Abstract:
An evaporating device includes: an evaporator, a defrost heater, and an evaporation pan, wherein the evaporation pan is made of aluminum and the inner side of the evaporation pan is coated with a surface treatment to improve the melting of ice in the evaporation pan.
Abstract:
The present application discloses a refrigerator capable of easily fixing a drain hose to one side of an inner case without having an additional fixing member used of fixing a drain hose. A refrigerator having an inner case configured to have a storage compartment formed therein; an outer case disposed outside the inner case and spaced a predetermined distance away from the inner case; a drain hose connected to one side of the inner case and disposed in an inner space formed between the inner case and the outer case; and a connector configured to connect the drain hose to the inner case, wherein the connector is mounted in the inner case using a hooking method.
Abstract:
A method of manufacturing a refrigerator comprises preparing an inner case including an ice making chamber and an opening; preparing an outer case to be coupled to an outside of the inner case; preparing a refrigerant pipe assembly including a refrigerant pipe having at least a portion to be disposed in the ice making chamber to supply cooling energy, and a refrigerant pipe insulator to insulate the refrigerant pipe; inserting the refrigerant pipe assembly into the opening of the inner case in an inward direction from the outside of the inner case such that a portion of the refrigerant pipe insulator is disposed in the ice making chamber, and a remaining portion of the refrigerant pipe insulator is disposed between the inner case and the outer case; and foaming a body insulator between the inner case and the outer case, thereby supporting the refrigerant pipe insulator by the body insulator.
Abstract:
The present invention discloses a wall structure of a large-sized refrigerated storage and a construction method thereof. The construction method for a wall of a refrigerated storage comprises the following steps: A. building a wall framework; B. mounting a color steel plate on the outer surface of the framework to form an exterior wall board of the wall of the refrigerated storage; C. spraying polyurethane spraying material on the exterior wall board layer by layer for multiple times, and reserving a pouring space at a distance of 40 mm to 80 mm from the installation position of an interior wall board; and D. taking the color steel plate of the interior wall as a mold plate and filling the pouring space of the color steel plate of the interior wall with polyurethane pouring material thus to form the interior wall board of the wall of the refrigerated storage.
Abstract:
A refrigerator includes a cabinet having a storage chamber, a main door pivotably mounted to the cabinet while including an opening provided at an inside of the main door, and a stepped portion provided around the opening, a sub-storage chamber mounted at the inside of the main door, a sub-door mounted to the main door, to allow a user to have access to the sub-storage chamber, the sub-door having opposite side surfaces with front portions protruding forwards of a front surface of the main door while having a greater width than the opening and stepped portion between the front portions of the side surfaces, to cover the stepped portion by the side surfaces, and a hinge pivotably mounted to the main door and coupled to the sub-door while being bent at an intermediate portion thereof, to pivotably support the sub-door with respect to the main door.
Abstract:
A refrigerator decreasing the space needed to opened a door by forming a curvature at an edge of the door and decreasing risk of an accident or injury caused when a body part is caught between the door and a wall, and a method of manufacturing the same, are disclosed according to embodiments of the present invention. The durability of the door may be improved by forming a curvature of the door edge so that a curvature radius of an upper side of the door is greater than a curvature radius of a lower side of the door.
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:
A method of manufacturing a refrigerator comprises preparing an inner case including a top wall, opposite side walls, a rear wall and a bottom wall; preparing an outer case to be coupled to an outside of the inner case; preparing an ice making chamber case including a horizontal wall, a vertical wall and a case insulator interposed between a case insulator, the horizontal and vertical walls forming an ice making chamber together with at least a portion of the top wall, at least a portion of one of the side walls and at least a portion of the rear wall; coupling the ice making chamber case to an inside of the inner case; coupling the outer case to the outside of the inner case; and foaming a body insulator between the inner case and the outer case.
Abstract:
A refrigerator in which an ice making chamber case including a horizontal wall, a vertical wall, a front opening and a front edge is coupled to an inside of an inner case, to form an ice making chamber. A case insulator is disposed in a wall space of the ice making chamber case. The case insulator is foamed separately from a body insulator which is foamed between inner and outer cases of a refrigerator body. Since the case insulator is foamed separately from the body insulator, it is possible to easily achieve foaming of the case insulator. It is also possible to prepare the ice making chamber case separately from molding of the inner case.
Abstract:
The refrigerator cable ejection method is used to eject one end of a cable out of an outer liner through an ejection hole formed at the outer liner before a filling space is filled with a foam insulation material in a refrigerator constructed in a structure in which the outer liner is fitted outside an inner liner, the cable is distributed in the filling space defined between the inner liner and the outer liner, and the filling space is filled with a foam insulation material while the cable is distributed in the filling space. The method is performed to eject one end of the cable out of the outer liner through the ejection hole at the time of fitting the outer liner outside the inner liner using an ejector including a pass-through member mounted outside the inner liner corresponding to the ejection hole such that the cable passes through the member.