WO2022095431A1 - Dispositif de cuisson - Google Patents

Dispositif de cuisson Download PDF

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Publication number
WO2022095431A1
WO2022095431A1 PCT/CN2021/097288 CN2021097288W WO2022095431A1 WO 2022095431 A1 WO2022095431 A1 WO 2022095431A1 CN 2021097288 W CN2021097288 W CN 2021097288W WO 2022095431 A1 WO2022095431 A1 WO 2022095431A1
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WO
WIPO (PCT)
Prior art keywords
heating
heat transfer
cooking device
module
heating module
Prior art date
Application number
PCT/CN2021/097288
Other languages
English (en)
Chinese (zh)
Inventor
李伟填
莫惟高
陈龙
邱咪
Original Assignee
广东智源机器人科技有限公司
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
Priority claimed from CN202022530123.XU external-priority patent/CN213940511U/zh
Priority claimed from CN202120372073.9U external-priority patent/CN215899451U/zh
Application filed by 广东智源机器人科技有限公司 filed Critical 广东智源机器人科技有限公司
Publication of WO2022095431A1 publication Critical patent/WO2022095431A1/fr

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    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J37/00Baking; Roasting; Grilling; Frying
    • A47J37/06Roasters; Grills; Sandwich grills

Definitions

  • the present invention relates to a cooking device in the technical field of cooking equipment.
  • the griddle module In the production of fast food such as hamburgers, the griddle module is usually used to heat ingredients such as meat patties and bread. After the operator places the meat patty or bread on the griddle to heat for a period of time, then flips the ingredients to complete the overall heating, which not only costs a lot of labor, but also takes a long time. In addition, after the ingredients are heated on the griddle, difficult-to-clean stains are often left on the griddle. Since the existing griddle modules are often used as a whole, it is difficult to disassemble, which greatly increases the difficulty and cost of cleaning. . Although there are some griddle modules in the market where the heater and the grill can be separated, in this embodiment, it is difficult to ensure sufficient contact between the heater and the grill after assembly, which may easily lead to problems such as heat transfer efficiency and energy consumption. .
  • the purpose of the present invention is to solve at least one of the technical problems existing in the prior art, and to provide a cooking device that can simultaneously heat the upper and lower surfaces of the food, and improve the detachability of the device for easy cleaning.
  • Embodiments of the present application provide a cooking apparatus.
  • the cooking device includes:
  • Racks including upper and lower racks
  • a lower heating module a plurality of lower heating positions are arranged on the lower heating module, and the heating surface of each of the lower heating positions is arranged upward;
  • the upper heating module includes a heating part and a heat transfer module, the heating part is installed on the upper frame, the heating part and the heat transfer module are detachably connected, the heat transfer module There are several upper heating positions with the heating surface facing down on the module;
  • a jacking mechanism drives the upper heating module to perform a lifting action, so that the upper heating module presents a first station that approaches the lower heating module downwards to heat food materials or moves upwards away from the lower heating module Module to release the second station of the ingredients.
  • the cooking device can simultaneously heat the upper and lower surfaces of the ingredients, thereby improving the cooking efficiency; the removable heat transfer part is easy to clean and replace, and the maintenance cost is reduced.
  • FIG. 1 is a schematic diagram of the overall structure of a cooking device in an embodiment of the present invention.
  • FIG. 2 is a schematic diagram of the connection structure of the turntable mechanism and the lower heating module in the embodiment of the present invention
  • FIG. 3 is a schematic diagram of the overall structure of the turntable mechanism and the lower heating module in the embodiment of the present invention.
  • FIG. 4 is a schematic structural diagram of a cooking area in an embodiment of the present invention.
  • FIG. 5 is a schematic diagram of the overall structure of the jacking mechanism in the embodiment of the present invention.
  • FIG. 6 is a schematic diagram of the installation structure of the wiring ring in the embodiment of the present invention.
  • FIG. 7 is a schematic diagram of the overall structure of the upper heating module in the embodiment of the present invention.
  • Fig. 8 is the assembly schematic diagram of the upper heating module in the embodiment of the present invention.
  • Fig. 9 is the overall schematic diagram of the locking structure in the embodiment of the present invention.
  • FIG. 10 is a schematic diagram of the overall structure of the heat transfer part and the connecting column in the embodiment of the present invention.
  • FIG. 11 is a schematic diagram of the connection structure of the heating part and the upper frame in the embodiment of the present invention.
  • the azimuth description such as the azimuth or position relationship indicated by up, down, front, rear, left, right, etc.
  • the azimuth description is based on the azimuth or position relationship shown in the drawings, only In order to facilitate the description of the present invention and simplify the description, it is not indicated or implied that the indicated device or element must have a particular orientation, be constructed and operated in a particular orientation, and therefore should not be construed as limiting the present invention.
  • the meaning of several is one or more, the meaning of multiple is two or more, greater than, less than, exceeding, etc. are understood as not including this number, above, below, within, etc. are understood as including this number. If it is described that the first and the second are only for the purpose of distinguishing technical features, it cannot be understood as indicating or implying relative importance, or indicating the number of the indicated technical features or the order of the indicated technical features. relation.
  • the cooking device in the embodiment of the present invention includes:
  • the rack 100 includes an upper rack and a lower rack
  • the lower heating module 200 the lower heating module 200 is provided with a plurality of lower heating positions 210, and the heating surface of each lower heating position 210 is arranged upward;
  • the upper heating module 400 includes a heating part 412 and a heat transfer module, the heating part 412 is installed on the upper frame 411, the heating part 412 and the heat transfer module are detachably connected, and the heat transfer module is provided with There are several upper heating positions 426 with the heating surface facing down;
  • the jacking mechanism 500 drives the upper heating module 400 to perform a lifting action, so that the upper heating module 400 presents a first station that approaches the lower heating module 200 downward to heat the food, or moves upwardly away from the lower heating module 200 to loosen The second station for ingredients.
  • This cooking device drives the upper heating module 400 to perform a lifting action through the jacking mechanism 500. After the upper heating positions 426 of the upper heating module 400 descend, they cook the ingredients simultaneously with the lower heating positions 210, and release the ingredients when they rise, so as to realize the lifting of the ingredients. The surface is heated at the same time, so that the ingredients are heated more evenly and comprehensively, and the cooking efficiency is improved.
  • the number of heat transfer modules is several, the heat transfer modules are in one-to-one correspondence with the upper heating positions 426, each heat transfer module is disassembled and connected to the bottom surface of the heating part 412, and the bottom of each heat transfer module is The end surface forms the heating surface of the upper heating position 426, so that the temperatures of different upper heating positions 426 are independently controllable and will not affect each other; The temperature of each upper heating position 426 is equal and the movement is synchronized, so that the heating is more uniform.
  • the connection and separation of the heat transfer module and the heating part 412 can be realized. Heating is performed; when cleaning or replacement is required, the heat transfer module and the heating part 412 can be separated, and the entire upper heating module does not need to be removed or replaced together.
  • the number of the upper heating positions 426 is less than the number of the lower heating positions 210
  • the cooking apparatus further includes a turntable mechanism 300
  • the turntable mechanism 300 is installed on the lower heating module
  • the turntable mechanism 300 drives the lower heating module 200 to rotate.
  • the turntable mechanism 300 drives the lower heating module 200 to rotate when the upper heating module 400 is raised, and drives the upper heating module 400 to descend through the lifting mechanism 500 after the rotation is in place.
  • picking and placing the ingredients in the upper section where the upper heating position 426 is not set may not affect the continuity of the cooking of the ingredients, and can effectively improve the overall cooking efficiency of the ingredients.
  • the turntable mechanism 300 includes a first gear 310 disposed on the lower frame 100 and a second gear 320 meshing with the first gear 310 , and a motor 321 for driving the second gear 320 to rotate on the lower frame 100 .
  • the lower heating module 200 includes an upper thermal insulation board 201, a heating board 202 and a lower thermal insulation board 203 that are overlapped from top to bottom, and the upper thermal insulation board 201, the heating board 202 and the lower partition
  • the heating plates 203 are all annular structures.
  • the lower heating module 200 is provided with a plurality of pads 204 with equal arc distribution, and each pad 204 is connected to the heating plate 202 through the upper heat insulation plate 201 .
  • each lower heating position 210 is provided with a detection induction sheet 205 , and a detection device 110 for detecting the position of each detection induction sheet 205 is provided on the lower frame 100 .
  • the turntable mechanism 300 realizes the rotary motion of the lower heating module 200 , the turntable mechanism 300 drives the second gear 320 to rotate through the motor 321 , the second gear 320 drives the first gear 310 meshed with it to rotate, and the first gear 310 is installed on the lower heating module 200 . At the bottom, the lower heating module 200 can be driven to rotate.
  • the lower heating module 200 is provided with a detection sensing piece 205 under each pad 204 , and a detection device 110 for detecting the position of each sensing sensing piece 205 is set on the lower frame 100 , and the heating module 200 is driven by the turntable mechanism 300 to rotate During the process, after the detection device 110 detects the detection induction sheet located above, the motor 321 can be triggered to stop, so that the turntable mechanism 300 stops rotating.
  • the lower heating module 200 is provided with six lower heating positions 210 evenly distributed around the rotation axis, and four upper heating positions 426 are set on the upper heating module 400.
  • the turntable mechanism 300 drives the lower heating module 200 to rotate. After the detection device 110 detects the detection induction sheet located above, the turntable mechanism 300 stops rotating, so that there are four lower heating positions 210 in the lower heating module 200 alternately located on the upper heating module 400. Below the four upper heating bits 426 .
  • a part of the upper heating module 400 is located above the lower heating module 200 , and the upper heating position 426 is not provided above the two lower heating positions 210 , which is convenient for taking and placing food materials.
  • a temperature limiter is also set in the lower heating module 200. Using sensors such as the temperature limiter, the heating temperature can be controlled not to be too high or too low, which can ensure the taste of meat patties and bread in the cooking device and the safety of the cooking device.
  • the lower heating module 200 is further provided with a circular cooking area 220 , and the cooking area 220 includes a bottom plate 221 and a circle of baffles 224 arranged around the bottom plate 221 .
  • a plurality of bottom plate holes 222 are provided, and the spacer block 204 is disposed through the bottom plate holes 222 .
  • the space enclosed by the bottom plate 221 and a baffle plate 224 arranged around the bottom plate 221 is divided into a heating area and a material taking area.
  • the turntable mechanism 300 rotates immediately.
  • the lower heating module 200 sends the ingredients on the lower heating position 210 that have reached the edible condition to the reclaiming area to be taken out.
  • the ingredients to be cooked can be placed on the lower heating position 210 that has been reclaimed, and then rotated to below the upper heating position 426 for continuous cooking.
  • the parallel actions of the heating and reclaiming actions of the cooking device can be realized, and the production efficiency can be improved.
  • the cooking area 220 is further provided with a plurality of lower quick-change bottom plates 223 placed on the booster block 204 from the bottom through the bottom plate holes 222 , and the lower quick-change bottom plates 223 are provided with Blind holes matching the outline of the spacer block 204.
  • the booster block 204 is arranged through the bottom plate hole 222, and the lower quick-change bottom plate 223 is provided with a blind hole. Placing the booster block 204 in the blind hole can limit the horizontal movement of the lower quick-change bottom plate 223, and at the same time, it is also convenient for the vertical direction.
  • the lower quick-change bottom plate 223 is directly taken out, which reduces the difficulty of disassembling and cleaning the cooking area 220 .
  • the cooking zone 220 is provided with a lower oil scraping device 230 extending to the upper heating position 426 .
  • the lower oil scraping device 230 extends upward to be flush with the upper heating position 426
  • the upper oil scraping device 430 extends downward to be flush with the lower heating position 210 .
  • the lower oil scraping device 230 rotates following the lower heating module 200, and scrapes the grease on the bottom of each upper heating position 426 in the upper heating module 400, and excess grease can fall off. into the cooking zone 220 and collect on the floor surface.
  • the upper oil scraping device 430 is fixedly installed on the upper frame 411 , the lower heating position 210 rotates with the lower heating module 200 , the upper oil scraping device 430 contacts the rotating lower heating position 210 , and removes the top of each lower heating position 210 .
  • the grease is scraped off, and the scraped grease falls into the cooking area 220 and is collected on the surface of the bottom plate, which can facilitate centralized cleaning.
  • the middle of the lower heating module 200 is further provided with a fixing frame 120 fixedly connected with the lower frame 100 , the fixing frame 120 is covered with rolling bodies 121 , and the rolling bodies 121 are fixed around the The frame 120 rotates, and the rolling body 121 is provided with a vertically arranged wiring ring 122 .
  • the electrical components in the griddle mechanism that need to perform circular motion are all connected to the wiring ring 122 .
  • the wiring ring 122 is fixedly connected with the rolling body 121 and makes a circular motion around the fixing frame 120 together.
  • the rolling elements 121 and the fixed frame 120 conduct electricity through contact, and the fixed frame 120 leads to a power supply and the like.
  • the structure can also strengthen signal transmission, ensure that the heating temperature of the griddle mechanism is maintained at the set value, and ensure continuous high-efficiency work.
  • the driving part of the turntable mechanism 300 and the driving part of the jacking mechanism 500 are located on the same side of the bottom of the lower frame 100 .
  • the jacking mechanism 500 includes a jacking shaft 510 connected to the upper heating module 400, the jacking shaft 500 passes through the lower heating module 200 from the bottom from the middle, and the jacking shaft 510
  • a cylinder 520 is installed at the bottom of the cylinder 520 as a driving component
  • a slider 521 is installed at the output end of the cylinder 520, and the slider 521 is connected with the bottom end of the jacking shaft 510.
  • the jacking mechanism 500 realizes the vertical movement of the upper heating module 400 .
  • the sliding block 521 is driven by the air cylinder 520 , so that the vertical movement of the upper heating module 400 can be realized.
  • the air cylinder 520 and the motor 321 are located on the same side of the bottom of the lower frame 100 .
  • the cylinder 520 is used as the driving component of the jacking mechanism 500 and is installed on the same side of the lower heating module 200 as the motor 321 of the turntable mechanism 300 , which can save the installation space under the lower frame 100 and make the overall structure more compact.
  • the heat transfer module includes a locking structure 430 and a heat transfer portion 420 .
  • the heat transfer portion 420 is provided with a plurality of upper heating positions 426 with the heating surface facing down, and the heat transfer portion 420 is provided with a plurality of upper heating positions 426 facing downwards.
  • the heating part 420 is connected to the upper frame 411 through a locking structure 430 so as to contact the heating part 412 for heat transfer, and the locking structure 430 has a locked state and an unlocked state.
  • each upper heating position 426 is further provided with a quick clamp, and the quick clamp passes through the heating part 412 and the upper frame 411 to fasten the heat transfer module to the bottom of the heating part.
  • the upper rack 411 includes a bracket 4111 and a connecting bracket 4112, the bracket 4111 is installed in a fixed position, the connecting bracket 4112 is installed on the bracket 4111 through a detachable connecting mechanism, and the heating part 412 is installed on the connecting bracket 4111. on rack 4112. Since the bracket 4111 and the connecting frame 4112 can be separated, when the heating part 412 needs to be replaced, it is not necessary to remove the fixed connection between the upper frame 411 and the fixed position, and only the connecting frame 4112 needs to be removed from the bracket 4111, which reduces the difficulty of disassembly and facilitates maintain.
  • the locking structure 430 can also fix the connecting frame 4112 on the bracket 4111 while pressing the heat transfer part 420 against the heating part 412, that is, the locking structure 430 can be used as a connecting mechanism; similarly, the quick clamp
  • the connecting frame 4112 can also be fixed on the bracket, that is, the quick clamp can be used as a connecting mechanism.
  • the connection mechanism can also be provided independently of the locking structure 430 or the quick clamp.
  • the heating part 412 is connected to the upper frame through the first elastic member 413 , and in the locked state, the first elastic member 413 exerts a pressing force on the heating part 412 to the heat transfer part 420 .
  • Both the heating part 412 and the heat transfer part 420 may have a plate shape.
  • the locking structure has a locked state and an unlocked state. Specifically, in the locked state, the heating portion 412 is in contact with the heat transfer portion 420 to transfer heat, while the first elastic member 413 is pressed, so that the first elastic member 413 applies pressure to the heating portion 412 The force that presses the heat transfer part 420 . Since the first elastic member 413 is in a compressed state, the elastic force of the first elastic member 413 presses the heating portion 412 against the heat transfer portion 420 , thus ensuring sufficient contact between the heating portion 412 and the heat transfer portion 420 for heat transfer to be more uniform. Heat the food properly to avoid uneven heating of the food.
  • the first elastic members 413 can be compression springs or tension springs, etc.
  • the number of the first elastic members 413 is more than three, and the plurality of first elastic members 413 are jointly connected to the heating part 412 and the upper frame 411, so that the The connection between the upper frame 411 and the heating part 412 is more reliable; in addition, the first elastic members 413 are arranged at intervals along the circumferential direction of the heat transfer part 420.
  • the heating part 412 is pushed by the heat transfer part 420 to move to the upper frame 411, All the first elastic members 413 are compressed at the same time, so that the heating portion 412 cannot be in flush contact with the heat transfer portion 420 due to uneven elastic force.
  • the heat transfer part 420 is provided with a connecting column 421
  • the side surface of the connecting column 421 is provided with a first annular groove 422
  • the locking structure 430 includes a clip 432 .
  • the member 432 is used for being snapped into the first annular groove 422 along the preset locking direction to lock the connecting post 421 .
  • the connecting column 421 moves in the axial direction, and drives the heat transfer part 420 to move along with it and approach the heating part 412 until the clip 432 is aligned with the first annular groove 422 and is clipped into the first annular groove 422. 432 is stuck in the first annular groove 422.
  • the heat transfer portion 420 is located below the heating portion 412.
  • the heat transfer portion 420 moves upward until the connecting post 421 is locked by the clip 432, so that the heat transfer portion 420 is continuously in contact with the heating portion 412 for heat transfer.
  • the clip 432 is retracted, the connecting column 421 can be released from the locking structure 430, and the heat transfer part 420 is automatically separated from the heating part 412 under the action of gravity, without moving the heating part 412 or the heat transfer part 420 can stop the contact heat transfer between them.
  • the locking structure 430 includes a limiting portion 431 for limiting the movement trend of the pulling member 433 along the predetermined locking direction in the unlocked state.
  • the limiting part 431 includes a main body 4312 and a stop 4311 , the clip 432 is installed on the restricting part 431 through a second elastic member, more specifically, is installed in the main body 4312 , and the second elastic member is used for connecting the clip 432 A force is applied towards the connecting post 421 .
  • the second elastic member can be a compression spring, and the clamping member 432 can always abut with the connecting post 421 under the action of the second elastic member, and is automatically inserted when aligning with the first annular groove 422, and will not retract after insertion, The assembly operation is simplified and the structure is more reliable.
  • the end portion 423 of the connecting column 421 is tapered
  • the clip 432 is provided with an arc surface abutting against the end portion 423
  • the first annular groove 422 is located at the large diameter end of the end portion 423 of the connecting column.
  • the clip 432 is in contact with the end 423 of the connecting post 421.
  • the diameter of the contact between the end 423 of the connecting post and the clip 432 gradually increases, and the second elastic member is blocked.
  • the amount of compression increases gradually until the clip 432 is aligned with the first annular groove 422 , part of the elastic potential energy of the second elastic member is released, and the second elastic member presses the clip 432 against the first annular groove 422 middle.
  • the diameter of the top surface of the end portion 423 of the connecting column is smaller than the diameter of the bottom surface of the end portion 423 .
  • the second elastic member does not need to be pre-compressed, and the clamping member 432 can also be in contact with the outer side of the top surface of the connecting column end portion 423, which is more convenient to assemble.
  • the heating portion 412 is provided with a first through hole 415
  • the upper frame 411 is provided with a second through hole 414
  • the connecting post 421 passes through the first through hole 415 and the second through hole 414 in sequence.
  • the clip 432 is installed on the upper frame 411
  • the first through hole 415 is opposite to the second through hole 414
  • the connecting post 421 is transitionally fitted with the first through hole 415 and the second through hole 414 .
  • the cooperation of the connection post 421 with the first through hole 415 and the second through hole 414 plays a limiting role.
  • connection post 421 penetrates through the first through hole 415 and the second through hole 414, the heating part is ensured.
  • the 412 can only move relative to the upper frame 411 in the axial direction of the connecting column 421 , which prevents the first elastic member 413 from being bent during the expansion and contraction process, and prolongs the service life of the first elastic member 413 .
  • the movement direction of the heat transfer part 420 relative to the heating part 412 is also parallel to the axial direction of the connecting column 421, so as to ensure that the heat transfer part 420 does not shift during the movement process, and the end surface of the heat transfer part 420 is connected to the heating part.
  • the end faces of the 412 are always kept parallel, so that the heat transfer part 420 and the heating part 412 can be fully contacted.
  • the clip 432 is connected with the above-mentioned toggle member 433 , and the toggle member 433 is used to drive the clip 432 away from the first annular groove 422 to lock the clip 432 .
  • the structure is unlocked.
  • the stopper 4311 is provided with a telescopic channel through which the clip 432 can pass, the telescopic channel is arranged along a predetermined locking direction, and the clip 432 is movably installed in the telescopic channel to move in a predetermined locking direction.
  • the side of the stopper 4311 away from the connecting post 421 is the first side, the first side is opposite to the main body 4312 , and the pulling member 433 can abut on the first side of the stopper 4311 away from the connection post 421 .
  • the clamping member 432 is limited by the pulling member 433 to prevent the clamping member 432 from pressing the connecting column 421 under the elastic force of the second elastic member, resulting in higher friction when the connecting column 421 moves in the axial direction. , is not conducive to disassembly.
  • the pulling member 433 can rotate around the axis of the clamping member 432 .
  • the pulling member 433 is rotatably mounted on the clamping member 432.
  • the clamping member 432 does not rotate; as an equivalent implementation, this embodiment In the middle, the pulling member 433 is fixedly connected to the clamping member 432 .
  • the pulling member 433 rotates, it drives the clamping member 432 to rotate at the same time, which simplifies the connection structure of the pulling member 433 and the clamping member 432 .
  • the first side surface of the stop 4311 is provided with a positioning groove for accommodating the toggle member.
  • the pulling member 433 is pulled to retract the clamping member 432, and then the pulling member 433 is driven to rotate.
  • the first side face of the abutment is abutted, so that the locking structure 430 is in an unlocked state.
  • One side of the blocking platform 4311 close to the connecting column 421 is the second side surface, and the second side surface is opposite to the first side surface.
  • the pulling member 433 abuts on the first side surface of the stop 4311 after being rotated, so that the protruding length of the engaging member 432 is shortened, the engaging member 432 cannot extend into the first annular groove 422, and the locking structure 430 is unlocked. status for easy disassembly.
  • a rotation space is formed between the main body 4312 and the stopper 4311 , and the toggle member 433 can rotate in the rotation space, and then abuts against the inner side of the stopper 4311 under the action of the second elastic member.
  • the end of the heat transfer part 420 away from the heating part 412 can be provided with an installation structure for installing the release paper, which can reduce the adhesion of ingredients to the cooking device. Even if some ingredients are attached to the release paper, the release paper can be replaced. It can be cooked again without adversely affecting subsequent cooking. Specifically, referring to FIG.
  • the installation structure includes a second annular groove 424 provided on the side of the heat transfer part 420 , and the release paper is installed on the second annular groove 424 through a fastener, which can be an annular metal spring or the like.
  • a fastener which can be an annular metal spring or the like.
  • the second annular groove 424 is provided with an operation groove 425 , and the operation groove 425 is recessed in the second annular groove 424 .
  • a tool such as tweezers is used to extend into the operating groove 425. Since the depth of the operating groove 425 is greater than that of the second ring, the tool can destroy the release paper when it extends into the operating groove 425, so that the anti-sticking paper can be easily removed. sticky paper.

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  • Engineering & Computer Science (AREA)
  • Food Science & Technology (AREA)
  • Baking, Grill, Roasting (AREA)

Abstract

Dispositif de cuisson, qui se rapporte au domaine technique des appareils de cuisson. Le dispositif de cuisson comprend une crémaillère (100), un module de chauffage inférieur (200), un module de chauffage supérieur (400) et un mécanisme de levage (500), la crémaillère (100) comprenant une crémaillère supérieure (411) et une crémaillère inférieure (100) ; une pluralité de positions de chauffage inférieures (210) est disposée sur le module de chauffage inférieur (200), et une surface de chauffage de chacune des positions de chauffage inférieures (210) est agencée en vis-à-vis vers le haut ; le module de chauffage supérieur (400) comprend une partie de chauffage (412) et un module de transfert de chaleur, la partie de chauffage (412) est montée sur la crémaillère supérieure (411), la partie de chauffage (412) est reliée de manière amovible au module de transfert de chaleur, et une pluralité de positions de chauffage supérieures (426) avec des surfaces de chauffage orientées vers le bas est disposée sur le module de transfert de chaleur ; et le mécanisme de levage (500) entraîne le module de chauffage supérieur (400) en vue de sa montée et de sa descente, de sorte que le module de chauffage supérieur (400) est doté d'une première station dans laquelle le module de chauffage supérieur se déplace vers le bas et tire à proximité du module de chauffage inférieur (200) pour chauffer des matériaux alimentaires ou une seconde station dans laquelle le module de chauffage supérieur se déplace vers le haut à l'opposé du module de chauffage inférieur (200) pour relâcher les matériaux alimentaires. Le dispositif de cuisson peut chauffer des surfaces supérieure et inférieure des matériaux alimentaires simultanément de manière à améliorer l'efficacité de cuisson ; et une partie de transfert de chaleur amovible est pratique à nettoyer et à remplacer et le coût de maintenance est réduit.
PCT/CN2021/097288 2020-11-04 2021-05-31 Dispositif de cuisson WO2022095431A1 (fr)

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
CN202022530123.XU CN213940511U (zh) 2020-11-04 2020-11-04 接触式烹饪的扒炉模块
CN202022530123.X 2020-11-04
CN202120372073.9U CN215899451U (zh) 2021-02-09 2021-02-09 一种烹饪装置
CN202120372073.9 2021-02-09

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Publication Number Publication Date
WO2022095431A1 true WO2022095431A1 (fr) 2022-05-12

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CN108095572A (zh) * 2018-01-30 2018-06-01 中山市骏佳电器有限公司 一种可升降电烤炉
CN108888127A (zh) * 2018-09-13 2018-11-27 浙江气派智能科技有限公司 一种双面锅
CN109864607A (zh) * 2019-03-07 2019-06-11 上海海尔众智坊创客空间管理有限公司 烤箱
CN211432446U (zh) * 2019-11-07 2020-09-08 北京华兴瑞达生物科技发展有限公司 一种全自动电热不翻机
CN111839266A (zh) * 2020-07-30 2020-10-30 广州富港万嘉智能科技有限公司 新型烹饪设备
CN211834030U (zh) * 2020-03-12 2020-11-03 广东智源机器人科技有限公司 煎烤设备

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Publication number Priority date Publication date Assignee Title
CN2605801Y (zh) * 2002-10-24 2004-03-10 厦门灿坤实业股份有限公司 双面加热煎烤器
JP2008113593A (ja) * 2006-11-02 2008-05-22 Yamada Seisakusho:Kk 焼き食品の製造装置
WO2008093330A2 (fr) * 2007-01-31 2008-08-07 Yechiel Trost Appareil pour grillades et procédé pour griller des aliments
CN108095572A (zh) * 2018-01-30 2018-06-01 中山市骏佳电器有限公司 一种可升降电烤炉
CN108888127A (zh) * 2018-09-13 2018-11-27 浙江气派智能科技有限公司 一种双面锅
CN109864607A (zh) * 2019-03-07 2019-06-11 上海海尔众智坊创客空间管理有限公司 烤箱
CN211432446U (zh) * 2019-11-07 2020-09-08 北京华兴瑞达生物科技发展有限公司 一种全自动电热不翻机
CN211834030U (zh) * 2020-03-12 2020-11-03 广东智源机器人科技有限公司 煎烤设备
CN111839266A (zh) * 2020-07-30 2020-10-30 广州富港万嘉智能科技有限公司 新型烹饪设备

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