Air frying oven with air outlet net capable of exhausting air in inclined direction
By setting up air outlet grille components obliquely facing the left and right rear sides to divert hot air and cold air, and using air guide channels to mix the air temperature, the problem of rapid wall temperature rise caused by the air fryer oven's air outlet grille directly facing the wall is solved, achieving more efficient exhaust and structural optimization.
Patent Information
- Application Number
- CN202422745107.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-11
- Publication Date
- 2025-09-16
- Estimated Expiration
- 2034-11-11
AI Technical Summary
The air outlet of the existing air fryer oven is discharged directly towards the wall, causing the wall temperature to rise too quickly.
The exhaust direction of the air outlet net assembly is set to be obliquely toward the left rear and right rear. The hot air and cold air are diverted through the left and right air outlet nets, the air guide channel is used to mix the air temperature, and the distance between the air outlet net and the wall is increased.
It effectively avoids the problem of rapid temperature rise of the wall, improves the exhaust efficiency and the rationality of the structural layout, and protects the wall.
Smart Images

Figure CN223335988U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of cooking appliances, and particularly relates to an air frying oven with an air outlet network that exhausts air obliquely backwards. Background Art
[0002] An air fryer is a cooking appliance that heats food with hot air. It's typically equipped with a drawer-style frying tub and is equipped with an air outlet grille to exhaust air to the outside when the hot and cold fans are in operation. Currently, some air fryers on the market feature fan assemblies located at the rear of the cooking chamber. These grilles are typically located on the rear sidewall of the oven, and the exhaust direction is always directly toward the rear. However, since the rear sidewall of an air fryer is typically close to the kitchen wall when placed in the kitchen, hot air blows directly toward the wall, which can easily cause the wall temperature to rise too quickly, which does not meet the requirements. Therefore, improvements are needed. Utility Model Content
[0003] The utility model provides an air fryer oven with an air outlet net that exhausts air obliquely to the rear, aiming to solve the problem in the prior art that the air outlet net on the air fryer oven exhausts air directly toward the wall directly behind it, which easily causes the wall temperature to rise too quickly.
[0004] In order to solve the above technical problems, the technical solution adopted by the present invention is:
[0005] An air fryer oven with an air outlet screen that exhausts air obliquely to the rear, comprising:
[0006] A machine body, wherein a cooking cavity is provided in the machine body, a hot air cavity is provided at the rear side of the cooking cavity and is in communication with the hot air cavity, and a cold air cavity is provided at the rear side of the hot air cavity; a hot air exhaust port is provided on the hot air cavity, and a cold air exhaust port is provided on the cold air cavity; and,
[0007] An air outlet net assembly is provided on the machine body. The hot air exhaust port and the cold air exhaust port are both connected to the outside world through the air outlet net assembly. The exhaust direction of the air outlet net assembly is toward the left rear and / or right rear of the machine body.
[0008] A further solution: the air outlet net assembly includes two air outlet nets on the left and right; the exhaust direction of the air outlet net on the left is towards the left rear of the body, and the exhaust direction of the air outlet net on the right is towards the right rear of the body.
[0009] Based on the above technical solution: by setting up two left and right air outlet nets to exhaust air towards the left rear and right rear of the body respectively, the air discharged from the hot air exhaust port and the cold air exhaust port can be diverted, avoiding the problem of local concentration of hot air caused by exhaust from a single air outlet net, and further avoiding the problem of rapid temperature rise of the wall.
[0010] A further solution: the hot air cavity is provided with two hot air exhaust ports on the left and right, and the cold air cavity is provided with two cold air exhaust ports on the left and right. Each of the hot air exhaust ports and the cold air exhaust ports is connected to the outside world through the air outlet net on the corresponding side.
[0011] Based on the above technical solution: by setting two hot air exhaust ports on the hot air cavity and connecting them to the corresponding air outlet nets respectively, the hot air discharged from the hot air cavity can be diverted through the two hot air exhaust ports and then discharged through the two air outlet nets, avoiding the problem of local temperature rise caused by the exhaust of hot air from a single air outlet net, and further avoiding the problem of excessive temperature rise of the wall, while also making the exhaust of the hot air fan smoother and more efficient when working. By setting two cold air exhaust ports on the cold air cavity and connecting them to the corresponding air outlet nets respectively, the cold air discharged from the cold air cavity can be diverted through the two cold air exhaust ports and then discharged through the two air outlet nets, making the exhaust of the cold air fan smoother and more efficient when working.
[0012] A further solution: two left and right air guide channels are provided in the body; the air inlet end of each air guide channel is connected to the hot air exhaust port and the cold air exhaust port located on its corresponding side, and the air outlet end of each air guide channel is connected to the air outlet network located on its corresponding side.
[0013] Based on the above technical solution: the above setting enables the higher temperature air discharged from the hot air exhaust port and the lower temperature air discharged from the cold air exhaust port on the same side of the machine body to be mixed in the air guide channel first, so that the lower temperature air discharged from the cold air exhaust port will neutralize the temperature of the higher temperature air discharged from the hot air exhaust port, avoiding the problem of excessive temperature rise of the wall caused by the hot air exhaust port directly discharging hot air alone.
[0014] A further solution: each of the air outlet nets includes an air outlet channel arranged near the air guide channel and a mesh panel arranged near the air outlet end thereof, the mesh panel is provided with mesh holes, and the mesh panel is concavely arranged toward the air outlet channel;
[0015] The orientation of the air outlet channel and mesh holes of each air outlet net is consistent with the extension direction of the air guide channel on the corresponding side.
[0016] Based on the above technical solution, by aligning the mesh panel with the outlet channel, the panel's area is increased, allowing for a greater number of meshes. Furthermore, the distance between the meshes and the wall is increased, further slowing the temperature rise of the wall. By aligning the outlet channel and mesh holes with the corresponding air guide channel, exhaust is smoother and more efficient.
[0017] A further solution: the machine body is provided with an upper and a lower cooking cavity; the rear side of each cooking cavity is provided with a hot air cavity connected thereto, and the rear side of the hot air cavity is provided with a cold air cavity;
[0018] Each of the hot air cavities is provided with two hot air exhaust ports on the left and right, and each of the cold air cavities is provided with two cold air exhaust ports on the left and right;
[0019] The body is provided with two sets of air outlet net components, one on the left and one on the right. The exhaust direction of the air outlet net component on the left is toward the left rear of the body, and the exhaust direction of the air outlet net component on the right is toward the right rear of the body.
[0020] Each group of the air outlet net components includes two upper and lower air outlet nets; the air inlet end of each air outlet net is provided with an air guide channel, the air inlet end of each air guide channel is connected to the corresponding hot air exhaust port and the cold air exhaust port, and the air outlet end of each air guide channel is connected to the air inlet end of the corresponding air outlet net.
[0021] Based on this technical solution, the two upper and lower cooking cavities can cook more food simultaneously, and their side-by-side arrangement reduces the horizontal space occupied in the kitchen. The aforementioned exhaust arrangement allows each hot air cavity and its corresponding cold air cavity to exhaust air to the left and right rear ends of the appliance through their corresponding air outlets, further preventing the problem of rapid wall temperature rise. Furthermore, the four air outlets, separated vertically, horizontally, and horizontally, provide a more rational and optimized layout.
[0022] A further solution: each set of the air outlet net assembly further includes a mounting base, and the upper and lower air outlet nets are both arranged on the mounting base;
[0023] The mounting seat is fixedly connected to the body.
[0024] Based on the above technical solution: the above arrangement facilitates installation of the upper and lower air outlet nets on the machine body.
[0025] A further solution: a first clamping portion is provided on the outer side of each of the air guide channels, and a second clamping portion is provided on each of the air outlet nets; the second clamping portion on each of the air outlet nets is clamped with the first clamping portion on its corresponding air guide channel.
[0026] Based on the above technical solution: the above setting facilitates the rapid installation of the air outlet net on the machine body, and the air outlet net is snap-connected with the air guide channel, making the connection between the two more stable and conducive to exhaust.
[0027] A further solution: a protrusion protruding backward is provided on the rear side of the machine body, and an air outlet net mounting portion is provided on the left and right sides of the protrusion on the rear side wall of the machine body, and the air outlet net mounting portions are both recessed toward the machine body;
[0028] The air outlet net on the left side is arranged on the air outlet net installation portion on the left side, and the air outlet net on the right side is arranged on the air outlet net installation portion on the right side.
[0029] Based on the above technical solution: by providing a protrusion and providing an air outlet net installation part on the left and right sides of the protrusion, the distance between the air outlet net and the wall is increased, which can further avoid the problem of excessive temperature rise of the wall.
[0030] A further solution: the exhaust direction of the air outlet net on the left side is toward the rear of the machine body and 45 degrees to the left;
[0031] The exhaust direction of the air outlet net on the right side is toward the rear of the machine body and 45 degrees to the right.
[0032] Based on the above technical solution: 45 degrees is the preferred solution, which not only avoids the problem of rapid temperature rise of the wall, but also better prevents hot air from blowing to other objects on the left and right sides of the machine body.
[0033] The beneficial effects of the utility model are:
[0034] The present invention directs the exhaust of the air outlet mesh assembly toward the left and / or right rear of the oven body. This is because the heat dissipation space between the rear of the oven body and the wall is smaller, while the heat dissipation space at the left and right rear of the oven body is larger. As a result, when the air fryer oven is operating, the hot air discharged from the hot air outlet and the cooler air discharged from the cold air outlet are both discharged diagonally rearward to the outside world, which helps prevent the problem of excessively rapid wall temperature rise. Compared to the prior art method of blowing hot air directly toward the rear of the wall, the present invention's diagonal rearward exhaust arrangement provides a more rational and optimized structural layout, avoiding the problem of excessively rapid wall temperature rise caused by hot air directly blowing against the wall, thereby helping to protect the wall. BRIEF DESCRIPTION OF THE DRAWINGS
[0035] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following is a brief introduction to the drawings required for use in the embodiments. It should be understood that the following drawings only show certain embodiments of the present invention and therefore should not be regarded as limiting the scope. For ordinary technicians in this field, other relevant drawings can be obtained based on these drawings without paying any creative work.
[0036] Figure 1 The utility model is a structural schematic diagram of an air frying oven with an air outlet net that exhausts air obliquely to the rear.
[0037] Figure 2 It is a schematic diagram of the cross-sectional structure of an air fryer oven.
[0038] Figure 3 yes Figure 2 Schematic diagram of the enlarged structure at point A.
[0039] Figure 4 It is a structural diagram of the air outlet network and the air guide channel being connected.
[0040] Figure 5 It is a structural diagram of the first direction in which two upper and lower air outlet nets are provided on the mounting base.
[0041] Figure 6 It is a structural schematic diagram of the second direction in which two upper and lower air outlet nets are provided on the mounting base.
[0042] Description of the numbers in the figure:
[0043] 1-body; 11-rear side wall; 111-projection; 112-air outlet mesh mounting portion; 12-cooking cavity; 13-hot air cavity; 131-hot fan; 132-hot air exhaust port; 14-cold air cavity; 141-cold fan; 142-cold air exhaust port; 15-fan motor; 16-air guide channel; 161-first clamping portion; 17-mounting seat; 2-air outlet mesh; 21-air outlet channel; 22-mesh panel; 221-mesh; 23-second clamping portion. DETAILED DESCRIPTION
[0044] The following will be combined with the accompanying drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative work are within the scope of protection of the present invention.
[0045] Example 1:
[0046] like Figure 1 and Figure 2 As shown, this embodiment provides an air fryer oven with an air outlet net 2 that exhausts air obliquely to the rear, comprising:
[0047] The machine body 1 has a cooking cavity 12 therein, a hot air cavity 13 connected to the cooking cavity 12 at the rear side thereof, and a cold air cavity 14 at the rear side thereof; a hot air exhaust port 132 is provided on the hot air cavity 13, and a cold air exhaust port 142 is provided on the cold air cavity 14; and
[0048] The air outlet net 2 component is arranged on the body 1, and the hot air exhaust port 132 and the cold air exhaust port 142 are both connected to the outside world through the air outlet net 2 component. The exhaust direction of the air outlet net 2 component is towards the left rear and / or right rear of the body 1.
[0049] In this embodiment, the cooking cavity 12 can be a drawer-type fryer. A hot air fan 131 is provided within the hot air cavity 13. When in operation, the hot air fan 131 blows hot air into the cooking cavity 12 to heat the food. Steam and the hot air that needs to be exhausted are discharged from the hot air exhaust port 132 and discharged to the outside through the air outlet net 2. A cold air fan 141 is provided within the cold air cavity 14. A fan motor 15 is provided at the rear of the cold air cavity 14. The output shaft of the fan motor 15 is connected to the cold fan 141 and the hot fan 131. When in operation, the cold fan 141 dissipates heat from the fan motor 15 and other electronic components. The air blown out is discharged from the cold air exhaust port 142 and discharged to the outside through the air outlet net 2.
[0050] In this embodiment, Figure 1 、 Figure 2 and Figure 3 As shown, the preferred solution is that the exhaust direction of the air outlet net 2 assembly is toward the left and right rear sides of the machine body 1. This solution can divert the air discharged from the hot air exhaust port 132 and the cold air exhaust port 142, further avoiding the problem of excessively rapid wall temperature rise. Specifically, the air outlet net 2 assembly includes two air outlet nets 2 on the left and right; the exhaust direction of the air outlet net 2 on the left is toward the left rear side of the machine body 1, and the exhaust direction of the air outlet net 2 on the right is toward the right rear side of the machine body 1. Both air outlet nets 2 can be installed on the rear side wall 11 of the machine body 1 at the same time, or the air outlet net 2 on the left can be installed on the left side wall of the machine body 1, and the air outlet net 2 on the right can be installed on the right side wall of the machine body 1.
[0051] In this embodiment, Figure 1 、 Figure 2 and Figure 3As shown, to better divert the hot air exhausted from the hot air chamber 13 to the two air outlet nets 2 for discharge, the hot air chamber 13 is provided with two hot air exhaust ports 132 on the left and right. To better divert the cold air exhausted from the cold air chamber 14 to the two air outlet nets 2 for discharge, the cold air chamber 14 is provided with two cold air exhaust ports 142 on the left and right. Each hot air exhaust port 132 and cold air exhaust port 142 communicates with the outside world through the air outlet net 2 on its corresponding side. Specifically, for example, the hot air exhaust port 132 and cold air exhaust port 142 on the left side exhaust air to the outside world through the air outlet net 2 on the left side, specifically toward the left rear of the housing 1. When the hot fan 131 is operating, the exhausted hot air is discharged from both hot air exhaust ports 132 simultaneously, which also improves exhaust efficiency and smooths exhaust. When the cold fan 141 is operating, it exhausts air from both cold air exhaust ports 142, which improves exhaust efficiency and helps improve heat dissipation.
[0052] In this embodiment, Figure 1 、 Figure 2 and Figure 3 As shown, in order to facilitate the communication between the hot air exhaust port 132 and the cold air exhaust port 142 and the air outlet network 2, two left and right air guide channels 16 are provided in the machine body 1; the air inlet end of each air guide channel 16 is connected to the hot air exhaust port 132 and the cold air exhaust port 142 located on its corresponding side, and the air outlet end of each air guide channel 16 is connected to the air outlet network 2 located on its corresponding side. Specifically, the air inlet end of the air guide channel 16 is connected to the hot air cavity 13 at a portion close to the hot air cavity 13, and is connected to the cold air cavity 14 at a portion close to the cold air cavity 14. Since the hot air cavity 13 is located in front of the cold air cavity 14, the hot air exhaust port 132 is located in front of the cold air exhaust port 142. That is, the lower temperature air discharged from the cold air exhaust port 142 can mix with the higher temperature air discharged from the hot air exhaust port 132 in the air guide channel 16, which helps to reduce the temperature of the hot air discharged from the hot air exhaust port 132.
[0053] In this embodiment, Figure 5 and Figure 6 As shown, in order to facilitate better connection between the air outlet net 2 and the air guide channel 16, each of the air outlet nets 2 includes an air outlet channel 21 arranged near the air guide channel 16 and a mesh panel 22 arranged near its air outlet end, and the mesh panel 22 is provided with mesh holes 221.
[0054] As a preferred method, the mesh panel 22 is concavely arranged toward the air outlet channel 21, which not only increases the area of the mesh panel 22 and thus increases the number of meshes 221, but also further increases the distance between the meshes 221 and the wall. With this arrangement, not only the exhaust is smoother, but also the temperature rise of the wall is further slowed down.
[0055] Among them, such as Figure 3 As shown, to ensure smoother exhaust, the orientation of the air outlet channel 21 and mesh holes 221 of each air outlet net 2 is consistent with the extension direction of the air guide channel 16 on its corresponding side. For example, the air guide channel 16 on the left side of the body 1, the air outlet channel 21 and mesh holes 221 of the air outlet net 2 are all oriented toward the left rear of the body 1, preferably 45 degrees to the left of the rear direction.
[0056] In this embodiment, the air outlet net 2 can be fixed to the body 1 through a mounting base 17. Specifically, the air outlet net 2 is arranged on the mounting base 17, and the mounting base 17 is fixed to the rear side wall 11 of the body 1 through screws.
[0057] In this embodiment, Figure 3 and Figure 4 As shown, to facilitate installation of the air outlet net 2, a first engaging portion 161 is provided on the outside of each air guide channel 16, and a second engaging portion 23 is provided on each air outlet net 2. The second engaging portion 23 on each air outlet net 2 engages with the first engaging portion 161 on its corresponding air guide channel 16. Specifically, a mounting hole is provided on the rear side wall 11 of the housing 1. The first engaging portion 161 is a clamping block, and the second engaging portion 23 is a slot. During installation, the air outlet net 2 is passed through the mounting hole so that the air outlet channel 21 is sleeved onto the outside of the air guide channel 16, and the slot is snapped into the clamping block. It is then further secured to the rear side wall 11 of the housing 1 with screws.
[0058] In this embodiment, Figure 1 and Figure 2 As shown, in order to further increase the distance between the air outlet net 2 and the wall, a protruding portion 111 protruding backward is provided on the rear side of the body 1, and an air outlet net mounting portion 112 is provided on the left and right sides of the protruding portion 111 on the rear side wall 11 of the body 1. The air outlet net mounting portions 112 are both recessed toward the body 1.
[0059] The air outlet net 2 on the left side is mounted on the air outlet net mounting portion 112 on the left side, while the air outlet net 2 on the right side is mounted on the air outlet net mounting portion 112 on the right side. When placed in a kitchen, the protrusion 111 can increase the distance between the air outlet net 2 and the wall. Therefore, when the air fryer is in operation, the air outlet net 2 on the left side exhausts toward the left rear, while the air outlet net 2 on the right side exhausts toward the right rear, further slowing down the temperature rise near the wall.
[0060] In this embodiment, as a preferred solution, the exhaust direction of the air outlet net 2 on the left side is toward the rear of the body 1 and 45 degrees to the left; the air outlet net 2 on the left side is arranged on the rear side wall 11 of the body 1 near the left side wall;
[0061] The exhaust direction of the air outlet net 2 on the right side is toward the rear of the body 1 and 45 degrees to the right; the air outlet net 2 on the right side is set on the rear side wall 11 of the body 1 close to the right side wall.
[0062] Example 2:
[0063] like Figures 1 to 3 As shown, based on Example 1, the difference from Example 1 is that an upper and lower cooking cavity 12 are provided in the body 1; a hot air cavity 13 connected to the rear side of each cooking cavity 12 is provided, and a cold air cavity 14 is provided on the rear side of the hot air cavity 13; that is, the upper and lower cooking cavities 12 are independently arranged, and each cooking cavity 12 can independently perform hot air cooking on food.
[0064] Among them, as a preferred embodiment, each of the hot air cavities 13 is provided with two hot air exhaust ports 132 on the left and right, and each of the cold air cavities 14 is provided with two cold air exhaust ports 142 on the left and right;
[0065] The body 1 is provided with two groups of the air outlet net 2 components, the left and right groups. The exhaust direction of the air outlet net 2 component on the left is toward the left rear of the body 1, and the exhaust direction of the air outlet net 2 component on the right is toward the right rear of the body 1;
[0066] Each set of the air outlet net 2 assembly includes two upper and lower air outlet nets 2; the air inlet end of each air outlet net 2 is provided with an air guide channel 16, and the air inlet end of each air guide channel 16 is connected to the corresponding hot air exhaust port 132 and the cold air exhaust port 142, and the air outlet end of each air guide channel 16 is connected to the air inlet end of the corresponding air outlet net 2. The specific structure of the air outlet net 2 is the same as that of the first embodiment.
[0067] Among them, in order to facilitate the installation of each group of air outlet net 2 components, each group of the air outlet net 2 components also includes a mounting seat 17, and the upper and lower air outlet nets 2 are both arranged on the mounting seat 17; the mounting seat 17 is fixedly connected to the body 1, and can be specifically fixedly connected to the rear side wall 11 of the body 1 through a number of screws.
[0068] Working principle description:
[0069] When the air fryer is cooking, the hot fan 131 is operating, and hot air enters the cooking cavity 12 from the hot air cavity 13 to heat the food. The hot air is then discharged simultaneously from the left and right hot air exhaust ports 132 and then, through the two air outlet nets 2, is discharged diagonally to the left and right rear sides of the oven body 1 to the outside world, thus avoiding the problem of excessive temperature rise caused by direct blows on the wall. When the cold fan 141 is operating, it dissipates heat from the fan motor 15 and other parts of the oven body 1. The exhausted air is discharged from the two cold air exhaust ports 142 and then, through the two air outlet nets 2, is discharged diagonally to the left and right rear sides of the oven body 1 to the outside world.
[0070] The present invention is not limited to the above optional implementation methods. Under the premise of not conflicting with each other, the various solutions can be combined arbitrarily. Anyone can derive other forms of products under the inspiration of the present invention. However, no matter what changes are made in their shape or structure, all technical solutions that fall within the scope defined by the claims of the present invention fall within the scope of protection of the present invention.
Claims
1. An air fryer oven with an air outlet that exhausts air obliquely to the rear, characterized in that: include: A machine body, wherein a cooking cavity is provided in the machine body, a hot air cavity is provided at the rear side of the cooking cavity and is in communication with the hot air cavity, and a cold air cavity is provided at the rear side of the hot air cavity; a hot air exhaust port is provided on the hot air cavity, and a cold air exhaust port is provided on the cold air cavity; and, An air outlet net assembly is provided on the machine body. The hot air exhaust port and the cold air exhaust port are both connected to the outside world through the air outlet net assembly. The exhaust direction of the air outlet net assembly is toward the left rear and / or right rear of the machine body.
2. The air fryer oven with an air outlet grille that exhausts air obliquely to the rear according to claim 1, characterized in that: The air outlet net assembly includes two air outlet nets, a left air outlet net and a right air outlet net; the exhaust direction of the air outlet net on the left is toward the left rear of the machine body, and the exhaust direction of the air outlet net on the right is toward the right rear of the machine body.
3. The air fryer oven with an air outlet grille that exhausts air obliquely to the rear according to claim 2, characterized in that: The hot air cavity is provided with two hot air exhaust ports on the left and right, and the cold air cavity is provided with two cold air exhaust ports on the left and right. Each of the hot air exhaust ports and the cold air exhaust ports is connected to the outside world through the air outlet net on the corresponding side.
4. The air fryer oven with an air outlet grille that exhausts air obliquely to the rear according to claim 3, characterized in that: Two left and right air guide channels are provided in the body; the air inlet end of each air guide channel is connected to the hot air exhaust port and the cold air exhaust port located on its corresponding side, and the air outlet end of each air guide channel is connected to the air outlet network located on its corresponding side.
5. The air fryer oven with an air outlet grille that exhausts air obliquely to the rear according to claim 4, characterized in that: Each of the air outlet nets includes an air outlet channel arranged near the air guide channel and a mesh panel arranged near the air outlet end thereof, wherein mesh holes are arranged on the mesh panel and the mesh panel is concavely arranged toward the air outlet channel; The orientation of the air outlet channel and mesh holes of each air outlet net is consistent with the extension direction of the air guide channel on the corresponding side.
6. The air fryer oven with an air outlet grille that exhausts air obliquely to the rear according to claim 1, characterized in that: The machine body is provided with an upper and a lower cooking cavity; the rear side of each cooking cavity is provided with a hot air cavity connected thereto, and the rear side of the hot air cavity is provided with a cold air cavity; Each of the hot air cavities is provided with two hot air exhaust ports on the left and right, and each of the cold air cavities is provided with two cold air exhaust ports on the left and right; The body is provided with two sets of air outlet net components, one on the left and the other on the right. The air outlet net component on the left is discharged towards the left rear of the body, and the air outlet net component on the right is discharged towards the right rear of the body. Each group of the air outlet net components includes two upper and lower air outlet nets; the air inlet end of each air outlet net is provided with an air guide channel, the air inlet end of each air guide channel is connected to the corresponding hot air exhaust port and the cold air exhaust port, and the air outlet end of each air guide channel is connected to the air inlet end of the corresponding air outlet net.
7. The air fryer oven with an air outlet grille that exhausts air obliquely to the rear according to claim 6, characterized in that: Each set of the air outlet net assembly further includes a mounting base, and the upper and lower air outlet nets are both arranged on the mounting base; The mounting seat is fixedly connected to the body.
8. An air fryer oven with an air outlet screen that exhausts air obliquely to the rear according to claim 4 or 6, characterized in that: A first clamping portion is provided on the outer side of each of the air guide channels, and a second clamping portion is provided on each of the air outlet nets; the second clamping portion on each of the air outlet nets is clamped with the first clamping portion on the corresponding air guide channel.
9. An air fryer oven with an air outlet screen that exhausts air obliquely to the rear according to claim 2 or 6, characterized in that: The rear side of the machine body is provided with a protruding portion protruding backward, and the rear side wall of the machine body is provided with air outlet net mounting portions on the left and right sides of the protruding portion, and the air outlet net mounting portions are both recessed toward the machine body; The air outlet net on the left side is arranged on the air outlet net installation portion on the left side, and the air outlet net on the right side is arranged on the air outlet net installation portion on the right side.
10. An air fryer oven with an air outlet screen that exhausts air obliquely to the rear according to claim 2 or 6, characterized in that: The exhaust direction of the air outlet net on the left side is toward the rear of the machine body and 45 degrees to the left; The exhaust direction of the air outlet net on the right side is toward the rear of the machine body and 45 degrees to the right.