Abstract:
Türkörper (1) zur Montage an elektrischen Haushaltsgeräten, welcher einen Rahmen (2) sowie an vorstehend bezeichnetem Rahmen befestigte Glastürplatte (3) aufweist, wobei die vorstehend bezeichnete Glastürplatte voneinander getrennt äußere Glasflächenplattenschicht (30), mittlere Glasflächenplattenschicht (32) und innere Glasflächenplattenschicht (34) aufweist, wobei die mittlere Glasflächenplattenschicht durch Dichtungselemente (5) jeweils mit äußerer Glasflächenplattenschicht und innerer Glasflächenplattenschicht verbunden wird, so dass zwischen zwei benachbarten Glasflächenplattenschichten (30, 32, 34) ein Dichtungshohlraum (31) gebildet wird und wobei zumindest eine Glasflächenplattenschicht durch Klebeelement (6) an dem Rahmen befestigt wird. Die Mehrschichtglasflächenplatte bewirkt eine Verschönerung des äußeren Erscheinungsbildes des Türkörpers und sorgt für bessere Wärmeisolationseigenschaften.
Abstract:
The insulated unit (1) of the present invention comprises an inner liner (9), an outer liner (8), an insulation space (10) between the inner liner (9) and the outer liner (8), an insulating material (2) filling the inner space (10). The inner liner (9) and the outer liner (8) of the insulated unit (1) are formed by a composite sheet (11) including one or more plastic sheets (3) and one or more film materials (7) that is formed by metal and thin plastic layers.
Abstract:
An vacuum adiabatic body includes a first plate, a second plate, and a support configured to maintain a vacuum space between the first and second plates. The support includes a support plate supported on an inner surface of one of the first plate and the second plate and a bar extending from the support plate. The bar contacts an inner surface of the other of the first plate and the second plate. The one end of the bar has a cross-section less than that of the other end of the bar.
Abstract:
The present invention relates to the field of the transportation and storage of goods and to a passive temperature control system for such a transport and storage containers. The present invention seeks to provide a system that can enable goods to be securely and reliably transported and stored for limited periods within specified temperature ranges. Pharmaceuticals, proteins, biological samples and other temperature sensitive products, including food items, are regularly shipped in containers year round and are subjected to a wide range of temperatures. Though they are shipped in insulated containers and/or climate controlled environments, the temperature stability of the shipping containers can be significantly improved by utilising suitable phase change materials in an ordered fashion. The present invention provides a simple solution to the maintenance of temperature profiles for the transport and storage of temperature sensitive products.
Abstract:
An appliance includes an outer shell and an inner shell, wherein the outer shell and the inner shell are engaged to define an insulating cavity therebetween, and wherein the inner shell includes an inner surface that defines an interior cavity. An insulation member includes a plurality of layers, each layer of the plurality of layers including an insulative sheet defining first and second surfaces and a plurality of microspheres at least partially disposed within the insulative sheet, wherein at least a portion of the plurality of microspheres extends outward from each of the first and second surfaces to define a plurality of protrusions, and wherein the engagement of two adjacent layers of the plurality of layers causes a portion of the plurality of protrusions to engage and define a plurality of insulating air pockets between the adjacent layers.
Abstract:
There is disclosed a refrigerator including a vacuum space formed between an outer case and an inner case to improve an insulation function thereof, which includes an inner case that defines an exterior appearance of a storage space, an outer case spaced apart a predetermined distance from the inner case, a vacuum space provided between the inner case and the outer case, with being maintained vacuum, to insulate the inner case from the outer case, a plurality of spacers for supporting the inner case and the outer case space that are spaced apart from each other, and a radiation blocking film provided in the vacuum space, spaced apart from the inner case and the outer case.
Abstract:
A rectangular double walled cryogenic freezer has a vacuum space filled with alternating layers of flexible insulating material and a reflective material. A support structure is also positioned in the vacuum space. The support structure is open-celled and provides structural support for the freezer walls to prevent wall deformation when a vacuum is drawn. The support structure may be open-cell rigid foam or a support grid sandwiched between two layers of rigid insulation material.
Abstract:
A thermal insulation container for storing materials at predetermined temperatures over extended periods including thermal energy storage units and means for substantially eliminating thermal conductors and providing improved insulation properties by mechanically absorbing temperature induced frictional forces. Highly efficient vacuum thermal insulators embedded within components of the container contribute significantly to its superior temperature maintaining characteristics.
Abstract:
A receptacle for maintaining perishables, such as food, at a reduced temperature features an exterior shell joined to an interior shell so that a space occupied by a vacuum exists between them. The junction of the inner and outer shells is located on the exterior of the receptacle. Phase change material is disposed within compartments in the bottom of the receptacle and is covered by a false bottom. A cryogenic liquid, such as liquid nitrogen, is poured down the interior walls of the receptacle and into the compartments containing the phase change material so that the phase change material is frozen in situs. A liquid absorbing material may be substituted for the phase change material.