Cooking device
By introducing oil drainage and heat dissipation components into the steak machine, the problems of overheating of the circuit and oil fume accumulation in the steak machine are solved, achieving effective heat dissipation and oil fume removal, and improving the user experience.
Patent Information
- Application Number
- CN202520753971.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-17
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2035-04-17
AI Technical Summary
Existing steak machines lack heat dissipation and oil drainage structures, leading to circuit overheating and failure, as well as oil fume accumulation, which affects the user experience.
Design a cooking device that includes an oil draining component, a heat dissipation component, and a driving component. The driving component drives the oil draining component and the heat dissipation component to remove oil fumes and dissipate heat, respectively, to prevent the circuit from overheating and to expel oil fumes.
It effectively prevents circuit overheating damage, improves user experience, dissipates heat from circuit components through heat dissipation components, and removes oil fumes through oil drainage components, thereby improving the performance of the device.
Smart Images

Figure CN223873792U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of household kitchen appliances, in particular to a cooking device. BACKGROUND
[0002] Generally, a person needs to have a high level of skill or cooking experience to make a steak in a household. In order to enable a user to make a steak at home, a steak machine appears on the market. In the design process of the steak machine, no heat dissipation structure and oil discharge structure are provided, which results in that the circuit devices and other devices in the steak machine cannot be cooled, so that the circuit overheats and causes the circuit board to fail. In addition, after cooking is completed by using the steak machine, the oil fume in the steak machine cannot be discharged out of the steak machine, which causes the oil fume to accumulate in the steak machine and affects the user experience. CONTENT OF THE UTILITY MODEL
[0003] In order to solve the above technical problems, the utility model discloses a cooking device, which can solve the technical problems that no heat dissipation structure and oil discharge structure are provided in the prior art, which results in that the circuit devices and other devices in the steak machine cannot be cooled, so that the circuit overheats and causes the circuit board to fail, and after cooking is completed by using the steak machine, the oil fume in the steak machine cannot be discharged out of the steak machine, which causes the oil fume to accumulate in the steak machine and affects the user experience.
[0004] In order to achieve the above purpose, the present application provides a cooking device, which comprises an oil discharge assembly, a heat dissipation assembly, a driving assembly and a machine body.
[0005] The machine body is provided with a cooking cavity; the cooking cavity is in communication with the air inlet end of the oil discharge assembly;
[0006] The machine body is provided with a heat dissipation air duct; the position of the heat dissipation air duct corresponds to the position of the device to be cooled of the cooking device; the heat dissipation assembly is arranged in the heat dissipation air duct;
[0007] The driving assembly is drivingly connected with the oil discharge assembly and drivingly connected with the heat dissipation assembly; the driving assembly is used to drive the oil discharge assembly to remove the oil fume in the cooking cavity, and the driving assembly is used to drive the heat dissipation assembly to cool the device to be cooled.
[0008] In a possible embodiment, the machine body comprises an oil discharge cavity; the oil discharge cavity is in communication with the cooking cavity;
[0009] The oil discharge assembly comprises an oil discharge fan; the oil discharge fan is rotatably arranged in the oil discharge cavity;
[0010] The driving assembly is drivingly connected with the oil discharge fan; the oil discharge fan is used to provide flow guide for the gas in the cooking cavity, so that the oil fume in the cooking cavity flows into the oil discharge cavity.
[0011] In a possible implementation, the oil discharging assembly comprises at least one suction accessory;
[0012] The suction accessory is arranged at the connection between the cooking cavity and the oil discharging cavity, or is arranged in the oil discharging cavity; and the suction accessory is used for adsorbing the oil fume in the cooking cavity.
[0013] In a possible implementation, the at least one suction accessory is detachably connected to the machine body.
[0014] In a possible implementation, the machine body comprises an oil discharging air duct.
[0015] The oil discharging air duct is arranged in communication with the oil discharging cavity; and the oil discharging air duct is used for discharging the gas adsorbed by the at least one suction accessory to the outside of the cooking device.
[0016] In a possible implementation, the heat dissipation assembly comprises a heat dissipation fan.
[0017] The heat dissipation fan is rotatably arranged in the heat dissipation air duct; and the heat dissipation fan is used for continuously guiding the air in the heat dissipation air duct, so as to dissipate heat of the device to be cooled.
[0018] In a possible implementation, the driving assembly comprises one driving member.
[0019] The driving member, the heat dissipation assembly and the oil discharging assembly are coaxially arranged; and the driving member is used for synchronously driving the heat dissipation assembly and the oil discharging assembly.
[0020] In a possible implementation, the driving assembly comprises two driving members.
[0021] The two driving members are respectively drivingly connected to the oil discharging assembly and the heat dissipation assembly, and are respectively used for driving the oil discharging assembly and the heat dissipation assembly.
[0022] In a possible implementation, the driving member comprises an electric motor.
[0023] In a possible implementation, the oil discharging assembly and the heat dissipation assembly are arranged in isolation.
[0024] The technical scheme provided by the embodiments has the following technical effects:
[0025] In the embodiments of the present application, the driving assembly can be drivingly connected with the oil removal assembly, and the driving assembly can be drivingly connected with the heat dissipation assembly. The driving assembly is used to drive the oil removal assembly so as to remove the oil fume in the oil fume gas in the cooking cavity through the oil removal assembly, and the driving assembly is used to drive the heat dissipation assembly so as to dissipate heat from the to-be-dissipated device through the heat dissipation assembly. Thus, before, during or after cooking of the cooking device, the gas in the heat dissipation air duct can be guided through the heat dissipation assembly, and then the to-be-dissipated device including the circuit device of the steak machine is dissipated heat, so as to prevent the circuit from overheating and then causing failure of the device which is easy to be damaged in a high-temperature environment such as the circuit board. Meanwhile, the oil fume in the range hood can be removed through the oil removal assembly, so as to improve the user experience. BRIEF DESCRIPTION OF DRAWINGS
[0026] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art and the advantages thereof, the drawings needed to be used in the embodiments or the prior art description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor based on these drawings.
[0027] Figure 1 is a structure schematic of a cooking device provided by an embodiment of the present application Figure 1 ;
[0028] Figure 2 is a structure schematic of a cooking device provided by an embodiment of the present application Figure 2 ;
[0029] Figure 3 is a structure schematic of a cooking device provided by an embodiment of the present application Figure 3 ;
[0030] In the drawings, the reference signs are explained as follows:
[0031] 1-oil removal assembly; 11-oil removal fan; 12-suction member; 2-heat dissipation assembly; 21-heat dissipation fan; 3-driving assembly; 31-driving member; 4-machine body; 41-cooking cavity; 42-heat dissipation air duct; 421-first air outlet; 422-first air duct; 423-second air outlet; 43-oil removal cavity; 44-oil removal air duct; 441-third air outlet; 442-second air duct; 423-fourth air outlet; 45-oil separation cover; 5-to-be-dissipated device. DETAILED DESCRIPTION
[0032] With reference to the drawings and briefly describing the technical schemes in the embodiments of the present application, obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative work fall within the scope of protection of the present application.
[0033] It should be noted that the "one embodiment" or "embodiment" referred to in the specification of the embodiments of the present application means that the specific features, structures or characteristics can be included in at least one implementation of the present application. It should be understood that in the specification and claims of the embodiments of the present application and the above drawings, the terms "upper", "lower", "top", "bottom" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements indicated must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application. The terms "first", "second" are only for descriptive purposes, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the technical features indicated. Therefore, the features limited by "first", "second" can be explicitly or implicitly included one or more of the features. Moreover, the terms "first", "second" and the like are used to distinguish similar objects, and do not necessarily describe a specific order or sequence.
[0034] As shown in Figures 1 to 3 The present application provides a cooking device, which comprises an oil removal assembly 1, a heat dissipation assembly 2, a driving assembly 3 and a body 4. The body 4 can be provided with a cooking cavity 41, which can be arranged in communication with the air inlet end of the oil removal assembly 1, so that the oil fume generated by the cooking cavity 41 can flow into the oil removal assembly 1.
[0035] Optionally, the body 4 is provided with a heat dissipation air duct 42, Figure 1 The position of the heat dissipation air duct 42 corresponds to the position of the device to be cooled 5 of the cooking device, the heat dissipation assembly 2 is arranged in the heat dissipation air duct 42, and the heat dissipation assembly 2 can guide the air in the heat dissipation air duct 42.
[0036] Specifically, the heat dissipation air duct 42 can further include a first air port 421 arranged at the air outlet end of the heat dissipation assembly 2, a first air duct 422 and a second air port 423. Under the guidance of the heat dissipation assembly 2, the air flowing into the body 4 can flow through the first air port 421 into the heat dissipation air duct 422, and after cooling the device to be cooled 5 in the first air duct 422, it flows through the second air port 423 and is discharged to the outside of the body 4.
[0037] The driving assembly 3 can be in driving connection with the oil removal assembly 1, and the driving assembly 3 can be in driving connection with the heat dissipation assembly 2. The driving assembly 3 is used to drive the oil removal assembly 1 so as to remove the oil fume in the oil fume gas in the cooking cavity 41 through the oil removal assembly 1, and the driving assembly 3 is used to drive the heat dissipation assembly 2 so as to dissipate heat for the to-be-dissipated devices 5 through the heat dissipation assembly 2.
[0038] Therefore, before, during or after cooking, the gas in the heat dissipation air duct 42 can be guided by the heat dissipation assembly 2, and then the to-be-dissipated devices 5 including circuit devices of the steak machine are dissipated, so as to prevent the circuit from overheating and causing the devices such as circuit boards which are easy to be damaged in high temperature environment to fail. At the same time, the oil fume in the range hood can be removed through the oil removal assembly 1, so as to improve the user experience.
[0039] It is worth noting that the present application can be provided with one heat dissipation air duct 42, or a plurality of heat dissipation air ducts 42 can be provided according to actual needs. For example, when the present application includes a plurality of to-be-dissipated devices 5 which need to be dissipated, a heat dissipation air duct 42 can be provided at the position of each to-be-dissipated device 5.
[0040] In a possible embodiment, the machine body 4 includes an oil removal cavity 43 which can be in communication with the cooking cavity 41. The oil fume gas in the cooking cavity 41 can flow into the oil removal cavity 43.
[0041] Optionally, the oil removal assembly 1 includes an oil removal fan 11 which can be rotatably arranged inside the oil removal cavity 43. The driving assembly 3 can be in driving connection with the oil removal fan 11, and the driving assembly 3 can drive the oil removal fan 11 to rotate, so that the oil removal fan 11 can guide the gas in the cooking cavity 41, so that the oil fume gas in the cooking cavity 41 is sucked into the oil removal cavity 43.
[0042] In a possible embodiment, the oil removal assembly 1 includes at least one adsorption accessory 12 which can be arranged at the connection between the cooking cavity 41 and the oil removal cavity 43, or the adsorption accessory 12 can be arranged in the oil removal cavity 43, and the adsorption accessory 12 is used to adsorb the oil fume in the cooking cavity 41. The adsorption accessory 12 can be made of activated carbon, porous ceramic, molecular sieve, natural material or nanometer material. The adsorption accessory 12 can be in a grid structure, a pore structure or a filter screen structure. Therefore, the oil fume in the oil fume gas in the cooking cavity 41 can be adsorbed by the adsorption accessory 12, so as to remove the oil fume to obtain clean gas.
[0043] In a possible embodiment, the at least one suction accessory 12 is detachably connected to the body 4. The at least one suction accessory 12 is detachably connected to the body 4, so that the suction accessory 12 is replaceable, and the user can replace the at least one suction accessory 12 when the at least one suction accessory 12 reaches the maximum suction degree or the suction effect of the at least one suction accessory 12 is poor, so that the oil removal assembly 1 can maintain a good suction effect.
[0044] In a possible embodiment, the body 4 comprises an oil removal air duct 44, which can be arranged in communication with the oil removal cavity 43. The oil removal air duct 44 is used to discharge the gas after being adsorbed by the at least one suction accessory 12 to the outside of the cooking device, so that the oil fume can be effectively discharged to the outside of the oil removal cavity 43 after flowing into the oil removal cavity 43, and the overpressure of the oil removal cavity 43 caused by the accumulation of gas in the oil removal cavity 43 is prevented. Figure 1 The oil removal air duct 44 in the figure only shows the approximate position of the oil removal air duct 44.
[0045] Specifically, the oil removal air duct 44 can comprise a third air port 441, a second air duct 442, and a fourth air port 443. The gas after being adsorbed by the at least one suction accessory 12 can flow through the third air port 441, the second air duct 442, and the fourth air port 443 in sequence and then be discharged to the outside of the body 4.
[0046] It is worth noting that the oil removal assembly 1 and the oil removal air duct 44 in the present application also have a heat dissipation function. The oil removal air duct 44 in the present application can also be arranged at the position of the device to be cooled 5. When the cooking cavity in the present application does not need to remove oil, the oil removal assembly 1 can also promote the circulation of the gas in the oil removal air duct 44 to cool the device to be cooled 5.
[0047] In a possible embodiment, the heat dissipation assembly 2 comprises a heat dissipation fan 21, which can be rotatably arranged inside the heat dissipation air duct 42. The heat dissipation fan 21 is used to provide continuous air flow to the air in the heat dissipation air duct 42, so as to cool the device to be cooled 5.
[0048] Optionally, the heat dissipation air duct 42 can be provided with a heat dissipation air inlet end and a heat dissipation air outlet end at both ends. The heat dissipation air inlet end and the heat dissipation air outlet end can be arranged on the outer surface of the body 4. The external air can flow into the heat dissipation air duct 42 from the heat dissipation air inlet end, cool the device to be cooled 5 in the heat dissipation air duct 42, and then flow out of the heat dissipation air duct 42 from the heat dissipation air outlet end. The heat dissipation air inlet end and the heat dissipation air outlet end can each comprise at least one air port.
[0049] In a possible embodiment, the driving assembly 3 comprises a driving member 31. The driving member 31 is coaxially arranged with the heat dissipation assembly 2 and the oil removal assembly 1. The driving member 31 is used to synchronously drive the heat dissipation assembly 2 and the oil removal assembly 1.
[0050] Specifically, the driving member 31 can include an output end, the heat dissipation assembly 2 includes a heat dissipation fan 21, the oil discharging assembly 1 includes an oil discharging fan 11, the output end and the heat dissipation fan 21 and the oil discharging fan 11 are coaxially arranged, the output end drives the heat dissipation fan 21 and the oil discharging fan 11 to rotate synchronously, so that the heat dissipation assembly 2 and the oil discharging assembly 1 work synchronously.
[0051] In a possible embodiment, the driving assembly 3 includes two driving members 31. The two driving members 31 are respectively and drivingly connected with the oil discharging assembly 1 and the heat dissipation assembly 2, and the two driving members 31 are respectively used for driving the oil discharging assembly 1 and the heat dissipation assembly 2. The two driving members 31 can be respectively used for driving the oil discharging assembly 1 or the heat dissipation assembly 2, so as to drive the oil discharging assembly 1 alone when it is needed to remove the oil fume in the cooking cavity 41, and drive the heat dissipation assembly 2 alone when it is needed to dissipate heat for the heat dissipation device 5.
[0052] In a possible embodiment, the driving member 31 includes a motor. The motor can include an output shaft, the heat dissipation assembly 2 can include a heat dissipation fan 21, the oil discharging assembly 1 can include an oil discharging fan 11, the output shaft can be coaxially arranged and drivingly connected with the heat dissipation fan 21 or the oil discharging fan 11, so as to drive the heat dissipation fan 21 or the oil discharging fan 11 to rotate.
[0053] In a possible embodiment, the oil discharging assembly 1 and the heat dissipation assembly 2 are isolatedly arranged. The oil discharging assembly 1 can be isolated from the heat dissipation assembly 2, so that the oil discharging assembly 1 and the heat dissipation assembly 2 are located in different cavities respectively, and the sealing performance of the oil discharging assembly 1 and the heat dissipation assembly 2 is ensured. Specifically, the machine body 4 can include an oil isolation cover 45, the oil discharging assembly 1 can be arranged between the oil isolation cover 45 and the cooking cavity 41, and the heat dissipation assembly 2 can be arranged on the other side of the oil isolation cover 45, the oil isolation cover 45 is used for isolating the oil discharging assembly 1 and the heat dissipation assembly 2.
[0054] It should be noted that the above-mentioned sequence of the embodiments of the present application is only for description, and does not represent the advantages and disadvantages of the embodiments. The above describes specific embodiments of the present application. Other embodiments are within the scope of the appended claims. In some cases, the actions or steps recited in the claims can be performed in an order different from the order in the embodiments and still achieve the desired result. In addition, the processes depicted in the drawings do not necessarily require the particular order or sequential order shown or described to achieve the desired results. In some embodiments, multi-task processing and parallel processing are possible or can be advantageous.
[0055] The various embodiments described in this specification are presented by way of example, and each embodiment is not necessarily composed of all features described with respect to other embodiments. Each embodiment is presented in its most particular form, but the application can be implemented in other forms.
Claims
1. A cooking apparatus, characterized by, The cooking device comprises an oil discharging assembly, a heat dissipation assembly, a driving assembly and a body; The body is provided with a cooking cavity; the cooking cavity is in communication with an air inlet end of the oil discharging assembly; The body is provided with a heat dissipation air duct; the position of the heat dissipation air duct corresponds to the position of the device to be cooled; the heat dissipation assembly is arranged in the heat dissipation air duct; The driving assembly is drivingly connected with the oil discharging assembly and the heat dissipation assembly; the driving assembly is used to drive the oil discharging assembly to remove the oil fume in the cooking cavity, and the driving assembly is used to drive the heat dissipation assembly to cool the device to be cooled.
2. The cooking apparatus according to claim 1, characterized in that, The body comprises an oil discharging cavity; the oil discharging cavity is in communication with the cooking cavity; The oil discharging assembly comprises an oil discharging fan; the oil discharging fan is rotatably arranged in the oil discharging cavity; The driving assembly is drivingly connected with the oil discharging fan; the oil discharging fan is used to provide flow guide for the gas in the cooking cavity, so that the oil fume in the cooking cavity flows into the oil discharging cavity.
3. The cooking apparatus according to claim 2, characterized in that, The oil discharging assembly comprises at least one suction accessory; The suction accessory is arranged at the connection between the cooking cavity and the oil discharging cavity, or the suction accessory is arranged in the oil discharging cavity; the suction accessory is used to adsorb the oil fume in the cooking cavity.
4. The cooking apparatus according to claim 3, characterized in that, The at least one suction accessory is detachably connected to the body.
5. The cooking apparatus according to claim 3, wherein The body comprises an oil discharging air duct; The oil discharging air duct is in communication with the oil discharging cavity; the oil discharging air duct is used to discharge the gas after being adsorbed by the at least one suction accessory to the outside of the cooking device.
6. The cooking apparatus according to claim 1, wherein The heat dissipation assembly comprises a heat dissipation fan; The heat dissipation fan is rotatably arranged in the heat dissipation air duct; the heat dissipation fan is used to provide continuous flow guide for the air in the heat dissipation air duct, so as to cool the device to be cooled.
7. The cooking apparatus according to claim 1, wherein The driving assembly comprises one driving member; The driving member, the heat dissipation assembly and the oil discharging assembly are coaxially arranged; the driving member is used to synchronously drive the heat dissipation assembly and the oil discharging assembly.
8. The cooking apparatus according to claim 1, wherein The driving assembly comprises two driving members; The two driving members are respectively drivingly connected with the oil discharging assembly and the heat dissipation assembly; the two driving members are respectively used to drive the oil discharging assembly and the heat dissipation assembly.
9. The cooking apparatus according to claim 7 or claim 8, characterized in that, The driving member comprises a motor.
10. The cooking apparatus according to claim 1, wherein The oil discharging assembly and the heat dissipation assembly are arranged in isolation.