Cooking device

By integrating a drying chamber, shaking parts and fan system into the cooking device, the problem of difficulty in drying kitchen utensils is solved, efficient and uniform drying and sterilization effects are achieved, costs are reduced and the utilization rate of the device is improved.

CN223429442UActive Publication Date: 2025-10-14HISENSE HOME APPLIANCES GRP CO LTD +1
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Patent Information

Application Number
CN202422935542.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-28
Publication Date
2025-10-14
Estimated Expiration
2034-11-28

AI Technical Summary

Technical Problem

Kitchen utensils such as towels and thick gloves are difficult to dry after washing. Traditional methods are inefficient and costly. Existing drying devices are ineffective and prone to uneven drying.

Method used

A cooking device with a drying chamber is designed, which has a built-in shaking unit and fan system. It uses heaters and semiconductor refrigeration components for drying and condensing, and combines with a filtration system to achieve automatic and uniform drying and sterilization.

Benefits of technology

It achieves efficient and uniform drying and sterilization of kitchen utensils, saves costs, improves the utilization rate of cooking devices, is easy to operate, and reduces the need for separate equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a cooking device which comprises a heater used for heating air in an inner container cavity; the first driving motor comprises a first output shaft; a drying cavity is formed in the drying bin; the exhaust cavity is formed in the box shell cavity and located outside the inner container; the exhaust cavity is communicated with the inner container cavity and the box shell cavity; the first fan is arranged in the exhaust cavity; the second driving motor is arranged in the box shell cavity and located outside the inner container; an output shaft of the second driving motor is connected with the first fan, and the second driving motor drives the first fan to rotate, so that air in the inner container cavity flows into the exhaust cavity and then is exhausted into the box shell cavity. And a first fan and a second driving motor are arranged, so that moisture in the drying cavity can be discharged out of the drying cavity, and the articles can be dried.
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Description

Technical Field

[0001] The utility model relates to the field of kitchen equipment, in particular to a cooking device. Background Art

[0002] The cooking device may include a box shell and an inner container, wherein a cavity may be formed in the inner container. The cooking device may include a heating pipe, which can heat the air in the inner container cavity to complete the cooking function of grilling.

[0003] Currently, there are some cooking devices that have a chamber body disposed in an inner pot, wherein a cooking cavity can be formed in the chamber body, and cooking can be completed in the cooking cavity.

[0004] Kitchen towels, thick gloves, and other items tend to become greasy and difficult to clean due to long-term use. They are rarely washed and are generally not washed in a washing machine. Traditional methods are typically used to wash and then air-dry, which can easily breed bacteria. Professional drying equipment can also be used, but this is more expensive. Furthermore, existing drying devices have poor drying effects and can easily cause partial drying failure. Therefore, this application proposes a cooking device capable of drying. Summary of the Invention

[0005] The utility model aims to solve one of the technical problems in the related art at least to a certain extent.

[0006] To this end, according to an embodiment of the present disclosure, a cooking device is proposed, comprising:

[0007] a box shell, wherein a box shell cavity is formed;

[0008] An inner liner is arranged in the box shell cavity; an inner liner cavity is formed in the inner liner; and an inner liner cavity opening is provided at the front end of the inner liner cavity;

[0009] A door, used to open or close the inner chamber opening;

[0010] A heater, used for heating the air in the inner chamber;

[0011] A drying chamber is formed in the drying chamber; the drying chamber is detachably mounted in the inner chamber;

[0012] a shaking piece, at least partially disposed in the drying chamber;

[0013] A first drive motor is located in the housing cavity and includes a first output shaft;

[0014] When the drying chamber is installed in the inner chamber, the drying chamber is communicated with the inner chamber, and the shaking piece is connected to the first output shaft, and the first driving motor drives the shaking piece to rotate in the drying chamber;

[0015] An exhaust cavity is provided in the box shell cavity and outside the inner liner; the exhaust cavity is communicated with the inner liner cavity and the box shell cavity;

[0016] a first fan, disposed in the exhaust cavity;

[0017] The second drive motor is arranged in the box shell cavity and located outside the inner tank; the output shaft of the second drive motor is connected to the first fan, and the second drive motor drives the first fan to rotate so that the air in the inner tank cavity flows into the exhaust cavity and then is discharged into the box shell cavity.

[0018] A drying chamber is provided, including a drying chamber, in which items to be dried can be placed to complete drying; a first fan and a second drive motor are provided, which can discharge moisture in the drying chamber out of the drying chamber so that the items can be dried; a shaking piece is provided, which can shake the items during the drying process to achieve the purpose of uniform drying; the cooking device in the kitchen is used for drying, which solves the problem of difficulty in drying towels and other items in the kitchen, can be sterilized and disinfected, and does not require the setting of separate equipment, saving users' costs and improving the utilization rate of cooking devices. It is easy to operate, automates drying and sterilization, is intelligent, and saves users' time.

[0019] According to an embodiment of the present disclosure, the present invention includes:

[0020] A semiconductor refrigeration component is provided outside the inner container and located in the box shell cavity, and the semiconductor refrigeration component includes a cold end surface and a hot end surface;

[0021] A condensation channel is formed in the condensation tube, which connects the inner tank cavity and the exhaust cavity; the condensation tube is arranged on the cold end surface, and the condensation tube is arranged on the cold end surface. The semiconductor refrigeration component can be used to condense high-temperature moisture to avoid excessive temperature and moisture of the gas discharged into the shell cavity, avoid the use of other condensation methods with more complex structures, and have lower costs; and after the condensed water flows back into the inner tank cavity, the water can be reused to save resources.

[0022] According to an embodiment of the present disclosure, the condenser includes several first condenser tubes, and the several first condenser tubes are arranged on the cold end surface at intervals along the first direction. The several first condenser tubes are connected end to end in sequence to increase the condensation path and improve the condensation effect.

[0023] According to an embodiment of the present disclosure, the present invention includes:

[0024] A filter housing is provided in the housing cavity and outside the inner tank; a filter element placement cavity is formed in the filter housing, an air outlet is formed on the filter housing, the filter element placement cavity is communicated with the housing cavity through the air outlet; the filter element placement cavity is communicated with the exhaust cavity;

[0025] A filter element is arranged in the filter element placement cavity, and the filter element includes a filter mesh;

[0026] The second driving motor drives the first fan to rotate, so that the air in the inner chamber flows into the exhaust chamber, and then the air in the exhaust chamber passes through the filter and is discharged into the box shell chamber through the air outlet.

[0027] The filter shell and filter element can filter the hair debris generated during the drying process to prevent the hair debris from being discharged and causing air pollution.

[0028] According to an embodiment of the present disclosure, a filter cavity is formed in the filter element, one end of the filter cavity is provided with a first opening, and the filter cavity is communicated with the exhaust cavity through the first opening;

[0029] The second drive motor drives the first fan to rotate, so that the air in the inner chamber flows into the filter chamber through the exhaust chamber and the first opening, and then the air in the filter chamber passes through the filter screen and is discharged into the box shell chamber through the air outlet.

[0030] The filter cavity and the first opening are provided so that air can enter the filter element and then be discharged, and the discharged gas passes through the filter element, thereby improving the filtering effect.

[0031] According to an embodiment of the present disclosure, the exhaust cavity is formed in the filter housing to facilitate the placement of the first fan.

[0032] According to an embodiment of the present disclosure, the shaking member includes a shaking plate provided in the drying chamber, and a shaking plate hole penetrating the shaking plate is formed on the shaking plate.

[0033] Providing shaking plate holes on the shaking plate can enhance the air flow at the contact point between the items to be dried and the shaking plate, improve the drying effect at the contact point between the items to be dried and the shaking plate, make the items dry more evenly, and avoid slow drying in some areas.

[0034] According to an embodiment of the present disclosure, a drying bin through hole is formed on the drying bin, and the drying bin through hole connects the drying cavity and the inner tank cavity, thereby enabling the drying cavity and the inner tank cavity to be connected while forming a space for placing dried items.

[0035] According to an embodiment of the present disclosure, the inner liner includes an inner liner rear plate, which is arranged at the rear end of the inner liner; an inner liner cavity air outlet hole is formed on the inner liner rear plate and penetrates the inner liner rear plate in the front-to-back direction of the box shell, and the inner liner cavity is connected with the exhaust cavity through the inner liner cavity air outlet hole, so as to facilitate the discharge of air in the inner liner cavity.

[0036] According to an embodiment of the present disclosure, the inner liner includes an inner liner side plate provided on the side of the inner liner, and an inner liner cavity air inlet hole is formed on the inner liner side plate, and the inner liner cavity air inlet hole connects the inner liner cavity and the box shell cavity; the inner liner cavity air inlet hole has at least one;

[0037] The smallest cross-section of the air inlet hole of the inner liner perpendicular to its extension direction is the air inlet surface, the area of ​​the air inlet surface is the air inlet area, and the sum of the air inlet areas of all the air inlet holes of the inner liner is the total air inlet area;

[0038] The minimum cross-section of the air outlet hole in the inner tank cavity perpendicular to its extension direction is the air outlet surface, and the area of ​​the air outlet surface is the air outlet area. The total air inlet area is smaller than the air outlet area, which can gradually reduce the pressure in the inner tank cavity during the drying process, speed up the drying process, and shorten the drying time.

[0039] According to an embodiment of the present disclosure, a cooking device is further provided, comprising:

[0040] a box shell, wherein a box shell cavity is formed;

[0041] An inner liner is arranged in the box shell cavity; an inner liner cavity is formed in the inner liner; and an inner liner cavity opening is provided at the front end of the inner liner cavity;

[0042] A door, used to open or close the inner chamber opening;

[0043] A heater, used for heating the air in the inner chamber;

[0044] A drying chamber is formed in the drying chamber; the drying chamber is detachably mounted in the inner chamber;

[0045] a shaking piece, at least partially disposed in the drying chamber;

[0046] A first drive motor is located in the housing cavity and includes a first output shaft;

[0047] When the drying chamber is installed in the inner chamber, the drying chamber is communicated with the inner chamber, and the shaking piece is connected to the first output shaft, and the first driving motor drives the shaking piece to rotate in the drying chamber;

[0048] The shaking part includes a shaking plate arranged in the drying chamber, and a shaking plate hole is formed on the shaking plate and passes through the shaking plate; the shaking plate hole is provided on the shaking plate, which can enhance the air flow at the contact point between the items to be dried and the shaking plate, improve the drying effect at the contact point between the items to be dried and the shaking plate, make the items dry more evenly, and avoid local slow drying. BRIEF DESCRIPTION OF THE DRAWINGS

[0049] Figure 1 is a front view of a partial structure of a cooking device according to an embodiment of the present application;

[0050] Figure 2 is a side view of a partial structure of a cooking device according to an embodiment of the present application;

[0051] Figure 3 is a partial structural perspective diagram of a cooking device according to an embodiment of the present application;

[0052] Figure 4 This is a structural diagram of an inner liner according to an embodiment of the present application;

[0053] Figure 5 is a partial structural diagram of a cooking device according to an embodiment of the present application;

[0054] Figure 6 is a partial structural diagram of a cooking device from another perspective according to an embodiment of the present application;

[0055] Figure 7 is a partial structural diagram of a cooking device from another perspective according to an embodiment of the present application;

[0056] Figure 8 is a partial structural cross-sectional view of a cooking device according to an embodiment of the present application;

[0057] Figure 9 is an exploded view of a partial structure of a cooking device according to an embodiment of the present application;

[0058] Figure 10 is a partial structural diagram of a cooking device from another perspective according to an embodiment of the present application;

[0059] Figure 11 is an exploded view of a partial structure of a cooking device according to an embodiment of the present application from another perspective;

[0060] Figure 12 is an exploded view of a partial structure of a cooking device according to an embodiment of the present application from another perspective;

[0061] Figure 13 is a partial structural diagram of a cooking device from another perspective according to an embodiment of the present application;

[0062] Figure 14is a partial structural diagram of a cooking device from another perspective according to an embodiment of the present application;

[0063] Figure 15 is an exploded view of a partial structure of a cooking device according to an embodiment of the present application from another perspective;

[0064] Figure 16 yes Figure 15 A magnified view of the local structure at center A;

[0065] Figure 17 is a partial structural diagram of a cooking device from another perspective according to an embodiment of the present application;

[0066] Figure 18 is a partial structural diagram of a cooking device from another perspective according to an embodiment of the present application;

[0067] Figure 19 is a partial structural cross-sectional view of the cooking device from another perspective according to an embodiment of the present application;

[0068] Figure 20 is a partial structural diagram of a cooking device from another perspective according to an embodiment of the present application;

[0069] Figure 21 is a partial structural diagram of a cooking device from another perspective according to an embodiment of the present application;

[0070] Figure 22 yes Figure 21 A magnified view of the local structure at point B in the middle;

[0071] Figure 23 This is a partial structural diagram of the cooking device from another perspective according to an embodiment of the present application.

[0072] In the above figures: the cooking device 100; the box shell l; the box shell cavity 11; the inner container 2; the inner container cavity 21; the inner container cavity opening 211; the inner container back plate 22; the first through hole of the back plate 221; the inner container cavity air outlet hole 222; the inner container top plate 23; the inner container bottom plate 24; the first side plate 25; the second side plate 26; the inner container side plate 27; the inner container cavity air inlet hole 271; the box door 3; the drying bin 41; the drying cavity 411; the bin base 412; the base cavity 4121; the base cavity opening 41211; the base front end plate 4122; the base rear end plate 4123; the base notch 41231; the first limiting groove 4124; the bin top cover 413; the top cover cavity 4131; the top cover cavity opening 41311; the first through hole of the drying bin 4132; the top cover front end plate 4133; the top cover rear end plate 4134; the first drive motor 42; the first output shaft 421; the shaking member 43; the shaking plate 431; the shaking plate hole 4311; the first connecting rod 432; the second connecting rod 433; the first through hole of the connecting rod 4331; the third connecting rod 434; the first connecting piece 44; the first connecting part 441; the shaft part 4411; the clamping rib 4412; the second connecting part 451; the hole part 4511; the clamping hole 4452; the second connecting piece 45; the mounting box 46; the mounting box cavity 461; the first temperature sensor 47; the first control board 48; the second heater 52; the second heating plate 521; the first through hole of the heating plate 5211; the filter shell 61; the exhaust cavity 611; the filter member placing cavity 612; the air outlet hole 613; the first open hole 614; the first insertion hole 615; the first limiting part 616; the first fan 62; the second drive motor 63; the condensation pipe 64; the condensation passage 641; the condensation passage air inlet 6411; the air inlet end face of the condensation pipe 642; the first condensation pipe 643; the semiconductor refrigeration member 65; the cold end face 651; the hot end face 652; the filter member 66; the filter cavity 661; the first open hole 662; the first heat dissipation member 67; the first heat dissipation plate 671; the first end face 6711; the second end face 6712; the second heat dissipation plate 672; the sliding rail 68; the first sliding plate 681; the second sliding plate 682; the support frame 69; the first cover 70; the drying bin placing space 691; the first limiting rod 692; the second limiting rod 693. DETAILED DESCRIPTION

[0073] In order to make the purpose and implementation of the present application clearer, the exemplary implementation of the present application will be described clearly and completely below in combination with the drawings in the exemplary embodiments of the present application. Obviously, the described exemplary embodiments are only a part of the embodiments of the present application, rather than all the embodiments of the present application.

[0074] It should be noted that the brief description of the terms in the present application is only for the convenience of understanding the subsequently described embodiments, and is not intended to limit the embodiments of the present application. Unless otherwise stated, these terms should be understood according to their ordinary and general meanings.

[0075] In the specification and claims of this application and the accompanying drawings, the terms "first," "second," "third," etc. are used to distinguish similar or similar objects or entities, and are not necessarily intended to limit a particular order or sequence, unless otherwise noted. It should be understood that the terms used in this manner are interchangeable under appropriate circumstances.

[0076] The terms "comprise," "include," and "have," and any variations thereof, are intended to cover but not exclude inclusion; for example, a product or device comprising a list of components is not necessarily limited to all the components expressly listed but may include other components not expressly listed or inherent to such product or device.

[0077] The present application proposes a cooking device 100 , which will be described below with reference to the accompanying drawings.

[0078] refer to Figure 1-Figure 3 The cooking device 100 may include a housing 1. The housing 1 may be used to protect components located inside the housing 1.

[0079] The height direction of the housing 1 can be from the bottom to the top of the housing 1. The housing 1 can have a length direction. The length direction of the housing 1 can be from one side end to the other side end of the housing 1. The housing 1 can have a front-to-back direction. The front of the housing 1 can be the side of the housing 1 facing the user. Among the height direction, length direction, and front-to-back direction of the housing 1, any two directions can be perpendicular to each other.

[0080] refer to Figure 2-Figure 4 The cooking device 100 may include an inner pot 2. An inner pot cavity 21 may be formed in the inner pot 2. A front end of the inner pot cavity 21 may be provided with an inner pot cavity opening 211. A housing 1 may be formed in the housing 1. The inner pot may be disposed within the housing cavity. The inner pot 2 may include an inner pot rear panel 22. The inner pot rear panel 22 may be disposed at a rear end of the inner pot.

[0081] refer to Figure 2-Figure 4 The cooking device 100 may include a door 3. The door 3 may be movably connected to the front side of the housing. The door 3 may be rotatably connected to the housing 1. The door 3 may be located at the front end of the inner pot cavity opening and is used to open or close the inner pot cavity opening 211.

[0082] In the present application, the cooking device may include a heater. The heater may be used to heat the air in the inner pot cavity. The heater may include a first heater. The first heater may be at least partially disposed in the inner pot cavity.

[0083] refer to Figure 4-Figure 7The inner liner may include an inner liner top plate 23. The inner liner top plate 23 may be located at the top of the inner liner. The first heater includes a first heating unit. The first heating unit may be located within the inner liner. The first heating unit may be located below the inner liner top plate, and the first heating unit may be located at the top of the inner liner cavity. The first heating unit may be a heating tube.

[0084] refer to Figure 4-Figure 7 The inner liner rear panel 22 may be formed with a first through-hole 221. The heater may include a second heater 52. The second heater 52 may be installed in the first through-hole of the rear panel. The second heater 52 may be an electromagnetic heater. Under the electromagnetic induction of the electromagnetic heater, the second heater 52 may generate heat, thereby heating the air in the inner liner cavity. The second heater may include a second heating plate 521. The second heating plate may be installed in the first through-hole of the rear panel. The second heating plate may be made of microcrystalline glass.

[0085] refer to Figure 4-Figure 7 The inner container may include an inner container bottom plate 24. The inner container bottom plate may be located at the bottom end of the inner container. The heater may include a third heater. The third heater may be located outside the inner container or inside the housing. The third heater may be at least partially located below the inner container bottom plate. The third heater may include a third heating unit. The third heating unit may be located below the inner container bottom plate. The third heating unit may be a heating tube.

[0086] In this application, reference is made to Figure 7-Figure 8 The cooking device may include a drying chamber 41. A drying cavity 411 may be formed within the drying chamber 41. The drying chamber 41 may be removably mounted within the inner chamber. When the drying chamber 41 is mounted within the inner chamber, the drying cavity 411 may communicate with the inner chamber. Items to be dried may be placed within the drying cavity, and the operation of the heater may increase the air temperature within the inner chamber, thereby drying the items to be dried.

[0087] refer to Figures 8-10 The drying chamber 41 may include a chamber base 412. The drying chamber 41 may include a chamber top cover 413. The chamber top cover 413 is connected to the chamber base 412 to define a drying chamber 411. The chamber top cover 413 is connected to the top of the chamber top cover.

[0088] The drying chamber 411 is formed within the base 412. A base chamber opening 41211 is defined at the top of the base chamber. A top chamber opening 4131 is defined within the top cover 413. A top chamber opening 41321 is defined at the bottom of the top cover. The bottom end of the top cover can be inserted into the base chamber, and the top cover and base define a drying chamber 411.

[0089] In this application, reference is made to Figures 8-10The drying chamber 4l is provided with a drying chamber first through hole 4132. When the drying chamber is installed in the inner container cavity, the drying cavity and the inner container cavity can be communicated through the drying chamber first through hole, and the space for placing the drying articles can be formed while the drying cavity and the inner container cavity are communicated. The drying chamber first through hole can be formed on the chamber top cover. The drying chamber first through hole can have a plurality of holes.

[0090] In the present application, the chamber top cover can include a top cover front end plate 4133. The top cover front end plate can be located at the front end of the chamber top cover. The chamber top cover can include a top cover rear end plate 4134. The top cover rear end plate can be located at the rear end of the chamber top cover. The top cover front end plate can be provided with a drying chamber first through hole. The top cover rear end plate can be provided with a drying chamber first through hole.

[0091] In the present application, with reference to Figures 8-11 The cooking device 100 can include a first driving motor 42. The first driving motor 42 can include a first output shaft 421. The rear end of the first driving motor can be located behind the inner container rear plate, and the rear end of the first driving motor can be located in the box shell cavity.

[0092] The first output shaft 421 can be inserted in the inner container cavity. The first output shaft is inserted in the inner container cavity through the rear plate first through hole. The first output shaft is inserted in the rear plate first through hole 211.

[0093] In the present application, when the cooking device includes a second heating plate, the front end of the first output shaft passes through the second heating plate and is located on the side of the second heating plate close to the front end of the inner container.

[0094] The second heating plate can be provided with a heating plate first through hole. The first output shaft is inserted in the rear plate first through hole and the heating plate first through hole.

[0095] In the present application, the cooking device can include a shaking member 43. The shaking member 43 can be at least partially disposed in the drying cavity. When the drying chamber is installed in the inner container cavity, the shaking member is connected with the first output shaft, and the first driving motor drives the shaking member to rotate in the drying cavity. When the shaking member rotates, the articles placed in the drying cavity can be shaken, so that the articles are dried more uniformly.

[0096] In the present application, with reference to Figures 8-11 The shaking member 43 can include a shaking plate 431. The shaking plate can be disposed in the drying cavity. The shaking plate can be provided with a shaking plate hole 4311, which can penetrate the shaking plate 431. The shaking plate hole can enhance the air flow at the contact between the articles to be dried and the shaking plate, improve the drying effect at the contact between the articles to be dried and the shaking plate, so that the articles are dried more uniformly and avoid local over-drying.

[0097] The direction in which the holes extend in the diffuser plate is different from the direction in which the diffuser plate extends at the location of the holes. The holes in the diffuser plate may extend through the diffuser plate in the thickness direction of the diffuser plate. The length direction of the diffuser plate may be parallel to the front-to-back direction of the box shell. The direction in which the holes extend in the diffuser plate may be perpendicular to the front-to-back direction of the box shell.

[0098] In the present application, the first drive motor can rotate forward or reverse to avoid the phenomenon of items getting stuck, and setting the shaking parts to rotate forward and reverse can better achieve uniform drying.

[0099] In this application, reference is made to Figures 8-11 The cooking device may include a first connecting member 44. The first connecting member 44 may be disposed in the inner chamber. The first connecting member 44 is located outside the drying chamber.

[0100] The cooking device 100 may include a second connecting member 45. The second connecting member 45 may be located in the inner chamber or outside the drying chamber.

[0101] The second connecting member is connected to the loose member. One end of the second connecting member is connected to the loose member, the other end of the second connecting member is connected to one end of the first connecting member, and the other end of the first connecting member is connected to the first output shaft. The first drive motor drives the loose member to rotate through the first and second connecting members.

[0102] The first connecting member 44 may include a first connecting portion 441, and the second connecting member may include a second connecting portion 451. The first connecting member may be connected to the second connecting member through the first connecting portion and the second connecting portion.

[0103] Among the first connecting part and the second connecting part, one is a connecting hole and the other is a connecting shaft. The connecting shaft and the connecting hole are adapted to each other and the connecting shaft is inserted into the connecting hole. When one of the connecting shaft and the connecting hole rotates, the other will be driven to rotate, so that the rotation can be transferred from the first connecting member to the second connecting member, so that the first connecting member and the second connecting member rotate synchronously.

[0104] refer to Figure 12 The connecting shaft may include a shaft portion 4411 and a clamping rib 4412. The clamping rib is connected to the outer peripheral wall of the shaft portion. There may be multiple clamping ribs, which may be spaced apart along the circumference of the shaft portion. The clamping ribs may extend in the same direction as the shaft portion.

[0105] refer to Figure 12 The connection hole may include a hole portion 4511, and the connection hole may include a latch hole 4452. The latch hole 4452 is connected to the side wall of the hole portion. There may be multiple latch holes 4452, and the multiple latch holes 4452 may be spaced apart along the circumference of the hole portion. The latch holes 4452 may extend in the same direction as the hole portion.

[0106] In this application, reference is made to Figures 8-12 The shaking member 43 may include a first connecting rod 432. The shaking member 43 may include a second connecting rod 433. The first connecting rod may be connected to one end of the shaking plate. The second connecting member may be connected to the other end of the shaking plate. The first connecting rod may be rotatably connected to the drying chamber. The first connecting member may be rotatably connected to the drying seat.

[0107] The shakeout member 43 may include a third connecting rod 434. The third connecting rod connects the second connecting rod and the second connecting member.

[0108] In this application, reference is made to Figure 13 The cooking device may include an installation box 46. The installation box may be connected to the drying chamber. An installation box cavity 461 is formed in the installation box.

[0109] refer to Figure 13 The cooking device may include a first temperature sensor 47. The first temperature sensor may be disposed on the mounting box 44. One end of the first temperature sensor 47 passes through the mounting box and is disposed in the drying chamber.

[0110] refer to Figure 13 The cooking device may include a first control board 48. The first control board 48 may be disposed within the mounting box cavity. The other end of the first temperature sensor 47 is electrically connected to the first control board 48. The first temperature sensor 45 is used to detect the temperature within the drying chamber, thereby facilitating control of the drying time within the drying chamber and the rotation speed of the shaking parts.

[0111] In the present application, the first control board 48 may include a wireless transmission module. A controller may be provided in the housing, and the controller is electrically connected to the first drive motors.

[0112] The first control board 48 can transmit the temperature detected by the first temperature sensor to the controller in the box shell through the wireless transmission module, thereby facilitating the adjustment and control of the operation of components such as the first drive motor.

[0113] In the present application, a first mounting hole can be formed on the mounting box, and the first mounting hole can connect the mounting box cavity and the drying cavity. The first temperature sensor can be arranged in the first mounting hole of the mounting box.

[0114] refer to Figure 14 The second connecting rod may be formed with a first connecting rod through-hole 4331. The first connecting rod through-hole may penetrate the second connecting rod. The front end of the first temperature sensor may pass through the first connecting rod through-hole and be located on a side of the second connecting rod near the front end of the inner container.

[0115] In the present application, a power supply battery can be arranged in the cavity of the mounting box, and the power supply battery is electrically connected with the first control panel, and the power supply battery is used to supply power to the first control panel and the first temperature sensor.

[0116] In the present application, the shaking member can be inserted into the mounting box, and the shaking member can rotate relative to the mounting box. The third connecting rod is inserted into the mounting box, and the third connecting rod can rotate relative to the mounting box. The second connecting member can be inserted into the mounting box, and the second connecting member is connected with the third connecting rod, and the second connecting member and the third connecting rod rotate synchronously.

[0117] In the present application, referring to Figure 15-16 , the bottom seat can include a front end plate 4122 of the bottom seat. The front end plate is located at the front end of the bottom seat. The bottom seat can include a rear end plate 4123 of the bottom seat. The rear end plate can be located at the rear end of the bottom seat.

[0118] The shaking member can be rotatably connected with the front end plate 4122 of the bottom seat. The mounting box is fixed on the rear end plate 4123 of the bottom seat. The rear end plate is formed with a bottom seat gap 4123l for mounting the mounting box. The mounting box is located in the bottom seat gap 4123l. The mounting box is provided with a first slot 462 of the mounting box, and the rear end plate 4123 of the bottom seat can be inserted into the first slot of the mounting box.

[0119] In the present application, referring to Figure 17-Figure 19 , the cooking device can include an exhaust cavity 611. The exhaust cavity can be arranged in the box shell. And the exhaust cavity can be located outside the inner container. The exhaust cavity can be in communication with the inner container cavity. And the exhaust cavity can be in communication with the box shell cavity.

[0120] Referring to Figure 17-Figure 19 , the cooking device can include a first fan 62. The first fan can be arranged in the exhaust cavity. The cooking device can include a second drive motor 63. The second drive motor can be arranged in the box shell cavity. The second drive motor can be arranged outside the inner container. The output shaft of the second drive motor can be connected with the first fan, and the second drive motor drives the first fan to rotate, so that the air in the inner container cavity flows into the exhaust cavity and then is discharged into the box shell cavity, which can make the generated humid hot gas from the inner container cavity to the box shell cavity.

[0121] The drying bin is provided with a drying cavity, the articles to be dried can be placed in the drying cavity to complete drying; the first fan and the second drive motor are provided, which can discharge the moisture in the drying cavity, so that the articles can complete drying; the shaking member is provided, which can shake during the drying process to achieve uniform drying; the kitchen cooking device is used for drying, which solves the problem of drying towels and other articles in the kitchen, can sterilize and disinfect, and does not need to set up a separate device, saves the cost of the user, improves the utilization rate of the cooking device, is convenient to operate, automatically dries and sterilizes, intelligently improves, and saves the time of the user.

[0122] In this application, reference is made to Figure 20 The cooking device may include a condenser tube 64. A condensation channel 641 may be formed in the condenser tube. The condensation channel may connect the inner chamber and the exhaust chamber.

[0123] refer to Figure 20 The cooking device may include a semiconductor refrigeration element 65. The semiconductor refrigeration element is disposed outside the inner container and within the shell cavity. The semiconductor refrigeration element may include a cold end surface 651. The semiconductor refrigeration element may include a hot end surface 652. A condenser tube is disposed on the cold end surface, enabling the semiconductor refrigeration element to condense high-temperature, humid air, thereby preventing excessively high temperatures and humidity levels in the gas discharged into the shell cavity. This avoids the use of other more complex condensation methods and results in lower costs. Furthermore, after the condensed water flows back into the inner container cavity, it can be reused, thus conserving resources.

[0124] In this application, reference is made to Figure 3 The inner liner rear plate may be formed with an inner liner cavity air outlet 222. The inner liner cavity air outlet 222 extends through the inner liner cavity rear plate in the front-to-back direction of the housing. The condensation channel is connected to the inner liner cavity through the inner liner cavity air outlet 222, facilitating the discharge of air from the inner liner cavity.

[0125] refer to Figures 18-20 The condenser tube includes a condenser tube air inlet end surface 642. The condensation channel 641 includes a condensation channel air inlet 6411. The condensation channel air inlet is formed on the condenser tube air inlet end surface. The condenser tube air inlet end surface abuts against the inner tank rear panel. The condensation channel air inlet 6411 is arranged opposite to the inner tank cavity air outlet.

[0126] In this application, reference is made to Figures 18-20 The condenser includes a first condenser 643. There are several first condenser tubes. Several first condenser tubes can be arranged on the cold end surface at intervals along the first direction. Several first condenser tubes are connected end to end in sequence to increase the condensation path and improve the condensation effect. The first condenser tube extends along the second direction. The first direction and the second direction can be perpendicular. The first direction can be parallel to the length direction of the box shell, and the second direction can be parallel to the height direction of the box shell. Alternatively, the first direction can be parallel to the height direction of the box shell, and the second direction can be parallel to the length direction of the box shell.

[0127] The condenser 64 may include a second condenser 644. There may be a plurality of second condenser 644. The second condenser 644 is connected to two adjacent first condenser tubes.

[0128] In the present application, the cooking device may include a filter housing 61. The filter housing is disposed within the housing cavity and is positioned outside the inner pot. A filter element placement cavity 612 may be formed within the filter housing. An air outlet 613 may be formed in the filter housing. The filter element placement cavity 612 may communicate with the housing cavity through the air outlet. The filter element placement cavity is also connected to the exhaust cavity.

[0129] Refer to Figure 18- Figure 20 The cooking device may include a filter 66. The filter 66 may be disposed in the filter placement cavity. The filter includes a filter screen. The filter screen can filter hair debris.

[0130] The second drive motor drives the first fan to rotate, causing air in the inner chamber to flow into the exhaust chamber. The air in the exhaust chamber then passes through the filter and is discharged into the housing chamber through the air outlet. The filter housing and filter element can filter hair debris generated during the drying process to prevent hair debris from being discharged and causing air pollution.

[0131] In this application, reference is made to Figures 18-20 A filter cavity 661 is formed in the filter element. One end of the filter cavity is provided with a first opening 662. The filter cavity is communicated with the exhaust cavity through the first opening.

[0132] The second drive motor drives the first fan to rotate, causing air in the inner chamber to flow through the exhaust chamber and the first opening into the filter chamber. The air in the filter chamber then passes through the filter screen and is discharged into the housing chamber through the air outlet. The filter chamber and the first opening allow air to enter the filter element and then be discharged, allowing the discharged gas to pass through the filter element, thereby improving the filtering effect.

[0133] In the present application, an exhaust cavity is formed in the filter housing to facilitate placement of the first fan. A first communication port is formed on the filter housing to connect the exhaust cavity with the filter element placement cavity.

[0134] refer to Figures 18-20 The filter housing has a first opening 614 formed therein. The first opening connects the filter housing cavity to the space outside the filter housing. The filter is placed in the filter housing cavity through the first opening. A first opening 662 is provided at an end of the filter away from the first opening 614.

[0135] Refer to Figure 18- Figure 20 The cooking device may include a first cover 70, which may be connected to the filter housing, the first cover sealing the first opening, and the first cover confining the filter element within the filter element placement cavity.

[0136] In the present application, the filter element includes a filter element body 663, one end of which is formed with a first opening. The filter screen is provided on the filter element body and can surround at least the side wall of the filter element body.

[0137] A second opening is formed at the other end of the filter body. Impurities such as hair debris within the filter cavity can be removed through the first opening. Impurities such as hair debris within the filter cavity can also be removed through the second opening. The filter element may include a filter cover that can be connected to the filter body and seal the second opening.

[0138] The filter housing is formed with a first insertion hole that connects the exhaust cavity with the space outside the filter housing. The output shaft of the second drive motor is inserted into the exhaust cavity from outside the filter housing through the first insertion hole, and the output shaft of the second drive motor is connected to the first fan.

[0139] In this application, reference is made to FIG. 18- Figure 20 The filter housing 61 may include a first limiting portion 616. The first limiting portion may be formed on an inner side wall of the filter housing, and the first limiting portion limits the filter element to prevent the filter element from colliding with the first fan.

[0140] In this application, reference is made to Figures 18-20 The cooking device may include a first heat sink 67. The first heat sink is disposed within the housing. The first heat sink may include a first heat sink plate 671. The first heat sink plate includes a first end surface 6711 and a second end surface 6712 disposed opposite each other. The first end surface may be in contact with the hot end surface of the semiconductor refrigeration element.

[0141] The first heat sink may include a second heat sink 672. There may be a plurality of second heat sinks, which are spaced apart along a third direction. The third direction may be perpendicular to the thickness direction of the first heat sink.

[0142] In this application, reference is made to Figure 20-23 The inner container may include a first side panel 25. The first side panel is provided at one end of the inner container in the length direction of the box shell. The inner container may include a second side panel 26. The second side panel 26 may be provided at the other end of the inner container in the length direction of the box shell.

[0143] refer to Figure 20-23 The cooking device may include at least one pair of slide rails 68. The slide rails are arranged in the inner cavity of the cooking pot. Among the two paired slide rails 68, one is arranged on the first side plate and the other is arranged on the second side plate.

[0144] The slide rail may include a first slide 681. The first slide is fixedly connected to the inner container. The slide rail may include a second slide 682. The second slide may be slidably connected to the first slide.

[0145] refer to Figure 20-23The cooking device may include a support frame 69. The support frame may be disposed in the inner cavity of the cooking pot. One end of the support frame may be disposed on the second slide of the first side panel, and the other end of the support frame may be disposed on the second slide of the second side panel. Pushing and pulling the support frame may cause the second slide to slide relative to the first slide.

[0146] refer to Figure 20-23 The support frame is formed with a drying bin placement space 691. The drying bin can be located within the drying bin placement space. The support frame includes a first limiting rod 692 located at the rear end of the bin base. The support frame also includes a second limiting rod 693. A first limiting groove 4124 is formed at the front end of the bin base. The second limiting rod is inserted into the first limiting groove, clamping the bin base between the first and second limiting rods. Multiple first limiting rods may be provided.

[0147] Several pairs of slides can be arranged in sequence in the height direction of the box shell. The support frame can be placed on one of the pairs of slides.

[0148] In this application, reference is made to Figure 20-23 The bin base may include at least one pair of first handles 4125, and the two paired first handles may be provided on both sides of the bin base in the length direction of the box shell. The bin base may be placed in the drying bin placement space by holding the first handles.

[0149] The bin top cover may include a second handle 4135. The second handle 4135 may be located on the top of the bin top cover. The bin top cover may be placed on the bin base by holding the second handle.

[0150] When drying, the box door can be opened, the drying bin can be pulled out through the support frame and the slide rail, the bin top cover can be taken off the bin base through the second handle, and then the items to be dried can be placed in the bin base, and the bin top cover can be placed on the bin base. The bin top cover can be inserted in the bin base and the weight of the bin top cover can be used to prevent the items from being pushed open during the shaking process.

[0151] In this application, reference is made to Figure 20-23 The inner liner includes an inner liner side panel 27 disposed on the side of the inner liner. An inner liner cavity air inlet hole 271 is formed on the inner liner side panel. The inner liner cavity air inlet hole connects the inner liner cavity with the housing cavity. There is at least one inner liner cavity air inlet hole. The smallest cross-section of the inner liner cavity air inlet hole perpendicular to the direction in which the inner liner cavity air inlet hole extends is the air inlet surface. The area of ​​the air inlet surface is the air inlet area. The sum of the air inlet areas of all inner liner cavity air inlets is the total air inlet area.

[0152] The minimum cross-section of the inner cavity air outlet perpendicular to the direction of extension of the inner cavity air outlet is the air outlet surface, and the area of ​​the air outlet surface is the air outlet area. When the total air inlet area is smaller than the air outlet area, the pressure in the inner cavity can be gradually reduced during the drying process, which can speed up the drying process and shorten the drying time.

[0153] In the present application, the minimum cross-section of the first through hole 4132 of the drying chamber perpendicular to the extension direction of the first through hole of the drying chamber is the windward surface, the area of ​​the windward surface is the windward area, and the windward area is smaller than the air outlet area.

[0154] In the present application, the cooking device may include a second fan. The drying chamber may be removed from the inner chamber, and the second fan may be disposed in the inner chamber, and the second fan may be connected to the first drive motor.

[0155] The cooking device 100 may include a fan cover. After the second fan is connected to the first drive motor, the fan cover may be placed in the inner pot cavity, and then connected to the inner pot. The fan cover may be connected to the rear panel of the inner pot.

[0156] The fan cover and the inner pot rear panel can define a fan cavity. The fan cover can separate the inner pot cavity into a fan cavity and a cooking cavity. The fan cavity is located behind the fan cover. A second fan is disposed in the fan cavity.

[0157] The fan cover may be formed with an air inlet. The air inlet may connect the fan cavity and the cooking cavity. The air inlet may be an inlet for air to flow from the cooking cavity into the fan cavity.

[0158] The fan cover plate may be formed with an air outlet. The air outlet may connect the fan cavity and the cooking cavity. The air outlet may be an outlet for air to flow out of the fan cavity into the cooking cavity.

[0159] The first driving motor can drive the second fan to rotate, so that the air in the cooking cavity flows into the fan cavity through the air inlet and then flows back to the cooking cavity through the air outlet.

[0160] In the present application, the heater may include a fourth heater. The fourth heater may be used to heat the air in the fan cavity. The fourth heater may be at least partially disposed in the fan cavity to heat the air in the fan cavity.

[0161] The fourth heater may include a fourth heating unit. The fourth heating unit is disposed within the fan cavity. The fourth heating unit is disposed at the second fan and may surround the second fan along a circumference thereof. The fourth heating unit may be helically wound into at least two turns.

[0162] The fourth heating unit can heat the air after the air flows out from the centrifugal fan, and the heated air flows back to the cooking cavity through the air outlet.

[0163] In the present application, the cooking device may include a steam generator. The steam generator may be located within the housing. The steam generator may be located outside the inner pot. The steam generator may be located behind the inner pot. The steam generator is used to generate steam to supply steam to the cooking cavity, allowing the cooking device to steam food.

[0164] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present application, rather than to limit them. Although the present application has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent replacements for some or all of the technical features therein. These modifications or replacements do not deviate the essence of the corresponding technical solutions from the scope of the technical solutions of the embodiments of the present application.

[0165] For ease of explanation, the above description has been presented in conjunction with specific embodiments. However, the above exemplary discussion is not intended to be exhaustive or to limit the embodiments to the specific forms disclosed above. Based on the above teachings, various modifications and variations are possible. The above embodiments have been selected and described to better explain the principles and practical applications, thereby enabling those skilled in the art to better utilize the embodiments and various different variations of the embodiments suitable for specific use considerations.

Claims

1. A cooking device, characterized in that: include: a box shell, wherein a box shell cavity is formed; An inner liner is arranged in the box shell cavity; an inner liner cavity is formed in the inner liner; and an inner liner cavity opening is provided at the front end of the inner liner cavity; A door, used to open or close the inner chamber opening; A heater, used for heating the air in the inner chamber; A drying chamber is formed therein; The drying chamber is detachably installed in the inner chamber; a shaking piece, at least partially disposed in the drying chamber; A first drive motor is located in the housing cavity and includes a first output shaft; When the drying chamber is installed in the inner chamber, the drying chamber is communicated with the inner chamber, and the shaking piece is connected to the first output shaft, and the first driving motor drives the shaking piece to rotate in the drying chamber; An exhaust cavity is provided in the box shell cavity and outside the inner liner; the exhaust cavity is communicated with the inner liner cavity and the box shell cavity; a first fan, disposed in the exhaust cavity; A second drive motor is disposed in the housing cavity and outside the inner container; The output shaft of the second drive motor is connected to the first fan, and the second drive motor drives the first fan to rotate so that the air in the inner chamber flows into the exhaust chamber and then is discharged into the shell chamber.

2. The cooking device according to claim 1, wherein: include: A semiconductor refrigeration component is provided outside the inner container and located in the box shell cavity, and the semiconductor refrigeration component includes a cold end surface and a hot end surface; A condensing pipe is formed with a condensing channel therein, and the condensing channel connects the inner chamber and the exhaust chamber; the condensing pipe is arranged on the cold end surface.

3. The cooking device according to claim 2, wherein: The condenser tubes include a plurality of first condenser tubes, which are arranged on the cold end surface at intervals along a first direction, and are connected end to end in sequence.

4. The cooking device according to claim 1, wherein include: A filter housing is provided in the housing cavity and outside the inner container; A filter element placement cavity is formed in the filter housing, an air outlet is formed on the filter housing, and the filter element placement cavity is communicated with the box housing cavity through the air outlet; the filter element placement cavity is communicated with the exhaust cavity; A filter element is arranged in the filter element placement cavity, and the filter element includes a filter mesh; The second driving motor drives the first fan to rotate, so that the air in the inner chamber flows into the exhaust chamber, and then the air in the exhaust chamber passes through the filter and is discharged into the box shell chamber through the air outlet.

5. The cooking device according to claim 4, wherein: A filter cavity is formed in the filter element, one end of the filter cavity is provided with a first opening, and the filter cavity is communicated with the exhaust cavity through the first opening; The second drive motor drives the first fan to rotate, so that the air in the inner chamber flows into the filter chamber through the exhaust chamber and the first opening, and then the air in the filter chamber passes through the filter screen and is discharged into the box shell chamber through the air outlet.

6. The cooking device according to claim 4, wherein: The exhaust cavity is formed in the filter housing.

7. The cooking device according to claim 1, wherein The shaking member includes a shaking plate disposed in the drying chamber, and a shaking plate hole penetrating the shaking plate is formed on the shaking plate.

8. The cooking device according to claim 1, wherein A drying chamber through hole is formed on the drying chamber, and the drying chamber through hole connects the drying cavity and the inner tank cavity.

9. The cooking device according to claim 1, wherein: The inner liner includes an inner liner rear plate, which is arranged at the rear end of the inner liner; an inner liner cavity air outlet is formed on the inner liner rear plate and passes through the inner liner rear plate in the front-to-back direction of the box shell, and the inner liner cavity is connected to the exhaust cavity through the inner liner cavity air outlet.

10. The cooking device according to claim 9, characterized in that The inner liner includes an inner liner side plate provided on the side of the inner liner, and an inner liner cavity air inlet hole is formed on the inner liner side plate, and the inner liner cavity air inlet hole connects the inner liner cavity and the box shell cavity; the inner liner cavity air inlet hole is provided with at least one; The smallest cross-section of the air inlet hole of the inner liner perpendicular to its extension direction is the air inlet surface, the area of ​​the air inlet surface is the air inlet area, and the sum of the air inlet areas of all the air inlet holes of the inner liner is the total air inlet area; The minimum cross-section of the air outlet hole of the inner chamber perpendicular to its extension direction is the air outlet surface, the area of ​​the air outlet surface is the air outlet area, and the total air inlet area is smaller than the air outlet area.

11. A cooking device, characterized in that: include: a box shell, wherein a box shell cavity is formed; An inner liner is arranged in the box shell cavity; an inner liner cavity is formed in the inner liner; and an inner liner cavity opening is provided at the front end of the inner liner cavity; A door, used to open or close the inner chamber opening; A heater, used for heating the air in the inner chamber; A drying chamber is formed therein; The drying chamber is detachably installed in the inner chamber; a shaking piece, at least partially disposed in the drying chamber; A first drive motor is located in the housing cavity and includes a first output shaft; When the drying chamber is installed in the inner chamber, the drying chamber is communicated with the inner chamber, and the shaking piece is connected to the first output shaft, and the first driving motor drives the shaking piece to rotate in the drying chamber; The shaking member includes a shaking plate disposed in the drying chamber, and a shaking plate hole penetrating the shaking plate is formed on the shaking plate.