EP3598848B2 - Table de cuisson - Google Patents

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Publication number
EP3598848B2
EP3598848B2 EP19185136.9A EP19185136A EP3598848B2 EP 3598848 B2 EP3598848 B2 EP 3598848B2 EP 19185136 A EP19185136 A EP 19185136A EP 3598848 B2 EP3598848 B2 EP 3598848B2
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EP
European Patent Office
Prior art keywords
heating
partial
heating devices
1tha
carrier
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.)
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Application number
EP19185136.9A
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German (de)
English (en)
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EP3598848B1 (fr
EP3598848A1 (fr
Inventor
Jochen Rickert
Volker Block
Marcus Frank
Gabriel Rupp
Tilo Fucik
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.)
EGO Elektro Geratebau GmbH
Original Assignee
EGO Elektro Geratebau GmbH
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Application filed by EGO Elektro Geratebau GmbH filed Critical EGO Elektro Geratebau GmbH
Priority to PL19185136.9T priority Critical patent/PL3598848T5/pl
Publication of EP3598848A1 publication Critical patent/EP3598848A1/fr
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    • 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
    • F24C7/082Arrangement or mounting of control or safety devices on ranges, e.g. control panels, illumination
    • F24C7/083Arrangement or mounting of control or safety devices on ranges, e.g. control panels, illumination on tops, hot plates
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B3/00Ohmic-resistance heating
    • H05B3/68Heating arrangements specially adapted for cooking plates or analogous hot-plates
    • H05B3/74Non-metallic plates, e.g. vitroceramic, ceramic or glassceramic hobs, also including power or control circuits
    • H05B3/748Resistive heating elements, i.e. heating elements exposed to the air, e.g. coil wire heater
    • 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
    • F24C7/04Stoves or ranges heated by electric energy with heat radiated directly from the heating element
    • F24C7/046Ranges
    • 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
    • F24C7/06Arrangement or mounting of electric heating elements
    • F24C7/067Arrangement or mounting of electric heating elements on ranges
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B2206/00Aspects relating to heating by electric, magnetic, or electromagnetic fields covered by group H05B6/00
    • H05B2206/02Induction heating
    • H05B2206/022Special supports for the induction coils
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B2213/00Aspects relating both to resistive heating and to induction heating, covered by H05B3/00 and H05B6/00
    • H05B2213/03Heating plates made out of a matrix of heating elements that can define heating areas adapted to cookware randomly placed on the heating plate

Definitions

  • the invention relates to a hob with several heating devices.
  • a well-known and very proven technology for heating devices in hobs is radiant heating devices.
  • Such heating devices are, for example, from the DE 3613902 A1 in detail.
  • a hob is provided with several identical heating devices, each with a rectangular support on which heating elements are arranged, preferably two heating elements, each with a heating conductor.
  • the heating conductors here run in an interlocking, angular spiral shape within a jointly formed heating surface, which is delimited by a circumferential, upward-standing outer edge of the support.
  • Several of these heating devices for example four heating devices, can be arranged relatively close to one another in the hob in order to achieve heating that is as seamless as possible or to use the hob surface as well as possible.
  • a grill plate is known that is divided into a number of individual fields of equal size. Each individual field has a spiral-shaped tubular heating element attached to the underside.
  • a flat heating unit which has two heating elements running in a meandering pattern.
  • the heating elements are designed as strip-shaped heating resistors and can be made of a metal alloy with a high platinum content, for example.
  • EP 2 133 012 B1 is a cooking device with a flat support and several regularly arranged heating elements under a cooking surface that can be used as a grill.
  • the rectangular heating elements are thick-film heating elements and are all the same size.
  • Another cooking device is known with a large continuous heating plate under which several heating elements are arranged.
  • the heating elements have different shapes and can be tubular heating elements, for example.
  • the invention is based on the object of creating a cooking surface provided with heating devices with which problems of the prior art can be solved and, in particular, it is possible to realize advantageous heating types with cooking vessels of different sizes on the cooking surface.
  • the heating device has a flat support with an outer edge.
  • This flat support can advantageously be flat, but does not have to be.
  • the outer edge can also be raised, but this is not mandatory either. In any case, the outer edge limits the support on the outside.
  • the support has an essentially rectangular shape, in particular with slightly rounded or bevelled corners. Opposite sides are advantageously parallel to one another.
  • the heating device also has at least two heating elements, advantageously arranged or attached to the support.
  • the heating elements each have at least one heating conductor and together form a heating surface that advantageously corresponds approximately to the surface of the support.
  • a heating element could also have two heating conductors. Heating elements or heating conductors generate radiant heat upwards during operation.
  • a heating conductor is advantageously defined by the fact that it has two ends and can be electrically connected or contacted to each of these for its operation. Furthermore, it is intended that the heating elements and/or the partial heating surfaces can be operated independently of one another. For this purpose, they can each have their own electrical connections or can be electrically contacted separately from one another. Some connections of several heating elements or partial heating surfaces can also be provided together, as is known per se for such heating devices as radiant heating devices.
  • the heating conductors are attached to the carrier, possibly partially embedded in an upper side of the carrier.
  • Each heating element defines a partial heating surface, advantageously exactly one single partial heating surface.
  • the heating device has at least two partial heating surfaces, advantageously exactly two partial heating surfaces. These partial heating surfaces lie within the rectangular shape of the carrier, specifically within the outer edge.
  • a partial heating surface is everywhere where a heating conductor of the associated heating element runs, i.e. it is defined by it in terms of area. It is therefore also advantageously provided that no heating conductors overlap or cross each other.
  • a first partial heating surface is rectangular. It extends with at least one of its outer sides to the outer edge of the carrier. or to an inner side of this outer edge if it is pulled upwards, as previously described. This at least one outer side of the partial heating surface also runs parallel to this outer edge, to which it extends directly or close to it.
  • the heating device has a second partial heating surface corresponding to a second heating element.
  • This second partial heating surface covers the rest of the carrier that is left free by the first partial heating surface.
  • the second partial heating surface is formed by more than one heating element or by more than one heating conductor, so that it can also be viewed as the sum of several further partial heating surfaces or is formed by several further partial heating surfaces.
  • the first partial heating surface is rectangular.
  • the area of the carrier that is still left free by the first partial heating surface is also covered by at least one heating element or at least one heating conductor and therefore also heats.
  • the invention makes it possible to create a heating device with a carrier that has at least one separately operable rectangular partial heating surface that is located on the edge of the carrier.
  • a heating device with a carrier that has at least one separately operable rectangular partial heating surface that is located on the edge of the carrier.
  • it can be operated very well together with further partial heating surfaces of another heating device that is arranged close to it, as a so-called bridge or bridged heating device for heating suitable cooking vessels, for example elongated oval roasting pans.
  • the heating elements or the heating conductors are resistance heating elements and are designed to glow or even light up slightly when in use. They therefore heat cooking vessels placed above them using their radiant heat output. This is also evident from the above-mentioned DE 3613902 A1 known.
  • the first partial heating surface with two of its outer sides which advantageously abut one another or form a corner with one another, each reach to the outer edge or to an inner side of the outer edge of the carrier. They also run parallel to it.
  • the first partial heating surface can therefore preferably be located in a corner or in a corner area of the carrier. Then it can not only be operated together with a single further partial heating surface of an adjacent heating device as the aforementioned bridge or bridged heating device, but also or alternatively with yet another partial heating surface of yet another heating device.
  • Four such heating devices can even be arranged in a square, and in the center, where four corners abut one another, four partial heating surfaces can also abut one another. Their corners are then only a short distance apart from each other, preferably less than 2 cm to 4 cm.
  • the adjacent and parallel first partial heating surfaces of the heating devices prefferably be congruent or parallel to one another over the same length. In this way, they create a common heating surface, which is in turn rectangular.
  • the first partial heating surface has a square shape.
  • an outer side of the first partial heating surface can have a length of between 100 mm and 200 mm, preferably between 110 mm and 150 mm. This results in a standard size for standard cooking vessel sizes, especially when two of them are to be used to heat an elongated oval roasting pan as mentioned above. Frequently used cooking vessels with a diameter of 150 mm have an inner square with an edge length of almost 110 mm. The aforementioned roasting pans often have a length of between 250 mm and 400 mm along their greater longitudinal extent. Here, too, the aforementioned square shape in the size mentioned fits well.
  • the second partial heating surface has an L-shape, so that the first partial heating surface lies in the inner angle formed thereby.
  • the first partial heating surface and the second partial heating surface together form a rectangular or square surface, covering the flat support up to its outer edge or up to its inner side.
  • the second partial heating surface can also be formed by several separately operable heating elements or heating conductors.
  • the second partial heating surface can preferably have legs of approximately the same width, which can, however, be of different lengths. The difference in length can be a factor of 1.2 to 2.5, advantageously 1.5 to 2.
  • a small rectangular area corresponding to the first partial heating surface can be heated separately, usually for a relatively small cooking vessel.
  • Operating the second partial heating surface alone will generally not make sense, since cooking vessels of a corresponding shape are not common.
  • a possible next larger area to be heated for a cooking vessel is advantageously the joint operation of the first partial heating surface and the second partial heating surface, and thus of the entire heating device. This can be used for medium-sized cooking vessels. be suitable.
  • a hob according to the invention offers a wide variety of options for assembling heated surfaces, which means that cooking vessels of different sizes or shapes can be heated as well, efficiently and quickly as possible.
  • the carrier itself to have a specifically square shape.
  • the first partial heating surface is also almost square or has a difference in its side lengths of a maximum of 10%.
  • at least one heating device according to the invention is square and at least one heating device according to the invention is rectangular. They can be arranged close to one another or next to one another in order to enable heating of as many different or variable surfaces as possible in combination.
  • an elongated temperature sensor or temperature limiter can be provided on the heating device, which runs above the heating elements or the heating conductors.
  • a temperature sensor or temperature limiter runs at least over the first partial heating surface, possibly also over the second partial heating surface. Since with such a heating device, as explained at the beginning, the first partial heating surface is always preferably operated, if the heating device is operated at all, it is protected against a potentially dangerously high temperature. If the temperature sensor or temperature limiter runs in an elongated form over the second partial heating surface, this can also be protected, so to speak.
  • the temperature sensor or temperature limiter can be compensated, as can be seen from the DE 3705260 A1 and above all the DE 102004058473 A1 is known through the use of different materials.
  • elongated temperature sensors or temperature limiters are known from the state of the art, they are also referred to as safety temperature limiters or rod regulators.
  • DE 3613902 A1 which also shows it.
  • Such an elongated temperature sensor or temperature limiter is advantageously a thermomechanical component and works with thermal expansion, whereby a switch is opened or closed at a certain expansion path corresponding to a certain temperature.
  • a power supply for the heating device or one of the heating elements or the heating conductor is automatically disconnected if the temperature detected is too high.
  • the elongated temperature sensor or temperature limiter runs from an outer edge of the carrier over at least half the extent of the carrier in the direction of the longitudinal direction of the temperature sensor or temperature limiter itself over at least the first partial heating surface.
  • the elongated temperature sensor or temperature limiter covers at least half the area of the first partial heating surface. It can be particularly advantageous for the elongated temperature sensor or temperature limiter to completely cover the first partial heating surface.
  • the temperature sensor or temperature limiter runs from an outer edge of the carrier to the opposite outer edge of the carrier, i.e. spans the entire carrier or its surface, so to speak. In this case, too, it should definitely run above the first partial heating surface so that it is protected against excessively high temperatures.
  • a small or point-shaped temperature sensor can be provided on the heating device, which is also arranged above or above at least the first partial heating surface.
  • a small or point-shaped temperature sensor can be pressed onto the underside of a hob plate of the hob and can measure the temperature directly here, since such rod regulators or safety temperature limiters are usually intended to monitor and limit a maximum temperature of the hob plate.
  • Such a small temperature sensor can be formed by a PTC resistor, an NTC resistor or a thermocouple, thus enabling direct temperature measurement.
  • Such small or point-shaped temperature sensors are evaluated electrically or electronically to determine a temperature signal, which can be used to determine whether a temperature is possibly too high.
  • combinations of the aforementioned elongated temperature sensors and small or point-shaped temperature sensors in particular with PTC resistors, NTC resistors or thermocouples, can also be formed.
  • any desired placement can be provided, or alternatively the small or point-shaped temperature sensors can be arranged on an elongated temperature sensor, for example clipped on.
  • another such small or point-shaped temperature sensor can be arranged in the area of the second partial heating surface. It can also be arranged above it or in the same way as the other temperature sensor in the area of the first partial heating surface.
  • electrical connections to a heating device are provided only on one side of the carrier, namely for all partial heating surfaces.
  • An aforementioned The temperature sensor or temperature limiter can be electrically contacted on this side.
  • the electrical connections of the first partial heating surface are spatially somewhat separated or at a distance from the electrical connections of a second partial heating surface.
  • Different so-called connection blocks or connection plug devices can also be provided. This makes the electrical connection easier when assembling the heating device or the hob.
  • the other sides of the heating device can then remain free of electrical connections that inevitably protrude beyond the outside or the outer edge. This creates the possibility that the heating devices can be arranged very close to one another on at least one, advantageously on two or even three sides, and can possibly even touch one another in order to achieve small gaps between them.
  • Electrical connections can advantageously be designed in a known manner with plug connections, advantageously plug connection lugs that protrude outwards from the heating device. Connection sections of the plug connection lugs can extend inwards so that the ends of the heating conductors can be welded to them.
  • heating devices can sometimes even be arranged so close to one another that their outer edges touch.
  • a non-heated area in between is as narrow as possible.
  • a raised outer edge of the support can even be thinner than in other areas where no other heating device is provided directly next to it or even touches it.
  • the thicknesses of two such touching thin outer edges add up, which in turn can create an overall sufficiently thick outer edge.
  • the lateral transfer of heat is not so disruptive here, since the neighboring heating device heated in this way is itself very temperature-resistant.
  • heating devices there are two types of heating devices that are mirror-symmetrical to one another. They can then be arranged next to one another in a hob according to the invention.
  • a center line running centrally between the two heating devices forms a mirror-symmetrical axis for the two heating devices.
  • the first partial heating surface of each heating device is arranged towards the neighboring heating device or its first partial heating surface, so that these two lie next to one another and can have a bridging function.
  • the rectangular heating devices according to the invention can also be combined with other heating devices that are round or oval.
  • a left or front area of the hob can be covered with rectangular heating devices on the one hand or round or oval heating devices on the other hand, and the other area with the differently shaped type of heating device.
  • heating devices of the same shape can be provided, in particular exclusively heating devices of a square shape.
  • Two heating devices arranged one behind the other run parallel to each other with their outer edges facing each other, advantageously with a very small distance as previously explained. However, they are not completely congruent, but are slightly offset from each other, for example by 2 cm to 5 cm.
  • first partial heating surfaces are provided, advantageously in a square shape, in such a way that they are next to each other and congruent with each other. This means that they can be easily bridged together when used together. Particularly large roasting pans can then be heated by the two fully operating heating devices in bridge operation.
  • heating surfaces or partial heating surfaces of different heating devices that have fundamentally different shapes can be bridged in a hob according to the invention.
  • a heating device 11a designed as a radiant heating device is shown in plan view.
  • the heating device 11a is, as is usual for radiant heating devices, arranged in a sheet metal shell 12a, which here has a square outer shape.
  • the heating device 11a also has a carrier 13a, which is arranged in the sheet metal shell 12a and which consists of a suitable thermally insulating and electrically insulating material.
  • a wide outer edge runs around the carrier 13a, which protrudes upwards and can be a separate part or integrally formed during production. It consists of a similar material to the carrier 13a.
  • the outer edge 15a has rounded corners for manufacturing reasons. Except for these rounded corners, the outer edge 15a is rectangular just like the carrier 13a, or here even square.
  • the outer edge 15a also has an inner side 16a, which so to speak delimits the top side of the carrier 13a. Likewise, the outer edge 15a has an outer side 17a, with which it largely rests against a raised edge of the sheet metal shell 12a.
  • a first heating element 19a is provided on the carrier 13a, which consists of a first heating conductor 20a, namely a single heating conductor 20a.
  • This elongated heating conductor 20a is laid in a meandering manner in two parallel tracks and has two first connections 21a, which protrude outwards through the outer edge 15a for electrical connection.
  • the first heating element 19a with the first heating conductor 20a forms a first partial heating surface 1THa, which is not only rectangular, but can be considered to be square.
  • the first heating conductor 20a runs around a raised portion 14a of the carrier 13a, so that no heating conductor and thus no heating is provided in the area of this raised portion 14a. Nevertheless, the first partial heating surface 1THa can be considered to be square according to the outer edges. This also applies to the corners according to Fig.2 , especially the upper right and lower right corners.
  • the heating device 11a also has a second heating element 22a, which covers the remaining surface of the carrier 13a.
  • a second heating conductor 23a is laid in a meandering shape with different widths on the carrier 13a, it forms the second partial heating surface 2THa.
  • the second heating conductor 23a of the second heating element 22a is led to second connections 24a, which in turn protrude outwards through the outer edge 15a.
  • the second partial heating surface is, like the Fig. 2 shows, L-shaped or angled with the same simplifications as previously carried out for the first partial heating surface 1THa.
  • the carrier 13a is square, and the first partial heating surface 1THa is also square and is positioned in the upper right corner of the carrier 13a, the second heating element 22a or the corresponding second partial heating surface 2THa has an L-shape with two legs of equal length and width.
  • the two partial heating surfaces 1THa and 2THa together form a heating surface Ha of the heating device 11a, so a total of a square area can be heated. From the laying pattern of the Fig.1 For the two heating conductors 20a and 23a it can be seen that they do not cross over, which is relatively obvious. Furthermore, the respective partial heating surfaces formed by each of the heating conductors 20a and 23a do not cross over or overlap.
  • a rod regulator 27a is attached to the heating device 11a, which is designed as known in the prior art.
  • the rod regulator 27a has a rod regulator housing 28a, from which an elongated thermomechanical temperature sensor 29a protrudes into the heating device 11a or runs above the heating surface Ha.
  • the temperature sensor 29a reaches up to the elevation 14a of the carrier 13a and is held by it against being pressed downwards. It is thus clear that in the Fig.1 the rod controller 27a only thermally monitors the first partial heating surface 1THa and switches it off if the temperature is too high, as is known from the prior art and does not need to be explained in more detail.
  • the temperature sensor 29a could be extended with a dashed extension 29a', which then also covers part of the second partial heating surface 2THa.
  • the second heating element 22a can also be thermally monitored, but this does not have to be the case.
  • the rod controller can be compensated as a temperature sensor, as can be seen from the above-mentioned DE 3705260 A1 and DE 102004058473 A1 is known.
  • the first connections of the first heating element 19a or the first heating conductor 20a are led to the rod controller housing 29 or are electrically connected.
  • the second connections 24a of the second heating conductor 23a are held in a so-called connection block, advantageously made of ceramic material. This means that they can easily be electrically contacted from the side using a plug.
  • the first connection of the connection block is connected to the contact of the rod controller 27a via a wire (not shown), so that when the rod controller 27a is switched, both heating elements are switched off, even if only the first heating element is being monitored.
  • a further heating device 11b is shown, whereby the heating device 11b has a rectangular outer shape.
  • a correspondingly suitable carrier 13b is inserted into a sheet metal shell 12b with a rectangular outer shape, with a raised outer edge 15b, which has an inner side 16b and an outer side 17b.
  • a raised area 14b is also provided on the carrier 13b.
  • the heating device 11b has a first heating element 19b, which is formed by a first heating conductor 20b, which has first connections 21b.
  • This first heating element 19b corresponds exactly to the first heating element 19a from the Fig.1 .
  • a first partial heating surface 1THb formed by this is, as the Fig.4 below, is square and sits, so to speak, in the upper right corner of the entire heating surface Hb of the heating device 11 b.
  • a second heating element 22b fills the remaining heating surface Hb except for the elevation 14b and forms the second partial heating surface 2THb with a second heating conductor 23b, as can also be seen from the Fig.4 Also from the comparison of the Fig.2 and 4 together, it is clearly visible that in the second heating device 11b, in particular in the second partial heating surface 2THb on the left, something is added, namely to the extent that the second heating device 11b is longer in the direction from left to right than the first heating direction 11a.
  • the second heating conductor 23b can be electrically connected to the outside with second electrical connections 24b through the outer edge 15b.
  • the heating device 11b also has a rod controller 27b which has a rod controller housing 28b with an elongated temperature sensor 29b.
  • Fig.4 It is shown that the elongated temperature sensor 29b, shown dashed to the left, with an extension 29b' could reach over the entire heating surface Hb and thus also fully over this area of the second partial heating surface 2THb, which is somewhat wider here than in the Fig.1 .
  • the respective first partial heating surface 1TH could also be arranged at any other location on the carrier 13 or within its heating surface H. In this case, however, the electrical supply lines would be more difficult to lay, although this is feasible, as will be explained below.
  • Fig.5 is an arrangement 31a of two heating devices 11a according to or similar to the representation of the Fig.2
  • the left heating device 11a is visible exactly as in Fig.1 or.
  • Fig.2 designed the right heating device 11a' is only designed in principle the same, i.e. with equally large partial heating surfaces. Strictly speaking, it is designed mirror-symmetrically to the left heating device 11a with a mirror axis along a center line 32a that runs between the two heating devices 11a and 11a'.
  • the two first partial heating surfaces 1THa and 1THa' are adjacent to one another with their sides facing each other. In this respect, they are congruent because they are also the same size. It can therefore be seen that with the arrangement 31a, several cooking vessels of different sizes can be heated or heating zones can be formed. The smallest cooking vessel can only be heated by one of the two first partial heating surfaces 1THa or 1THa'. A next larger vessel can be heated by an entire heating device 11a or 11a, for example 1THa and 2THa. A smaller, elongated or oval roaster can be heated by the two first partial heating surfaces 1THa and 1THa' in joint operation. An even larger, elongated roaster or a very large cooking pot could be heated by the two heating devices 11a and 11a' together. From the shape of the second partial heating surfaces 2THa or 2THa', it is clear at first glance that their isolated operation alone makes no sense.
  • FIG.6 A further arrangement 31b is shown, which is basically constructed similarly to that of Fig.5
  • a heating device 11b according to Fig. 3 and 4
  • another heating device 11b' is provided, which has the same size and the same external shape.
  • Fig.5 described is designed mirror-symmetrically to the left heating device 11b, whereby it is possible for the two first partial heating surfaces 1THb and 1THb' to be mirror-symmetrical and to almost abut one another with their mutually facing outer sides.
  • the thickness of the respective outer edge 15 is not taken into account when showing how partial heating surfaces or entire heating surfaces can lie against one another or can continue.
  • the principle underlying the invention is nevertheless easy to understand and comprehend.
  • FIG.7 is a plan view of a hob 35 according to the invention in a first embodiment of the invention.
  • the hob 35 has four heating devices 11, namely two heating devices 11a or 11a' with a square outer shape and two heating devices 11b or 11b' with a rectangular outer shape.
  • a hob could also have more correspondingly designed heating devices, for example six or eight heating devices.
  • An operating device 36 is arranged in the front center, advantageously with touch switches.
  • a heating device 11a or 11a' with a square outer shape and a heating device 11b or 11b' with a rectangular outer shape are combined on the left and right and installed close to each other. They can even touch each other. It can be seen how the heating device 11a' is arranged in accordance with the Fig.5 the first partial heating surface 1THa' is placed in the upper left corner. To the right and below is the second partial heating surface 2THa'.
  • the first partial heating surface 1THb is arranged in the lower left corner, and the L-shaped second partial heating surface 2THb extends to the right and above it. This means that the two first partial heating surfaces 1THa' and 1THb can again be used to form a continuous bridge for heating an elongated cooking vessel.
  • the offset is chosen differently than on the left as an example of as many different arrangement possibilities as possible.
  • the two heating devices are still directly adjacent to one another, including the first partial heating surfaces 1THa' and 1THb.
  • the adjacent outer sides are no longer congruent, but are slightly offset from one another. They can still be arranged in the corners of the respective heating device, but the same heating devices 11 can be used on the left and right in the hob 35.
  • the offset of the first two partial heating surfaces can be a little surprising in practice, but it only causes a minor thermal disturbance.
  • Another cooking surface 135 according to the invention according to Fig.8 has two heating devices 11a on the left corresponding Fig. 1 and 2 which are adjacent to one another, but are not congruent but are slightly offset. Their outer shape is square.
  • the first partial heating surfaces 1THa are, however, adjacent to one another.
  • two further square heating devices 11a" are arranged next to each other, but offset from each other.
  • a respective first partial heating surface 1THa" is formed on an outer side or abutting the outer edge, but only on one outer side. It is not arranged in the corner, so to speak. This makes it possible for the two heating devices 11a" to be arranged offset from each other and the first partial heating surfaces 1THa" not to be in the corner, but they are nevertheless arranged congruently next to each other.
  • FIG.9 another cooking surface 235 according to the invention is shown, in which behind a front central control device 236 on the left an arrangement 31a corresponding Fig.5 a heating device 11a and a heating device 11a is provided.
  • a heating device 11a and a heating device 11a is provided in the right half of the hob 235 .
  • the right half of the hob 235 there are two round heating devices, namely a small round heating device 35c at the front and a larger round heating device 35d at the back. These are not divided into different partial heating surfaces at all. Due to their respective sizes they are well adapted to the available space, also due to the operating device 236.
  • heating devices 111a and 111a' are arranged very close to each other or abutting each other.
  • these heating devices 111a and 111a' which each have a square outer shape, a special feature is provided that their first partial heating surfaces 1THa and 1THa' abut each other in the middle or in the common middle area and form an essentially closed or continuous surface. They are all the same size.
  • the diagonally opposite heating devices 111a and 111a' are identical, the others are mirror-symmetrical to them.
  • the very large surface formed by the four partial heating surfaces 1THa and 1THa' can be used to heat very large cooking vessels such as paella pans. It is also conceivable to operate the four entire heating devices 111a and 111a' with all partial heating surfaces 1THa, 1THa', 2THa and 2THa' completely for such paella pans or the like.
  • the respective associated second partial heating surfaces 2THa and 2THa' are then grouped together as a kind of rectangular ring around the outside.
  • different bridge functions or bridge arrangements and thus overall interconnections of heating surfaces or partial heating surfaces are possible in order to be able to optimally heat cooking vessels of different sizes.
  • an internal electrical connection to the first partial heating surfaces 1THa and 1THa' is somewhat more difficult or complex here, since they do not border on an exposed outside of the heating device. This can also be done by laying appropriate heating conductors. It is possible to move the heating devices 111a and 111a' far enough apart from each other to create an electrical connection option in an intermediate space.

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Ceramic Engineering (AREA)
  • Electric Stoves And Ranges (AREA)
  • Control Of Resistance Heating (AREA)

Claims (14)

  1. Table de cuisson (35, 235, 335) avec plusieurs dispositifs de chauffage (11, 111), dans lequel deux de ces dispositifs de chauffage comprenant :
    - un support plat (13) avec un bord extérieur (15), qui limite le support (13) à l' extérieur,
    - le support (13) présentant une forme essentiellement rectangulaire,
    - deux éléments de chauffage (19, 22) chacun présentant au moins un conducteur chauffant (20, 23) et lesdits éléments de chauffage ensemble formant une zone de chauffage (Ha, Hb),
    dans lequel
    - les conducteurs chauffants (20, 23) sont fixés sur le support (13),
    - chaque élément de chauffage (19, 22) définit une zone de chauffage partielle (1TH, 2TH),
    - les éléments de chauffage (19, 22) et/ou les zones de chauffage partielles (1TH, 2TH) sont capables de fonctionner indépendamment et/ou présentent respectivement des raccordements électriques propres,
    - les zones de chauffage partielles (1TH, 2TH) se situent au sein de la forme rectangulaire du support (13),
    dans lequel
    - les zones de chauffage partielles (1TH, 2TH) des éléments de chauffage (19, 22) ne se chevauchent pas,
    - une première zone de chauffage partielle (1THa, 1THb) est rectangulaire et allait, par au moins l'un de ses côtés extérieurs, au bord extérieur (15) ou à un côté intérieur (16) du bord extérieur (15) du support (13) et s'étend en parallèle par rapport au bord extérieur (15),
    caractérisée en ce que
    - une deuxième zone de chauffage partielle (2THa, 2THb) recouvre le support (13) restant, laissé libre par la première zone de chauffage partielle (1THa, 1THb),
    - le dispositif de chauffage (11, 111) est un dispositif de chauffage rayonnant,
    - la une deuxième zone de chauffage partielle (2THa, 2THb) présente une forme en L, dans laquelle ces deux dispositifs de chauffage (11, 111) sont disposés côte à côte de telle manière que respectivement les premières zones de chauffage partielles (1THa, 1THb) des deux dispositifs de chauffage, par leurs côtés extérieurs, se situent adjacentes et parallèles l'une à l'autre.
  2. Table de cuisson selon la revendication 1, caractérisée en ce que la respectivement première zone de chauffage partielle (1THa, 1THb) de ces deux dispositifs de chauffage (11, 111) allait, par deux de ses côtés extérieurs, respectivement au bord extérieur (15) ou à un côté intérieur (16) du bord extérieur (15) du respectivement support (13) de cet dispositif de chauffage et s'étend en parallèle par rapport à celui-ci, dans lequel en particulier la première zone de chauffage partielle (1THa, 1THb) se situe dans un coin du support (13).
  3. Table de cuisson selon la revendication 1 ou 2, caractérisée en ce que la respectivement première zone de chauffage partielle (1THa, 1THb) de ces deux dispositifs de chauffage (11, 111) présente une forme quadratique, dans lequel en particulier un côté extérieur présente une longueur comprise entre 110 mm et 150 mm.
  4. Table de cuisson selon l'une quelconque des revendications précédentes, caractérisée en ce que la respectivement deuxième zone de chauffage partielle (2THa, 2THb) de ces deux dispositifs de chauffage (11, 111) présente la forme en L avec des branches approximativement de même largeur, en particulier avec des branches de longueurs différentes.
  5. Table de cuisson selon l'une quelconque des revendications précédentes, caractérisée en ce que le respectivement support (13) de ces deux dispositifs de chauffage (11, 111) présente une forme quadratique.
  6. Table de cuisson selon l'une quelconque des revendications précédentes, caractérisée en ce que la respectivement première zone de chauffage partielle (1THa, 1THb) de ces deux dispositifs de chauffage (11, 111) est quadratique.
  7. Table de cuisson selon l'une quelconque des revendications précédentes, caractérisée en ce que respectivement un capteur de température allongé (29) ou limiteur de température de ces deux dispositifs de chauffage (11, 111) s'étend au-dessus des éléments de chauffage (19, 22) sur au moins la respectivement première zone de chauffage partielle (1THa, 1THb) de ces deux dispositifs de chauffage (11, 111), de préférence aussi partiellement sur la respectivement deuxième zone de chauffage partielle (2THa, 2THb) de ces deux dispositifs de chauffage (11, 111).
  8. Table de cuisson selon la revendication 7, caractérisée en ce que respectivement le capteur de température allongé (29) ou limiteur de température de ces deux dispositifs de chauffage (11, 111) s'étend à partir d'un bord extérieur (15) respectivement du support (13) de ces deux dispositifs de chauffage (11, 111) sur au moins la moitié de l'extension du support vers la direction du capteur de température (29) ou limiteur de température sur au moins respectivement la première zone de chauffage partielle (1THa, 1THb), de préférence jusqu'au bord extérieur (15) du support (13) opposé.
  9. Table de cuisson selon l'une quelconque des revendications 1 à 6, caractérisée en ce que respectivement un capteur de température petit ou en forme de point de ces deux dispositifs de chauffage (11, 111) est disposé au-dessus d'au moins respectivement la première zone de chauffage partielle (1THa, 1THb) de ces deux dispositifs de chauffage (11, 111), dans lequel de préférence un autre capteur de température en forme de point est disposé au-dessus chaque foi de la deuxième zone de chauffage partielle (2THa, 2THb) de ces deux dispositifs de chauffage (11, 111).
  10. Table de cuisson selon l'une quelconque des revendications précédentes, caractérisée en ce que les au moins deux dispositifs de chauffage (11, 111) sont disposés côte à côte à courte distance, de préférence moins de 2 cm, dans laquelle en particulier respectivement les premières zones de chauffage partielles (1THa, 1THb) des deux dispositifs de chauffage (11, 111), par leurs côtés extérieurs, se situent en correspondance ou bien respectivement sur la même longueur en parallèle côte à côte.
  11. Table de cuisson selon l'une quelconque des revendications précédentes, caractérisée en ce que les deux dispositifs de chauffage (11, 111) disposés côte à côte se touchent par leurs bords extérieurs (15).
  12. Table de cuisson selon l'une quelconque des revendications précédentes, caractérisée en ce que les deux dispositifs de chauffage (11, 111) disposés côte à côte présentent la symétrie de miroir, dans laquelle une ligne des centres (32) s'étendant centralement entre les deux dispositifs de chauffage forme un axe de symétrie de miroir.
  13. Table de cuisson selon l'une quelconque des revendications précédentes, caractérisée en ce que des autres dispositifs de chauffage (35c, 35d) présents sont sous forme circulaire ou ovale.
  14. Table de cuisson selon l'une quelconque des revendications précédentes, caractérisée en ce que, dans une zone arrière de la table de cuisson (35, 335), exactement deux dispositifs de chauffage (11, 111) rectangulaires de même calibre sont disposés côte à côte, de préférence à une distance comprise entre 2 cm et 10 cm l'un de l'autre, dans laquelle dans une zone avant de la table de cuisson exactement deux dispositifs de chauffage (11, 111) rectangulaires de même calibre sont disposés côte à côte, dans laquelle, au moins sur le côté gauche ou droite de la table de cuisson, les deux dispositifs de chauffage respectivement par les côtés extérieurs de leurs premières zones de chauffage partielles (1THa, 1THb) se situent adjacents et parallèle l'un à l'autre, dans laquelle en particulier les côtés extérieurs de leurs premières zones de chauffage partielles (1THa, 1THb) se situent en correspondance ou bien respectivement sur la même longueur en parallèle côte à côte.
EP19185136.9A 2018-07-19 2019-07-09 Table de cuisson Active EP3598848B2 (fr)

Priority Applications (1)

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DE102018212094.3A DE102018212094A1 (de) 2018-07-19 2018-07-19 Heizeinrichtung für ein Kochfeld und Kochfeld

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DE (1) DE102018212094A1 (fr)
ES (1) ES2875934T3 (fr)
PL (1) PL3598848T5 (fr)

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102016224069A1 (de) * 2016-12-02 2018-06-07 E.G.O. Elektro-Gerätebau GmbH Kochgerät mit einer Kochplatte und einer Heizeinrichtung darunter
DE102021202613A1 (de) 2021-03-18 2022-09-22 E.G.O. Elektro-Gerätebau GmbH Heizeinrichtung für ein Kochfeld und Kochfeld

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WO2015062859A1 (fr) 2013-11-04 2015-05-07 BSH Hausgeräte GmbH Dispositif de cuisson équipé d'une plaque de chauffage

Also Published As

Publication number Publication date
PL3598848T5 (pl) 2024-09-16
US11156365B2 (en) 2021-10-26
EP3598848B1 (fr) 2021-03-31
US20200025388A1 (en) 2020-01-23
PL3598848T3 (pl) 2021-10-18
DE102018212094A1 (de) 2020-01-23
ES2875934T3 (es) 2021-11-11
EP3598848A1 (fr) 2020-01-22

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