Abstract:
A rectangular double walled cryogenic freezer (10,110) has a vacuum space (16,116) filled with alternating layers of flexible insulating material (20,120) and a reflective material (18,118). A support structure (22,122) is also positioned in the vacuum space (16,116). The support structure (22,122) is open-celled and provides structural support for the freezer walls to prevent wall deformation when a vacuum is drawn. The support structure (22,122) may be open-cell rigid foam (122) or a support grid (22) sandwiched between two layers of rigid insulation material (26a,26b).
Abstract:
Die Erfindung betrifft ein wechselbar temperierfähiges Behältnis mit Vakuumisolierung, Energiespeichern, einem oder mehreren Lagerräumen und einem Temperaturmess-, -speicherund Datenübertragungssystem. Erfindungsgemäß werden Standzeiten für die Behälter, beispielsweise für den Transport und die Aufbewahrung von tiefkalten biologischen Proben in einem Temperaturbereich von -90 °C bis -75 °C von >50 Stunden, vorzugsweise >100 Stunden ohne das Nachgießen beispielsweise von flüssigem Stickstoff oder das Nachladen von Kälteaggregaten, erzielt. Mit einer neuartigen vorteilhaften Kombination von unterschiedlichen Isolationskomponenten entsteht ein wechselbar temperierfähiges Behältnis mit hocheffektiven Isolationseigenschaften.
Abstract:
Die Erfindung betrifft einen Thermobehälter (1,10), insbesondere Kühltasche, für Kühltransporte von Nahrungsmitteln, Stoffen und/oder Gegenständen, mit einer Hülle (3,12), welche einen Transportraum umgibt, wobei zum Zugriff auf den Transportraum in der Hülle (3,12) eine verschließbare Öffnung vorgesehen ist. Der Thermobehälter (1,10) ist erfindungsgemäß dadurch gekennzeichnet, dass in den Transportraum eine aktive Kühleinrichtung (15,16) mit einer Wärmetauscheinrichtung (13) aufnehmbar ist, dass in der Hülle (3,12) mindestens ein Durchbruch (7,26) vorhanden ist und dass der Durchbruch (7,26) für die Aufnahme und den Durchgriff nach außen der Wärmetauscheinrichtung (13) ausgebildet ist.
Abstract:
To provide a refrigerator which maintains heat dissipation by preventing peeling of a heat reflective material when the heat reflective material is attached to a back panel constituting a back face of the refrigerator. It is possible to prevent peeling of a first heat reflective material by assembling such that an end face of the first heat reflective material is held between the flanges and the back panel by lapping flanges of left and right side panels of the refrigerator and the back panel to which the first heat reflective material is attached.
Abstract:
A door body (1) for installation on electric domestic appliances, said door body having a frame (2) and a glass door plate (3) fastened to the frame referred to above, wherein the glass door plate referred to above has an outer glass surface plate layer (30), a central glass surface plate layer (32) and an inner glass surface plate layer (34) separately from one another, wherein the central glass surface plate layer is connected in each case to the outer glass surface plate layer and inner glass surface plate layer by sealing elements (5) such that a sealing cavity (31) is formed between two adjacent glass surface plate layers (30, 32, 34), and wherein at least one glass surface plate layer is fastened to the frame by an adhesive element (6). The multi-layered glass surface plate improves the external appearance of the door body and ensures better thermal insulation properties.
Abstract:
A domestic refrigerator or freezer comprises a food storage compartment delimited by insulated walls (10) and by one or more access doors to said compartment, in which one or more walls (10) and/or doors are provided with a metallic film (12), preferably a metallised polymeric film, capable of enhancing the performance of the refrigerator with regard to energy saving.
Abstract:
A domestic refrigerator or freezer comprises a food storage compartment delimited by insulated walls (10) and by one or more access doors to said compartment, in which one or more walls (10) and/or doors are provided with a metallic film (12), preferably a metallised polymeric film, capable of enhancing the performance of the refrigerator with regard to energy saving.
Abstract:
Packaging for thermally sensitive material comprises a temperature moderator (9) locatable in heat exchange relationship with the material and with a variable temperature space, the moderator (9) being adapted to maintain the thermally sensitive material within a temperature range defined by a minimum temperature and a maximum temperature characterised in that the moderator (9) is adapted to undergo a first phase change at the minimum temperature and a second phase change at the maximum temperature to maintain the temperature sensitive material within the temperature range when the temperature of the variable temperature space lies outside the range. The moderator (9) may usefully be included within a container for the thermally sensitive material comprising (3,4) formed of thermally insulating material (2) to further improve the thermal protection offered by the packaging (1).
Abstract:
Provided is a vacuum adiabatic body. To reduce a heat transfer amount between two plates, the vacuum adiabatic body includes: a conductive resistance sheet connecting plate members to each other, an exhaust port through which a gas of a third space is exhausted, and a sealing frame covering a conductive resistance sheet. A virtual line connecting both end portions of the conductive resistance sheet to each other is installed to be obliquely inclined when at least one extension direction of a first plate member or a second plate member is viewed in a horizontal direction.