EP2375199A2 - Cooling device with a compressor housing - Google Patents

Cooling device with a compressor housing Download PDF

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Publication number
EP2375199A2
EP2375199A2 EP11157119A EP11157119A EP2375199A2 EP 2375199 A2 EP2375199 A2 EP 2375199A2 EP 11157119 A EP11157119 A EP 11157119A EP 11157119 A EP11157119 A EP 11157119A EP 2375199 A2 EP2375199 A2 EP 2375199A2
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EP
European Patent Office
Prior art keywords
shell
housing
compressor
rear wall
functional element
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
EP11157119A
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German (de)
French (fr)
Other versions
EP2375199B1 (en
EP2375199A3 (en
Inventor
Bilal Cinici
Özkan DAGCI
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
BSH Hausgeraete GmbH
Original Assignee
BSH Bosch und Siemens Hausgeraete GmbH
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by BSH Bosch und Siemens Hausgeraete GmbH filed Critical BSH Bosch und Siemens Hausgeraete GmbH
Publication of EP2375199A2 publication Critical patent/EP2375199A2/en
Publication of EP2375199A3 publication Critical patent/EP2375199A3/en
Application granted granted Critical
Publication of EP2375199B1 publication Critical patent/EP2375199B1/en
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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D23/00General constructional features
    • F25D23/006General constructional features for mounting refrigerating machinery components

Definitions

  • the present invention relates to refrigerators comprising a heat-insulated body defining an interior space.
  • a housing In refrigerators, there is a housing to position a compressor or other refrigeration cycle components on the back wall of the refrigerated body.
  • the compressor, condenser or similar components are inserted into the housing.
  • the control of a plurality of elements used in the refrigeration cycle or the increase in the number of additional parts associated with the electrical connections requires the enlargement of said housing to accommodate a greater number of elements.
  • increasing this volume requires the reduction of the volume of the internal space defined by the cooling body and the reduction of the storage volume of the refrigerator.
  • the present invention is a refrigerator comprising: a body defining an interior and having a back wall with an insulating layer on the inner surface thereof; a housing that is disposed on the outer surface of the rear wall and receives a compressor at a bottom of the housing.
  • a shell is provided for attaching at least one functional element in the housing, which is fixed to the outer surface of the rear wall and at least partially extends beyond the compressor.
  • the shell extends transversely on the housing. This situation ensures easy assembly of the shell.
  • the upper surface of the shell can be brought close to the upper edge of the housing.
  • the shell is attached to an upper wall of the housing.
  • the shell can be stably and rigidly fixed within the housing.
  • the upper surface of the shell at least partially overlaps the outer surface of the upper wall.
  • the vibrations from the compressor or the functional elements do not shake the shell.
  • At least one wall extends substantially perpendicularly from the shell to cover a side flank of the functional element.
  • the wall prevents dust and other substances from reaching the functional element within the housing.
  • a distance between the top of the functional element and the top of the compressor is greater than zero. In other words, a space is provided between the functional element and the compressor.
  • a bushing is attached to the back wall of the housing to receive a first connector provided on the rear edge of the shell.
  • the bushing secures the shell to the back wall by sliding it transversely.
  • the first connection element is integral with the shell. This situation shortens the growing time of the shell to the housing and provides for easy production of the first connecting element by means of the plastic injection mold of the shell.
  • the functional element is an inverter and / or a connection element.
  • another electronic circuit can be arranged on the shell.
  • the housing is a cavity formed thereby by bending the lower and / or upper edge of the rear wall in the panel structure toward the inner space.
  • the housing has a depth so that at least the compressor fits inside.
  • FIG. 12 is a side cross-sectional view of the refrigerator including a representative embodiment of the bowl of the article.
  • FIG. 2 becomes the enlarged view of the in FIG. 1 shown details A shown.
  • FIG. 3 the rear view of the refrigerator is shown, which illustrates the compressor housing of the refrigerator, which comprises the shell of the article.
  • FIG. 4 For example, the perspective view from above of a representative embodiment of the shell of the article is shown with the functional elements detached.
  • FIG. 5 is the perspective view from below the in FIG. 4 shown shell, wherein the functional elements are shown.
  • FIG. 1 a freestanding refrigerator is shown in a side view.
  • the body (10) of the refrigerator includes an inner liner (17) forming the inner space (14), an insulating layer (12) covering the outer surface thereof, and a rear wall (13) outside the insulating layer (12).
  • the rear wall (13) has a cardboard plate structure.
  • the liner (17) is a plastic material and the insulating layer (12) is polyurethane foam.
  • a housing (15) is provided by bending the rear wall (13) from the lower part to the inner space (14).
  • the refrigerator has a housing (15) resulting from the own shape of the body (10), which limits the interior (14) results;
  • the cooling device has a housing (15) integrated in the body (10).
  • a tray is placed on the bottom (19) of the housing (15) and a compressor (40) is placed on top.
  • the compressor (40) is the part of a refrigeration cycle (not in the figure shown), which is connected to the body (10).
  • a shell (20) is fixed on the upper part of the compressor (40) which is in a horizontal position relative to the body (10) and which extends transversely within the housing (15). Between the shell (30) and the compressor (40), a distance (h) is provided.
  • FIG. 2 the manner of fixing the shell (20) to the back wall (13) is shown in detail.
  • a bushing (30) having a part extending inside the insulating layer (12) and having the opening opened to the rear wall (13) supports the shell (20) at the rear edge thereof.
  • FIG. 3 the placement on the housing (15) is shown.
  • a cylindrical coil capacitor (50) extends transversely.
  • the compressor (40) is placed adjacent to one end of the coil capacitor (50) on the floor (19).
  • the shell (20) extends on the upper surface (42) of the compressor so that one edge reaches the serpentine condenser (50) and the other end extends to the edge of the housing (15).
  • the shell (20) carries a functional element (60) and a second functional element (70).
  • the functional element (60) is an inverter and the second functional element (70) is a connecting element.
  • the functional elements (60, 70) are the objects that are used in connecting the compressor (40) to the refrigeration cycle or that control that connection.
  • a first connecting element (22) penetrates into the bush (30) by extending from the shell (20) to the rear wall (13), and helps to support the shell (20).
  • the first connecting element (22) is located at the rear edge of the shell (20).
  • a second connecting element (22) is provided at the front edge of the shell (20).
  • the second connecting element (22) is connected to the upper wall (16).
  • a panel forming the bottom (19) extends along the lower part of the housing (15).
  • FIG. 3 the shell (20) is shown with the functional elements (60, 70) removed.
  • the functional element (60) and the second functional element (70) are fastened next to one another on the shell (20).
  • the part of the Functional element (60) mounted on the shell (20) forms the first attachment portion (23).
  • the part of the second functional element (70), which is fastened on the shell (20), forms the second fastening section (24).
  • a wall (21) extends outwardly perpendicular to the edge of the shell (20) so as to define the first attachment portion (23). There are the communication holes on the first and second connecting portions (23, 24). The lugs on the functional element (60) and the second functional element (70) engage in these holes and are fixed.
  • the first connecting element (22) extends outwardly through the wall (21) at the rear edge of the shell (20) in the form of a cylindrical nose.
  • the second connecting element (25) is in the form of a hole which is opened from one end to the other at the front edge of the shell (20).
  • a screw passes through the second connector (25) and secures the shell (20) to the top wall (16).
  • FIG. 5 The upper surface of the shell (20) leaning against the top wall (16) is shown.
  • a rib (27) comprising plates in web form on the upper surface of the shell (20) so as to form a resistance to bending.
  • a nose (26) extends to the rear wall (13) at the front edge. The nose (26) sits in a respective recess on the rear wall (13). Thus, she wears the shell (20) in the housing (15).
  • the second functional element (70) is fixed thereto via the holes (71) by means of a screw on the shell (20).
  • the shell (20) having a functional element (60) thereon is fixed to the housing (15) in the refrigerator body (10)
  • the shell (20) having a functional element (60) thereon is passed through in a horizontal position the space on the compressor (40) on the rear wall (13) pushed.
  • the tabs (26) are inserted into the corresponding holes near the top wall (16).
  • the first connecting element (22) engages in the socket (30).
  • it is fixed from the upper surface of the shell (20), continuously fixed to the upper wall (16) by the second connection member (25), and is on the rear wall (13) inside the housing (15) from the rear surface fixed from this.
  • the functional elements (60, 70) may be attached to the shell (15) prior to attachment of the shell (20) (20) are fixed, or they can be fixed after the attachment of the shell (20) on the housing (15) on the shell (20).
  • the shell (20) is fixed to the rear wall (13) by means of the first connecting element (22) and fixed by means of the second connecting element (25) on the upper wall (16).

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Physics & Mathematics (AREA)
  • Mechanical Engineering (AREA)
  • Thermal Sciences (AREA)
  • General Engineering & Computer Science (AREA)
  • Compressor (AREA)
  • Devices That Are Associated With Refrigeration Equipment (AREA)

Abstract

The device has a body (10) limiting an inner space (14), and exhibiting a rear wall (13) with an isolation layer (12) at the inner space, where the layer comprises polyurethane foam. A housing (15) is arranged at an outer surface of the rear wall and holds a compressor (40) at a base (19) at the housing. A shell (20) accommodates a functional element in the housing, where the functional element is designed as an inverter or a terminal element. The shell is fixed at the outer surface of the rear wall and partially extends over the compressor. The housing is designed as a hollow chamber.

Description

TECHNISCHES GEBIETTECHNICAL AREA

Die vorliegende Erfindung betrifft Kühlgeräte, die einen wärmeisolierten Korpus umfassen, der einen Innenraum begrenzt.The present invention relates to refrigerators comprising a heat-insulated body defining an interior space.

STAND DER TECHNIKSTATE OF THE ART

In Kühlgeräten gibt es ein Gehäuse, um einen Kompressor oder andere Kühlkreislaufkomponenten an der Rückwand des Kühlkorpus zu positionieren. Der Kompressor, Kondensator oder ähnliche Komponenten werden in das Gehäuse eingesetzt. Insbesondere die Steuerung einer Mehrzahl von im Kühlkreislauf verwendeten Elementen oder der Anstieg der Anzahl der zu den elektrischen Verbindungen gehörigen zusätzlichen Teile erfordert die Vergrößerung besagten Gehäuses, um eine größere Anzahl von Elementen unterzubringen. Jedoch erfordert die Vergrößerung dieses Volumens die Verkleinerung des Volumens des durch den Kühlkorpus begrenzten Innenraums und die Verkleinerung des Aufbewahrungsvolumens des Kühlgeräts.In refrigerators, there is a housing to position a compressor or other refrigeration cycle components on the back wall of the refrigerated body. The compressor, condenser or similar components are inserted into the housing. In particular, the control of a plurality of elements used in the refrigeration cycle or the increase in the number of additional parts associated with the electrical connections requires the enlargement of said housing to accommodate a greater number of elements. However, increasing this volume requires the reduction of the volume of the internal space defined by the cooling body and the reduction of the storage volume of the refrigerator.

Die für diesen Nachteil vorgesehene Lösung ist die Verwendung des Gehäuses, in dem der Kompressor platziert wird, unabhängig von dem durch den Korpus begrenzten Innenvolumen. Zum Beispiel wird in dem Patent W02007EP52293 ein solches Kühlgerät offenbart. Bei dem in diesem Patent offenbarten Einbaukühlgerät wird ein Maschinenraum in dem unteren rückwärtigen Bereich der Hülle gebildet. Dieser Maschinenraum wird zumindest teilweise mittels einer Rückwand verschlossen. In diesem Fall befindet sich der wärmeisolierte Innenraum oberhalb des Maschinenraums. Eine solche Ausführung ist möglich für die Einbaugeräte. Jedoch bedingt dies ein längeres Kühlgerät und erhöht ebenso die Kosten.The solution provided for this disadvantage is the use of the housing, in which the compressor is placed, regardless of the limited by the body internal volume. For example, patent WO02007EP52293 discloses such a refrigerator. In the built-in refrigerator disclosed in this patent, a machine room is formed in the lower rear portion of the case. This engine room is at least partially closed by means of a rear wall. In this case, the heat-insulated interior is above the engine room. Such a design is possible for the built-in appliances. However, this requires a longer refrigerator and also increases the cost.

KURZE BESCHREIBUNG DER ERFINDUNGBRIEF DESCRIPTION OF THE INVENTION

Es ist eine Aufgabe des Gegenstands der Erfindung, bei freistehenden Kühlgeräten einen einfachen Zusammenbau der in das Kompressorgehäuse eingesetzten Elemente vorzusehen, oder einfachen Zugang zu den im Gehäuse befindlichen Gegenständen bereitzustellen.It is an object of the subject invention to provide, in free-standing refrigerators, a simple assembly of the elements inserted in the compressor housing, or to provide easy access to the objects located in the housing.

Im Lichte dieser Aufgabe ist die vorliegende Erfindung ein Kühlgerät, das umfasst: einen Korpus, der einen Innenraum begrenzt und eine Rückwand mit einer Isolationsschicht an der Innenfläche davon aufweist; ein Gehäuse, das an der Außenfläche der Rückwand angeordnet ist und einen Kompressor an einem Boden an dem Gehäuse aufnimmt. Bei einer bevorzugten Ausführungsform der vorliegenden Erfindung ist eine Schale zum Anbringen zumindest eines Funktionselements in dem Gehäuse vorgesehen, die an der Außenfläche der Rückwand fixiert ist und sich zumindest teilweise über den Kompressor hinweg erstreckt. Somit kann ein kompakter Aufbau erreicht werden, indem man Funktionselemente an dem Kompressor innerhalb des Gehäuses platziert.In light of this object, the present invention is a refrigerator comprising: a body defining an interior and having a back wall with an insulating layer on the inner surface thereof; a housing that is disposed on the outer surface of the rear wall and receives a compressor at a bottom of the housing. In a preferred embodiment of the present invention, a shell is provided for attaching at least one functional element in the housing, which is fixed to the outer surface of the rear wall and at least partially extends beyond the compressor. Thus, a compact construction can be achieved by placing functional elements on the compressor within the housing.

Bei einer bevorzugten Ausführungsform der vorliegenden Erfindung erstreckt sich die Schale quer am Gehäuse. Diese Situation sorgt für eine einfache Montage der Schale. Außerdem kann die obere Fläche der Schale der oberen Kante des Gehäuses nahe gebracht werden.In a preferred embodiment of the present invention, the shell extends transversely on the housing. This situation ensures easy assembly of the shell. In addition, the upper surface of the shell can be brought close to the upper edge of the housing.

Bei einer bevorzugten Ausführungsform der vorliegenden Erfindung ist die Schale an einer oberen Wand des Gehäuses angebracht. Somit kann die Schale innerhalb des Gehäuses stabil und starr fixiert werden.In a preferred embodiment of the present invention, the shell is attached to an upper wall of the housing. Thus, the shell can be stably and rigidly fixed within the housing.

Bei einer bevorzugten Ausführungsform der vorliegenden Erfindung überlappt die obere Fläche der Schale zumindest teilweise die Außenfläche der oberen Wand. Somit erschüttern die von dem Kompressor oder den Funktionselementen stammenden Vibrationen nicht die Schale.In a preferred embodiment of the present invention, the upper surface of the shell at least partially overlaps the outer surface of the upper wall. Thus, the vibrations from the compressor or the functional elements do not shake the shell.

Bei einer bevorzugten Ausführungsform der vorliegenden Erfindung erstreckt sich zumindest eine Wand im Wesentlichen rechtwinklig von der Schale, um eine Seitenflanke des Funktionselements abzudecken. Die Wand verhindert, dass Staub und andere Substanzen das Funktionselement innerhalb des Gehäuses erreichen.In a preferred embodiment of the present invention, at least one wall extends substantially perpendicularly from the shell to cover a side flank of the functional element. The wall prevents dust and other substances from reaching the functional element within the housing.

Bei einer bevorzugten Ausführungsform der vorliegenden Erfindung ist ein Abstand zwischen der Oberseite des Funktionselements und der Oberseite des Kompressors größer als Null. Mit anderen Worten ist zwischen dem Funktionselement und dem Kompressor ein Raum vorgesehen. Somit kann die Schale oder der Kompressor durch Einschieben in das Gehäuse eingesetzt werden, nachdem die Schale oder der Kompressor zuvor zusammengebaut wurden.In a preferred embodiment of the present invention, a distance between the top of the functional element and the top of the compressor is greater than zero. In other words, a space is provided between the functional element and the compressor. Thus, the shell or the compressor can be inserted by inserting into the housing after the shell or the compressor have been previously assembled.

Bei einer bevorzugten Ausführungsform der vorliegenden Erfindung ist eine Buchse an der Rückwand an dem Gehäuse befestigt, um ein erstes Verbindungselement aufzunehmen, das an der rückwärtigen Kante der Schale vorgesehen ist. Die Buchse sorgt für die Fixierung der Schale an der Rückwand, indem sie quer verschoben wird.In a preferred embodiment of the present invention, a bushing is attached to the back wall of the housing to receive a first connector provided on the rear edge of the shell. The bushing secures the shell to the back wall by sliding it transversely.

Bei einer bevorzugten Ausführungsform der vorliegenden Erfindung ist das erste Verbindungselement einstückig mit der Schale. Diese Situation verkürzt die Anbauzeit der Schale an das Gehäuse und sorgt für eine einfache Herstellung des ersten Verbindungselements mittels der Kunststoff-Spritzgussform der Schale.In a preferred embodiment of the present invention, the first connection element is integral with the shell. This situation shortens the growing time of the shell to the housing and provides for easy production of the first connecting element by means of the plastic injection mold of the shell.

Bei einer bevorzugten Ausführungsform der vorliegenden Erfindung ist das Funktionselement ein Inverter und/oder ein Anschlusselement. Ferner kann eine andere elektronische Schaltung auf der Schale angeordnet werden.In a preferred embodiment of the present invention, the functional element is an inverter and / or a connection element. Furthermore, another electronic circuit can be arranged on the shell.

Bei einer bevorzugten Ausführungsform der vorliegenden Erfindung ist das Gehäuse ein Hohlraum, der dadurch gebildet wird, indem die untere und/oder die obere Kante der Rückwand in der Paneelstruktur auf den Innenraum zu gebogen werden. Das Gehäuse weist eine Tiefe auf, so dass zumindest der Kompressor hineinpasst.In a preferred embodiment of the present invention, the housing is a cavity formed thereby by bending the lower and / or upper edge of the rear wall in the panel structure toward the inner space. The housing has a depth so that at least the compressor fits inside.

KURZE BESCHREIBUNG DER FIGURENBRIEF DESCRIPTION OF THE FIGURES

Die zusätzlichen Eigenschaften und Vorteile des Gegenstands der Erfindung werden mit den Ausführungsbeispielen unter Bezugnahme auf die beigefügten Zeichnungen offenbart.The additional features and advantages of the subject invention will be disclosed with the embodiments with reference to the accompanying drawings.

In Figur 1 wird eine seitliche Querschnittsansicht des Kühlgeräts gezeigt, das eine repräsentative Ausführungsform der Schale des Gegenstands umfasst.In FIG. 1 FIG. 12 is a side cross-sectional view of the refrigerator including a representative embodiment of the bowl of the article.

In Figur 2 wird die vergrößerte Ansicht des in Figur 1 gezeigten Details A gezeigt.In FIG. 2 becomes the enlarged view of the in FIG. 1 shown details A shown.

In Figur 3 wird die rückwärtige Ansicht des Kühlgerätes gezeigt, die das Kompressorgehäuse des Kühlgeräts verdeutlicht, welches die Schale des Gegenstands umfasst.In FIG. 3 the rear view of the refrigerator is shown, which illustrates the compressor housing of the refrigerator, which comprises the shell of the article.

In Figur 4 wird die Perspektivansicht von oben einer repräsentativen Ausführungsform der Schale des Gegenstands gezeigt, wobei die Funktionselemente abgelöst sind.In FIG. 4 For example, the perspective view from above of a representative embodiment of the shell of the article is shown with the functional elements detached.

In Figur 5 wird die Perspektivansicht von unten der in Figur 4 gezeigten Schale gezeigt, wobei die Funktionselemente gezeigt werden.In FIG. 5 is the perspective view from below the in FIG. 4 shown shell, wherein the functional elements are shown.

DIE DETAILLIERTE BESCHREIBUNG DER ERFINDUNGDETAILED DESCRIPTION OF THE INVENTION

In Figur 1 wird ein freistehendes Kühlgerät in seitlicher Ansicht gezeigt. Der Korpus (10) des Kühlgeräts umfasst eine Innenauskleidung (17), die den Innenraum (14) bildet, eine Isolationsschicht (12), die die Außenfläche davon bedeckt, und eine Rückwand (13) außerhalb der Isolationsschicht (12). Die Rückwand (13) weist eine Kartonplattenstruktur auf. Die Auskleidung (17) ist ein Kunststoffmaterial und die Isolationsschicht (12) ist Polyurethanschaumstoff. Ein Gehäuse (15) wird bereitgestellt, indem die Rückwand (13) vom unteren Teil auf den Innenraum (14) zu gebogen ist. Somit weist das Kühlgerät ein Gehäuse (15) auf, das aus der eigenen Form des Korpus (10), der den Innenraum (14) begrenzt, resultiert; mit anderen Worten weist das Kühlgerät ein in den Korpus (10) integriertes Gehäuse (15) auf. Eine Schale wird auf dem Boden (19) des Gehäuses (15) platziert, und ein Kompressor (40) wird draufgesetzt. Der Kompressor (40) ist der Teil eines Kühlkreislaufs (nicht in der Figur gezeigt), der mit dem Korpus (10) verbunden ist. Eine Schale (20) wird auf dem oberen Teil des Kompressors (40) fixiert, der sich in horizontaler Position relativ zum Korpus (10) befindet und der sich quer innerhalb des Gehäuses (15) erstreckt. Zwischen der Schale (30) und dem Kompressor (40) ist ein Abstand (h) vorgesehen.In FIG. 1 a freestanding refrigerator is shown in a side view. The body (10) of the refrigerator includes an inner liner (17) forming the inner space (14), an insulating layer (12) covering the outer surface thereof, and a rear wall (13) outside the insulating layer (12). The rear wall (13) has a cardboard plate structure. The liner (17) is a plastic material and the insulating layer (12) is polyurethane foam. A housing (15) is provided by bending the rear wall (13) from the lower part to the inner space (14). Thus, the refrigerator has a housing (15) resulting from the own shape of the body (10), which limits the interior (14) results; In other words, the cooling device has a housing (15) integrated in the body (10). A tray is placed on the bottom (19) of the housing (15) and a compressor (40) is placed on top. The compressor (40) is the part of a refrigeration cycle (not in the figure shown), which is connected to the body (10). A shell (20) is fixed on the upper part of the compressor (40) which is in a horizontal position relative to the body (10) and which extends transversely within the housing (15). Between the shell (30) and the compressor (40), a distance (h) is provided.

In Figur 2 wird die Art der Fixierung der Schale (20) an der Rückwand (13) detailliert gezeigt. Eine Buchse (30), die ein Teil aufweist, der sich innerhalb der Isolationsschicht (12) erstreckt, und deren Öffnung zur Rückwand (13) hin geöffnet ist, trägt die Schale (20) an deren hinteren Kante.In FIG. 2 the manner of fixing the shell (20) to the back wall (13) is shown in detail. A bushing (30) having a part extending inside the insulating layer (12) and having the opening opened to the rear wall (13) supports the shell (20) at the rear edge thereof.

In Figur 3 wird die Platzierung an dem Gehäuse (15) gezeigt. In dem Gehäuse (15) erstreckt sich ein zylindrischer Schlangenkondensator (50) quer. Der Kompressor (40) wird benachbart zu einem Ende des Schlangenkondensators (50) auf dem Boden (19) aufgesetzt. Die Schale (20) erstreckt sich auf der oberen Fläche (42) des Kompressors, so dass eine Kante an den Schlangenkondensator (50) reicht und das andere Ende an die Kante des Gehäuses (15) reicht. Die Schale (20) trägt ein Funktionselement (60) und ein zweites Funktionselement (70). Im in der Figur dargestellten Anwendungsfall ist das Funktionselement (60) ein Inverter und das zweite Funktionselement (70) ist ein Anschlusselement. Die Funktionselemente (60, 70) sind die Gegenstände, die bei der Verbindung des Kompressors (40) mit dem Kühlkreislauf verwendet werden, oder die diese Verbindung steuern. Ein erstes Verbindungselement (22) dringt in die Buchse (30) ein, indem es sich von der Schale (20) zu der Rückwand (13) hin erstreckt, und es hilft beim Tragen der Schale (20). Das erste Verbindungselement (22) befindet sich an der rückwärtigen Kante der Schale (20). An der Vorderkante der Schale (20) ist ein zweites Verbindungselement (22) vorgesehen. Das zweite Verbindungselement (22) ist mit der oberen Wand (16) verbunden. Ein den Boden (19) bildendes Paneel erstreckt sich entlang des unteren Teils des Gehäuses (15).In FIG. 3 the placement on the housing (15) is shown. In the housing (15), a cylindrical coil capacitor (50) extends transversely. The compressor (40) is placed adjacent to one end of the coil capacitor (50) on the floor (19). The shell (20) extends on the upper surface (42) of the compressor so that one edge reaches the serpentine condenser (50) and the other end extends to the edge of the housing (15). The shell (20) carries a functional element (60) and a second functional element (70). In the case of application shown in the figure, the functional element (60) is an inverter and the second functional element (70) is a connecting element. The functional elements (60, 70) are the objects that are used in connecting the compressor (40) to the refrigeration cycle or that control that connection. A first connecting element (22) penetrates into the bush (30) by extending from the shell (20) to the rear wall (13), and helps to support the shell (20). The first connecting element (22) is located at the rear edge of the shell (20). At the front edge of the shell (20), a second connecting element (22) is provided. The second connecting element (22) is connected to the upper wall (16). A panel forming the bottom (19) extends along the lower part of the housing (15).

In Figur 3 wird die Schale (20) gezeigt, wobei die Funktionselemente (60, 70) entfernt sind. Auf der Schale (20) ist die Fläche, auf der die Funktionselemente (60, 70) fixiert sind, auf den Kompressor (40) gerichtet. Das Funktionselement (60) und das zweite Funktionselement (70) sind nebeneinander auf der Schale (20) befestigt. Der Teil des Funktionselements (60), der auf der Schale (20) befestigt ist, bildet den ersten Befestigungsabschnitt (23). Der Teil des zweiten Funktionselements (70), der auf der Schale (20) befestigt ist, bildet den zweiten Befestigungsabschnitt (24).In FIG. 3 the shell (20) is shown with the functional elements (60, 70) removed. On the shell (20), the surface on which the functional elements (60, 70) are fixed, directed to the compressor (40). The functional element (60) and the second functional element (70) are fastened next to one another on the shell (20). The part of the Functional element (60) mounted on the shell (20) forms the first attachment portion (23). The part of the second functional element (70), which is fastened on the shell (20), forms the second fastening section (24).

Eine Wand (21) erstreckt sich nach außen rechtwinklig zu der Kante der Schale (20), um so den ersten Befestigungsabschnitt (23) zu begrenzen. Es gibt die Verbindungslöcher auf dem ersten und dem zweiten Verbindungsabschnitt (23, 24). Die Nasen an dem Funktionselement (60) und dem zweiten Funktionselement (70) greifen in diese Löcher hinein und sind befestigt. Das erste Verbindungselement (22) erstreckt sich nach außen durch die Wand (21) an der rückwärtigen Kante der Schale (20) in der Form einer zylindrischen Nase. Das zweite Verbindungselement (25) ist in der Form eines Loches, das von einem Ende zum anderen an der Vorderkante der Schale (20) geöffnet ist. Eine Schraube (nicht gezeigt) durchläuft das zweite Verbindungselement (25) und fixiert die Schale (20) an der oberen Wand (16).A wall (21) extends outwardly perpendicular to the edge of the shell (20) so as to define the first attachment portion (23). There are the communication holes on the first and second connecting portions (23, 24). The lugs on the functional element (60) and the second functional element (70) engage in these holes and are fixed. The first connecting element (22) extends outwardly through the wall (21) at the rear edge of the shell (20) in the form of a cylindrical nose. The second connecting element (25) is in the form of a hole which is opened from one end to the other at the front edge of the shell (20). A screw (not shown) passes through the second connector (25) and secures the shell (20) to the top wall (16).

In Figur 5 wird die obere Fläche der Schale (20), die an die obere Wand (16) lehnt, gezeigt. Hier gibt eine Rippe (27), die Platten in Stegform an der oberen Fläche der Schale (20) umfasst, um somit einen Widerstand gegen Verbiegung zu bilden. Des Weiteren erstreckt sich eine Nase (26) auf die Rückwand (13) an der Vorderkante zu. Die Nase (26) sitzt in jeweils einer Aussparung an der Hinterwand (13). Somit trägt sie die Schale (20) im Gehäuse (15). Das zweite Funktionselement (70) ist über die Löcher (71) daran mithilfe einer Schraube an der Schale (20) fixiert.In FIG. 5 The upper surface of the shell (20) leaning against the top wall (16) is shown. Here there is a rib (27) comprising plates in web form on the upper surface of the shell (20) so as to form a resistance to bending. Furthermore, a nose (26) extends to the rear wall (13) at the front edge. The nose (26) sits in a respective recess on the rear wall (13). Thus, she wears the shell (20) in the housing (15). The second functional element (70) is fixed thereto via the holes (71) by means of a screw on the shell (20).

Damit die Schale (20), die ein Funktionselement (60) darauf aufweist, an dem Gehäuse (15) im Kühlgerätekorpus (10) befestigt wird, wird die Schale (20), die ein Funktionselement (60) darauf aufweist, in horizontaler Position durch den Raum auf dem Kompressor (40) auf die Rückwand (13) zu geschoben. Die Nasen (26) werden in die entsprechenden Löcher in der Nähe der oberen Wand (16) eingesetzt. Gleichzeitig greift das erste Verbindungselement (22) in die Buchse (30) ein. Schlussendlich ist sie von der oberen Fläche der Schale (20) her, durch das zweite Verbindungselement (25) laufend an der oberen Wand (16) fixiert, und es ist an der Rückwand (13) innerhalb des Gehäuses (15) von der rückwärtigen Fläche davon her fixiert. Die Funktionselemente (60, 70) können vor der Befestigung der Schale (20) am Gehäuse (15) an der Schale (20) fixiert werden, oder sie können nach der Befestigung der Schale (20) am Gehäuse (15) an der Schale (20) fixiert werden. Die Schale (20) wird an der Rückwand (13) mittels des ersten Verbindungselements (22) befestigt und mittels des zweiten Verbindungselements (25) an der oberen Wand (16) fixiert.In order that the shell (20) having a functional element (60) thereon is fixed to the housing (15) in the refrigerator body (10), the shell (20) having a functional element (60) thereon is passed through in a horizontal position the space on the compressor (40) on the rear wall (13) pushed. The tabs (26) are inserted into the corresponding holes near the top wall (16). At the same time, the first connecting element (22) engages in the socket (30). Finally, it is fixed from the upper surface of the shell (20), continuously fixed to the upper wall (16) by the second connection member (25), and is on the rear wall (13) inside the housing (15) from the rear surface fixed from this. The functional elements (60, 70) may be attached to the shell (15) prior to attachment of the shell (20) (20) are fixed, or they can be fixed after the attachment of the shell (20) on the housing (15) on the shell (20). The shell (20) is fixed to the rear wall (13) by means of the first connecting element (22) and fixed by means of the second connecting element (25) on the upper wall (16).

BEZUGSZEICHENREFERENCE NUMBERS

1010
Korpuscorpus
1212
Isolationsschichtinsulation layer
1313
Rückwandrear wall
1414
Innenrauminner space
1515
Gehäusecasing
1616
obere Wandupper wall
1717
Auskleidunglining
1919
Bodenground
2020
SchaleBowl
2121
Wandwall
2222
Erstes VerbindungselementFirst connection element
2323
Erster BefestigungsabschnittFirst attachment section
2424
Zweiter BefestigungsabschnittSecond attachment section
2525
Zweites VerbindungselementSecond connecting element
2626
Nasenose
2727
Ripperib
3030
BuchseRifle
4040
Kompressorcompressor
4242
Obere FlächeUpper surface
5050
Schlangenkondensatorsnake capacitor
6060
Funktionselementfunctional element
7070
Zweites FunktionselementSecond functional element
7171
Lochhole
hH
Abstanddistance

Claims (10)

Ein Kühlgerät, das umfasst: einen Korpus (10), der einen Innenraum begrenzt und eine Rückwand (13) mit einer Isolationsschicht (12) an der Innenfläche davon aufweist; ein Gehäuse (15), das an der Außenfläche der Rückwand (13) angeordnet ist und einen Kompressor (40) an einem Boden (19) an dem Gehäuse (15) aufnimmt, dadurch gekennzeichnet, dass eine Schale (20) zum Anbringen zumindest eines Funktionselements (60) in dem Gehäuse (15) vorgesehen ist, die an der Außenfläche der Rückwand (13) fixiert ist und sich zumindest teilweise über den Kompressor (40) hinweg erstreckt.A refrigerator comprising: a body (10) defining an interior and having a rear wall (13) with an insulating layer (12) on the inner surface thereof; a housing (15) disposed on the outer surface of the rear wall (13) and accommodating a compressor (40) on a floor (19) on the housing (15), characterized in that a shell (20) for mounting at least one Functional element (60) in the housing (15) is provided, which is fixed to the outer surface of the rear wall (13) and extends at least partially over the compressor (40) away. Ein Kühlgerät nach Anspruch 1, wobei sich die Schale (20) quer am Gehäuse (15) erstreckt.A refrigerator according to claim 1, wherein the shell (20) extends transversely on the housing (15). Ein Kühlgerät nach irgendeinem der vorhergehenden Ansprüche, wobei die Schale (20) an einer oberen Wand (16) des Gehäuses (15) angebracht ist.A refrigerator according to any one of the preceding claims, wherein the tray (20) is mounted on an upper wall (16) of the housing (15). Ein Kühlgerät nach irgendeinem der vorhergehenden Ansprüche, wobei die obere Fläche der Schale (20) zumindest teilweise die Außenfläche der oberen Wand (16) überlappt.A refrigerator according to any one of the preceding claims, wherein the upper surface of the shell (20) at least partially overlaps the outer surface of the upper wall (16). Ein Kühlgerät nach irgendeinem der vorhergehenden Ansprüche, wobei sich zumindest eine Wand (21) im Wesentlichen rechtwinklig von der Schale (20) erstreckt, um eine Seitenflanke des Funktionselements (60) abzudecken.A refrigerator according to any one of the preceding claims, wherein at least one wall (21) extends substantially perpendicularly from the shell (20) to cover a side edge of the functional element (60). Ein Kühlgerät nach einem der vorhergehenden Ansprüche, wobei ein Abstand zwischen der Oberseite des Funktionselements (60) und der Oberseite des Kompressors (40) größer als Null ist.A refrigerator according to any one of the preceding claims, wherein a distance between the top of the functional element (60) and the top of the compressor (40) is greater than zero. Ein Kühlgerät nach einem der vorhergehenden Ansprüche, wobei eine Buchse (30) an der Rückwand (13) an dem Gehäuse (15) befestigt ist, um ein erstes Verbindungselement (22) aufzunehmen, das an der rückwärtigen Kante der Schale (20) vorgesehen ist.A refrigerator according to any one of the preceding claims, wherein a bushing (30) is attached to the rear wall (13) on the housing (15) for receiving a first connection member (22) provided at the rear edge of the shell (20) , Ein Kühlgerät nach Anspruch 7, wobei das erste Verbindungselement (22) einstückig mit der Schale (20) ist.A refrigerator according to claim 7, wherein the first connection member (22) is integral with the shell (20). Ein Kühlgerät nach irgendeinem der vorhergehenden Ansprüche, wobei das Funktionselement (50) ein Inverter und/oder ein Anschlusselement ist.A refrigerator according to any one of the preceding claims, wherein the functional element (50) is an inverter and / or a connection element. Ein Kühlgerät nach einem der vorhergehenden Ansprüche, wobei das Gehäuse (15) ein Hohlraum ist, der dadurch gebildet wird, dass die untere und/oder die obere Kante der Rückwand in der Paneelstruktur auf den Innenraum zu gebogen werden.A refrigerator according to any one of the preceding claims, wherein the housing (15) is a cavity formed by bending the lower and / or upper edge of the rear wall in the panel structure toward the interior.
EP11157119.6A 2010-03-30 2011-03-07 Cooling device with a compressor housing Active EP2375199B1 (en)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
TR201002445 2010-03-30

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EP2375199A2 true EP2375199A2 (en) 2011-10-12
EP2375199A3 EP2375199A3 (en) 2018-01-24
EP2375199B1 EP2375199B1 (en) 2020-10-21

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ID=44170451

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102016011529A1 (en) 2016-09-23 2018-03-29 Liebherr-Hausgeräte Ochsenhausen GmbH Fridge and / or freezer

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH06147728A (en) * 1992-11-12 1994-05-27 Matsushita Refrig Co Ltd Refrigerator
KR100548306B1 (en) * 2004-05-18 2006-02-02 엘지전자 주식회사 Vibration isolation type refrigerator
JP2007057197A (en) * 2005-08-26 2007-03-08 Matsushita Electric Ind Co Ltd Refrigerator
TR201000694A2 (en) * 2010-01-30 2011-08-22 Bsh Ev Aletleri̇ San. Ve Ti̇c. A.Ş. A cooling device with a fixing element.

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102016011529A1 (en) 2016-09-23 2018-03-29 Liebherr-Hausgeräte Ochsenhausen GmbH Fridge and / or freezer

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EP2375199A3 (en) 2018-01-24

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