Abstract:
Ein Kältegerät, insbesondere ein Haushaltskältegerät, hat einen Korpus (1) und eine Tür (2), die eine obere (4) und eine untere Lagerkammer (6) umschließen. Ein Luftdurchgang (12) zwischen den Lagerkammern (4, 6) weist einen Einlass (38) in der unteren Lagerkammer (6) und einen Auslass (39) in einem unteren Bereich der oberen Lagerkammer (4) auf. Ein Luftauslass (13) der oberen Lagerkammer (4) befindet sich in einem oberen Bereich derselben. Der Luftdurchgang (12) erstreckt sich in der Tür (2) und überbrückt wenigstens einen an der Tür (2) montierten, in die obere Lagerkammer (4) eingreifenden Türabsteller (21).
Abstract:
The invention relates to a refrigeration appliance which consists of a) a housing provided with an insulating material and b) a power-operated device for cooling the interior enclosed by the housing. The invention is characterized in that the refrigeration appliance further comprises c) a measuring device which indicates the current power consumption.
Abstract:
A self-cooling beverage package having a first cavity (10) containing a beverage for consumption, a second cavity (20) forming a heat exchanger and containing a refrigerant liquid and its vapour, a third cavity (30) containing means of pumping by adsorption of said vapour and means (50) of putting said second cavity into communication with said third cavity, characterised in that the third cavity (30) has an external thermal insulation layer (35).
Abstract:
A grip for a striking implement includes first and second end portions, a knob portion, a handle portion, and an opening. The knob portion extends from a first end portion toward a second end portion. The handle portion extends from the second end portion to the knob portion. The handle portion also has an asymmetrical cross-sectional profile taken in a plane perpendicular to a longitudinal axis of the grip, is radially recessed relative to the knob portion, and comprises a first slanted region. The first slanted region has a nadir toward the second end portion, an apex toward the first end portion, and an angle of 1-15 degrees relative to the longitudinal axis. The opening extends at least partially through the handle portion from the second end portion toward the first end portion parallel to the longitudinal axis. The opening is also configured for receiving a striking implement.
Abstract:
에너지 효율이 향상되도록 개선된 구조를 가지는 냉장고를 개시한다. 냉장고는 내상 및 상기 내상의 외측에 마련되는 외상을 구비하는 본체, 상기 내상의 내부에 형성되는 저장실, 상기 저장실을 단열하도록 상기 내상 및 상기 외상 사이에 마련되는 단열재 및 상기 내상 및 상기 외상을 연결하고, 상기 단열재와 함께 상기 저장실을 단열하도록 열 저항 분포가 상이한 이방성(異方性)을 가지는 플랜지를 포함할 수 있다.
Abstract:
Disclosed is a refrigerator. The refrigerator includes a door (2), and the door (2) includes a user interface electrical module (25), a first receiving space (231) that receives the user interface electrical module (25), a second receiving space (237) open towards a side of the door (2), and a handle member (29) detachably received in the second receiving space (237). The handle member (29) closes the first receiving space (231), and when the handle member (29) is detached, and the user interface electrical module (25) is accessible via the second receiving space (237); wherein the door (2) further includes a sealing member (40), and the sealing member (40) includes a sealing portion (401) located between the handle member (29) and at least one boundary wall of the second receiving space (237).
Abstract:
Disclosed herein is a refrigerator in which a level difference between an inner cabinet and an outer cabinet is improved in coupling the inner cabinet with the outer cabinet by forming a corner of the inner cabinet located at a portion coupled with the outer cabinet to have a smaller radius. The refrigerator includes an inner cabinet in which a storage chamber is formed. The refrigerator also includes an outer cabinet coupled with an outside of the inner cabinet and configured to form an exterior. The refrigerator further includes an insulating material filling between the inner cabinet and the outer cabinet. The inner cabinet includes a storage portion configured to form the storage chamber. The inner cabinet also includes an edge portion configured to extend in a vertical direction toward the outside of the storage portion from a front surface edge of the storage portion and exposed to the outside. The inner cabinet further includes a contact portion configured to extend in a vertical direction toward a rear direction from the edge portion and in contact with the outer cabinet when coupling with the outer cabinet. The inner cabinet includes a seating portion disposed in a rear direction of a front surface portion of the outer cabinet in contact with the contact portion and in parallel with the edge portion. The contact portion extends in a rear direction more than an end of the seating portion adjacent to the contact portion from the edge portion.
Abstract:
Gegenstand der Erfindung ist ein Kühlgerät, bestehend aus a) einem mit einem Isoliermaterial versehenen Gehäuse und b) einer mit elektrischem Strom betriebenen Vorrichtung zur Kühlung des von dem Gehäuse umschlossenen Innenraum, dadurch gekennzeichnet, dass das Kühlgerät zusätzlich mit c) einem Messgerät versehen ist, dass den laufenden Verbrauch an elektrischer Energie anzeigt.
Abstract:
L'invention concerne un dispositif de réfrigération et un procédé d'assemblage du dispositif. Le dispositif de réfrigération comporte un étage de condensation (8), un étage d'évaporation (7) dans lesquels circule un fluide frigorigène confiné dans un circuit. Le dispositif est destiné à réfrigérer l'intérieur d'une armoire (1 ) thermiquement isolée. Le dispositif comporte un isolant thermique (33) séparant les étages d'évaporation (7) et de condensation (8). Selon l'invention, l'isolant thermique (33) est monobloc et forme une structure porteuse de l'étage d'évaporation (7) et le circuit est formé de canalisations rigides dont une au moins est déformable pour permettre la mise en place du circuit contenant le fluide frigorigène et scellé dans l'isolant thermique (33). Un procédé d'assemblage d'un dispositif consiste à enchaîner les opérations suivantes : remplir le circuit de fluide, sceller le circuit, tester le circuit, mettre en place l'isolant thermique (33).