Abstract:
A wall structure of a large-sized refrigerated storage and a construction method thereof are provided. The wall structure comprises an interior wall board (1), an exterior wall board (2) and a skeleton positioned between the interior wall board (1) and the exterior wall board (2). A polyurethane foam plastic (7) is filled between the interior wall board (1) and he exterior wall board (2). The method for construction a wall of a large-sized refrigerated storage comprises the following steps: A. building the wall skeleton; B. mounting a color steel plate on the outer surface of the skeleton to form an exterior wall board (2) of the wall; C. painting the polyurethane spraying material on the exterior wall board (2) layer by layer for multiple times, and reserving a pouring apace at a distance of 40 to 80 mm from the installation position of a interior wall board (1); and D. taking the color steel plate of the interior wall as a mould plate and pouring space at the color steel plate of the interior wall to form the interior wall board (1) of the wall. The wall structure is simple and the structural strength of light steel is high.
Abstract:
The invention relates to a refrigerating appliance having an evaporator area and at least two cooling areas partitioned off from one another inside the housing of the refrigerating appliance. A wall has a solid inner skin, a solid outer skin and a layer made of expanded insulating material located between the inner and outer skin. A cold air supply channel in the wall extends from the evaporator area past the first cooling area to the second cooling area. A shaped part made of an insulating material extends between the cold air supply channel and the inner skin of the wall. The cold air supply channel is separated from the expanded insulating material by a partition.
Abstract:
By using a core made of laminated sheets of inorganic fibers having a particular shape and composition as part of a vacuum heat insulator for a heat insulation box, a heat insulation box excellent in long-term heat insulating properties and productivity can be provided. The vacuum heat insulator can be shaped easily. Therefore, a vacuum heat insulator suitable for a required heat insulation portion can be produced easily and applied to a heat insulation box. This property can increase coverage of the vacuum heat insulator on the heat insulation box, thus improving heat insulating properties of the heat insulation box. This can improve heat insulating properties and productivity of a refrigerator, thermal storage box, cold storage box, or vending machine, and contribute to energy savings.
Abstract:
A door for refrigerator which is sophisticated in design and provided at a lower production cost. The door for refrigerator is composed of a door panel made of metal and an inner plate combined with the door panel in a facing manner, a door cap which fits into the door panel and the inner panel in an upper portion, and a handle which fits into the door panel and the inner panel in a bottom portion. In addition to that, the door for refrigerator has a heat insulating form material injected inside. Then, the door for refrigerator is provided with draw forming at a position near to the edge of at least either side of the door panel.
Abstract:
Novel sorption cooling devices capable of providing cooling over an extended period of time are disclosed. The sorption cooling devices are particularly useful for temperature-controlled shipping containers that are required to maintain a temperature below ambient for a time sufficient to complete delivery of the container and its contents. The shipping containers can be utilized to cost-effectively transport temperature-sensitive products.
Abstract:
Vacuum heat insulator comprising a laminated core made of a plurality of sheets of inorganic fibers having 10 μm or smaller in diameter and a certain composition including SiO2 as a main component, Al2O3, CaO, and MgO, a gas barrier enveloping member, and an absorbent. The vacuum heat insulator is characterized by having at least one groove formed therein after fabrication of the vacuum heat insulator. Further, the vacuum heat insulator is characterized by using inorganic fiber core of which a peak of distribution in fiber diameter lies between 1 μm or smaller and 0.1 μm or larger, and not containing binding material for binding the fiber material. Electronic apparatuses use the vacuum heat insulator. With use of the vacuum heat insulator, electronic and electric apparatuses superior in energy saving and not to present uncomfortable feeling to the user can be provided.
Abstract:
Novel sorption cooling devices capable of providing cooling over an extended period of time are disclosed. The sorption cooling devices are particularly useful for temperature-controlled shipping containers that are required to maintain a temperature below ambient for a time sufficient to complete delivery of the container and its contents. The shipping containers can be utilized to cost-effectively transport temperature-sensitive products.
Abstract:
A portable soft sided insulated container has an impermeable liner that provides a liquid holding barrier. The liner is folded from a single monolithic plastic sheet to reduce or eliminate the need for heat welded seams. The liner seats within the container and has a releasable attachment around its lip for mating with the rim of the container. The container has an insulated lid so that the entire assembly may be closed. The liner can be removed for cleaning, or replacement if punctured. When not in use the entire assembly can be folded into a collapsed position for storage.
Abstract:
A refrigerator cabinet includes a bottom mullion and a casing. One of said bottom mullion and said casing includes a retaining tongue and the other of said bottom mullion includes an engagement surface for being received in said tongue. A method for fabricating the cabinet includes attaching the bottom mullion to a casing shell by hand, inserting an inner liner into the casing shell, attaching a casing bottom panel to the bottom mullion by hand, and injecting a foam insulation medium between the casing and the inner liner.
Abstract:
A thermal insulation box has a front panel removably attached to an upper front part of its casing body and a top plate removably disposed on the top of the casing body. The front panel has in its panel body a front frame member for preventing deformation of sidewalls of the casing body molded by a synthetic resin integrally therewith. The panel body has an engaging portion that is engageable with a counterpart engaging portion formed in the top plate.