JP2011240968A - Cold reserving implement for bottle - Google Patents

Cold reserving implement for bottle Download PDF

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JP2011240968A
JP2011240968A JP2010115117A JP2010115117A JP2011240968A JP 2011240968 A JP2011240968 A JP 2011240968A JP 2010115117 A JP2010115117 A JP 2010115117A JP 2010115117 A JP2010115117 A JP 2010115117A JP 2011240968 A JP2011240968 A JP 2011240968A
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bottle
heat insulating
insulating material
opening
decompression space
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JP5364037B2 (en
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Akio Arai
昭男 荒井
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Abstract

PROBLEM TO BE SOLVED: To provide a cold reserving implement for a bottle which is easily attached to/detached from a bottle and prevents temperature of a hand from being propagated.SOLUTION: The bottomed cylindrical container-shaped cold reserving implement for the bottle is configured to house the bottle so as to expose a portion above a narrowed part B3 forming a narrow opening B4 at the upper part of the bottle B and cover a bottom part B1 and a side part B2 of the bottle B, and includes: a flexible heat insulating material 2 formed in fixed layer thickness such that its side surface 2a has an inside diameter L somewhat larger than an outside diameter W of the side part B2 of the bottle B, and the side part 2a and a bottom part 2b can be insulated from heat; a resilient hard coating material 1 formed in thin and fixed layer thickness such that the outer peripheries of the bottom part 2b and the side part 2a of the heat insulating material 2 are covered; a bottle contact band 3 having resiliency and formed such that its inner peripheral surface provided around an inner surface near to the bottom part 2b of the heat insulating material 2 has an inside diameter R somewhat smaller than the outside diameter W of the bottle B and a small decompressed space S is formed between the bottom part 2b of the heat insulating material 2 and the bottom part B1 of the bottle B by housing the bottle B; and suction and discharge control means X controlling air to get into/out of the decompressed space S.

Description

本発明はビールやワインなど冷たい状態で飲む飲物の入ったビンを保冷しつつ、グラスなどに注ぐことが可能となるビン保冷器に関する。   The present invention relates to a bottle cooler that can pour into a glass or the like while keeping a bottle containing a drink such as beer or wine in a cold state.

ビール、ワインなどのアルコール飲料や清涼飲料などは温度によって味が微妙に変化するため、グラスなどに注ぐときにビンを持つ指の体温でビンの温度が上昇して飲料の味が変化するのを防止しようとする工夫が行われている。
通常、ビンの手で掴む部分に布巾を巻く方法が多用されているが、綺麗に巻くのが面倒である上に、人によって布巾の巻き方にムラがあり断熱効果が得られない場合もある。
一方、下記特許文献1にはビールビンに被して用いる筒状の「簡単ヒエヒエパック」なる保冷具が提案されている。この保冷具では掴んだとき指からの熱遮断の効果は一定に得られるようになる。また底がないのでビンを置いたままその上から容易にビンを着脱できる利点もある。
The taste of alcoholic beverages such as beer and wine and soft drinks changes slightly depending on the temperature, so when pouring into a glass etc., the temperature of the bottle rises due to the body temperature of the finger holding the bottle, and the taste of the beverage changes Ingenuity to prevent is being done.
Usually, a method of winding a cloth cloth around the part of the bottle that is gripped by hand is often used, but it is troublesome to wind it neatly. .
On the other hand, Patent Document 1 below proposes a cold insulator that is a cylindrical “simple hihihi pack” that is used over a beer bottle. With this cold insulator, the effect of heat insulation from the finger can be obtained to a certain extent when grasped. Moreover, since there is no bottom, there is also an advantage that the bottle can be easily attached and detached from the top while the bottle is placed.

登録実用新案第3153525号公報Registered Utility Model No. 3153525

しかしながら、上記特許文献1に記載の保冷具は筒状の底面は開放されているので保冷が充分にできない難点がある。さらに、底がないのでビンの着脱が容易である反面注ぐときに一方の手で底を押えないとビンが滑り抜けて落ちてしまう虞がある。   However, the cold insulator described in Patent Document 1 has a difficulty in that it cannot be sufficiently cooled because the cylindrical bottom surface is open. Furthermore, since there is no bottom, it is easy to attach and detach the bottle. On the other hand, when pouring, if the bottom is not pressed with one hand, the bottle may slip and fall.

そこで、本発明は、底を押えないで片手で持って注ぐことが可能で、且つ中に入れるビンの着脱が容易となり、手の体温をビンに伝播しないビン保冷具を提供することを目的とする。   SUMMARY OF THE INVENTION An object of the present invention is to provide a bottle cooler that can be poured with one hand without holding the bottom and that can easily be attached to and detached from the bottle and does not propagate the body temperature of the hand to the bottle. To do.

上記課題を解決するため、本発明のビン保冷器は、請求項1に記載の発明にあっては、ビンの上部の絞り口を形成する絞り部以上を露出させてビンの底部と側部を覆って収納可能とした円筒形の有底容器型ビン保冷器である。
該ビン保冷器は、側面をビンの側部の外周よりも僅かに大きい内径とし、且つ該側部と底部を断熱可能な一定層厚の柔軟性断熱材と、該断熱材の底部と側部の外周を覆った薄い一定層厚の弾発性硬質被覆材と、前記断熱材の底部寄り内面周囲に設けた内周面がビンの外径よりも僅かに小さい内径に形成してビンの収納によって前記断熱材の底部と前記ビンの底部との間に狭小な減圧空間を形成可能とした弾発性を有するビン密着帯と、減圧空間への空気の出入りを制御する吸排制御手段とから成る。
In order to solve the above-mentioned problem, in the bottle cooler of the present invention, in the invention according to claim 1, the bottom part and the side part of the bottle are exposed by exposing at least the throttle part forming the throttle port at the top of the bottle. A cylindrical bottomed bottle-type bottle cooler that can be covered and stored.
The bottle cooler has a side wall with a slightly larger inner diameter than the outer periphery of the side part of the bottle, a flexible heat insulating material having a constant layer thickness that can insulate the side part and the bottom part, and a bottom part and a side part of the heat insulating material. An elastic hard coating material with a thin and constant layer thickness covering the outer periphery of the bottle, and an inner peripheral surface provided around the inner surface near the bottom of the heat insulating material is formed to have an inner diameter slightly smaller than the outer diameter of the bottle. And a bottle-adhesive band having a resilience that enables a narrow decompression space to be formed between the bottom of the heat insulating material and the bottom of the bottle, and an intake / exhaust control means for controlling the flow of air into and out of the decompression space. .

そして、前記吸排制御手段は、ビンを収納するとき、前記減圧空間が縮小されて加圧された内部の空気を外部に排出可能とする排気手段と、ビンを逆さにしたとき、ビンが抜け落ちないように空気の侵入を停止して前記減圧空間を減圧可能とする密封手段と、ビンを抜き出せるように前記減圧空間の密封を解除可能とする開封手段とを備えたことを特徴とする。   The suction / exhaust control means includes: an exhaust means that allows the compressed internal air to be discharged to the outside when the decompression space is reduced when storing the bottle; and the bottle does not fall out when the bottle is inverted. In this way, there is provided sealing means for stopping the intrusion of air so that the decompression space can be decompressed, and opening means for enabling sealing of the decompression space so that the bottle can be extracted.

請求項2に記載の発明にあっては、上記発明において、前記吸排制御手段の排気手段及び密封手段が、硬質被覆材と断熱材の底部を貫通した通気路と、該通気路に外部方向に開き内部方向に閉じる逆止弁を備えたことを特徴とする。   In the invention described in claim 2, in the above invention, the exhaust means and the sealing means of the suction / exhaust control means include an air passage that penetrates the bottom of the hard coating material and the heat insulating material, and the air passage has an outward direction. A check valve that opens and closes inward is provided.

請求項3に記載の発明にあっては、上記各発明において、前記吸排制御手段の開封手段が、前記減圧空間内から前記減圧空間外へとビン密着帯を貫通した通気路を設け、該通気路に開閉弁とその開閉弁の開閉操作を行う操作ボタンとを備えたことを特徴とする。   According to a third aspect of the present invention, in the above inventions, the unsealing means of the suction / exhaust control means is provided with an air passage that penetrates a bottle adhesion band from the inside of the decompression space to the outside of the decompression space. The road is provided with an opening / closing valve and an operation button for opening / closing the opening / closing valve.

請求項3に記載の発明にあっては、上記請求項1又は2に記載の発明において、前記吸排制御手段の開封手段が、前記減圧空間内に臨ませて、硬質被覆材と断熱材の側部を貫通した通気路に開閉弁とその開閉弁の開閉操作を行う操作ボタンとを備えたことを特徴とする。   According to a third aspect of the present invention, in the first or second aspect of the present invention, the unsealing means of the suction / exhaust control means faces the inside of the decompression space, and is on the side of the hard coating material and the heat insulating material. The vent passage which penetrated the section is provided with an opening / closing valve and an operation button for opening / closing the opening / closing valve.

請求項4に記載の発明にあっては、上記請求項1に記載の発明において、前記吸排制御手段の排気手段、密封手段及び開封手段が、硬質被覆材の底部の外周で側部との境界に長さを全体で半周を超える長さとした1つの切込又は対称な2つの切込を設け、前記硬質被覆材の側部の両側面からの指の押圧で硬質被覆材及び断熱材の側部の全体を水平断面の形状が真円状から楕円状へと変形させて、膨らみ部分に通気路を発生可能としたことを特徴とする。   According to a fourth aspect of the present invention, in the first aspect of the present invention, the exhaust means, the sealing means, and the opening means of the suction / exhaust control means are arranged on the outer periphery of the bottom portion of the hard coating material and the boundary with the side portion. Provided with one incision or two symmetrical incisions having a total length exceeding half a circumference, and the side of the hard covering and the heat insulating material by the finger pressing from both side surfaces of the side of the hard covering The shape of the horizontal section of the entire portion is deformed from a perfect circle to an ellipse, and an air passage can be generated in the bulging portion.

本発明のビン保冷具は断熱材が覆っているので触れた手の体温を収納したビンに伝播させず、且つ外気が高い温度でもビンの温度の急上昇を防止することが可能となる。
そして、中の飲料をコップなどに注ぐときには、有底のビン保冷具にビンを入れたまま底を押えないで単に片手で持ち上げて注ぐことが可能となり、その際、底部寄り内面周囲に備わる内周面がビンの外径Wよりも僅かに小さい内径のビン密着帯の保持された状態となり且つ吸排制御手段における密封手段によりビンが逆さにしても減圧空間内に空気が入らなので抜け落ちることがない。
また、ビンを収納する際には、底部寄りにあるビン密着帯までは抵抗なく入り、そのまま押すように入れると吸排制御手段における排気手段により減圧空間内から空気が排出されてビン密着帯を突き抜けて底まで容易に入れられる。また、ビンを抜くときには、吸排制御手段における開封手段により前記減圧空間内に外の空気が入り、ビン密着帯の少ない抵抗は受けるが減圧空間の減圧が解消されて容易にビンを抜き出すことが可能となる。
Since the bottle cooler of the present invention is covered with the heat insulating material, the body temperature of the touched hand is not propagated to the stored bottle, and the bottle temperature can be prevented from rapidly increasing even at a high outside air temperature.
In addition, when pouring the beverage in a cup or the like, it is possible to pour it by simply lifting it with one hand without holding the bottom while keeping the bottle in the bottomed bottle cooler. Even if the peripheral surface is in a state where a bottle contact band having an inner diameter slightly smaller than the outer diameter W of the bottle is held and the bottle is inverted by the sealing means in the suction / discharge control means, air does not fall out because air enters the decompression space. .
When the bottle is stored, the bottle close band near the bottom is inserted without resistance, and if it is pushed as it is, air is exhausted from the decompression space by the exhaust means in the suction / discharge control means and penetrates the bottle close band. Can be easily put to the bottom. Also, when the bottle is pulled out, outside air enters the decompressed space by the opening means in the suction / exhaust control means and receives a resistance with a small bottle contact band, but the decompressed space in the decompressed space is eliminated and the bottle can be easily pulled out. It becomes.

請求項2の発明にあっては、ビンを収納する際に、ビンを入れると減圧空間S内の空気が、硬質被覆材と断熱材の底部を貫通した通気路を通過して空気が抜け、その際に通気路に外部方向には開き、且つ内部方向には閉じる逆止弁により確実に空気を外に排出させ底部に到るまでの収納が容易となる。
そして収納されたビンは、密封手段の逆止弁により減圧空間内が密封されて前記通気路から外の空気が入らないので、そのままではビンが容易に抜け出ないようになり、逆さにして注いでも抜け落ちる心配がない。
In the invention of claim 2, when storing the bottle, when the bottle is inserted, the air in the decompression space S passes through the air passage passing through the bottom of the hard coating material and the heat insulating material, and the air is released. At that time, a check valve that opens to the outside of the air passage and closes to the inside of the air passage reliably discharges air to the outside and facilitates storage until it reaches the bottom.
And since the inside of the decompression space is sealed by the check valve of the sealing means so that the outside air does not enter from the ventilation path, the bottle that has been housed cannot be easily pulled out as it is. There is no worry about falling out.

請求項3の発明にあっては、収納したビンを抜くとき、ビン密着帯を貫通して減圧空間内に通じた通気路を、操作ボタンを押すだけで容易に開くことが可能となり、減圧空間内に外の空気を導き入れて減圧状態を解除し、ビンを軽く抜くことが可能となる。   In the invention of claim 3, when the stored bin is pulled out, it is possible to easily open the air passage that penetrates the bottle adhering band and communicates with the reduced pressure space by simply pressing the operation button. The outside air is introduced into the inside to release the decompression state, and the bottle can be pulled out lightly.

請求項4の発明にあっては、硬質被覆材と断熱材の底部を貫通して減圧空間内に通じた通気路を、操作ボタンを押すだけで容易に開くことが可能となり、減圧空間内に外の空気を導き入れて減圧状態を解除し、ビンを軽く抜くことが可能となる。   In the invention of claim 4, it is possible to easily open the air passage that penetrates the bottom of the hard coating material and the heat insulating material and leads to the reduced pressure space by simply pressing the operation button. The outside air can be introduced to release the decompression state, and the bottle can be pulled out lightly.

請求項5の発明にあっては、硬質被覆材の底部の外周で側部との境界に全体で半周を超える長さの1つの切込又は対称な2つの切込を設けてあるので、前記硬質被覆材の側部の両側面から指で押圧することで前記硬質被覆材及び断熱材の側部の全体を大きく変形させ、膨らみ部分のビン密着帯の一部がビンの表面から離れて通気路が開口し、ビンを収納してできる減圧空間内と外部とが連通し、そこから空気の自由な出入りが可能となる。
このため、ビンを収納するときと、抜き出すときに、硬質被覆材の側部の両側から指で強く押して変形させれば着脱が容易に行え且つ強く押さないときには逆さにしても減圧空間S内が密封された状態となってビンが抜け落ちることなくビンを収納した状態を保持可能となり、ビンを逆さにして注いでもビン保冷器からビンが抜け落ちる心配がない。
In the invention of claim 5, since the entire outer circumference of the bottom of the hard coating material is provided with one incision or two symmetrical incisions having a length exceeding a half circumference at the boundary with the side part, By pressing with fingers from both sides of the side of the hard coating material, the entire side of the hard coating material and the heat insulating material is greatly deformed, and a part of the swelled bottle adhering band separates from the surface of the bottle and ventilates. The passage opens and the inside of the decompression space formed by storing the bottle communicates with the outside, and air can freely enter and exit from there.
For this reason, when the bottle is stored and when it is extracted, it can be easily attached / detached if it is deformed by pressing it strongly with fingers from both sides of the side of the hard coating material. Since the bottle is stored in a sealed state without dropping out, it is possible to hold the bottle in the inverted state, and there is no fear that the bottle will fall out of the bottle cooler even when the bottle is poured upside down.

以上の如く、ビン保冷具へのビンの出し入れが容易で且つコップなどへ注ぐときには逆さにしてもビンがビン保冷具抜け落ちる虞がない使用し易いビン保冷具が実現できた。   As described above, an easy-to-use bottle cooler has been realized in which the bottle can be easily put in and out of the bottle cooler and when the bottle is poured upside down, there is no risk that the bottle will fall out.

本発明の(イ)が横断平面図であり、(ロ)が縦断側面図であり、(ハ)がビンを入れた状態の横断平面図であり、(ニ)がビンを入れた状態の縦断側面図である。(A) of the present invention is a cross-sectional plan view, (b) is a vertical side view, (c) is a cross-sectional plan view with a bottle inserted therein, and (d) is a vertical cross section with a bottle inserted therein It is a side view. ビンを入れた状態の縦断側面図である。It is a vertical side view of the state which put the bin. 別の形態の(イ)がビンを出した状態、(ロ)がビンを入れた状態の各縦断側面図である。It is each vertical side view of the state where (i) of another form has taken out the bin, and (b) is in the state of having put the bin. また別の形態の(イ)が操作ボタンを押さない状態、(ロ)が操作ボタンを押した状態の要部を示す各縦断側面図である。In addition, (a) in another form is a state in which the operation button is not pressed, and (b) is a vertical side view showing the main part in a state in which the operation button is pressed. 別の形態の(イ)が指で押さない状態を示し、(ロ)が指で押して変形させた状態を示す各横断平面図である。It is each cross-sectional top view which shows the state which (a) of another form does not press with a finger | toe, and (b) shows the state deform | transformed by pushing with a finger | toe. 図5の形態の(イ)が指で押さない状態を示し、(ロ)が指で押して変形させた状態を示す各縦断側面図である。FIG. 6 is a longitudinal side view showing a state where (a) in the form of FIG. 5 is not pressed with a finger and (b) is deformed by being pressed with a finger.

本発明を実施するための形態について以下説明する。
本発明のビン保冷器は、図1の(ハ)及び(ニ)に示すように、ビンBの上部の絞り口B4を形成する絞り部B3以上を露出させてビンBの底部B1と側部B2を覆って収納可能とした円筒形の有底容器型ビン保冷器である。即ち、収納したビンBの円筒部分の底部B1を含めた下部側の全体が覆われるが上部は剥き出し状態となってビンBが収納される。
The form for implementing this invention is demonstrated below.
As shown in FIGS. 1C and 1D, the bottle cooler according to the present invention exposes the narrowed portion B3 or more forming the throttle port B4 at the top of the bin B to expose the bottom B1 and the side portion of the bin B. It is a cylindrical bottomed container-type bottle cooler that covers B2 and can be stored. That is, the entire lower portion including the bottom B1 of the cylindrical portion of the stored bin B is covered, but the upper portion is exposed and the bin B is stored.

該ビン保冷器は、図1の(イ)〜(ニ)に示すように、側面2aをビンBの側部B2の外周Wよりも僅かに大きい内径Lとし、且つ該側部2aと底部2bを断熱可能な一定層厚の柔軟性断熱材2と、該断熱材2の底部1bと側部1aの外周を覆った薄い一定層厚の弾発性硬質被覆材1と、前記断熱材2の底部2b寄り内面周囲に設けた内周面がビンBの外径Wよりも僅かに小さい内径Rに形成してビンBの収納よって前記断熱材2の底部1bと前記ビンBの底部B1との間に狭小な減圧空間Sを形成可能とした弾発性を有するビン密着帯3とで構成し、さらに、収納したビンBにより形成された前記断熱材2の底部1bと前記ビンBの底部B1との間の外気とはビン密着帯3で仕切られた減圧空間Sに、空気の出入り制御する吸排制御手段Xを設ける。
前記弾発性硬質被覆材1としては、薄い鋼材などの金属や硬質プラスチックが使用でき、前記断熱材2としては発泡樹脂やゴムなどが使用可能である。
なお、図1中の(イ)はビンを入れていない状態を示す横断平面図であり、(ロ)はその縦断側面図であり、(ハ)はビンを入れた状態を示す横断平面図であり、(ニ)はその状態の縦断側面図である。
As shown in FIGS. 1A to 1D, the bottle cooler has a side surface 2a having an inner diameter L slightly larger than the outer periphery W of the side B2 of the bin B, and the side 2a and the bottom 2b. A flexible heat insulating material 2 having a constant layer thickness capable of insulating heat, a thin elastic layered hard covering material 1 having a constant constant thickness covering the outer periphery of the bottom 1b and the side portion 1a of the heat insulating material 2, and the heat insulating material 2 The inner circumferential surface provided around the inner surface near the bottom 2b is formed to have an inner diameter R slightly smaller than the outer diameter W of the bin B, and the bin B is accommodated so that the bottom 1b of the heat insulating material 2 and the bottom B1 of the bin B are formed. It is comprised with the elastic | bind close_contact | adherence belt | band | zone 3 which has the elasticity which can form the narrow pressure reduction space S between, Furthermore, the bottom part 1b of the said heat insulating material 2 formed with the accommodated bin B, and the bottom part B1 of the said bin B Intake / exhaust control means X for controlling the flow of air into and out of the decompression space S partitioned by the bottle close-contact zone 3 Provided.
As the elastic hard covering material 1, a metal such as a thin steel material or hard plastic can be used, and as the heat insulating material 2, a foamed resin or rubber can be used.
In FIG. 1, (a) is a cross-sectional plan view showing a state where no bin is inserted, (B) is a vertical side view thereof, and (C) is a cross-sectional plan view showing a state where a bin is inserted. Yes, (d) is a longitudinal side view of the state.

そして、前記吸排制御手段Xは、ビンBを収納するとき、前記減圧空間Sが縮小されて加圧された内部の空気を外部に排出可能とする排気手段と、ビンを逆さにしたとき、ビンが抜け落ちないように空気の侵入を停止して前記減圧空間Sを減圧可能とする密封手段と、ビンを抜き出せるように前記減圧空間Sの密封を解除可能とする開封手段とを備えて成る。   When the bottle B is stored, the suction / exhaust control means X includes an exhaust means for reducing the decompressed space S and discharging the pressurized internal air to the outside, and when the bottle is inverted, Sealing means for stopping the intrusion of air so that the air does not fall off, and reducing the pressure of the decompression space S, and opening means for releasing the sealing of the decompression space S so that the bottle can be extracted.

前記前記吸排制御手段Xの中の密封手段は、ビン密着帯3の摩擦抵抗と、該減圧空間S内にビンBと飲料との合算自重した重量のビンBが逆さにしても自然落下しない程度の減圧とが得られるようにする。このため、前記ビン密着帯3は隙間に残る残留空気は少ない方が良いので上部に形成するのはビンBの側部B2との間の隙間により空気量が多くなるので好ましくなく、さらに、収納する際にビンBの底部B1が底部1bに到達するまでに途中での抵抗がないほうが好ましいので、前記断熱材2の底部2bに近い高さ形成するのが好ましい。   The sealing means in the suction / exhaust control means X is such that the frictional resistance of the bottle adhesion band 3 and the bottle B with the weight of the total weight of the bottle B and the beverage in the decompression space S do not fall naturally even if they are inverted. The reduced pressure is obtained. For this reason, since it is better that the bottle contact band 3 has less residual air remaining in the gap, it is not preferable to form it in the upper part because the air amount increases due to the gap between the side B2 of the bin B, and further, In this case, it is preferable that the bottom B1 of the bin B does not have resistance in the middle before reaching the bottom 1b. Therefore, it is preferable to form a height close to the bottom 2b of the heat insulating material 2.

前記吸排制御手段Xについては各種の形態が可能である。
例えば、図1の(二)及び図2に示すように、前記吸排制御手段Xの排気手段及び密封手段が、硬質被覆材1と断熱材2の間を底部1b、2bまで貫通して内部開口部4を有する通気路Y1が外部に開いた外部開口部5を備えて、収納する際にビンBとの間に形成される前記減圧空間Sは通気路Y1を介して常には外気と繋がった形態が可能である。
この形態では、指で外部開口部5を塞いで前記減圧空間Sを密封することが可能となる。
Various forms of the suction / exhaust control means X are possible.
For example, as shown in FIG. 1 (2) and FIG. 2, the exhaust means and the sealing means of the intake / exhaust control means X penetrate between the hard covering material 1 and the heat insulating material 2 to the bottom portions 1b and 2b and are opened internally. The ventilation path Y1 having the portion 4 includes an external opening 5 that opens to the outside, and the decompression space S formed between the bottle B and the housing B when being stored is always connected to the outside air through the ventilation path Y1. Forms are possible.
In this form, it is possible to seal the decompression space S by closing the external opening 5 with a finger.

したがって、この使用方法は、まずビンBを収納するときには、外部開口部5は開放した状態で差し込むと前記減圧空間Sの空気は通気路Y1から外に逃げるので、ビン密着帯3部分の抵抗はあるが軽く底まで差し込んで収納が完了する。そして、コップなどへ中の飲料を注ぐためビンBを逆さにするときには指で外部開口部5を塞いで前記減圧空間Sを密封して傾ける。こうすると前記減圧空間Sへ空気が入らなくなるのでビンBがビン保冷器から抜けなくなり、安心して注ぐことができる。
飲料が空になって外すときには、外部開口部5は開放した状態で引っ張ると前記減圧空間Sの空気は通気路Y1から中に吸入されるので、ビン密着帯3部分の抵抗はあるが軽く抜き出すことができる。
Therefore, in this usage method, when the bin B is first stored, if the external opening 5 is inserted in an open state, the air in the decompression space S escapes from the ventilation path Y1, so that the resistance of the bin adhesion band 3 portion is Although there is lightly inserted to the bottom, the storage is completed. Then, when the bottle B is turned upside down in order to pour the beverage inside the cup, the external opening 5 is closed with a finger and the decompression space S is sealed and tilted. This prevents air from entering the decompression space S, so that the bottle B does not come out of the bottle cooler and can be poured in peace.
When the beverage is emptied and removed, if the external opening 5 is pulled open, the air in the decompression space S is sucked into the air passage Y1, so that the bottle contact zone 3 portion has resistance but is gently extracted. be able to.

また例えば、図3の(イ)、(ロ)に示すように、前記吸排制御手段Xの排気手段及び密封手段が、硬質被覆材1と断熱材2の底部1b、2bを貫通した開口部10を通る通気路Y2と、該通気路Y2に外部方向に開き内部方向に閉じる逆止弁6を備えた形態とすることが可能である。
なお、図3中の(イ)はビンを入れていない状態を示す縦断側面図であり、(ロ)はビンを入れた状態を示す縦断側面である。
この形態では、前記逆止弁6がビンBを収納するときには前記減圧空間Sから自動的に中の空気が押し出され、抜こうとすると前記減圧空間Sへ空気が入らなくなるのでビンBがビン保冷器から抜けなくなる。
Further, for example, as shown in FIGS. 3A and 3B, the exhaust means and the sealing means of the intake / exhaust control means X have openings 10 penetrating through the hard covering material 1 and the bottom portions 1b and 2b of the heat insulating material 2. And a check valve 6 that opens to the outside and closes to the inside.
In addition, (a) in FIG. 3 is a longitudinal side view showing a state where no bin is inserted, and (b) is a longitudinal side view showing a state where a bin is inserted.
In this embodiment, when the check valve 6 accommodates the bin B, the air inside is automatically pushed out from the decompression space S, and if it is to be removed, the air does not enter the decompression space S. It will not come out of the vessel.

したがって、上記図2の形態にこの形態を適用すると、ビンBを収納するときにも指で外部開口部5を塞いだ状態でも前記減圧空間Sのよる抵抗もなく収納することが可能となる。   Therefore, when this form is applied to the form shown in FIG. 2, it is possible to house the bin B without resistance due to the decompression space S even when the external opening 5 is closed with a finger.

また、図3の(イ)、(ロ)に示すように、前記吸排制御手段Xの開封手段が、前記減圧空間S内から前記減圧空間S外へとビン密着帯3を貫通した通気路Y3を設け、該通気路Y3に開閉弁7bとその開閉弁7bの開閉操作を行う操作ボタン7aを備えた形態とすることも可能である。なお図中の符号7cは操作ボタン7aと開閉弁7bとを繋ぐボタン軸である。
この開封手段の形態では、指で操作ボタン7aを押すとビン密着帯3に設けた通気路Y3の開閉口11を押し広げる開閉弁7bが開いて前記減圧空間Sと外気とが繋がる(図3の(ロ)に示す)。
したがって、ビンBを収納するときには、指で前記操作ボタン7aを押せば前記減圧空間Sによる抵抗もなく軽く収納させることが可能となり、またビンBを引抜くときにも指で前記操作ボタン7aを押せば前記減圧空間Sによる抵抗もなく軽く抜取ることが可能となる。
Further, as shown in FIGS. 3A and 3B, the opening / closing means of the suction / exhaust control means X passes through the bottle contact zone 3 from the inside of the decompression space S to the outside of the decompression space S. And an opening / closing valve 7b and an operation button 7a for opening / closing the opening / closing valve 7b may be provided in the ventilation path Y3. In addition, the code | symbol 7c in a figure is a button axis | shaft which connects the operation button 7a and the on-off valve 7b.
In this form of opening means, when the operation button 7a is pressed with a finger, the opening / closing valve 7b that pushes the opening / closing port 11 of the air passage Y3 provided in the bottle close-contact band 3 opens, and the decompression space S and the outside air are connected (FIG. 3). (Shown in (b)).
Therefore, when the bin B is stored, if the operation button 7a is pressed with a finger, it can be stored lightly without resistance due to the decompression space S. Also, when the bin B is pulled out, the operation button 7a is pressed with the finger. If pressed, it is possible to remove lightly without resistance due to the decompression space S.

この形態では図3の(イ)、(ロ)に示すように、前記逆止弁6も一緒に設けると、ビンBを収納するときには前記減圧空間Sから自動的に中の空気が押し出され、この際に前記操作ボタン7aを押す必要がなく、また抜こうとするときには前記操作ボタン7aを押せば前記減圧空間Sによる抵抗もなく軽く抜取ることが可能となる。   In this embodiment, as shown in FIGS. 3A and 3B, when the check valve 6 is also provided, the air inside is automatically pushed out from the decompression space S when the bin B is stored, At this time, it is not necessary to press the operation button 7a, and when the user wants to remove, the operation button 7a can be pushed lightly without any resistance due to the decompression space S.

また、図4の(イ)、(ロ)に示すように、前記吸排制御手段Xの開封手段が、前記減圧空間S内に臨ませて、硬質被覆材1と断熱材2の側部1a、2aを貫通した通気路Y3に開閉弁9とその開閉弁9の開閉操作を行う操作ボタン8aとを備えた形態とすることも可能である。
図4の符号8bは空気吸排軸で、9aは開閉弁9の内部開口、9bは開閉弁9の外部開口であり、前記空気吸排軸8b内に形成された態様を示している。
この開封手段の形態では、指で操作ボタン8aを押すと通気路Y4の開閉弁9が開いて前記減圧空間Sと外気とが直接に繋がる(図4の(ロ)に示す)。
したがって、ビンBを収納するときには、指で前記操作ボタン8aを押せば前記減圧空間Sによる抵抗もなく軽く収納させることが可能となり、またビンBを引抜くときにも指で前記操作ボタン8aを押せば前記減圧空間Sによる抵抗もなく軽く抜取ることが可能となる。
Further, as shown in FIGS. 4A and 4B, the unsealing means of the suction / exhaust control means X faces the decompressed space S, and the side portions 1a of the hard covering material 1 and the heat insulating material 2 are arranged. An opening / closing valve 9 and an operation button 8a for opening / closing the opening / closing valve 9 may be provided in the ventilation path Y3 penetrating 2a.
Reference numeral 8b in FIG. 4 denotes an air intake / exhaust shaft, 9a denotes an internal opening of the on-off valve 9, and 9b denotes an external opening of the on-off valve 9, showing an embodiment formed in the air intake / exhaust shaft 8b.
In this form of opening means, when the operation button 8a is pushed with a finger, the opening / closing valve 9 of the ventilation path Y4 is opened, and the decompression space S and the outside air are directly connected (shown in FIG. 4 (B)).
Therefore, when the bin B is stored, the operation button 8a can be lightly stored without any resistance due to the decompression space S by pushing the operation button 8a with a finger, and the operation button 8a can be stored with the finger when the bin B is pulled out. If pressed, it is possible to remove lightly without resistance due to the decompression space S.

この形態では図4の(イ)、(ロ)に示すように、前記逆止弁6も一緒に設けると、ビンBを収納するときには前記減圧空間Sから自動的に中の空気が押し出され、この際に前記操作ボタン8aを押す必要がなく、また抜こうとするときには前記操作ボタン8aを押せば前記減圧空間Sによる抵抗もなく軽く抜取ることが可能となる。   In this embodiment, as shown in FIGS. 4A and 4B, when the check valve 6 is also provided, the air inside is automatically pushed out from the decompression space S when the bin B is stored, At this time, it is not necessary to press the operation button 8a, and when the operation button 8a is to be pulled out, the operation button 8a can be pushed out without any resistance due to the decompression space S.

さらに、横断平面図である図5の(イ)、(ロ)とその縦断側面図である図6の(イ)、(ロ)に示すように、前記吸排制御手段Xの排気手段、密封手段及び開封手段が、硬質被覆材1の底部1bの外周で側部1aとの境界に長さを全体で半周を超える長さとした1つの切込12又は対称な2つの切込12a、12bを設け、前記硬質被覆材1の側部1aの両側面からの指の押圧で硬質被覆材1及び断熱材2の側部1a、2aの全体を水平断面の形状が真円状から楕円状へと変形させて、膨らみ部分に通気路Y5を発生可能とした形態とすることも可能である。
なお、図5中の符号、Fは変形後の硬質被覆材の広がった方の外径、Hは変形後のビン密着帯の内径、Mは硬質被覆材の外径、WはビンBの側部の外径である。
図6の(イ)は指の押圧で狭まった状態のa−a線断面であり、図6の(ロ)は前記図6の(イ)の指の押圧により広がって、2つの切込12a、12bは開き通気路Y5が発生した状態のb−b線断面を示す各縦断側面図である。
Further, as shown in (a) and (b) of FIG. 5 which is a cross-sectional plan view and (a) and (b) of FIG. 6 which are longitudinal side views thereof, the exhaust means and sealing means of the intake / exhaust control means X And the opening means is provided with one incision 12 or two symmetrical incisions 12a and 12b at the outer periphery of the bottom 1b of the hard covering 1 at the boundary with the side part 1a and having a total length exceeding a half circumference. The shape of the horizontal cross section of the entire side portions 1a and 2a of the hard covering material 1 and the heat insulating material 2 is changed from a perfect circle shape to an elliptical shape by pressing a finger from both sides of the side portion 1a of the hard covering material 1 Thus, the air passage Y5 can be generated in the bulging portion.
5, F is the outer diameter of the hard covering material after deformation, the outer diameter of the expanded hard coating material, H is the inner diameter of the bottle adhesive band after deformation, M is the outer diameter of the hard coating material, and W is the side of the bin B The outer diameter of the part.
6A is a cross-sectional view taken along the line aa in a state narrowed by the finger pressing, and FIG. 6B is expanded by the finger pressing of FIG. , 12b are vertical side views showing a cross section taken along line bb in a state where the open air passage Y5 is generated.

この形態では、ビンBを収納するときには、この変形は両側の底面外周切込12a、12bがあるので、指で前記硬質被覆材1の側部1aの両側面を押圧して硬質被覆材1及び断熱材2の側部1a、2aの全体を水平断面の形状が真円状から楕円状へと容易に変形させることが可能となる。
この変形で断熱材2の側部2aの形成されたビン密着帯3部分とビンBとの間に隙間即ち通気路Y5が発生し、単に指で前記硬質被覆材1の側部1aの両側面を押圧することで、前記減圧空間Sによる抵抗もなくビンBを軽く収納させたり、また引抜いたりすることが可能となる。
In this embodiment, when the bin B is stored, the deformation has the bottom peripheral cuts 12a and 12b on both sides, so that both sides of the side portion 1a of the hard covering 1 are pressed with a finger and the hard covering 1 and The entire side portions 1a and 2a of the heat insulating material 2 can be easily deformed from a perfect circular shape to an elliptical shape in the horizontal cross section.
Due to this deformation, a gap, that is, a ventilation path Y5 is generated between the bottle B and the bin adhesion band 3 portion where the side 2a of the heat insulating material 2 is formed, and both sides of the side 1a of the hard coating 1 are simply fingered. By pressing, the bottle B can be lightly accommodated or pulled out without resistance due to the decompression space S.

本発明はビンを収納して用いるビン保冷器であるが、ビン以外の金属製など容器についても本発明のビン保冷器内に収納可能であれば使用が可能である。   Although the present invention is a bottle cooler that stores and uses a bottle, a container such as a metal other than a bottle can be used as long as it can be stored in the bottle cooler of the present invention.

1 硬質被覆材
1a 硬質被覆材の側部
1b 硬質被覆材の底部
2 断熱材
2a 側面
2b 底部
3 ビン気密帯
4 内部開口部
5 外部開口部
6 逆止弁
7 空気吸排制御部
7a 制御ボタン
7b 開閉弁
7c ボタン軸
8a 制御ボタン
8b 空気吸排軸
9 開閉弁
9a 内部開口
9b 外部開口
10 開口部
11 開閉口
12a 底面外周切込
12b 底面外周切込
S 減圧空間
X 吸排手段
Y、Y1〜Y5 通気路
L 断熱材の側部の内径
R ビン気密帯の内径
F 変形後の硬質被覆材の広がった方の外径
H 変形後のビン密着帯の内径
M 硬質被覆材の外径
B ビン
B1 底部
B2 側部
B3 絞り部
B4 絞り口
W ビンの側部の外径
DESCRIPTION OF SYMBOLS 1 Hard coating | cover material 1a Side part 1b of hard coating | covering material 2 Bottom part of hard coating | covering material 2 Insulation material 2a Side surface 2b Bottom part 3 Bin airtight belt 4 Internal opening part 5 External opening part 6 Check valve 7 Air intake / exhaust control part 7a Control button 7b Open / close Valve 7c Button shaft 8a Control button 8b Air intake / exhaust shaft 9 Open / close valve 9a Internal opening 9b External opening 10 Opening portion 11 Opening / closing opening 12a Bottom outer peripheral notch 12b Bottom outer peripheral notch S Depressurization space X Intake / exhaust means Y, Y1-Y5 Ventilation path L Inner diameter R of the side of the heat insulating material Inner diameter F of the hermetic band of the bin The outer diameter of the hard covering material after the deformation H The inner diameter M of the bottle adhesive band after the deformation The outer diameter B of the hard coating material B Bin B1 Bottom B2 Side B3 Diaphragm B4 Diaphragm W Outer diameter of bin side

Claims (5)

ビンの上部の絞り口を形成する絞り部以上を露出させてビンの底部と側部を覆って収納可能とした円筒形の有底容器型ビン保冷器であって、
側面をビンの側部の外周よりも僅かに大きい内径とし、且つ該側部と底部を断熱可能な一定層厚の柔軟性断熱材と、
該断熱材の底部と側部の外周を覆った薄い一定層厚の弾発性硬質被覆材と、
前記断熱材の底部寄り内面周囲に設けた内周面がビンの外径よりも僅かに小さい内径に形成してビンの収納よって前記断熱材の底部と前記ビンの底部との間に狭小な減圧空間を形成可能とした弾発性を有するビン密着帯と、
減圧空間への空気の出入りを制御する吸排制御手段とから成り、
前記吸排制御手段は、ビンを収納するとき前記減圧空間が縮小されて加圧された内部の空気を外部に排出可能とする排気手段と、ビンを逆さにしたときビンが抜け落ちないように空気の侵入を停止して前記減圧空間を減圧可能とする密封手段と、ビンを抜き出せるように前記減圧空間の密封を解除可能とする開封手段とを備えたことを特徴とするビン保冷器。
A cylindrical bottomed container-type bottle cooler that can be stored by covering the bottom and sides of the bottle by exposing the throttle part forming the throttle opening at the top of the bottle,
A flexible heat insulating material having a constant layer thickness that allows the side surface to have an inner diameter slightly larger than the outer periphery of the side portion of the bottle, and that can insulate the side portion and the bottom portion;
A thin, constant layer thickness elastic hard covering material covering the outer periphery of the bottom and sides of the heat insulating material;
The inner peripheral surface provided around the inner surface near the bottom of the heat insulating material is formed to have an inner diameter slightly smaller than the outer diameter of the bottle, and the pressure is reduced between the bottom of the heat insulating material and the bottom of the bottle by storing the bin. A bottle-adhesive belt having elasticity that can form a space;
It consists of intake / exhaust control means that controls the entry and exit of air into the decompression space,
The intake / exhaust control means includes an exhaust means that allows the compressed internal air to be discharged to the outside when the decompression space is reduced when the bottle is stored, and an air flow that prevents the bottle from falling off when the bottle is inverted. A bottle cooler comprising: sealing means for stopping intrusion and enabling decompression of the decompression space; and opening means for enabling sealing of the decompression space so that the bottle can be extracted.
吸排制御手段の排気手段及び密封手段が、硬質被覆材と断熱材の底部を貫通した通気路と、該通気路に外部方向に開き内部方向に閉じる逆止弁を備えたことを特徴とする請求項1に記載のビン保冷器。   The exhaust means and the sealing means of the intake / exhaust control means include an air passage that penetrates the bottom of the hard coating material and the heat insulating material, and a check valve that opens outwardly and closes inward in the air passage. Item 2. The bottle cooler according to item 1. 吸排制御手段の開封手段が、前記減圧空間内から前記減圧空間外へとビン密着帯を貫通した通気路を設け、該通気路に開閉弁とその開閉弁の開閉操作を行う操作ボタンとを備えたことを特徴とする請求項1又は2に記載のビン保冷器。   The unsealing means of the intake / exhaust control means includes a vent passage that penetrates a bottle contact zone from the inside of the decompression space to the outside of the decompression space, and includes an opening / closing valve and an operation button for opening / closing the opening / closing valve in the ventilation passage. The bottle cooler according to claim 1 or 2, characterized in that. 吸排制御手段の開封手段が、前記減圧空間内に臨ませて、硬質被覆材と断熱材の側部を貫通した通気路に開閉弁とその開閉弁の開閉操作を行う操作ボタンとを備えたことを特徴とする請求項1又は2に記載のビン保冷器。   The opening / closing means of the intake / exhaust control means is provided with an opening / closing valve and an operation button for opening / closing the opening / closing valve in an air passage passing through the side of the hard coating material and the heat insulating material so as to face the decompression space. The bottle cooler according to claim 1 or 2. 吸排制御手段の排気手段、密封手段及び開封手段が、硬質被覆材の底部の外周で側部との境界に長さを全体で半周を超える長さとした1つの切込又は対称な2つの切込を設け、前記硬質被覆材の側部の両側面からの指の押圧で硬質被覆材及び断熱材の側部の全体を水平断面の形状が真円状から楕円状へと変形させて、膨らみ部分に通気路を発生可能としたことを特徴とする請求項1に記載のビン保冷器。   Exhaust means, sealing means and unsealing means of the intake / exhaust control means are one incision or two symmetrical incisions whose total length exceeds the half circumference at the boundary with the side at the outer periphery of the bottom of the hard coating material The entire side portion of the hard coating material and the heat insulating material is deformed from a perfect circular shape to an elliptical shape by pressing a finger from both side surfaces of the side portion of the hard coating material, and a bulging portion The bottle cooler according to claim 1, wherein an air passage can be generated in the bottle.
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Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS57132636U (en) * 1981-02-13 1982-08-18
US4383422A (en) * 1981-12-03 1983-05-17 Gordon Jay E Portable insulated holder for beverage containers
US5762234A (en) * 1996-09-03 1998-06-09 Incredea Company Insulated beverage container holder assembly
JP2000007059A (en) * 1998-06-22 2000-01-11 Mikinobu Okura Cold-insulating and heat-insulating container
US7337915B1 (en) * 2002-07-05 2008-03-04 Daniel Weldon Insulating beverage container holder

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS57132636U (en) * 1981-02-13 1982-08-18
US4383422A (en) * 1981-12-03 1983-05-17 Gordon Jay E Portable insulated holder for beverage containers
US5762234A (en) * 1996-09-03 1998-06-09 Incredea Company Insulated beverage container holder assembly
JP2000007059A (en) * 1998-06-22 2000-01-11 Mikinobu Okura Cold-insulating and heat-insulating container
US7337915B1 (en) * 2002-07-05 2008-03-04 Daniel Weldon Insulating beverage container holder

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