIG. An enlarged portion 14 protruding outward is provided.
[0019]
FIG. 7 shows another modification of the heat insulating container shown in FIG. 5, and the heat insulating container C shown in FIG. 7 has substantially the same structure as that shown in FIG. An enlarged portion 14 protruding outward is provided by c.
[0020]
Note that the heat insulating container of the present invention may use an outer cylinder formed of paperboard that is embossed so that characters or patterns to be printed float outward and form convex portions. This convex portion need not be formed for all characters and patterns, and may be only the characters and patterns to be emphasized. The heat insulating container having such a configuration exhibits a heat insulating action similar to that of the heat insulating container C of FIG. 1, but the heat insulating action is increased because the gap is wide particularly in the convex portion.
[0021]
Moreover, you may use the outer cylinder formed with the paperboard which gave the fine embossing over the whole surface used as the heat insulation container of this invention. The heat-insulating container having such a configuration exhibits the same heat-insulating action as the heat-insulating container C in FIG. 1, but in addition to exhibiting the heat-insulating effect due to the gap between the paper cup body and the outer cylinder, the surface of the outer cylinder It is easy to hold due to the fine unevenness and heat is not easily transmitted to the hand, so that the overall heat insulating effect is further improved. In addition, the uneven | corrugated pattern by embossing may be formed over the whole surface of the trunk | drum in an outer cylinder, and you may make it the form which left the part which does not form an uneven | corrugated pattern in part. For example, in consideration of the area held by the hand, it may be left in a strip shape above and below the trunk portion, or the name portion may be left in a pattern shape in consideration of the design.
[0022]
【The invention's effect】
The heat-insulating container of the present invention includes an upwardly-spreading paper cup body having an outwardly curled portion at the upper opening edge, and an upwardly-spreading paper-made outer body that is open both upward and downward and has an inwardly curled portion at the downward opening edge. The upper part of the paper cup main body is provided with an enlarged portion protruding outward in the circumferential direction, and the inwardly curled portion of the outer cylinder is on the surface except for a part thereof. The OP varnish is printed, and the paper cup body is covered with an outer cylinder so that the upper end portion of the outer cylinder is brought into contact with the inside of the outward curled portion of the paper cup body, and the inwardly curled portion of the outer cylinder is placed below the trunk portion of the paper cup main body. It is formed by bonding them together with an emulsion adhesive and forming a gap between the paper cup body and the outer cylinder, so that it covers a wide range from the lower part to the upper part of the body part. Heat insulation Since the gap is formed at a certain interval, and is excellent in heat insulating property that heat is not easily transmitted to the contents thereof by hand to any location of the body.
[0023]
Further, by adopting a configuration in which the upper end portion of the outer cylinder is bent in the direction of closing inward over the entire circumference, the gap becomes larger and the heat insulating effect is further improved.
[Brief description of the drawings]
FIG. 1 shows an example of a heat insulating container according to the present invention, and is a schematic configuration diagram showing a left half and a right half in a front view and a cross-sectional view, respectively.
FIG. 2 is an explanatory diagram for showing a coating portion of OP varnish with a blank of an outer cylinder.
3 shows a modification of the heat insulating container shown in FIG. 1, and is a schematic configuration diagram showing a left half and a right half in a front view and a cross-sectional view, respectively.
4 shows another modification of the heat insulating container shown in FIG. 1, and is a schematic configuration diagram showing a left half and a right half in a front view and a sectional view, respectively.
5 shows still another modification of the heat insulating container shown in FIG. 1, and is a schematic configuration diagram showing a left half and a right half in a front view and a cross-sectional view, respectively.
6 shows a modified example of the heat insulating container shown in FIG. 5, and is a schematic configuration diagram showing a left half and a right half in a front view and a sectional view, respectively.
7 shows another modification of the heat insulating container shown in FIG. 5, and is a schematic configuration diagram showing a left half and a right half in a front view and a cross-sectional view, respectively.
[Explanation of symbols]
C heat insulating container 10 paper cup main body 11 trunk 12 bottom plate 13 outward curled portion 14 enlarged portion 15 reinforcing rib 20 outer cylinder 21 trunk 22 inward curled portion 23 upper end portion 24 OP varnish 25 unapplied portion 26 trunk pasted portion a step Part b Inclined surface c Curved surface

Claims (2)

上方開口縁に外向きカール部を有する上拡がりの紙カップ本体と、上方及び下方共に開口しており下方開口縁に内向きカール部を有する上拡がりの紙製の外筒とからなり、紙カップ本体の胴部上方には外側に突き出た拡大部分が周回方向に設けられており、外筒における内向きカール部にはその内側となるところの一部を除いて表面にOPニスが印刷されており、紙カップ本体に外筒を被せて外筒の上端部分を紙カップ本体における外向きカール部の内側に当接させるとともに外筒の内向きカール部を紙カップ本体の胴部下方にエマルジョン系接着剤で接着して両者を一体とすることにより形成され、紙カップ本体と外筒の間に空隙が形成されていることを特徴とする断熱性容器。A paper cup main body having an outwardly curled portion at the upper opening edge, and a paper outer tube having an upwardly extending paper opening at both the upper and lower ends and having an inwardly curled portion at the lower opening edge. An enlarged portion protruding outward is provided in the circumferential direction above the trunk portion, and OP varnish is printed on the surface of the inwardly curled portion of the outer cylinder except for a part of the inner portion, Cover the paper cup body with the outer cylinder and bring the upper end of the outer cylinder into contact with the inside of the outward curled portion of the paper cup body, and adhere the inwardly curled portion of the outer cylinder to the lower portion of the paper cup body with an emulsion adhesive. A heat-insulating container, characterized in that a gap is formed between the paper cup body and the outer cylinder. 外筒の上端部分が全周に渡って内側に閉じる方向に曲げられている請求項1に記載の断熱性容器。  The heat insulating container according to claim 1, wherein the upper end portion of the outer cylinder is bent in a direction to close inward over the entire circumference.
JP35283599A 1999-12-13 1999-12-13 Heat insulating container Expired - Lifetime JP4189941B2 (en)

Priority Applications (1)

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Application Number Priority Date Filing Date Title
JP35283599A JP4189941B2 (en) 1999-12-13 1999-12-13 Heat insulating container

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JP4189941B2 true JP4189941B2 (en) 2008-12-03

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Families Citing this family (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
PT1227042E (en) 2001-01-30 2004-08-31 Seda Spa CARTON CONTAINER FOR BEVERAGES AND PROCESS FOR THE SAME
BRPI0601188B1 (en) 2005-04-15 2018-06-26 Seda S.P.A. ISOLATED CONTAINER; METHOD OF MANUFACTURING THE SAME AND APPARATUS FOR MANUFACTURING
DE202005014177U1 (en) 2005-09-08 2005-11-17 Seda S.P.A., Arzano Double-walled beaker comprises an inner wall formed by an inner beaker which is made of a fluid-tight plastic material, and is releasably inserted into an outer beaker forming the outer wall
DE602005005493T3 (en) 2005-11-11 2014-04-24 Seda S.P.A. Insulated
EP1785265A1 (en) 2005-11-14 2007-05-16 SEDA S.p.A. Device for producing a stacking projection on a container wall and container with same
DE202006018406U1 (en) 2006-12-05 2008-04-10 Seda S.P.A. packaging

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