JP6909473B1 - Bottle heat insulation device and bottle heat insulation method - Google Patents

Bottle heat insulation device and bottle heat insulation method Download PDF

Info

Publication number
JP6909473B1
JP6909473B1 JP2020208937A JP2020208937A JP6909473B1 JP 6909473 B1 JP6909473 B1 JP 6909473B1 JP 2020208937 A JP2020208937 A JP 2020208937A JP 2020208937 A JP2020208937 A JP 2020208937A JP 6909473 B1 JP6909473 B1 JP 6909473B1
Authority
JP
Japan
Prior art keywords
bottle
heat insulating
insulating device
water
columnar body
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.)
Active
Application number
JP2020208937A
Other languages
Japanese (ja)
Other versions
JP2022096050A (en
Inventor
芳造 山分
芳造 山分
賢 内海
賢 内海
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.)
International Enterprises Japan Inc
Original Assignee
International Enterprises Japan Inc
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 International Enterprises Japan Inc filed Critical International Enterprises Japan Inc
Priority to JP2020208937A priority Critical patent/JP6909473B1/en
Application granted granted Critical
Publication of JP6909473B1 publication Critical patent/JP6909473B1/en
Publication of JP2022096050A publication Critical patent/JP2022096050A/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • Details Of Rigid Or Semi-Rigid Containers (AREA)
  • Packages (AREA)
  • Wrappers (AREA)
  • Medical Preparation Storing Or Oral Administration Devices (AREA)

Abstract

【課題】ボトル表面が水で濡れることなく、また、片手で持ちやすいコンパクトな柱状体保温装置、及びボトル保温装置を実現することを課題とする。【解決手段】柱状体に巻いて、常温に対して低温又は高温に保温する柱状体保温装置10であって、2枚の不織布11a、11bと、シート状からなる複数の吸水性シート12a〜12hと、を備え、複数の前記吸水性シートは、前記2枚の不織布11a、11bの間にそれぞれ間隔を開けて配置され、前記2枚の不織布における該間隔部分同士、及び前記2枚の不織布における端部同士が熱圧着されたシール部13a〜13hを有したことを特徴とする柱状体保温装置10とした。【選択図】 図1PROBLEM TO BE SOLVED: To realize a compact columnar body heat insulating device and a bottle heat insulating device which can be easily held by one hand without getting the bottle surface wet with water. SOLUTION: The columnar body heat insulating device 10 is wrapped around a columnar body and kept warm at a low temperature or a high temperature with respect to room temperature, and is composed of two non-woven fabrics 11a and 11b and a plurality of water absorbing sheets 12a to 12h in the form of a sheet. And, the plurality of the water-absorbent sheets are arranged between the two non-woven fabrics 11a and 11b at intervals, respectively, and in the interstitial portions of the two non-woven fabrics and in the two non-woven fabrics. The columnar body heat insulating device 10 is characterized by having sealing portions 13a to 13h in which the ends are thermocompression-bonded to each other. [Selection diagram] Fig. 1

Description

本発明は、缶ビール、ワインや日本酒等のボトル、又は哺乳瓶に外装して、ボトルの温度を常温に対して低温又は高温に保温する柱状体保温装置、及びボトル保温装置に関するものである。 The present invention relates to a columnar body heat insulating device that is attached to a bottle of canned beer, wine, sake, etc., or a baby bottle to keep the temperature of the bottle at a low temperature or a high temperature with respect to room temperature, and a bottle heat insulating device.

レストラン等において、ワインをボトルで供するときに、常温より低温に保持するために氷が入ったワインクーラーに入れて保温することがよく行われている。 In restaurants and the like, when wine is served in bottles, it is often practiced to keep it warm by putting it in a wine cooler containing ice in order to keep the temperature lower than room temperature.

しかしながら、ワインボトルを氷が入ったワインクーラーに入れておくと、ワインボトルが水に濡れて水滴が滴り落ちることがあり、高級なレストランのイメージにそぐわない。また、水滴が滴り落ちることを防ぐために、リネン等でワインボトルを拭うことは手間がかかるとともに、スマートでない。 However, if the wine bottle is placed in a wine cooler containing ice, the wine bottle may get wet and water droplets may drip, which does not match the image of a high-class restaurant. Also, wiping the wine bottle with linen or the like to prevent water droplets from dripping is time-consuming and unsmart.

特許文献1には、吸水ポリマーを封入してかまぼこ型にしたものを波状形に整列して、冷凍した状態で瓶に巻き付けて保冷する装置が記載されている。 Patent Document 1 describes a device in which a water-absorbing polymer is sealed in a semi-cylindrical shape, arranged in a wavy shape, and wrapped around a bottle in a frozen state to keep it cool.

特許文献1:特開2006−273420号公報 Patent Document 1: Japanese Unexamined Patent Publication No. 2006-273420

しかしながら、特許文献1に記載のものは、瓶が最初から冷えている場合、常温の環境に戻すとボトル表面が結露により濡れてしまうという問題がある。また、吸水ポリマーを封入した部分がかまぼこ型であるため、瓶に巻き付けた際に太くなり、片手で持ちにくいという問題がある。 However, the one described in Patent Document 1 has a problem that when the bottle is cold from the beginning, the surface of the bottle gets wet due to dew condensation when the bottle is returned to the normal temperature environment. In addition, since the portion in which the water-absorbing polymer is sealed is a semi-cylindrical shape, it becomes thick when wrapped around a bottle, and there is a problem that it is difficult to hold it with one hand.

本発明は上記問題点を解決して、柱状体又はボトルの表面が水で濡れることなく、また、片手で持ちやすいコンパクトな柱状体保温装置、及びボトル保温装置を実現することを課題とする。 An object of the present invention is to solve the above problems and to realize a compact columnar body heat insulating device and a bottle heat insulating device that the surface of the columnar body or the bottle does not get wet with water and is easy to hold with one hand.

上記課題を解決するために本発明は、ボトルに巻き付けることで常温に対して低温又は高温に前記ボトルを保温可能としたボトル保温装置であって、
透水性を有した2枚の不織布の間にそれぞれ間隔を開けてシート状の吸水性シートを複数配置した柱状体保温装置と、
前記柱状体保温装置を収納する柱状体保温装置収納部材と、を備え、
前記柱状体保温装置は、前記2枚の不織布における複数の前記吸水性シートの間隔部分同士、及び前記2枚の不織布における端部同士が熱圧着されたシール部を有し、
前記柱状体保温装置収納部材の断面構造は、透水性を有したポリエステル部、アルミ蒸着膜、外装材の順に前記ボトル側である内側から外側に向かって構成され、
前記柱状体保温装置収納部材における前記ポリエステル部と前記アルミ蒸着膜との間に前記柱状体保温装置が収納されたことを特徴とするボトル保温装置を提供するものである。
In order to solve the above problems, the present invention is a bottle heat insulating device capable of keeping the bottle warm at a low temperature or a high temperature with respect to room temperature by winding it around a bottle.
A columnar body heat insulating device in which a plurality of sheet-shaped water-absorbing sheets are arranged at intervals between two water-permeable non-woven fabrics.
The columnar body heat insulating device accommodating member for accommodating the columnar body heat insulating device is provided.
The columnar body heat insulating device has a sealing portion in which the gap portions of the plurality of water-absorbent sheets in the two non-woven fabrics and the end portions of the two non-woven fabrics are thermocompression-bonded to each other.
The cross-sectional structure of the columnar body heat insulating device storage member is configured in the order of the water-permeable polyester portion, the aluminum vapor-deposited film, and the exterior material from the inside to the outside on the bottle side.
The present invention provides a bottle heat insulating device characterized in that the columnar body heat insulating device is housed between the polyester portion and the aluminum vapor deposition film in the columnar body heat insulating device storage member.

この構成により、冷却時にボトルに結露した水分がポリエステルを介して柱状体保温装置に吸い取らせることができ、ボトル表面が結露等の水で濡れることがない。 With this configuration, the moisture condensed on the bottle during cooling can be absorbed by the columnar body heat insulating device via the polyester, and the surface of the bottle will not get wet with water such as dew condensation.

柱状体保温装置であって、前記吸水性シートは、吸水性ポリマーからなる構成としてもよい。 The columnar body heat insulating device may be configured such that the water-absorbent sheet is made of a water-absorbent polymer.

この構成により、吸水性ポリマーは多くの水を吸収でき、また、一旦吸水した水を離さない柱状体保温装置を実現できる。 With this configuration, the water-absorbent polymer can absorb a large amount of water, and it is possible to realize a columnar body heat insulating device that does not release the water once absorbed.

柱状体保温装置であって、前記2枚の不織布は、台形状である構成としてもよい。 The columnar body heat insulating device may have a trapezoidal structure in which the two non-woven fabrics are trapezoidal.

この構成により、台形の切り欠き部分を柱状体の前に来るように、柱状体に巻き付けることで、柱状体のラベルを視認することができる。 With this configuration, the label of the columnar body can be visually recognized by wrapping the trapezoidal notch portion around the columnar body so as to come in front of the columnar body.

ボトル保温装置であって、当該ボトル保温装置をボトルに巻いたときに、当該ボトルのラベルを視認可能である構成としてもよい。The bottle heat insulating device may be configured so that the label of the bottle can be visually recognized when the bottle heat insulating device is wound around the bottle.

この構成により、ボトルのラベルを視認可能とすることができる。 With this configuration, the label on the bottle can be made visible.

また、上記課題を解決するために本発明は、ボトルに巻き付けることで常温に対して低温に前記ボトルを保温可能としたボトル保温方法であって、Further, in order to solve the above problems, the present invention is a bottle heat retaining method capable of keeping the bottle warm at a low temperature with respect to room temperature by winding it around the bottle.
透水性を有した2枚の不織布の間にそれぞれ間隔を開けてシート状の吸水性シートを複数配置した柱状体保温装置を水に浸して前記吸水性シートに吸水させる吸水工程と、A water absorption step of immersing a columnar body heat insulating device in which a plurality of sheet-shaped water-absorbent sheets are arranged at intervals between two water-permeable non-woven fabrics and causing the water-absorbent sheet to absorb water.
前記柱状体保温装置を冷蔵又は冷凍させる冷却工程と、A cooling step of refrigerating or freezing the columnar body heat insulating device, and
前記柱状体保温装置を、断面構造が透水性を有したポリエステル部、アルミ蒸着膜、外装材の順に前記ボトル側である内側から外側に向かって構成された柱状体保温装置収納部材における前記ポリエステル部と前記アルミ蒸着膜との間に収納する収納工程と、を備えたことを特徴とするボトル保温方法。The polyester portion of the columnar body heat insulating device, which is formed from the inside to the outside on the bottle side in the order of a polyester portion having a water-permeable cross-sectional structure, an aluminum vapor deposition film, and an exterior material. A bottle heat retention method characterized by comprising a storage step of storing between the aluminum vapor deposition film and the aluminum vapor deposition film.

この構成により、冷却時にボトルに結露した水分がポリエステルを介して柱状体保温装置に吸い取らせることができ、ボトル表面が結露等の水で濡れることがない。 With this configuration, the moisture condensed on the bottle during cooling can be absorbed by the columnar body heat insulating device via the polyester, and the surface of the bottle will not get wet with water such as dew condensation.

本発明の柱状体保温装置、及びボトル保温装置により、ボトルや柱状体の表面が水で濡れることなく、また、片手で持ちやすいコンパクトな柱状体保温装置、及びボトル保温装置を実現することができる。 With the columnar body heat insulating device and the bottle heat insulating device of the present invention, it is possible to realize a compact columnar body heat insulating device and a bottle heat insulating device that the surface of the bottle or the columnar body does not get wet with water and is easy to hold with one hand. ..

本発明の実施例1における柱状体保温装置を説明する図。The figure explaining the columnar body heat insulation device in Example 1 of this invention. 本発明の実施例2におけるボトル保温装置を説明する図。The figure explaining the bottle heat insulation device in Example 2 of this invention. 本発明の実施例2におけるボトル保温装置を巻いた様子を説明する図。The figure explaining the state of winding the bottle heat insulation device in Example 2 of this invention. 本発明の実施例2におけるボトル保温装置を巻き、ボトルを収納した図。The figure which wound the bottle heat insulation device in Example 2 of this invention, and stored the bottle.

(柱状体保温装置)
本発明における実施例1の柱状体保温装置について、図1を参照して説明する。図1は、本発明の実施例1における柱状体保温装置を説明する図である。
(Columnar body heat insulating device)
The columnar body heat insulating device of Example 1 in the present invention will be described with reference to FIG. FIG. 1 is a diagram illustrating a columnar body heat insulating device according to the first embodiment of the present invention.

実施例1における柱状体保温装置10は、ボトルや缶等の柱状体に巻いて、柱状体を常温に対して低温又は高温に保温するものであり、高さ方向(図1におけるy方向)の長さは約160mm、幅方向(図1におけるx方向)の長さは約210mm、厚さ方向(図1におけるz方向)の長さは約1mmの略台形状を有している。柱状体保温装置10は、ほぼ同形状の2枚の不織布11a、11bと、8枚のシート状の吸水性シート12a〜12hと、を備えている。吸水性部材12a〜12hは、2枚の不織布11a、11bの間にそれぞれ間隔を開けて配置され、2枚の不織布11a、11bにおける各吸水性シート間、及び2枚の不織布11a、11bにおける端部同士が熱圧着されたシール部13(13a〜13h)を有している。 The columnar body heat insulating device 10 in the first embodiment is wound around a columnar body such as a bottle or a can to keep the columnar body at a low temperature or a high temperature with respect to normal temperature, and is in the height direction (y direction in FIG. 1). It has a substantially trapezoidal shape with a length of about 160 mm, a length in the width direction (x direction in FIG. 1) of about 210 mm, and a length in the thickness direction (z direction in FIG. 1) of about 1 mm. The columnar body heat insulating device 10 includes two non-woven fabrics 11a and 11b having substantially the same shape, and eight sheet-shaped water-absorbent sheets 12a to 12h. The water-absorbent members 12a to 12h are arranged at intervals between the two non-woven fabrics 11a and 11b, between the water-absorbent sheets of the two non-woven fabrics 11a and 11b, and at the edges of the two non-woven fabrics 11a and 11b. It has a sealing portion 13 (13a to 13h) in which the portions are thermocompression-bonded to each other.

これにより、吸水性シート12a〜12hが水分を含んでも不織布11a、11bの外部に漏れ出ることはない。また、各吸水性シート12a〜12h間における2枚の不織布11a、11bが熱圧着されていることで、各吸水性シート12a〜12h同士が接触したり乗り上げたりすることがないため、後述のように、この柱状体保温装置10を巻いても各吸水性シート12a〜12hが均等に配置され、効率的に冷温又は高温に保温できる。また、吸水性シート12a〜12hがシート状であるため、柱状体保温装置10を薄く構成でき、手で持つときに持ちやすくできる。 As a result, even if the water-absorbent sheets 12a to 12h contain moisture, they do not leak to the outside of the non-woven fabrics 11a and 11b. Further, since the two non-woven fabrics 11a and 11b between the water-absorbent sheets 12a to 12h are thermocompression-bonded, the water-absorbent sheets 12a to 12h do not come into contact with each other or run on top of each other. Even if the columnar body heat insulating device 10 is wound, the water-absorbent sheets 12a to 12h are evenly arranged, and the heat can be efficiently kept at a cold temperature or a high temperature. Further, since the water-absorbent sheets 12a to 12h are in the form of sheets, the columnar body heat insulating device 10 can be formed thinly, and can be easily held when held by hand.

吸水性シート12a〜12hは、おむつに使われるような吸水性ポリマーからなり、自重の数百倍から1,000倍の水を吸収し、多少の圧力をかけても吸った水を離さない高分子材料である。吸水性シート12a〜12hの幅方向(図1におけるx方向)は短く、高さ方向(図1におけるy方向)は長い長方形であり、それぞれ略台形状からなる不織布11a、11bの形状に合うように、高さ方向(図1におけるy方向)の長さが揃えられて配置されている。実施例1における吸水性シート12a〜12hの幅方向(図1におけるx方向)の長さは約13mm、厚み方向(図1におけるz方向)の長さは約0.8mmである。吸水性シート12a、12hにおける高さ方向(図1におけるy方向)の長さは約10mm、吸水性シート12b、12gにおける高さ方向(図1におけるy方向)の長さは約12mm、吸水性シート12c、12d、12e、12fにおける高さ方向(図1におけるy方向)の長さは約14mmである。 The water-absorbent sheets 12a to 12h are made of a water-absorbent polymer such as that used for diapers, absorb water several hundred to 1,000 times its own weight, and do not release the absorbed water even when a little pressure is applied. It is a molecular material. The width direction (x direction in FIG. 1) of the water-absorbent sheets 12a to 12h is short, and the height direction (y direction in FIG. 1) is a long rectangle so as to match the shapes of the non-woven fabrics 11a and 11b having substantially trapezoidal shapes, respectively. The lengths in the height direction (y direction in FIG. 1) are aligned with each other. The length of the water-absorbent sheets 12a to 12h in Example 1 in the width direction (x direction in FIG. 1) is about 13 mm, and the length in the thickness direction (z direction in FIG. 1) is about 0.8 mm. The length of the water-absorbent sheets 12a and 12h in the height direction (y-direction in FIG. 1) is about 10 mm, and the length of the water-absorbent sheets 12b and 12g in the height direction (y-direction in FIG. 1) is about 12 mm. The length of the sheets 12c, 12d, 12e, and 12f in the height direction (y direction in FIG. 1) is about 14 mm.

各吸水性シート12a〜12hが不織布11b上に配置した上から不織布11aを重ねて、不織布11a、11bの端部同士を熱圧着したシール部13aを有している。また、各吸水性シート12a〜12hの間における不織布11a、11b同士を熱圧着したシール部13b〜13hを有している。熱圧着は、公知の方法で行うことができる。 Each of the water-absorbent sheets 12a to 12h has a sealing portion 13a in which the non-woven fabrics 11a are placed on the non-woven fabric 11b and the ends of the non-woven fabrics 11a and 11b are thermocompression-bonded to each other. Further, it has sealing portions 13b to 13h in which the non-woven fabrics 11a and 11b between the water-absorbent sheets 12a to 12h are thermocompression-bonded to each other. Thermocompression bonding can be performed by a known method.

不織布11a、11bは、ポーラス(多孔質)構造であることが特長で、通気性があり、また水分を透過させることができる。このため、後述のように、吸水性シート12a〜12hを内蔵した柱状体保温装置10を水に浸すと、吸水性シート12a〜12hは水を十分に含むことができる。そして、冷蔵庫に入れて冷やすと吸水性シート12a〜12hが吸水した水分が冷やされる。逆に湯等に浸けると吸水性シート12a〜12hが吸水した水分が暖められる。 The non-woven fabrics 11a and 11b are characterized by having a porous structure, are breathable, and can allow moisture to permeate. Therefore, as described later, when the columnar body heat insulating device 10 having the water absorbing sheets 12a to 12h built therein is immersed in water, the water absorbing sheets 12a to 12h can sufficiently contain water. Then, when it is placed in a refrigerator and cooled, the water absorbed by the water-absorbing sheets 12a to 12h is cooled. On the contrary, when it is immersed in hot water or the like, the water absorbed by the water-absorbent sheets 12a to 12h is warmed.

なお、実施例1においては、8枚の吸水性シート12a〜12hを用いることとしたが、必ずしもこれに限定されず適宜変更が可能である。例えば、7枚以下でもよいし、9枚以上であってもよく、柱状体の直径等の都合により任意の枚数の吸水性シートで構成できる。 In Example 1, eight water-absorbent sheets 12a to 12h were used, but the present invention is not necessarily limited to this, and changes can be made as appropriate. For example, it may be 7 sheets or less, 9 sheets or more, and may be composed of an arbitrary number of water-absorbent sheets depending on the diameter of the columnar body and the like.

また、実施例1においては、不織布11a、11bを台形状としたが、必ずしもこれに限定されず適宜変更が可能である。例えば、長方形としてもよいし、正方形としてもよく、任意の形状を選択できる。 Further, in the first embodiment, the nonwoven fabrics 11a and 11b have a trapezoidal shape, but the present invention is not necessarily limited to this and can be appropriately changed. For example, it may be a rectangle or a square, and any shape can be selected.

このように、実施例1においては、柱状体に巻いて、常温に対して低温又は高温に保温する柱状体保温装置であって、
2枚の不織布と、
シート状からなる複数の吸水性シートと、を備え、
複数の前記吸水性シートは、前記2枚の不織布の間にそれぞれ間隔を開けて配置され、前記2枚の不織布における該間隔部分同士、及び前記2枚の不織布における端部同士が熱圧着されたシール部を有したことを特徴とする柱状体保温装置により、柱状体表面が水で濡れることなく、また、片手で持ちやすいコンパクトな柱状体保温装置を実現することができる。
As described above, in the first embodiment, the columnar body heat insulating device is wound around a columnar body and kept at a low temperature or a high temperature with respect to room temperature.
Two non-woven fabrics and
It is equipped with a plurality of water-absorbent sheets made of a sheet.
The plurality of water-absorbent sheets were arranged at intervals between the two non-woven fabrics, and the spaced portions of the two non-woven fabrics and the ends of the two non-woven fabrics were thermocompression-bonded to each other. The columnar body heat insulating device characterized by having a sealed portion makes it possible to realize a compact columnar body heat insulating device that does not allow the surface of the columnar body to get wet with water and is easy to hold with one hand.

(ボトル保温装置)
本発明の実施例2は、柱状体保温装置をボトル保温装置に内蔵した点で実施例1と異なっている。実施例2について、図2〜図4を参照して説明する。図2は、本発明の実施例2におけるボトル保温装置を説明する図で、(a)は正面図、(b)は側面図、(c)は断面図である。図3は、本発明の実施例2におけるボトル保温装置を巻いた様子を説明する図で、(a)は正面図、(b)は底面図、(c)は上面図、(d)は左側面図、(e)は右側面図、(f)は背面図である。図4は、本発明の実施例2におけるボトル保温装置を巻き、ボトルを収納した図で、(a)は正面図、(b)は底面図、(c)は上面図、(d)は左側面図、(e)は右側面図、(f)は背面図である。
(Bottle heat retention device)
Example 2 of the present invention is different from Example 1 in that the columnar body heat insulating device is built in the bottle heat insulating device. The second embodiment will be described with reference to FIGS. 2 to 4. 2A and 2B are views for explaining the bottle heat insulating device according to the second embodiment of the present invention, in which FIG. 2A is a front view, FIG. 2B is a side view, and FIG. 2C is a cross-sectional view. 3A and 3B are views for explaining how the bottle heat insulating device according to the second embodiment of the present invention is wound. FIG. 3A is a front view, FIG. 3B is a bottom view, FIG. 3C is a top view, and FIG. 3D is a left side view. A top view, (e) is a right side view, and (f) is a rear view. FIG. 4 is a view in which the bottle heat insulating device according to the second embodiment of the present invention is wound and the bottle is stored. FIG. 4A is a front view, FIG. 4B is a bottom view, FIG. 4C is a top view, and FIG. 4D is a left side view. A top view, (e) is a right side view, and (f) is a rear view.

実施例2におけるボトル保温装置20は、実施例1における柱状体保温装置10を内蔵し、ワイン等のボトルに巻き付けてボトルの保温を行なうものである。 The bottle heat insulating device 20 in the second embodiment incorporates the columnar body heat insulating device 10 in the first embodiment and is wound around a bottle of wine or the like to keep the bottle warm.

ボトル保温装置20は、中央部が山型を有し、端部にかけてなだらかに下方へ傾斜した形状を有している(図2参照)。このため、ボトル保温装置20を巻くと、正面視で上部が切り取られたような立体形状とすることができる(図3参照)。そのため、ボトル保温装置20をボトル30に巻いたときに、ボトル30のラベル31を視認することができる(図4(a)参照)。 The bottle heat retaining device 20 has a chevron shape at the center and a shape that is gently inclined downward toward the end (see FIG. 2). Therefore, when the bottle heat insulating device 20 is wound, it can be formed into a three-dimensional shape as if the upper part was cut off in a front view (see FIG. 3). Therefore, when the bottle heat insulating device 20 is wound around the bottle 30, the label 31 of the bottle 30 can be visually recognized (see FIG. 4A).

ボトル保温装置20の内側(ボトルに接する側)の中央部には、縦方向(図2におけるy方向)に切り欠きを有して、柱状体保温装置10を内部に挿入可能な柱状体保温装置挿入口21が形成されている。ボトル保温装置20の内部は、柱状体保温装置10を収納するのに十分な広さを有している(図2参照)。 A columnar body heat insulating device having a notch in the vertical direction (y direction in FIG. 2) at the center of the inside (the side in contact with the bottle) of the bottle heat insulating device 20 so that the columnar body heat insulating device 10 can be inserted inside. An insertion port 21 is formed. The inside of the bottle heat insulating device 20 has a sufficient area for accommodating the columnar body heat insulating device 10 (see FIG. 2).

また、ボトル保温装置20の内側(ボトル30に接する側)の右端部(x方向端部)には面ファスナー22が取り付けられ、ボトル保温装置20をボトル30に巻いた際に対応する位置(左端部外側)に設けられた面ファスナー23と組み合わせて固定することができる。 Further, a hook-and-loop fastener 22 is attached to the right end portion (x direction end portion) of the inside of the bottle heat insulating device 20 (the side in contact with the bottle 30), and the position corresponding to when the bottle heat insulating device 20 is wound around the bottle 30 (left end). It can be fixed in combination with the hook-and-loop fastener 23 provided on the outside of the portion).

なお、実施例2においては、面ファスナー22、23でボトル保温装置20の右端部と左端部を固定することとしたが、必ずしもこれに限定されず適宜変更が可能である。例えば、ゴムや紐の一方端をボトル保温装置20の右端部に縫い付け、他方端にボタンを取付けて、ボトル保温装置20左端部に設けたボタンに篏合させて固定してもよい。また、ボトル保温装置20の右端部と左端部とをマネークリップのようなクリップで固定してもよい。 In the second embodiment, the right end portion and the left end portion of the bottle heat retaining device 20 are fixed by the hook-and-loop fasteners 22 and 23, but the present invention is not necessarily limited to this and can be changed as appropriate. For example, one end of the rubber or the string may be sewn to the right end of the bottle heat insulating device 20, a button may be attached to the other end, and the button may be fitted to the button provided on the left end of the bottle heat retaining device 20 to be fixed. Further, the right end portion and the left end portion of the bottle heat retaining device 20 may be fixed with a clip such as a money clip.

ボトル保温装置20の内側(ボトルに接する側)はポリエステル部24で全面が覆われ、その外側(ボトル保温装置20の内部)に柱状体保温装置10を収納する。また、収納された柱状体保温装置10の外側にはアルミ蒸着膜25が全面に設けられている。さらに、アルミ蒸着膜25の外側には織物からなる外装材26で覆われている(図2(c)参照)。 The inside of the bottle heat insulating device 20 (the side in contact with the bottle) is entirely covered with the polyester portion 24, and the columnar body heat insulating device 10 is housed on the outside (inside of the bottle heat insulating device 20). Further, an aluminum vapor deposition film 25 is provided on the entire surface of the housed columnar body heat insulating device 10. Further, the outside of the aluminum vapor deposition film 25 is covered with an exterior material 26 made of a woven fabric (see FIG. 2C).

ボトル保温装置20の内側(ボトルに接する側)が、水分を通すことができるポリエステル部24で全面が覆われていることで、冷えたボトル30に巻いた場合でも結露等の水分をポリエステル部24を通して柱状体保温装置10の吸水性シート12a〜12hが吸水してボトル30やボトル保温装置20の内面が結露で濡れることがない。そのため、高級レストランでワインを供するときに、水が滴り落ちたりすることがなく高級感を損なうことがない。 Since the inside of the bottle heat insulating device 20 (the side in contact with the bottle) is entirely covered with the polyester portion 24 through which moisture can pass, moisture such as dew condensation can be removed even when wrapped around the cold bottle 30. The water-absorbent sheets 12a to 12h of the columnar body heat-retaining device 10 absorb water and the inner surface of the bottle 30 and the bottle heat-retaining device 20 does not get wet due to dew condensation. Therefore, when serving wine at a high-class restaurant, water does not drip and the sense of quality is not impaired.

吸水性シート12a〜12hは、吸水した水分を離さないため、ボトル保温装置20の内部が濡れることもない。もし仮に、吸水性シート12a〜12hから水分が漏れたとしても、収納された柱状体保温装置10の外側にアルミ蒸着膜25が全面に設けられているため、ボトル保温装置20の外側に水が溢れることがなく、安心してワイン等を供することができる。 Since the water-absorbent sheets 12a to 12h do not release the absorbed water, the inside of the bottle heat retaining device 20 does not get wet. Even if water leaks from the water-absorbent sheets 12a to 12h, the aluminum vapor-deposited film 25 is provided on the entire surface of the housed columnar body heat insulating device 10, so that water can be discharged to the outside of the bottle heat insulating device 20. It does not overflow and you can serve wine etc. with confidence.

さらに、ボトル保温装置20の最も外側が織物からなる外装材26で全面が覆われているため、高級感を演出することができる。図3(b)、(c)に示すように、ボトル保温装置20の底面にボトル落下防止装置27が設けられている(図2ではボトル落下防止装置27の記載を省略している。)。実施例2におけるボトル落下防止装置27は布片で構成され、ボトル保温装置20を巻いた状態で底面を交差するようにボトル保温装置20に縫い付けられている。 Further, since the outermost side of the bottle heat insulating device 20 is entirely covered with the exterior material 26 made of woven fabric, a high-class feeling can be produced. As shown in FIGS. 3 (b) and 3 (c), a bottle fall prevention device 27 is provided on the bottom surface of the bottle heat retaining device 20 (the description of the bottle fall prevention device 27 is omitted in FIG. 2). The bottle drop prevention device 27 in the second embodiment is composed of a piece of cloth, and is sewn to the bottle heat insulating device 20 so as to cross the bottom surface in a state where the bottle heat insulating device 20 is wound.

なお、実施例2においては、布片からなるボトル落下防止装置27がボトル保温装置20を巻いた状態で底面を交差するようにボトル保温装置20に縫い付けられている構成としたが、必ずしもこれに限定されず適宜変更が可能である。例えば、布片からなるボトル落下防止装置27をボタン等でボトル保温装置20に固定してもよい。また、ボトル保温装置20の底面全体を布からなるボトル落下防止装置27で覆ってもよい。また、ボトル落下防止装置27を布以外の材質で構成してもよい。 In the second embodiment, the bottle drop prevention device 27 made of a piece of cloth is sewn to the bottle heat insulating device 20 so as to cross the bottom surface in a state where the bottle heat insulating device 20 is wound, but this is not necessarily the case. It is not limited to, and can be changed as appropriate. For example, the bottle fall prevention device 27 made of a piece of cloth may be fixed to the bottle heat retaining device 20 with a button or the like. Further, the entire bottom surface of the bottle heat insulating device 20 may be covered with the bottle fall prevention device 27 made of cloth. Further, the bottle fall prevention device 27 may be made of a material other than cloth.

また、実施例2においては、アルミ蒸着膜25の外側を外装材26で覆われた構成としたが、必ずしもこれに限定されず適宜変更が可能である。例えば、アルミ蒸着膜25と外装材26との間に、シート状の湾曲したペットを挿入してもよい。これにより、ボトル保温装置20に張りを持たせることができる。 Further, in the second embodiment, the outer side of the aluminum vapor-deposited film 25 is covered with the exterior material 26, but the present invention is not necessarily limited to this and can be changed as appropriate. For example, a sheet-shaped curved pet may be inserted between the aluminum vapor deposition film 25 and the exterior material 26. As a result, the bottle heat retaining device 20 can be made taut.

(ボトル保温装置の使用方法)
ボトル保温装置20でボトル30を常温に対して低温で保温する場合、柱状体保温装置10を水に浸して水分を吸水性シート12a〜12hに吸水させる。次に、柱状体保温装置10を冷蔵庫や冷凍庫に入れて冷やす。そして、冷えた柱状体保温装置10を柱状体保温装置挿入口21からボトル保温装置20に挿入し、柱状体保温装置10が挿入されたボトル保温装置20をワイン等のボトル30に巻いて面ファスナー22、23で固定すればよい。さらに、図示しないバンドや紐等でボトル保温装置20を巻いてもよい。
(How to use the bottle heat insulation device)
When the bottle heat insulating device 20 keeps the bottle 30 at a low temperature with respect to room temperature, the columnar body heat insulating device 10 is immersed in water to absorb water into the water absorbing sheets 12a to 12h. Next, the columnar body heat insulating device 10 is placed in a refrigerator or a freezer to cool it. Then, the cold columnar body heat insulating device 10 is inserted into the bottle heat insulating device 20 from the columnar body heat insulating device insertion port 21, and the bottle heat insulating device 20 into which the columnar body heat insulating device 10 is inserted is wrapped around a bottle 30 of wine or the like and has a hook-and-loop fastener. It may be fixed at 22 and 23. Further, the bottle heat insulating device 20 may be wrapped with a band, a string or the like (not shown).

ワイン等を供する場合は、ボトル保温装置20を巻いたワインのボトル30を持ち上げてグラスに注げばよい。この際、柱状体保温装置10内にシート状の薄い吸水性シート12a〜12hで冷やして保温するので、ボトル保温装置20をボトル30に巻いても太くならず、ボトルでワインを供するときと同じ感覚でボトル保温装置20を持ってワインを供することができる。また、ボトル保温装置20の底面にボトル落下防止装置27を備えているため、ボトル30が落下することがない。 When serving wine or the like, the wine bottle 30 wrapped with the bottle heat insulating device 20 may be lifted and poured into a glass. At this time, since the columnar body heat insulating device 10 is cooled by thin sheet-shaped water-absorbent sheets 12a to 12h to keep warm, even if the bottle heat insulating device 20 is wrapped around the bottle 30, it does not become thick and is the same as when wine is served in the bottle. You can serve wine with the bottle heat retaining device 20 as if you were holding it. Further, since the bottle fall prevention device 27 is provided on the bottom surface of the bottle heat retaining device 20, the bottle 30 does not fall.

ボトル保温装置20でボトル30を常温に対して高温で保温する場合、柱状体保温装置10を水に浸して水分を吸水性シート12a〜12hに吸水させる。次に、柱状体保温装置10を湯に浸して暖める。又は、柱状体保温装置10を湯に浸して暖かい湯を吸水させる。そして、暖めた柱状体保温装置10を柱状体保温装置挿入口21からボトル保温装置20に挿入し、柱状体保温装置10が挿入されたボトル保温装置20を日本酒等のボトル30に巻いて面ファスナー22、23で固定すればよい。 When the bottle heat insulating device 20 keeps the bottle 30 at a high temperature with respect to room temperature, the columnar body heat insulating device 10 is immersed in water to absorb water into the water absorbing sheets 12a to 12h. Next, the columnar body heat insulating device 10 is immersed in hot water to warm it. Alternatively, the columnar body heat insulating device 10 is immersed in hot water to absorb warm water. Then, the warmed columnar body heat insulating device 10 is inserted into the bottle heat insulating device 20 from the columnar body heat insulating device insertion port 21, and the bottle heat insulating device 20 into which the columnar body heat insulating device 10 is inserted is wrapped around a bottle 30 of sake or the like and has a hook-and-loop fastener. It may be fixed at 22 and 23.

このように、実施例2においては、柱状体保温装置を内部に収納してボトルに巻き付けることで前記ボトルを保温可能としたことを特徴とするボトル保温装置により、ボトル表面が水で濡れることなく、また、片手で持ちやすいコンパクトなボトル保温装置を実現することができる。 As described above, in the second embodiment, the bottle heat insulating device is characterized in that the columnar body heat insulating device is housed inside and wound around the bottle to keep the bottle warm, so that the bottle surface does not get wet with water. In addition, a compact bottle heat insulating device that is easy to hold with one hand can be realized.

また、ボトル保温装置であって、前記柱状体保温装置を収納したときに、内側がポリエステル、外側がアルミ蒸着膜を介して外装材で覆われたことで、水滴がボトルに付着することなく、高級感を演出することができる。 Further, in the bottle heat insulating device, when the columnar body heat insulating device is housed, the inside is covered with the exterior material via the polyester vapor deposition film and the outside is covered with the exterior material through the aluminum vapor deposition film, so that water droplets do not adhere to the bottle. It can produce a sense of luxury.

本発明により、柱状体やボトルの表面が水で濡れることなく、また、片手で持ちやすいコンパクトな柱状体保温装置、及びボトル保温装置を実現することができる。 According to the present invention, it is possible to realize a compact columnar body heat insulating device and a bottle heat insulating device that are easy to hold with one hand without the surface of the columnar body or the bottle getting wet with water.

10:柱状体保温装置 11(11a、11b):不織布
12(12a〜12h):吸水性シート
13(13a〜13h):シール部
20:ボトル保温装置 21:柱状体保温装置挿入口
22:面ファスナー 23:面ファスナー
24:ポリエステル部 25:アルミ蒸着膜 26:外装材
27:ボトル落下防止装置
30:ボトル

10: Columnar body heat insulating device 11 (11a, 11b): Non-woven fabric
12 (12a-12h): Water-absorbent sheet
13 (13a to 13h): Seal portion
20: Bottle heat insulating device 21: Columnar body heat insulating device insertion port
22: Hook-and-loop fastener 23: Hook-and-loop fastener
24: Polyester part 25: Aluminum vapor deposition film 26: Exterior material
27: Bottle fall prevention device
30: Bottle

Claims (5)

ボトルに巻き付けることで常温に対して低温又は高温に前記ボトルを保温可能としたボトル保温装置であって、
透水性を有した2枚の不織布の間にそれぞれ間隔を開けてシート状の吸水性シートを複数配置した柱状体保温装置と、
前記柱状体保温装置を収納する柱状体保温装置収納部材と、を備え、
前記柱状体保温装置は、前記2枚の不織布における複数の前記吸水性シートの間隔部分同士、及び前記2枚の不織布における端部同士が熱圧着されたシール部を有し、
前記柱状体保温装置収納部材の断面構造は、透水性を有したポリエステル部、アルミ蒸着膜、外装材の順に前記ボトル側である内側から外側に向かって構成され、
前記柱状体保温装置収納部材における前記ポリエステル部と前記アルミ蒸着膜との間に前記柱状体保温装置が収納されたことを特徴とするボトル保温装置。
A bottle heat insulating device that can keep the bottle warm at a low temperature or a high temperature with respect to room temperature by wrapping it around the bottle.
A columnar body heat insulating device in which a plurality of sheet-shaped water-absorbing sheets are arranged at intervals between two water-permeable non-woven fabrics.
The columnar body heat insulating device accommodating member for accommodating the columnar body heat insulating device is provided.
The columnar body heat insulating device has a sealing portion in which the gap portions of the plurality of water-absorbent sheets in the two non-woven fabrics and the end portions of the two non-woven fabrics are thermocompression-bonded to each other.
The cross-sectional structure of the columnar body heat insulating device storage member is configured in the order of the water-permeable polyester portion, the aluminum vapor-deposited film, and the exterior material from the inside to the outside on the bottle side.
A bottle heat insulating device , characterized in that the columnar body heat insulating device is housed between the polyester portion of the columnar body heat insulating device storage member and the aluminum vapor deposition film.
前記吸水性シートは、吸水性ポリマーからなることを特徴とする請求項1に記載のボトル保温装置 The bottle heat insulating device according to claim 1, wherein the water-absorbent sheet is made of a water-absorbent polymer. 前記2枚の不織布は、台形状であることを特徴とする請求項1又は2に記載のボトル保温装置 The bottle heat insulating device according to claim 1 or 2, wherein the two non-woven fabrics have a trapezoidal shape. 当該ボトル保温装置をボトルに巻いたときに、当該ボトルのラベルを視認可能であることを特徴とする請求項1−3のいずれかの記載のボトル保温装置。The bottle heat insulating device according to any one of claims 1-3, wherein the label of the bottle can be visually recognized when the bottle heat insulating device is wound around the bottle. ボトルに巻き付けることで常温に対して低温に前記ボトルを保温可能としたボトル保温方法であって、It is a bottle heat retention method that enables the bottle to be kept warm at a low temperature relative to room temperature by wrapping it around the bottle.
透水性を有した2枚の不織布の間にそれぞれ間隔を開けてシート状の吸水性シートを複数配置した柱状体保温装置を水に浸して前記吸水性シートに吸水させる吸水工程と、A water absorption step of immersing a columnar body heat insulating device in which a plurality of sheet-shaped water-absorbent sheets are arranged at intervals between two water-permeable non-woven fabrics and causing the water-absorbent sheet to absorb water.
前記柱状体保温装置を冷蔵又は冷凍させる冷却工程と、A cooling step of refrigerating or freezing the columnar body heat insulating device, and
前記柱状体保温装置を、断面構造が透水性を有したポリエステル部、アルミ蒸着膜、外装材の順に前記ボトル側である内側から外側に向かって構成された柱状体保温装置収納部材における前記ポリエステル部と前記アルミ蒸着膜との間に収納する収納工程と、を備えたことを特徴とするボトル保温方法。The polyester portion of the columnar body heat insulating device, which is formed from the inside to the outside on the bottle side in the order of a polyester portion having a water-permeable cross-sectional structure, an aluminum vapor deposition film, and an exterior material. A bottle heat retention method characterized by comprising a storage step of storing between the aluminum vapor deposition film and the aluminum vapor deposition film.
JP2020208937A 2020-12-17 2020-12-17 Bottle heat insulation device and bottle heat insulation method Active JP6909473B1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2020208937A JP6909473B1 (en) 2020-12-17 2020-12-17 Bottle heat insulation device and bottle heat insulation method

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2020208937A JP6909473B1 (en) 2020-12-17 2020-12-17 Bottle heat insulation device and bottle heat insulation method

Publications (2)

Publication Number Publication Date
JP6909473B1 true JP6909473B1 (en) 2021-07-28
JP2022096050A JP2022096050A (en) 2022-06-29

Family

ID=76967281

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2020208937A Active JP6909473B1 (en) 2020-12-17 2020-12-17 Bottle heat insulation device and bottle heat insulation method

Country Status (1)

Country Link
JP (1) JP6909473B1 (en)

Citations (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH01189472A (en) * 1988-01-22 1989-07-28 Japan Vilene Co Ltd Cold insulator
JPH02307528A (en) * 1989-05-19 1990-12-20 Dainippon Printing Co Ltd Composition for water absorbing sheet
JPH0719173U (en) * 1993-09-07 1995-04-07 竹子 輿石 Multi cold / heat insulation bag
JPH0733100Y2 (en) * 1988-05-19 1995-07-31 三順 中嶋 Cooler for mugs
JPH10258882A (en) * 1997-03-17 1998-09-29 Misumo Kako:Kk Heat insulation bag
JPH11115972A (en) * 1997-10-13 1999-04-27 Bridgestone Sports Co Ltd Cold insulated bag
JP2002333248A (en) * 2001-05-14 2002-11-22 Inoac Corp Cold storage sheet
JP3135353U (en) * 2007-06-29 2007-09-13 あゆみ 伊藤 Cold and warm equipment for beverages
JP2012116553A (en) * 2010-12-03 2012-06-21 Shinji Kobayashi Cooling implement
JP2017221618A (en) * 2016-06-17 2017-12-21 イッチク・カルチュアバリュー株式会社 Bottled beverage cold/heat-retaining container
JP3214073U (en) * 2017-06-16 2017-12-21 知子 稲垣 Cold storage buffer furoshiki for sake bottles
JP2019107052A (en) * 2017-12-15 2019-07-04 株式会社クロスハーツ Drink container
WO2019156182A1 (en) * 2018-02-07 2019-08-15 シャープ株式会社 Cooling tool and beverage cooling method

Patent Citations (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH01189472A (en) * 1988-01-22 1989-07-28 Japan Vilene Co Ltd Cold insulator
JPH0733100Y2 (en) * 1988-05-19 1995-07-31 三順 中嶋 Cooler for mugs
JPH02307528A (en) * 1989-05-19 1990-12-20 Dainippon Printing Co Ltd Composition for water absorbing sheet
JPH0719173U (en) * 1993-09-07 1995-04-07 竹子 輿石 Multi cold / heat insulation bag
JPH10258882A (en) * 1997-03-17 1998-09-29 Misumo Kako:Kk Heat insulation bag
JPH11115972A (en) * 1997-10-13 1999-04-27 Bridgestone Sports Co Ltd Cold insulated bag
JP2002333248A (en) * 2001-05-14 2002-11-22 Inoac Corp Cold storage sheet
JP3135353U (en) * 2007-06-29 2007-09-13 あゆみ 伊藤 Cold and warm equipment for beverages
JP2012116553A (en) * 2010-12-03 2012-06-21 Shinji Kobayashi Cooling implement
JP2017221618A (en) * 2016-06-17 2017-12-21 イッチク・カルチュアバリュー株式会社 Bottled beverage cold/heat-retaining container
JP3214073U (en) * 2017-06-16 2017-12-21 知子 稲垣 Cold storage buffer furoshiki for sake bottles
JP2019107052A (en) * 2017-12-15 2019-07-04 株式会社クロスハーツ Drink container
WO2019156182A1 (en) * 2018-02-07 2019-08-15 シャープ株式会社 Cooling tool and beverage cooling method

Also Published As

Publication number Publication date
JP2022096050A (en) 2022-06-29

Similar Documents

Publication Publication Date Title
US6182464B1 (en) Self-chilling bottle for a bicycle and the like
US4986089A (en) Adjustable refrigeratable beverage wrap around holder
ES2223575T3 (en) COLD STORAGE DEVICE.
US6125645A (en) Moisture removal phase shift personal cooling Garment
US4183226A (en) Refrigerated beverage holder
JP6909473B1 (en) Bottle heat insulation device and bottle heat insulation method
JP6936464B1 (en) Bottle heat insulation device and bottle heat insulation method
US20150362244A1 (en) Insulating and cooling sleeve for beverage containers
US5233840A (en) Method and apparatus for cooling refrigerant recovery system tanks and the like
KR20160026273A (en) portable cooling pack using phange change materials
JP2002039655A (en) Cold preservation/heat storage unit
US11001432B1 (en) Food container with forced moisture removal
ES2359314T3 (en) REFRIGERATOR DEVICE AND SUPPORT OF PRODUCTS TO REFRIGERATE FOR THE SAME.
KR200317393Y1 (en) A drink and liquor use keeping warm a zone
KR200424080Y1 (en) Air Ice Pack
US2438869A (en) Refrigerated clothes vault
JP2002195711A (en) Cold insulation or heat storage body
JP3676036B2 (en) Low temperature showcase
KR20040041497A (en) A drink and liquor use keeping warm a zone
JP3851705B2 (en) Food cold storage packaging bag
JP3181106U (en) Cap with head cooling function
JP3088811U (en) Bottle holder
WO2000036959A1 (en) Device by cooler for drinks
JPH05280849A (en) Cooling member and cooling member fixing structure
US20230028126A1 (en) Adaptable cooling sleeve for beverage containers

Legal Events

Date Code Title Description
A621 Written request for application examination

Free format text: JAPANESE INTERMEDIATE CODE: A621

Effective date: 20201217

A871 Explanation of circumstances concerning accelerated examination

Free format text: JAPANESE INTERMEDIATE CODE: A871

Effective date: 20201217

A975 Report on accelerated examination

Free format text: JAPANESE INTERMEDIATE CODE: A971005

Effective date: 20210112

A131 Notification of reasons for refusal

Free format text: JAPANESE INTERMEDIATE CODE: A131

Effective date: 20210122

A521 Request for written amendment filed

Free format text: JAPANESE INTERMEDIATE CODE: A523

Effective date: 20210205

A131 Notification of reasons for refusal

Free format text: JAPANESE INTERMEDIATE CODE: A131

Effective date: 20210405

A521 Request for written amendment filed

Free format text: JAPANESE INTERMEDIATE CODE: A523

Effective date: 20210406

TRDD Decision of grant or rejection written
A01 Written decision to grant a patent or to grant a registration (utility model)

Free format text: JAPANESE INTERMEDIATE CODE: A01

Effective date: 20210625

A61 First payment of annual fees (during grant procedure)

Free format text: JAPANESE INTERMEDIATE CODE: A61

Effective date: 20210625

R150 Certificate of patent or registration of utility model

Ref document number: 6909473

Country of ref document: JP

Free format text: JAPANESE INTERMEDIATE CODE: R150

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250