Air fryer
By setting up a wind guide shell and partition in the outer shell of the air fryer and using fan components to isolate the flow of hot air, the problem of excessive shell temperature is solved, and better heat dissipation and user safety are achieved.
Patent Information
- Application Number
- CN202421524103.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-28
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2034-06-28
AI Technical Summary
The shell of the existing air fryer cannot be discharged in time, resulting in too high temperature and may burn the user.
An air fryer is designed. By setting a plurality of air guide shells and partitions in the shell, the fan assembly is used to flow the hot air inside the shell to the outside, separate the working space of each fan assembly, and improve the heat dissipation effect.
It effectively avoids the high shell temperature burning users, improves the heat dissipation effect of the air fryer, and ensures user safety.
Smart Images

Figure CN223169600U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of air fryers. Background Art
[0002] An air fryer is a kitchen appliance that uses an air heating component and the hot air circulation airflow generated by it to bake food.
[0003] In the related art, an air fryer includes a housing, an inner housing, and two burners. Among them, the inner housing is arranged inside the housing, and two cooking chambers are defined inside the inner housing for respectively placing cooking containers. The two burners are arranged on the top of the inner housing and are respectively located on the top of the two cooking chambers for providing hot air circulation airflow for the cooking chambers.
[0004] However, during actual use, the double burners are prone to generating a large amount of heat. Therefore, a relatively large amount of heat is likely to be deposited inside the housing and cannot be discharged in time, resulting in the housing being overheated and scalding the user. Summary of the Utility Model
[0005] The utility model aims to at least solve one of the technical problems existing in the prior art. For this purpose, the utility model provides an air fryer to improve the heat dissipation effect of the air fryer.
[0006] An embodiment of the present application provides an air fryer, which is characterized by comprising:
[0007] A housing provided with a pick-up and placement opening;
[0008] A furnace cavity housing arranged inside the housing and defining a cooking chamber, and the pick-up and placement opening is communicated with the cooking chamber;
[0009] A plurality of cooking containers, and the container bodies of each cooking container are placed side by side in the cooking chamber through the pick-up and placement opening;
[0010] A plurality of air guiding housings, the number of the plurality of air guiding housings is the same as that of the cooking containers, and they are correspondingly arranged on the tops of the cooking containers, and an air inlet is provided at the top of each air guiding housing;
[0011] A fan assembly is arranged inside the air guiding housing;
[0012] A partition plate is arranged inside the housing and between adjacent air guiding housings, and the bottom of the partition plate is lower than the air inlet.
[0013] According to some embodiments of the utility model, there are two cooking containers and two air guiding housings, and the partition plate is arranged between the two air guiding housings.
[0014] According to some embodiments of the utility model, the top of the partition plate is higher than the air inlet.
[0015] According to some embodiments of the present utility model, the plane where the partition is located is perpendicularly arranged to the plane where the air inlet is located.
[0016] According to some embodiments of the present utility model, the partition is connected to the inner side of the outer shell.
[0017] According to some embodiments of the present utility model, the partition is integrally provided with the outer shell, or the partition is assembled and connected to the outer shell.
[0018] According to some embodiments of the present utility model, a first relief notch is provided at the upper edge of the partition for making room for the circuit board and / or the control panel of the air fryer.
[0019] According to some embodiments of the present utility model, a border is provided at the edge of the partition.
[0020] According to some embodiments of the present utility model, reinforcing ribs are provided on the side surface of the partition, and both ends of the reinforcing ribs are connected to the border.
[0021] According to some embodiments of the present utility model, a wind guiding ring protruding upward is provided at the position of the air inlet, and the wind guiding ring is arranged on the periphery of the air inlet.
[0022] According to some embodiments of the present utility model, a second relief notch is provided at the end of the wind guiding ring away from the air inlet.
[0023] According to some embodiments of the present utility model, the housing is provided with an air inlet and an air outlet. When the fan assembly is operating, the air outside the outer shell enters the air inlet through the air inlet and is discharged from the air outlet.
[0024] According to some embodiments of the present utility model, the air fryer further includes a mounting bracket. The mounting bracket is fixedly arranged at the top of the oven cavity housing and forms an upper heat dissipation cavity with the top of the outer shell. The air inlet is communicated with the upper heat dissipation cavity. The fan assembly is arranged on the mounting bracket and is located in the upper heat dissipation cavity. The partition is connected to the mounting bracket and the outer shell and is located between the air guiding shells of adjacent fan assemblies, so that the fan assemblies are separately arranged in the upper heat dissipation cavity.
[0025] According to some embodiments of the present utility model, the partition is integrally provided with the mounting bracket, or the partition is assembled and connected to the mounting bracket.
[0026] According to some embodiments of the present utility model, the air fryer further includes a lining frame, the lining frame includes a lining ring and a support plate, an outer side surface of the lining ring is attached to an inner side wall of the housing, the support plate is connected to an inner side of the lining ring and is used for assembling a control panel and / or a circuit board of the air fryer, and a top of the partition plate is connected to the lining frame.
[0027] According to some embodiments of the present utility model, the partition plate and the lining frame are integrally provided, or the partition plate and the lining frame are assembled and connected.
[0028] As can be seen from the above technical solutions, the embodiments of the present application have the following advantages: When the fan assembly is operating, the fan assembly causes the air outside the air guiding housing to flow into the air guiding housing from the air inlet and discharge from the air outlet of the air guiding housing. Among them, since the partition plates separate the respective air guiding housings in different cavities within the housing, and the bottom of the partition plate is lower than the air inlet, during the rotation of each fan assembly, the heat dissipation gas in the corresponding cavity is respectively driven to flow, so that the gas inside the housing can be timely taken out and discharged to the outside of the air fryer, thereby avoiding the temperature of the housing being too high and scalding the user. BRIEF DESCRIPTION OF THE DRAWINGS
[0029] Figure 1 is a schematic diagram of the overall structure of the air fryer according to an embodiment of the present utility model;
[0030] Figure 2 is an exploded structure schematic diagram of the air fryer according to an embodiment of the present utility model;
[0031] Figure 3 is a vertical sectional structure schematic diagram of the air fryer according to an embodiment of the present utility model;
[0032] Figure 4 is a schematic diagram of the structure of the mounting bracket according to an embodiment of the present utility model;
[0033] Figure 5 is an exploded structure schematic diagram of the housing according to an embodiment of the present utility model;
[0034] Figure 6 is a schematic diagram of the structure of the partition plate according to an embodiment of the present utility model;
[0035] Figure 7 is a schematic diagram of the assembly structure of the burner head and the air guiding ring according to an embodiment of the present utility model;
[0036] Figure 8 is a schematic diagram of the structure after the burner head and the air guiding ring are separated according to an embodiment of the present utility model.
[0037] Among them, the meanings of the reference numerals are as follows:
[0038] 100. Outer shell; 110. Lower shell; 111. Lower heat dissipation cavity; 112. Air inlet; 120. Side shell; 121. Heat dissipation channel; 130. Upper shell; 131. Shrinkage part; 132. Extension part; 133. Cover plate part; 134. Upper heat dissipation cavity; 135. Air outlet; 140. Access opening; 200. Oven cavity shell; 210. Bottom plate; 220. Enclosure; 230. Cooking chamber; 310. Mounting bracket; 320. Burner; 321. Air guide shell; 3211. Air inlet; 3212. Air outlet; 322. Mounting seat; 3221. Mounting part; 3222. Extension foot; 323. Fan assembly; 330. Partition; 331. Perimeter; 332. Reinforcing rib; 333. First relief notch; 3331. First notch part; 3332. Second notch part; 340. Air guide ring; 341. Second relief notch; 342. Third relief notch; 400. Inner lining frame; 410. Inner lining ring; 420. Support plate; 421. First support plate part; 422. Second support plate part; 430. Control panel; 440. Circuit board; 500. Cooking container. Detailed implementation mode
[0039] The embodiments of the present utility model will be described in detail below. The examples of the embodiments are shown in the drawings, where the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the drawings are exemplary and are only used to explain the present utility model and should not be construed as a limitation of the present utility model.
[0040] In the description of the present utility model, it should be understood that for the orientation description, such as the orientation or positional relationship indicated by up, down, front, back, top, bottom, etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of the present utility model.
[0041] In the description of the present utility model, the meaning of several is more than one, and the meaning of multiple is more than two. Understanding greater than, less than, exceeding, etc. does not include the present number, and understanding above, below, within, etc. includes the present number. If the first and second are described only for the purpose of distinguishing technical features, they should not be construed as indicating or implying relative importance or implicitly indicating the quantity of the indicated technical features or implicitly indicating the sequence relationship of the indicated technical features.
[0042] In the description of the present utility model, unless otherwise clearly defined, words such as setting, installing, connecting, etc. should be understood in a broad sense, and those skilled in the art can reasonably determine the specific meaning of the above words in the present utility model in combination with the specific content of the technical solution.
[0043] In the description of the present utility model, the descriptions with reference to terms such as "one embodiment", "some embodiments", "schematic embodiments", "examples", "specific examples", or "some examples" 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 utility model. In this specification, the schematic expressions of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described can be combined in a suitable manner in any one or more embodiments or examples.
[0044] The present utility model will be further described in detail below with reference to the accompanying drawings.
[0045] Please refer to Figures 1 to 3 , which is an air fryer provided by an embodiment of the present utility model, including a housing 100, a furnace cavity housing 200, a plurality of cooking containers 500, a plurality of air guide housings 321, and a partition 330. Among them, the housing 100 is provided with a pick-up and placement opening 140; the furnace cavity housing 200 is arranged inside the housing 100 and defines a cooking chamber 230, and the pick-up and placement opening 140 is communicated with the cooking chamber 230; the container bodies of the respective cooking containers 500 are placed side by side in the cooking chamber 230 through the pick-up and placement opening 140; the plurality of air guide housings 321 are provided in the same number as the cooking containers 500 and are correspondingly arranged at the tops of the cooking containers 500, and an air inlet 3211 is provided at the top of each air guide housing 321; a fan assembly 323 is provided inside the air guide housing 321; the partition 330 is arranged inside the housing 100 and between adjacent air guide housings 321, and the bottom of the partition 330 is lower than the air inlet 3211.
[0046] Among them, the number of the air guide housings 321 can be two, three, four, five, etc., and the present application does not limit the specific number. Correspondingly, the cooking containers 500 are provided with the same number of cooking containers 500 as the air guide housings 321. After the cooking containers 500 are placed in the cooking chamber 230 through the pick-up and placement opening 140, the tops of the respective cooking containers 500 just correspond to and match one air guide housing 321, and a partition 330 is arranged between each adjacent air guide housing 321 to separate the air guide housings 321.
[0047] In a specific application, when the fan assembly 323 is operating, the fan assembly 323 causes the air outside the air guide housing 321 to flow into the air guide housing 321 from the air inlet 3211 and be discharged from the air outlet 3212 of the air guide housing 321. Among them, since the partition plate 330 separates each air guide housing 321 in different cavities within the outer housing 100, and the bottom of the partition plate 330 is lower than the air inlet 3211, during the operation of each fan assembly 323, the heat dissipation gas in the corresponding cavity is respectively driven sufficiently, so that the gas inside the outer housing 100 can be taken out in time and discharged to the outside of the air fryer, thereby avoiding the outer housing 100 from being overheated and scalding the user.
[0048] In addition, a partition plate 330 is provided between every two adjacent air guide housings 321. More precisely, the partition plate 330 separates each fan assembly 323. Thus, during the working process of each fan assembly 323, the partition plate 330 separates the working spaces of each fan assembly 323, avoiding the interference between the operations of each fan assembly 323, thereby ensuring the working effect of each fan assembly 323 to be able to quickly discharge the heat dissipation gas inside the outer shell of the air guide housing 321.
[0049] In a specific embodiment, referring to Figure 2 and Figure 3 , there are two air guide housings 321, and the partition plate 330 is arranged between the two air guide housings 321. Thus, the partition plate 330 separates the air guide housings 321 in two different cavities inside the outer housing 100; at the same time, there are two cooking containers 500. The two cooking containers 500 are placed in the cooking chamber 230. One air guide housing 321 is correspondingly arranged directly above one cooking container 500, and the other air guide housing 321 is correspondingly arranged directly above the other cooking container 500. During the application process, during the working process of the fan assemblies 323 inside the two air guide housings 321, the two fan assemblies 323 generally only drive the heat dissipation gas in the corresponding one cavity, so that the gas inside the outer housing 100 can be taken out in time and discharged to the outside of the air fryer, thereby avoiding the outer housing 100 from being overheated and scalding the user. <()
[0050] In some embodiments, referring to Figure 2 and Figure 3 , the top of the partition plate 330 is arranged higher than the air inlet 3211. Thus, the partition plate 330 effectively separates the fan assemblies 323 in different cavities. Therefore, during the operation of the fan assemblies 323 inside each air guide housing 321, each fan assembly 323 can preferably drive the heat dissipation gas in the corresponding cavity, so that the heat dissipation gas inside the outer housing 100 can be taken out in time and discharged to the outside of the air fryer, thereby avoiding the outer housing 100 from being overheated and scalding the user.
[0051] In some embodiments, the plane where the partition plate 330 is located is perpendicular to the plane where the air inlet 3211 is located. With this arrangement, the air inlet 3211 is arranged towards the top of the housing 100, and the partition plate 330 evenly separates each air guiding housing 321 into different cavities. Therefore, during the operation of the fan assemblies 323 inside each air guiding housing 321, each fan assembly 323 can preferably drive the heat dissipation gas in the corresponding cavity, so as to timely take out the gas inside the housing 100 and discharge it to the outside of the air fryer, thereby avoiding scalding the user due to the overhigh temperature of the housing 100. Of course, the partition plate 300 can also be inclined, which is set according to actual needs.
[0052] In some embodiments, the partition plate 330 is connected to the inner side of the housing 100. With this arrangement, the partition plate 330 and the housing 100 have good sealing performance. The partition plate 330 separates each air guiding housing 321 into relatively closed and different cavities to reduce or avoid gas flow between adjacent cavities. Therefore, during the operation of the fan assemblies 323 inside each air guiding housing 321, each fan assembly 323 can preferably drive the heat dissipation gas in the corresponding cavity, so as to timely take out the gas inside the housing 100 and discharge it to the outside of the air fryer, thereby avoiding scalding the user due to the overhigh temperature of the housing 100.
[0053] In some embodiments, the partition plate 330 is integrally provided with the housing 100. With this arrangement, the air fryer is more convenient to assemble during assembly. The partition plate 330 has a good sealing effect on the separated cavities, and the fan assembly 323 can preferably drive the heat dissipation gas in the corresponding cavity to discharge the heat dissipation gas inside the housing 100.
[0054] Of course, the partition plate 330 is assembled and connected to the housing 100, that is, the partition plate 330 and the housing 100 are two independent components, and each component has a simple structure and is convenient to manufacture.
[0055] In some embodiments, referring to Figure 2 and Figure 3, the housing 100 is provided with an air inlet 112 and an air outlet 135. The set positions of the air inlet 112 and the air outlet 135 are not fixed. The number of the air outlets 135 is set to be equal to the number of the air guiding housings 321. Each air guiding housing 321 is arranged inside the housing 100, and the air outlets 3212 of each air guiding housing 321 are respectively docked with the air outlet 135. Therefore, when the fan assembly 323 operates, the air outside the housing 100 enters the housing 100 through the air inlet 112. The air carries the heat inside the housing 100 and enters the air guiding housing 321 through the air inlet 3211, and is discharged from the air outlet 135 along the air guiding housing 321. It can be understood that the partition 330 separates each air guiding housing 321 in different cavities. With such a setting, each fan assembly 323 can preferably drive the heat dissipation gas in the corresponding cavity. The air in the external environment can quickly enter the housing 100 from the air inlet 112 and be timely discharged from the air outlet 135 to the outside of the air fryer under the action of the fan assembly 323, so as to quickly cool the housing 100 and avoid scalding the user due to the overhigh temperature of the housing 100.
[0056] Furthermore, referring to Figures 2 to 4 , the air fryer further includes a mounting bracket 310. The mounting bracket 310 is horizontally and fixedly arranged at the top of the oven cavity housing 200 and forms an upper heat dissipation cavity 134 with the top of the housing 100. Both the air inlet 112 and the air outlet 135 are communicated with the upper heat dissipation cavity 134. The air guiding housing 321 is arranged on the mounting bracket 310 and is located in the upper heat dissipation cavity 134. The bottom of the partition 330 is connected to the mounting bracket 310, and the top of the partition 330 is connected to the inner side of the housing 100. The partition 330 is located between adjacent air guiding housings 321 so that the air guiding housings 321 are located in different cavities in the upper heat dissipation cavity 134. It can be understood that through the setting of the mounting bracket 310, the partition 330 is connected to the air guiding housing 321 and the mounting bracket 310. With such a setting, the partition 330 divides the upper heat dissipation cavity 134 into multiple relatively closed cavities for respectively installing the air guiding housings 321. Therefore, each fan assembly 323 can preferably drive the heat dissipation gas in the corresponding cavity. The air in the external environment can quickly enter the housing 100 from the air inlet 112 and be timely discharged from the air outlet 135 to the outside of the air fryer under the action of the fan assembly 323.
[0057] In some embodiments, the partition 330 and the mounting bracket 310 are integrally arranged. With such a setting, the air fryer is more convenient to assemble. The partition 330 has a better sealing effect on the separated cavities, and the fan assembly 323 can preferably drive the heat dissipation gas in the corresponding cavity to discharge the heat dissipation gas inside the housing 100.
[0058] Of course, the partition plate 330 is assembled and connected to the outer shell 100. That is, the partition plate 330 is a component independent of the mounting bracket 310 and the housing. Each component has a simple structure and is convenient to manufacture.
[0059] In some embodiments, referring to Figures 2 to 5 , the outer shell 100 includes a lower housing 110, a side housing 120, and an upper housing 130. The lower end of the side housing 120 is connected to the lower housing 110, and the upper housing 130 is connected to the upper end of the side housing 120. Among them, the side housing 120 is generally arranged in a U shape. Thus, the side housing 120 forms a pick-up and placement opening 140 on one side thereof. At the same time, the furnace cavity housing 200 includes a bottom plate 210 and a surrounding plate 220. The bottom plate 210 is spaced above the lower housing 110, and a lower heat dissipation cavity 111 is formed therebetween. An air inlet 112 communicating with the lower heat dissipation cavity 111 is provided at the bottom of the lower housing 110. The surrounding plate 220 is generally arranged in a U shape. The surrounding plate 220 is spaced inside the side housing 120. The lower edge of the surrounding plate 220 is connected to the edge of the bottom plate 210, and two cooking chambers 230 are enclosed therebetween. The two cooking chambers 230 are just connected to the pick-up and placement opening 140 on the side shell. A U-shaped heat dissipation channel 121 is formed between the outer side of the surrounding plate 220 and the inner side of the side housing 120. The lower port of the heat dissipation channel 121 is connected to the lower heat dissipation cavity 111. The mounting bracket 310 is fixedly assembled on the top of the surrounding plate 220. An upper heat dissipation cavity 134 as described above is formed between the mounting bracket 310 and the upper housing 130. Two air guide housings 321 are assembled and connected to the mounting bracket 310 and are located inside the upper housing 130. The upper port of the heat dissipation channel 121 is connected to the upper heat dissipation cavity 134. At the same time, an air outlet 135 is provided at the rear side of the upper housing 130. The air outlet 3212 of the air guide housing 321 (refer to Figure 8 ) is arranged facing the air outlet 135.
[0060] Specifically, during the rotation of the fan assembly 323, the heat dissipation gas flows into the lower heat dissipation cavity 111 from the air inlet 112. The heat dissipation gas prevents the lower housing 110 from being heated to a relatively high temperature to avoid scalding the user by the lower housing 110. Then, the heat dissipation gas flows from the lower heat dissipation cavity 111 into the heat dissipation channel 121 and flows into the upper heat dissipation cavity 134 from the upper port of the heat dissipation channel 121. Among them, when the heat dissipation gas passes through the heat dissipation channel 121, the heat dissipation gas prevents the side housing 120 from being heated to a relatively high temperature to avoid scalding the user by the side housing 120. Finally, after the heat dissipation gas flows into the upper heat dissipation cavity 134, the heat dissipation gas flows from the upper heat dissipation cavity 134 into the inner side of the air guide housing 321. The fan assembly 323 discharges the heat dissipation gas from its air outlet 3212, so as to discharge it to the outside of the upper housing 130 from the air outlet 135 of the upper housing 130. Among them, when the heat dissipation gas passes through the upper heat dissipation cavity 134, the heat dissipation gas prevents the upper housing 130 from being heated to a relatively high temperature to avoid scalding the user by the side housing 120.
[0061] It should be noted that the partition plate 330 divides the upper heat dissipation cavity 134 into two cavities, and the two air guide shells 321 are respectively located in the two cavities. Correspondingly, when the fan assembly 323 operates, it acts on the heat dissipation gas in different spaces respectively. With such a setting, during the rotation of the fan assembly 323, the fan assembly 323 can drive the flow of the heat dissipation gas in the corresponding cavity, thereby driving the flow of the heat dissipation gas in the heat dissipation channel 121, and then the heat dissipation gas in the heat dissipation channel 121 can be timely brought into the upper heat dissipation cavity 134 and discharged to the outside of the upper shell 130 through the fan assembly 323. Thus, it can be seen that through the setting of the partition plate 330, the flow of the heat dissipation gas in the heat dissipation channel 121 is effectively accelerated, so that the heat in the heat dissipation gas in the heat dissipation channel 121 can be timely taken out, and further, the temperature of the side shell 120 is effectively prevented from being too high to scald the customer.
[0062] Furthermore, the upper shell 130 includes a contraction part 131, an extension part 132 and an upper cover part. Among them, both the contraction part 131 and the extension part 132 are annular shells. The lower end part of the contraction part 131 is connected to the upper end part of the side shell 120, the extension part 132 is connected to the upper end part of the contraction part 131, the upper cover part is connected to the upper end part of the extension part 132, and the air outlet 135 is arranged at the rear side of the contraction part 131 and the extension part 132; among them, the contraction part 131 is arranged to contract inward, or rather, the cross-section of the contraction part 131 is set to be reduced. Therefore, the cross-section of the extension part 132 is effectively reduced relative to the cross-section of the side shell 120.
[0063] It can be understood that the cross-section of the upper shell 130 is set to contract relative to the cross-section of the side shell 120, and the upper heat dissipation cavity 134 of the upper shell 130 is effectively reduced. Correspondingly, the sizes of the two cavities are effectively reduced. Therefore, during the rotation of the fan assembly 323, it can more effectively drive the heat dissipation gas in the heat dissipation channel 121 and the upper heat dissipation cavity 134, so that the heat in the heat dissipation channel 121 and the upper heat dissipation cavity 134 can be timely discharged to the outside of the upper shell 130.
[0064] In some embodiments, the air fryer further includes an inner lining frame 400 disposed inside the upper housing 130 for mounting the control panel 430 and the circuit board 440. The inner lining frame 400 includes an inner lining ring 410 and a support plate 420. The outer side surface of the inner lining ring 410 is fitted with the inner side surface of the extension portion 132. The lower end portion of the inner lining ring 410 is connected to the upper end portion of the contraction portion 131, and the upper end portion of the inner lining ring 410 is connected to the upper cover portion. The support plate 420 is fixedly disposed inside the inner lining ring 410. The support plate 420 has a first support plate portion 421 and a second support plate portion 422, and the second support plate portion 422 is disposed lower than the first support plate portion 421. The control panel 430 is disposed on the first support plate portion 421, and the circuit board 440 is disposed on the second support plate portion 422. It can be understood that the inner lining ring 410 of the inner lining frame 400 is fixedly disposed inside the extension portion 132, which can enhance the strength of the upper housing 130. In addition, the support plate 420 is disposed inside the inner lining frame 400 and can be used to mount the circuit board 440 and the control panel 430. Thus, the inner lining frame 400 facilitates the installation of the control panel 430 and the circuit board 440.
[0065] In some embodiments, the partition 330 is integrally provided with the inner lining. In this way, the air fryer is more convenient to assemble. The partition 330 has a better sealing effect on the separated cavity, and the fan assembly 323 can preferably drive the heat dissipation gas in the corresponding cavity to discharge the heat dissipation gas in the inner lining.
[0066] Of course, the partition 330 is assembled and connected to the inner lining, that is, the partition 330 and the inner lining are two independent components, and each component has a simple structure and is convenient to manufacture.
[0067] In some embodiments, referring to Figure 2 、 Figure 3 and Figure 6 , a first relief notch 333 is provided at the upper edge of the partition 330. The first relief notch 333 is used to make way for the support plate 420 to make way for the circuit board 440 and / or the control panel 430 of the air fryer. Specifically, the first relief notch 333 is provided with a first notch portion 3331 and a second notch portion 3332. The second notch portion 3332 is disposed lower than the first notch portion 3331. The first notch portion 3331 is used to make way for the first support plate portion 421 to make way for the control panel 430, and the second notch portion 3332 is used to make way for the second support plate portion 422 to make way for the circuit board 440.
[0068] It can be understood that, through the provision of the first relief notch 333 on the partition plate 330, the control panel 430 and the circuit board 440 can be arranged at a lower position, thereby further compressing the space of the upper heat dissipation cavity 134. Therefore, during the rotation of the fan assembly 323, the heat dissipation gas in the heat dissipation channel 121 and the upper heat dissipation cavity 134 can be driven more effectively, so that the heat in the heat dissipation channel 121 and the upper heat dissipation cavity 134 can be timely discharged to the outside of the upper housing 130.
[0069] In some embodiments, referring to Figure 2 and Figure 6 , a border 331 is provided at the edge of the partition plate 330. Thus, the edge of the partition plate 330 is adhesively arranged on the inner side of the mounting bracket 310 and the outer shell 100 through the border 331. It can be understood that the edge of the partition plate 330 is adhesively arranged on the upper surface of the mounting bracket 310 and the inner wall of the outer shell 100, thereby ensuring the sealing performance of the connection of the partition plate 330. Therefore, the partition plate 330 ensures the closure of the two cavities, so that the fan assembly 323 can drive the heat dissipation gas in the heat dissipation channel 121 and the upper heat dissipation cavity 134 more effectively during rotation.
[0070] In some embodiments, reinforcing ribs 332 are provided on both sides of the partition plate 330. The two ends of the reinforcing ribs 332 are connected to the border 331. For example, the reinforcing ribs 332 are vertically extended, the lower end of the reinforcing ribs 332 is connected to the lower border 331, and the upper end of the reinforcing ribs 332 is connected to the upper border 331. It can be understood that through the provision of the reinforcing ribs 332, the strength of the partition plate 330 is improved, thereby ensuring the sealing performance of the connection of the partition plate 330, and further ensuring the closure of the two cavities.
[0071] In some embodiments, a mounting seat 322 is provided at the position of the air inlet 3211. The mounting seat 322 includes a connected mounting portion 3221 and an extension leg 3222. The mounting portion 3221 is located at the air inlet 3211, the extension leg 3222 is connected to the top of the air guide housing 321, and the base of the fan assembly 323 is assembled and connected to the mounting portion 3221. For the convenience of understanding, the air guide housing 321, the mounting seat 322, and the fan assembly 323 can be understood as the burner 320 of the air fryer. The partition plate 330 is used to separate each burner 320 in different cavities for operation to achieve a better exhaust effect.
[0072] Furthermore, an upwardly protruding air guide ring 340 is provided at the air inlet 3211. The air guide ring 340 is disposed around the air inlet 3211, i.e., the lower end of the air guide ring 340 is connected to the air inlet 3211 of the air guide housing 321. A third clearance notch 342 is provided at the lower edge of the air guide ring 340, through which the extension leg 3222 can pass to connect with the top of the air guide housing 321.
[0073] The air guide ring 340 and the upper shell 130 are independent components. Of course, the two can also be integrated.
[0074] It can be understood that an air guide ring 340 is set at the position of the air inlet 3211. With this arrangement, after the heat dissipation gas in the heat dissipation channel 121 flows into the upper heat dissipation cavity 134, the heat dissipation gas can flow along the inner wall of the upper shell 130, thereby flowing into the air guide ring 340 from the upper port of the air guide ring 340, and flowing into the air guide shell 321 from the air inlet 3211. Therefore, the heat dissipation gas can effectively take out the heat accumulated in the upper heat dissipation cavity 134, thereby preventing the upper shell 130 from being heated to a higher temperature.
[0075] Moreover, a third paving opening is provided on the lower edge of the air guide ring 340 for paving the way for the extension leg 3222 , so that the mounting seat 322 can be conveniently assembled on the top of the air guide housing 321 .
[0076] In addition, the air guide ring 340 is located on the inner side of the extension portion 132, and the cross-section of the extension portion 132 is smaller than the cross-section of the side shell 120. Therefore, the extension portion 132 further ensures that the heat dissipation gas flows along the inner wall of the upper shell 130, thereby effectively removing the heat in the upper shell 130.
[0077] Furthermore, a second clearance notch 341 is provided at the end of the air guide ring 340 away from the air inlet 3211. This second clearance notch 341 is used to make way for the second support plate portion 422, thereby making way for the circuit board 440 of the air fryer. It will be appreciated that the provision of the second clearance notch 341 in the air guide ring 340 allows the circuit board 440 to be positioned lower, thereby further compressing the space in the upper heat dissipation cavity 134. Therefore, during rotation, the fan assembly 323 can more effectively drive the cooling air in the heat dissipation channel 121 and the upper heat dissipation cavity 134, thereby promptly dissipating the heat in the heat dissipation channel 121 and the upper heat dissipation cavity 134 to the outside of the upper housing 130.
[0078] The technical means disclosed by the solution of the present utility model are not limited to the technical means disclosed in the above embodiments, but also include technical solutions composed of any combination of the above technical features. It should be noted that for those of ordinary skill in the art, without departing from the principle of the present utility model, several improvements and refinements can be made, and these improvements and refinements are also regarded as the protection scope of the present utility model.
Claims
1. An air fryer, characterized in that, include: The housing is provided with a take-in / out opening; a furnace cavity shell, disposed inside the outer shell and defining a cooking chamber, wherein the access opening is in communication with the cooking chamber; A plurality of cooking containers, wherein the container bodies of the cooking containers are placed side by side in the cooking chamber through the access opening; A plurality of air guide housings, the plurality of air guide housings being provided in the same number as the cooking containers and being correspondingly provided on the tops of the cooking containers, the tops of the respective air guide housings being provided with air inlets; A fan assembly is provided on the inner side of the air guide housing; The partition is arranged in the shell and between adjacent air guide shells, and the bottom of the partition is lower than the air inlet.
2. The air fryer according to claim 1, wherein, There are two cooking containers and two air guide housings, and the partition is arranged between the two air guide housings.
3. An air fryer according to claim 1, characterized in that, The top of the partition is arranged higher than the air inlet.
4. An air fryer according to claim 1, characterized in that, The plane where the partition is located is perpendicular to the plane where the air inlet is located.
5. An air fryer according to claim 1, characterized in that, The partition is connected to the inner side of the shell.
6. An air fryer according to claim 1, characterized in that, The partition is integrated with the shell, or the partition is assembled and connected to the shell.
7. An air fryer according to claim 1, characterized in that, The upper edge of the partition is provided with a first making way notch for making way for the circuit board and / or control panel of the air fryer.
8. An air fryer according to claim 1, characterized in that, The edge of the partition is provided with a surrounding edge.
9. An air fryer according to claim 7, wherein, The side surfaces of the partition are provided with reinforcing ribs, and both ends of the reinforcing ribs are connected to the surrounding edges.
10. An air fryer according to claim 1, characterized in that, An upwardly protruding air guide ring is provided at the position of the air inlet, and the air guide ring is provided on the peripheral side of the air inlet.
11. An air fryer according to claim 10, characterized in that, The end of the air guide ring away from the air inlet is provided with a second gap.
12. An air fryer according to claim 1, characterized in that, The housing is provided with an air inlet and an air outlet. When the fan assembly is in operation, air outside the housing enters the air inlet through the air inlet and is discharged from the air outlet.
13. An air fryer according to claim 12, characterized in that, The air fryer also includes a mounting bracket, which is fixedly arranged on the top of the oven cavity shell and forms an upper heat dissipation cavity with the top of the outer shell. The air inlet is communicated with the upper heat dissipation cavity. The fan assembly is arranged on the mounting bracket and located in the upper heat dissipation cavity. The partition is connected to the mounting bracket and the outer shell and is located between the air guide shells of adjacent fan assemblies so that the fan assembly is separated and arranged in the upper heat dissipation cavity.
14. An air fryer according to claim 13, characterized in that, The partition plate is integrated with the mounting bracket, or the partition plate is assembled and connected with the mounting bracket.
15. An air fryer according to claim 1, characterized in that, The air fryer also includes an inner liner frame, which includes an inner liner ring and a support plate. The outer side surface of the inner liner ring is fitted with the inner side wall of the outer shell. The support plate is connected to the inner side of the inner liner ring and is used to assemble the control panel and / or circuit board of the air fryer. The top of the partition is connected to the inner liner frame.
16. An air fryer according to claim 15, wherein, The partition is integrated with the liner frame, or the partition is assembled and connected with the liner frame.