EP3311084A1 - Système modulaire de fabrication d'appareils frigorifiques - Google Patents

Système modulaire de fabrication d'appareils frigorifiques

Info

Publication number
EP3311084A1
EP3311084A1 EP16725148.7A EP16725148A EP3311084A1 EP 3311084 A1 EP3311084 A1 EP 3311084A1 EP 16725148 A EP16725148 A EP 16725148A EP 3311084 A1 EP3311084 A1 EP 3311084A1
Authority
EP
European Patent Office
Prior art keywords
diaphragm
evaporator
group
modular system
extension
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.)
Withdrawn
Application number
EP16725148.7A
Other languages
German (de)
English (en)
Inventor
Simon Krämer
Rainer Spaag
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 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 Hausgeraete GmbH filed Critical BSH Hausgeraete GmbH
Publication of EP3311084A1 publication Critical patent/EP3311084A1/fr
Withdrawn legal-status Critical Current

Links

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
    • F25D19/00Arrangement or mounting of refrigeration units with respect to devices or objects to be refrigerated, e.g. infrared detectors
    • F25D19/02Arrangement or mounting of refrigeration units with respect to devices or objects to be refrigerated, e.g. infrared detectors plug-in type
    • 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
    • F25D2321/00Details or arrangements for defrosting; Preventing frosting; Removing condensed or defrost water, not provided for in other groups of this subclass
    • F25D2321/14Collecting condense or defrost water; Removing condense or defrost water
    • F25D2321/143Collecting condense or defrost water; Removing condense or defrost water characterised by means to fix, clamp, or connect water pipes or evaporation trays

Definitions

  • the invention relates to a modular system for the production of refrigerators according to claim 1 and to a method for producing a refrigerator using a modular system according to claim 12.
  • At least 55%, advantageously at least 65%, preferably at least 75%, particularly preferably at least 85% and particularly advantageously at least 95% are to be understood as meaning "at least a large part". or equipped to be understood.
  • the fact that an object is intended for a specific function should in particular mean that the object fulfills and / or executes this specific function in at least one application and / or operating state.
  • a "modular system” is to be understood as meaning in particular a system having at least one group of objects, in particular at least partially and preferably at least substantially identical and / or advantageously functionally identical, from which in particular at least one object, in particular dependent on a respective one System task of each system parameters, of a specific purpose and / or other objects of the modular system, selectable and / or selectable, the object can be advantageously combined with at least one other object of the modular system and / or combined, whereby various refrigeration devices advantageous
  • the at least one group of objects may in particular comprise any desired number of objects which appear appropriate to a person skilled in the art Refrigerating device thereby designed as a refrigerator and / or freezer, such as in particular as a refrigerator, freezer, freezer,mégefrierkombination and / or wine storage cabinet.
  • an "evaporator” is to be understood in particular as meaning a unit, in particular a heat exchanger unit, which in particular comprises at least one, advantageously exactly one, evaporator element, in particular heat exchanger element, and at least one, advantageously exactly one, evaporator diaphragm, preferably evaporator front diaphragm to at least partially cool a work space, in particular in which the evaporator is at least partially, by means of evaporation of a heat transfer medium and / or a refrigerant, and in particular thermal energy from a medium to be cooled, in particular a medium arranged in the work space, in particular air
  • the evaporator diaphragm is in this case provided to at least a part of the evaporator element, which in particular from outside the refrigeration device and / or when looking into the refrigeration device, in particular oh ne the evaporator panel, in particular by a user, is visible, at least partially, preferably to cover at least a large part and particularly
  • the evaporator is further designed as a ceiling evaporator and in particular provided to at least partially and preferably in an assembled state to be arranged at least a large part of a ceiling bounding the useful space and / or a ceiling region of the useful space of the respective device body.
  • a “diaphragm extension element” should be understood to mean, in particular, an element, in particular a cover element, in particular of the evaporator, in particular the evaporator diaphragm, which is provided in particular for at least one element, in particular in the useful space and / or one, in particular arranged in the usable space, area of the refrigeration device, which in particular from outside the refrigerator and / or when looking into the refrigerator, in particular without the diaphragm extension element, in particular by a user, is visible, at least partially, preferably at least one
  • the diaphragm extension element may consist at least partially, preferably at least to a large extent and particularly preferably completely of any material that appears expedient to a person skilled in the art, such as, for example, metal, in particular steel and / or the aluminum, and / or advantageously plastic.
  • At least partially and preferably at least a large part of identical and / or functionally identical device bodies are combined to form a group.
  • at least partially identical evaporators and / or functionally identical evaporators, in particular based on a cooling capacity combined to form a group.
  • at least partially identical and / or advantageously functionally identical diaphragm extension elements are combined to form a group.
  • Such a modular system makes it possible to provide particularly flexible refrigeration appliances.
  • an efficiency in particular an assembly efficiency, a production efficiency, a power efficiency and / or a cost efficiency, can be improved.
  • possible accumulation of foam such as when adapting a shape of a device body and / or a useful space, in particular to a respective evaporator, can be avoided.
  • the diaphragm extension elements are provided, in the fully assembled state, at least one, in particular without the diaphragm extension element, in particular by a user and / or externally visible, gap between a the wall bound to the respective utility space, in particular of the respective appliance body, and the respective evaporator diaphragm at least partially, preferably to cover at least a large part and particularly preferably completely.
  • an appearance and / or an operation of the refrigeration device can be improved.
  • the diaphragm extension elements are provided to continue the respective evaporator diaphragm at least substantially flush at least from the perspective of a user in the fully assembled state, advantageously an at least substantially continuous optical front and / or surface view can be generated, thereby advantageously further improving the appearance of the refrigeration device can.
  • the diaphragm extension elements are at least provided to contact and / or to touch the respective evaporator diaphragm in the completely assembled state.
  • the diaphragm extension elements are provided for contacting the respective evaporator diaphragm at least on one side, advantageously on a side facing the respective evaporator diaphragm, at least substantially flush, in particular in the fully assembled state.
  • the diaphragm extension elements are preferably formed at least partially adapted to a contour of the respective evaporator diaphragm. Furthermore, the diaphragm extension elements are preferably provided for contacting and / or touching a wall of the respective, in particular selected, device body in the completely assembled state, in particular on a side facing away from the respective evaporator diaphragm.
  • the diaphragm extension elements are thereby provided, in the fully assembled state, to contact the wall delimiting the respective useful space at least on one side, advantageously on a side facing away from the evaporator diaphragm, in particular substantially flush from the perspective of a user.
  • the diaphragm extension elements are preferably designed to be at least partially adapted to a contour of the wall bounding the respective utility space.
  • the term "at least substantially flush” should be understood to mean flush, in particular apart from manufacturing tolerances and / or function openings.
  • the diaphragm extension elements could, for example, be provided with a material fit with the respective evaporator diaphragm and / or the respective one Device body to be connected.
  • the diaphragm extension elements could each have at least one adhesion element, which is intended to be at least positively connected to the respective evaporator diaphragm and / or the respective device body.
  • the diaphragm extension elements advantageously each have at least one positive locking element which is intended to be connected to the respective evaporator diaphragm and / or the respective device body at least in a form-fitting manner.
  • the respective evaporator diaphragm and / or the respective device body has at least one further positive locking element corresponding to the positive locking element, which is intended in particular to be connected in a form-locking manner to the positive locking element and / or to engage in the positive locking element.
  • at least one further positive locking element corresponding to the positive locking element which is intended in particular to be connected in a form-locking manner to the positive locking element and / or to engage in the positive locking element.
  • the positive-locking element could, for example, have at least one bayonet closure element, at least one plug connection element, at least one fastening bolt and / or at least one pin locking element.
  • the interlocking element has at least one latching element, whereby a particularly fast and intuitive fixation can be achieved.
  • the respective evaporator diaphragm and / or the respective device body in particular has at least one further latching element which corresponds to the latching element.
  • a "latching element" is to be understood as meaning, in particular, an element which is intended to engage automatically and / or automatically in at least one position, in particular a locking position and / or a latching position.
  • the positive locking element is self-activating, so that the respective diaphragm extension element advantageously emerges from a limiting tensile force exerted on the diaphragm extension element, in particular by a user, in particular automatically and in particular non-destructively fixes fixed position, which in particular a simple assembly and disassembly can be achieved.
  • a particularly simple, secure and / or accurate, in particular advantageous centered, fixing can be achieved in particular when the positive-locking element at least one dovetail guide element, in particular for producing a dovetail joint having.
  • the respective evaporator diaphragm and / or the respective device body in particular has at least one further dovetail guide element which corresponds to the dovetail guide element.
  • the first group of device carcasses has at least one first device body, which defines a first usable space with a first extension, advantageously transverse extension and / or width, and has at least one second device body, which has a second usable space with one the first extension of different second extension, advantageously transverse extent and / or a width defined, which in particular has the same orientation as the first extension.
  • the respective device bodies of the first group preferably differ from each other at least in one extension of the respective useful space.
  • the respective diaphragm extension elements of the third group differ from one another at least in at least one extension length that corresponds advantageously to the respective extent of the respective useful space.
  • the diaphragm extension elements for adapting the evaporator diaphragm to the respective extensions of the respective utility compartments have an extension length of at least 1 mm, advantageously of at least 3 mm, preferably of at least 5 mm and particularly preferably of at least 10 mm and / or of at most 250 mm of not more than 200 mm, preferably not more than 150 mm, and more preferably not more than 100 mm.
  • an extension length of at least 1 mm advantageously of at least 3 mm, preferably of at least 5 mm and particularly preferably of at least 10 mm and / or of at most 250 mm of not more than 200 mm, preferably not more than 150 mm, and more preferably not more than 100 mm.
  • the second group comprises only a single, in particular standardized, in particular uniform and / or universally usable, evaporator.
  • the evaporator is intended to be used in at least two, in particular different, device bodies, which in particular define utility spaces with different extents, advantageously transverse extents and / or widths.
  • the modular system has at least a fourth group of, in particular at least partially identical and / or advantageously functionally identical, further diaphragm extension elements which are each provided to at least partially adapt the respective evaporator diaphragm to the respective useful space when fully assembled.
  • At least one, preferably exactly one, diaphragm extension element of the third group is provided in combination with at least one, advantageously exactly one, further diaphragm extension element of the fourth group, in the fully assembled state the respective evaporator diaphragm at least to a large extent and / or preferably completely to the to adapt to each usable space.
  • each, diaphragm extension element of the fourth group is formed at least essentially mirror-symmetrically with respect to at least one, preferably each diaphragm extension element of the third group, in particular a particularly high flexibility and a continuous optical front and / or surface view can be produced.
  • the further diaphragm extension elements are provided to be arranged in the fully mounted state on a side opposite the respective diaphragm extension element side, advantageously with respect to a transverse extension and / or width of the evaporator and / or the evaporator diaphragm and advantageously at least one, in particular without the further diaphragm extension element , in particular by a user and / or visible from the outside, further gap between a respective utility space bounding further wall, in particular the respective Gerätkorpusses, and the respective Verdampferblende at least partially, preferably at least a large part and particularly preferably completely cover.
  • the respective further diaphragm extension elements of the fourth group differ from one another at least in at least one extension length which corresponds advantageously to the respective extent of the respective useful space.
  • an object "is at least substantially mirror-symmetrical" to another object should be understood in particular that the object of the other object with a volume fraction of at most 15%, preferably of at most 10% and more preferably of at most 5% differs.
  • the invention relates to a method for producing a refrigeration appliance, in particular a domestic refrigeration appliance, using a modular system with at least a first group of Artificialkorpussen, each defining at least one Nutzraum, with at least a second group of evaporators, which are each provided, at least partially , Preferably at least a major part and particularly preferably to be arranged completely in the respective working space, and which each have at least one evaporator aperture, and with at least a third group of diaphragm extension elements, which are each provided, in the fully assembled state, the respective evaporator diaphragm at least partially to the respective useful space, in particular to a shape and / or advantageously an extension, particularly preferably a transverse extent and / or a width, of the usable space, to be adapted, wherein from each group at least one, advantageously gene au on, object is selected and then at least the selected objects are subsequently combined, in particular during production of the refrigeration device.
  • the respective, in particular selected, diaphragm extension element can be mounted, in particular, prior to installation of the respective, in particular selected, evaporator into the work space at the respective, in particular selected, evaporator, in particular the evaporator diaphragm.
  • the respective, in particular selected, diaphragm extension element is advantageously mounted after installation of the respective, in particular selected, evaporator into the useful space at the respective, in particular selected, evaporator, in particular the evaporator diaphragm.
  • this makes it possible to provide particularly flexible refrigeration appliances, with it also being possible to advantageously improve efficiency, in particular assembly efficiency, production efficiency, power efficiency and / or cost efficiency.
  • the modular system should not be limited to the application and embodiment described above.
  • the modular system may be used to perform any of the functions described herein, such as one of those recited herein Number of individual elements, components and units have different numbers.
  • 1 is a designed as household refrigeration appliance refrigeration unit, which is at least partially made by means of a modular system, in a perspective view,
  • Fig. 2 shows a device body and an evaporator of the refrigerator in a
  • FIG. 3 shows the device body, the evaporator, a diaphragm extension element and another diaphragm extension element of the refrigeration device in a front view
  • FIG. 4 shows the diaphragm extension element in an assembled state in an enlarged view
  • FIG. 6 shows an exemplary modular system for the production of refrigerators
  • Fig. 7 shows another refrigeration device, which at least partially by means of a
  • FIG. 8 shows a device body, an evaporator and a diaphragm extension element of the further refrigeration device from FIG. 7 in an enlarged view
  • FIG. 9 the evaporator and the diaphragm extension element of the further refrigeration device from FIG. 7 in an enlarged view
  • FIG. 10 shows another refrigeration device, which at least partially by means of a
  • FIG. 1 shows an exemplary refrigeration appliance 10a designed as a household refrigerating appliance in a perspective front view.
  • the refrigeration device 10a is designed as a fridge and freezer combination device.
  • the refrigeration device 10a is also designed as a standalone unit. Accordingly, the refrigeration device 10a is formed freestanding.
  • an inventive refrigeration device could be designed as a base unit, table device and / or SxS device.
  • the refrigeration appliance 10a comprises at least one appliance body 14a.
  • the device body 14a defines a work space 16a (see also FIG.
  • the work space 16a has an access opening.
  • the work space 16a is formed in the present case as a freezer compartment.
  • the refrigeration device 10a further comprises at least one device closure element 58a.
  • the device closure element 58a is designed as a device door.
  • the device closure element 58a is pivotally mounted about a pivot axis. The pivot axis is vertically aligned relative to a standing plane.
  • the device closure element 58a is provided to close in at least one operating state, the access opening of, in particular designed as a freezer compartment, usable space 16a.
  • a refrigeration appliance comprises further appliance carcasses, further appliance closure elements and / or further utility rooms.
  • a refrigeration appliance could also have exactly one appliance body, exactly one appliance closure element and / or exactly one usable space.
  • Figures 2 and 3 show the working space 16a of the device body 14a in a front view, wherein the device shutter member 58a has been removed.
  • the refrigerator 10a is provided in a known manner to cool food and other refrigerated goods by means of a refrigerant circuit.
  • the refrigeration appliance 10a has at least one evaporator 20a.
  • the refrigeration appliance 10a has exactly one evaporator 20a.
  • the evaporator 20a is arranged in an assembled state at least a large part within the work space.
  • the evaporator 20a has at least one evaporator element (not shown).
  • the evaporator element is designed as a heat transfer element.
  • the evaporator element is designed as a pipeline.
  • the evaporator 20a has at least one evaporator orifice 24a.
  • the evaporator 20a has exactly one evaporator orifice 24a.
  • the evaporator diaphragm 24a is integrally formed.
  • the evaporator diaphragm 24a in the present case is completely made of a plastic.
  • the evaporator diaphragm 24a is designed as an evaporator front panel.
  • the evaporator orifice 24a surrounds the evaporator element in the mounted state to at least a large part.
  • the evaporator diaphragm 24a is provided to at least partially at least partially part of the evaporator element, which is visible in particular from outside the refrigeration appliance 10a, in particular the utility space 16a, and / or when looking into the refrigeration appliance 10a, in particular the utility space 16a, without the evaporator diaphragm 24a cover.
  • the evaporator 20a is also designed as a ceiling evaporator.
  • the evaporator 20a is arranged in the assembled state for the most part in a ceiling region of the usable space 16a. In the present case, the evaporator 20a is also arranged centrally in the working space 16a.
  • the evaporator 20a is provided to cool the work space 16a at least partially by means of evaporation of a refrigerant.
  • a refrigerant evaporator diaphragm in several parts and / or from another, in particular deviating from a plastic, material.
  • an evaporator could be arranged at least partially, preferably at least to a large extent and particularly preferably completely in another area of a useful space, such as in a rear area, a floor area and / or an edge area.
  • the refrigeration device 10a may comprise further objects for the production of the refrigerant circuit, such as at least one compressor (not shown), at least one condenser (not shown) and / or at least one throttle element (not shown).
  • the evaporator 20a is a standardized evaporator.
  • the evaporator 20a corresponds to a supplier part.
  • the evaporator 20a is intended to be used in any number of different device bodies 14a, 15a, which define utility spaces 16a, 17a with different extents, in particular widths.
  • the evaporator 20a is thus identical for all device bodies 14a, 15a and in particular has the same extent, in particular width, on.
  • all device carcasses are of identical design and / or have utility rooms with identical extensions and an evaporator, for example, due to different cooling power requirements, different extents, in particular widths having.
  • FIG. 2 shows by way of example such gaps 32a, 34a between the walls 16a, 38a delimiting the working space 16a and the evaporator orifice 24a.
  • the gaps 32a, 34a occur in the present case on both sides of the evaporator diaphragm 24a.
  • the refrigerator 10a has at least one diaphragm extension element 28a, 30a (see FIG ).
  • the refrigeration device 10a has exactly two diaphragm extension elements 28a, 30a.
  • the diaphragm extension elements 28a, 30a are designed as cover elements, in particular as cover panels.
  • the diaphragm extension elements 28a, 30a are integrally formed.
  • the diaphragm extension elements 28a, 30a are completely made of plastic in the present case.
  • the diaphragm extension elements 28a, 30a are designed identically to at least a large part.
  • the diaphragm extension elements 28a, 30a are mutually mirror-symmetrical.
  • the diaphragm extension elements 28a, 30a are arranged in a completely mounted state on opposite sides of the evaporator 20a and / or the evaporator diaphragm 24a, in particular with respect to a width of the evaporator 20a and / or the evaporator diaphragm 24a.
  • the diaphragm extension elements 28a, 30a are provided to adapt the evaporator diaphragm 24a to the working space 16a.
  • the diaphragm extension elements 28a, 30a are each provided, in the completely assembled state, one of the gaps 32a, 34a between the walls 36a, 38a delimiting the working space 16a and the evaporator diaphragm 24a completely cover.
  • the diaphragm extension elements 28a, 30a are provided to continue the evaporator diaphragm 24a when fully assembled, at least from the perspective of a user flush. In the fully assembled state, the diaphragm extension elements 28a, 30a respectively contact the evaporator diaphragm 24a and the respective wall 36a, 38a delimiting the useful chamber 16a, in particular in a flush manner.
  • the diaphragm extension elements 28a, 30a are at least partially adapted to a contour of the evaporator diaphragm 24a and the respective walls 36a, 38a delimiting the useful space 16a.
  • at least one diaphragm extension element could be designed in several parts and / or consist of another, in particular deviating from a plastic, material.
  • a diaphragm extension element 28a of the diaphragm extension elements 28a, 30a will now be described in more detail with reference to FIGS. 4 and 5, the following description also being applied to the other diaphragm extension element 30a, in particular due to the construction of the diaphragm extension elements 28a, 30a which is at least largely identical can be.
  • the diaphragm extension element 28a is intended to be connected at least to the evaporator diaphragm 24a.
  • the diaphragm extension element 28a has at least one positive-locking element 40a.
  • the diaphragm extension element 28a has exactly one positive locking element 40a.
  • the positive locking element 40a is arranged in the fully mounted state on a side facing away from the user and / or non-visible side of the diaphragm extension element 28a.
  • the positive-fit element 40a is arranged on a side of the diaphragm extension element 28a facing the evaporator 20a and / or the evaporator diaphragm 24a.
  • the positive-locking element 40a comprises a dovetail guide element 52a for producing a dovetail connection.
  • the positive-locking element 40a comprises a latching element 46a.
  • the latching element 46a directly adjoins the dovetail guide element 52a.
  • the locking element 46a is designed as a latching hook.
  • the evaporator diaphragm 24a comprises a positive-locking element 42a which corresponds to the positive-locking element 40a.
  • the corresponding form-fitting element 42a includes a to the Dovetail guide element 52a corresponding
  • the corresponding positive-locking element 42a comprises a detent element corresponding to the detent element 46a.
  • the corresponding locking element is designed as a locking edge.
  • the positive-locking element 40a is intended to be positively connected to the evaporator diaphragm 24a.
  • the locking element 46a is provided to engage automatically and automatically in a locking position, in particular behind the corresponding locking element designed as a latching element.
  • a connection between the diaphragm extension element 28a and the evaporator diaphragm 24a takes place in the vertical direction and / or longitudinal direction and in particular perpendicular to the extent, in particular width, of the useful space.
  • a diaphragm extension element could have a plurality of positive locking elements, latching elements and / or dovetail guide elements.
  • the diaphragm extension element 28a has at least one stabilizing element 60a.
  • the shutter extension element 28a has two stabilizing elements 60a.
  • the stabilizing elements 60a are arranged on a side of the diaphragm extension element 28a facing the evaporator 20a and / or the evaporator diaphragm 24a.
  • the stabilizing elements 60a are arranged on the same side of the diaphragm extension element 28a as the positive-locking element 40a.
  • the stabilizing elements 60a are provided to stabilize the side of the diaphragm extension element 28a facing the evaporator 20a and / or the evaporator diaphragm 24a.
  • the refrigerator 10a is made in the present case, at least partially by means of a modular system.
  • FIG. 6 shows such an exemplary modular system for the production of refrigeration appliances 10a.
  • the modular system comprises a first group 12a of device bodies 14a, 15a, which respectively define at least one useful space 16a, 17a.
  • the respective device bodies 14a, 15a of the first group 12a differ in each case at least in an extension, in particular a width, of the respective work space 16a, 17a from each other.
  • the first group 12a comprises by way of example, in particular for the sake of clarity, two device bodies 14a, 15a.
  • the first group 12a of device carcasses 14a, 15a has at least one first device body 14a.
  • the first device body 14a corresponds to the device body 14a of the previous description.
  • the first device body 14a defines a first usable space 16a with a first extent, in particular width.
  • the first group 12a of device carcasses 14a, 15a has at least one second device body 15a.
  • the second device body 15a defines a second usable space 17a with a second extension, in particular width.
  • the modular system comprises a second group 18a of evaporators 20a.
  • the evaporators 20a are intended to be arranged in the respective working space 16a, 17a.
  • the second group 18a comprises only a single evaporator 20a.
  • the evaporator 20a corresponds to the evaporator 20a of the previous description.
  • the evaporator 20a at least the evaporator orifice 24a.
  • the evaporator 20a is a standardized evaporator, which is intended to be used in any number of different appliance bodies 14a, 15a, which define utility spaces 16a, 17a with different extensions, in particular widths.
  • the modular system comprises a third group 26a of diaphragm extension elements 28a, 29a.
  • the respective diaphragm extension elements 28a, 29a of the third group 26a differ from each other at least in an extension length corresponding to the respective extent of the respective useful space 16a, 17a.
  • the extension length is between 1 mm and 250 mm.
  • the third group 26a comprises by way of example, in particular for the sake of clarity, two diaphragm extension elements 28a, 29a.
  • the respective diaphragm extension elements 28a, 29a of the third group 26a are each provided to at least partially adapt the evaporator diaphragm 24a to the respective useful space 16a, 17a in a completely assembled state, and in particular one of the gaps 32a, 34a, in particular a first gap 32a, at least partially cover.
  • the third group 26a of diaphragm extension elements 28a, 29a has at least one first diaphragm extension element 28a.
  • the first diaphragm extension element 28a corresponds to the diaphragm extension element 28a of the previous description.
  • the first diaphragm extension element 28a is corresponding to the first device body 14a educated.
  • the third group 26a of diaphragm extension elements 28a, 29a has at least one second diaphragm extension element 29a.
  • the second diaphragm extension element 29a is at least substantially identical to the first diaphragm extension element 28a.
  • the second diaphragm extension element 29a differs from the first diaphragm projection element 28a in an extension length.
  • the second diaphragm extension element 29a is formed corresponding to the second device body 15a.
  • the modular system comprises a fourth group 56a of further diaphragm extension elements 30a, 31a.
  • the respective further diaphragm extension elements 30a, 31a of the fourth group 56a differ from each other at least in an extension length corresponding to the respective extent of the respective useful space 16a, 17a.
  • the extension length is between 1 mm and 250 mm.
  • the further diaphragm extension elements 30a, 31a of the fourth group 56a are at least substantially identical to the diaphragm extension elements 28a, 29a of the third group 26a.
  • the further diaphragm extension elements 30a, 31a of the fourth group 56a are at least substantially mirror-symmetrical to the diaphragm extension elements 28a, 29a of the third group 26a.
  • the fourth group 56a comprises by way of example, in particular for the sake of clarity, two further diaphragm extension elements 30a, 31a.
  • the respective further diaphragm extension elements 30a, 31a of the fourth group 56a are respectively provided to at least partially adapt the evaporator diaphragm 24a to the respective useful space 16a, 17a in the fully assembled state and in particular one of the gaps 32a, 34a, in particular a second gap 34a. at least partially cover.
  • the fourth group 56a of further diaphragm extension elements 30a, 31a has at least one first further diaphragm extension element 30a.
  • the first further diaphragm extension element 30a corresponds to the diaphragm extension element 30a of the previous description.
  • the first further diaphragm extension element 30a of the fourth group 56a is mirror-symmetrical to the first diaphragm extension element 28a of the third group 26a.
  • the first further diaphragm extension element 30a is formed corresponding to the first device body 14a.
  • the fourth group 56a of further diaphragm extension elements 30a, 31a has at least one second additional diaphragm extension element 31a.
  • the second further diaphragm extension element 31 a is to the first further diaphragm extension element 30a at least substantially identical.
  • the second further diaphragm extension element 31 a differs from the first further diaphragm extension element 30 a in an extension length.
  • the second further diaphragm extension element 31a of the fourth group 56a is mirror-symmetrical to the second diaphragm extension element 29a of the third group 26a.
  • the second further diaphragm extension element 31 a is formed corresponding to the second device body 15 a.
  • the first group 12a, the third group 26a and / or the fourth group 56a may comprise any number of objects.
  • a second group of evaporators could comprise any number of objects.
  • At least one object is selected from each group 12a, 18a, 26a, 56a, and subsequently the selected objects are combined during manufacture of the refrigeration appliance 10a.
  • FIGS. 7 to 13 further embodiments of the invention are shown.
  • the following description and the drawings are essentially limited to the differences between the exemplary embodiments, with reference in principle also to the drawing and / or the description of the other exemplary embodiment, in particular FIGS. 1 to 2, with respect to identically named components, in particular with regard to components having the same reference symbols to 6, can be referenced.
  • To distinguish the embodiments of the letter a is the reference numerals of the embodiment in the figures 1 to 6 adjusted.
  • the letter a is replaced by the letters b and c.
  • the positive-locking element 40b has two latching elements 46b, 48b, in particular designed as latching hooks.
  • a first latching element 46b of the latching elements 46b, 48b faces an access opening of a useful space 16b.
  • a second latching element 48b of the latching elements 46b, 48b faces away from the access opening of the useful space 16b.
  • a positive-locking element 42b corresponding to the positive-locking element 40b of an evaporator diaphragm 24b has two latching elements 49b, 50b which correspond to the latching elements 46b, 48b and are designed in particular as latching projections.
  • the locking elements 46b, 48b are provided to engage behind the corresponding locking elements 49b, 50b in a fully assembled state.
  • FIGS. 10 to 13 show a further exemplary embodiment of the invention.
  • the embodiment of Figures 10 to 13, the letter c is adjusted.
  • the further exemplary embodiment of FIGS. 10 to 13 differs from the previous exemplary embodiments at least substantially by a form-locking element 40c of a diaphragm extension element 28c.
  • the positive-locking element 40c has two plug connection elements 54c, in particular according to the keyhole principle (cf., in particular, FIG. 12).
  • a positive-locking element 42c corresponding to the positive-locking element 40c of an evaporator diaphragm 24c has two corresponding connection openings 55c, which are in particular provided to receive the plug-in connection elements 54c in an assembled state, in particular by means of a push-and-push connection (see in particular FIGS 13).

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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)
  • Devices That Are Associated With Refrigeration Equipment (AREA)

Abstract

L'invention vise à augmenter la flexibilité. L'invention propose à cet effet un système modulaire servant à la fabrication d'appareils frigorifiques (10a), en particulier d'appareils frigorifiques ménagers, comprenant au moins un premier groupe (12a) de corps de base (14a, 15a ; 14b ; 14c), qui définissent chacun au moins un espace utile (16a, 17a ; 16b ; 16c), au moins un deuxième groupe (18a) d'évaporateurs (20a ; 20b ; 20c), qui sont chacun prévus pour être agencés au moins en partie dans l'espace utile concerné (16a, 17a ; 16b ; 16c) et qui présentent chacun au moins un écran d'évaporateur (24a ; 24b ; 24c), et au moins un troisième groupe (26a) d'éléments de prolongement d'écran (28s, 29a, 30a, 31a ; 30b ; 28c), qui sont chacun prévus pour, lorsqu'ils sont entièrement montés, adapter au moins en partie chaque écran d'évaporateur (24a ; 24b ; 24c) à l'espace utile concerné (16a, 17a ; 16b ; 16c).
EP16725148.7A 2015-06-18 2016-05-27 Système modulaire de fabrication d'appareils frigorifiques Withdrawn EP3311084A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE102015211234.9A DE102015211234A1 (de) 2015-06-18 2015-06-18 Baukastensystem zur Herstellung von Kältegeräten.
PCT/EP2016/061969 WO2016202552A1 (fr) 2015-06-18 2016-05-27 Système modulaire de fabrication d'appareils frigorifiques

Publications (1)

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EP3311084A1 true EP3311084A1 (fr) 2018-04-25

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EP (1) EP3311084A1 (fr)
DE (1) DE102015211234A1 (fr)
WO (1) WO2016202552A1 (fr)

Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2013072248A1 (fr) * 2011-11-17 2013-05-23 BSH Bosch und Siemens Hausgeräte GmbH Dispositif de refroidissement comprenant un évaporateur

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5637252Y2 (fr) * 1976-12-07 1981-09-01
JPH055421Y2 (fr) * 1987-12-04 1993-02-12
JP2006010239A (ja) * 2004-06-28 2006-01-12 Matsushita Electric Ind Co Ltd 冷蔵庫
JP4488977B2 (ja) * 2005-08-10 2010-06-23 株式会社東芝 冷蔵庫

Patent Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2013072248A1 (fr) * 2011-11-17 2013-05-23 BSH Bosch und Siemens Hausgeräte GmbH Dispositif de refroidissement comprenant un évaporateur

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WO2016202552A1 (fr) 2016-12-22

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