Air fryer

By installing multiple cooling fans in the air fryer to dissipate heat from the electrical components, the problem of insufficient heat dissipation caused by overheating of the electrical components is solved, improving the reliability and service life of the air fryer while reducing production costs.

CN223516189UActive Publication Date: 2025-11-07GD MIDEA ENVIRONMENT APPLIANCES MFG
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Patent Information

Application Number
CN202422865386.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-22
Publication Date
2025-11-07
Estimated Expiration
2034-11-22

AI Technical Summary

Technical Problem

The electronic components in existing air fryers, such as coils, motors, and control boards, are prone to overheating during operation, leading to insufficient heat dissipation and affecting their service life.

Method used

At least two cooling fans are installed in the air fryer to dissipate heat from electrical components such as the power board, motor, and electromagnetic components, forming multiple heat dissipation channels for the electrical components and improving the overall heat dissipation effect.

Benefits of technology

It effectively reduces the surface temperature of electrical components, prevents malfunctions, extends service life, reduces maintenance costs, and simplifies the structure to reduce production costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an air fryer, which comprises an appliance body, a plurality of electric control elements, a plurality of electric control elements and a plurality of electric control elements, the at least two heat dissipation fans are arranged on the appliance body, each heat dissipation fan can generate airflow, and the airflow generated by the at least two heat dissipation fans can flow to at least two of the multiple electric controls, that is, the at least two heat dissipation fans can conduct heat dissipation on the different electric controls; therefore, the at least two electric controls in the air fryer can be cooled at the same time, the cooling requirements of the multiple electric controls in the air fryer are met, the overall cooling effect of the air fryer is improved, the reliability of the air fryer is improved, and the service life of the air fryer is prolonged.
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Description

TECHNICAL FIELD

[0001] The utility model relates to life electric appliance technical field, specifically, relate to an air fryer. BACKGROUND

[0002] At present, the air fryer in the related art includes a fan blade and a coil disc, under the condition that the coil disc is electrified, the fan blade is self-heating, and at the same time, the fan blade can also rotate in the cooking cavity, so as to form a hot air circulation in the cooking cavity.

[0003] However, during the working process of the air fryer, multiple electric control components such as the coil disc, the motor and the electric control board will heat up, and if not cooled in time, the electric control components are prone to failure, which affects the service life of the air fryer. SUMMARY

[0004] Embodiments of the utility model aim to solve at least one of the technical problems existing in the prior art.

[0005] Therefore, the first aspect of the embodiments of the utility model provides an air fryer.

[0006] Therefore, according to the first aspect of the embodiments of the utility model, an air fryer is provided, which comprises: an appliance body, the appliance body being provided with multiple electric controls; at least two cooling fans, arranged on the appliance body, each cooling fan being capable of generating an air flow, and the air flows generated by the at least two cooling fans being capable of flowing to at least two electric controls among the multiple electric controls respectively.

[0007] The air fryer provided by the embodiments of the utility model comprises an appliance body and at least two cooling fans, specifically, the appliance body is provided with multiple electric controls, and it can be understood that the multiple electric controls include electric appliances such as a power board, a motor and an electromagnetic component, and during the working process of the air fryer, the multiple electric controls will heat up.

[0008] The at least two cooling fans are arranged on the appliance body, and each cooling fan generates an air flow under the condition of starting to work, specifically, the air flows generated by the at least two cooling fans can flow to at least two electric controls respectively, that is, the at least two cooling fans can cool different electric controls respectively, so that at least two electric controls in the air fryer can be cooled at the same time, the cooling demand of the multiple electric controls in the air fryer is met, the overall cooling effect of the air fryer is improved, and the reliability of the air fryer is improved, thereby prolonging the service life of the air fryer.

[0009] Optionally, the plurality of electric controls include a power board, a motor, and an electromagnetic component, and specifically, one of the heat dissipation fans dissipates heat from the power board, and the other heat dissipation fan dissipates heat from the electromagnetic component. Alternatively, one of the heat dissipation fans dissipates heat from the power board, and the other heat dissipation fan dissipates heat from the motor. Alternatively, one of the heat dissipation fans dissipates heat from the power board, and the other heat dissipation fan dissipates heat from the electromagnetic component and the motor. Alternatively, one of the heat dissipation fans dissipates heat from the power board and the motor, and the other heat dissipation fan dissipates heat from the electromagnetic component. Alternatively, one of the heat dissipation fans dissipates heat from the power board and the motor, and the other heat dissipation fan dissipates heat from the power board and the electromagnetic component. The above are not listed one by one.

[0010] Optionally, the at least one heat dissipation fan includes a centrifugal fan or an axial flow fan.

[0011] In addition, the air fryer provided by the technical scheme of the present application also has the following additional technical features:

[0012] In some technical schemes, the plurality of electric controls include a power board, a motor, and an electromagnetic component, and any one of the electromagnetic component and the motor is electrically connected to the power board; wherein the at least two heat dissipation fans include a first fan and a second fan, and the airflow generated by the first fan can flow to at least one of the power board, the motor, and the electromagnetic component, and the airflow generated by the second fan can flow to at least one of the power board, the motor, and the electromagnetic component.

[0013] In this technical scheme, it is specified that the at least two heat dissipation fans include a first fan and a second fan, and specifically, the airflow generated by the first fan can flow to at least one of the power board, the motor, and the electromagnetic component, and the airflow generated by the second fan can flow to at least one of the power board, the motor, and the electromagnetic component. Specifically, the airflow generated by the first fan flows to the power board and the motor, and the airflow generated by the second fan flows to the power board. Alternatively, the airflow generated by the first fan flows to the electromagnetic component, and the airflow generated by the second fan flows to the power board and the electromagnetic component. Alternatively, the airflow generated by the first fan flows to the power board, and the airflow generated by the second fan flows to the electromagnetic component and the motor. The above are not listed one by one. That is, the first fan and the second fan can respectively dissipate heat from the at least two electric controls, so that the at least two electric controls in the air fryer can simultaneously dissipate heat, meeting the heat dissipation requirements of the plurality of electric controls in the air fryer.

[0014] Moreover, since at least two of the power board, the motor, and the electromagnetic component can effectively dissipate heat, the surface temperature of the power board, the electromagnetic component, or the motor can be reduced, effectively avoiding malfunction of the power board, the motor, or the electromagnetic component due to excessively high temperature rise, improving the reliability of the air fryer, and reducing the maintenance cost of the air fryer.

[0015] In addition, it can be understood that the electromagnetic member can generate an alternating magnetic field when powered on, and the magnetically conductive blades or magnetically conductive plates will heat up under the action of the alternating magnetic field. At the same time, the blades rotate in the cooking cavity to form a hot air circulation, thereby heating and cooking the food materials in the cooking cavity.

[0016] Optionally, the airflow generated by the first air fan can flow to at least two of the power panel, the motor and the electromagnetic member, and / or the airflow generated by the second air fan can flow to at least two of the power panel, the motor and the electromagnetic member. That is, one heat dissipation fan is used to simultaneously dissipate heat from multiple electronic controls, which not only improves the overall heat dissipation effect, but also simplifies the structure of the air fryer and reduces the production cost of the air fryer.

[0017] Optionally, the airflow generated by the first air fan flows to the power panel. It can be understood that the power panel needs to supply power to multiple electronic control components in the air fryer, so the size of the power panel is generally large, and the heat dissipation requirement is higher than that of other electronic control components. By configuring the first air fan for the power panel to dissipate heat, the heat dissipation effect of the power panel can be improved to meet the heat dissipation requirements of the power panel.

[0018] Optionally, the power panel includes a circuit board and a heat sink, and the heat sink is arranged on the circuit board. The airflow generated by the first air fan can flow to the heat sink, thereby further improving the heat dissipation effect of the circuit board and reducing the probability of failure.

[0019] Optionally, the appliance body further comprises a bracket, and the power panel is arranged on the bracket to provide structural support for the power panel.

[0020] In some embodiments, the first air fan comprises a first air outlet portion and a second air outlet portion. The first air outlet portion faces the power panel, and part of the airflow flowing out of the second air outlet portion can flow to the motor and the other part can flow to the electromagnetic member.

[0021] In this technical solution, it is specified that the first air fan comprises a first air outlet portion and a second air outlet portion. It can be understood that when the first air fan is started, both the first air outlet portion and the second air outlet portion can blow air.

[0022] Specifically, the first air outlet portion faces the power panel, that is, the airflow flowing out of the first air outlet portion can flow to the power panel to dissipate heat. Part of the airflow flowing out of the second air outlet portion flows to the motor, and the other part flows to the electromagnetic member. That is, the first air fan can simultaneously dissipate heat from the power panel, the motor and the electromagnetic member, thereby reducing the temperature of the surfaces of the power panel, the motor and the electromagnetic member, improving the overall heat dissipation effect of the air fryer, meeting the heat dissipation requirements of the air fryer, thereby improving the reliability of the air fryer and prolonging the service life of the air fryer.

[0023] Moreover, the multiple electric controls are simultaneously cooled by one cooling fan, which is beneficial to simplify the structure of the air fryer, reduce the production cost of the air fryer, optimize the overall layout of the air fryer, and further reduce the size of the air fryer.

[0024] In some technical solutions, the appliance body is further provided with a partition plate, and the partition plate separates the second air outlet part into a first outlet and a second outlet, the first outlet is directed to the motor, and the second outlet is directed to the electromagnetic component.

[0025] In the technical solution, it is specified that the appliance body is further provided with a partition plate, and specifically, the partition plate separates the second air outlet part into a first outlet and a second outlet.

[0026] Specifically, in the case that the first fan is started to work, the airflow flowing out of the second air outlet part is partially blown to the motor through the first outlet to achieve heat dissipation of the motor, and the other part is flowed to the electromagnetic component through the second outlet to achieve heat dissipation of the electromagnetic component.

[0027] In some technical solutions, the second fan includes a third air outlet part, and the third air outlet part is directed to the power board and / or the motor.

[0028] In the technical solution, it is specified that the second fan includes a third air outlet part, and specifically, the third air outlet part is directed to the power board, or the third air outlet part is directed to the motor, or the airflow flowing out of the third air outlet part can flow to the motor and the power board. It can be set according to actual needs.

[0029] Since the airflow flowing out of the third air outlet part can flow to the motor and / or the power board, the surface temperature of the motor and / or the power board can be further reduced on the basis of the first fan, and the heat dissipation effect is improved.

[0030] In some technical solutions, the second fan further includes a fourth air outlet part, and the fourth air outlet part is directed to the electromagnetic component.

[0031] In the technical solution, it is specified that the second fan further includes a fourth air outlet part, and specifically, the fourth air outlet part is directed to the electromagnetic component, that is, the airflow flowing out of the fourth air outlet part can flow to the electromagnetic component, so as to further cool the electromagnetic component on the basis of the first fan, and meet the heat dissipation requirement of the electromagnetic component.

[0032] Furthermore, since the third air outlet can dissipate heat from the power board and / or motor, and the fourth air outlet can dissipate heat from the electromagnetic components, the second fan can dissipate heat from multiple electrical components. This meets the heat dissipation needs of multiple electrical components in the air fryer, improves the overall heat dissipation effect of the air fryer, thereby enhancing its reliability and extending its service life. Moreover, it also helps simplify the structure of the air fryer and reduce its production costs.

[0033] It is understandable that the heat generated by the electromagnetic components during the operation of an air fryer is higher than that generated by other electrical components (motor and power board).

[0034] Optionally, the air outlet area of ​​the third air outlet is smaller than that of the fourth air outlet. This means that most of the airflow generated by the second fan is directed towards the electromagnetic components to ensure effective heat dissipation. Simultaneously, a small portion of the airflow is directed towards the motor and / or power board to improve heat dissipation, thereby meeting the heat dissipation requirements of the air fryer's various electrical components, enhancing the air fryer's reliability, and extending its lifespan.

[0035] In some technical solutions, optionally, the appliance body is further provided with a heat dissipation cavity, an air inlet and a first air outlet, multiple electrical controls are located in the heat dissipation cavity, the air inlet and the first air outlet are respectively connected to the heat dissipation cavity, and each heat dissipation fan is connected to the air inlet; wherein, at least a part of the air inlet and the first air outlet are located on different sides of the appliance body.

[0036] In this technical solution, the appliance body is further provided with a heat dissipation cavity, an air inlet and a first air outlet. Specifically, the air inlet and the first air outlet are respectively connected to the heat dissipation cavity, multiple electrical control components are set in the heat dissipation cavity, and each heat dissipation fan is connected to the air inlet.

[0037] Specifically, when at least two cooling fans are activated, external air or airflow enters the at least two cooling fans through the air inlet and then flows into the cooling chamber, where it flows to at least two electrical components, thus forming at least two cooling channels to dissipate heat from the at least two electrical components inside the air fryer. This meets the heat dissipation requirements of multiple electrical components in the air fryer, improves the overall heat dissipation effect of the air fryer, and thus enhances the reliability and extends the service life of the air fryer.

[0038] It is understandable that during the operation of the air fryer, air or airflow from the external environment enters at least two cooling fans through the air inlet, and after entering the cooling chamber, it flows to at least two electrical components, carrying away the heat from the surface of at least two electrical components, and then is discharged to the outside of the appliance body through the first air outlet.

[0039] If the air inlet is relatively close to the first air outlet, the hot air discharged from the first air outlet is easy to enter the at least two heat dissipation fans again through the air inlet, and then flows to the at least two electric controls, affecting the heat dissipation effect of the electric controls.

[0040] At least a part of the air inlet is located on a side different from the first air outlet of the appliance body. That is, the air inlet is arranged away from the first air outlet, so that the hot air discharged from the first air outlet is effectively prevented from entering the at least two heat dissipation fans again through the air inlet and flowing to the at least two electric controls, ensuring effective heat dissipation of the electric controls, thereby reducing the probability of failure of the electric controls and prolonging the service life of the air fryer.

[0041] In some embodiments, at least a part of the air inlet is located on opposite sides of the appliance body.

[0042] In this embodiment, at least a part of the air inlet is located on opposite sides of the appliance body, that is, the air inlet is arranged away from the first air outlet, so that the hot air discharged from the first air outlet is effectively prevented from entering the at least two heat dissipation fans again through the air inlet and flowing to the at least two electric controls, ensuring effective heat dissipation of the electric controls, thereby reducing the probability of failure of the electric controls and prolonging the service life of the air fryer.

[0043] In some embodiments, at least a part of the air inlet is located on opposite sides of the appliance body.

[0044] In this embodiment, at least a part of the air inlet is located on opposite sides of the appliance body, that is, the air inlet is arranged away from the first air outlet, so that the hot air discharged from the first air outlet is effectively prevented from entering the at least two heat dissipation fans again through the air inlet and flowing to the at least two electric controls, ensuring effective heat dissipation of the electric controls, thereby reducing the probability of failure of the electric controls and prolonging the service life of the air fryer.

[0045] Optionally, the number of air inlets is multiple, and at least one air inlet is close to at least one heat dissipation fan.

[0046] In some embodiments, the appliance body comprises a pot body and a shell, wherein the pot body is provided with the electric controls and the heat dissipation cavity, and the shell is arranged outside the pot body, and the air inlet is arranged on the shell and extends at least partially along the circumference of the shell.

[0047] In this embodiment, the appliance body comprises a pot body and a shell, specifically, the pot body is provided with the electric controls and the heat dissipation cavity, the shell is arranged outside the pot body, and the air inlet is arranged on the shell and at least a part of the air inlet extends along the circumference of the shell, so that the air inlet area is increased, the air inlet efficiency is improved, the heat dissipation of the electric controls is accelerated, the heat dissipation effect of the electric controls is further improved, and the reliability of the air fryer is improved.

[0048] Optionally, the pot body is further provided with a cooking cavity; the appliance body further comprises a mounting member connected with the shell, the mounting member is provided with a first air outlet and a second air outlet, and the second air outlet is communicated with the cooking cavity. It can be understood that, in the working process of the air fryer, since the cooking cavity is communicated with the second air outlet, the water vapor and air in the cooking cavity can be discharged to the outside of the pot body through the second air outlet, so that the cooked food is more crisp, and the heating effect of the cooking cavity is ensured.

[0049] The first air outlet and the second air outlet are both arranged on the mounting member, that is, the first air outlet for heat dissipation and the second air outlet communicated with the cooking cavity are integrated on the mounting member, so that the structure of the air fryer can be simplified, the number of parts can be reduced, the assembly difficulty can be reduced, the assembly workload can be reduced, and the production cost of the air fryer can be reduced.

[0050] In addition, integrating the first air outlet and the second air outlet on one mounting member for air outlet can also improve the appearance of the air fryer and improve the user experience.

[0051] Optionally, the air fryer further comprises an air outlet grille arranged at the first air outlet and / or the second air outlet, so that the moisture and impurities in the external environment can be effectively reduced or avoided from floating onto the electric control through the first air outlet, the performance of the electric control can be ensured, the probability of failure of the electric control can be reduced, the service life of the electric control can be prolonged, and the maintenance cost of the air fryer can be reduced. And / or, the moisture and impurities in the external environment can be reduced or avoided from entering the cooking cavity through the second air outlet, so that the cooking effect of the food can be ensured.

[0052] Optionally, the air fryer further comprises a blade arranged in the cooking cavity and connected with the motor, and the blade is opposite to the electromagnetic member; at least a part of the blade has magnetic conductivity, or the air fryer further comprises a magnetic conducting plate located between the blade and the electromagnetic member. Specifically, under the condition that the electromagnetic member is powered on, at least a part of the blade can generate heat, and under the driving of the motor, the blade can rotate in the cooking cavity to form a hot air flow circulating in the cooking cavity, so as to heat and cook the food to be heated in the cooking cavity.

[0053] Optionally, the air fryer further comprises a heat insulation plate arranged between the blade and the electromagnetic member, so that the heat generated by the blade can be effectively reduced to the electromagnetic member, the electromagnetic member can be prevented from being overheated due to the heat generated by the blade, the probability of failure of the electromagnetic member can be reduced, the service life of the electromagnetic member can be prolonged, and the stable working of the air fryer can be ensured.

[0054] Optionally, the heat insulation member includes but is not limited to a microcrystalline plate, glass and the like.

[0055] Alternatively, the air fryer further comprises a magnetic conductive plate, and it can be understood that the magnetic conductive plate has magnetic conductivity, that is, the magnetic conductive plate with magnetic conductivity is arranged between the electromagnetic element and the blade. Specifically, under the condition that the electromagnetic element is powered on, the magnetic conductive plate can heat up, and at the same time, under the driving of the motor, the blade can rotate in the cooking cavity to form a hot air flow circulating in the cooking cavity, so as to heat and cook the food to be heated in the cooking cavity.

[0056] Optionally, a heat insulation layer is arranged on the side of the magnetic conductive plate facing the electromagnetic element, that is, a layer of heat insulation material is coated on the side of the magnetic conductive plate facing the electromagnetic element, so that the heat generated by the magnetic conductive plate can be effectively transmitted to the electromagnetic element, avoiding the heat generated by the magnetic conductive plate from causing the electromagnetic element to have a too high temperature rise, thereby affecting the performance of the electromagnetic element, prolonging the service life of the electromagnetic element, reducing the probability of failure of the electromagnetic element, and reducing the maintenance cost of the air fryer.

[0057] According to the second aspect of the embodiment of the utility model, an air fryer is provided, which comprises: an appliance body provided with a cooking cavity and a plurality of electric controls, the plurality of electric controls at least comprising a motor and an electromagnetic element; a blade arranged in the cooking cavity and connected with the motor, the electromagnetic element being opposite to the blade, at least a part of the blade having magnetic conductivity; and at least two heat dissipation fans arranged on the appliance body, each heat dissipation fan being capable of generating an air flow, and the air flows generated by the at least two heat dissipation fans being capable of flowing to at least two electric controls of the plurality of electric controls respectively.

[0058] The air fryer provided by the embodiment of the utility model comprises an appliance body, a blade and at least two heat dissipation fans, and specifically, since the electromagnetic element is opposite to the blade, the electromagnetic element can generate an alternating magnetic field under the condition of being powered on, the blade with magnetic conductivity will heat up under the action of the alternating magnetic field, and at the same time, under the driving of the motor, the blade rotates in the cooking cavity to form a hot air circulation, thereby heating and cooking the food in the cooking cavity.

[0059] The at least two heat dissipation fans are arranged on the appliance body, and each heat dissipation fan generates an air flow under the condition of starting to work, and specifically, the air flows generated by the at least two heat dissipation fans can flow to the at least two electric controls respectively, that is, the at least two heat dissipation fans can dissipate heat for different electric controls respectively, so that the at least two electric controls in the air fryer can dissipate heat at the same time, the heat dissipation requirements of the plurality of electric controls in the air fryer are met, the overall heat dissipation effect of the air fryer is improved, the reliability of the air fryer is improved, and the service life of the air fryer is prolonged.

[0060] In addition, the air fryer provided by the above technical solution of the utility model further has the following additional technical features:

[0061] In some embodiments, the plurality of electric controls further comprises a power board, and any one of the electromagnetic component and the motor is electrically connected to the power board; wherein the at least two cooling fans comprises a first fan and a second fan, the airflow generated by the first fan is capable of flowing to at least one of the power board, the motor and the electromagnetic component, and the airflow generated by the second fan is capable of flowing to at least one of the power board, the motor and the electromagnetic component.

[0062] In this embodiment, the at least two cooling fans comprises a first fan and a second fan, and specifically, the airflow generated by the first fan is capable of flowing to at least one of the power board, the motor and the electromagnetic component, and the airflow generated by the second fan is capable of flowing to at least one of the power board, the motor and the electromagnetic component. Specifically, the airflow generated by the first fan flows to the power board and the motor, and the airflow generated by the second fan flows to the power board. Alternatively, the airflow generated by the first fan flows to the electromagnetic component, and the airflow generated by the second fan flows to the power board and the electromagnetic component. Alternatively, the airflow generated by the first fan flows to the power board, and the airflow generated by the second fan flows to the electromagnetic component and the motor. Here, they are not listed one by one. That is, the first fan and the second fan can respectively cool the at least two electric controls, so that the at least two electric controls in the air fryer can be cooled at the same time, and the cooling demand of the plurality of electric controls in the air fryer is met.

[0063] Moreover, since at least two of the power board, the motor and the electromagnetic component can be effectively cooled, the surface temperature of the power board, the electromagnetic component or the motor can be reduced, the malfunction of the power board, the electromagnetic component or the motor due to excessive temperature rise can be effectively avoided, the reliability of the air fryer is improved, and the maintenance cost of the air fryer is reduced.

[0064] The additional aspects and advantages of the present application will be described in the following description part, some of which will become apparent from the following description, or be understood through the practice of the present application. BRIEF DESCRIPTION OF DRAWINGS

[0065] The above and / or additional aspects and advantages of the present application will become apparent and more readily appreciated from the following description of the embodiments, taken in conjunction with the accompanying drawings of which:

[0066] Figure 1 Fig. 1 shows a structural schematic diagram of an air fryer according to one embodiment of the present application;

[0067] Figure 2 Fig. 2 shows a structural schematic diagram of a first fan according to one embodiment of the present application;

[0068] Figure 3 Fig. 3 shows a structural schematic diagram of an air fryer according to another embodiment of the present application;

[0069] Figure 4A structure schematic view three of the air fryer according to one embodiment of the utility model is shown;

[0070] Figure 5 A structure schematic view four of the air fryer according to one embodiment of the utility model is shown;

[0071] Figure 6 A partial structure schematic view one of the appliance body according to one embodiment of the utility model is shown;

[0072] Figure 7 A partial structure schematic view two of the appliance body according to one embodiment of the utility model is shown.

[0073] Wherein, Figures 1 to 7 The correspondence between the reference signs and the component names is as follows:

[0074] 100 air fryer, 110 appliance body, 111 partition plate, 112 heat dissipation cavity, 113 air inlet, 114 first air outlet, 115 pot body, 116 shell, 117 mounting piece, 118 cooking cavity, 119 second air outlet, 120 electric control, 121 power board, 122 electromagnetic piece, 123 motor, 130 heat dissipation fan, 131 first fan, 132 second fan, 140 first air outlet part, 150 second air outlet part, 151 first outlet, 152 second outlet, 160 third air outlet part, 170 fourth air outlet part, 181 blade, 182 magnet conducting plate. DETAILED DESCRIPTION

[0075] In order to enable the above-mentioned purpose, features and advantages of the utility model to be more clearly understood, the utility model will be further described in detail below in conjunction with the drawings and specific embodiments. It should be noted that the embodiments of the present application and the features in the embodiments can be combined with each other without conflict.

[0076] In the following description, many specific details are set forth in order to provide a thorough understanding of the utility model, but the utility model can also be implemented in other ways different from those described herein, therefore, the protection scope of the utility model is not limited by the specific embodiments disclosed below.

[0077] Some embodiments of the utility model will be described below with reference to the drawings. Figures 1 to 7 The air fryer 100 provided by some embodiments of the utility model is described below.

[0078] In one embodiment according to the present application, as Figure 1As shown, an air fryer 100 is provided, the air fryer 100 comprising: an appliance body 110, the appliance body 110 being provided with a plurality of electric controls 120; at least two heat dissipation fans 130, the at least two heat dissipation fans 130 being arranged on the appliance body 110, each heat dissipation fan 130 being capable of generating an airflow, and the airflows generated by the at least two heat dissipation fans 130 being capable of flowing to at least two electric controls 120 of the plurality of electric controls 120 respectively.

[0079] The air fryer 100 provided by the embodiment of the utility model comprises the appliance body 110 and the at least two heat dissipation fans 130, specifically, the appliance body 110 is provided with the plurality of electric controls 120, it can be understood that the plurality of electric controls 120 include power board 121, motor 123 and electromagnetic element 122 and other electrical appliances, and in the working process of the air fryer 100, the plurality of electric controls 120 will heat.

[0080] The at least two heat dissipation fans 130 are arranged on the appliance body 110, and each heat dissipation fan 130 generates an airflow under the condition of starting to work, specifically, the airflows generated by the at least two heat dissipation fans 130 can flow to the at least two electric controls 120 respectively, that is to say, the at least two heat dissipation fans 130 can dissipate heat for different electric controls 120 respectively, so that the at least two electric controls 120 in the air fryer 100 can dissipate heat simultaneously, the heat dissipation demand of the plurality of electric controls 120 in the air fryer 100 is satisfied, the overall heat dissipation effect of the air fryer 100 is improved, and then the reliability of the air fryer 100 is improved, and the service life of the air fryer 100 is prolonged.

[0081] Optionally, the plurality of electric controls 120 include power board 121, motor 123 and electromagnetic element 122, specifically, one of the heat dissipation fans 130 dissipates heat for the power board 121, and the other heat dissipation fan 130 dissipates heat for the electromagnetic element 122. Or, one of the heat dissipation fans 130 dissipates heat for the power board 121, and the other heat dissipation fan 130 dissipates heat for the motor 123. Or, one of the heat dissipation fans 130 dissipates heat for the power board 121, and the other heat dissipation fan 130 dissipates heat for the electromagnetic element 122 and the motor 123. Or, one of the heat dissipation fans 130 dissipates heat for the power board 121 and the motor 123, and the other heat dissipation fan 130 dissipates heat for the electromagnetic element 122. Or, one of the heat dissipation fans 130 dissipates heat for the power board 121 and the motor 123, and the other heat dissipation fan 130 dissipates heat for the power board 121 and the electromagnetic element 122. Here, they are not listed one by one.

[0082] Optionally, the at least one heat dissipation fan 130 comprises a centrifugal fan or an axial flow fan.

[0083] As Figure 1 , Figure 3 and Figure 4As shown, in some embodiments, optionally, the plurality of electric controls 120 includes a power board 121, an electromagnet 122, and a motor 123, any one of the electromagnet 122 and the motor 123 is electrically connected with the power board 121; wherein the at least two cooling fans 130 includes a first fan 131 and a second fan 132, the airflow generated by the first fan 131 is capable of flowing to at least one of the power board 121, the motor 123, and the electromagnet 122, and the airflow generated by the second fan 132 is capable of flowing to at least one of the power board 121, the motor 123, and the electromagnet 122.

[0084] In this embodiment, the at least two cooling fans 130 includes a first fan 131 and a second fan 132, specifically, the airflow generated by the first fan 131 is capable of flowing to at least one of the power board 121, the motor 123, and the electromagnet 122, and the airflow generated by the second fan 132 is capable of flowing to at least one of the power board 121, the motor 123, and the electromagnet 122. Specifically, the airflow generated by the first fan 131 flows to the power board 121 and the motor 123, and the airflow generated by the second fan 132 flows to the power board 121. Alternatively, the airflow generated by the first fan 131 flows to the electromagnet 122, and the airflow generated by the second fan 132 flows to the power board 121 and the electromagnet 122. Alternatively, the airflow generated by the first fan 131 flows to the power board 121, and the airflow generated by the second fan 132 flows to the electromagnet 122 and the motor 123. Here, they are not listed one by one. That is, the first fan 131 and the second fan 132 can respectively cool the at least two electric controls 120, so that the at least two electric controls 120 in the air fryer 100 can be cooled at the same time, meeting the cooling demand of the plurality of electric controls 120 in the air fryer 100.

[0085] Moreover, since at least two of the power board 121, the motor 123, and the electromagnet 122 can be effectively cooled, the surface temperature of the power board 121, the electromagnet 122, or the motor 123 can be reduced, effectively avoiding the power board 121, the motor 123, or the electromagnet 122 from malfunctioning due to excessively high temperature rise, improving the reliability of the air fryer 100, and reducing the maintenance cost of the air fryer 100.

[0086] In addition, it can be understood that the electromagnet 122 can generate an alternating magnetic field when powered on, and the blade 181 or the magnetic conductive plate 182 with magnetic conductivity will heat up under the action of the alternating magnetic field. At the same time, the blade 181 rotates in the cooking cavity 118 to form a hot air circulation, thereby heating and cooking the food materials in the cooking cavity 118.

[0087] Optionally, the airflow generated by the first fan 131 can flow to at least two of the power board 121, the motor 123 and the electromagnetic component 122, and / or the airflow generated by the second fan 132 can flow to at least two of the power board 121, the motor 123 and the electromagnetic component 122. That is, the plurality of electric controls 120 are simultaneously cooled by one cooling fan 130, which improves the overall cooling effect and facilitates simplification of the structure of the air fryer 100 and reduction of the production cost of the air fryer 100.

[0088] Optionally, the airflow generated by the first fan 131 flows to the power board 121. It can be understood that the power board 121 needs to supply power to the plurality of electric control components in the air fryer 100, and therefore, the size of the power board 121 is generally large, and the cooling requirement is higher than that of other electric control components. By configuring the first fan 131 for the power board 121 to cool, the cooling effect of the power board 121 can be improved to meet the cooling requirement of the power board 121.

[0089] Optionally, the power board 121 includes a circuit board and a cooling fin, the cooling fin is arranged on the circuit board, and the airflow generated by the first fan 131 can flow to the cooling fin, so that the cooling effect of the circuit board can be further improved, and the probability of failure can be reduced.

[0090] Optionally, the appliance body 110 is further provided with a bracket, and the power board 121 is arranged on the bracket to provide structural support for the power board 121.

[0091] As shown in Figure 1 , Figure 2 and Figure 3 , in some embodiments, the first fan 131 includes a first air outlet portion 140 and a second air outlet portion 150, the first air outlet portion 140 faces the power board 121, and a part of the airflow flowing out of the second air outlet portion 150 can flow to the motor 123, and another part can flow to the electromagnetic component 122.

[0092] In this embodiment, it is defined that the first fan 131 includes the first air outlet portion 140 and the second air outlet portion 150. It can be understood that in the case that the first fan 131 is started to work, the first air outlet portion 140 and the second air outlet portion 150 can both blow air.

[0093] Specifically, the first air outlet 140 faces the power board 121, meaning that the airflow from the first air outlet 140 can flow towards the power board 121, thereby dissipating heat from the power board 121. Part of the airflow from the second air outlet 150 flows towards the motor 123, and the other part flows towards the electromagnetic component 122. In other words, the first fan 131 can simultaneously dissipate heat from the power board 121, the motor 123, and the electromagnetic component 122, thereby reducing the surface temperature of these components, improving the overall heat dissipation effect of the air fryer 100, meeting the heat dissipation requirements of the air fryer 100, and thus improving the reliability and extending the service life of the air fryer 100.

[0094] Moreover, by using a cooling fan 130 to simultaneously cool multiple electrical components 120, the overall heat dissipation effect is improved, which helps to simplify the structure of the air fryer 100, reduce the production cost of the air fryer 100, optimize the overall layout of the air fryer 100, and thus help to reduce the size of the air fryer 100.

[0095] like Figure 1 , Figure 2 , Figure 3 , Figure 6 and Figure 7 As shown, in some embodiments, optionally, the appliance body 110 is also provided with a partition plate 111, which divides the second air outlet 150 into a first outlet 151 and a second outlet 152, with the first outlet 151 facing the motor 123 and the second outlet 152 facing the electromagnetic component 122.

[0096] In this embodiment, the appliance body 110 is further provided with a partition plate 111. Specifically, the partition plate 111 divides the second air outlet 150 into a first outlet 151 and a second outlet 152.

[0097] Specifically, when the first fan 131 is started, part of the airflow from the second air outlet 150 blows towards the motor 123 through the first outlet 151 to dissipate heat from the motor 123, and the other part flows towards the electromagnetic component 122 through the second outlet 152 to dissipate heat from the electromagnetic component 122.

[0098] like Figure 4 As shown, in some embodiments, the second fan 132 may optionally include a third air outlet 160 facing the power board 121 and / or the motor 123.

[0099] In this embodiment, the second air fan 132 is defined to include a third air outlet portion 160, specifically, the third air outlet portion 160 is directed towards the power board 121, or the third air outlet portion 160 is directed towards the motor 123, or the airflow flowing out of the third air outlet portion 160 can flow towards the motor 123 and the power board 121. Specifically, it can be set according to actual needs.

[0100] Since the airflow flowing out of the third air outlet portion 160 can flow towards the motor 123 and / or the power board 121, the surface temperature of the motor 123 and / or the power board 121 can be further reduced on the basis of the first air fan 131, and the heat dissipation effect is improved.

[0101] As shown in FIG. 1, Figure 4 In some embodiments, the second air fan 132 optionally further includes a fourth air outlet portion 170, and the fourth air outlet portion 170 is directed towards the electromagnetic component 122.

[0102] In this embodiment, the second air fan 132 further includes the fourth air outlet portion 170, specifically, the fourth air outlet portion 170 is directed towards the electromagnetic component 122, that is, the airflow flowing out of the fourth air outlet portion 170 can flow towards the electromagnetic component 122, thereby further dissipating heat from the electromagnetic component 122 on the basis of the first air fan 131, and the heat dissipation demand of the electromagnetic component 122 is met.

[0103] In addition, since the third air outlet portion 160 can dissipate heat from the power board 121 and / or the motor 123, and the fourth air outlet portion 170 can dissipate heat from the electromagnetic component 122, that is, the second air fan 132 can dissipate heat from multiple electric controls 120, thereby meeting the heat dissipation demand of multiple electric controls 120 in the air fryer 100, improving the overall heat dissipation effect of the air fryer 100, and further improving the reliability of the air fryer 100, prolonging the service life of the air fryer 100. Moreover, it is also beneficial to simplify the structure of the air fryer 100 and reduce the production cost of the air fryer 100.

[0104] It can be understood that, during the working process of the air fryer 100, the heat generated by the electromagnetic component 122 when working is higher than the heat generated by other electric controls 120 (the motor 123 and the power board 121) when working.

[0105] Optionally, the air outlet area of the third air outlet portion 160 is smaller than the air outlet area of the fourth air outlet portion 170, that is, most of the airflow generated by the second air fan 132 is directed towards the electromagnetic component 122 to ensure effective heat dissipation from the electromagnetic component 122 which generates heat. At the same time, a small part of the airflow is blown towards the motor 123 and / or the power board 121 to improve the heat dissipation effect of the motor 123 and / or the power board 121, thereby meeting the heat dissipation demand of each electric control 120 in the air fryer 100, improving the reliability of the air fryer 100, and prolonging the service life of the air fryer 100.

[0106] As Figure 1 , Figure 3 and Figure 5 shown, in some embodiments, the appliance body 110 is also provided with a heat dissipation cavity 112, an air inlet 113 and a first air outlet 114, a plurality of electric controls 120 are located in the heat dissipation cavity 112, the air inlet 113 and the first air outlet 114 are respectively communicated with the heat dissipation cavity 112, and each heat dissipation fan 130 is communicated with the air inlet 113; wherein at least part of the air inlet 113 and the first air outlet 114 are located on different sides of the appliance body 110.

[0107] In this embodiment, it is defined that the appliance body 110 is also provided with a heat dissipation cavity 112, an air inlet 113 and a first air outlet 114, specifically, the air inlet 113 and the first air outlet 114 are respectively communicated with the heat dissipation cavity 112, and a plurality of electric controls 120 are arranged in the heat dissipation cavity 112, and each heat dissipation fan 130 is communicated with the air inlet 113.

[0108] Specifically, in the case that at least two heat dissipation fans 130 are started to work, the external air or airflow enters the at least two heat dissipation fans 130 from the air inlet 113, and after entering the heat dissipation cavity 112, it flows to the at least two electric controls 120 respectively, that is, at least two heat dissipation channels are formed, so as to dissipate heat for the at least two electric controls 120 in the air fryer 100, meet the heat dissipation demand of the plurality of electric controls 120 in the air fryer 100, improve the overall heat dissipation effect of the air fryer 100, and then improve the reliability of the air fryer 100, prolong the service life of the air fryer 100.

[0109] It can be understood that during the working process of the air fryer 100, the air or airflow in the external environment enters the at least two heat dissipation fans 130 from the air inlet 113, and after entering the heat dissipation cavity 112, it flows to the at least two electric controls 120 respectively, and after taking away the heat on the surface of the at least two electric controls 120, it is discharged to the outside of the appliance body 110 through the first air outlet 114.

[0110] If the air inlet 113 and the first air outlet 114 are relatively close, the hot air discharged from the first air outlet 114 is easy to enter the at least two heat dissipation fans 130 again through the air inlet 113, and after entering the heat dissipation cavity 112, it flows to the at least two electric controls 120, affecting the heat dissipation effect of the plurality of electric controls 120.

[0111] At least a part of the air inlet 113 is located on a different side of the appliance body 110 than the first air outlet 114. That is, the air inlet 113 is arranged away from the first air outlet 114, so that hot air discharged from the first air outlet 114 can be effectively prevented from entering the at least two heat dissipation fans 130 again through the air inlet 113 and flowing to the at least two electric controls 120, ensuring effective heat dissipation of the electric controls 120, thereby reducing the probability of failure of the electric controls 120 and prolonging the service life of the air fryer 100.

[0112] Optionally, the heat dissipation cavity 112 includes at least two chambers, and of the plurality of electric controls 120, at least two electric controls 120 are respectively located in the at least two chambers. It can be understood that, during operation of the air fryer 100, the heat generated by each electric control 120 is different, and locating at least two electric controls 120 in different chambers for heat dissipation can avoid the situation that an electric control 120 generating a relatively high amount of heat causes other electric controls 120 to have a too high temperature rise, ensuring effective heat dissipation of the plurality of electric controls 120 and further improving the reliability of the air fryer 100.

[0113] Optionally, the at least two chambers include a first chamber and a second chamber, and the power board 121 and the motor 123 are located in the first chamber, and the electromagnetic component 122 is located in the second chamber.

[0114] It can be understood that, during operation of the air fryer 100, the electromagnetic component 122 generates a higher amount of heat than the power board 121 and the motor 123.

[0115] By locating the electromagnetic component 122, the power board 121 and the motor 123 in two different chambers for heat dissipation, the heat generated by the electromagnetic component 122 can be effectively prevented from being transferred to the power board 121 and the motor 123, thereby causing the power board 121 and the motor 123 to have a too high temperature rise, while the electromagnetic component 122, the power board 121 and the motor 123 are being cooled, compared to the related art in which heat dissipation is performed using one heat dissipation chamber, ensuring effective heat dissipation of the power board 121 and the motor 123 and further improving the reliability of the air fryer 100.

[0116] Optionally, the first air outlet 114 includes a first air outlet and a second air outlet, and the first chamber is in communication with the air inlet 113 and the first air outlet. That is, air or airflow enters the first chamber from the air inlet 113 and can flow out through the first air outlet, in the process of which the heat on the surface of the power board 121 and the motor 123 can be taken away, thereby cooling the power board 121 and the motor 123 and ensuring the use performance of the power board 121 and the motor 123.

[0117] The second chamber is connected to the air inlet 113 and the second air outlet. In other words, air or airflow enters the second chamber from the air inlet 113 and can flow out through the second air outlet. During this process, the heat on the surface of the electromagnetic component 122 can be carried away, thereby dissipating heat from the electromagnetic component 122, reducing the probability of the electromagnetic component 122 malfunctioning, and ensuring the reliable operation of the air fryer 100.

[0118] like Figure 5 As shown, in some embodiments, optionally, at least a portion of the air inlet 113 is located on opposite sides of the appliance body 110 from the first air outlet 114.

[0119] In this embodiment, at least a portion of the air inlet 113 and the first air outlet 114 are located on opposite sides of the appliance body 110. That is, the air inlet 113 and the first air outlet 114 are set far apart, which can effectively prevent the hot air discharged from the first air outlet 114 from re-entering the at least two cooling fans 130 through the air inlet 113 and flowing to the at least two electrical components 120, ensuring effective heat dissipation of the electrical components 120, thereby reducing the probability of electrical component 120 failure and extending the service life of the air fryer 100.

[0120] like Figure 5 As shown, in some embodiments, optionally, at least a portion of the air inlet 113 is disposed near at least one cooling fan 130.

[0121] In this embodiment, at least a portion of the air inlets 113 are positioned close to at least one cooling fan 130, thereby improving air intake efficiency, enabling rapid heat dissipation of the multiple electrical components 120, further enhancing the heat dissipation effect of the multiple electrical components 120, and improving the reliability of the air fryer 100.

[0122] Optionally, there may be multiple air inlets 113, with at least one air inlet 113 located near at least one cooling fan 130.

[0123] like Figure 3 As shown, in some embodiments, optionally, the appliance body 110 includes a pot body 115 and a shell 116, wherein the pot body 115 is provided with a plurality of electrical control components 120 and a heat dissipation cavity 112, the shell 116 is located on the outside of the pot body 115, and an air inlet 113 is located on the shell 116 and extends at least partially along the circumference of the shell 116.

[0124] In this embodiment, the utensil body 110 is defined to include a pot body 115 and a shell 116, specifically, the pot body 115 is provided with a plurality of electric controls 120 and a heat dissipation cavity 112, the shell 116 is arranged outside the pot body 115, the air inlet 113 is arranged on the shell 116, and at least a part of the air inlet 113 extends along the circumference of the shell 116, so as to increase the air inlet area, improve the air inlet efficiency, realize rapid heat dissipation of the plurality of electric controls 120, further improve the heat dissipation effect of the plurality of electric controls 120, and improve the reliability of the air fryer 100.

[0125] As shown in Figure 3 Optionally, the pot body 115 is further provided with a cooking cavity 118; the utensil body 110 further includes a mounting piece 117 connected with the shell 116, the mounting piece 117 is provided with a first air outlet 114 and a second air outlet 119, and the second air outlet 119 is in communication with the cooking cavity 118. It can be understood that, in the working process of the air fryer 100, since the cooking cavity 118 is in communication with the second air outlet 119, the water vapor, air and other gases in the cooking cavity 118 can be discharged to the outside of the pot body 115 through the second air outlet 119, so that the cooked food material is more crisp, and the heating effect of the cooking cavity 118 is ensured.

[0126] The first air outlet 114 and the second air outlet 119 are both arranged on the mounting piece 117, that is, the first air outlet 114 for heat dissipation and the second air outlet 119 in communication with the cooking cavity 118 are integrated on the mounting piece 117, so as to be beneficial to simplify the structure of the air fryer 100, reduce the number of parts, reduce the assembly difficulty, reduce the assembly workload, and further reduce the production cost of the air fryer 100.

[0127] In addition, integrating the first air outlet 114 and the second air outlet 119 on one mounting piece 117 for air outlet is also beneficial to improve the appearance of the air fryer 100 and improve the user experience.

[0128] Optionally, the air fryer 100 further includes an air outlet grille arranged at the first air outlet 114 and / or the second air outlet 119, so as to effectively reduce or avoid water, impurities and the like in the external environment from floating onto the electric controls 120 through the first air outlet 114 while ensuring air outlet, ensure the performance of the electric controls 120, reduce the probability of failure of the electric controls 120, prolong the service life of the electric controls 120, reduce the maintenance cost of the air fryer 100, and / or reduce or avoid water, impurities and the like in the external environment from entering the cooking cavity 118 through the second air outlet 119, so as to ensure the cooking effect of the food material.

[0129] As shown in Figure 3 and Figure 4As shown, optionally, the air fryer 100 also includes blades 181, which are disposed in the cooking cavity 118 and connected to the motor 123. The blades 181 are opposite to the electromagnetic component 122. At least a portion of the blades 181 is magnetic. Alternatively, the air fryer 100 also includes a magnetic plate 182, which is located between the blades 181 and the electromagnetic component 122.

[0130] like Figure 3 As shown, specifically, when the electromagnetic component 122 is energized, at least a portion of the blade 181 can generate heat. Simultaneously, driven by the motor 123, the blade 181 can rotate within the cooking chamber 118 to form a hot airflow circulating within the cooking chamber 118, thereby heating and cooking the food to be heated within the cooking chamber 118.

[0131] Optionally, the air fryer 100 also includes a heat insulation plate disposed between the blades 181 and the electromagnetic component 122, thereby effectively reducing the transfer of heat generated by the blades 181 to the electromagnetic component 122, preventing the electromagnetic component 122 from overheating due to the heat generated by the blades 181, thereby reducing the probability of the electromagnetic component 122 malfunctioning, extending the service life of the electromagnetic component 122, and ensuring the stable operation of the air fryer 100.

[0132] Optionally, the insulation component may include, but is not limited to, microcrystalline panels, glass, etc.

[0133] Or, such as Figure 4 As shown, the air fryer 100 also includes a magnetic plate 182. It is understood that the magnetic plate 182 is magnetically conductive; that is, a magnetically conductive plate 182 is disposed between the electromagnetic component 122 and the blades 181. Specifically, when the electromagnetic component 122 is energized, the magnetic plate 182 heats up. Simultaneously, driven by the motor 123, the blades 181 rotate within the cooking chamber 118, forming a hot airflow that circulates within the cooking chamber 118, thereby heating and cooking the food to be heated within the cooking chamber 118.

[0134] Optionally, a heat insulation layer is provided on the side of the magnetic plate 182 facing the electromagnetic component 122, that is, a heat insulation material is coated on the side of the magnetic plate 182 facing the electromagnetic component 122. This can effectively reduce the heat generated by the magnetic plate 182 from being transferred to the electromagnetic component 122, avoid the electromagnetic component 122 from overheating due to the heat generated by the magnetic plate 182, thereby affecting the performance of the electromagnetic component 122, extending the service life of the electromagnetic component 122, reducing the probability of the electromagnetic component 122 malfunctioning, and reducing the maintenance cost of the air fryer 100.

[0135] In another embodiment according to this application, such as Figure 1 and Figure 3As shown, an air fryer 100 is provided, the air fryer 100 comprises: an appliance body 110, the appliance body 110 is provided with a cooking cavity 118 and a plurality of electric controls 120, the plurality of electric controls 120 at least includes a motor 123 and an electromagnetic element 122; a blade 181 is arranged in the cooking cavity 118 and connected with the motor 123, the electromagnetic element 122 is opposite to the blade 181, at least a part of the blade 181 has magnetic conductivity; at least two heat dissipation fans 130 are arranged on the appliance body 110, each heat dissipation fan 130 can generate airflow, and the airflow generated by the at least two heat dissipation fans 130 can flow to at least two electric controls 120 of the plurality of electric controls 120 respectively.

[0136] The air fryer 100 provided by the embodiment of the utility model includes appliance body 110, blade 181 and at least two heat dissipation fans 130, specifically, because electromagnetic element 122 is opposite to blade 181, therefore, electromagnetic element 122 can generate alternating magnetic field under the condition of electrification, blade 181 with magnetic conductivity will heat under the action of alternating magnetic field, simultaneously, under the drive of motor 123, blade 181 rotates in cooking cavity 118, forms hot air circulation, thereby the foodstuff in cooking cavity 118 is heated and cooked.

[0137] At least two heat dissipation fans 130 are arranged on the appliance body 110, and each heat dissipation fan 130 generates airflow under the condition of starting work, specifically, the airflow generated by the at least two heat dissipation fans 130 can flow to at least two electric controls 120 respectively, that is to say, at least two heat dissipation fans 130 can dissipate heat for different electric controls 120 respectively, so that at least two electric controls 120 in air fryer 100 can dissipate heat simultaneously, meet the heat dissipation demand of the plurality of electric controls 120 in air fryer 100, improve the heat dissipation effect of air fryer 100 as a whole, further improve the reliability of air fryer 100, prolong the service life of air fryer 100.

[0138] As shown in Figure 1 and Figure 3 In some embodiments, optionally, the plurality of electric controls 120 further includes a power board 121, any one of the electromagnetic element 122 and the motor 123 is electrically connected with the power board 121; wherein the at least two heat dissipation fans 130 include a first fan 131 and a second fan 132, the airflow generated by the first fan 131 can flow to at least one of the power board 121, the motor 123 and the electromagnetic element 122, and the airflow generated by the second fan 132 can flow to at least one of the power board 121, the motor 123 and the electromagnetic element 122.

[0139] In this embodiment, the at least two heat dissipation fans 130 include a first fan 131 and a second fan 132, specifically, the airflow generated by the first fan 131 can flow to at least one of the power board 121, the motor 123 and the electromagnetic component 122, and the airflow generated by the second fan 132 can flow to at least one of the power board 121, the motor 123 and the electromagnetic component 122. Specifically, the airflow generated by the first fan 131 flows to the power board 121 and the motor 123, and the airflow generated by the second fan 132 flows to the power board 121. Alternatively, the airflow generated by the first fan 131 flows to the electromagnetic component 122, and the airflow generated by the second fan 132 flows to the power board 121 and the electromagnetic component 122. Alternatively, the airflow generated by the first fan 131 flows to the power board 121, and the airflow generated by the second fan 132 flows to the electromagnetic component 122 and the motor 123. Here, they are not listed one by one. That is, the first fan 131 and the second fan 132 can respectively dissipate heat for the at least two electric controls 120, so that the at least two electric controls 120 in the air fryer 100 can simultaneously dissipate heat, meeting the heat dissipation requirements of the multiple electric controls 120 in the air fryer 100.

[0140] Moreover, since at least two of the power board 121, the motor 123 and the electromagnetic component 122 can effectively dissipate heat, the surface temperature of the power board 121, the electromagnetic component 122 or the motor 123 can be reduced, effectively avoiding the power board 121, the motor 123 or the electromagnetic component 122 from malfunctioning due to excessively high temperature rise, improving the reliability of the air fryer 100 and reducing the maintenance cost of the air fryer 100.

[0141] In the description of the present specification, the terms "connection", "installation", "fixation" and the like should be understood in a broad sense, for example, "connection" can be fixed connection, can also be detachable connection, or integrally connected; can be directly connected, or indirectly connected through an intermediate medium. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0142] In the description of the present specification, the terms "one embodiment", "some embodiments", "a specific embodiment" and the like mean that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present application. In the present specification, the illustrative description of the above terms does not necessarily mean the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.

[0143] The above merely is preferred embodiment of the present utility model, and is not for limiting the present utility model, for the person skilled in the art, the present utility model can have various changes and changes. Any modification, equivalent replacement, improvement etc. that is made within the spirit and principle of the present utility model should be included in the protection scope of the present utility model.

Claims

1. An air fryer characterized in that, The air fryer comprises: an appliance body provided with a plurality of electric controls; at least two heat dissipation fans arranged in the appliance body, each of the heat dissipation fans being capable of generating an airflow, and the airflows generated by the at least two heat dissipation fans being capable of flowing to at least two of the electric controls, respectively.

2. The air fryer according to claim 1, wherein the plurality of electric controls comprise a power board, an electromagnetic component and a motor, and any one of the electromagnetic component and the motor is electrically connected to the power board; wherein the at least two heat dissipation fans comprise a first fan and a second fan, the airflow generated by the first fan is capable of flowing to at least one of the power board, the motor and the electromagnetic component, and the airflow generated by the second fan is capable of flowing to at least one of the power board, the motor and the electromagnetic component.

3. The air fryer according to claim 2, wherein the first fan comprises a first air outlet and a second air outlet, the first air outlet is directed towards the power board, and a part of the airflow flowing out of the second air outlet is capable of flowing to the motor, and another part is capable of flowing to the electromagnetic component.

4. The air fryer according to claim 3, wherein the appliance body is further provided with a partition plate, the partition plate separates the second air outlet into a first outlet and a second outlet, the first outlet is directed towards the motor, and the second outlet is directed towards the electromagnetic component.

5. The air fryer according to claim 2, wherein the second fan comprises a third air outlet, and the third air outlet is directed towards the power board and / or the motor.

6. The air fryer according to claim 2, wherein the second fan further comprises a fourth air outlet, and the fourth air outlet is directed towards the electromagnetic component.

7. The air fryer according to any one of claims 1 to 6, wherein the appliance body is further provided with a heat dissipation cavity, an air inlet and a first air outlet, the plurality of electric controls are located in the heat dissipation cavity, the air inlet and the first air outlet are in communication with the heat dissipation cavity, respectively, and each of the heat dissipation fans is in communication with the air inlet; wherein at least a part of the air inlet and the first air outlet are located on different sides of the appliance body.

8. The air fryer according to claim 7, wherein at least a part of the air inlet and the first air outlet are located on opposite sides of the appliance body.

9. The air fryer according to claim 7, wherein at least a part of the air inlet is arranged close to at least one of the heat dissipation fans.

10. The air fryer of claim 7, wherein, The air fryer comprises: a pot body provided with a plurality of electric controls and a heat dissipation cavity; an outer shell arranged on the outer side of the pot body, and the air inlet is arranged in the outer shell and extends at least partially along the circumference of the outer shell.

11. An air fryer characterized in that, The air fryer comprises: an appliance body provided with a cooking cavity and a plurality of electric controls, and the plurality of electric controls at least comprise a motor and an electromagnetic component; a blade arranged in the cooking cavity and connected to the motor, and the electromagnetic component is opposite to the blade, and at least a part of the blade has magnetic conductivity. At least two heat dissipation fans are arranged in the appliance body, and each of the heat dissipation fans is capable of generating an airflow, and the airflows generated by the at least two heat dissipation fans are capable of flowing to at least two of the plurality of electric controls, respectively.

12. The air popper of claim 11, wherein, The plurality of electric controls further include a power board, and any one of the electromagnetic member and the motor is electrically connected to the power board. The at least two heat dissipation fans include a first fan and a second fan, the airflow generated by the first fan is capable of flowing to at least one of the power board, the motor and the electromagnetic member, and the airflow generated by the second fan is capable of flowing to at least one of the power board, the motor and the electromagnetic member.