Automatic frying machine
By introducing a flipping and scooping tooth and a bidirectional motor into the automatic fryer, multiple automatic flipping and scooping of food are achieved, solving the problem that existing automatic fryers cannot handle a variety of foods, and improving food quality and operational efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 冯磊
- Filing Date
- 2025-05-15
- Publication Date
- 2026-04-28
AI Technical Summary
Existing automatic fryers have complex structures, cannot process multiple foods at the same time, and cannot automatically flip and remove food, affecting food quality and efficiency.
An automatic fryer was designed, which includes a flipping and scooping tooth, a bidirectional motor, a controller and a support frame. The controller controls the bidirectional motor to drive the flipping and scooping tooth to realize multiple automatic flipping and automatic scooping of food. The curved rod structure is used to flip and scoop the food in the fryer.
It enables efficient and automatic flipping and scooping of various foods, ensuring food quality and efficiency, simplifying the operation process, and reducing costs.
Smart Images

Figure CN224165552U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of frying machine devices, and specifically relates to an automatic frying machine. Background Technology
[0002] There are various kinds of fried foods that need to be fried in oil, such as chicken legs, chicken strips, sausages, fried dough sticks, and sesame balls. There are two ways to fry these foods in an oil fryer: one is to operate the fryer manually, and the other is to use an automatic fryer.
[0003] When people stand in front of the fryer to fry various foods, they need to turn the food over, otherwise it will affect the taste. However, if people stand in front of the fryer for a long time, it is impossible to guarantee the quality of the fried food.
[0004] Currently available automatic fryers on the market have complex structures, can only fry a limited variety of foods, and cannot be used to fry different types of foods.
[0005] Therefore, how to provide an automatic fryer that is low in cost, highly efficient in frying food, can automatically flip the food during the frying process to handle different types of food, and can automatically remove the food after it is cooked is a problem that urgently needs to be solved by those skilled in the art. Utility Model Content
[0006] This utility model aims to provide an automatic fryer that can fry a variety of foods, automatically flips the food multiple times during the frying process, and automatically removes the food from the frying device after it is cooked. To solve the above-mentioned technical problems, this utility model provides the following technical solution:
[0007] An automatic fryer includes: a flipping and scooping toother, a bidirectional motor, a controller, a support frame, and the fryer itself;
[0008] The flipping and retrieval teeth consist of a main shaft and a row of multiple bent rods fixed on the main shaft. The bent rods fixed on the main shaft are fixed along the axis of the main shaft, and there is at least one row.
[0009] The two ends of the flipping and retrieval tooth main shaft are rotatably connected to the support frame, and the number of flipping and retrieval teeth connected to the support frame is one.
[0010] The bidirectional motor output shaft is connected to the main shaft of the flipping and retrieval tooth, driving the flipping and retrieval tooth to rotate in the bending direction of the bent rod or in the opposite direction of the bending rod.
[0011] The fryer has a heating device inside;
[0012] The support frame is placed on the fryer. The height of the opening at the top of the fryer is higher than the height of the far end of the bent rod on the main shaft of the flipping and scooping tooth connected to the support frame when it rotates to the lower part of the main shaft and faces the horizontal direction. The height of the opening at the top of the fryer is lower than the height of the far end of the bent rod on the main shaft of the flipping and scooping tooth connected to the support frame when it rotates to the upper part of the main shaft and faces the horizontal direction.
[0013] The controller controls the bidirectional motor and the heating device inside the fryer;
[0014] The controller controls the rotation direction and rotation time of the bidirectional motor output shaft.
[0015] The beneficial effect of this invention is that, when fried food is placed inside the fryer, the controller controls the output shaft of the bidirectional motor to drive the row of curved rods fixed on the main shaft of the flipping and scooping tooth to rotate along the bending direction of the rods. Each rotation of the row of curved rods on the main shaft of the flipping and scooping tooth rotates one full turn, flipping the fried food inside the fryer once. The fried food is flipped multiple times within the fryer during the time it takes to cook from raw to cooked, achieving the effect of manual flipping. Alternatively, the controller controls the output shaft of the bidirectional motor to drive the row of curved rods fixed on the main shaft of the flipping and scooping tooth to rotate in the opposite direction of the bending direction of the rods. Each rotation of the row of curved rods on the main shaft of the flipping and scooping tooth rotates one full turn, and the fried food is scooped out onto the outer tray of the fryer, achieving the effect of manual scooping.
[0016] Preferably, the inner pot of the fryer has an arc-shaped groove structure, and the far end of the curved rod on the main shaft of the flipping and scooping tooth slides along the surface of the inner pot of the fryer without contacting the surface of the inner pot of the fryer.
[0017] Preferably, the bidirectional motor is connected to one side of the support frame.
[0018] Preferably, the output shaft of the bidirectional motor is connected to one end of the main shaft, driving the flipping and retrieval teeth to rotate in the bending direction of the bent rod or in the opposite direction of the bending rod.
[0019] Preferably, the controller is connected to the fryer.
[0020] Preferably, the controller is connected to the bidirectional motor and the heating device respectively via control lines.
[0021] Preferably, the fryer has a serving tray connected to its outer wall along the flipping and scooping direction. Attached Figure Description
[0022] Figure 1 The attached figure is a structural schematic diagram of the present invention;
[0023] Figure 2 The attached figure is a front view of the structure provided by this utility model;
[0024] Figure 3The attached figure is a top view of the structure provided by this utility model;
[0025] Figure 4 The attached figure is a schematic diagram of the flipping and retrieval tooth structure provided by this utility model;
[0026] In the diagram: 1. Tilting and scooping teeth; 2. Bidirectional motor; 3. Controller; 4. Support frame; 5. Fryer; 6. Serving tray; 11. Main shaft; 12. Bending rod. Detailed Implementation
[0027] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0028] See appendix Figure 1 To be continued Figure 4 This utility model embodiment discloses an automatic fryer, which includes: a flipping and scooping tooth (1), a bidirectional motor (2), a controller (3), a support frame (4), and a fryer (5);
[0029] The flipping and retrieval tooth (1) consists of a main shaft (11) and a row of multiple bent rods (12) fixed on the main shaft (11). The bent rods (12) fixed on the main shaft (11) are fixed along the axis of the main shaft, and there is at least one row of fixed bent rods (12).
[0030] The two ends of the main shaft (11) of the flipping and retrieval tooth (1) are rotatably connected to the support frame (4), and the number of flipping and retrieval teeth (1) connected to the support frame (4) is one;
[0031] The output shaft of the bidirectional motor (2) is connected to the main shaft (11) of the flipping and retrieval tooth (1) to drive the flipping and retrieval tooth (1) to rotate in the bending direction of the bent rod (12) or in the opposite direction of the bending of the bent rod (12);
[0032] The fryer (5) has a heating device inside;
[0033] The support frame (4) is placed on the fryer (5). The height of the top opening of the fryer (5) is higher than the height of the far end of the bent rod (12) on the main shaft (11) of the flipping and scooping tooth (1) connected to the support frame (4) when it rotates to the height below the main shaft (11) and facing the horizontal direction. The height of the top opening of the fryer (5) is lower than the height of the far end of the bent rod (12) on the main shaft (11) of the flipping and scooping tooth (1) connected to the support frame (4) when it rotates to the height above the main shaft (11) and facing the horizontal direction.
[0034] The controller (3) controls the bidirectional motor (2) and the heating device inside the fryer (5);
[0035] The controller (3) controls the rotation direction and rotation time of the output shaft of the bidirectional motor (2). The controller (3) controls the rotation and rotation time of the output shaft of the bidirectional motor (2) along the bending direction of the row of bent rods (12) fixed by the main shaft (11) of the flipping and scooping tooth (1). The bidirectional motor (2) drives the main shaft (11) of the flipping and scooping tooth (1) to rotate one revolution along the bending direction of the bent rods (12), thus flipping the fried food in the fryer (5) once. The fried food is then placed inside the fryer (5). The food is flipped multiple times during the cooking process to achieve the effect of manual flipping. The controller (3) controls the rotation of the entire row of bent rods (12) fixed on the main shaft (11) of the bidirectional motor (2) in the opposite direction and the rotation time. The bidirectional motor (2) drives the entire row of bent rods (12) fixed on the main shaft (11) of the flipping and scooping tooth (1) to rotate one round in the opposite direction of the bending of the bent rods (12). The fried food in the fryer (5) will be scooped out onto the outer tray (6) of the fryer (5) to achieve the effect of manual scooping.
[0036] As a preferred embodiment of this case, the inner pot of the fryer (5) is an arc-shaped groove. The far end of the bent rod (12) on the main shaft (11) of the flipping and scooping tooth (1) slides along the surface of the inner pot of the fryer (5) without contacting the surface of the inner pot of the fryer (5).
[0037] As a preferred embodiment of this case, the bidirectional motor (2) is connected to one side of the support frame (4).
[0038] As a preferred embodiment, the output shaft of the bidirectional motor (2) is connected to one end of the main shaft (11) to drive the flipping and retrieval teeth (1) to rotate in the bending direction of the bent rod (12) or in the opposite direction of the bending of the bent rod (12).
[0039] As a preferred embodiment, the controller (3) is connected to the fryer (5).
[0040] As a preferred embodiment, the controller (3) is connected to the bidirectional motor (2) and the heating device via control lines.
[0041] As a preferred embodiment, the fryer (5) is connected to the outer wall of the fryer (6) along the flipping and scooping direction.
[0042] The working principle of this utility model is as follows: First, determine the frying time and the frying removal time of the fried food. Set the controller (3) to control the output shaft of the bidirectional motor (2) to rotate along the bending direction of the row of bent rods (12) fixed on the main shaft (11) and the rotation time is the frying time of the food. Then, set the controller (3) to control the output shaft of the bidirectional motor (2) to rotate in the opposite direction of the bending direction of the row of bent rods (12) fixed on the main shaft (11) and the rotation time is the frying removal time of the food. Place the fried food in the fryer (5), start the controller, and the bidirectional motor (2) first drives the main shaft (11) of the flipping and removing tooth (1) to rotate along the bending direction of the bent rod (12). The rotation time is the time it takes for the food to be fried. The main shaft (11) of the flipping and scooping tooth (1) rotates once, flipping the fried food in the fryer (5) once. The fried food in the fryer (5) is flipped multiple times during the time it takes for the food to be fried from raw to cooked, achieving the effect of manual flipping. The bidirectional motor (2) then drives the main shaft (11) of the flipping and scooping tooth (1) to rotate in the opposite direction of the bending rod (12). The rotation time is the time it takes for the food to be fried and scooped out. The bending rod (12) fixed on the main shaft (11) of the flipping and scooping tooth (1) rotates once in the opposite direction of the bending rod, and the fried food in the fryer (5) will be scooped out onto the outer tray (6) of the fryer (5), achieving the effect of manual scooping out.
[0043] The above description of the disclosed embodiments enables those skilled in the art to make or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.
Claims
1. An automatic frying machine, characterized in that, include: Flipping and scooping teeth (1), bidirectional motor (2), controller (3), support frame (4), fryer (5); The flipping and retrieval tooth (1) consists of a main shaft (11) and a row of multiple bent rods (12) fixed on the main shaft (11). The bent rods (12) fixed on the main shaft (11) are fixed along the axis of the main shaft, and there is at least one row of fixed bent rods (12). The two ends of the main shaft (11) of the flipping and retrieval tooth (1) are rotatably connected to the support frame (4), and the number of flipping and retrieval teeth (1) connected to the support frame (4) is one; The output shaft of the bidirectional motor (2) is connected to the main shaft (11) of the flipping and retrieval tooth (1) to drive the flipping and retrieval tooth (1) to rotate in the bending direction of the bent rod (12) or in the opposite direction of the bending of the bent rod (12); The fryer (5) has a heating device inside; The support frame (4) is placed on the fryer (5). The height of the top opening of the fryer (5) is higher than the height of the far end of the bent rod (12) on the main shaft (11) of the flipping and scooping tooth (1) connected to the support frame (4) when it rotates to the height below the main shaft (11) and facing the horizontal direction. The height of the top opening of the fryer (5) is lower than the height of the far end of the bent rod (12) on the main shaft (11) of the flipping and scooping tooth (1) connected to the support frame (4) when it rotates to the height above the main shaft (11) and facing the horizontal direction. The controller (3) controls the bidirectional motor (2) and the heating device inside the fryer (5); The controller (3) controls the rotation direction and rotation time of the output shaft of the bidirectional motor (2).
2. The automatic frying machine according to claim 1, characterized in that, The inner pot of the fryer (5) has an arc-shaped groove structure. The far end of the bent rod (12) on the main shaft (11) of the flip-out pick-out tooth (1) slides along the surface of the inner pot of the fryer (5) without contacting the surface of the inner pot of the fryer (5).
3. An automatic frying machine according to claim 1, characterized in that, The bidirectional motor (2) is connected to one side of the support frame (4).
4. An automatic frying machine according to claim 1, characterized in that, The output shaft of the bidirectional motor (2) is connected to one end of the main shaft (11) to drive the rotating and retrieval teeth (1) to rotate along the bending direction of the bent rod (12) or in the opposite direction of the bending of the bent rod (12).
5. An automatic frying machine according to claim 1, characterized in that, The controller (3) is connected to the fryer (5).
6. An automatic frying machine according to claim 1, characterized in that, The controller (3) is connected to the bidirectional motor (2) and the heating device via control lines.
7. An automatic frying machine according to claim 1, characterized in that, The fryer (5) has a serving tray (6) connected to its outer wall along the direction of flipping and scooping out.