EP3023701B1 - Plaque de cuisson - Google Patents

Plaque de cuisson Download PDF

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Publication number
EP3023701B1
EP3023701B1 EP15382374.5A EP15382374A EP3023701B1 EP 3023701 B1 EP3023701 B1 EP 3023701B1 EP 15382374 A EP15382374 A EP 15382374A EP 3023701 B1 EP3023701 B1 EP 3023701B1
Authority
EP
European Patent Office
Prior art keywords
unit
hob
reinforcement
reinforcing
spring
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.)
Active
Application number
EP15382374.5A
Other languages
German (de)
English (en)
Other versions
EP3023701A2 (fr
EP3023701A3 (fr
Inventor
Jose Eduardo Galve Villa
David Ortiz Sainz
Carmelo Pina Gadea
María Valencia Betrán
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
BSH Electrodomesticos Espana SA
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, BSH Electrodomesticos Espana SA filed Critical BSH Hausgeraete GmbH
Publication of EP3023701A2 publication Critical patent/EP3023701A2/fr
Publication of EP3023701A3 publication Critical patent/EP3023701A3/fr
Application granted granted Critical
Publication of EP3023701B1 publication Critical patent/EP3023701B1/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24CDOMESTIC STOVES OR RANGES ; DETAILS OF DOMESTIC STOVES OR RANGES, OF GENERAL APPLICATION
    • F24C7/00Stoves or ranges heated by electric energy
    • F24C7/08Arrangement or mounting of control or safety devices
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24CDOMESTIC STOVES OR RANGES ; DETAILS OF DOMESTIC STOVES OR RANGES, OF GENERAL APPLICATION
    • F24C15/00Details
    • F24C15/10Tops, e.g. hot plates; Rings
    • F24C15/102Tops, e.g. hot plates; Rings electrically heated
    • F24C15/104Arrangements of connectors, grounding, supply wires

Definitions

  • the invention relates to a hob according to claim 1.
  • a hob device with an outer housing unit is already known from the prior art, which has a base surface element.
  • a spring element is arranged in a receiving space between the outer housing unit and a hob plate, which spring element presses a heating element against the hob plate.
  • the spring element causes a deformation of the floor surface element of at least 3.5 mm.
  • a supporting part for a cooking surface is known, with a supporting part on which the cooking surface is held, with heating elements being fastened under the cooking surface by means of brackets, and with a base part being connected to the supporting part at a distance from the underside of the cooking surface, which is made of a plastic or a Plastic composite material is formed that on the bottom part integrally formed brackets, and that the brackets are connected to fasteners that press the respective heating element biased by a spring element to the underside of the cooking surface.
  • a hob with a hob device with an outer housing unit is proposed, which has at least one base surface element and a reinforcement unit that is provided to reinforce the base surface element.
  • a “cooktop device” is to be understood in particular as meaning at least a part, in particular a subassembly, of a cooktop, in particular an induction cooktop.
  • the hob device can also include the entire hob, in particular the entire induction hob.
  • an “outer housing unit” is to be understood as meaning a unit which is intended to form at least part of an outer hob housing in at least one assembled state.
  • the outer housing unit and a hob plate, which is part of Hob device is at least one receiving space designed as a cavity a receptacle for components, for example at least one heating element and/or at least one control unit and/or at least one hob electronics.
  • the outer housing unit is at least partially provided for storing components in at least one assembled state. In at least one assembled state, the outer housing unit absorbs in particular a weight of components at least to a large extent and/or transmits the weight to at least one further unit, such as the hob plate.
  • the hob device comprises in particular the hob plate.
  • the hob plate is provided in particular at least for setting up cookware.
  • the hob plate consists in particular at least to a large extent of glass and/or glass ceramic. “At least for the most part” should be understood to mean in particular a proportion of at least 70%, in particular at least 80%, advantageously at least 90% and preferably at least 95%.
  • a "bottom surface element" of the outer housing unit is to be understood in particular as an element which in particular has an at least essentially flat shape and which forms a bottom of the outer housing unit in particular in an installed position.
  • the base surface element is arranged in an installed position in an area of the outer housing unit facing away from the hob plate and/or forms this area at least to a large extent.
  • the floor surface element has in particular a main plane of extent which, in at least one assembled state, is aligned at least essentially parallel to a main plane of extent of the hob plate.
  • the floor area element has a longitudinal extension and a transverse extension, which in particular jointly span a plane aligned parallel to the main extension plane of the floor area element.
  • the floor area element has in particular a thickness which is at most 20%, in particular at most 10%, advantageously at most 5%, particularly advantageously at most 3% and preferably at most 1% of a value of the longitudinal extent of the floor area element.
  • a “main extension plane” of an object is to be understood in particular as a plane which is parallel to a largest side face of the smallest imaginary geometric cuboid which just completely encloses the object and in particular runs through the center point of the cuboid.
  • a “longitudinal extent” of an object is to be understood in particular as an extent of a longest side of the smallest imaginary geometric cuboid which just about completely encloses the object.
  • a “thickness” of an object is to be understood in particular as an extension of a shortest side of the smallest imaginary geometric cuboid which just about completely encloses the object.
  • transverse extension of a Object is to be understood in particular as an extension which is oriented perpendicularly to a longitudinal extension of the object and to a thickness of the object.
  • longitudinal direction of an object is to be understood in particular as a direction which is at least essentially parallel to a longest side of the smallest imaginary geometric cuboid which just about completely encloses the object.
  • a straight line and/or plane is "at least essentially parallel" to another straight line and/or plane that is separate from the one straight line and/or plane in a projection onto at least one projection plane that is perpendicular to at least one of the planes or which, in particular in the case of two straight lines, includes both straight lines in which at least one of the straight lines and/or one of the planes is arranged is aligned
  • the straight line and/or plane with the other straight line and/or or plane includes an angle which deviates from an angle of 0° by a maximum of 15°, in particular by a maximum of 10°, advantageously by a maximum of 5° and preferably by a maximum of 3°.
  • the reinforcement unit is preferably provided to at least essentially prevent a deformation of the floor surface element when an external force acts on the floor surface element.
  • the external force has in particular a value of at least 40 N, in particular at least 60 N, advantageously at least 75 N, particularly advantageously at least 100 N and preferably at least 120 N.
  • the reinforcement unit is intended to prevent deformation of the floor surface element by a maximum value of 3 mm, in particular of a maximum of 2.5 mm, advantageously of a maximum of 2 mm, particularly advantageously of a maximum of 1.7 mm and preferably allow a maximum of 1.5 mm.
  • “Provided” should be understood to mean, in particular, specially programmed, designed and/or equipped. The fact that an object is provided for a specific function is to be understood in particular to mean that the object fulfills and/or executes this specific function in at least one application and/or operating state.
  • the configuration according to the invention makes it possible in particular to achieve a long-lasting configuration.
  • a high level of rigidity in particular in relation to forces that occur during transport and cause an external force, can be made possible while at the same time having a high degree of flexibility, in particular in order to return to an initial position in the event of deformation.
  • Objects such as at least one heating element and/or a control unit and/or a blower unit can advantageously take up their predetermined place, as a result of which a high level of functionality and/or a high level of comfort for an operator are achieved in particular can.
  • Costs that occur during production of the outer housing unit and/or the hob unit can advantageously be kept at least essentially constant. In particular, additional production costs, for example due to higher material consumption and/or a longer production time, can be avoided.
  • the reinforcement unit and the floor area element could in particular be formed separately from one another.
  • the reinforcement unit and the base surface element could be components of the outer housing unit that are constructed and/or arranged separately from one another.
  • the reinforcement unit and the floor panel are preferably formed at least partially in one piece.
  • the reinforcement unit is formed in one piece with a partial area of the floor surface element.
  • the reinforcement unit is preferably designed as a formation of the floor surface element.
  • a “shaping” of an object is to be understood as meaning a punching and/or embossing and/or notching and/or cambering of the object.
  • the reinforcement unit is designed as a crowning of the floor area element. In this way, in particular, an inexpensive production of the reinforcement unit and/or a space-saving design can be achieved.
  • the hob device comprises at least one spring element, which is intended to press at least one heating element at least partially against a hob plate, with the reinforcement unit being intended to at least significantly reduce a deformation of at least one partial region of the base surface element caused by a spring force of the spring element.
  • the spring element is provided in particular for at least the heating element and advantageously at least one further object, in particular at least one space-dividing element and/or at least one shielding element, starting from the partial area of the base surface element in a direction away from the base surface element, which is aligned in particular towards the hob plate, to press.
  • the spring element is intended in particular to generate a spring force of at least 40 N, in particular at least 60 N, advantageously at least 75 N, particularly advantageously at least 100 N and preferably at least 120 N.
  • the spring force is designed as an external force which acts on the floor surface element in at least one assembled state.
  • the spring element In at least one assembled state, the spring element is arranged, in particular at least to a large extent, between the floor surface element and the heating element.
  • the spring element is in in at least one mounted state, in particular at least substantially perpendicular to the main plane of extension of the floor area element and/or to a main plane of extension of the heating element.
  • the spring force generated by the spring element acts on the floor surface element, in particular at least essentially perpendicularly to the main extension plane of the floor surface element.
  • a straight line and/or plane is aligned “at least essentially perpendicularly” to another straight line and/or plane that is separate from the one straight line and/or plane is to be understood in particular as meaning that the straight line and/or plane with the additional straight line and/or plane in a projection onto at least one projection plane in which at least one of the straight lines and/or one of the planes is arranged, encloses an angle of at most 15°, in particular at most 10°, advantageously around deviates from an angle of 90° by a maximum of 7°, particularly advantageously by a maximum of 5° and preferably by a maximum of 3°.
  • the phrase that the spring element is intended to press at least one heating element "at least partially" against a hob plate should be understood in particular to mean that the spring element is intended to press the heating element alone and/or together with at least one other spring element against the to press the hob plate.
  • a "deformation" of a partial area of the floor surface element is to be understood in particular as a deflection of the partial area, which results in particular at least from the spring force of the spring element acting on the partial area, from a state which the partial area assumes in particular in at least one powerless state.
  • the reinforcement unit is intended to "at least significantly reduce” a deformation caused by a spring force of the spring element in at least one partial area of the floor surface element is to be understood in particular as meaning that the reinforcement unit is intended to reduce a maximum deflection caused by the spring element of the partial area, which assumes a value of a maximum of 95%, in particular a maximum of 90%, advantageously a maximum of 85%, particularly advantageously a maximum of 80% and preferably a maximum of 75% of a value of a maximum deflection of a partial area of a base surface element of an outer housing unit without reinforcement units.
  • objects of the hob device can be located in their intended positions in an installed position with an operator, particularly independently of external forces that cause external forces during transport, as a result of which a high level of performance of the objects can be guaranteed in particular.
  • a heating element for heating a placed Energy supplied to cookware can be calculated based on a position of the heating element in which the heating element should be located.
  • the reinforcement unit has at least one reinforcement element which has an at least essentially rod-like shape.
  • An "at least essentially rod-shaped shape" of an object is to be understood in particular as meaning that the object has a longitudinal extent that is significantly greater than a further greatest extent of the object, such as a thickness and/or a transverse extent and/or a diameter, and/or which assumes a value of at least 5 times, in particular at least 10 times, advantageously at least 15 times, particularly advantageously at least 20 times and preferably at least 25 times a value of the greatest further extension of the object.
  • an inexpensive and/or simple production of the reinforcement element can be achieved.
  • the reinforcement element could be arranged in particular directly below the spring element.
  • the reinforcement element is preferably arranged in a region close to the spring element.
  • the reinforcement element and the spring element are arranged in particular at least essentially overlapping.
  • an edge area of the reinforcement element is arranged overlapping with an edge area of the spring element in at least one assembled state.
  • a "near area" of an object, in particular of the spring element is to be understood in particular as an area which, when viewing a projection of the object onto a plane from the object, in particular from a center point and/or center of gravity of the object, has a minimum distance of maximum 10 cm, in particular a maximum of 5 cm, advantageously a maximum of 3 cm, particularly advantageously a maximum of 1 cm and preferably a maximum of 0.5 cm.
  • reinforcement can be provided in an area from which a cause of the deformation originates.
  • the reinforcing element has a longitudinal extent which is aligned at least essentially parallel to a side edge of the floor surface element.
  • the side edge could in particular be a lateral boundary edge of the floor area element, which could at least essentially connect a front edge and a rear edge of the floor area element to one another in the installed position.
  • the side edge in the installation position is advantageous as a front edge of the Floor surface element formed.
  • the front edge forms in particular an edge of the floor surface element that is closest to an operator. In this way, in particular, simple and/or automated production of the reinforcement element can be achieved.
  • the reinforcement unit has at least one second reinforcement element, which has an at least essentially rod-like shape, as a result of which a high degree of stability can be made possible in particular.
  • the reinforcement element and the second reinforcement element could, for example, be aligned obliquely relative to one another and in particular have at least one point in common.
  • the reinforcement element and the second reinforcement element could be arranged, for example, in the shape of a V and/or in the shape of an X.
  • the reinforcement element and the second reinforcement element are aligned at least substantially parallel to one another.
  • the second reinforcement element is preferably arranged at a distance from the first reinforcement element.
  • the reinforcing element and the second reinforcing element are at a distance of at least 10 cm, in particular at least 15 cm, advantageously at least 20 cm, particularly advantageously at least 25 cm, preferably at least 30 cm and particularly preferably at least 35 cm.
  • the distance between the reinforcement element and the second reinforcement element is in particular aligned perpendicular to the longitudinal extent of the reinforcement element and/or to the longitudinal extent of the second reinforcement element.
  • the second reinforcement element is preferably arranged in the vicinity of at least one further spring element. In this way, in particular, a large part of the outer housing unit can be stabilized by the reinforcement unit.
  • both the spring element and the further spring element can be stabilized in a targeted manner, as a result of which a high level of stability can be achieved in essential areas of the outer housing unit, which in particular are exposed to increased forces.
  • the reinforcement unit could have at least two further reinforcement elements, which in particular could be arranged at least essentially concentrically and in particular at least essentially between the reinforcement element and the second reinforcement element.
  • the reinforcement unit preferably has at least one third reinforcement element, which is provided for connecting the reinforcement element and the second reinforcement element to one another.
  • the third reinforcement element could have a longitudinal extension which is at least essentially perpendicular to the longitudinal extent of the reinforcement element and/or to the longitudinal extent of the second reinforcement element.
  • the third reinforcement element has a longitudinal extent which is aligned obliquely relative to the longitudinal extent of the reinforcement element and/or to the longitudinal extent of the second reinforcement element.
  • the reinforcement unit has in particular at least one fourth reinforcement element, which is provided in particular to connect the reinforcement element and the second reinforcement element to one another.
  • the fourth reinforcement element has in particular a longitudinal extent which is aligned in particular obliquely relative to the longitudinal extent of the reinforcement element and/or to the longitudinal extent of the second reinforcement element and/or to the longitudinal extent of the third reinforcement element.
  • the second reinforcement element and the third reinforcement element and the fourth reinforcement element have in particular at least one common point.
  • the common point is arranged in particular in an end area of the third reinforcement element and in particular in an end area of the fourth reinforcement element and in particular at least essentially in the middle with respect to the longitudinal extension of the second reinforcement element.
  • the reinforcement unit when viewed in a plan view, has a shape which corresponds at least substantially to a triangle. In this way, in particular, optimal stability of the outer housing unit can be achieved.
  • the second reinforcement element has a longitudinal extent which is aligned at least essentially parallel to a side edge of the floor surface element.
  • the longitudinal extent of the second reinforcement element is aligned at least essentially parallel to the longitudinal extent of the reinforcement element. In this way, in particular, simple manufacture of the reinforcement unit can be achieved.
  • the outer housing unit has at least one relaxation unit, which is intended to reduce mechanical stresses in the base surface element.
  • the relaxation unit is provided in particular to at least essentially neutralize mechanical stresses in the outer housing unit caused by the reinforcement unit. In this way, in particular, a durable design can be provided.
  • the relaxation unit is advantageously formed at least partially in one piece with the floor surface element.
  • the relaxation unit is in particular designed in one piece with a partial area of the floor surface element.
  • the Relaxation unit designed as a formation of the floor surface element.
  • the relaxation unit embodied as a molding is advantageously introduced into the floor surface element in opposition to the reinforcement unit embodied as a molding.
  • the relaxation unit is advantageously designed as an embossing of the floor surface element.
  • the outer housing unit is preferably designed in one piece.
  • the outer housing unit is designed in particular as a stamped part. In this way, in particular, a high level of efficiency and/or a great effect can be achieved in a simple manner.
  • the relaxation unit is arranged in the vicinity of the amplification unit.
  • the relaxation unit has in particular at least two relaxation elements which are arranged in particular on both sides of at least one of the reinforcement elements of the reinforcement unit.
  • an outer part of the relaxation unit at least substantially surrounds the amplification unit.
  • the outer part of the relaxation unit surrounds the reinforcement unit, starting from a center point and/or center of gravity of the reinforcement unit, over an angular range of at least 180°, in particular of at least 270°, advantageously of at least 300°, particularly advantageously of at least 330° and preferably of at least 350°.
  • the reinforcement unit at least substantially surrounds an inner part of the relaxation unit.
  • the reinforcement unit surrounds the inner part of the relaxation unit, starting from a center point and/or center of gravity of the further part, over an angular range of at least 180°, in particular of at least 270°, advantageously of at least 300°, particularly advantageously of at least 330° and preferably of at least 350°.
  • an additional production step for producing the relaxation unit can be dispensed with.
  • the hob device should not be limited to the application and embodiment described above.
  • the hob device can have a number of individual elements, components and units that differs from the number specified here in order to fulfill a function described herein.
  • the hob device 10 comprises a hob plate 22.
  • the hob plate 22 forms part of an outer hob housing, in particular an outer hob housing of the hob 44.
  • the hob plate 22 is provided for positioning cookware (not shown).
  • the hob device 10 comprises a plurality of heating elements 20 (cf. 6 and 7 ). Of the objects that are present several times, only one is provided with a reference number in each of the figures. Only one of the heating elements 20 is described below.
  • the heating element 20 is intended to heat cookware placed on the hob plate 22 above the heating element 20 .
  • the heating element 20 is designed as an induction heating element.
  • the hob device 10 includes an operating unit 46.
  • the operating unit 46 is provided for inputting and/or selecting operating parameters, for example a heating output and/or a heating output density and/or a heating zone.
  • the operating unit 46 is provided for outputting a value of an operating parameter to an operator.
  • the hob device 10 includes a control unit 48.
  • the control unit 48 is provided for carrying out actions and/or changing settings as a function of operating parameters entered by means of the operating unit 46.
  • the In one operating state, control unit 48 regulates the supply of energy to heating element 20.
  • the hob device 10 comprises an outer housing unit 12 (cf. Figures 2 to 7 ). In the assembled state, the outer housing unit 12 is attached to the hob plate 22 .
  • the outer housing unit 12 and the cooktop panel 22 define an accommodation space.
  • the outer housing unit 16 has a base surface element 14 which, in an installed position, forms a base of the receiving space.
  • the hob device 10 comprises an inner housing unit 50 (cf. 2 , 6 and 7 ).
  • the inner housing unit 50 In the assembled state, the inner housing unit 50 is arranged to a large extent within the accommodation space. In the installed position, the inner housing unit 50 is arranged above the floor surface element 14 .
  • the inner housing unit 50 has at least one spring mount 52 . In the present exemplary embodiment, the inner housing unit 50 has two spring receptacles 52 . The inner housing unit 50 has at least one additional spring mount 64 . In the present exemplary embodiment, the inner housing unit 50 has two further spring mounts 64 .
  • the hob device 10 comprises a plurality of spring elements 18 (cf. 6 and 7 ).
  • the hob device 10 includes two spring elements 18 .
  • the hob device 10 comprises at least one additional spring element (cf. 6 and 7 ).
  • the hob device 10 includes two further spring elements (not shown).
  • the spring elements 18 are assigned to the spring mounts 52 .
  • the other spring elements are assigned to the other spring receptacles 64 .
  • one of the spring receptacles 52, 64 is described as representative of the spring receptacles 52 and the other spring receptacles 64.
  • one of the spring elements 18 is described below as representative of the spring elements 18 and the further spring elements. In the installed state, the spring element 18 is arranged to a large extent within the spring receptacle 52, 64.
  • the inner housing unit 50 has a bottom element 54 .
  • the spring seat 52, 64 is attached to the base element 54 in the assembled state.
  • the spring receptacle 52, 64 is provided to receive the spring element 18 (cf. 6 and 7 ).
  • the spring seat 52, 64 has an essentially hollow-cylindrical shape.
  • the inner housing unit 50 has a plurality of force transmission elements 58 (cf. 6 and 7 ). In the present embodiment, the inner housing unit 50 has four Power transmission elements 58 on. Only one of the force transmission elements 58 is described below.
  • the force transmission element 58 is arranged to a large extent within the spring receptacle 52, 64 in the assembled state. In the assembled state, the spring element 18 is arranged between the floor element 54 and the force transmission element 58 . In the assembled state, the spring element 18 is arranged in a region of the spring receptacle 52 , 64 which faces the floor surface element 14 .
  • the hob device 10 includes a space-dividing element 56.
  • the space-dividing element 56 is designed as a shielding element. In the mounted state, the space dividing element 56 divides the receiving space. In the installed state, the heating element 20 is arranged between the hob plate 22 and the space-dividing element 56 .
  • the spring element 18 In the assembled state, the spring element 18 partially presses the heating element 20 against the hob plate 22. In the assembled state, the spring element 18 partially presses the heating element 20 against the hob plate 22 via the force transmission element 58 and the space dividing element 56. In the assembled state, the The spring force generated by the spring element 18 acts on the floor surface element 14. The spring force generated by the spring element 18 causes a deformation of the floor surface element 14 in the assembled state.
  • the outer housing unit 12 has a reinforcement unit 16 (cf. Figures 2 to 7 ).
  • the reinforcement unit 16 reinforces the floor surface element 14 .
  • the reinforcement unit 16 is designed as a formation of the floor surface element 14 . In the assembled state, the reinforcement unit 16 is formed out of the base surface element 14 in a direction facing away from the hob plate 22 (cf. 6 and 7 ).
  • the reinforcement unit 16 is formed in one piece with a partial area of the floor surface element 14 . In the assembled state, the reinforcement unit 16 significantly reduces the deformation of the partial area of the floor surface element 14 caused by the spring force of the spring element 18 .
  • the partial area of the floor surface element 14 which is formed in one piece with the reinforcement unit 16 is arranged essentially centrally in the floor surface element 14 .
  • the reinforcement unit 16 has a reinforcement element 24 which has a substantially rod-like shape.
  • the reinforcement element 24 has a longitudinal extent 34 which is aligned essentially parallel to a side edge 32 of the base surface element 14 (cf. 2 and 3 ). In the installed position, the side edge 32 of the floor surface element 14 is essentially parallel to a front edge aligned with the hob plate. In the assembled state, the reinforcement element 24 is arranged in a vicinity of the spring element 18 .
  • the reinforcement unit 16 has a second reinforcement element 26 which has a substantially rod-like shape.
  • the second reinforcement element 26 has a longitudinal extent 36 which is aligned essentially parallel to the side edge 32 of the floor surface element 14 (cf. 2 and 3 ).
  • the longitudinal extent 36 of the second reinforcement element 26 and the longitudinal extent 34 of the reinforcement element 24 are aligned essentially parallel to one another.
  • the second reinforcement element 26 is arranged at a distance from the reinforcement element 24 .
  • the reinforcement unit 16 has a third reinforcement element 28 which connects the reinforcement element 24 and the second reinforcement element 26 to one another.
  • the third reinforcement element 28 has a longitudinal extent which is aligned essentially parallel to a longitudinal direction 38 of the third reinforcement element 28 .
  • the longitudinal extent of the third reinforcement element 28 is oriented obliquely relative to the longitudinal extent 34 of the reinforcement element 24 .
  • the longitudinal extent of the third reinforcement element 28 is aligned obliquely relative to the longitudinal extent 36 of the second reinforcement element 26 .
  • a first end portion of the third reinforcement element 28 is connected to a first end portion of the reinforcement element 24 .
  • a second end portion of the third reinforcement member 28 is connected to a middle portion of the second reinforcement member 26 .
  • the reinforcement unit 16 has a fourth reinforcement element 30 which connects the reinforcement element 24 and the second reinforcement element 26 to one another.
  • the fourth reinforcement element 30 has a longitudinal extent which is aligned essentially parallel to a longitudinal direction 40 of the fourth reinforcement element 30 .
  • the longitudinal extent of the fourth reinforcement element 30 is aligned obliquely relative to the longitudinal extent 34 of the reinforcement element 24 .
  • the longitudinal extent of the fourth reinforcement element 30 is oriented obliquely relative to the longitudinal extent 36 of the second reinforcement element 26 .
  • a first end area of the fourth reinforcement element 30 is connected to a second end area of the reinforcement element 24 .
  • a second end portion of the fourth reinforcement member 30 is connected to the middle portion of the second reinforcement member 26 .
  • the longitudinal extent of the third reinforcement element 28 and the longitudinal extent of the fourth reinforcement element 30 are aligned obliquely relative to one another.
  • the third reinforcing member 28 and the fourth reinforcing member 30 intersect in the central region of the second reinforcing member 26.
  • the third reinforcing member 28 and the fourth reinforcement member 30 form a substantially V-shape.
  • the reinforcement unit 16 has a substantially triangular shape.
  • the outer housing unit 12 has a relaxation unit 42, which reduces mechanical stresses in the base surface element 14 (cf. Figures 3 to 7 ).
  • the relaxation unit 42 is designed as a formation of the floor surface element 14 .
  • the relaxation unit 42 is designed as an impression of the floor surface element 14 .
  • the relaxation unit 42 is arranged in a vicinity of the amplification unit 16 .
  • the relaxation unit 42 has a first relaxation element 60 and a second relaxation element 62 .
  • the relaxation elements 60 , 62 are arranged on both sides of the reinforcement unit 16 .
  • the first relaxation element 60 is designed as an outer part of the relaxation unit 42 .
  • the second relaxation element 62 is designed as an inner part of the relaxation unit 42 .
  • the first relaxation element 60 essentially surrounds the reinforcement unit 16 in a plane which is aligned essentially parallel to a main extension plane of the floor area element 14 .
  • the reinforcement unit 16 essentially surrounds the second relaxation element 62 in a plane which is aligned essentially parallel to a main extension plane of the floor area element 14 .

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Baking, Grill, Roasting (AREA)
  • Electric Ovens (AREA)
  • Food-Manufacturing Devices (AREA)
  • Coupling Device And Connection With Printed Circuit (AREA)
  • Cookers (AREA)
  • Frying-Pans Or Fryers (AREA)
  • Shielding Devices Or Components To Electric Or Magnetic Fields (AREA)

Claims (11)

  1. Table de cuisson avec un dispositif de table de cuisson, qui présente une unité de boîtier extérieur (12), l'unité de boîtier extérieur (12) étant prévue pour former, dans au moins un état monté, au moins une partie d'un boîtier extérieur de table de cuisson, qui présente au moins un élément de surface de fond (14) et une unité de renforcement (16), qui est prévue pour renforcer l'élément de surface de fond (14), le dispositif de table de cuisson présentant au moins un élément à ressort (18) qui est prévu pour presser au moins partiellement au moins un élément chauffant (20) contre une plaque de table de cuisson (22), l'unité de renforcement (16) étant prévue pour réduire, au moins sensiblement une déformation provoquée par une force élastique de l'élément élastique (18) d'au moins une zone partielle de l'élément de surface de fond (14), l'unité de boîtier extérieur (12) et la plaque de cuisson (22), qui fait partie du dispositif de table de cuisson, délimitent au moins un espace de réception réalisé sous la forme d'un espace creux pour recevoir des composants, caractérisé en ce que l'unité de renforcement (16) est réalisée sous la forme d'un façonnage de l'élément de surface de fond (14), et plus précisément sous la forme d'un poinçonnage et/ou d'une empreinte et/ou d'une entaille et/ou d'un bombage de l'élément de surface de fond (14).
  2. Table de cuisson selon l'une quelconque des revendications précédentes, caractérisée en ce que l'unité de renforcement (16) comprend au moins un élément de renforcement (24) qui présente une forme au moins sensiblement en barre.
  3. Table de cuisson selon la revendication 2, caractérisée en ce que l'élément de renforcement (24) est disposé dans une zone proche de l'élément de ressort (18).
  4. Table de cuisson selon la revendication 2 ou 3, caractérisée en ce que l'élément de renforcement (24) présente une extension longitudinale (34) qui est orientée au moins sensiblement parallèlement à un bord latéral (32) de l'élément de surface de fond (14).
  5. Table de cuisson selon l'une des revendications 2 à 4, caractérisée en ce que l'unité de renforcement (16) comprend au moins un deuxième élément de renforcement (26) ayant une forme au moins sensiblement en barre.
  6. Table de cuisson selon la revendication 5, caractérisée en ce que le deuxième élément de renforcement (26) est disposé à distance du premier élément de renforcement (24).
  7. Table de cuisson selon la revendication 5 ou 6, caractérisée en ce que l'unité de renforcement (16) comprend au moins un troisième élément de renforcement (28) prévu pour relier l'élément de renforcement (24) et le deuxième élément de renforcement (26).
  8. Table de cuisson au moins selon la revendication 5, caractérisée en ce que le deuxième élément de renforcement (26) présente une extension longitudinale (36) qui est orientée au moins sensiblement parallèlement à un bord latéral (32) de l'élément de surface de fond (14).
  9. Table de cuisson selon l'une quelconque des revendications précédentes, caractérisée en ce que l'unité de boîtier extérieur (12) comprend au moins une unité de relaxation (42) prévue pour réduire les contraintes mécaniques de l'élément de surface de fond (14).
  10. Table de cuisson selon la revendication 9, caractérisée en ce que l'unité de relaxation (42) est conçue comme une protubérance de l'élément de surface de fond (14).
  11. Table de cuisson selon la revendication 9 ou 10, caractérisée en ce que l'unité de relaxation (42) est disposée dans une zone proche de l'unité de renforcement (16).
EP15382374.5A 2014-10-21 2015-07-20 Plaque de cuisson Active EP3023701B1 (fr)

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EP15189939.0A Active EP3012534B1 (fr) 2014-10-21 2015-10-15 Appareil ménager

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IT8819772A0 (it) * 1988-03-15 1988-03-15 Honeywell Bull Spa Dispositivo selettivo a terra per apparecchiature elettroniche.
DE19721776C2 (de) * 1997-05-24 2001-03-15 Schott Glas Tragteil für eine Kochfläche
DE19809224A1 (de) * 1998-03-04 1999-09-09 Bosch Siemens Hausgeraete Haushaltsgerät
US6501030B1 (en) * 1999-10-26 2002-12-31 Cisco Technology, Inc. Grounding plug for printed circuit board
DE10015973B4 (de) * 2000-03-30 2007-04-12 AEG Hausgeräte GmbH Haushaltsgerät, insbesondere Haushaltsgargerät
JP2006093549A (ja) * 2004-09-27 2006-04-06 Orion Denki Kk プリント基板にアース接続用ランドを備えた電子機器
DE102004047360A1 (de) * 2004-09-29 2005-12-22 Siemens Ag Elektrisch leitfähiges Kontaktelement
ES2310089B1 (es) * 2006-05-18 2009-08-27 Bsh Electrodomesticos España, S.A. Unidad de placa de cocina.
DE102006030547B4 (de) * 2006-07-03 2021-07-22 BSH Hausgeräte GmbH Kochmulde
ITMI20070451A1 (it) * 2007-03-07 2008-09-08 Enzo Inzaghi Bruciatore modulare ad alimentazione ottimizzata per pistra di cottura
ES2375036B1 (es) * 2008-12-29 2013-01-24 Bsh Electrodomésticos España, S.A. Placa de cocción.
DE202009000991U1 (de) * 2009-01-27 2009-04-02 BSH Bosch und Siemens Hausgeräte GmbH Kochfeld mit einem Montagerahmen und einem Metallträger
ES2381485B1 (es) * 2009-04-17 2013-05-03 BSH Electrodomésticos España S.A. Campo de coccion, en especial campo de coccion a gas.
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EP2659189B1 (fr) * 2010-12-31 2014-10-08 Arçelik Anonim Sirketi Four dont la sûreté électrique est assurée
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EP3023701A2 (fr) 2016-05-25
ES2877750T3 (es) 2021-11-17
EP3012534A3 (fr) 2016-06-15
EP3023701A3 (fr) 2016-06-29
EP3012534A2 (fr) 2016-04-27
EP3012534B1 (fr) 2021-02-24
ES2956782T3 (es) 2023-12-28

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