CN-224219969-U - Air fryer with multi-capacity structure
Abstract
The utility model discloses an air fryer with a multi-capacity structure, which comprises a base, a middle ring, a first frying barrel, a second frying barrel and a cover body, wherein the first frying barrel is arranged in the base, the middle ring is hinged or covered on the top of the base, when the second frying barrel is arranged in the middle ring, the lower end of the second frying barrel is arranged in the first frying barrel, the cover body is covered on the top of the middle ring, and a heating assembly for driving hot air flow to enter the second frying barrel or the first frying barrel to realize cooking is arranged in the cover body. By adopting the technical scheme, the cooking use requirements of different components of food materials can be met, the practicability of the air fryer is improved, in addition, the use cost can be reduced compared with the case of purchasing two air fryers with different capacities, and when the second frying barrel is placed in the middle ring, the lower end of the second frying barrel is placed in the first frying barrel, so that independent packaging is not needed, and the packaging cost and the transportation cost of products can be reduced.
Inventors
- YANG GUANGLIANG
- XU ZHENGZHAO
- Tang Binwen
- LI ZHIAN
- HUANG HUAZHENG
Assignees
- 广东伊莱特科技股份有限公司
Dates
- Publication Date
- 20260512
- Application Date
- 20250415
Claims (9)
- 1. The air fryer with the multi-capacity structure is characterized by comprising a base, a middle ring, a first frying barrel, a second frying barrel and a cover body, wherein the first frying barrel and the second frying barrel are different in capacity, the first frying barrel is arranged in the base, the middle ring is hinged or covered on the top of the base, when the second frying barrel is arranged in the middle ring, the lower end of the second frying barrel is arranged in the first frying barrel, the cover body is covered on the top of the middle ring, and a heating assembly for driving hot air to enter the second frying barrel or the first frying barrel to achieve cooking is arranged in the cover body.
- 2. The air fryer of claim 1, wherein said cover comprises a cover shell, a mounting shell connected to said cover shell, and a heat reflecting cover connected to said mounting shell, said mounting shell is provided with an air inlet, said air inlet is provided with an air inlet for communicating the outside with the inside of said heat reflecting cover, said heating assembly comprises a motor mounted on said mounting shell, a hot air wheel mounted in said heat reflecting cover and connected to the motor shaft of said motor, and an electric heating tube mounted below said hot air wheel.
- 3. The multi-capacity structural air fryer of claim 2, wherein a plurality of first air inlets communicated with the inside of the cover shell are formed in the periphery of the upper portion of the cover shell, a plurality of first air outlets communicated with the first air inlets are formed in the bottom of the cover shell, a heat dissipation wind wheel connected with a motor shaft of the motor is arranged above the heat reflection cover, a plurality of second air inlets communicated with the inside of the cover shell are formed in the periphery of the lower portion of the step groove in the middle ring, a plurality of second air outlets communicated with the second air inlets are formed in the periphery of the lower portion of the step groove in the middle ring, a plurality of third air inlets communicated with the inside of the base shell are formed in the periphery of the top of the base shell, a plurality of third air outlets communicated with the third air inlets are formed in the bottom of the base shell, and when the motor drives the heat dissipation wind wheel to rotate, external air flows can be driven to enter from the first air inlets and pass through the first air outlets, the second air inlets, the second air outlets and the third air inlets are discharged from the third air outlets.
- 4. The air fryer of claim 3, wherein said second fryer top rim is positioned in said stepped trough, said heat reflective cover bottom is fixedly secured with a metal mesh, said metal mesh is peripherally inserted with a silicone ring, said silicone ring is crimped with said second fryer top or with said stepped trough bottom.
- 5. The air fryer of claim 4, wherein said first ears at said first fryer barrel ends are positioned in first pockets on said base and said second ears at said second fryer barrel ends are positioned in second pockets of said middle ring.
- 6. A multi-containment vessel air fryer according to claim 3, wherein said mounting shell has a plurality of saw tooth notches circumferentially spaced about the lower end thereof.
- 7. A multi-containment structure air fryer according to claim 3, wherein an edge portion of said first fryer top portion is placed in a receiving slot in said base.
- 8. The air fryer of claim 1, wherein said middle ring is movably connected with an opening and closing button, said base top is provided with a buckle, said opening and closing button is engaged with said buckle, and when said opening and closing button is pressed, said opening and closing button is disengaged from said buckle.
- 9. The multi-containment structure air fryer of claim 1, wherein said base, first fryer vat and second fryer vat are all transparent structures.
Description
Air fryer with multi-capacity structure Technical Field The utility model relates to the technical field of air fryers, in particular to an air fryer with a multi-capacity structure. Background The air fryer is a novel household appliance for frying food materials by utilizing a high-speed and high-temperature air circulation technology. The existing air fryer is generally provided with only one frying barrel, when more food materials are cooked, if the frying barrel is smaller, the cooking is needed to be carried out for a plurality of times, the cooking speed is slow and troublesome, if the frying barrel is larger and is not suitable for cooking less food materials, however, when the air fryer with various capacities is purchased for use, the use cost is relatively high, and therefore, how to design the air fryer capable of selecting the frying barrel with the proper capacity for cooking according to the cooking needs is a technical problem to be solved urgently. Disclosure of utility model In order to overcome the defects in the prior art, the utility model aims to provide an air fryer with a multi-capacity structure so as to solve the technical problems. The technical scheme adopted for solving the technical problems is as follows: According to one aspect of the utility model, a multi-capacity structure air fryer is designed, which comprises a base, a middle ring, a first fryer barrel, a second fryer barrel and a cover body, wherein the first fryer barrel and the second fryer barrel are different in capacity, the first fryer barrel is arranged in the base, the middle ring is hinged or covered on the top of the base, when the second fryer barrel is arranged in the middle ring, the lower end of the second fryer barrel is arranged in the first fryer barrel, the cover body is covered on the top of the middle ring, and a heating assembly for driving hot air flow to enter the second fryer barrel or the first fryer barrel is arranged in the cover body. According to the technical scheme, when a small amount of food is in the empty frying cooking, the food is placed in the second frying barrel, hot air flow is driven to enter the second frying barrel through the heating component, the empty frying cooking of the small amount of food can be achieved, when large amount of food is needed to be in the empty frying cooking, the second frying barrel is taken out of the middle ring, then the food is placed in the first frying barrel, hot air flow is driven to enter the first frying barrel through the heating component, the empty frying cooking of the large amount of food can be achieved, therefore cooking use requirements of different amounts of food can be met, the practicability of the air frying pot is improved, in addition, compared with the situation that two air frying pots with different capacities are purchased, the use cost can be reduced, when the second frying barrel is placed in the middle ring, the lower end of the second frying barrel is placed in the first frying barrel, packaging is not needed, and the packaging cost and the transportation cost of products can be reduced. In order to better solve the technical defects, the utility model also has a better technical scheme: in some embodiments, the cover body comprises a cover shell and a heat reflecting cover connected in the cover shell, an air inlet piece is arranged on the cover shell, an air inlet hole which enables the outside to be communicated with the inside of the heat reflecting cover is arranged on the air inlet piece, and the heating component comprises a motor arranged in the cover shell, a hot air wind wheel arranged in the heat reflecting cover and connected with a motor shaft of the motor, and an electric heating tube arranged below the hot air wind wheel. In some embodiments, a plurality of first air inlets communicated with the inside of the cover shell are formed in the periphery of the upper portion of the cover shell, a plurality of first air outlets communicated with the first air inlets are formed in the bottom of the cover shell, a heat dissipation wind wheel connected with a motor shaft of the motor is arranged above the heat reflection cover, a plurality of second air inlets communicated with the inside of the cover shell are formed in the periphery of the lower portion of the step groove in the middle ring, a plurality of second air outlets communicated with the second air inlets are formed in the periphery of the lower portion of the step groove in the middle ring, a plurality of third air inlets communicated with the inside of the base shell are formed in the periphery of the top of the base shell, a plurality of third air outlets communicated with the third air inlets are formed in the bottom of the base shell, and when the motor drives the heat dissipation wind wheel to rotate, external air flows can be driven to enter from the first air inlets and pass through the first air outlets, the second air inlets, the second air ou