Abstract:
Disclosed is a refrigerator. The refrigerator includes a cabinet (10) configured to define a first storage region in which food is stored, a door (20) rotatably connected to a first rotating shaft via a first hinge member (40) to open or close the first storage region, the first rotating shaft being located at the front of the cabinet (10), a gasket provided at the door (20) and a container (100) configured to define a second storage region, the second storage region being received in the first storage region, the container (100) being rotatably connected to a second rotating shaft via a second hinge member (200), the second rotating shaft being located at the door (20).
Abstract:
A temperature sensor belt includes at least one temperature sensor. The at least one temperature sensor is configured to provide an indication representative of a temperature of a workpiece. The temperature sensor belt also includes a support material disposed over the at least one temperature sensor. The support material is configured to support the at least one temperature sensor on the sensor belt. The temperature sensor belt also includes an insulative material at least partially surrounding the at least one temperature sensor. The insulative material is configured to thermally insulate the at least one temperature sensor.
Abstract:
Systems described herein include integrally sealed containers. An integrally sealed container may include one or more segments of a first ultra efficient insulation material having one or more surface regions, the one or more segments principally defining at least one storage region; and one or more regions of substantially thermally sealed connections between at least one of the one or more surface regions of the one or more segments wherein the one or more regions of substantially thermally sealed connections and the one or more segments form an integrally thermally sealed storage region.
Abstract:
A cooling apparatus body (11), for example, for a refrigerator (10), has a first compartment (15) intended for storage of items at atmospheric pressure and a second compartment (16) for storage of items at subatmospheric pressure, the two compartments: being surrounded by surrounds formed by a thermal insulation element (13). The second compartment (16) is lined within the associated surround by a separately constructed hermetic liner (23) bonded to that surround. The liner (23) can be an integrally formed box-shaped component produced by, for example, injection moulding or blow moulding from plastics material. The resistance of the liner (23) to the internal load of subatmospheric pressure is provided primarily by the thermal insulation lining surround and the bond therewith, so that the liner, whilst providing a hermetic barrier relative to the surround, can be of inexpensive lightweight construction.
Abstract in simplified Chinese:本发明系关于一种用于冷链存储的可携式设备及其制造方法,其中设备包括在其中限定有存储区域的容器。容器包括内筒,并且存储区域被同轴地限定在内筒的内侧。内筒包括设置在其中的相变材料,并且相变材料与存储区域热连通。内筒还包括设置在其中的蒸发盘管。蒸发盘管嵌入相变材料中。容器还包括热绝缘的外筒。外筒的外壁沿径向设置在内筒的外壁的外侧。
Abstract in simplified Chinese:本发明提供一种冷却存储系统,该系统包括:存储单元栅格结构,其中每一单元经排列以容纳储仓之垂直堆栈,且该栅格结构具有一顶层;至少一个远程操作载具,该载具经排列以在栅格结构之顶层处移动,且在栅格结构之顶层处接收来自存储单元之仓室,其中在栅格结构之至少一区段与远程操作载具之间提供绝热体,且栅格结构之该区段之温度低于远程操作载具之温度。
Abstract in simplified Chinese:本发明系得到一种可吸附氮等活性低之气体之吸附材,借此,提供一种可提升生产效率且隔热性能良好之隔热体。隔热体系由吸附材、芯材及外覆材所构成,且吸附材包含有Li与硬度为5以上之固体物质,又,借由使气体吸附活性变得非常高,举例言之,可借由利用真空泵排气至一定程度之真空度,然后利用本发明之吸附材吸附残存气体并得到预定之真空度等方法,得到生产效率高之隔热体。又,由于可吸附外覆材内部之活性低之气体且可降低热传导率,因此可提升隔热性能。
Abstract:
Kühlvorrichtung (1), insbesondere eine Kühltruhe (2), mit einem Kühlkreislauf (3) einen Kompressor (4), mindestens einen Verdampfer (5) und einen Kondensator (44), sowie einem verschließbaren Kühlraum (6) mit einer Mehrzahl von Kühlraumseitenwänden (7), einem Kühlraumboden (8), mindestens einem Kühlelement (9) und einem Isolierbehälter (10). In der Kühlvorrichtung (1) sind der Verdampfer (5) und das Kühlelement (9) so innerhalb des Kühlraumes (6) angeordnet, dass die Rückseite des Kühlelementes (11) am Verdampfer (5) zumindest teilweise anliegt und die Vorderseite des Kühlelementes (12) dem Isolierbehälter (10) zugewandt ist, und der Isolierbehälter (10) zumindest zu den mindestens einen Kühlelement (9) hin geschlossen ist und einen Kühlgutraum (13) bildet. Die am Verdampfer (5) anliegende Rückseite des Kühlelementes (11) weist mindestens eine Aussparung (14) auf, in welche mindestens ein entnehmbarer Kältespeicher (15) einsetzbar ist. Vorzugsweise im Bereich des nach unten weisenden Endes (16) des Isolierbehälters (10) sind mindestens ein Heizelement (17) und mindestens ein Speicherelement (18) angeordnet.
Abstract:
A portable ice barrel system composed of collapsible components that are configured to form a cylindrical insulation layer (160) that also forms an opening at the top of the barrel (1). The base includes a grid (139), a disc (138), a rim (122), and a series of wheels (137). An inner liner (202) extends into the opening of the cylindrical insulation layer (160) to form an interior barrel cavity (110) and an exterior barrel wall (103). The portable ice barrel (1) may include a plurality of clips (146) for holding the inner liner (202) onto the cylindrical insulation layer (160). The portable ice barrel (1) can include an expandable bladder (3) or an insulative material that is injected into a gap (32) between an inside surface (12) of the exterior wall and an exterior surface (17) of the expandable bladder to form an insulative layer. The portable ice barrel (1) can include a plurality of sections that form an inner cylindrical insulation layer (160). The portable ice barrel (1) may also include a hinged top and a hinged base that can be collapsed when deconfigured with the other components and shipped in a flat configuration.