Dual-drive frying structure

By designing a dual-drive frying structure, the first and second shovel drive components control the pushing action of the food, solving the problem that existing egg frying machines can only fry eggs with consistent color on both sides, thus achieving diversification of fried foods and meeting the taste needs of the general public.

CN224022739UActive Publication Date: 2026-03-24FOSHAN YUFENG ZHONGYE INTELLIGENT EQUIPMENT CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-03
Publication Date
2026-03-24

AI Technical Summary

Technical Problem

Existing automatic egg-frying machines can only fry eggs with uniform doneness on both sides, which cannot meet the diverse tastes of the general public.

Method used

The dual-drive frying structure controls the pushing action of the first and second frying components through the first and second frying components respectively, so as to achieve independent control of the cooking degree of the food on both sides. It can fry food with the same temperature on both sides or food with different temperature on both sides.

Benefits of technology

It enables flexible control over the cooking time of ingredients, has a wider range of applications, and meets the diverse needs of the public for fried foods.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a dual-drive material frying structure which comprises a protective plate assembly, a first material frying assembly and a second material frying assembly. The protection plate assembly comprises a fixing plate; the first material frying assembly comprises a first pot body, a first material shoveling mechanism and a first material shoveling driving part; the first pot body is connected with the fixing plate, and the first pot body is provided with a first discharging opening; the first shoveling driving piece is in transmission connection with the first shoveling mechanism; the second material frying assembly comprises a second pot body, a second material shoveling mechanism and a second material shoveling driving part; the second pot body is connected with the fixing plate, the second pot body is provided with a material receiving end and a second discharging port, and the material receiving end of the second pot body is arranged below the gravity direction of the first discharging port of the first pot body; and the second shoveling driving piece is in transmission connection with the second shoveling mechanism. The double-sided food frying machine can be used for frying food with different cooking degrees on two sides, and the diversified requirements of public tastes are met.
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Description

TECHNICAL FIELD

[0001] The utility model relates to food processing machinery technical field, concretely relates to a double drive material frying structure. BACKGROUND

[0002] With the continuous development of food processing technology, automatic egg frying machine has gradually popularized in the catering industry; automatic egg frying machine can easily make egg dishes such as fried egg, scrambled egg or poached egg, only need to beat the egg into the machine, select the cooking mode and time, the machine will automatically complete the frying process, the advantage of automatic egg frying machine lies in that it can realize automation completely, and avoid food contact with hands, therefore, begin to apply in some school, enterprise's canteen, large restaurant.

[0003] At present, the egg frying structure of automatic egg frying machine generally drives the upper and lower spatulas to push the egg by setting a driving mechanism, and the egg frying structure has good synchronism and saves power; but due to the limitation of the synchronism of the upper and lower spatulas, only the fried egg with consistent double-side doneness can be fried, which has certain limitation and cannot meet the diversification demand of public taste. UTILITY MODEL CONTENT

[0004] In order to overcome the defects of the prior art, the purpose of the utility model is to provide a double drive material frying structure, which can fry food with different double-side doneness and meet the diversification demand of public taste.

[0005] The purpose of the utility model is realized by the following technical scheme:

[0006] A double drive material frying structure, characterized by comprising a guard plate assembly, a first material frying assembly and a second material frying assembly.

[0007] The guard plate assembly comprises a fixed plate.

[0008] The first material frying assembly comprises a first pot body, a first material shoveling mechanism and a first material shoveling driving part; the first pot body is connected with the fixed plate, and the first pot body has a first material outlet; the first material shoveling driving part is in transmission connection with the first material shoveling mechanism.

[0009] The second material frying assembly comprises a second pot body, a second material shoveling mechanism and a second material shoveling driving part; the second pot body is connected with the fixed plate, and the second pot body has a material receiving end and a second material outlet, and the material receiving end of the second pot body is arranged below the first material outlet of the first pot body in the gravity direction; the second material shoveling driving part is in transmission connection with the second material shoveling mechanism.

[0010] The first shovel driving element is powered to drive the first shovel mechanism to push the food materials in the first pot to the first discharge port; the second shovel driving element is powered to drive the second shovel mechanism to push the cooked food materials in the second pot to the second discharge port.

[0011] In an alternative embodiment, the first pot top is formed with a cooking surface, which is an arc surface recessed towards the middle; the first discharge port is formed at one end of the cooking surface, and the other end of the cooking surface extends upwards to form an end baffle; the two side edges of the cooking surface extend upwards to form side baffles; and the first pot bottom is provided with a first heating device.

[0012] In an alternative embodiment, the fixed plate has opposite first and second sides, and the first and second pots are arranged on the first side, and the first and second shovel driving elements are arranged on the second side.

[0013] The fixed plate is provided with first and second through grooves;

[0014] The first shovel mechanism includes a first shovel plate and a first shovel shaft, the first shovel shaft is arranged in the first through groove, one end of the first shovel shaft extends out of the first side and is connected with the first shovel plate, and the other end of the first shovel shaft extends out of the second side and is connected with the first shovel driving element; and the first shovel plate has a lower edge adapted to the cooking surface.

[0015] The second shovel mechanism includes a second shovel plate and a second shovel shaft, the second shovel shaft is arranged in the second through groove, one end of the second shovel shaft extends out of the first side and is connected with the second shovel plate, and the other end of the second shovel shaft extends out of the second side and is connected with the second shovel driving element.

[0016] In an alternative embodiment, the guard plate assembly further includes an oil splash prevention mechanism, which includes a mounting plate and an oil splash prevention brush; the mounting plate is formed with a long pull groove, which is adapted to the first through groove; and the oil splash prevention brush is fixed to the edge of the long pull groove.

[0017] In an alternative embodiment, an oil feeding pipeline is further included, which is fixed to the second side, and has an oil feeding port extending through the fixed plate to above the first pot.

[0018] In an alternative embodiment, the first shovel driving element has an output shaft, and the first shovel driving element output shaft is provided with a gear;

[0019] The first shoveling mechanism further comprises a sliding plate, the sliding plate is rotationally connected with the first shoveling shaft, the sliding plate is slidingly connected with the fixed plate through a guide rail and a sliding block mechanism, and the sliding plate is fixed with a rack.

[0020] In an alternative embodiment, the first shoveling shaft is connected with a swing plate, the swing plate has a first swing arm, the first swing arm is connected at an end with an elastic member, and the other end of the elastic member is connected with the sliding plate.

[0021] In an alternative embodiment, the swing plate has a second swing arm, the second swing arm is rotationally connected at an end with a first roller;

[0022] The second side of the fixed plate is fixed with a guide block, the guide block is arranged close to the end of the first through slot, and the guide block has an upwardly inclined guide surface.

[0023] In an alternative embodiment, a locking plate is further included, the locking plate is rotationally connected with the sliding plate, opposite sides of the locking plate respectively extend with a connecting arm and a locking arm, the elastic member is connected with the sliding plate through the connecting arm of the locking plate, the locking arm of the locking plate is provided with a locking slot, and the locking slot is matched with the first swing arm.

[0024] The first shoveling assembly further comprises an unlocking mechanism, the unlocking mechanism is arranged close to the end of the first through slot, the unlocking mechanism comprises a guide plate and a parking column, the guide plate has a guide surface which is inclined away from the second side, the end of the locking arm of the locking plate is rotationally connected with a second roller, and the swing plate is formed with a parking slot which is matched with the parking column.

[0025] In an alternative embodiment, a main control plate, a first sensing member and a second sensing member are further included, the first sensing member is used to acquire position information of the first shoveling mechanism, and the second sensing member is used to acquire position information of the second shoveling mechanism.

[0026] The main control plate is signal connected with the first sensing member and the second sensing member, and the main control plate is electrically connected with the first shoveling driving member and the second shoveling driving member.

[0027] Compared with the prior art, the present application has the following beneficial effects:

[0028] The utility model discloses a double -drive material structure of frying, through the first material driving element provides power, drives the first material shoveling mechanism pushes the food material in the first pot body to the first material outlet, and the food material is entered to the second pot body by the material receiving end under the action of gravity, realizes the food material turning over in the process of entering, through the second material driving element provides power, drives the second material shoveling mechanism pushes the food material of frying in the second pot body to the second material outlet and sends out, through setting first material driving element, second material driving element, the material pushing action of first material shoveling mechanism, second material shoveling mechanism is controlled respectively, makes between two frying material components can control the doneness of food material independently, can fry the food of the same doneness of two sides also can fry the food of the inconsistent of two sides, and the application range is wider, satisfies the diversification demand of the public taste of more. BRIEF DESCRIPTION OF DRAWINGS

[0029] Figure 1 It is structure schematic drawing of double -drive material structure of frying of example 1;

[0030] Figure 2 It is structure schematic drawing of double -drive material structure of frying of another angle of example 1;

[0031] Figure 3 It is structure schematic drawing of guard assembly of example 1;

[0032] Figure 4 It is front view of guard assembly of example 1;

[0033] Figure 5 It is rear view of guard assembly of example 1;

[0034] Figure 6 It is structure schematic drawing of first material shoveling mechanism and first material driving element of example 1;

[0035] Figure 7 It is structure schematic drawing of swing plate of example 1;

[0036] Figure 8 It is structure schematic drawing of locking plate of example 1.

[0037] In the figure: 10, a guard plate assembly; 11, a fixed plate; 111, a first side; 112, a second side; 113, a first through slot; 114, a second through slot; 12, an oil splash prevention mechanism; 121, a mounting plate; 122, an oil splash prevention brush; 13, an oil feeding pipeline; 131, an oil feeding port; 14, a guide block; 15, an unlocking mechanism; 151, a guide plate; 152, a stop column; 20, a first pot body; 21, a first discharge port; 22, a frying dough; 23, an end baffle; 24, a side baffle; 25, a first heating device; 30, a first scooping mechanism; 31, a first scooping plate; 32, a first scooping shaft; 33, a sliding plate; 34, a rack; 35, a swing plate; 351, a first swing arm; 352, a second swing arm; 354, a first roller; 355, a stop groove; 36, a locking plate; 361, a connecting arm; 362, a locking arm; 363, a locking groove; 364, a second roller; 37, an elastic member; 40, a first scooping driving member; 41, a gear; 50, a second pot body; 51, a receiving end; 52, a second discharge port; 60, a second scooping mechanism; 70, a second scooping driving member. DETAILED DESCRIPTION

[0038] The utility model will be further described below in combination with the drawings and specific embodiments, it is to be noted that, in the premise of not conflicting, the following described embodiments or between the technical features can be combined to form a new embodiment. Except for the special description, the materials and equipment adopted in the embodiment can be purchased from the market. The examples of the embodiments are shown in the drawings, wherein the same or similar reference numerals represent the same or similar elements or elements with the same or similar functions throughout. The embodiments described below by referring to the drawings are exemplary, only for explaining the application, and cannot be understood as limiting the application.

[0039] In the description of the application, it should be understood that the terms "upper", "lower", "front", "back", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, therefore, it cannot be understood as limiting the application. In the description of the application, the meaning of "a plurality of" is two or more, unless otherwise specified.

[0040] In the description of the application, it should be noted that unless otherwise explicitly specified and limited, the terms "connected", "communicated", "connected" should be understood in a broad sense, for example, it can be fixedly connected, or connected through an intermediate medium, or the internal connection of two elements or the interaction relationship between two elements. For those skilled in the art, the specific meaning of the above terms in this application can be understood according to the specific circumstances.

[0041] The terms "first", "second", and the like in the description and claims of the application and the above drawings are used to distinguish similar objects, and do not necessarily describe a specific order or sequence. In addition, the terms "include" and "have" and any variations thereof are intended to cover non-exclusive inclusion, for example, a process, method, system, product or device including a series of steps or units does not necessarily limit to those clearly listed steps or units, but can include other steps or units not clearly listed or inherent to these processes, methods, products or devices.

[0042] Embodiment 1:

[0043] Please refer to Figures 1-8 The embodiment provides a double-drive material frying structure, which comprises a guard plate assembly 10, and a first material frying assembly and a second material frying assembly installed on the guard plate assembly 10.

[0044] The guard plate assembly 10 mainly plays a role of supporting and providing a connection base, and the guard plate assembly 10 comprises a fixed plate 11;

[0045] The first material frying assembly comprises a first pot body 20, a first material shoveling mechanism 30 and a first material shoveling driving member 40; the first pot body 20 is connected with the fixed plate 11, and the first pot body 20 has a first material outlet 21; the first material shoveling driving member 40 is in driving connection with the first material shoveling mechanism 30;

[0046] The second material frying assembly comprises a second pot body 50, a second material shoveling mechanism 60 and a second material shoveling driving member 70; the second pot body 50 is connected with the fixed plate 11, and the second pot body 50 has a material receiving end 51 and a second material outlet 52, and the material receiving end 51 of the second pot body 50 is arranged below the first material outlet 21 of the first pot body 20 in the direction of gravity; the second material shoveling driving member 70 is in driving connection with the second material shoveling mechanism 60;

[0047] Based on the above structure, during use, power is provided by the first material shoveling driving member 40 to drive the first material shoveling mechanism 30 to push the food material in the first pot body 20 to the first discharge port 21, and the food material enters the second pot body 50 from the material receiving end 51 under the action of gravity, and the food material is turned over during the entering process; power is provided by the second material shoveling driving member 70 to drive the second material shoveling mechanism 60 to push the cooked food material in the second pot body 50 to the second discharge port 52 for discharging. The double-drive material frying structure of the embodiment is provided with the first material shoveling driving member 40 and the second material shoveling driving member 70, which are respectively used to control the material pushing actions of the first material shoveling mechanism 30 and the second material shoveling mechanism 60, so that the doneness of the food material can be independently controlled between the two material frying assemblies, that is, food with the same doneness on both sides can be fried, and food with inconsistent doneness on both sides can also be fried, the application range is wider, and the diversified needs of the public taste are met.

[0048] Further, the first pot body 20 has a rectangular structure, and a frying surface 22 is formed at the top of the first pot body 20. The frying surface 22 is an arc surface that is recessed towards the middle, so that the food material is gathered towards the middle. The frying surface 22 can be provided with a non-stick coated metal, which has metal strength and non-stick performance, and the food material is easy to push out.

[0049] The first discharge port 21 is formed at one end of the frying surface 22, and the other end of the frying surface 22 extends upwards to form an end baffle 23. The edges of the two sides of the frying surface 22 extend upwards to form side baffles 24. The food material in the first pot body 20 is limited by the end baffle 23 and the side baffles 24 to avoid being separated from the frying surface 22 during the frying process. The first pot body 20 is provided with a first heating device 25 at the bottom. The first heating device 25 can be realized by a resistance wire, a PTC semiconductor or an electromagnetic induction (IH), so as to improve the material frying efficiency. The structure of the second pot body 50 is consistent with that of the first pot body 20, and those skilled in the art can understand it without further description here.

[0050] The opposite sides of the fixed plate 11 of the embodiment respectively form a first side surface 111 and a second side surface 112. The first pot body 20 and the second pot body 50 are arranged on the first side surface 111, and the first material shoveling driving member 40 and the second material shoveling driving member 70 are arranged on the second side surface 112.

[0051] The fixed plate 11 is provided with a first through slot 113 and a second through slot 114.

[0052] The first material shoveling mechanism 30 includes a first shoveling plate 31 and a first shoveling shaft 32. The first shoveling shaft 32 is arranged in the first through slot 113. One end of the first shoveling shaft 32 extends out of the first side surface 111 and is connected with the first shoveling plate 31, and the other end of the first shoveling shaft 32 extends out of the second side surface 112 and is connected with the first material shoveling driving member 40.

[0053] The second shoveling mechanism 60 comprises a second shovel plate and a second shovel shaft, the second shovel shaft is arranged in the second through slot 114, one end of the second shovel shaft extends out of the first side surface 111 and is connected with the second shovel plate, and the other end of the second shovel shaft extends out of the second side surface 112 and is connected with the second shoveling driving member 70.

[0054] The first shovel plate 31 and the second shovel plate each have an arc-shaped lower edge matched with the frying surface 22, and are made of food-grade stainless steel, high-temperature-resistant silica gel or high-temperature-resistant plastic, so as to meet the requirements of high-temperature resistance, anti-sticking, easy cleaning and food contact safety, and the arc-shaped lower edges of the first shovel plate 31 and the second shovel plate are closely attached to the frying surface 22 to push out the cooked food materials.

[0055] Further, the guard plate assembly 10 further comprises an oil splashing prevention mechanism 12, the oil splashing prevention mechanism 12 comprises a mounting plate 121 and an oil splashing prevention brush 122, a long pulling slot is formed in the mounting plate 121, the long pulling slot is matched with the first through slot 113, and the oil splashing prevention brush 122 is fixed to the edge of the long pulling slot; the mounting plate 121 is detachably arranged on the first through slot 113 in the circumferential direction, and the oil splashing prevention brush 122 covers the first through slot 113.

[0056] The double-drive frying structure of the embodiment can ensure the movement freedom of the first shovel shaft 32 and the second shovel shaft, cover the first through slot 113 and the second through slot 114, and thus isolate the oil stains in the cooking process from the transmission parts, so as to facilitate the cleaning and maintenance of the equipment and improve the food safety.

[0057] The oil feeding pipeline 13 is fixed to the second side surface 112, the oil feeding pipeline 13 has an oil feeding port 131, and the oil feeding port 131 extends to above the first pot body 20 through the fixing plate 11. The oil feeding port 131 can be provided with an oil dripping device or an oil spraying device, so that the edible oil can be more uniformly sprayed into the pot body.

[0058] The equipment rack (not shown in the figure) is further provided, the first shoveling driving member 40 is fixed to the equipment rack, the first shoveling driving member 40 has an output shaft, and the gear 41 is arranged on the output shaft of the first shoveling driving member 40.

[0059] The first shoveling mechanism 30 further comprises a sliding plate 33, which is rotationally connected with the first shoveling shaft 32, and is slidingly connected with the fixed plate 11 through a guide rail sliding block mechanism, and the sliding plate 33 is fixed with a rack 34; the rack 34 is engaged with the gear 41; the gear 41 is rotated by a first shoveling driving member 40 to provide power, and the gear 41 is engaged with the rack 34 to drive the sliding plate 33 to translate relative to the fixed plate 11, and drive the first shoveling shaft 32 to translate in the first through slot 113, so that the first shoveling plate 31 pushes the food materials in the first pot body 20 to the first discharge port 21.

[0060] The first shoveling shaft 32 is provided with a swing plate 35 and a locking plate 36 at the connection position with the sliding plate 33, the swing plate 35 is connected in the circumferential direction of the first shoveling shaft 32, and the swing plate 35 is swung to drive the first shoveling shaft 32 to rotate by a certain angle, so that the lower edge of the first shoveling plate 31 connected with the first shoveling shaft 32 is in contact with or away from the frying surface 22.

[0061] Specifically, the swing plate 35 has a first swing arm 351 and a second swing arm 352, the first swing arm 351 is connected at one end with an elastic member 37, the elastic member 37 in this embodiment is realized by a tension spring, and the other end of the elastic member 37 is connected with the sliding plate 33 through the locking plate 36; the elastic member 37 provides an elastic force to drive the first shoveling shaft 32 to rotate towards the first pot body 20, so that the lower edge of the first shoveling plate 31 is tightly attached to the frying surface 22.

[0062] The second swing arm 352 is rotationally connected at one end with a first roller 354. The second side surface 112 of the fixed plate 11 is fixed with a guide block 14, which is arranged close to the end of the first through slot 113, and the guide block 14 has an upwardly inclined guide surface; when the first shoveling shaft 32 moves close to the first discharge port 21, the first roller 354 is in rolling contact with the guide block 14, so that the first shoveling shaft 32 rotates away from the first pot body 20, and the lower edge of the first shoveling plate 31 is lifted upward, and the lifted lower edge of the first shoveling plate 31 is separated from the frying surface 22.

[0063] The locking plate 36 in this embodiment is rotationally connected with the sliding plate 33, and the locking plate 36 extends out a connecting arm 361 and a locking arm 362 on the opposite sides thereof;

[0064] The elastic member 37 is connected with the sliding plate 33 through the connecting arm 361 of the locking plate 36; so that the locking arm 362 of the locking plate 36 has an elastic force to approach the swing plate 35;

[0065] The locking arm 362 of the locking plate 36 is provided with a locking slot 363, which is matched with the first swing arm 351; through the rolling contact between the first roller 354 and the guide block 14, the first swing arm 351 is swung to be clamped in the locking slot 363, so as to lock the swing angle of the swing plate 35 and lock the lower edge of the first shovel plate 31 in the upwardly raised state, and through the locking plate 36, the first shoveling mechanism 30 keeps the lower edge of the first shovel plate 31 in the upwardly raised state during the return stroke, and the food materials in the first pot body 20 are pushed in the reverse direction.

[0066] The first shoveling assembly further comprises an unlocking mechanism 15 arranged close to the end of the first through slot 113; the unlocking mechanism 15 comprises a guide plate 151 and a parking column 152, and the guide plate 151 has a guide surface inclined away from the second side surface 112;

[0067] The end of the locking arm 362 of the locking plate 36 is rotationally connected with a second roller 364, when the first shovel shaft 32 moves close to the end baffle 23, the second roller 364 is in rolling contact with the guide plate 151, so that the locking arm 362 of the locking plate 36 swings away from the first swing arm 351, and the first swing arm 351 is disengaged from the locking slot 363, so that the first swing arm 351 is unlocked from the locking plate 36.

[0068] The swing plate 35 is formed with a parking slot 355 matched with the parking column 152, when the first shovel shaft 32 moves close to the end baffle 23, the parking slot 355 is clamped with the parking column 152, so that the lower edge of the first shovel plate 31 is parked in the upwardly raised state. When the next task of pushing the food materials is performed, the slide plate 33 drives the swing plate 35 to translate, the parking slot 355 is disengaged from the parking column 152, the unlocked swing plate 35 loses the constraint of the parking column 152, and under the action of the elastic member 37, the swing plate 35 rotates by a certain angle, so that the lower edge of the first shovel plate 31 falls to be close to the cooking surface 22; at the same time, the second roller 364 is disengaged from the guide plate 151, under the reverse action of the elastic member 37, the locking arm 362 is close to the first swing arm 351, and waits for the rolling contact between the first roller 354 and the guide block 14 to lift the first shovel plate 31, and the first swing arm 351 falls into the locking slot 363 to be locked.

[0069] Further comprising a main control board, a first sensing member and a second sensing member, the first sensing member is used to acquire the position information of the first shoveling mechanism 30, and the second sensing member is used to acquire the position information of the second shoveling mechanism 60;

[0070] The main control board is signal connected with the first and second sensing members, and is electrically connected with the first and second material shoveling driving members.

[0071] The main control board is loaded with an avoidance program, when the first material shoveling mechanism 30 pushes the material to be close to the first material outlet 21, the position information of the second material shoveling mechanism 60 is read, if the second material shoveling mechanism 60 is close to the material receiving end 51, the first material shoveling mechanism 30 is suspended, until the second material shoveling mechanism 60 leaves the material receiving area. Thus, the food material can be avoided from falling on the second material shoveling mechanism 60.

[0072] The double driving material frying structure of the embodiment is not only suitable for frying eggs, but also can be adapted to frying meat, seafood and the like after adaptive adjustment, which can be understood by those skilled in the art.

[0073] Although certain components and embodiments of the present application have been shown and described, many modifications and changes can occur to those skilled in the art (for example, variations in size, dimension, structure, shape and proportion of the various elements, changes in mounting arrangements, materials used, colors, orientations, etc.) without materially departing from the scope and spirit of the application as set forth in the following claims.

[0074] Finally, it should be noted that: the above-mentioned embodiments are only preferred embodiment modes of the present application, and cannot be used to limit the scope of protection of the present application, any non-essential change and replacement made by those skilled in the art on the basis of the present application shall belong to the scope of protection required by the present application.

Claims

1. A dual drive browning structure, characterized by, The cooking device comprises a guard plate assembly, a first cooking assembly and a second cooking assembly. The guard plate assembly comprises a fixed plate. The first cooking assembly comprises a first pot body, a first shoveling mechanism and a first shoveling driving member; the first pot body is connected with the fixed plate, the first pot body has a first discharge port; the first shoveling driving member is in transmission connection with the first shoveling mechanism. The second cooking assembly comprises a second pot body, a second shoveling mechanism and a second shoveling driving member; the second pot body is connected with the fixed plate, the second pot body has a receiving end and a second discharge port, the receiving end of the second pot body is arranged below the first discharge port of the first pot body in the direction of gravity; the second shoveling driving member is in transmission connection with the second shoveling mechanism. Power is provided by the first shoveling driving member to drive the first shoveling mechanism to push the food materials in the first pot body to the first discharge port; power is provided by the second shoveling driving member to drive the second shoveling mechanism to push the cooked food materials in the second pot body to the second discharge port.

2. The dual drive material cooking structure of claim 1, wherein, The top of the first pot body is formed with a cooking surface, the cooking surface is an arc surface recessed towards the middle; the first discharge port is formed at one end of the cooking surface, the other end of the cooking surface extends upwards to form an end baffle; the two side edges of the cooking surface extend upwards to form side baffles; the bottom of the first pot body is provided with a first heating device.

3. The dual drive material cooking structure of claim 2, wherein, The opposite sides of the fixed plate are respectively formed with a first side and a second side, the first pot body and the second pot body are arranged on the first side, and the first shoveling driving member and the second shoveling driving member are arranged on the second side. First and second through grooves are formed in the fixed plate. The first shoveling mechanism comprises a first shovel plate and a first shovel shaft, the first shovel shaft is arranged in the first through groove, one end of the first shovel shaft extends out of the first side and is connected with the first shovel plate, and the other end of the first shovel shaft extends out of the second side and is connected with the first shoveling driving member; the first shovel plate has a lower edge matched with the cooking surface. The second shoveling mechanism comprises a second shovel plate and a second shovel shaft, the second shovel shaft is arranged in the second through groove, one end of the second shovel shaft extends out of the first side and is connected with the second shovel plate, and the other end of the second shovel shaft extends out of the second side and is connected with the second shoveling driving member.

4. The dual drive material cooking structure of claim 3, wherein, The guard plate assembly further comprises an oil splash prevention mechanism, the oil splash prevention mechanism comprises a mounting plate and an oil splash prevention brush; a long pull groove is formed in the mounting plate, the long pull groove is matched with the first through groove; the oil splash prevention brush is fixed to the edge of the long pull groove.

5. The dual drive material cooking structure of claim 3, wherein, An oil feeding pipeline is further provided, the oil feeding pipeline is fixed to the second side, the oil feeding pipeline has an oil feeding port, and the oil feeding port extends through the fixed plate to above the first pot body.

6. The dual drive material cooking structure of claim 3, wherein, The first shoveling driving member has an output shaft, and a gear is arranged on the output shaft of the first shoveling driving member. The first shoveling mechanism further comprises a sliding plate, the sliding plate is in rotational connection with the first shovel shaft, the sliding plate is in sliding connection with the fixed plate through a guide rail and a sliding block mechanism, and a rack is fixed to the sliding plate; the rack is in engagement with the gear.

7. The dual drive material cooking structure of claim 6, wherein, The first shovel shaft is connected with a swing plate, the swing plate has a first swing arm, the first swing arm is connected with an elastic member at the end, and the other end of the elastic member is connected with the slide plate.

8. The dual drive material cooking structure of claim 7, wherein, The swing plate has a second swing arm, and the end of the second swing arm is rotatably connected with a first roller. The second side of the fixed plate is fixed with a guide block, the guide block is arranged close to the end of the first through slot, and the guide block has an upwardly inclined guide surface.

9. The dual drive material cooking structure of claim 8, wherein, Further comprising a locking plate, the locking plate is rotatably connected with the slide plate, and the opposite sides of the locking plate respectively extend out a connecting arm and a locking arm; the elastic member is connected with the slide plate through the connecting arm of the locking plate; the locking arm of the locking plate is provided with a locking slot, and the locking slot is matched with the first swing arm; The first material frying assembly further comprises an unlocking mechanism, the unlocking mechanism is arranged close to the end of the first through slot; the unlocking mechanism comprises a guide plate and a parking column, the guide plate has an inclined guide surface away from the second side; the end of the locking arm of the locking plate is rotatably connected with a second roller; the swing plate is formed with a parking slot, and the parking slot is matched with the parking column.

10. The dual drive material cooking structure of claim 1, wherein, Further comprising a main control plate, a first sensing element and a second sensing element, the first sensing element is used for acquiring the position information of the first material shoveling mechanism, and the second sensing element is used for acquiring the position information of the second material shoveling mechanism; The main control plate, the first sensing element and the second sensing element are all signal connected; the main control plate is electrically connected with the first material shoveling driving element and the second material shoveling driving element.