EP3810995A1 - Haushaltsgerätevorrichtung - Google Patents
HaushaltsgerätevorrichtungInfo
- Publication number
- EP3810995A1 EP3810995A1 EP19730965.1A EP19730965A EP3810995A1 EP 3810995 A1 EP3810995 A1 EP 3810995A1 EP 19730965 A EP19730965 A EP 19730965A EP 3810995 A1 EP3810995 A1 EP 3810995A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- unit
- insulation unit
- insulation
- household appliance
- expansion compensation
- 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
Links
Classifications
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24C—DOMESTIC STOVES OR RANGES ; DETAILS OF DOMESTIC STOVES OR RANGES, OF GENERAL APPLICATION
- F24C15/00—Details
- F24C15/34—Elements and arrangements for heat storage or insulation
-
- H—ELECTRICITY
- H05—ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
- H05B—ELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
- H05B6/00—Heating by electric, magnetic or electromagnetic fields
- H05B6/02—Induction heating
- H05B6/10—Induction heating apparatus, other than furnaces, for specific applications
- H05B6/12—Cooking devices
- H05B6/129—Cooking devices induction ovens
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24C—DOMESTIC STOVES OR RANGES ; DETAILS OF DOMESTIC STOVES OR RANGES, OF GENERAL APPLICATION
- F24C15/00—Details
- F24C15/02—Doors specially adapted for stoves or ranges
- F24C15/021—Doors specially adapted for stoves or ranges sealings for doors or transparent panel
-
- H—ELECTRICITY
- H05—ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
- H05B—ELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
- H05B2206/00—Aspects relating to heating by electric, magnetic, or electromagnetic fields covered by group H05B6/00
- H05B2206/04—Heating using microwaves
- H05B2206/044—Microwave heating devices provided with two or more magnetrons or microwave sources of other kind
Definitions
- the invention relates to a household appliance device according to claim 1.
- the insulation unit is provided for electrical insulation between a first unit, which is designed as a muffle of an oven, and a second unit, which is designed as an induction heating line of the oven.
- the insulation unit In an assembled state, the insulation unit is largely arranged between the first unit and the second unit.
- the insulation unit In an assembled state, the insulation unit is arranged flat on a wall of the first structural unit.
- thermal heating of the insulation unit for example by a cooking process taking place in the muffle, there is a risk of deformation of the insulation unit, as a result of which an optimal arrangement of the induction heating line arranged above the insulation unit could be disturbed relative to the muffle.
- the object of the invention is in particular to provide a generic device with an advantageous construction.
- the object is achieved according to the invention by the features of claim 1, while advantageous refinements and developments of the invention can be found in the subclaims.
- a household appliance device in particular a household appliance device, advantageously an oven device and preferably an induction baking oven device, proposed with at least one insulation unit, which is provided for in particular electrical and / or thermal insulation between at least a first construction unit and at least a second construction unit and which has at least one auxiliary installation element which is provided for adapting an external shape and / or shape of the insulation unit to the first structural unit for the purpose of installing the insulation unit, and has at least one expansion compensation element which is provided for thermal expansion of at least one partial area to compensate for the insulation unit at least substantially.
- the expansion compensation element in particular a Deformation of the insulation unit can be prevented in a targeted manner, whereby an optimal arrangement of the second structural unit relative to the first structural unit and / or optimal heating of food to be arranged within the first structural unit can be ensured even at high temperatures.
- the insulation unit can be arranged, in particular, flexibly and / or on any partial area on the first structural unit, in particular independently of the shape of the structural unit in the partial area.
- an optimal, in particular electrical and / or thermal insulation between the first structural unit and the second structural unit can be made possible, as a result of which in particular a long-lasting design can be aimed at.
- a household appliance having the household appliance device could be a freezer and advantageously a refrigerator and / or freezer.
- a household appliance having the household appliance device could alternatively or additionally be in particular a cleaning device, such as a dishwasher and / or a washing machine and / or a dryer. It is advantageous for a household appliance having the household appliance device to be a cooking appliance.
- a domestic appliance designed as a cooking appliance could, for example, be a hob, preferably an induction hob, and / or a microwave and / or a grill appliance and / or a steam cooking appliance.
- a household appliance designed as a cooking appliance is advantageously an oven and preferably an induction oven.
- the second module could be larger than the first module.
- the first structural unit is advantageously larger than the second structural unit.
- the phrase that an object is “larger” than another object should in particular be understood to mean that the object has a mass and / or a volume which is at least 110%, in particular at least 120%, advantageously at least 150%, is particularly advantageously at least 175%, preferably at least 200% and particularly preferably at least 250% of a mass and / or a volume of the further object.
- the first structural unit could be arranged in an installed position above the second structural unit. In an installed position, the second structural unit is arranged in particular above the first structural unit.
- the household appliance device has in particular the first structural unit.
- the first structural unit could be, for example, a set-up plate and / or a cooktop plate, which in particular could be provided for setting up cookware.
- the first structural unit is advantageously a muffle, which in particular at least partially defines and / or delimits at least one cooking space, which is provided in particular for the introduction of food to be cooked, in particular for the purpose of heating and / or cooking.
- the phrase that the muffle defines and / or limits at least one cooking space “at least partially” is to be understood in particular to mean that the muffle defines the cooking space alone and / or together with at least one further unit, for example with at least one door / or limited.
- the household appliance device has in particular the second structural unit.
- the second structural unit could, for example, be an electronic unit and / or a control unit and / or an operator interface.
- the second structural unit is advantageously at least one heating unit.
- a “heating unit” is to be understood in particular to mean a unit which is intended to supply energy to at least one object to be heated in at least one operating state for the purpose of heating the object to be heated.
- the heating unit could be designed as a resistance heating unit and in particular be provided to convert energy into heat and to supply this to the object to be heated for the purpose of heating the object to be heated.
- the heating unit could be designed as an induction heating unit and in particular be provided for this purpose to supply energy in the form of an alternating electromagnetic field to the object to be heated, wherein the energy supplied to the object to be heated could be converted into heat in particular in the object to be heated.
- the object to be heated could, for example, be cookware and / or at least one wall, in particular at least one muffle wall.
- the insulation unit is arranged at least to a large extent between the first structural unit and the second structural unit in at least one assembled state. net.
- the insulation unit When viewed vertically on a main extension plane of the insulation unit, the insulation unit extends in particular over a proportion of at least 20%, in particular at least 40%, advantageously at least 60%, particularly advantageously at least 70% and preferably at least 80% of an area, in particular a wall, the first structural unit, on which the insulation unit is arranged in particular.
- an area extension of the insulation unit is greater than an area extension of the second structural unit.
- a “main extension plane” of an object is to be understood to mean, in particular, a plane which is parallel to a largest side surface of a smallest imaginary cuboid, which just just completely surrounds the object, and in particular runs through the center of the cuboid. “At least for the most part” is to be understood in particular to mean a proportion, in particular a mass fraction and / or volume fraction, of at least 70%, in particular of at least 80%, advantageously of at least 90% and preferably of at least 95%.
- the insulation unit could have at least one main function, which in particular could be thermal insulation between the first structural unit and the second structural unit.
- the insulation unit has in particular at least one main function, which lies in particular in electrical insulation between the first structural unit and the second structural unit.
- the insulation unit in particular in addition to the main function in the form of electrical insulation between the first structural unit and the second structural unit, has at least one secondary function, which lies in particular in thermal insulation between the first structural unit and the second structural unit.
- the insulation unit is provided for insulation “between” at least one first structural unit and at least one second structural unit is to be understood in particular to mean that the insulation unit is used to isolate the first structural unit from the second structural unit and / or to provide insulation the second structural unit with respect to the first structural unit and / or with an isolation of the first structural unit from the second structural unit and also the second structural unit from the first structural unit.
- the insulation unit in particular reduces a transfer of energy, in particular electrical energy and / or thermal energy, between the first structural unit and the second structural unit, in particular in a measurable manner, in particular in comparison to an embodiment while avoiding and / or in the absence of an isolation unit.
- the insulation unit absorbs in particular the energy from the first structural unit and / or from the second structural unit and in particular absorbs this energy at least in large part and / or in particular prevents transmission of the energy between the first structural unit and the second structural unit.
- the insulation unit in at least one operating state reduces the likelihood of an in particular electrical short circuit between the first structural unit and the second structural unit, in particular in a measurable manner, in particular in a comparison to a configuration with avoidance and / or absence of an insulation unit.
- the insulation unit in at least one operating state, reduces the probability of heat transfer between the first structural unit and the second structural unit, in particular in a measurable manner, in particular in a comparison to a configuration with the avoidance and / or absence of an insulation unit.
- an external shape and / or shape of the insulation unit can be changed and / or adapted to an outer shape and / or shape of the first structural unit by means of the auxiliary installation element.
- the insulation unit can be bent and / or bent, in particular by means of the auxiliary installation element, in particular in a simple manner.
- at least two partial areas of the insulation unit which, in at least one disassembled state, can be arranged in particular adjacent to one another, can be arranged one above the other and / or overlapping, in particular with respect to at least one direction, which is in particular perpendicular to a main extension plane of at least one of the Partial areas is aligned.
- a “disassembled” state in particular the insulation unit, is to be understood in particular to mean a state in which the insulation unit is arranged, in particular, at least for the most part within one level and / or in which the insulation unit is developed in particular in one plane.
- the disassembled state is located, in particular, in terms of time before the insulation unit is assembled and / or before the insulation unit is arranged on the first structural unit.
- the insulation unit assumes a maximum area extension, in particular when viewed vertically on at least a partial area of the isolation unit in a plane which is spanned by the partial area.
- the insulation unit is free of kinks and / or undulations and / or bends in the disassembled state.
- the expansion compensation element is intended to at least substantially “compensate” a thermal expansion of at least a partial area of the insulation unit is to be understood in particular to mean that the expansion compensation element transmits the thermal expansion of the partial area from the partial area to at least one operating state at least one, in particular surrounding the partial area and / or adjacent to the partial area, further partial area of the insulation unit at least substantially prevented and / or reduced, in particular in a comparison to a configuration with avoidance and / or in the absence of the expansion compensation element.
- the expansion compensation element in at least one operating state absorbs at least a large part of a thermal expansion of the partial area of the insulation unit.
- the expansion compensation element is arranged in particular in a region of the insulation unit in which maximum thermal voltages occur in the insulation unit in a heating operating state.
- a direction of longitudinal extension of the expansion compensation element is oriented at least substantially perpendicular to a direction of the thermal stresses.
- the auxiliary installation element is particularly in an area of the insulation unit, in which in a Walker Häszu stood low thermal stresses in the insulation unit.
- a “longitudinal direction of extension” of an object is to be understood in particular as a direction which is aligned parallel to a longest side of a smallest imaginary cuboid which just just completely surrounds the object.
- the expression “essentially vertical” is intended here in particular to define an orientation of a direction relative to a reference direction, the direction and the reference direction, viewed in particular in one plane, enclosing an angle of 90 °. and the angle has a maximum deviation of in particular a maximum of 8 °, advantageously a maximum of 5 ° and particularly advantageously a maximum of 2 °.
- a longitudinal direction of at least one section of the auxiliary laying element in at least one disassembled state is oriented at an angle to a longitudinal direction of at least a section of the expansion compensation element.
- the section of the laying aid element and the section of the expansion compensation element in at least one disassembled state are arranged at least for the most part in an in particular common plane, which is in particular spanned by the insulation unit.
- the auxiliary installation element could, for example, have exactly one section which, in particular, could at least largely and advantageously completely define a shape and / or shape of the auxiliary installation element.
- the auxiliary installation element could in particular have at least two, in particular at least three, advantageously at least four, particularly advantageously at least five, preferably at least seven and particularly preferably a plurality of sections, which in particular together have at least a large part and advantageously a shape and / or shape of the auxiliary installation element could fully define.
- the expansion compensation element could, for example, have exactly one section, which could in particular at least largely and advantageously completely define a shape and / or shape of the expansion compensation element.
- the expansion compensation element could in particular have at least two, in particular at least three, advantageously at least four, particularly advantageously at least five, preferably at least seven and particularly preferably a plurality of sections, which in particular together have at least a large part the shape and / or shape of the expansion compensation element and could advantageously completely defi nate.
- the phrase that a direction is oriented “at an angle” to a further direction is to be understood in particular to mean that the direction with the further direction, in particular in a plane within which the direction and the further direction are arranged and which in particular of the insulation unit stretches, includes a minimum angle of more than 0 ° and a maximum of 90 °.
- the longitudinal direction of extension of the section of the auxiliary laying element closes a minimum angle of at least 5 °, in particular of at least 10 °, advantageously of at least 15 °, particularly advantageously of at least 20 °, preferably of at least 30 ° and particularly preferably, in at least one disassembled state of at least 40 ° with the longitudinal direction of the section of the expansion compensation element.
- the longitudinal extension direction of the section of the auxiliary installation element in at least one disassembled state has a minimum angle of at most 90 °, in particular of at most 85 °, advantageously of at most 80 °, particularly advantageously of at most 70 °, preferably of at most 60 ° and particularly preferably of at most 50 ° with the longitudinal direction of the section of the expansion compensation element.
- the section of the installation aid element and the section of the expansion compensation element can in particular be arranged in a particularly flexible manner relative to one another, in particular in such a way as to ensure optimum functionality of the installation aid element and of the expansion compensation element.
- optimal laying of the insulation unit can be made possible and / or thermal expansion of the partial region of the insulation unit can be optimally compensated for.
- the auxiliary installation element in at least one disassembled state have at least one incision in the insulation unit and in particular is formed by at least one incision in the insulation unit.
- the auxiliary installation element could have at least two, in particular at least three, advantageously at least four, particularly advantageously at least five, preferably at least seven and particularly preferably a plurality of notches which could merge into one another in particular and which in particular could have different directions of elongation, in particular angular could be aligned relative to each other.
- the auxiliary installation element has in particular exactly one incision, which is in particular designed in a straight line.
- An “incision” is to be understood in particular to mean a slot and / or an elongate recess which, for example, could be produced by means of at least one cutting process and / or by means of at least one process different from a cutting process and / or introduced into the insulation unit.
- this enables inexpensive and / or simple manufacture to be achieved.
- an optimal and / or maximum effect can be achieved, which in particular enables high efficiency.
- the auxiliary installation element in at least one disassembled state adjoins a lateral edge of the insulation unit and in particular based on the lateral edge of the insulation unit to which the auxiliary installation element adjoins in at least one disassembled state, in the direction of at least one further lateral edge of the Isolation unit and / or in the direction of an inner region of the isolation unit.
- a “lateral” border of the insulation unit in at least one disassembled state should in particular be understood to mean a border and / or an edge, which in the disassembled state is a surface extension of the insulation unit that the insulation unit in particular when viewed vertically on a main extension plane of the insulation unit in the main extension level, limited and / or defined and / or bordered.
- this enables an optimal adaptation of an external shape of the insulation unit to the first structural unit and / or an optimal laying of the insulation unit on the first structural unit.
- the auxiliary installation element can be produced in a simple and / or uncomplicated manner, since in particular simple accessibility can be ensured during manufacture of the auxiliary installation element.
- the auxiliary installation element in at least one disassembled state, could be oriented at an angle to the lateral edge of the insulation unit and / or in particular include a minimum angle of at least substantially 90 ° with the lateral edge.
- the installation aid element preferably includes a minimum angle of at least substantially 45 ° with the lateral edge of the insulation unit.
- “at least essentially” should be understood in particular to mean that a deviation from a predefined value deviates in particular not more than 25%, preferably not more than 10% and particularly preferably not more than 5% of the predefined value.
- an outer shape of the laying aid element can be adapted particularly optimally to the first structural unit
- the expansion compensation element have at least one material weakening of the insulation unit in at least one disassembled state, and in particular by at least one material weakening of the insulation unit is formed.
- a “material weakening” of an object is to be understood in particular as a partial area of the object in which the object is relative to at least one further partial area of the object and / or relative to remaining partial areas of the object, which / which could / could be larger than that Subarea and which / which in particular could / could at least largely define and / or form the object has at least a reduced material thickness and / or thickness.
- a “thickness” of an object is to be understood in particular to mean the shortest extension of a smallest imaginary cuboid that just barely surrounds the object.
- the material weakening could, for example, be a recess and / or a hole and / or a slot and / or a reduced material thickness and / or a recess in the insulation unit.
- the material weakening is advantageously a cut in the insulation unit.
- the expansion compensation element could, for example, adjoin a lateral edge of the insulation unit in at least one disassembled state when viewed vertically on a main extension plane of the insulation unit.
- the expansion compensation element is preferably arranged in at least one disassembled state when viewed vertically on a main extension plane of the insulation unit completely within a surface extension of the insulation unit in the main extension plane. A high degree of stability can thereby be made possible.
- the household appliance device could have exactly one, in particular only, insulation unit, in particular the insulation unit.
- the household appliance device preferably has at least one further insulation unit, which has at least one further installation auxiliary element, which is provided in particular for adapting an outer shape of the further insulation unit to the first structural unit for the purpose of laying the further insulation unit, and at least one further expansion compensation element, which In particular, it is provided to at least substantially compensate for a thermal expansion of at least a portion of the further insulation unit, and which is reflected in at least one times different from the isolation unit.
- the insulation unit and the further insulation unit could differ from one another in at least one disassembled state, for example by a number of auxiliary installation elements and / or by a number of expansion compensation elements.
- the insulation unit and the further insulation unit could differ in at least one disassembled state, for example, by arranging at least one auxiliary installation element and / or at least one expansion compensation element relative to a lateral edge of the insulation unit and / or relative to one another.
- the insulation unit and the further insulation unit could alternatively or additionally differ in terms of a surface extension and / or by an external shape.
- the insulation unit and the further insulation unit preferably have at least essentially the same surface extension and advantageously at least essentially the same external shape.
- the insulation unit and the further insulation unit in at least one disassembled state “at least essentially” have the same area extension should be understood in particular that in at least one disassembled state, a quotient of an area extension of the insulation unit and an area extension of the further insulation unit assumes a value of at least 0.9, in particular of at least 0.92, advantageously of at least 0.94, particularly advantageously of at least 0.96, preferably of at least 0.98 and particularly preferably of at least 0.99 and / or that in at least one disassembled state, a quotient of a surface extension of the insulation unit and a surface extension of the further insulation unit has a value of a maximum of 1.1, in particular a maximum of 1.08, advantageously a maximum of 1.06, particularly advantageously a maximum of 1.04 , preferably of at most 1, 02 and be particularly preferred of maximum 1, 01 assumes.
- the insulation unit and the further insulation unit can be superimposed and / or in particular in an optimal manner be arranged overlapping, which in particular an optimized and
- the installation aid element and the further installation aid element are arranged without overlap.
- the expansion compensation element and the further expansion compensation element are arranged without overlap in at least one disassembled state when viewed vertically on a main extension plane of the insulation unit and in the case of an overlapping arrangement of the insulation unit and the further insulation unit.
- an, in particular electrically conductive, contact of the first structural unit and the second structural unit and / or the occurrence of electrical short circuits can be avoided, as a result of which a high level of operating comfort and / or a long-lasting design and / or high functionality can be achieved.
- the isolation unit could, for example, be asymmetrical, such as with respect to a center and / or center of gravity of the isolation unit.
- the household appliance device in particular in the case of an asymmetrical insulation unit, could have at least one second insulation unit, which could be identical to the insulation unit.
- the isolation unit and the further isolation unit could be arranged at least in a disassembled state and in the case of an overlapping arrangement of the isolation unit and the second isolation unit rotated relative to one another, for example by rotating the second insulation unit, in particular about an axis of rotation, which is oriented perpendicular to the second insulation unit and runs through a center and / or center of gravity of the second insulation unit, through an angle of at least substantially 90 ° and / or at least substantially 180 °.
- the installation aid element of the insulation unit and a second installation aid element of the second insulation unit could be arranged without overlap.
- the expansion compensation element of the insulation unit and a second expansion compensation element of the second insulation unit could be arranged without overlap. In this way, in particular a low level of storage and / or a small number of components could be made possible.
- the insulation unit and / or the further insulation unit is preferably of symmetrical design, as a result of which, in particular, simple assembly can be achieved.
- the insulation unit could be formed in one piece and the further insulation unit could have at least one further first insulation part element and at least one further second insulation part element, which in particular could be provided for modular assembly.
- the further insulation unit could be formed in one piece and the insulation unit could have at least one first insulation part element and at least one second insulation part element, which in particular could be provided for modular assembly.
- the insulation unit is preferably formed in one piece and, in particular in addition to the first insulation unit, in particular the further insulation unit is formed in one piece.
- One-piece is to be understood in particular to be understood as being at least integrally bonded, for example by means of a welding process, an adhesive process, a gating process and / or another process which appears to be useful to the person skilled in the art, and / or advantageously to be formed in one piece, such as, for example, by a Manufacture from a casting and / or by manufacturing in a single or multi-component injection molding process and advantageously from a single blank.
- a stable construction and / or simple manufacture of the insulation unit and / or the further insulation unit can thereby be achieved.
- low inventory and / or low component diversity can be achieved.
- the insulation unit and in particular the further insulation unit have at least one first partial insulation element and at least one second partial insulation element, which are provided for modular assembly.
- the further insulation unit has at least one further first partial insulation element and at least one further second partial insulation element, which are provided in particular for a modular assembly.
- a first object and a second object are provided for a “module-like” assembly is to be understood in particular to mean that the first object and the second object are provided for assembly in the modular principle and / or in the modular principle and in particular in such a manner are that the first object and the second object can be joined together in particular due to a suitable shape and / or due to a suitable functionality and / or can interact via corresponding interfaces. This allows a particularly flexible configuration, in particular.
- first partial insulation element and the second partial insulation element could be at least substantially and in particular completely identical.
- the further first partial insulation element and the further second partial insulation element could for example be at least substantially and in particular completely identical.
- first partial insulation element and the second partial insulation element could differ in at least one feature from the further first partial insulation element and the further second partial insulation element.
- the first insulating sub-element and the second insulating sub-element differ from one another in at least one feature, in particular in size and / or shape.
- the further first partial insulation element and the further second partial insulation element differ from one another in particular in at least one feature, in particular in size and / or shape.
- the feature in which the insulating sub-elements differ from one another could be, for example, a size and / or a shape.
- the feature in which the insulation sub-elements differ from one another could be, for example, an arrangement of at least one auxiliary installation element of an insulation unit, in particular any one, relative to a lateral edge and / or relative to at least one expansion compensation element of the insulation unit.
- the feature in which, in particular, the insulating sub-elements differ from one another differ could alternatively or additionally be, for example, arrangement of at least one expansion compensation element of any particular insulation unit relative to a lateral edge and / or relative to at least one laying aid element of the insulation unit. This allows in particular an extremely high flexibility and / or a, in particular direct electrical contact between the first structural unit and the second structural unit can be avoided, in particular in the case of an overlapping arrangement of the insulation unit and the further insulation unit.
- the isolation unit and / or the further isolation unit consist at least to a large extent of mica, in particular of artificial mica.
- the insulation unit and / or the further insulation unit can consist, in particular, at least in large part of a material with an optimized price-performance ratio, which in particular enables high economic efficiency.
- Isolation between the first structural unit and the second structural unit can in particular be perfected in a household appliance, in particular in a household cooking appliance, with at least one household appliance device according to the invention.
- a high degree of security and / or a high degree of functionality can in particular be achieved by a method for operating a household appliance device according to the invention, which has at least one insulation unit which is provided for insulation between at least a first structural unit and at least a second structural unit , wherein for the purpose of laying the insulation unit, an outer shape of the insulation unit is adapted to the first structural unit, and wherein a thermal expansion of at least a portion of the insulation unit is at least substantially compensated for.
- the household appliance device is not intended to be limited to the application and embodiment described above.
- the household appliance device can have a number that differs from a number of individual elements, components and units specified here to fulfill a function described here.
- 1 is a household appliance with a household appliance device in a cal matic representation
- FIG. 3 shows an insulation unit of the household appliance device in a disassembled state in a schematic plan view
- FIG. 5 shows the insulation unit and the further insulation unit, which are arranged in an overlapping arrangement, in a disassembled state in a schematic plan view
- FIG. 6 shows the insulation unit and the further insulation unit, which are arranged in an overlapping arrangement, and a heating unit of the household appliance device in a disassembled state in a schematic plan view
- FIG. 7 shows an insulation unit and a further insulation unit, which are arranged in an overlapping arrangement, and a heating unit of an alternative household appliance device in a disassembled state in a schematic plan view
- FIG. 8 shows the insulation unit from FIG. 7 in a disassembled state in a schematic plan view
- FIG. 9 shows the further insulation unit from FIG. 7 in a disassembled state in a schematic plan view
- FIG. 10 is an insulation unit and another insulation unit, which are arranged in an overlapping arrangement, an alternative household appliance device in a disassembled state in a schematic plan view,
- 11 shows a first partial insulation element of the insulation unit from FIG. 10 in a disassembled state in a schematic plan view
- 12 shows a second partial insulation element of the insulation unit from FIG. 10 in a disassembled state in a schematic plan view
- FIG. 13 shows a further first partial insulation element of the further insulation unit from FIG. 10 in a disassembled state in a schematic plan view
- FIG. 14 shows a further second partial insulation element of the further insulation unit from FIG. 10 in a disassembled state in a schematic plan view.
- FIG 1 shows a household appliance 42a, which is designed as a household cooking appliance.
- the household appliance 42a could be designed as a cleaning appliance, for example.
- the household appliance 42a designed as a domestic cooking appliance could be designed as a hob, preferably an induction hob, and / or a microwave and / or a grill appliance and / or a steam cooking appliance.
- household appliance 42a is designed as an oven and preferably as an induction oven.
- the household appliance 42a has a household appliance device 10a.
- Household appliance device 10a is designed as a household appliance device.
- the household appliance device 10a is designed as an oven device and preferably as an induction oven device.
- the household appliance device 10a has a muffle 44a.
- the muffle 44a partially delimits a cooking space 46a.
- the muffle 44a essentially delimits the cooking space 46a together with a cooking appliance door 48a.
- the household appliance device 10a has the cooking appliance door 48a.
- the household appliance device 10a has five sleeve walls 50a. In the figures, only one of multiple objects is provided with a reference symbol.
- the muffle walls 50a are part of the muffle 44a.
- the muffle walls 50a together with the cooking appliance door 48a essentially define the cooking space 46a.
- One of the muffle walls 50a is designed as a muffle bottom wall 52a.
- One of the muffle walls 50a is designed as a muffle ceiling wall 54a.
- One of the muffle walls 50a is designed as a muffle rear wall 56a.
- Two of the mold walls 50a are designed as a muffle side wall 58a, 60a. Only one of the muffle walls 50a is described below.
- the household appliance device 10a has an operator interface 64a for entering and / or selecting operating parameters (cf. FIG. 1), for example a heating power and / or a heating power density and / or a heating zone.
- the operator interface 64a is provided for outputting a value of an operating parameter to an operator.
- the household appliance device 10a has a control unit 66a.
- the control unit 66a is provided to perform actions and / or to change settings depending on the operating parameters entered by means of the user interface 64a. In an operating state, the control unit 66a regulates an energy supply to at least one heating unit 62a (cf. FIGS. 2 and 6).
- the household appliance device 10a has two heating units 62a. Only one of the heating units 62a is shown in the figures. Alternatively, the household appliance device 10a could in particular have a different number of heating units 62a. For example, the household appliance device 10a could have exactly one single heating unit 62a. Alternatively, the household appliance device 10a could have, for example, at least three, in particular at least four, advantageously at least five and preferably a plurality of heating units 62a.
- the heating units 62a are arranged outside the cooking chamber 46a.
- a lower heating unit 62a of the heating units 62a is arranged in an installed position below half of the muffle wall 50a designed as a muffle bottom wall 52a.
- the lower heating unit 62a is arranged on the muffle wall 50a designed as a muffle bottom wall 52a.
- An upper heating unit 62a of the heating units 62a is arranged in an installed position above the muffle wall 50a designed as a muffle ceiling wall 54a.
- the upper heating unit 62a is arranged on the muffle wall 50a formed as a muffle ceiling wall 54a.
- At least one heating unit 62a could be arranged on a muffle wall 50a designed as a muffle side wall 58a, 60a and / or on a muffle wall 50a designed as a muffle rear wall 56a. Only one of the heating units 62a is described below.
- the heating unit 62a could be designed as a resistance heating unit.
- the heating unit 62a is designed as an induction heating unit.
- the household appliance device 10a has one insulation unit 12a per heating unit 62a (cf. FIGS. 2, 3, 5 and 6).
- the insulation unit 12a is provided for insulation between a first structural unit 14a and a second structural unit 16a. In an operating state, the insulation unit 12a isolates the first structural unit 14a and the second structural unit 16a from one another.
- the household appliance device 10a has the first structural unit 14a.
- the first unit 14a in the present embodiment is the muffle 44a.
- the household appliance device 10a has the second structural unit 16a.
- the second construction unit 16a is the heating unit 62a in the present exemplary embodiment.
- the insulation unit 12a is provided for electrical insulation between the first unit 14a and the second unit 16a. In an operating state, the insulation unit 12a electrically isolates the first structural unit 14a and the second structural unit 16a from one another.
- the insulation unit 12a is provided for thermal insulation between the first structural unit 14a and the second structural unit 16a. In an operating state, the insulation unit 12a thermally insulates the first structural unit 14a and the second structural unit 16a from one another.
- the insulation unit 12a In an operating state, the insulation unit 12a is largely arranged between the first structural unit 14a and the second structural unit 16a.
- the insulation unit 12a is arranged in an operating state on the muffle wall 50a of the muffle 44a.
- the insulation unit 12a has four laying auxiliary elements 18a (cf. FIGS. 3, 5 and 6).
- the insulation unit 12a could in particular have a different number of auxiliary installation elements 18a.
- the insulation unit 12a could have exactly one single auxiliary installation element 18a.
- the insulation unit 12a could, for example, have at least two and in particular at least four auxiliary installation elements 18a.
- the insulation unit 12a could, for example, have at least five, in particular at least six, advantageously at least eight and preferably a plurality of laying have auxiliary elements 18a. Only one of the installation aids 18a is described below.
- the auxiliary installation element 18a is provided for adapting an outer shape of the insulation unit 12a to the first structural unit 14a for the purpose of laying the insulation unit 12a.
- the auxiliary laying element 18a is provided for laying the insulation unit 12a in a region of at least one edge and / or unevenness of the first structural unit 14a.
- the auxiliary installation element 18a In a disassembled state, the auxiliary installation element 18a has an incision in the insulation unit 12a.
- the auxiliary installation element 18a is formed in a disassembled state by an incision in the insulation unit 12a.
- the auxiliary installation element 18a is formed in a straight line.
- the laying support element 18a has exactly one single section 24a.
- the auxiliary installation element 18a In a disassembled state, the auxiliary installation element 18a adjoins a lateral edge 30a of the insulation unit 12a. In a disassembled state, the auxiliary installation element 18a extends from the lateral edge 30a of the insulation unit 12a in the direction of a center and / or center of gravity of the insulation unit 12a. In the present exemplary embodiment, the auxiliary installation element 18a in a disassembled state forms a minimum angle 68a of essentially 45 ° with the lateral edge 30a of the insulation unit 12a.
- the insulation unit 12a has twelve expansion compensation elements 20a.
- the expansion compensation elements 20a are grouped into four groups. Each group of expansion compensation elements 20a is defined by three expansion compensation elements 20a.
- the expansion compensation elements 20a of each group differ in terms of a longitudinal extent of the respective expansion compensation elements 20a.
- An expansion compensation element 20a1 closest to a lateral edge 30a of the insulation unit 12a has a greater longitudinal extent than an expansion compensation element 20a3 closest to a center and / or center of gravity of the insulation unit 12a.
- the expansion compensation elements 20a of a respective group are arranged in groups with decreasing longitudinal extent.
- a middle of the expansion expansion Equal elements 20a2 has a longitudinal extent that is smaller than a longitudinal extent of an expansion compensation element 20a1 closest to the lateral edge 30a of the insulation unit 12a and greater than a longitudinal extent of an expansion compensation element 20a3 closest to the center and / or center of gravity of the insulation unit 12a.
- the expansion compensation elements 20a of each group are aligned essentially parallel to one another. Only one of the expansion compensation elements 20a is described below.
- the expansion compensation element 20a is provided to substantially compensate for thermal expansion of at least a portion of the insulation unit 12a. In an operating state, the expansion compensation element 20a enables the subarea of the insulation unit 12a to be thermally expanded. The expansion compensation element 20a essentially compensates for a thermal expansion of at least a portion of the insulation unit 12a in an operating state.
- the expansion compensation element 20a is straight in the present embodiment.
- the expansion compensation element 20a has exactly one single section 28a. In a disassembled state, the expansion compensation element 20a is aligned essentially parallel to a lateral border 30a of the insulation unit 12a.
- a longitudinal extension direction 22a of the section 24a of the auxiliary installation element 18a in a disassembled state is oriented at an angle to a longitudinal extension direction 26a of the section 28a of the expansion compensation element 20a.
- a longitudinal extension direction 22a of the section 24a of the auxiliary installation element 18a and a longitudinal extension direction 26a of the section 28a of the expansion compensation element 20a in a disassembled state include a minimum angle 70a of essentially 45 °.
- the expansion compensation element 20a has at least one material weakening of the insulation unit 12a.
- the expansion compensation element 20a could have a smaller thickness of the insulation unit 12a and / or a recess of the insulation unit 12a in a disassembled state.
- the expansion compensation element 20 has an incision in the insulation unit 12a in a disassembled state.
- the expansion compensation element 20a when viewed vertically on a main extension plane of the insulation unit 12a, is arranged completely and continuously within a surface extension of the insulation unit 12a in the main extension plane.
- the expansion compensation element 20a is in a dismantled state when viewed vertically on a main extension plane of the insulation unit 12a at a distance from the lateral edges 30a of the insulation unit 12a.
- the household appliance device 10a has a further insulation unit 32a (cf. FIGS. 4 to 6).
- the further insulation unit 32a differs from the insulation unit 12a in at least one feature.
- the further insulation unit 32a differs from the insulation unit 12a in an arrangement of auxiliary installation elements 18a, 34a relative to a lateral border 30a, 72a.
- the further insulation unit 32a differs from the insulation unit 12a in a number of expansion compensation elements 20a, 36a and / or in an arrangement of expansion compensation elements 20a, 36a relative to a lateral border 30a, 72a.
- the further insulation unit 32a has four further installation auxiliary elements 34a. In the following, only one of the further laying auxiliary elements 34a is described.
- the further auxiliary installation element 34a is provided for adapting an outer shape of the further insulation unit 32a to the first structural unit 14a for the purpose of laying the further insulation unit 32a.
- the additional laying auxiliary element 34a is provided for laying the further insulation unit 32a in a region of at least one edge and / or unevenness of the first structural unit 14a.
- the additional installation auxiliary element 34a has a cut in the further insulation unit 32a.
- the further laying auxiliary element 34a is formed in a disassembled state by an incision in the further insulation unit 32a.
- the further laying aid element 34a is designed in a straight line.
- the additional installation aid element 34a has exactly one section 76a.
- the additional installation aid element 34a borders on a lateral edge 72a of the further insulation unit 32a.
- the additional installation auxiliary element 34a extends from the lateral border 72a of the further insulation unit 32a in the direction of a center and / or center of gravity of the further insulation unit 32a.
- the additional installation auxiliary element 34a in a disassembled state with the lateral border 72a of the further insulation unit 32a includes a minimum angle 82a of essentially 45 °.
- the further insulation unit 32a has eight further expansion compensation elements 36a.
- the further expansion compensation elements 36a are grouped into four groups. Each group of further expansion compensation elements 36a is defined by two further expansion compensation elements 36a.
- the further expansion compensation elements 36a of each group differ in terms of a longitudinal extent of the respective further expansion compensation elements 36a.
- a further expansion compensation element 36a1 closest to a lateral edge 72a of the further insulation unit 32a has a greater longitudinal extent than a further expansion compensation element 36a2 closest to a center point and / or center of gravity of the further insulation unit 32a.
- the further expansion compensation elements 36a from a respective group are arranged in a group with decreasing longitudinal extension.
- the further expansion compensation elements 36a of each group are aligned essentially parallel to one another. Only one of the further expansion compensation elements 36a is described below.
- the further expansion compensation element 36a is provided to essentially compensate for a thermal expansion of at least a partial area of the further insulation unit 32a. In an operating state, the further expansion compensation element 36a enables the subarea of the further insulation unit 32a to be thermally expanded. The further expansion compensation element 36a operating state, a thermal expansion of at least a partial area of the further insulation unit 32a essentially.
- the further expansion compensation element 36a is formed in a straight line in the present exemplary embodiment.
- the further expansion compensation element 36a has exactly one single section 80a. In a disassembled state, the further expansion compensation element 36a is aligned essentially parallel to a lateral edge 72a of the further insulation unit 32a.
- a longitudinal extension direction 74a of the section 76a of the further laying aid element 34a in a disassembled state is oriented at an angle to a longitudinal extension direction 78a of the section 80a of the further expansion compensation element 36a.
- a longitudinal extension direction 74a of the section 76a of the further installation aid element 34a and a longitudinal extension direction 78a of the section 80a of the further expansion compensation element 36a in a disassembled state include a minimum angle 84a of essentially 45 °.
- the further expansion compensation element 36a has at least one material weakening of the further insulation unit 32a.
- the further expansion compensation element 36a in a disassembled state could have a smaller thickness of the further insulation unit 32a and / or a recess of the further insulation unit 32a.
- the further expansion compensation element 36 has an incision in the further insulation unit 32a in a disassembled state.
- the further expansion compensation element 36a In a disassembled state, the further expansion compensation element 36a, when viewed vertically on a main extension plane of the further insulation unit 32a, is arranged completely within a surface extension of the further insulation unit 32a in the main extension plane.
- the further expansion compensation element 36a is arranged in a disassembled state when viewed vertically on a main extension plane of the further insulation unit 32a at a distance from lateral edges 72a of the further insulation unit 32a.
- the insulation unit 12a and the further insulation unit 32a essentially and advantageously completely have the same area (cf. FIGS. 3 to 6). In a disassembled state, the insulation unit 12a and the further insulation unit 32a essentially and advantageously completely has the same outer shape.
- the auxiliary installation element 18a and the additional auxiliary installation element 34a are arranged without overlap in a disassembled state.
- there are lateral borders 30a of the isolation unit 12a in particular all the lateral borders 30a of the isolation unit 12a, and lateral borders 72a of the further isolation unit 32a, and in particular all lateral borders 72a of the further insulation unit 32a.
- expansion compensation element 20a and the further expansion compensation element 36a are arranged without overlap in a disassembled state.
- expansion compensation elements 20a and further expansion compensation elements 36a are alternately arranged in a disassembled state.
- a further expansion compensation element 36a is arranged in a disassembled state and with an overlapping arrangement of the insulation unit 12a and the further insulation unit 32a.
- an expansion compensation element 20a is arranged in a disassembled state and with an overlapping arrangement of the insulation unit 12a and the further insulation unit 32a.
- the installation aid element 18a and the further installation aid element 34a define a substantially right-angled triangle.
- each expansion compensation element 20a and each further expansion compensation element 36a are arranged between the installation aid element 18a and the further installation aid element 34a.
- the insulation unit 12a is formed in one piece.
- the insulation unit 12a is formed from a single piece.
- the insulation unit 12a consists largely of mica, in particular of artificial mica.
- FIGS. 7 to 15 show two further exemplary embodiments of the invention.
- the following descriptions are essentially limited to the differences between the exemplary embodiments, reference being made to the description of the exemplary embodiment in FIGS. 1 to 6 with regard to the same components, features and functions.
- the letter a in the reference numerals of the exemplary embodiment in FIGS. 1 to 6 is replaced by the letters b and c in the reference numerals of the exemplary embodiment in FIGS. 7 to 15.
- FIG. 7 shows an insulation unit 12b and a further insulation unit 32b, which are arranged in an overlapping arrangement, and a heating unit 62b of an alternative household appliance device 10b in a disassembled state.
- the further isolation unit 32b differs from the isolation unit 12b in at least one feature.
- the further insulation unit 32b differs in an arrangement of laying auxiliary elements 18b, 34b relative to a lateral border 30b, 72b from the insulation unit 12b.
- the further insulation unit 32b differs from the insulation unit 12b in a number of expansion compensation elements 20b, 36b and / or in an arrangement of expansion compensation elements 20b, 36b relative to a lateral border 30b, 72b.
- the insulation unit 12b has four laying auxiliary elements 18b (cf. FIGS. 7 and 8). Only one of the laying auxiliary elements 18b is described below.
- the installation aid element 18b is formed in a straight line.
- the installation aid element 18b has exactly one single section 24b.
- the auxiliary installation element 18b adjoins a lateral edge 30b of the insulation unit 12b.
- the auxiliary installation element 18b closes with the side in a disassembled state Boundary 30b of the insulation unit 12b a minimum angle 68b of substantially 90 °.
- the insulation unit 12b has eight expansion compensation elements 20b.
- the expansion compensation elements 20b are grouped into four groups. Each group of expansion compensation elements 20b is defined by two expansion compensation elements 20b.
- the expansion compensation elements 20b of each group differ in terms of a longitudinal extent of the respective expansion compensation elements 20b.
- An expansion compensation element 20b1 closest to a lateral edge 30b of the insulation unit 12b has a greater longitudinal extent than an expansion compensation element 20b2 closest to a center and / or center of gravity of the insulation unit 12b.
- the expansion compensation elements 20b of each group are aligned essentially parallel to one another. Only one of the expansion compensation elements 20b is described below.
- the expansion compensation element 20b has two sections 28b, 98b.
- a first section 28b of the sections 28b, 98b of the expansion compensation element 20b has a longitudinal extension direction 26b which is aligned perpendicular to a longitudinal extension direction 100b of a second section 98b of the sections 28b, 98b of the expansion compensation element 20b.
- the expansion compensation element 20b has a transition section 86b, which connects the sections 28b, 98b of the expansion compensation element 20b to one another.
- the transition section is in the form of an arc of a circle, in particular in the shape of a quarter of an arc. Only one of the sections 28b, 98b of the expansion compensation element 20b is described below.
- the section 28b of the expansion compensation element 20a is aligned essentially parallel to a lateral border 30b of the insulation unit 12b.
- the section 28b of the expansion compensation element 20b is formed in a straight line.
- a longitudinal extension direction 26b of the section 28b of the expansion compensation element 20b is at an angle to a longitudinal extension in a disassembled state.
- the direction of jerk 22b of the section 24b of the auxiliary installation element 18b is aligned.
- a longitudinal extension direction 26b of the section 28b of the expansion compensation element 20b, in particular each of the sections 28b of the expansion compensation element 20b, and a longitudinal extension direction 22b of the section 24b of the auxiliary installation element 18b in a disassembled state include a minimum angle 70b of substantially 90 °.
- the further insulation unit 32b has four further installation auxiliary elements 34b. In the present exemplary embodiment, the further insulation unit 32b has four further expansion compensation elements 36b. In the following, only one of the additional laying support elements 34b and only one of the further expansion compensation elements 36b will be described.
- the additional installation auxiliary element 34b adjoins a lateral edge 72b of the further insulation unit 32b.
- the further installation aid element 24b in a disassembled state includes a minimal angle 82b of essentially 90 ° with the lateral edge 72b of the further insulation unit 34b.
- the additional installation aid element 34b essentially has the same shape and / or orientation and / or shape as the installation aid element 18b, which is why reference is made in particular to the description given for the installation aid element 18b.
- the further expansion compensation element 36b has two sections 80b, 94b in the present exemplary embodiment.
- a first section 80b of the sections 80b, 94b of the further expansion compensation element 36b has a longitudinal extension direction 78b which is oriented perpendicular to a longitudinal extension direction 96b of a second section 94b of the sections 80b, 94b of the further expansion compensation element 36b.
- the further expansion compensation element 36b has a further transition section 88b, which connects the sections 80b, 94b of the further expansion compensation element 36b to one another.
- the further transition section 88b is in the form of a circular arc, in particular in the form of a quarter circle. Only one of the sections 80b, 94b of the further expansion compensation element 36b is described below.
- the further expansion compensation element 36b In a disassembled state, the further expansion compensation element 36b has essentially the same shape and / or orientation and / or shape as the expansion compensation element 20b, which is why reference is made in particular to the description given for the expansion compensation element 20b.
- the further expansion compensation element 36b is arranged in a disassembled state and with an overlapping arrangement of the insulation unit 12b and the further insulation unit 32b between two expansion compensation elements 20b.
- the auxiliary installation element 18b and the additional auxiliary installation element 34b are aligned essentially parallel to one another in a disassembled state.
- FIG. 11 shows an insulation unit 12c and a further insulation unit 32c, which are arranged in an overlapping arrangement, of an alternative household appliance device 10c in a disassembled state.
- the insulation unit 12c and the further insulation unit 32c are designed with respect to an arrangement of auxiliary installation elements 18c, 34c and expansion compensation elements 20c, 36c relative to one another analogously to the insulation unit 12a and the further insulation unit 32a from the exemplary embodiment in FIGS. 1 to 6, which is why at this point the description of the exemplary embodiment in FIGS. 1 to 6 is referred to.
- the insulation unit 12c is formed in several parts.
- the insulation unit 12c has a first partial insulation element 38c and a second partial insulation element 40c (cf. FIGS. 11 to 13).
- the first partial insulation element 38c and the second partial insulation element 40c are provided for modular assembly.
- the first partial insulation element 38c and the second partial insulation element 40c differ from one another in at least one feature.
- the first insulating sub-element 38c and the second insulating sub-element 40c differ in size from one another.
- the further insulation unit 32c is formed in several parts.
- the further insulation unit 32c has a further first insulation part element 90c and a further second insulation part element 92c (cf. FIGS. 11, 14 and 15).
- the further first partial insulation element 90c and further second partial insulation element 92c are provided for modular assembly.
- the further first partial insulation element 90c and the further second partial insulation element 92c differ from one another in at least one feature.
- the further first partial insulation element 90c and the further second partial insulation element 92c differ in size and / or in a number of auxiliary laying elements 18c, 34c.
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- Engineering & Computer Science (AREA)
- Chemical & Material Sciences (AREA)
- Combustion & Propulsion (AREA)
- Mechanical Engineering (AREA)
- General Engineering & Computer Science (AREA)
- Physics & Mathematics (AREA)
- Electromagnetism (AREA)
- Cookers (AREA)
- Electric Stoves And Ranges (AREA)
- Thermal Insulation (AREA)
Abstract
Description
Claims
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| ES201830619A ES2736047A1 (es) | 2018-06-21 | 2018-06-21 | Dispositivo de aparato doméstico |
| PCT/IB2019/054316 WO2019243920A1 (de) | 2018-06-21 | 2019-05-24 | Haushaltsgerätevorrichtung |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| EP3810995A1 true EP3810995A1 (de) | 2021-04-28 |
| EP3810995B1 EP3810995B1 (de) | 2024-07-31 |
Family
ID=66867600
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP19730965.1A Active EP3810995B1 (de) | 2018-06-21 | 2019-05-24 | Haushaltsgerätevorrichtung |
Country Status (7)
| Country | Link |
|---|---|
| US (1) | US11852352B2 (de) |
| EP (1) | EP3810995B1 (de) |
| CN (1) | CN112292569B (de) |
| AU (1) | AU2019291360B2 (de) |
| ES (1) | ES2736047A1 (de) |
| PL (1) | PL3810995T3 (de) |
| WO (1) | WO2019243920A1 (de) |
Family Cites Families (8)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| DE2102015A1 (de) * | 1971-01-16 | 1972-07-27 | Burger Eisenwerke Ag | Bratraumtüre für Herde, insbesondere für Herde mit Selbstreinigung |
| DE8513460U1 (de) * | 1985-05-07 | 1985-06-20 | Bosch-Siemens Hausgeräte GmbH, 7000 Stuttgart | Dichtung für ein, eine Tür aufweisendes Hausgerät |
| DE19822034A1 (de) * | 1998-05-15 | 1999-11-18 | Bsh Bosch Siemens Hausgeraete | Thermisch isolierte Backofenmuffel |
| US20110132900A1 (en) * | 2008-08-08 | 2011-06-09 | Mitsubishi Electric Corporation | Heat cooking device |
| DE102009027695A1 (de) * | 2009-07-14 | 2011-01-20 | BSH Bosch und Siemens Hausgeräte GmbH | Wärmeisolierungskörper, Satz aus mehreren Wärmeisolierungskörpern, Haushaltsofen mit einer Wärmeisolierung und Verfahren zum Anbringen einer Wärmeisolierung |
| CN103549231A (zh) * | 2013-10-30 | 2014-02-05 | 李理 | 一种蒸煮机的保温垫 |
| WO2017119910A1 (en) * | 2016-01-08 | 2017-07-13 | Whirlpool Corporation | Multiple cavity microwave oven insulated divider |
| WO2018116065A1 (de) * | 2016-12-23 | 2018-06-28 | BSH Hausgeräte GmbH | Gargerätevorrichtung |
-
2018
- 2018-06-21 ES ES201830619A patent/ES2736047A1/es not_active Withdrawn
-
2019
- 2019-05-24 WO PCT/IB2019/054316 patent/WO2019243920A1/de not_active Ceased
- 2019-05-24 CN CN201980041093.3A patent/CN112292569B/zh active Active
- 2019-05-24 PL PL19730965.1T patent/PL3810995T3/pl unknown
- 2019-05-24 EP EP19730965.1A patent/EP3810995B1/de active Active
- 2019-05-24 US US17/053,372 patent/US11852352B2/en active Active
- 2019-05-24 AU AU2019291360A patent/AU2019291360B2/en active Active
Also Published As
| Publication number | Publication date |
|---|---|
| AU2019291360A1 (en) | 2021-01-21 |
| CN112292569B (zh) | 2023-06-09 |
| PL3810995T3 (pl) | 2024-11-18 |
| ES2736047A1 (es) | 2019-12-23 |
| WO2019243920A1 (de) | 2019-12-26 |
| AU2019291360B2 (en) | 2022-03-24 |
| CN112292569A (zh) | 2021-01-29 |
| US20210190327A1 (en) | 2021-06-24 |
| US11852352B2 (en) | 2023-12-26 |
| EP3810995B1 (de) | 2024-07-31 |
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