EP1483090A1 - Universal slicer with an insertable housing - Google Patents

Universal slicer with an insertable housing

Info

Publication number
EP1483090A1
EP1483090A1 EP03717191A EP03717191A EP1483090A1 EP 1483090 A1 EP1483090 A1 EP 1483090A1 EP 03717191 A EP03717191 A EP 03717191A EP 03717191 A EP03717191 A EP 03717191A EP 1483090 A1 EP1483090 A1 EP 1483090A1
Authority
EP
European Patent Office
Prior art keywords
housing
carrier
slicer according
wall
slicer
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
EP03717191A
Other languages
German (de)
French (fr)
Other versions
EP1483090B1 (en
Inventor
Joze Barbaric
Peter Kovacic
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 EP1483090A1 publication Critical patent/EP1483090A1/en
Application granted granted Critical
Publication of EP1483090B1 publication Critical patent/EP1483090B1/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B26HAND CUTTING TOOLS; CUTTING; SEVERING
    • B26DCUTTING; DETAILS COMMON TO MACHINES FOR PERFORATING, PUNCHING, CUTTING-OUT, STAMPING-OUT OR SEVERING
    • B26D7/00Details of apparatus for cutting, cutting-out, stamping-out, punching, perforating, or severing by means other than cutting
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B26HAND CUTTING TOOLS; CUTTING; SEVERING
    • B26DCUTTING; DETAILS COMMON TO MACHINES FOR PERFORATING, PUNCHING, CUTTING-OUT, STAMPING-OUT OR SEVERING
    • B26D1/00Cutting through work characterised by the nature or movement of the cutting member or particular materials not otherwise provided for; Apparatus or machines therefor; Cutting members therefor
    • B26D1/01Cutting through work characterised by the nature or movement of the cutting member or particular materials not otherwise provided for; Apparatus or machines therefor; Cutting members therefor involving a cutting member which does not travel with the work
    • B26D1/12Cutting through work characterised by the nature or movement of the cutting member or particular materials not otherwise provided for; Apparatus or machines therefor; Cutting members therefor involving a cutting member which does not travel with the work having a cutting member moving about an axis
    • B26D1/14Cutting through work characterised by the nature or movement of the cutting member or particular materials not otherwise provided for; Apparatus or machines therefor; Cutting members therefor involving a cutting member which does not travel with the work having a cutting member moving about an axis with a circular cutting member, e.g. disc cutter
    • B26D1/143Cutting through work characterised by the nature or movement of the cutting member or particular materials not otherwise provided for; Apparatus or machines therefor; Cutting members therefor involving a cutting member which does not travel with the work having a cutting member moving about an axis with a circular cutting member, e.g. disc cutter rotating about a stationary axis
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T83/00Cutting
    • Y10T83/222With receptacle or support for cut product
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T83/00Cutting
    • Y10T83/647With means to convey work relative to tool station
    • Y10T83/6492Plural passes of diminishing work piece through tool station
    • Y10T83/6499Work rectilinearly reciprocated through tool station
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T83/00Cutting
    • Y10T83/768Rotatable disc tool pair or tool and carrier
    • Y10T83/7734With guard for tool
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T83/00Cutting
    • Y10T83/869Means to drive or to guide tool
    • Y10T83/8759With means to connect or disconnect tool and its drive

Definitions

  • the invention relates to an allless cutter according to the preamble of claim 1.
  • a generic slicer is known from DE 26 01 269.
  • This known household cutting machine comprises a one-piece housing consisting of a lower part and an upper part.
  • the upper part is frame-shaped and is closed by a cover plate.
  • a circular disc-shaped depression is incorporated in the cover plate, in which a disc-shaped circular knife is accommodated, which is mounted in the upper part and is rotatably driven by an electric motor arranged behind the upper part.
  • a disadvantage of this known household cutting machine is that the housing is very complicated and the assembly is very complex.
  • the object of the invention is to design the housing of a slicer in a simple manner with high rigidity. Furthermore, it is an object of the invention to provide a slicer in which assembly is facilitated.
  • This object is achieved with a slicer with the features of claim 1. Because one of the narrow housing walls is designed to be removable and the other housing walls are connected to form a unit, this results in a simple housing structure with high rigidity. The fact that the other housing walls are connected to form a unit results in a very rigid construction of the housing.
  • This connected unit forms a basic housing into which the necessary components such as the drive motor and transmission can be inserted over a narrow side of the at least approximately cuboid housing.
  • the approximately cuboid housing, which forms a connected unit has an opening on one of its narrow sides, which opening can be closed by a removable housing wall. The housing thus forms a stable unit, the interior of which is accessible through an opening on the narrow side.
  • the removable housing wall is formed by the end wall of the housing. Because the end wall can be removed, different models from Allesschneider can have a similar basic housing in which model-specific end walls can be inserted. This means that the same basic housing can be used with different models. Model differences, which result for example from design or controls, can be realized in different end walls, which are inserted into a similar basic housing. In this way, a large number of model variants can be realized without significantly increasing the number of parts.
  • the further housing walls which serve to form the housing and which can be removed on the narrow side, are integrally connected to one another.
  • the front housing wall, the rear wall and three narrow housing walls form an integral unit.
  • This one-piece unit can be manufactured in metal die-cutters using the aluminum die-casting process. In the case of plastic slicers, the one-piece unit can be manufactured using the injection molding process. Due to the one-piece casting or injection molding of the basic housing, additional fastening means and assembly steps for connecting the housing walls can be omitted.
  • the basic housing designed in this way can thus be manufactured inexpensively.
  • the production in the die casting process or in the injection molding process also makes it possible to form ribs in the interior of the housing, which additionally stiffen the housing. By forming stiffening ribs, the basic housing is highly stable, even with thin walls. If the housing can be manufactured with smaller wall thicknesses, material savings are advantageously achieved.
  • a carrier can be inserted into the housing, which receives the transmission and the drive motor.
  • the assembly of the slicer can be simplified in a particularly advantageous manner if a carrier is provided on which at least the drive motor and the transmission are preassembled.
  • the carrier can be, for example, frame-shaped or base plate-shaped.
  • the transmission and the drive motor can be preassembled on this chassis-like structure of the carrier. Additional components of the slicer can be found in suitably additionally pre-assembled on the carrier.
  • the preassembled carrier can then be inserted in a simple assembly step through the narrow opening of the basic housing and fixed in the housing.
  • the carrier can be supported on at least one inside of the housing.
  • a guide is preferably provided on the inside of the housing and the carrier can be inserted into the housing by means of this guide.
  • the guide thereby facilitates the insertion of the carrier and at the same time supports the carrier in its installed position within the housing.
  • the insertion and support of the carrier inside the housing is similar to the insertion and support of a drawer in a cabinet.
  • the installation position of the carrier is clearly defined by guiding the carrier on the inside of the housing. Installation errors can be avoided by clearly defining the installation position for the carrier.
  • the housing has latching means and the carrier is fixed in the latching means.
  • the locking means provided latch and the carrier is thereby fastened in the housing. It is therefore unnecessary to fasten the carrier to the housing with separate fastening means.
  • the latching means are preferably designed as depressions on the inside of the housing which engage in retaining lugs which are fastened to the carrier by means of resilient latching hooks.
  • the resilient locking hooks with the retaining lugs can advantageously be molded directly onto the carrier.
  • the locking means are arranged in the vicinity of the bearing for the circular knife or in the vicinity of the bearing for a drive pinion.
  • the locking means which are preferably formed from resilient locking hooks, so they can either be arranged on the removable housing wall, or arranged on the bearing for the circular knife, or arranged on the bearing for the drive pinion.
  • these different arrangements of locking means can be combined with one another. It is particularly useful to provide locking means in the area of the bearing for the circular knife and in the area of the bearing for the drive pinion. Since the greatest stresses occur in the area of these two bearings, it is particularly advantageous to provide the locking means there.
  • the carrier in particular can be connected to a bearing plate which carries the gearbox and the drive motor.
  • a bearing plate creates a particularly rigid connection between the first bearing for the circular knife and the second bearing for the drive pinion.
  • the further advantage of such a bearing plate is that the carrier itself can be made from a material of lower strength. This has the advantage that the carrier can be produced inexpensively from an inexpensive material. Since the bearing plate transfers the essential forces from the first bearing for the circular knife to the second bearing for the drive pinion, it is sufficient to form this bearing plate from a higher quality, high-strength material.
  • the carrier can usefully be connected to the end plate.
  • it is inexpensive to design the carrier together with the end plate as a one-piece component.
  • Stiffening ribs can be provided, which are arranged running between the support and the end plate.
  • the one-piece component consisting of carrier and end plate can be designed as a plastic injection molded part or as an aluminum die cast part.
  • the push button switch for switching the drive motor on and off and any locking mechanism provided for the push button switch are integrated in the end plate.
  • the control elements are also integrated in the front plate.
  • different models of a slicer can only differ in the design and appearance of the end plate. Different models can be created using different end plates alone. The different end plates can have different shapes. The different models can also differ by differently designed pushbuttons or by a different number of pushbuttons. Different models can also be realized in that the carrier can have different gears and / or drive motors. The end plates can be designed differently for different models and the required components such as the gearbox and the drive motor can also differ depending on the model. The different models can be preformed on the respective carriers. The pre-assembled carrier with the respective end plate can then be inserted into a generally used basic housing and fastened therein.
  • FIG. 1 shows a slicer according to the invention in a perspective view
  • FIG. 2 shows a perspective view of the housing of a slicer according to the invention
  • Figure 3 is a perspective view of a carrier with an end plate and a bearing plate which carries a gear and a drive motor.
  • the slicer in Figure 1 shows a cuboid housing 2.
  • the housing 2 is designed as a one-piece plastic injection molded part and comprises a rear wall 4, a bottom surface 2b, a top surface 2d and a rear, narrow-sided housing wall 2c.
  • the housing 2 further comprises a front wall 3, which is covered in the view in FIG. 1 and therefore cannot be seen.
  • the cuboid housing 2 is closed on its front by a removable housing wall 2a, the one Narrow-sided wall of the housing 2 forms.
  • the removable housing wall 2a has the end wall 10 of the slicer.
  • a pushbutton switch 22 is arranged in the end wall 10 on a cover surface of the end wall 10.
  • the end wall 10 also carries a locking mechanism 23.
  • the cuboid housing 2 is shown in FIG.
  • the cuboid housing 2 is designed as a one-piece plastic injection molded part.
  • the housing 2 has a front wall 3 and a rear wall 4 which is arranged at a distance from the front wall 3.
  • An intermediate space 5 is formed between the front wall 3 and the rear wall 4. This space 5 is accessible via an opening 8.
  • a carrier 9, as shown for example in FIG. 3, can be inserted into the interspace 5 of the cuboid housing 2 into the opening 8.
  • Guides 11 are formed on the inside of the housing 2, on which the carrier 9 from FIG. 3 can be inserted into the housing 2.
  • the guides 11 are formed as molded strips on the inner walls of the front wall 3 and the rear wall 4. At the front of the front wall 3, a circular knife, not shown, can be used.
  • FIG. 3 shows a carrier 9 according to the invention.
  • the carrier 9 is designed as a one-piece injection-molded plastic part and comprises the removable housing wall 2a or the end wall C.
  • Resilient latching hooks 16, which have retaining lugs 15, are formed on the carrier 9.
  • the holding lugs 15 engage in associated latching means 12 on the inside of the housing 2.
  • the locking means 12 are formed as depressions on the inside of the front wall 3 and the rear wall 4, as can be seen in FIG. 2.
  • the carrier 9 is formed together with the end plate 10 as a one-piece component 21.
  • the carrier 9 comprises a bearing plate 20 which carries a gear 6 and a drive motor 7.
  • the gear 6 comprises a bearing 18 in which a drive pinion 19 is inserted.
  • a further bearing 17 for a circular knife 5 is arranged at a distance from the bearing 18.
  • the first bearing 17 is held at a distance from the second bearing 18 by means of a one-piece component 21. All components, including the drive motor 7, the transmission 6, the first bearing 17 and the second bearing 18 are preassembled on the carrier 9.
  • a push button switch 22 is integrated in the removable housing wall 2a.
  • the end wall 10 has a locking mechanism 23 which blocks the key switch 22 in the engaged position.
  • the completely preassembled unit, as shown in FIG. 3, is in the one-piece, cuboid housing 2, as shown in FIG Figure 2 is shown, insertable.
  • the completely preassembled carrier 9 according to FIG. 3 can be inserted into the one-piece cuboid housing 2.
  • the carrier 9 pushed into the housing 2 then forms the completed slicer according to FIG. 1.

Landscapes

  • Life Sciences & Earth Sciences (AREA)
  • Forests & Forestry (AREA)
  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Food-Manufacturing Devices (AREA)
  • Crushing And Pulverization Processes (AREA)
  • Control And Other Processes For Unpacking Of Materials (AREA)
  • Knives (AREA)

Abstract

A food slicer has a substantially parallelepiped or approximately cuboid housing with a rear wall and a front wall disposed at a distance from the rear wall. An interspace is formed between the two walls, the space is accessible via a removable housing wall, and it is used to receive a drive unit with a drive motor and a gear mechanism that drive a circular cutting blade at the front wall. In order to provide the housing of such a food slicer with a high degree of rigidity in a simple manner and to create a food slicer which is easy to assemble, the removable housing wall is formed by one of the narrow-sided housing walls and the other housing walls are joined to form a unit, thereby resulting in a very stable food slicer structure.

Description

Allesschneider mit einem Einschubgehäuse Slicer with a slide-in housing
Die Erfindung betrifft einen Alllesschneider nach dem Oberbegriff des Patentanspruch 1.The invention relates to an allless cutter according to the preamble of claim 1.
Ein gattungsgemäßer Allesschneider ist aus der DE 26 01 269 bekannt. Diese bekannte Haushaltsschneidemaschine umfasst ein einstückiges Gehäuse aus einem Unterteil und einem Oberteil. Das Oberteil ist rahmenförmig ausgebildet und ist durch eine Abdeckplatte abgeschlossen. In der Abdeckplatte ist eine kreisscheibenförmige Vertiefung eingearbeitet, in der ein scheibenförmiges Rundmesser untergebracht ist, das in dem Oberteil gelagert und von einem hinter dem Oberteil angeordneter Elektromotor rotierend angetrieben ist.A generic slicer is known from DE 26 01 269. This known household cutting machine comprises a one-piece housing consisting of a lower part and an upper part. The upper part is frame-shaped and is closed by a cover plate. A circular disc-shaped depression is incorporated in the cover plate, in which a disc-shaped circular knife is accommodated, which is mounted in the upper part and is rotatably driven by an electric motor arranged behind the upper part.
Nachteilig an dieser bekannten Haushaltsschneidemaschine ist, dass das Gehäuse sehr kompliziert aufgebaut ist und die Montage sehr aufwendig ist.A disadvantage of this known household cutting machine is that the housing is very complicated and the assembly is very complex.
Aufgabe der Erfindung ist es, das Gehäuse eines Allesschneiders in einfacher Weise mit hoher Steifigkeit zu gestalten. Weiterhin ist es Aufgabe der Erfindung, einen Allesschneider zu schaffen, bei dem die Montage erleichtert ist.The object of the invention is to design the housing of a slicer in a simple manner with high rigidity. Furthermore, it is an object of the invention to provide a slicer in which assembly is facilitated.
Diese Aufgabe wird mit einem Allesschneider mit den Merkmalen des Anspruchs 1 gelöst. Indem eine der schmalseitigen Gehäusewände entnehmbar ausgebildet ist und die weiteren Gehäusewände zu einer Einheit verbunden sind, ergibt sich ein einfacher Gehäuseaufbau mit hoher Steifigkeit. Indem die weiteren Gehäusewände zu einer Einheit verbunden sind, ergibt sich ein sehr steifer Aufbau des Gehäuses. Diese verbundene Einheit bildet ein Grundgehäuse, in das die nötigen Bauteile wie zum Beispiel Antriebsmotor und Getriebe über eine Schmalseite des zumindest annähernd quaderförmigen Gehäuses eingesetzt werden können. Das annähernd quaderförmige Gehäuse, welches eine verbundene Einheit bildet, weist an einer seiner Schmalseiten eine Öffnung auf, die durch eine entnehmbare Gehäusewand verschließbar ist. Das Gehäuse bildet somit eine stabile Einheit, deren Innenraum über eine schmalseitige Öffnung zugänglich ist. Dies hat den Vorteil, dass das zu einer Einheit verbundene Gehäuse bereits eine sehr hohe Steifigkeit aufweist und die entnehmbare Gehäusewand daran in einfacher Weise befestigt werden kann. In einer bevorzugten Ausgestaltung ist die entnehmbare Gehäusewand durch die Stirnwand des Gehäuses gebildet. Indem die Stirnwand entnehmbar ist, können unterschiedliche Modelle von Allesschneider ein gleichartiges Grundgehäuse aufweisen, in das modellspezifische Stirnwände eingesetzt werden können. So kann bei verschiedenen Modellen das gleiche Grundgehäuse verwendet werden. Modellunterschiede, die sich beispielsweise durch Design oder Bedienelemente ergeben, können in verschiedenen Stirnwänden verwirklicht werden, die in ein gleichartiges Grundgehäuse eingesetzt werden. So kann eine hohe Anzahl an Modellvarianten realisiert werden, ohne dass sich die Teilevielfalt wesentlich erhöht.This object is achieved with a slicer with the features of claim 1. Because one of the narrow housing walls is designed to be removable and the other housing walls are connected to form a unit, this results in a simple housing structure with high rigidity. The fact that the other housing walls are connected to form a unit results in a very rigid construction of the housing. This connected unit forms a basic housing into which the necessary components such as the drive motor and transmission can be inserted over a narrow side of the at least approximately cuboid housing. The approximately cuboid housing, which forms a connected unit, has an opening on one of its narrow sides, which opening can be closed by a removable housing wall. The housing thus forms a stable unit, the interior of which is accessible through an opening on the narrow side. This has the advantage that the housing connected to form a unit already has very high rigidity and the removable housing wall can be attached to it in a simple manner. In a preferred embodiment, the removable housing wall is formed by the end wall of the housing. Because the end wall can be removed, different models from Allesschneider can have a similar basic housing in which model-specific end walls can be inserted. This means that the same basic housing can be used with different models. Model differences, which result for example from design or controls, can be realized in different end walls, which are inserted into a similar basic housing. In this way, a large number of model variants can be realized without significantly increasing the number of parts.
In einer Ausgestaltung sind die neben der entnehmbaren schmalseitigen Gehäusewand zur Bildung des Gehäuse dienenden weiteren Gehäusewände einstückig miteinander verbunden. Die vordere Gehäusewand, die Rückwand und drei schmalseitige Gehäusewände bilden dabei eine einstückige Baueinheit. Diese einstückige Baueinheit kann bei Metallallesschneidern im Aluminiumdruckgussverfahren hergestellt sein. Bei Kunststoff-Allesschneidern kann die einstückige Baueinheit im Spritzgussverfahren hergestellt sein. Durch das einstückige Gießen bzw. Spritzen des Grundgehäuses können zusätzliche Befestigungsmittel und Montageschritte zum Verbinden der Gehäusewände wegfallen. Das derart gestaltete Grundgehäuse kann somit kostengünstig gefertigt werden. Die Herstellung im Druckgussverfahren bzw. im Spritzgussverfahren ermöglicht es auch, im Inneren des Gehäuses Rippen anzuformen, die das Gehäuse zusätzlich versteifen. Durch das Anformen von Versteifungsrippen wird eine hohe Stabilität des Grundgehäuses auch bei geringeren Wandstärken erreicht. Kann das Gehäuse mit geringeren Wandstärken gefertigt werden, so ergibt sich vorteilhaft eine Materialeinsparung.In one embodiment, the further housing walls, which serve to form the housing and which can be removed on the narrow side, are integrally connected to one another. The front housing wall, the rear wall and three narrow housing walls form an integral unit. This one-piece unit can be manufactured in metal die-cutters using the aluminum die-casting process. In the case of plastic slicers, the one-piece unit can be manufactured using the injection molding process. Due to the one-piece casting or injection molding of the basic housing, additional fastening means and assembly steps for connecting the housing walls can be omitted. The basic housing designed in this way can thus be manufactured inexpensively. The production in the die casting process or in the injection molding process also makes it possible to form ribs in the interior of the housing, which additionally stiffen the housing. By forming stiffening ribs, the basic housing is highly stable, even with thin walls. If the housing can be manufactured with smaller wall thicknesses, material savings are advantageously achieved.
In einer bevorzugten Ausgestaltung der Erfindung ist in das Gehäuse ein Träger einschiebbar, der das Getriebe und den Antriebsmotor aufnimmt. Die Montage des Allesschneiders kann in besonders vorteilhafter Weise vereinfacht werden, wenn ein Träger vorgesehen ist, an dem zumindest der Antriebsmotor und das Getriebe vormontiert sind. Der Träger kann beispielsweise rahmenförmig oder grundplattenförmig ausgebildet sein. An diesem chassisartigen Aufbau des Trägers kann das Getriebe und der Antriebsmotor vormontiert werden. Zusätzliche Bauteile des Allesschneiders können in geeigneter Weise zusätzlich an dem Träger vormontiert sein. Der vormontierte Träger kann dann in einem einfachen Montageschritt über die eine schmalseitige Öffnung des Grundgehäuses eingeschoben und im Gehäuse fixiert werden. Dazu kann der Träger an mindestens einer Innenseite des Gehäuses abgestützt sein. Vorzugsweise ist an der Innenseite des Gehäuse eine Führung vorgesehen und der Träger ist mittels dieser Führung in das Gehäuse einschiebbar. Die Führung erleichtert dadurch das Einschieben des Trägers und stützt gleichzeitig den Träger innerhalb des Gehäuses in seiner Einbaulage. Das Einschieben und Abstützen des Trägers im Inneren des Gehäuses erfolgt ähnlich dem Einschieben und Abstützen einer Schublade in einen Schrank. Durch die Führung des Trägers an der Innenseite des Gehäuses wird die Einbaulage des Trägers eindeutig festgelegt. Durch die eindeutige Festlegung der Einbaulage für den Träger können Montagefehler vermieden werden.In a preferred embodiment of the invention, a carrier can be inserted into the housing, which receives the transmission and the drive motor. The assembly of the slicer can be simplified in a particularly advantageous manner if a carrier is provided on which at least the drive motor and the transmission are preassembled. The carrier can be, for example, frame-shaped or base plate-shaped. The transmission and the drive motor can be preassembled on this chassis-like structure of the carrier. Additional components of the slicer can be found in suitably additionally pre-assembled on the carrier. The preassembled carrier can then be inserted in a simple assembly step through the narrow opening of the basic housing and fixed in the housing. For this purpose, the carrier can be supported on at least one inside of the housing. A guide is preferably provided on the inside of the housing and the carrier can be inserted into the housing by means of this guide. The guide thereby facilitates the insertion of the carrier and at the same time supports the carrier in its installed position within the housing. The insertion and support of the carrier inside the housing is similar to the insertion and support of a drawer in a cabinet. The installation position of the carrier is clearly defined by guiding the carrier on the inside of the housing. Installation errors can be avoided by clearly defining the installation position for the carrier.
Besonders vorteilhaft ist es, wenn das Gehäuse Rastmittel aufweist und der Träger in den Rastmitteln fixiert ist. Wenn der Träger in das Gehäuse eingeschoben ist, verrasten die vorgesehenen Rastmittel und der Träger ist dadurch im Gehäuse befestigt. Es erübrigt somit, den Träger mit gesonderten Befestigungsmitteln am Gehäuse zu befestigen. Durch das Einschieben des Trägers werden also alle Bauteile des Allesschneiders in das Gehäuse eingefügt und durch das Einrasten des Rastmittels wird der Träger am Gehäuse befestigt. Durch diese Bauweise ergibt sich eine besonders einfache Montage.It is particularly advantageous if the housing has latching means and the carrier is fixed in the latching means. When the carrier is pushed into the housing, the locking means provided latch and the carrier is thereby fastened in the housing. It is therefore unnecessary to fasten the carrier to the housing with separate fastening means. By pushing in the carrier all components of the slicer are inserted into the housing and by latching the locking means the carrier is attached to the housing. This construction results in a particularly simple assembly.
Vorzugsweise sind die Rastmittel als Vertiefungen an der Innenseite des Gehäuses ausgebildet, die in Haltenasen eingreifen, die mittels federnder Rasthaken an dem Träger befestigt sind. Um das Gehäuse in einfacher Weise, zum Beispiel einteilig im Spritzgussverfahren oder im Druckgussverfahren herstellen zu können, ist es günstig, die Vertiefungen an der Innenseite des Gehäuses auszubilden. Dies hat den Vorteil, dass das einstückige Gehäuse nach der Fertigung leicht entformbar ist. Da der Träger vorzugsweise rahmenförmig aufgebaut ist, ist es in einfacher Weise möglich, die federnden Rasthaken, welche die Haltenasen aufweisen, an dem Träger zu befestigen. Die federnden Rasthaken mit den Haltenasen können in vorteilhafter Weise direkt an dem Träger angeformt sein.The latching means are preferably designed as depressions on the inside of the housing which engage in retaining lugs which are fastened to the carrier by means of resilient latching hooks. In order to be able to produce the housing in a simple manner, for example in one piece using the injection molding process or the die casting process, it is expedient to form the depressions on the inside of the housing. This has the advantage that the one-piece housing can be easily removed from the mold after production. Since the carrier is preferably constructed in the form of a frame, it is possible in a simple manner to fasten the resilient latching hooks which have the retaining lugs to the carrier. The resilient locking hooks with the retaining lugs can advantageously be molded directly onto the carrier.
Günstig ist es, wenn die Rastmittel in der Nähe der Lagerung für das Rundmesser oder in der Nähe der Lagerung für ein Antriebsritzel angeordnet sind. Die Rastmittel, welche vorzugsweise aus federnden Rasthaken gebildet werden, können also entweder an der entnehmbaren Gehäusewand angeordnet sein, oder an der Lagerung für das Rundmesser angeordnet sein, oder an der Lagerung für das Antriebsritzel angeordnet sein. Je nach Anforderung an die Steifigkeit des Aufbaus können diese verschiedenen Anordnungen von Rastmitteln miteinander kombiniert werden. Besonders sinnvoll ist es, Rastmittel im Bereich der Lagerung für das Rundmesser und im Bereich der Lagerung für das Antriebsritzel vorzusehen. Da die größten Beanspruchungen im Bereich dieser beiden Lager auftreten, ist es besonders günstig, dort die Rastmittel vorzusehen.It is advantageous if the locking means are arranged in the vicinity of the bearing for the circular knife or in the vicinity of the bearing for a drive pinion. The locking means, which are preferably formed from resilient locking hooks, so they can either be arranged on the removable housing wall, or arranged on the bearing for the circular knife, or arranged on the bearing for the drive pinion. Depending on the rigidity of the structure, these different arrangements of locking means can be combined with one another. It is particularly useful to provide locking means in the area of the bearing for the circular knife and in the area of the bearing for the drive pinion. Since the greatest stresses occur in the area of these two bearings, it is particularly advantageous to provide the locking means there.
Um die Steifigkeit des gesamten Antriebsstranges ausgehend von Motor über Getriebe hin zum Rundmesser zu erhöhen, kann insbesondere der Träger mit einer Lagerplatte verbunden sein, die das Getriebe und den Antriebsmotor trägt. Eine solche Lagerplatte schafft eine besonders steife Verbindung zwischen der ersten Lagerung für das Rundmesser und der zweiten Lagerung für das Antriebsritzel. Der weitere Vorteil einer solchen Lagerplatte ist es, dass der Träger an sich aus einem Material geringerer Festigkeit ausgebildet sein kann. Dies hat den Vorteil, dass der Träger kostengünstig aus einem preisgünstigen Material hergestellt werden kann. Da die Lagerplatte die wesentlichen Kräfte von der ersten Lagerung für das Rundmesser auf die zweite Lagerung für das Antriebsritzel überträgt, genügt es, diese Lagerplatte aus einem höherwertigeren, hochfesten Material auszubilden.In order to increase the rigidity of the entire drive train starting from the engine via the gearbox to the circular knife, the carrier in particular can be connected to a bearing plate which carries the gearbox and the drive motor. Such a bearing plate creates a particularly rigid connection between the first bearing for the circular knife and the second bearing for the drive pinion. The further advantage of such a bearing plate is that the carrier itself can be made from a material of lower strength. This has the advantage that the carrier can be produced inexpensively from an inexpensive material. Since the bearing plate transfers the essential forces from the first bearing for the circular knife to the second bearing for the drive pinion, it is sufficient to form this bearing plate from a higher quality, high-strength material.
Der Träger kann sinnvoller Weise mit der Stirnplatte verbunden sein. Insbesondere ist es kostengünstig, den Träger zusammen mit der Stirnplatte als einstückiges Bauteil auszubilden. Es können Versteifungsrippen vorgesehen sein, die zwischen Träger und Stirnplatte verlaufend angeordnet sind. Insbesondere kann das einstückige Bauteil aus Träger und Stirnplatte als Kunststoffspritzgussteil oder als Aluminiumdruckgussteil ausgebildet sein.The carrier can usefully be connected to the end plate. In particular, it is inexpensive to design the carrier together with the end plate as a one-piece component. Stiffening ribs can be provided, which are arranged running between the support and the end plate. In particular, the one-piece component consisting of carrier and end plate can be designed as a plastic injection molded part or as an aluminum die cast part.
In einer weiteren bevorzugten Ausgestaltung der Erfindung sind insbesondere der Tastschalter zum Ein- und Ausschalten des Antriebsmotors und ein eventuell vorgesehener Verriegelungsmechanismus für den Tastschalter in der Stirnplatte integriert. Dies hat den Vorteil, dass auch die Bedienelemente in die Stirnplatte integriert sind. Dadurch ergibt sich der besondere Vorteil, dass sich verschiedene Modelle eines Allesschneiders nur im Aufbau und Aussehen der Stirnplatte unterscheiden können. Unterschiedliche Modelle können allein durch unterschiedliche Stirnplatten erzeugt werden. Die unterschiedlichen Stirnplatten können dabei unterschiedliche Gestalt aufweisen. Die unterschiedlichen Modelle können sich auch durch unterschiedlich gestaltete Tastschalter oder durch eine unterschiedliche Anzahl von Tastschaltern unterscheiden. Verschiedene Modelle können auch dadurch realisiert werden, dass der Träger unterschiedliche Getriebe und/oder Antriebsmotoren aufweisen kann. So können die Stirnplatten für verschiedene Modelle unterschiedlich gestaltet sein und auch die benötigten Bauteile wie zum Beispiel das Getriebe und der Antriebsmotor können je nach Modell unterschiedlich sein. Die unterschiedlichen Modelle können dabei an den jeweiligen Trägern vorformiert sein. Der vormontierte Träger mit der jeweiligen Stirnplatte kann dann in ein generell verwendetes Grundgehäuse eingeschoben und darin befestigt sein.In a further preferred embodiment of the invention, in particular the push button switch for switching the drive motor on and off and any locking mechanism provided for the push button switch are integrated in the end plate. This has the advantage that the control elements are also integrated in the front plate. This has the particular advantage that different models of a slicer can only differ in the design and appearance of the end plate. Different models can be created using different end plates alone. The different end plates can have different shapes. The different models can also differ by differently designed pushbuttons or by a different number of pushbuttons. Different models can also be realized in that the carrier can have different gears and / or drive motors. The end plates can be designed differently for different models and the required components such as the gearbox and the drive motor can also differ depending on the model. The different models can be preformed on the respective carriers. The pre-assembled carrier with the respective end plate can then be inserted into a generally used basic housing and fastened therein.
Eine bevorzugte Ausführungsform des erfindungsgemäßen Allesschneiders ist in den Zeichnungen dargestellt.A preferred embodiment of the slicer according to the invention is shown in the drawings.
Es zeigen:Show it:
Figur 1 einen erfindungsgemäßen Allesschneider in einer perspektivischen Ansicht,1 shows a slicer according to the invention in a perspective view,
Figur 2 eine perspektivische Ansicht des Gehäuses eines erfindungsgemäßen Allesschneiders,FIG. 2 shows a perspective view of the housing of a slicer according to the invention,
Figur 3 eine perspektivische Ansicht eines Trägers mit einer Stirnplatte und einer Lagerplatte, die ein Getriebe und einen Antriebsmotor trägt.Figure 3 is a perspective view of a carrier with an end plate and a bearing plate which carries a gear and a drive motor.
Der Allesschneider in Figur 1 zeigt ein quaderförmiges Gehäuse 2. Das Gehäuse 2 ist als einstückiges Kunststoffspritzgussteil ausgebildet und umfasst eine Rückwand 4, eine Bodenfläche 2b, eine Deckfläche 2d und eine hintere, schmalseitige Gehäusewand 2c. Das Gehäuse 2 umfaßt weiterhin eine vordere Wand 3, welche in der Ansicht in Figur 1 verdeckt und daher nicht zu sehen ist. Das quaderförmige Gehäuse 2 wird an seiner Vorderseite durch eine entnehmbare Gehäusewand 2a abgeschlossen, die eine schmalseitige Wand des Gehäuses 2 bildet. Die entnehmbare Gehäusewand 2a weist die Stirnwand 10 des Allesschneiders auf. In der Stirnwand 10 ist ein Tastschalter 22 auf einer Deckfläche der Stirnwand 10 angeordnet. Des weiteren trägt die Stirnwand 10 einen Verriegelungsmechanismus 23.The slicer in Figure 1 shows a cuboid housing 2. The housing 2 is designed as a one-piece plastic injection molded part and comprises a rear wall 4, a bottom surface 2b, a top surface 2d and a rear, narrow-sided housing wall 2c. The housing 2 further comprises a front wall 3, which is covered in the view in FIG. 1 and therefore cannot be seen. The cuboid housing 2 is closed on its front by a removable housing wall 2a, the one Narrow-sided wall of the housing 2 forms. The removable housing wall 2a has the end wall 10 of the slicer. A pushbutton switch 22 is arranged in the end wall 10 on a cover surface of the end wall 10. The end wall 10 also carries a locking mechanism 23.
In Figur 2 ist das quaderförmige Gehäuse 2 gezeigt. Das quaderförmige Gehäuse 2 ist als einteiliges Kunststoffspritzgussteil ausgebildet. Das Gehäuse 2 weist eine vordere Wand 3 auf und eine Rückwand 4, die im einen Abstand zur vorderen Wand 3 angeordnet ist. Zwischen vorderer Wand 3 und Rückwand 4 wird ein Zwischenraum 5 gebildet. Dieser Zwischenraum 5 ist über eine Öffnung 8 zugänglich. In die Öffnung 8 ist ein Träger 9, wie er beispielsweise in Figur 3 dargestellt ist, in den Zwischenraum 5 des quaderförmigen Gehäuse 2 einschiebbar. An den Innenseiten des Gehäuses 2 sind Führungen 11 angeformt, an denen der Träger 9 aus Figur 3 in das Gehäuse 2 einschiebbar ist. Die Führungen 11 sind als angeformte Leisten an den Innenwänden der vorderen Wand 3 und der Rückwand 4 ausgebildet. An der Vorderseite der vorderen Wand 3 ist ein nicht dargestelltes Rundmesser einsetzbar.The cuboid housing 2 is shown in FIG. The cuboid housing 2 is designed as a one-piece plastic injection molded part. The housing 2 has a front wall 3 and a rear wall 4 which is arranged at a distance from the front wall 3. An intermediate space 5 is formed between the front wall 3 and the rear wall 4. This space 5 is accessible via an opening 8. A carrier 9, as shown for example in FIG. 3, can be inserted into the interspace 5 of the cuboid housing 2 into the opening 8. Guides 11 are formed on the inside of the housing 2, on which the carrier 9 from FIG. 3 can be inserted into the housing 2. The guides 11 are formed as molded strips on the inner walls of the front wall 3 and the rear wall 4. At the front of the front wall 3, a circular knife, not shown, can be used.
Die Figur 3 zeigt einen erfindungsgemäßen Träger 9. Der Träger 9 ist als einstückiges Kunststoffspritzgussteil ausgebildet und umfasst die entnehmbare Gehäusewand 2a bzw. die Stirnwand C. An dem Träger 9 sind federnde Rasthaken 16 angeformt, die Haltenasen 15 aufweisen. Die Haltenasen 15 greifen in zugeordnete Rastmittel 12 an den Innenseiten des Gehäuses 2 ein. Die Rastmittel 12 sind als Vertiefungen an der Innenseite der vorderen Wand 3 und der Rückwand 4 ausgebildet, wie in Figur 2 zu sehen. Der Träger 9 ist zusammen mit der Stirnplatte 10 als einstückiges Bauteil 21 ausgebildet. Der Träger 9 umfaßt eine Lagerplatte 20, die ein Getriebe 6 und einen Antriebsmotor 7 trägt. Das Getriebe 6 umfaßt eine Lagerung 18, in der ein Antriebsritzel 19 eingesetzt ist. In einem Abstand zur Lagerung 18 ist eine weitere Lagerung 17 für ein Rundmesser 5 angeordnet. Die erste Lagerung 17 ist mittels eines einstückigen Bauteils 21 im Abstand zum zweiten Lager 18 gehalten. Alle Komponenten, umfassend den Antriebsmotor 7, das Getriebe 6, die erste Lagerung 17 und die zweite Lagerung 18 sind an dem Träger 9 vormontiert. Des weiteren ist ein Tastschalter 22 in die entnehmbare Gehäusewand 2a integriert. Die Stirnwand 10 weist einen Verriegelungsmechanismus 23 auf, der in der eingerückten Lage den Tastschalter 22 blockiert. Die komplett vormontierte Baueinheit, wie sie in Figur 3 dargestellt ist, ist in das einstückig ausgebildete, quaderförmige Gehäuse 2, wie es in Figur 2 dargestellt ist, einschiebbar. Der komplett vormontierte Träger 9 gemäß Figur 3 ist in das einstückig ausgebildete quaderförmige Gehäuse 2 einschiebbar. Der in das Gehäuse 2 eingeschobene Träger 9 bildet dann den komplettierten Allesschneider gemäß Figur 1. FIG. 3 shows a carrier 9 according to the invention. The carrier 9 is designed as a one-piece injection-molded plastic part and comprises the removable housing wall 2a or the end wall C. Resilient latching hooks 16, which have retaining lugs 15, are formed on the carrier 9. The holding lugs 15 engage in associated latching means 12 on the inside of the housing 2. The locking means 12 are formed as depressions on the inside of the front wall 3 and the rear wall 4, as can be seen in FIG. 2. The carrier 9 is formed together with the end plate 10 as a one-piece component 21. The carrier 9 comprises a bearing plate 20 which carries a gear 6 and a drive motor 7. The gear 6 comprises a bearing 18 in which a drive pinion 19 is inserted. A further bearing 17 for a circular knife 5 is arranged at a distance from the bearing 18. The first bearing 17 is held at a distance from the second bearing 18 by means of a one-piece component 21. All components, including the drive motor 7, the transmission 6, the first bearing 17 and the second bearing 18 are preassembled on the carrier 9. Furthermore, a push button switch 22 is integrated in the removable housing wall 2a. The end wall 10 has a locking mechanism 23 which blocks the key switch 22 in the engaged position. The completely preassembled unit, as shown in FIG. 3, is in the one-piece, cuboid housing 2, as shown in FIG Figure 2 is shown, insertable. The completely preassembled carrier 9 according to FIG. 3 can be inserted into the one-piece cuboid housing 2. The carrier 9 pushed into the housing 2 then forms the completed slicer according to FIG. 1.

Claims

Patentansprüche claims
1. Allesschneider mit einem zumindest annähernd quaderförmigen Gehäuse (2), das eine Rückwand (4) und eine vordere Wand (3) aufweist, die zur Rückwand (4) beabstandet angeordnet ist, wodurch ein Zwischenraum (5) gebildet ist, der über eine entnehmbare Gehäusewand (2a) zugänglich ist und der zur Aufnahme einer einen Antriebsmotor (7) und ein Getriebe (6) aufweisenden Antriebseinheit dient, die zum Antrieb eines Rundmessers (1) vorgesehen ist, das der vorderen Wand (3) zugeordnet ist, dadurch gekennzeichnet, dass die entnehmbare Gehäusewand (2a) durch eine der schmalseitigen Gehäusewände (2a,2b,2c,2d) gebildet ist und dass die weiteren Gehäusewände(2b,2c,2d) zu einer Einheit verbunden sind.1. slicer with an at least approximately cuboid housing (2), which has a rear wall (4) and a front wall (3), which is spaced from the rear wall (4), whereby an intermediate space (5) is formed, which has a Removable housing wall (2a) is accessible and serves to receive a drive unit having a drive motor (7) and a gear (6), which is provided for driving a circular knife (1) which is assigned to the front wall (3), characterized that the removable housing wall (2a) is formed by one of the narrow-side housing walls (2a, 2b, 2c, 2d) and that the other housing walls (2b, 2c, 2d) are connected to form a unit.
2. Allesschneider nach Anspruch 1, dadurch gekennzeichnet, dass die entnehmbare Gehäusewand (2a) durch die Stirnwand (10) des Gehäuses gebildet ist.2. slicer according to claim 1, characterized in that the removable housing wall (2a) is formed by the end wall (10) of the housing.
3. Allesschneider nach Anspruch 1 oder 2, dadurch gekennzeichnet, dass die neben der entnehmbaren schmalseitigen Gehäusewand (2a) zur Bildung des Gehäuses dienenden weiteren Gehäusewände (2b,2c,2d) einstückig miteinander verbunden sind.3. slicer according to claim 1 or 2, characterized in that in addition to the removable narrow-side housing wall (2a) serving to form the housing further housing walls (2b, 2c, 2d) are integrally connected to each other.
4. Allesschneider nach Anspruch 3, dadurch gekennzeichnet, dass in das Gehäuse4. slicer according to claim 3, characterized in that in the housing
(2) ein Träger (9) einschiebbar ist, der das Getriebe (6) und den Antriebsmotor (7) aufnimmt.(2) a carrier (9) can be inserted, which receives the transmission (6) and the drive motor (7).
5. Allesschneider nach Anspruch 4, dadurch gekennzeichnet, dass der Träger (9) an mindestens einer Innenseite des Gehäuses (2) abgestützt ist.5. slicer according to claim 4, characterized in that the carrier (9) is supported on at least one inside of the housing (2).
6. Allesschneider nach Anspruch 5, dadurch gekennzeichnet, dass an der6. slicer according to claim 5, characterized in that at the
Innenseite des Gehäuses (2) eine Führung (11) vorgesehen ist und der Träger (9) mittels der Führung (11 ) in das Gehäuse (2) einschiebbar ist. A guide (11) is provided on the inside of the housing (2) and the carrier (9) can be inserted into the housing (2) by means of the guide (11).
7. Allesschneider nach Anspruch 5 oder 6, dadurch gekennzeichnet, dass das7. slicer according to claim 5 or 6, characterized in that the
Gehäuse (2) Rastmittel (12) aufweist und der Träger (9) in den Rastmitteln (12) fixiert ist.Housing (2) has locking means (12) and the carrier (9) is fixed in the locking means (12).
8. Allesschneider nach Anspruch 7, dadurch gekennzeichnet, dass die Rastmittel (12) als Vertiefungen (14) an der Innenseite des Gehäuses (2) ausgebildet sind, in die Haltenasen (15) eingreifen, die mittels federnder Rasthaken (16) an dem8. slicer according to claim 7, characterized in that the latching means (12) as recesses (14) on the inside of the housing (2) are formed, engage in the retaining lugs (15) which by means of resilient latching hooks (16) on the
Träger (9) befestigt sind.Carrier (9) are attached.
9. Allesschneider nach Anspruch 7 oder 8, dadurch gekennzeichnet, dass die Rastmittel (12) in der Nähe einer ersten Lagerung (17) für das Rundmesser (5) angeordnet sind.9. slicer according to claim 7 or 8, characterized in that the latching means (12) are arranged in the vicinity of a first bearing (17) for the circular knife (5).
10. Allesschneider nach einem der Ansprüche 7 bis 9, dadurch gekennzeichnet, dass die Rastmittel (12) in der Nähe einer zweiten Lagerung (18) für ein Antriebsritzel (19) angeordnet sind.10. Slicer according to one of claims 7 to 9, characterized in that the latching means (12) are arranged in the vicinity of a second bearing (18) for a drive pinion (19).
11. Allesschneider nach Anspruch 4, dadurch gekennzeichnet, dass der Träger (9) mit einer Lagerplatte (20) verbunden ist, die das Getriebe (6) und den Antriebsmotor (7) trägt.11. slicer according to claim 4, characterized in that the carrier (9) is connected to a bearing plate (20) which carries the gear (6) and the drive motor (7).
12. Allesschneider nach Anspruch 4 bis 11 , dadurch gekennzeichnet, dass der Träger (9) mit der Stirnplatte (10) verbunden ist.12. slicer according to claim 4 to 11, characterized in that the carrier (9) is connected to the end plate (10).
13. Allesschneider nach Anspruch 12, dadurch gekennzeichnet, dass der Träger (9) zusammen mit Stirnplatte (10) als einstückiges Bauteil (21) ausgebildet ist.13. slicer according to claim 12, characterized in that the carrier (9) together with the end plate (10) is formed as a one-piece component (21).
14. Allesschneider nach Anspruch 13, dadurch gekennzeichnet, dass das einstückige Bauteil (21) Versteifungsrippen aufweist, die zwischen Träger (9) und Stirnplatte (10) verlaufend angeordnet sind.14. slicer according to claim 13, characterized in that the one-piece component (21) has stiffening ribs which are arranged running between the carrier (9) and the end plate (10).
15. Allesschneider nach Anspruch 13 oder 14, dadurch gekennzeichnet, dass das einstückige Bauteil (21) als Kunststoff-Spritzgussteil hergestellt ist. 15. slicer according to claim 13 or 14, characterized in that the one-piece component (21) is made as a plastic injection molded part.
16. Allesschneider nach Anspruch 12 bis 15, dadurch gekennzeichnet, dass die Stirnplatte (10) einen Tastschalter (22) zum ein- und ausschalten des Antriebsmotors (7) aufweist.16. slicer according to claim 12 to 15, characterized in that the end plate (10) has a push button switch (22) for switching the drive motor (7) on and off.
17. Allesschneider nach Anspruch 16, dadurch gekennzeichnet, dass die Stirnplatte (10) einen Verriegelungsmechanismus (23) für den Tastschalter (22) aufweist. 17. slicer according to claim 16, characterized in that the end plate (10) has a locking mechanism (23) for the push button switch (22).
EP03717191A 2002-02-27 2003-02-20 Universal slicer with an insertable housing Expired - Lifetime EP1483090B1 (en)

Applications Claiming Priority (3)

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DE2002108489 DE10208489A1 (en) 2002-02-27 2002-02-27 Slicer with a slide-in housing
DE10208489 2002-02-27
PCT/EP2003/001754 WO2003072319A1 (en) 2002-02-27 2003-02-20 Universal slicer with an insertable housing

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DE10208489A1 (en) 2003-09-04
DE50308116D1 (en) 2007-10-18
RU2004124524A (en) 2005-06-10
AU2003221485A1 (en) 2003-09-09
US20050051006A1 (en) 2005-03-10
PL206887B1 (en) 2010-10-29
EP1483090B1 (en) 2007-09-05
WO2003072319A1 (en) 2003-09-04
YU72304A (en) 2006-03-03
ATE372193T1 (en) 2007-09-15
PL369974A1 (en) 2005-05-02
HRP20040771B1 (en) 2012-06-30
RU2313443C2 (en) 2007-12-27

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