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JP2021534044A - Vacuum insulated stacking container for temperature controlled transportation of food - Google Patents

Vacuum insulated stacking container for temperature controlled transportation of food Download PDF

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JP2021534044A
JP2021534044A JP2021509211A JP2021509211A JP2021534044A JP 2021534044 A JP2021534044 A JP 2021534044A JP 2021509211 A JP2021509211 A JP 2021509211A JP 2021509211 A JP2021509211 A JP 2021509211A JP 2021534044 A JP2021534044 A JP 2021534044A
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container
stacking
outer container
wall
edge portion
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JP7280940B2 (en
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ケラーマン フリッツ
レースナー ペーター
マウダー トビアス
タラシェブスキー トーマス
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ファ−クー−テック アクチェンゲゼルシャフト
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D21/00Nestable, stackable or joinable containers; Containers of variable capacity
    • B65D21/02Containers specially shaped, or provided with fittings or attachments, to facilitate nesting, stacking, or joining together
    • B65D21/0209Containers specially shaped, or provided with fittings or attachments, to facilitate nesting, stacking, or joining together stackable or joined together one-upon-the-other in the upright or upside-down position
    • B65D21/0213Containers presenting a continuous stacking profile along the upper or lower edge of at least two opposite side walls
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D81/00Containers, packaging elements, or packages, for contents presenting particular transport or storage problems, or adapted to be used for non-packaging purposes after removal of contents
    • B65D81/38Containers, packaging elements, or packages, for contents presenting particular transport or storage problems, or adapted to be used for non-packaging purposes after removal of contents with thermal insulation
    • B65D81/3813Containers, packaging elements, or packages, for contents presenting particular transport or storage problems, or adapted to be used for non-packaging purposes after removal of contents with thermal insulation rigid container being in the form of a box, tray or like container
    • B65D81/3823Containers, packaging elements, or packages, for contents presenting particular transport or storage problems, or adapted to be used for non-packaging purposes after removal of contents with thermal insulation rigid container being in the form of a box, tray or like container formed of different materials, e.g. laminated or foam filling between walls
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D81/00Containers, packaging elements, or packages, for contents presenting particular transport or storage problems, or adapted to be used for non-packaging purposes after removal of contents
    • B65D81/38Containers, packaging elements, or packages, for contents presenting particular transport or storage problems, or adapted to be used for non-packaging purposes after removal of contents with thermal insulation
    • B65D81/3825Containers, packaging elements, or packages, for contents presenting particular transport or storage problems, or adapted to be used for non-packaging purposes after removal of contents with thermal insulation rigid container being in the form of a box, tray or like container with one or more containers located inside the external container
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D81/00Containers, packaging elements, or packages, for contents presenting particular transport or storage problems, or adapted to be used for non-packaging purposes after removal of contents
    • B65D81/38Containers, packaging elements, or packages, for contents presenting particular transport or storage problems, or adapted to be used for non-packaging purposes after removal of contents with thermal insulation
    • B65D81/3825Containers, packaging elements, or packages, for contents presenting particular transport or storage problems, or adapted to be used for non-packaging purposes after removal of contents with thermal insulation rigid container being in the form of a box, tray or like container with one or more containers located inside the external container
    • B65D81/383Containers, packaging elements, or packages, for contents presenting particular transport or storage problems, or adapted to be used for non-packaging purposes after removal of contents with thermal insulation rigid container being in the form of a box, tray or like container with one or more containers located inside the external container the external tray being formed with double walls, i.e. hollow
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D3/00Devices using other cold materials; Devices using cold-storage bodies
    • F25D3/02Devices using other cold materials; Devices using cold-storage bodies using ice, e.g. ice-boxes
    • F25D3/06Movable containers
    • F25D3/08Movable containers portable, i.e. adapted to be carried personally
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D3/00Devices using other cold materials; Devices using cold-storage bodies
    • F25D3/10Devices using other cold materials; Devices using cold-storage bodies using liquefied gases, e.g. liquid air
    • F25D3/107Devices using other cold materials; Devices using cold-storage bodies using liquefied gases, e.g. liquid air portable, i.e. adapted to be carried personally
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D3/00Devices using other cold materials; Devices using cold-storage bodies
    • F25D3/12Devices using other cold materials; Devices using cold-storage bodies using solidified gases, e.g. carbon-dioxide snow
    • F25D3/14Devices using other cold materials; Devices using cold-storage bodies using solidified gases, e.g. carbon-dioxide snow portable, i.e. adapted to be carried personally
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D2201/00Insulation
    • F25D2201/10Insulation with respect to heat
    • F25D2201/14Insulation with respect to heat using subatmospheric pressure
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D2303/00Details of devices using other cold materials; Details of devices using cold-storage bodies
    • F25D2303/08Devices using cold storage material, i.e. ice or other freezable liquid
    • F25D2303/082Devices using cold storage material, i.e. ice or other freezable liquid disposed in a cold storage element not forming part of a container for products to be cooled, e.g. ice pack or gel accumulator
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D2303/00Details of devices using other cold materials; Details of devices using cold-storage bodies
    • F25D2303/08Devices using cold storage material, i.e. ice or other freezable liquid
    • F25D2303/083Devices using cold storage material, i.e. ice or other freezable liquid using cold storage material disposed in closed wall forming part of a container for products to be cooled
    • F25D2303/0832Devices using cold storage material, i.e. ice or other freezable liquid using cold storage material disposed in closed wall forming part of a container for products to be cooled the liquid is disposed in an accumulator pack locked in a closable wall forming part of the container

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • General Engineering & Computer Science (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Packages (AREA)
  • Stackable Containers (AREA)

Abstract

食品の温度管理された輸送のための積み重ね容器(1)であって、一側が開いた収容空間(33)を形成するように互いに接合された外部容器底(31)と外部容器壁(32)を備えた外部容器(3)を有し、積み重ね容器(1)はさらに、一側が開いた容器空間(23)を形成するように互いに接合された内部容器底(21)と内部容器壁(22)を備えた内部容器(2)を有し、内部容器壁(22)は上縁部(221)を備え、外部容器底(31)は下縁部(311)を備え、上縁部(221)と下縁部(311)は積み重ね容器(1)が互いに積み重なったときに噛み合うように相補的に設計されており、積み重ねにおいて、上にある積み重ね容器(1)の外部容器底(31)が、その下側に配置された積み重ね容器(1)の蓋を形成し、内部容器壁(22)と外部容器壁(32)との間、及び内部容器底(21)と外部容器底(31)との間に真空断熱要素(5)が配置されている。A stacking container (1) for temperature-controlled transportation of food, the outer container bottom (31) and the outer container wall (32) joined together to form a storage space (33) open on one side. The stacking container (1) further comprises an inner container bottom (21) and an inner container wall (22) joined together to form a container space (23) open on one side. ), The inner container wall (22) has an upper edge (221), the outer container bottom (31) has a lower edge (311), and an upper edge (221). ) And the lower edge portion (311) are complementarily designed so that the stacking containers (1) mesh with each other when they are stacked. , A lid of the stacking container (1) arranged on the lower side thereof is formed, and between the inner container wall (22) and the outer container wall (32), and between the inner container bottom (21) and the outer container bottom (31). A vacuum heat insulating element (5) is arranged between the and.

Description

本発明は、独立請求項による食品の温度管理された(例えば冷却された)輸送のための真空断熱積み重ね容器に関する。 The present invention relates to a vacuum insulated stacking container for temperature controlled (eg, cooled) transport of food according to an independent claim.

このタイプの積み重ね容器は、実際において広く知られており、例えば輸送のためだけでなく保管のためにもプラスチックボックスの形でパン屋のパンを取り扱う際に使用される。これらのプラスチックボックスは、充填した状態と充填していない状態で積み重ねることができる。 This type of stacking container is widely known in practice and is used, for example, when handling bakery bread in the form of plastic boxes not only for transportation but also for storage. These plastic boxes can be stacked with and without filling.

このようなプラスチックボックスは、容器底を4辺で全周包囲する容器壁を備えており、それによってパン又は同類のものを入れることができる一側が開いた容器空間が生じる。 Such a plastic box comprises a container wall that surrounds the bottom of the container on all four sides, thereby creating an open container space on one side that can hold bread or the like.

容器壁の開いた縁部と底部はそれぞれ全周を囲んで互いに噛み合う端縁部で形成されている。そのため上にあるプラスチックボックスの容器底の端縁部は、その下にあるプラスチックボックスの容器壁に当接して、積み重ねたプラスチックボックスが滑って位置がずれないように固定できる。 The open edges and bottom of the container wall are each formed by edges that surround the entire circumference and mesh with each other. Therefore, the edge of the bottom of the container of the plastic box above can be abutted against the container wall of the plastic box below, and the stacked plastic boxes can be fixed so as not to slip and shift their positions.

このようなプラスチックボックスの問題は、断熱性がないために使用が制限されている点である。特にいわゆるベーカリーチェーン店に商品が適温状態で納入されるケースがますます増えているので、断熱材のない従来のプラスチックボックスは冷却冷蔵ユニットのない配送車両での輸送には使用できない。冷却装置を内蔵した車両でもチェーン店に搬入する間に温度の影響が大幅に増加する。この場合、プラスチックボックスで保管又は輸送される食品は過大な温度変動を被り、そのためにもはや使用できなくなったり、腐ったりするリスクがある。 The problem with such plastic boxes is that their use is limited due to their lack of thermal insulation. In particular, as the number of cases where products are delivered to so-called bakery chain stores at appropriate temperatures is increasing, conventional plastic boxes without insulation cannot be used for transportation in delivery vehicles without cooling and refrigerating units. Even for vehicles with a built-in cooling device, the effect of temperature increases significantly during delivery to a chain store. In this case, the food stored or transported in the plastic box is subject to excessive temperature fluctuations, which risks being no longer usable or rotting.

食品を輸送するためのプラスチックボックスに断熱材がない問題は、肉製品の輸送においても同様に生じる。ここでは精肉店内での取り扱い中に冷却が不十分になるリスクがある。この問題は、食品を取り扱う他の多くの分野でも当てはめることができる。 The problem of lack of insulation in plastic boxes for transporting food also arises in the transport of meat products. Here there is a risk of insufficient cooling during handling in the butcher shop. This issue can also be applied in many other areas of food handling.

断熱性を有する積み重ね可能な容器は、特許文献1に示されている。原則としてそこに記載されている輸送容器は、温度に敏感な食品(例えばパン、肉製品、魚など)に使用することができる。輸送容器は、内部容器と外部容器からなる下部からなり、内部容器と外部容器の間に断熱材が配置されている。下部の上には閉鎖可能な蓋が配置されており、積み重ねを可能にするために蓋の上側は閉じた状態で輸送容器の下側に対して相補的に設計されている。上記のプラスチックボックスとは異なり、この輸送容器は蓋が装備されているため、積み重ねるときに上側容器の下側が閉じた蓋の上に置かれる。原則としてこれにより垂直方向に、食品輸送での通常の使用に必要とされない余分な断熱が生じる。 A stackable container having heat insulating properties is shown in Patent Document 1. In principle, the shipping containers described therein can be used for temperature sensitive foods (eg bread, meat products, fish, etc.). The transport container consists of a lower part consisting of an inner container and an outer container, and a heat insulating material is arranged between the inner container and the outer container. A closureable lid is placed above the bottom, and the top of the lid is designed to be closed and complementary to the bottom of the shipping container to allow stacking. Unlike the plastic boxes described above, this shipping container is equipped with a lid, so the underside of the upper container is placed on a closed lid when stacking. As a rule, this results in vertical, extra insulation not required for normal use in food transport.

独国実用新案第202016001097(U1)号明細書German Utility Model No. 2016001097 (U1)

本発明の課題は、従来技術の不利な点を克服し、特に構造が単純で、輸送のために便利に取り扱うことができる積み重ね容器を提供することである。 An object of the present invention is to overcome the disadvantages of the prior art and to provide a stacking container that is particularly simple in structure and can be conveniently handled for transportation.

上記の課題は、独立請求項による食品の温度管理された輸送のための積み重ね容器によって解決される。従属請求項に有利な実施形態が記載されている。 The above problem is solved by a stacking container for temperature controlled transportation of food according to an independent claim. Preferred embodiments are described in the dependent claims.

本発明は、食品の温度管理された輸送のための(真空断熱された)積み重ね容器を含む。積み重ね容器は、外部容器底と外部容器壁を備えた外部容器を有しており、外部容器底と外部容器壁は一側が開いた収容空間を形成するように互いに接合している。さらに、積み重ね容器は、内部容器底と内部容器壁を備えた内部容器を有しており、内部容器底と内部容器壁は一側が開いた容器空間を形成するように相互に接合している。内部容器壁は上縁部を有し、外部容器底には下縁部を有しており、上縁部と下縁部は容器を上下に積み重ねたときに互いに噛み合うように相補的に設計されている。内部容器壁と外部容器壁との間、及び内部容器底と外部容器底との間には、真空断熱要素が配置されている。上記の上縁部の設計により、その上にある積み重ね容器の下縁部と確実に噛み合うことができるので、多数の積み重ね容器を確実に積み重ねることができる。内部容器底と外部容器底との間に真空断熱要素を配置することにより、上側容器の底部が下側容器の容器空間を閉じることによって、積み重ねた積み重ね容器で断熱された蓋が提供される。真空断熱要素は真空断熱パネル(VIP)であることが好ましく、これは例えば欧州特許出願公開第2700891(A2)号明細書又は独国特許出願公開第202014004515(U1)号明細書に記載されている。このようにして積み重ね容器システムは、上下に積み重ねて配置された少なくとも2つの積み重ね容器から作成することができ、上にある積み重ね容器の外底が下にある積み重ね容器の容器空間の上側を閉じる。これにより高度に断熱された積み重ね可能なコンパートメントが得られ、熱伝導率が0.5W/K未満と良好な熱システムが実現する。これは約0.61W/(m2K)の熱伝達係数(U値)に相当する(蓋面を含み、外面に基づくすべての熱橋を含む)。原則として真空断熱要素による非常に優れた断熱によって得られる温度保持時間は、約6時間の輸送時間を達成するのに十分である。輸送時間を、例えば最大24時間まで延ばすために、温度保持時間を相応に長くする相変化材料(PCM)を導入することができる。商品に機械的ストレスを与えるのを防ぐために、(PCM)アキュムレータ(側面及び/又は蓋)を保持具によってライナー内に固定して落下を防ぐ。ボックスのスタックの閉鎖部材として、或は個々のボックスが納入される場合、若しくは配達後の待ち時間が長い場合は、真空断熱要素を含んだ追加の蓋を配置できる。 The present invention includes a (vacuum insulated) stacking container for temperature controlled transportation of food. The stacking container has an outer container having an outer container bottom and an outer container wall, and the outer container bottom and the outer container wall are joined to each other so as to form a storage space open on one side. Further, the stacking container has an inner container having an inner container bottom and an inner container wall, and the inner container bottom and the inner container wall are joined to each other so as to form a container space open on one side. The inner container wall has an upper edge and the outer container bottom has a lower edge, and the upper and lower edges are designed to complement each other so that they mesh with each other when the containers are stacked one above the other. ing. Vacuum insulating elements are arranged between the inner container wall and the outer container wall, and between the inner container bottom and the outer container bottom. Due to the design of the upper edge portion described above, it is possible to reliably mesh with the lower edge portion of the stacking container on the upper edge portion, so that a large number of stacking containers can be reliably stacked. By disposing a vacuum insulating element between the bottom of the inner container and the bottom of the outer container, the bottom of the upper container closes the container space of the lower container, thereby providing a lid insulated by the stacked containers. The vacuum insulation element is preferably a vacuum insulation panel (VIP), which is described, for example, in European Patent Application Publication No. 2709891 (A2) or German Patent Application Publication No. 2014400315 (U1). .. In this way, the stacking vessel system can be made up of at least two stacking vessels arranged one above the other, with the outer bottom of the stacking vessel above closing the upper side of the container space of the stacking vessel below. This provides a highly insulated stackable compartment and provides a good thermal system with a thermal conductivity of less than 0.5 W / K. This corresponds to a heat transfer coefficient (U value) of about 0.61 W / (m 2 K) (including the lid surface and including all thermal bridges based on the outer surface). In principle, the temperature retention time obtained by the very good insulation with the vacuum insulation element is sufficient to achieve the transport time of about 6 hours. In order to extend the transport time, for example up to 24 hours, a phase change material (PCM) can be introduced that increases the temperature retention time accordingly. In order to prevent mechanical stress on the product, the (PCM) accumulator (sides and / or lid) is fixed in the liner by a holder to prevent it from falling. An additional lid containing a vacuum insulation element can be placed as a closing member of the stack of boxes, or if individual boxes are delivered, or if the waiting time after delivery is long.

有利な態様によれば、内部容器壁は上縁部に、及び外部容器底は下縁部に、それぞれL字型ストッパを備える。L字型の構成により上縁部と下縁部を簡単に相補的に設計できるため、上縁部と下縁部は滑らないようにロックされている。 According to an advantageous embodiment, the inner container wall is provided with an L-shaped stopper at the upper edge portion, and the outer container bottom is provided with an L-shaped stopper at the lower edge portion. The L-shaped configuration allows the upper and lower edges to be easily complementarily designed so that the upper and lower edges are locked so that they do not slip.

L字型ストッパはそれぞれ上縁部と下縁部で、それぞれ最小長さ0.5cmの第1の輪郭部と(それに直角に配置された)第2の輪郭部を有することが有利である。 It is advantageous that the L-shaped stopper has a first contour portion with a minimum length of 0.5 cm and a second contour portion (arranged at right angles to it), respectively, at the upper edge portion and the lower edge portion.

特に好ましくは、内部容器壁は、上縁部で完全に全周を囲む突出部を備えており、突出部は挿入された状態で外部容器壁を少なくとも部分的に覆う大きさと形状を有する。 Particularly preferably, the inner container wall has a protrusion that completely surrounds the entire circumference at the upper edge, and the protrusion has a size and shape that at least partially covers the outer container wall in the inserted state.

内部容器の突出部は、外部容器壁と全周で堅固に接合していることが有利である。 It is advantageous that the protrusion of the inner container is firmly joined to the outer container wall all around.

堅固な結合を達成するために、内部容器の突出部と外部容器壁は、好ましくは熱的に接合可能なプラスチック材料でできている。プラスチックは、例えばポリウレタン、ポリプロピレン又はポリエチレンを含むことができる。この場合、内部容器の突出部分は、外側の容器壁に溶着されている。 To achieve a tight bond, the protrusions of the inner vessel and the walls of the outer vessel are preferably made of a thermally bondable plastic material. The plastic can include, for example, polyurethane, polypropylene or polyethylene. In this case, the protruding portion of the inner container is welded to the outer container wall.

代替例によると、内部容器の突出部は外部容器壁と接着されている。代替例によれば、熱的に接合可能な材料も接合不可能な材料も接着により接合することができる。 According to an alternative example, the protrusion of the inner container is glued to the outer container wall. According to an alternative example, both thermally connectable and non-bondable materials can be bonded by bonding.

さらに、内部容器壁は、内部容器底を起点として垂直に延びるように、又は互いに円錐状に広がるように配置されていることが好ましい。特に真空断熱要素が一体的な真空断熱パネルで、内部容器底又は外部容器底の延び方に従って折りたたまれている場合、内部容器底と外部容器底との間の距離がより大きく、内部容器壁と外部容器壁との間の距離がより小さいと、組み立てに有利である。 Further, it is preferable that the inner container wall is arranged so as to extend vertically from the bottom of the inner container or to spread out in a conical shape with each other. Especially when the vacuum insulation element is an integrated vacuum insulation panel and is folded according to the extension of the inner container bottom or the outer container bottom, the distance between the inner container bottom and the outer container bottom is larger and the inner container wall A smaller distance to the outer container wall is advantageous for assembly.

別の有利な態様によれば、内部容器の底面の大きさは外部容器の底面の大きさの少なくとも70%の大きさである。真空断熱パネルの優れた断熱性に基づき、内部容器の底面と外部容器の底面との間の空間を小さく保つことができるため、外部容器の底面と比較して同様に大きい内部容器の底面が提供される。 According to another advantageous embodiment, the size of the bottom surface of the inner container is at least 70% of the size of the bottom surface of the outer container. Due to the excellent insulation of the vacuum insulation panel, the space between the bottom of the inner container and the bottom of the outer container can be kept small, providing a similarly large bottom of the inner container compared to the bottom of the outer container. Will be done.

真空断熱要素は単一の(一体的な)真空断熱パネルであることが特に好ましい。真空断熱パネルは少なくとも1つの折り目を有する。 It is particularly preferred that the vacuum insulation element be a single (integral) vacuum insulation panel. The vacuum insulation panel has at least one crease.

外部容器底は有利には、その下にある積み重ね容器の上縁部を完全に囲んで閉じるための大きさと形状を有する。有利な例では、容器間の閉鎖が、対流が防止されるように設計されている。 The outer container bottom is advantageously sized and shaped to completely enclose and close the upper edge of the underlying stacking container. In a favorable example, the closure between the vessels is designed to prevent convection.

この態様の1つの可能な実施形態は、外部容器底が底部構造に十分な高さの段差を有しており、その結果として2つの積み重ね容器を積み重ねた状態で下にある上縁部に深く突入して、熱の熱経路が十分に延長され、かつ対流が減少するようにされている。 One possible embodiment of this embodiment is that the bottom of the outer vessel has a sufficiently high step in the bottom structure, resulting in a stack of two stacked vessels deep into the underlying upper edge. By plunging, the heat path of heat is sufficiently extended and convection is reduced.

以下に本発明を、添付の図面に示された例を参照してより詳細に説明する。 Hereinafter, the present invention will be described in more detail with reference to the examples shown in the accompanying drawings.

図1は本発明による食品の温度管理された輸送のための積み重ね容器の実施形態の外部容器と内部容器の詳細斜視図である。FIG. 1 is a detailed perspective view of an outer container and an inner container according to an embodiment of a stacking container for temperature-controlled transportation of food according to the present invention. 図2は積み重ね容器の側面断面図である。FIG. 2 is a side sectional view of the stacking container. 図3は図1に示す内部容器の角の詳細斜視図である。FIG. 3 is a detailed perspective view of the corner of the inner container shown in FIG. 図4aは互いに積み重ねた2つの積み重ね容器の側面斜視図である。FIG. 4a is a side perspective view of two stacking containers stacked on each other. 図4bは蓋のある互いに積み重ねた2つの積み重ね容器の側面斜視図である。FIG. 4b is a side perspective view of two stacking containers with lids stacked on top of each other. 図5は図1の外部容器と内部容器との間に配置できる積み重ね容器に対する真空断熱要素の平面図である。FIG. 5 is a plan view of a vacuum insulation element for a stacking container that can be placed between the outer container and the inner container of FIG.

図1は、本発明による積み重ね容器1の例示的な実施形態の外部容器3と内部容器2の詳細図を示している。 FIG. 1 shows a detailed view of an outer container 3 and an inner container 2 according to an exemplary embodiment of the stacking container 1 according to the present invention.

外部容器3は、外部容器底31と、そこから上方に延びる外部容器壁32とを備える。外部容器壁32と外部容器底31は、一体的に形成されているか、若しくは製造工程においてプラスチック材料から成形されている。このように成形された外部容器3は、一側が上方に向かって開いた収容空間33を有し、その中に内部容器2をほぼ完全に押し込むことができるので、外部容器3の内側と内部容器2の外側との間に真空断熱要素のための完全に閉じられた収容空間が形成されている。 The outer container 3 includes an outer container bottom 31 and an outer container wall 32 extending upward from the bottom. The outer container wall 32 and the outer container bottom 31 are integrally formed or molded from a plastic material in the manufacturing process. Since the outer container 3 thus formed has a storage space 33 having one side open upward, and the inner container 2 can be pushed almost completely into the storage space 33, the inside of the outer container 3 and the inner container 3 can be pushed into the storage space 33. A completely closed containment space is formed between the outside of the 2 and the vacuum insulation element.

内部容器2は、単一の材料から一体的に形成され互いに接合している内部容器底21と内部容器壁22を有する。それにより温度管理された輸送を目的とした食品を受け入れるのに適した、一側が開いた容器空間23が形成される。 The inner container 2 has an inner container bottom 21 and an inner container wall 22 integrally formed from a single material and joined to each other. Thereby, a container space 23 with an open side is formed, which is suitable for receiving food for temperature-controlled transportation.

確実で安定した方法での積み重ねを保証するために、内部容器壁22は上部に完全に全周を囲むL字型のストッパを備えた縁部221を有する。 To ensure stacking in a reliable and stable manner, the internal container wall 22 has an edge 221 at the top with an L-shaped stopper that completely surrounds the entire circumference.

外部容器底31は下縁部(この斜視図では見えない。図2を参照)を有し、これは積み重ね容器1を互いに積み重ねたときに、下にある積み重ね容器1の内部容器壁22の上縁部221に設けたL字型ストッパに当接するように相補的に設計されている。 The outer container bottom 31 has a lower edge (not visible in this perspective view, see FIG. 2), which is above the inner container wall 22 of the underlying stacking container 1 when the stacking containers 1 are stacked on top of each other. It is designed to be complementary so as to abut on the L-shaped stopper provided on the edge portion 221.

食品の温度管理された輸送のための完全に組み立てられた積み重ね容器が、側面断面図で図2に示されている。 A fully assembled stacking container for temperature controlled transport of food is shown in FIG. 2 in a side sectional view.

積み重ね容器1の断面図では、互いに直接接合している外部容器底31と外部容器壁32を備えた外部容器3を見ることができる。上方が開いた収容空間33に内部容器2が配置されている。 In the cross-sectional view of the stacking container 1, the outer container 3 provided with the outer container bottom 31 and the outer container wall 32 directly joined to each other can be seen. The internal container 2 is arranged in the accommodation space 33 having an open upper part.

内部容器2は、同様に直接結合している内部容器底21と内部容器壁22を有する。 The inner container 2 also has an inner container bottom 21 and an inner container wall 22 that are directly coupled.

断面図からL字型肩部を備えた全周を囲む上縁部221と、下縁部311に配置された下側L字型肩部が見える。両L字型肩部は、2つの積み重ね容器1を積み重ねた状態でこれらが互いに入れ子状になって、積み重ね容器1が滑ってずれることがないように相補的に設計されている。下縁部311に示されているL字型ストッパは、長さ1.9cmの第1の輪郭部3111と、長さ0.8cmの第2の輪郭部3112を有する。 From the cross-sectional view, an upper edge portion 221 having an L-shaped shoulder portion and surrounding the entire circumference and a lower L-shaped shoulder portion arranged on the lower edge portion 311 can be seen. Both L-shaped shoulders are complementarily designed so that the two stacking containers 1 are stacked and nested with each other so that the stacking containers 1 do not slip and shift. The L-shaped stopper shown in the lower edge portion 311 has a first contour portion 3111 having a length of 1.9 cm and a second contour portion 3112 having a length of 0.8 cm.

上部領域で内部容器壁22は、上縁部221で完全に全周を囲む突出部222を有する。突出部222は、外部容器壁32を上から完全に覆うのに十分な大きさと形状を有する。原則としてこの覆いは完全に実施されなくてもよい。この変形例は、場合によっては機械的安定性又は熱橋の点で不利になる。 In the upper region, the inner container wall 22 has a protrusion 222 that completely surrounds the entire circumference with the upper edge portion 221. The protrusion 222 has a size and shape sufficient to completely cover the outer container wall 32 from above. In principle, this covering does not have to be completely implemented. This variant may be disadvantageous in terms of mechanical stability or thermal bridge.

内部容器壁22は、内部容器底21を起点として互いに円錐状に拡張するように、即ち外部容器壁32に向かって延びるように配置されている。円錐度は、製造技術と用途によって異なる。原則として、最低約1°が適切と見なされる。 The inner container wall 22 is arranged so as to extend in a conical shape from the inner container bottom 21 as a starting point, that is, to extend toward the outer container wall 32. Conicalness depends on manufacturing technology and application. In principle, at least about 1 ° is considered appropriate.

図示の真空断熱要素5は一体的な真空断熱パネルである。 The illustrated vacuum insulation element 5 is an integral vacuum insulation panel.

図3は、図2に示す積み重ね容器の内部容器の角の斜視詳細図である。 FIG. 3 is a detailed perspective view of the corners of the inner container of the stacking container shown in FIG.

内部容器壁22は、L字型ストッパを備えた上縁部221と、隣接する全周突出部222とを有する。突出部222の幅は外部容器壁の厚さに等しい。上縁部221に示されたL字型ストッパはそれぞれ長さ1.3cmの第1の輪郭部2211と、長さ0.8cmの第2の輪郭部2212とを有する。 The inner container wall 22 has an upper edge portion 221 provided with an L-shaped stopper and an adjacent full-circumferential protrusion 222. The width of the protrusion 222 is equal to the thickness of the outer container wall. The L-shaped stopper shown on the upper edge portion 221 has a first contour portion 2211 having a length of 1.3 cm and a second contour portion 2212 having a length of 0.8 cm, respectively.

図4aには、2つの積み重ね容器のスタックが示されている。上の積み重ね容器1において、外部容器底(図示せず)は、下の積み重ね容器の上縁部に当接するように設計されている。図4bでは、スタックは断熱された蓋6を備えて示されており、蓋6は上側に、外部容器の下側に対して相補的に設計されたプロファイルを備える。 FIG. 4a shows a stack of two stacking containers. In the upper stacking container 1, the outer container bottom (not shown) is designed to abut on the upper edge of the lower stacking container. In FIG. 4b, the stack is shown with an insulated lid 6, which has a profile on the upper side that is designed to be complementary to the lower side of the outer container.

図5に示す真空断熱パネル5は、取り付けた状態でそれぞれ外部容器底の外周に沿って配置された4つの折り目51を有する。翼52の輪郭は、外部容器と内部容器に適応するように(例えば円錐形)作成されている。ジオメトリ(例えば円錐度)が無視できる場合、輪郭はそれに応じて単純化される。 The vacuum insulation panel 5 shown in FIG. 5 has four creases 51 arranged along the outer periphery of the bottom of the outer container in the attached state. The contour of the wing 52 is made to adapt (eg, conical) to the outer and inner containers. If the geometry (eg conicalness) is negligible, the contour is simplified accordingly.

Claims (13)

食品の温度管理された輸送のための積み重ね容器(1)であって、
一側が開いた収容空間(33)を形成するように互いに接合された外部容器底(31)と外部容器壁(32)とを備えた外部容器(3)を備え、
前記積み重ね容器(1)は、更に、一側が開いた容器空間(23)を形成するように互いに接合された内部容器底(21)と内部容器壁(22)とを備えた内部容器(2)を有し、
前記内部容器壁(22)は上縁部(221)を備え、前記外部容器底(31)は下縁部(311)を備え、前記上縁部(221)と前記下縁部(311)とは、複数の積み重ね容器(1)が互いに積み重なったときに噛み合うように相補的に設計されており、積み重ねにおいて、上にある積み重ね容器(1)の前記外部容器底(31)が、その下側に配置された積み重ね容器(1)の蓋を形成し、前記内部容器壁(22)と前記外部容器壁(32)との間、及び前記内部容器底(21)と前記外部容器底(31)との間に真空断熱要素(5)が配置されている、積み重ね容器(1)。
A stacking container (1) for temperature-controlled transportation of food.
An outer container (3) with an outer container bottom (31) and an outer container wall (32) joined together to form an open accommodation space (33) on one side.
The stacking container (1) further includes an internal container (2) having an internal container bottom (21) and an internal container wall (22) joined to each other so as to form a container space (23) open on one side. Have,
The inner container wall (22) is provided with an upper edge portion (221), the outer container bottom (31) is provided with a lower edge portion (311), and the upper edge portion (221) and the lower edge portion (311). Is complementaryly designed to mesh when a plurality of stacking containers (1) are stacked with each other, and in stacking, the outer container bottom (31) of the stacking container (1) above is the lower side thereof. A lid of the stacking container (1) arranged in is formed, and between the inner container wall (22) and the outer container wall (32), and between the inner container bottom (21) and the outer container bottom (31). A stacking container (1) in which a vacuum insulating element (5) is arranged between the two.
前記内部容器壁(22)は上縁部(221)に、及び前記外部容器底(31)は下縁部(311)に、それぞれL字型ストッパを備える、請求項1に記載の積み重ね容器(1)。 The stacking container according to claim 1, wherein the inner container wall (22) is provided with an L-shaped stopper at the upper edge portion (221), and the outer container bottom (31) is provided with an L-shaped stopper at the lower edge portion (311). 1). 前記L字型ストッパは、それぞれ前記上縁部(221)と前記下縁部(311)とにおいて、それぞれ最小長さ0.5cmの第1の輪郭部と第2の輪郭部を有する、請求項2に記載の積み重ね容器(1)。 The L-shaped stopper has a first contour portion and a second contour portion having a minimum length of 0.5 cm, respectively, at the upper edge portion (221) and the lower edge portion (311), respectively. The stacking container (1) according to 2. 前記内部容器壁(22)は、前記上縁部(221)の全周を取り囲む突出部(222)を備えており、挿入状態において、前記突出部(222)は、前記外部容器壁(32)を少なくとも部分的に覆う大きさと形状を有する、請求項1〜3の何れか一項に記載の積み重ね容器(1)。 The inner container wall (22) includes a protrusion (222) that surrounds the entire circumference of the upper edge portion (221), and in the inserted state, the protrusion (222) is the outer container wall (32). The stacking container (1) according to any one of claims 1 to 3, which has a size and shape that at least partially covers the container (1). 前記内部容器(2)の前記突出部(222)は、前記外部容器壁(32)に対して全周を取り囲む態様で堅固に接合している、請求項4に記載の積み重ね容器(1)。 The stacking container (1) according to claim 4, wherein the protruding portion (222) of the inner container (2) is firmly joined to the outer container wall (32) so as to surround the entire circumference. 前記内部容器(2)の前記突出部(222)と前記外部容器壁(32)は、熱的に接合可能なプラスチック材料でできており、前記内部容器(2)の前記突出部(222)は前記外部容器壁(32)と溶着されている、請求項4に記載の積み重ね容器(1)。 The protrusion (222) of the inner container (2) and the outer container wall (32) are made of a thermally bonded plastic material, and the protrusion (222) of the inner container (2) is formed. The stacking container (1) according to claim 4, which is welded to the outer container wall (32). 前記内部容器(2)の前記突出部(222)は、前記外部容器壁(32)と接着されている、請求項4に記載の積み重ね容器(1)。 The stacking container (1) according to claim 4, wherein the protruding portion (222) of the inner container (2) is adhered to the outer container wall (32). 前記内部容器(2)の前記突出部(222)は、前記外部容器壁(32)に対して全周を取り囲む態様で取り外し可能に接合している、請求項4に記載の積み重ね容器(1)。 The stacking container (1) according to claim 4, wherein the protruding portion (222) of the inner container (2) is detachably joined to the outer container wall (32) so as to surround the entire circumference. .. 前記内部壁(22)は、前記内部底(21)を起点として縦に外へ延びる態様、又は円錐状に外に延びる態様で配置されている、請求項1〜8の何れか一項に記載の積み重ね容器(1)。 The aspect according to any one of claims 1 to 8, wherein the inner wall (22) is arranged in a manner extending outward vertically from the inner bottom (21) or extending outward in a conical shape. Stacking container (1). 前記内部容器底面(21)の大きさは、前記外部容器底面(31)の大きさの少なくとも70%である、請求項1〜9の何れか一項に記載の積み重ね容器(1)。 The stacking container (1) according to any one of claims 1 to 9, wherein the size of the inner container bottom surface (21) is at least 70% of the size of the outer container bottom surface (31). 前記真空断熱要素(5)は単一の真空断熱パネルであり、該真空断熱パネルは少なくとも1つの折り目(51)を有する、請求項1〜10の何れか一項に記載の積み重ね容器(1)。 The stacking container (1) according to any one of claims 1 to 10, wherein the vacuum heat insulating element (5) is a single vacuum heat insulating panel, and the vacuum heat insulating panel has at least one crease (51). .. 前記真空断熱パネルは4つの折り目(51)を有し、該4つの折り目(51)は取り付けた状態でそれぞれ前記外部容器底(31)の外周に沿って配置されている、請求項11に記載の積み重ね容器(1)。 10. The eleventh claim, wherein the vacuum insulation panel has four folds (51), each of which is arranged along the outer circumference of the outer container bottom (31) in an attached state. Stacking container (1). 前記外部容器底(31)は、前記上縁部(221)の全周を取り囲む態様で閉じる大きさと形状を有する、請求項1〜12の何れか一項に記載の積み重ね容器(1)。 The stacking container (1) according to any one of claims 1 to 12, wherein the outer container bottom (31) has a size and a shape that closes so as to surround the entire circumference of the upper edge portion (221).
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