EP3450857A2 - Appareil ménager et procédé de fonctionnement - Google Patents

Appareil ménager et procédé de fonctionnement Download PDF

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Publication number
EP3450857A2
EP3450857A2 EP18186460.4A EP18186460A EP3450857A2 EP 3450857 A2 EP3450857 A2 EP 3450857A2 EP 18186460 A EP18186460 A EP 18186460A EP 3450857 A2 EP3450857 A2 EP 3450857A2
Authority
EP
European Patent Office
Prior art keywords
flap
door
gear
movement
connection
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
EP18186460.4A
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German (de)
English (en)
Other versions
EP3450857B1 (fr
EP3450857A3 (fr
Inventor
Aykut SEVER
Rustem Asik
Fatih Arslan
Mert BESER
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.)
Vestel Beyaz Esya Sanayi ve Ticaret AS
Original Assignee
Vestel Beyaz Esya Sanayi ve Ticaret AS
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.)
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Publication date
Application filed by Vestel Beyaz Esya Sanayi ve Ticaret AS filed Critical Vestel Beyaz Esya Sanayi ve Ticaret AS
Publication of EP3450857A2 publication Critical patent/EP3450857A2/fr
Publication of EP3450857A3 publication Critical patent/EP3450857A3/fr
Application granted granted Critical
Publication of EP3450857B1 publication Critical patent/EP3450857B1/fr
Active legal-status Critical Current
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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
    • F24C15/00Details
    • F24C15/02Doors specially adapted for stoves or ranges
    • F24C15/025Doors specially adapted for stoves or ranges with air curtain closures
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24CDOMESTIC STOVES OR RANGES ; DETAILS OF DOMESTIC STOVES OR RANGES, OF GENERAL APPLICATION
    • F24C15/00Details
    • F24C15/006Arrangements for circulation of cooling air
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24CDOMESTIC STOVES OR RANGES ; DETAILS OF DOMESTIC STOVES OR RANGES, OF GENERAL APPLICATION
    • F24C15/00Details
    • F24C15/02Doors specially adapted for stoves or ranges

Definitions

  • Present invention relates to white goods, such as ovens, in which a certain temperature value should be maintained during operation, and to operation methods of these white goods.
  • a certain temperature value should be maintained in a compartment comprised therein.
  • this high temperature value may damage components provided in the control panel where operation of the white good is arranged.
  • a fan is utilised which provides to circulate outer environment air, having lower temperature than the temperature within the compartment, in a channel to cool said components.
  • high temperature value within the compartment does not merely affect said components.
  • the patent document no. US3387600A discloses an air curtain means obtained by blowing air through the side walls of an oven.
  • the oven disclosed in said document comprises a fan provided at a bottom side of the cooking compartment; holes provided at a side edge of the compartment; a flexible hose which allows the outer environment air drawn by the fan to reach to the holes; and a sensor which senses that the door is opened.
  • the sensor senses when the door is opened, and the fan is enabled to operate.
  • the fan operates, the outer environment air is transmitted to the holes through the hose, and is reached to door opening through the holes so as to form an air curtain in front of the compartment.
  • a white good developed with the present invention comprises at least one body; at least one compartment which is located in the body, which has a temperature higher than the outer environment temperature during the operation, which is surrounded by at least one first side, at least one second side opposite to the first side, and at least one third side located between the first side and the second side such that it connects a part of the first side with a part of the second side being opposed to said part of the first side, and which comprises at least one opening for access to inside; at least one control panel which is provided at the body, at a part of the first side which does not face the compartment, and which arranges the operation of the white good; at least one door which controls the access to the opening, which has a closed position to prevent access to the opening and an opened position to allow access to the opening, which is able to move for transition between these opened/closed positions, which comprises at least one fourth side which approaches to and move away from the first side during this movement, wherein at least one cavity, being in connection with the outer environment, is formed between the control panel and the door when
  • the air directed to the outer environment by the fan which enables to cool the components that are already provided at the white good and located at the control panel, forms an air curtain between the opening and the door by being directed to the compartment opening when the door is in the closed position; therefore objects around the white good can be prevented to be negatively affected by the air and gases of high temperature which are released from the compartment to the outer environment when the door is opened, and thus, a white good is obtained which is cheap, easy and practical to produce.
  • Object of the present invention is to develop a white good in which the air within the compartment, which reaches to a high temperature value during the operation, is prevented from producing a negative effect when the door is opened, and an operation method for this white good.
  • Another object of the present invention is to develop a white good which is prevented from producing a negative effect when the door is closed, as well as being prevented from producing a negative effect when the door is opened, and an operation method for this white good.
  • Another object of the present invention is to develop a white good for which the operation efficacy and efficiency is increased, and an operation method for this white good.
  • Another object of the present invention is to develop a white good which is cheap, easy and practical to produce, and an operation method for this white good.
  • a compartment comprised within the white good should have a high temperature during operation.
  • this high temperature negatively affects the components located in the control panel where operation of the white good is arranged, and therefore the white good may be prevented to operate at a required efficacy.
  • a fan (M) is provided, and the fan (M) makes the outer environment air, having a temperature lower than the compartment (B), pass through a channel (H) which is in thermal interaction with the control panel (P) such that the components are prevented from being affected by the high temperature.
  • the air which is passed through the channel (K) and heated due to high temperature within the compartment (B), is transmitted to the outer environment through a cavity located between the door (D) and the control panel (P).
  • this high temperature together with various gases formed in the compartment due to the high temperature, especially when the door of the white good is opened, may negatively affect the user and/or the furniture being close to the white good as well as said components.
  • a white good which prevents both the components in the control panel, the door, and the objects around the white good when the door is opened, from being negatively affected by the high temperature within the compartment and, an operation method for this white good.
  • the white good (A) developed with the present invention comprises at least one body (G); at least one compartment (B) which is located in the body (G), which has a temperature higher than the outer environment temperature during the operation of the white good (A), which is surrounded by at least one first side (B1) (preferably top side or ceiling), at least one second side (B2) opposite to the first side (B1) (preferably bottom side or base), and at least one third side located between the first side (B1) and the second side (B2) such that it connects a part of the first side (B1) with a part of the second side (B2) being opposed to said part of the first side (B1), and which comprises at least one opening (B4) for access to inside that is preferably provided opposite to the third side (B3); at least one control panel (P) which is provided at the body (G), at a part of the first side (B1) which does not face the compartment (B) (preferably at a top part of the first side), and which arranges the operation
  • the developed white good (A) also comprising at least one flap arrangement (K), exemplary embodiments of which are illustrated in figure 4 and figure 8 to figure 12 , which comprises: at least one first hinge (K2) (preferably at least two); at least one first flap (K1) which has a plate structure extending parallel to the first side (B1), which is in connection with the first hinge (K2) so as to be able to move by rotating around an axis via at least one torsion spring preferably located at the first hinge (K2), which has a first position that allows the air, reaching to the cavity through the channel (H), to pass to the outer environment when the door (D) is in closed position, and a second position that enables the air reaching to the cavity to be directed, preferably in parallel with the opening (B4) or vertically to the second side (B2), towards the opening (B4) (and therefore towards the second side (B2)) by posing an obstacle to the connection of the cavity with
  • the temperature within the compartment (B) reaches to a higher temperature than the outer environment within which the white good (A) is present. For that reason, in order not to affect the control panel (P) which arranges the operation of the white good (A) by the high temperature at the compartment (B), when the white good (A) starts to operate, the fan (M) also starts to operate. When the fan (M) operates, the outer environment air is drawn through the hole provided at the body (G) such that it is directed to the channel (H) through the inlet opening.
  • the channel (H) Due to the fact that the channel (H) is in thermal connection with the control panel (P), the outer environment air circulating in the channel (H) both prevents control panel (P) from being affected by the temperature in the compartment (B), and cools the control panel (P). In the meantime, because of the fact that the door (D) is closed, the first flap (K1) is in the first position, and therefore the cavity is in connection with the outer environment. By this way, the air circulating through the channel (H) reaches to the cavity to pass to the outer environment.
  • the first flap (K1) rotates around the axis, passing through the region where it is in connection with the first hinge (K2), by moving such that its free side which is not in connection with the first hinge (K2) moves away from the first hinge (K2), and takes place in the second position in which the first flap (K1) is inclined with respect to the first side (B1), by this way, pose an obstacle to the connection of the cavity with the outer environment, and enables the air, which reaches from the channel (H) to the cavity, to be directed to the opening (B4) and therefore to the second side (B2) other than the outer environment.
  • an air curtain is formed between the opening (B4) and the door (D), and the air inside the compartment (B) is prevented from escaping directly to the outer environment such that the user, objects like furniture that are present around the white good (A) are able to be prevented from being negatively affected by the hot air and gases inside the compartment (B).
  • a white good (A) is obtained which is cheap, easy and practical to produce.
  • the fan (M) has at least one second operating speed (e.g. within the range of 1200-1500 revolutions per minute) higher than the first operating speed
  • the developed white good (A) preferably comprises at least one first sensor (K3) which, by sensing movement of the first flap (K1), enables to operate the fan (M) at the first operating speed if the first flap (K1) is in the first position and to operate the fan (M) at the second operating speed if the first flap (K1) is in the second position, and which accordingly controls the operating speed of the fan (M).
  • the first sensor (K3) may preferably be a mechanical switch, an ultrasonic sensor, a laser sensor, an inductive sensor, a light sensor or a capacitive sensor.
  • Operating time change of the fan (M) can be performed mechanically by the first sensor (K3), or by a control unit comprised within the white good (A) such that the control unit processes the signals received from the first sensor (K3).
  • the movement equipment preferably comprises at least one first protrusion (K4) provided at the surface of the first flap (K1) that faces the opening (B4) when in the first position, and at least one second protrusion (D2) provided at the fourth side (D1) of the door (D) so as to be in contact with the first protrusion (K4) when the first flap (K1) is in the first position.
  • first protrusion (K4) provided at the surface of the first flap (K1) that faces the opening (B4) when in the first position
  • second protrusion (D2) provided at the fourth side (D1) of the door (D) so as to be in contact with the first protrusion (K4) when the first flap (K1) is in the first position.
  • the first flap (K1) takes place in the first position so as to maintain this position until the door (D) starts to be opened. Therefore, when the door (D) is in the closed position, the first flap (K1) does not obstruct the connection of the cavity with the outer environment, and the air passing through the channel (H) is able to be delivered to the outer environment efficiently.
  • the movement equipment preferably comprises at least two movement elements (1a) (e.g. a coil, a pulley, a wheel etc.) which are provided such that at least one of them is at the part of the opening (B4) which is close to the first side (B1), and at least another of them is at the part of the opening (B4) which is close to the second side (B2); and at least one tension member (1b) (e.g.
  • a rope, a wire etc. which is connected, from at least one part, to the flap equipment (K) (to the first hinge (K2) or the first flap (K1)) by passing on the movement element (1a) which is provided at the part that is close to the first side (B1), and connected, from at least another part, to the door (D) (preferably to a part of the door (D) that is close to the second side (B2)) by passing on the movement element (1a) which is provided at the part that is close to the second side (B2), and which enables the first flap (K1) to take place in the second position when the door (D) takes place in the opened position, and enables the first flap (K1) to take place in the first position when the door (D) takes place in the closed position. Therefore, movement of the first flap (K1) is able to be practically controlled.
  • the movement equipment comprises at least one first gear (2a) (e.g. a rack and pinion gear, a worm gear etc.) which is in connection with the door (D) and which is able to move with the movement of the door (D); at least one second gear (2b) (e.g. a pinion gear) which is in connection with the first gear (2a) and which transfer the movement of the first gear (2a) by moving (e.g.
  • first gear (2a) e.g. a rack and pinion gear, a worm gear etc.
  • second gear (2b) e.g. a pinion gear
  • At least one transfer element (2c) which is in connection with the second gear (2b) from at least one part, wherein the movement of the first gear (2a) (and therefore the door (D)) is transferred to the transfer element (2c) via the second gear (2b), which is able to rotate around its own axis as a result of this movement transfer, and which is preferably in the form of a shaft; and at least one third gear (2d) which is in connection with another part of the transfer element (2c) from one part, and in connection with the flap arrangement (K) from another part, which is able to move (e.g.
  • the third gear (2d) Since the third gear (2d) is in connection with both the transfer element (2c) and the flap arrangement (K), the third gear (2d) allows the first flap (K1) to take place in the second position by moving with the movement received from the transfer element (2c). While the door (D) takes place in the closed position from the opened position, the first gear (2a) moves in a direction opposite to the movement direction occurring when the door (D) is opening, and this movement being in the opposite direction is transferred to the transfer element (2c) via the second gear (2b) such that the transfer element (2c) is enabled to rotate in a direction opposite to the rotation direction occurring when the door (D) is opening.
  • This rotation of the transfer element (2c) which is in the opposite direction enables to move the third gear (2d) in a direction opposite to its initial movement direction, thus the first flap (K1) takes place in its first position when the door (D) is closed.
  • various angles are provided between the first flap (K1) and the first hinge (K2) such that the first flap (K1) have different positions in the second position (e.g. the first flap (K1), in any position of the door (D) at each angle, can be allowed to be positioned so as to extend parallel to the fourth side (D1)).
  • the developed white good (A) also preferably comprises at least one fourth gear (2e) which provides the connection of the third gear (2d) with the flap arrangement (K) (and therefore with the first flap (K1)) in order to be able to transfer the movement of the door (D) to the first flap (K1) in a more efficient manner, and at least one fifth gear (2f) which is located between the second gear (2b) and the transfer element (2c), and which transfers the movement of the second gear (2b) to the transfer element (2c).
  • the white good (A) preferably comprises at least one sixth gear (2g) which is provided between the third gear (2d) and the fourth gear (2e), and which transfers the movement of the third gear (2d) to the fourth gear (2e).
  • the developed white good (A) preferably comprises at least one second sensor (3a) which senses the opened/closed positions of the door (D), and at least one motor (3b) which is in connection with the flap arrangement (K), and which enables the first flap (K1) to take place in the first position or the second position according to the opened/closed positions of the door (D) determined by the second sensor (3a).
  • the second sensor (3a) produces different signals according to the closed position, opened position of the door (D) and to the opening amount between the door (D) and the opening (B4), and the produced signals are transmitted to the control unit of the white good (A).
  • the control unit determines the angle amount that should be between the first hinge (K2) and the first flap (K1), and therefore determines the position that the first flap (K1) should have at the second position (e.g. the first flap (K1) is provided to be parallel to the fourth side (D1) continuously) and accordingly, adjusts the position of the first flap (K1) by energising the motor (3b).
  • the control unit determines the angle amount that should be between the first hinge (K2) and the first flap (K1), and therefore determines the position that the first flap (K1) should have at the second position (e.g. the first flap (K1) is provided to be parallel to the fourth side (D1) continuously) and accordingly, adjusts the position of the first flap (K1) by energising the motor (3b).
  • the first hinge (K2) is in connection with the body (G) (preferably so as to be in a bottom region of the control panel (P)) from a part which is not in connection with the first flap (K1).
  • the white good (A) comprises at least one second hinge (K5), wherein another part of the first hinge (K2) that is not in connection with the first flap (K1) is connected to at least one part of the second hinge (K5), and wherein the second hinge (K5), from at least another part, is connected to the body (G) via at least one joint (K6) so as to be able to achieve rotary movement in the joint (K6) axis.
  • the second hinge (K5) when the first flap (K1) takes place in the first position, it rotates in the joint (K6) axis, and it takes place an inclined position such that an acute angle is formed between the first flap (K1) and the second hinge (K5) (e.g. such that the part which is in connection with the first hinge (K2) is at a higher location than the part which is in connection with the body (G)).
  • the first flap (K1) when the door (D) is in the closed position, the first flap (K1) is provided to be positioned such that the connection of the cavity with the outer environment is not obstructed even a little, thereby obtaining an efficient white good (A).
  • At least one end part of the first flap (K1) (preferably both of the end parts) has a folded structure such that it forms a lug towards the part of the first flap (K1) facing the first hinge (K2) when in the first position.
  • the developed white good (A), as shown in figure 11 preferably comprises at least one second flap (K7) which is in connection with the first flap (K1) so as to move on the first flap (K1) by sliding (preferably at the part of the first flap (K1) facing the first hinge (K2) when in the first position); and by this way, which, when the first flap (K1) is in the second position, is provided collaterally (or one on the top of the other) with the first flap (K1) such that it moves away from the first flap (K1) from the side of the first flap (K1) being opposite to the side that is in connection with the first hinge (K2) (in other words, such that it extends towards the door (D) or the opening or the second side (B1)); and which, when the first flap (K1) is in the first position, is provided on the first flap (K1) (preferably between the first flap (K1) and the first hinge (K2)) such that it matches up with the first flap (K1).
  • the air reaching to the cavity is provided to form an air
  • the white good (A) preferably comprises at least one second flap (K7) which is connected to a side of the first flap (K1) being opposite to the side that is in connection with the first hinge (K2) such that it is able to move by rotating around a rotation axis (K8) parallel to said opposite side; which, when the first flap (K1) is in the second position, is provided collaterally (or one on the top of the other) with the first flap (K1) such that it moves away from the first flap (K1) from the opposite side (in other words, such that it extends towards the door (D) or the opening or the second side (B1)); and which, when the first flap (K1) is in the first position, is provided on the first flap (K1) (preferably between the first flap (K1) and the first hinge (K2)) such that it matches up with the first flap (K1) by rotating around the rotation axis (K8).
  • the second flap (K7) positions alongside the first flap (K1) by rotating around the rotation axis (K8) such that the side being in connection with the first flap (K1) is collateral to said opposite side of the first flap (K1). Also, while the first flap (K1) returns to the first position, it laps on the first flap (K1) by rotating around the rotation axis (K8). Thanks to this embodiment, connection of the cavity with the outer environment is obstructed in a more efficient manner, and the air amount transmitted to the opening (B4) is increased such that the air curtain becomes more efficient.
  • the developed white good (A) preferably comprises at least one suction hole (preferably more than one) provided at the part (preferably at the side) of the door (D) that is close to the second side (B2), and at least one air circulation channel which is provided within the door (D), a part of which opens into the suction hole, and another partof which opens into the cavity.
  • the door (D) when the door (D) is in the closed position, with the negative pressure forming due to heated air which reaches to the cavity through the channel (H) and which is sent to the outer environment through the cavity; the outer environment air is sucked through the suction hole such that it is received to the air circulation channel, and the air passing through the air circulation channel is sent to the outer environment through the cavity.
  • the door (D) is prevented from being affected by the high temperature of the compartment (B).
  • the fan (M) which has the first operating speed and the second operating speed and which operates at the first operating speed when the door (D) is in the closed position, is provided to operate immediately at the second operating speed via the first sensor (K3) when the door (D) opens.
  • the fan (M) operating at the first operating speed is provided to operate at the second operating speed via the first sensor (K3) following a first time after the door (D) opens. Thanks to this embodiment, while the door (D) is opening, the air having a temperature lower than the temperature of the compartment (B) is provided to be received inside the compartment (B) in fewer amounts such that the air within the compartment (B) is provided to be hotter.
  • the fan (M) after being operated at the second operating speed for a second time, the fan (M) is passed to the first operating speed again via the first sensor (K3).
  • the second time is determined to be such a time that the air having a high temperature within the compartment (B) is lowered to a temperature which does not harm any object.

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Air-Flow Control Members (AREA)
  • Power-Operated Mechanisms For Wings (AREA)
  • Patch Boards (AREA)
  • Control Or Security For Electrophotography (AREA)
  • Hinges (AREA)
EP18186460.4A 2017-08-29 2018-07-31 Appareil ménager Active EP3450857B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
TR2017/12959A TR201712959A2 (tr) 2017-08-29 2017-08-29 Bir Beyaz Eşya Ve Çalışma Yöntemi

Publications (3)

Publication Number Publication Date
EP3450857A2 true EP3450857A2 (fr) 2019-03-06
EP3450857A3 EP3450857A3 (fr) 2019-05-22
EP3450857B1 EP3450857B1 (fr) 2022-03-02

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EP18186460.4A Active EP3450857B1 (fr) 2017-08-29 2018-07-31 Appareil ménager

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EP (1) EP3450857B1 (fr)
ES (1) ES2910186T3 (fr)
TR (1) TR201712959A2 (fr)

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112438616A (zh) * 2019-08-31 2021-03-05 宁波方太厨具有限公司 一种门体及具有该门体的烹饪装置
CN112902233A (zh) * 2021-01-25 2021-06-04 宁波方太厨具有限公司 一种烹饪设备及集成灶
WO2022238100A1 (fr) 2021-05-11 2022-11-17 Miele & Cie. Kg Procédé pour refroidir la buée ou la vapeur s'échappant du compartiment de cuisson d'un appareil de cuisson et appareil de cuisson
DE102023132625A1 (de) 2023-11-23 2024-11-14 Miele & Cie. Kg Gareinrichtung
DE102023132899A1 (de) * 2023-11-24 2025-05-28 Miele & Cie. Kg Gareinrichtung und Verfahren zum Betreiben
EP4560200A1 (fr) 2023-11-23 2025-05-28 Miele & Cie. KG Dispositif de cuisson et procédé de fonctionnement

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Publication number Priority date Publication date Assignee Title
USD1005769S1 (en) 2021-09-08 2023-11-28 Newage Products Inc. Oven
US12402631B2 (en) 2021-09-08 2025-09-02 Newage Products Inc. Oven

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US3387600A (en) 1966-04-13 1968-06-11 Berj A. Terzian Oven with automatic air curtain means

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JPS625066A (ja) * 1985-06-28 1987-01-12 株式会社日立製作所 家庭用冷凍冷蔵庫
JPH0634143A (ja) * 1992-07-21 1994-02-08 Toshiba Corp 加熱調理器
KR102124833B1 (ko) * 2013-09-11 2020-06-19 삼성전자주식회사 오븐
EP3091291A1 (fr) * 2015-05-08 2016-11-09 Electrolux Appliances Aktiebolag Four de cuisson avec une cavité de four et une porte de four
KR20170035455A (ko) * 2015-09-23 2017-03-31 삼성전자주식회사 오븐 및 그 제어방법

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Publication number Priority date Publication date Assignee Title
US3387600A (en) 1966-04-13 1968-06-11 Berj A. Terzian Oven with automatic air curtain means

Cited By (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112438616A (zh) * 2019-08-31 2021-03-05 宁波方太厨具有限公司 一种门体及具有该门体的烹饪装置
CN112438616B (zh) * 2019-08-31 2022-02-18 宁波方太厨具有限公司 一种门体及具有该门体的烹饪装置
CN112902233A (zh) * 2021-01-25 2021-06-04 宁波方太厨具有限公司 一种烹饪设备及集成灶
WO2022238100A1 (fr) 2021-05-11 2022-11-17 Miele & Cie. Kg Procédé pour refroidir la buée ou la vapeur s'échappant du compartiment de cuisson d'un appareil de cuisson et appareil de cuisson
BE1029396A1 (de) 2021-05-11 2022-12-07 Miele & Cie Verfahren zum Kühlen des austretenden Wrasens oder Dampfs aus dem Garraum eines Gargeräts und Gargerät
DE102023132625A1 (de) 2023-11-23 2024-11-14 Miele & Cie. Kg Gareinrichtung
EP4560200A1 (fr) 2023-11-23 2025-05-28 Miele & Cie. KG Dispositif de cuisson et procédé de fonctionnement
DE102023132899A1 (de) * 2023-11-24 2025-05-28 Miele & Cie. Kg Gareinrichtung und Verfahren zum Betreiben
DE102023132899B4 (de) * 2023-11-24 2025-08-28 Miele & Cie. Kg Gareinrichtung und Verfahren zum Betreiben

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TR201712959A2 (tr) 2019-03-21
EP3450857B1 (fr) 2022-03-02
ES2910186T3 (es) 2022-05-11
EP3450857A3 (fr) 2019-05-22

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