A potato chip and fried chicken forming and frying integrated forming device

By integrating molding and frying into an automated device, the problems of complex and cumbersome processing of potato chips and fried chicken, as well as human error, have been solved, achieving efficient and safe food production.

CN119605807BActive Publication Date: 2025-12-19HENAN CHAIN DUODUO SUPPLY CHAIN MANAGEMENT CO LTD
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Patent Information

Application Number
CN202411829372.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-12-12
Publication Date
2025-12-19
Estimated Expiration
2044-12-12

AI Technical Summary

Technical Problem

Existing potato chip and fried chicken processing equipment requires step-by-step operation, which is complex and cumbersome, consumes a lot of energy, and has large human control errors, affecting food quality.

Method used

Design a potato chip and fried chicken forming and frying integrated forming and frying device that integrates forming and frying into one unit and adopts automated process, including forming mechanism, boxing mechanism, drive component and limiting component, to realize automatic slicing, cutting, frying, oil filtering and unloading of raw materials.

Benefits of technology

It improves processing efficiency, reduces energy consumption, avoids human error, ensures food quality, and enhances safety and ease of operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a potato chip and fried chicken forming and frying integrated forming device and relates to the technical field of food processing. The device specifically comprises an integrated base, a frying integrated groove arranged on the integrated base, a forming mechanism fixed on the integrated base, a boxing mechanism installed on the integrated base, a driving assembly installed on the integrated base, a frying box installed on the driving assembly and a limiting assembly symmetrically installed on the frying integrated groove. The forming mechanism is located above the front side of the frying integrated groove. The driving assembly is rotatably installed on the left side of the frying integrated groove. The boxing mechanism is installed on the right side of the frying integrated groove. The frying box is located between the frying integrated groove and the forming mechanism. The forming process and the frying process are integrated. Raw materials can be directly processed into finished fried food. Energy consumption is effectively reduced, and production efficiency is improved. Moreover, the forming mechanism and the frying mechanism are both automatic production processes, which ensure the quality of food production.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of food processing, in particular to a forming and frying integrated forming device for potato chips and fried chicken. BACKGROUND

[0002] Potato chips and fried chicken, as fried snacks or fast food, are deeply loved by consumers for their unique delicious taste. Potato chips and fried chicken are not only convenient to carry and store, but also provide people with energy and certain nutrients, such as protein (fried chicken) and carbohydrates (both potato chips and fried chicken contain them). In the process of making potato chips, potatoes are cut and fried into crispy and delicious potato chips, which are easy to carry and have become a favorite snack for many people. In the process of making fried chicken, marinated chicken (such as chicken breast, chicken legs or chicken wings) is cut and fried, and the skin becomes crispy, the inside is tender and juicy, forming a unique taste, which is also loved by people.

[0003] In order to meet the increasing demand of consumers for such fried foods, in the existing food production and processing, the food processing of potato chips and fried chicken usually uses specific forming devices and frying devices to improve the efficiency and quality of food forming and frying. However, in fact, due to the need for step-by-step processing of food when using such devices, and sometimes different places are needed for different processes, these will make the whole food processing process complicated and tedious, not only increasing energy consumption, but also affecting food processing efficiency. At the same time, when using such devices, human control is still needed. For example, the frying time of the food needs to be controlled by humans, and human factors cannot ensure the accuracy of the frying time, which is prone to errors, thereby affecting the final quality of food production.

[0004] In summary, in order to improve the production efficiency of potato chips and fried chicken, reduce human errors and improve product quality, an integrated forming device that integrates forming and automatic frying is needed to solve the problems existing in the prior art. SUMMARY

[0005] In view of the deficiencies of the prior art, the present application provides a forming and frying integrated forming device for potato chips and fried chicken, which aims to solve the problems existing in the prior art.

[0006] In order to achieve the above object, the present application provides the following technical scheme: a potato chip fried chicken forming and frying integrated forming device, which comprises an integrated base, a frying integrated groove arranged on the integrated base, a forming mechanism fixed on the integrated base, a boxing mechanism installed on the integrated base, a driving assembly installed on the integrated base, a frying box installed on the driving assembly and a limiting assembly symmetrically installed on the frying integrated groove, the forming mechanism is located above the front side of the frying integrated groove, the driving assembly is rotatably installed on the left side of the frying integrated groove, the boxing mechanism is installed on the right side of the frying integrated groove, and the frying box is located between the frying integrated groove and the forming mechanism.

[0007] Further, the forming mechanism comprises a forming box fixed on the integrated base, a support plate installed on the forming box, a water jet head installed downward on the forming box, a total hydraulic machine installed downward on the support plate, a pressing block frame installed on the telescopic end of the total hydraulic machine, a sub hydraulic motor installed downward in the pressing block frame and a tablet pressing assembly fixed on the telescopic end of the sub hydraulic motor, and a plurality of in-frame channels are further arranged in the pressing block frame.

[0008] Further, the tablet pressing assembly comprises a bearing plate fixed on the telescopic end of the sub hydraulic motor and a plurality of tablet pressing blocks installed downward on the bearing plate, and the positions of the tablet pressing blocks correspond to those of the in-frame channels.

[0009] Further, the forming mechanism further comprises a cutting block frame movably installed on the forming box, a tablet cutting plate movably installed in the forming box, a feeding belt rotatably installed at the bottom of the forming box and a scraping plate fixed between the forming boxes, the cutting block frame is located directly below the pressing block frame, a cutting knife corresponding to the in-frame channel is arranged in the cutting block frame, the tablet cutting plate is located directly below the cutting block frame, tablet cutting knives are equidistantly installed on the tablet cutting plate, the feeding belt is located directly below the tablet cutting plate, the scraping plate is close to the feeding belt and is fixed at an angle to the obliquely downward side of the feeding belt, and the water jet head is located above the feeding belt.

[0010] Further, the frying box comprises a carrier frame, a limiting frame movably sleeved on the carrier frame, a driving block fixed on the side wall of the limiting frame, an oil passing groove arranged on the bottom of the carrier frame, movable side plates horizontally and extendingly arranged on the left and right sides of the carrier frame, limiting side plates arranged on the left and right sides of the limiting frame and limiting bottom grooves symmetrically arranged on the back of the limiting side plates, and a driving port is further arranged on the driving block, and the carrier frame is located directly below the scraping plate.

[0011] Further, the frying box further comprises a plurality of telescopic rods fixed upward and symmetrically on the limiting side plates and a reset spring sleeved on the telescopic rods, and the upper end of the telescopic rod is movably and penetratingly arranged on the movable side plate.

[0012] Further, the driving assembly comprises a driving belt mounted on the left side of the integrated frying groove and driving columns horizontally and equidistantly fixed on the right side of the driving belt, and the driving columns are movably arranged in the driving port.

[0013] Further, the limiting assembly comprises support members symmetrically mounted on the two sides of the integrated frying groove and limiting rods fixed on the support members, and the limiting bottom groove is movably clamped on the limiting rods.

[0014] Further, the integrated frying groove comprises a frying groove, an oil filtering groove and an inclined bottom groove sequentially arranged in the integrated frying groove from front to back, an oil filtering port arranged between the oil filtering groove and the inclined bottom groove, a downward pressing support plate mounted above the frying groove and a pair of downward pressing vertical plates fixed downward on the downward pressing support plate, and the downward pressing support plate is fixed on the integrated base, and the downward pressing vertical plates correspond to the positions of the movable side plates.

[0015] Further, the boxing mechanism comprises a loading belt mounted on the integrated base, side baffles mounted on the two sides of the loading belt, a front baffle mounted on the front side of the loading belt, and a loading cylinder mounted outwardly between the side baffles and the front baffle, and the movable end of the loading cylinder corresponds to the position of the frying box, and the gap between the inner side baffles and the front baffle corresponds to the position of the frying box.

[0016] Compared with the prior art, the present application provides a potato chip fried chicken forming and frying integrated forming device, which has the following advantages:

[0017] 1、The device integrates processing and frying processing, can directly process raw materials into finished fried food, effectively reduces energy consumption and improves production efficiency; moreover, the forming processing technology and the frying processing technology are both automatic production processes, which can avoid human errors and ensure the quality of food production.

[0018] 2、The device uses the briquetting frame and the tabletting assembly in cooperation with the slicing plate and the dicing frame to slice or dice the raw materials, and the slicing plate is detachable, which can be disassembled according to the actual dicing or slicing needs.

[0019] 3、The device uses the driving assembly to drive the frying box to move, and in cooperation with the limiting rods and the downward pressing vertical plates, the loading frame is pressed down into the frying groove, so that the raw materials in the frying groove are fried, and then the limiting cooperation of the driving assembly, the downward pressing vertical plates and the limiting rods is cancelled in sequence, so that the fried food in the frying box can be filtered and unloaded, and the whole frying process is automatically completed by the device, which not only saves manpower and material resources, but also avoids errors caused by human operation and affects the processing quality.

[0020] 4, The device adopts a boxing mechanism to cooperate with the rotating driving assembly, so that automatic loading of the frying box can be realized. By using an automatic boxing mechanism to replace manual installation of the frying box, the situation that the semi-finished food product falls after forming due to untimely manual installation can be avoided, and the possibility that the operation personnel is injured during the operation of the device can also be avoided, thereby ensuring the safety and efficiency of the device. BRIEF DESCRIPTION OF DRAWINGS

[0021] Figure 1 It is a structural schematic view of the forming device of the present application;

[0022] Figure 2 It is an enlarged view of A part in Figure 1

[0023] Figure 3 It is an enlarged view of B part in Figure 1

[0024] Figure 4 It is a front view of the forming device in the present application;

[0025] Figure 5 It is a side view of the forming device in the present application;

[0026] Figure 6 It is an enlarged view of C part in Figure 5

[0027] Figure 7 It is an enlarged view of D part in Figure 5

[0028] Figure 8 It is a structural schematic view of the tabletting assembly in the present application;

[0029] Figure 9 It is a structural schematic view of the slicing plate in the present application;

[0030] Figure 10 It is a structural schematic view of the dicing frame in the present application;

[0031] Figure 11 It is a structural schematic view of the frying box in the present application;

[0032] Figure 12 It is another reverse direction structural schematic view of the frying box in the present application.

[0033] ​​​​In the figure: 1, the base; 2, forming mechanism; 21, forming box; 211, support plate; 212, water head; 22, briquetting frame; 221, frame passage; 23, total hydraulic machine; 24, cutting block frame; 241, cutting knife; 25, slicing plate; 251, slicing knife; 26, feeding belt; 27, scraping plate; 28, tabletting assembly; 281, tabletting block; 282, bearing plate; 29, liquid separation hydraulic motor; 3, integrated frying groove; 31, frying groove; 32, oil filter groove; 33, inclined bottom groove; 34, oil filter port; 35, lower pressing support plate; 351, lower pressing vertical plate; 4, boxing mechanism; 41, loading belt; 42, loading cylinder; 43, side baffle; 44, front baffle; 5, frying box; 51, carrier frame; 511, movable side plate; 52, oil passing groove; 53, limiting frame; 531, limiting side plate; 532, limiting bottom groove; 54, driving block; 541, driving port; 55, return spring; 56, telescopic rod; 6, limiting assembly; 61, support; 62, limiting rod; 7, driving assembly; 71, driving column; 72, driving belt. DETAILED DESCRIPTION

[0034] In the present application, the orientation such as "up, down" is generally directed to the direction shown in the drawings, or to the vertical, perpendicular or gravity direction, unless otherwise stated; similarly, for the convenience of understanding and description, "left, right" is generally directed to the left and right shown in the drawings; "inner, outer" refers to the inner and outer relative to the contour of each component itself, but the above orientation words are not used to limit the present application.

[0035] Please refer to Figures 1 to 12 The present application provides a technical scheme of a potato chip fried chicken forming and frying integrated forming device: a potato chip fried chicken forming and frying integrated forming device, comprising an integrated base 1, a frying integrated groove 3 arranged on the integrated base 1, a forming mechanism 2 fixed on the integrated base 1, a boxing mechanism 4 installed on the integrated base 1, a driving assembly 7 installed on the integrated base 1, a frying box 5 installed on the driving assembly 7, and a limiting assembly 6 symmetrically installed on the frying integrated groove 3, the forming mechanism 2 is located above the front side of the frying integrated groove 3, the driving assembly 7 is rotatably installed on the left side of the frying integrated groove 3, the boxing mechanism 4 is installed on the right side of the frying integrated groove 3, and the frying box 5 is located between the frying integrated groove 3 and the forming mechanism 2.

[0036] The forming mechanism 2 comprises a forming box 21 fixed on the integral base 1, a support plate 211 installed on the forming box 21, a water punching head 212 installed downward on the forming box 21, a total hydraulic machine 23 installed downward on the support plate 211, a pressing block frame 22 installed on the telescopic end of the total hydraulic machine 23, a sub-hydraulic motor 29 installed downward in the pressing block frame 22, and a tablet pressing assembly 28 fixed on the telescopic end of the sub-hydraulic motor 29. A plurality of in-frame channels 221 are also provided in the pressing block frame 22. The tablet pressing assembly 28 comprises a bearing plate 282 fixed on the telescopic end of the sub-hydraulic motor 29, and a plurality of tablet pressing blocks 281 installed downward on the bearing plate 282, which correspond to the positions of the in-frame channels 221. The forming mechanism 2 further comprises a cutting block frame 24 movably installed on the forming box 21, a tablet cutting plate 25 movably installed in the forming box 21, a feeding belt 26 rotatably installed at the bottom of the forming box 21, and a material scraping plate 27 fixed between the forming box 21. The cutting block frame 24 is located directly below the pressing block frame 22, and a cutting block cutter 241 corresponding to the in-frame channels 221 is provided in the cutting block frame 24. The tablet cutting plate 25 is located directly below the cutting block frame 24, and a tablet cutting cutter 251 is installed equidistantly on the tablet cutting plate 25. The feeding belt 26 is located directly below the tablet cutting plate 25, and the material scraping plate 27 is fixed at an angle below the feeding belt 26, close to the feeding belt 26. The water punching head 212 is located above the feeding belt 26.

[0037] The frying box 5 comprises a material carrying frame 51, a limiting frame 53 movably sleeved on the material carrying frame 51, a driving block 54 fixed on the side wall of the limiting frame 53, an oil passing groove 52 provided at the bottom of the material carrying frame 51, movable side plates 511 horizontally extending on the left and right sides of the material carrying frame 51, limiting side plates 531 provided on the left and right sides of the limiting frame 53, and limiting bottom grooves 532 symmetrically provided on the back of the limiting side plates 531. A driving opening 541 is also provided on the driving block 54, and the material carrying frame 51 is located directly below the material scraping plate 27. The frying box 5 further comprises a plurality of telescopic rods 56 fixed upward and symmetrically on the limiting side plates 531, and a reset spring 55 sleeved on the telescopic rods 56. The upper ends of the telescopic rods 56 are movably inserted into the movable side plates 511.

[0038] The driving assembly 7 comprises a driving belt 72 installed on the left side of the frying integrated groove 3 and driving columns 71 horizontally and equidistantly fixed on the right side of the driving belt 72, the driving columns 71 movably penetrating the driving port 541. The limiting assembly 6 comprises support pieces 61 symmetrically installed on both sides of the frying integrated groove 3 and limiting rods 62 fixed on the support pieces 61, the limiting bottom groove 532 movably clamped on the limiting rods 62. The frying integrated groove 3 comprises a frying groove 31, an oil filtering groove 32 and an inclined bottom groove 33 sequentially arranged from front to back, an oil filtering port 34 arranged between the oil filtering groove 32 and the inclined bottom groove 33, a pressing support plate 35 installed above the frying groove 31 and a pair of pressing vertical plates 351 fixed downward on the pressing support plate 35, the pressing support plate 35 is fixed on the integrated base 1, the pressing vertical plates 351 correspond to the positions of the movable side plates 511. The boxing mechanism 4 comprises a loading belt 41 installed on the integrated base 1, side baffles 43 installed on both sides of the loading belt 41, a front baffle 44 installed on the front side of the loading belt 41 and loading cylinders 42 outwardly installed between the side baffles 43 and the front baffle 44, the movable end of the loading cylinders 42 corresponds to the position of the frying box 5, the inside side baffles 43 and the front baffle 44 are provided with apertures corresponding to the position of the frying box 5.

[0039] In specific use, the present application is used as a potato chip frying and forming integrated device. When the potato needs to be integrally formed into potato chips, first, the frying box 5 is placed in the loading belt 41 in an orderly manner, then the slicing plate 25 is clamped in the corresponding forming box 21, and then the device is started. At this time, the loading belt 41 continuously rotates and drives the frying box 5 on it to be attached to the side of the front baffle 44 under the limiting of the front baffle 44 and the side baffle 43; at this time, the driving belt 72 drives the driving column 71 to make intermittent rotation, and the loading cylinder 42 also makes intermittent movement. When the driving column 71 rotates to the corresponding position of the driving port 541, the rotation is stopped; at this time, the loading cylinder 42 moves and pushes the frying box 5 to be sleeved on the driving column 71 until it is completely sleeved, the loading cylinder 42 is reset and stops working. By using the box loading mechanism 4 to cooperate with the rotating driving assembly 7, automatic loading of the frying box 5 can be realized. The automatic design not only can realize efficient loading, but also can replace manual operation and improve safety. In the process of installing the frying box 5, the feeding belt 26 continuously rotates, and the water jet head 212 continuously sprays water at the same time. The total hydraulic machine 23 and the sub-hydraulic motor 29 make intermittent movements respectively. When the total hydraulic machine 23 rises and retracts to the highest point, the movement is stopped. At this time, the workers put the first batch of clean potatoes into the cutting frame 24 within this time. After the feeding is completed, the total hydraulic machine 23 is started to drive the pressing block frame 22 to move downward. In the moving process, the bottom of the pressing block frame 22 and the bottom of the pressing piece 281 push the potatoes in the cutting frame 24, and the potatoes are cut into blocks when moving downward. Moreover, under the limiting of the pressing block frame 22, the cut block-shaped potatoes continue to move downward and are cut into slices by the slicing knife 251 until the bottom of the pressing block frame 22 abuts against the cutting knife 241, and the total hydraulic machine 23 stops moving. At this time, the potatoes are completely cut into blocks. Then, the sub-hydraulic motor 29 drives the pressing piece 281 to continue to move downward through the bearing plate 282 and pushes the block-shaped potatoes to continue to move downward to be sliced until the bottom of the pressing piece 281 abuts against the slicing knife 251. The block-shaped potatoes are completely cut into slices and fall on the feeding belt 26. Then, the sub-hydraulic motor 29 drives the pressing assembly 28 to reset, and the total hydraulic machine 23 drives the pressing block frame 22 to reset. After the resetting is completed, the work is stopped. At this time, the frying box 5 is just installed below the scraping plate 27. The slicing potatoes on the feeding belt 26 are washed by the water jet head 212 when passing through the water jet head 212, and finally fall into the loading frame 51 to control the moisture. The scraping plate 27 can scrape the slicing potatoes on the feeding belt 26 and drop them into the loading frame 51, so as to avoid food waste.After the first batch of potato chips is completely loaded into the loading frame 51, the drive belt 72 starts to rotate and drives the drive column 71 to move, and the drive column 71 drives the frying box 5 to move. During the movement, the limiting rods 62 on both sides of the frying integrated groove 3 are gradually clamped in the limiting bottom groove 532, so that the frying box 5 is limited on the limiting rods 62 during the movement to avoid rotating left and right. When the frying box 5 moves a certain distance, the drive belt 72 stops rotating, at this time, the next drive column 71 reaches the designated position, and the device repeats a round of installation work. During this period, the staff repeatedly put in the second batch of potato raw materials. After the second batch of potato chips is loaded, the drive belt 72 continues to rotate and drives the frying box 5 to continue to move. During the movement of the frying box 5, when the movable side plate 511 on both sides of the loading frame 51 contacts the downward vertical plate 351, the frying box 5 continues to displace. At this time, the movable side plate 511 is limited by the downward vertical plate 351, and is horizontally displaced while gradually displacing downward along the telescopic rod 56, and at the same time, the potato chips in the loading frame 51 are displaced downward and immersed in the frying groove 31 to be fried. Under the continuous limiting of the downward vertical plate 351 and the intermittent displacement of the frying box 5, the potato chips in the loading frame 51 are continuously fried until the frying box 5 is displaced to the rear side of the downward vertical plate 351. The longitudinal direction of the loading frame 51 is no longer limited, and is displaced upward and reset under the action of the reset spring 55. At this time, the potato chips in the loading frame 51 are fried into potato chips. The frying box 5 continues to move intermittently under the drive of the drive column 71, and when passing through the oil filtering groove 32, the excess oil in the loading frame 51 flows into the oil filtering groove 32 from the oil filtering groove 52, so as to drain the residual oil. When the frying box 5 moves to the upper side of the inclined bottom groove 33, the limiting rod 62 cancels the limiting of the frying box 5. Under the action of gravity, the frying box 5 rotates around the drive column 71 until the loading frame 51 is rotated to the downward direction, and the fried potato chips in it automatically fall into the inclined bottom groove 33, so as to achieve the purpose of automatic loading and unloading of finished products. Moreover, the inclined bottom design of the inclined bottom groove 33 and the oil filtering port 34 opened between the inclined bottom groove 33 and the oil filtering groove 32 can further filter the oil between the potato chips into the oil filtering groove 32. During the entire frying process, the drive assembly 7 drives the frying box 5 to move and limits the semi-finished food under the cooperation of the limiting assembly 6 and the downward vertical plate 351 for automatic frying, oil filtering and unloading. This design not only saves manpower and material resources, but also avoids errors caused by manual operation and affects the processing quality. Finally, the staff takes out the used frying box 5 and places it on the loading belt 41 for repeated use. The operation is simple and efficient. When the fried chicken needs to be integrally formed, the slicing plate 25 is only needed to be removed and the water flushing head 212 is closed. When the slicing plate 25 is removed, the chicken meat put into the cutting frame 24 is cut into uniform blocks by the cutting knife 241 and falls on the feeding belt 26. Finally, the chicken meat is uniformly fried by the frying box 5.The raw material can be sliced by the cooperation of the slice plate 25, the cutting block 24, the briquetting frame 22 and the tabletting assembly 28 in the forming mechanism 2, and the slice plate 25 is detachable, which can be disassembled and assembled according to the actual cutting or slicing needs, and the operation is convenient.

[0040] Since the frying time of the potato chips and the fried chicken is different, when the chicken is fried, the running speed of the forming mechanism 2, the boxing mechanism 4 and the driving assembly 7 in the control device can be controlled to indirectly control the frying time of the chicken, so as to ensure the processing quality. In the technical solution, the device integrates the processing and frying into one, and can directly process the raw material into the finished fried food, effectively reduces the energy consumption caused by the step-by-step processing, and improves the production efficiency; and the forming processing technology and the frying processing technology are both automatic production technologies, which ensure the quality of food production. In addition, the total hydraulic machine 23, the sub-hydraulic machine 29, the feeding belt 26 and the water jet head 212 in the forming mechanism 2 of the device, the loading belt 41 and the loading cylinder 42 in the boxing mechanism 4 and the driving belt 72 in the driving assembly 7 are all prior art, and their respective working principles and control modes will not be described in detail in the technical solution.

[0041] The above is only a specific embodiment of the present application, but the technical features of the present application are not limited to this. Any simple change, equivalent replacement or modification made on the basis of the present application to solve the same technical problem and achieve the same technical effect is also covered by the protection scope of the present application.

Claims

1. A potato chip fried chicken forming and frying integrated forming device, comprising an integrated base (1) and a frying integrated groove (3) arranged on the integrated base (1), characterized in that: It also includes a forming mechanism (2) fixed on the integrated base (1), a boxing mechanism (4) installed on the integrated base (1), a driving assembly (7) installed on the integrated base (1), a frying box (5) installed on the driving assembly (7), and a limiting assembly (6) symmetrically installed on the frying integrated groove (3), the forming mechanism (2) is located above the front side of the frying integrated groove (3), the driving assembly (7) is rotatably installed on the left side of the frying integrated groove (3), the boxing mechanism (4) is installed on the right side of the frying integrated groove (3), and the frying box (5) is located between the frying integrated groove (3) and the forming mechanism (2); The forming mechanism (2) includes a forming box (21) fixed on the integrated base (1), a support plate (211) installed on the forming box (21), a water punching head (212) installed downward on the forming box (21), a total hydraulic machine (23) installed downward on the support plate (211), a pressing block frame (22) installed on the telescopic end of the total hydraulic machine (23), a sub hydraulic motor (29) installed downward in the pressing block frame (22), and a tablet pressing assembly (28) fixed on the telescopic end of the sub hydraulic motor (29), a plurality of in-frame channels (221) are also formed in the pressing block frame (22); The tablet pressing assembly (28) includes a bearing plate (282) fixed on the telescopic end of the sub hydraulic motor (29) and a plurality of tablet pressing blocks (281) installed downward on the bearing plate (282), and the positions of the tablet pressing blocks (281) correspond to the positions of the in-frame channels (221); The forming mechanism (2) further includes a cutting block frame (24) movably installed on the forming box (21), a tablet cutting plate (25) movably installed in the forming box (21), a feeding belt (26) rotatably installed at the bottom of the forming box (21), and a scraping plate (27) fixed between the forming box (21), the cutting block frame (24) is located directly below the pressing block frame (22), a cutting knife (241) corresponding to the in-frame channel (221) is arranged in the cutting block frame (24), the tablet cutting plate (25) is located directly below the cutting block frame (24), a plurality of tablet cutting knives (251) are equidistantly installed on the tablet cutting plate (25), the feeding belt (26) is located directly below the tablet cutting plate (25), the scraping plate (27) is close to the feeding belt (26) and is fixed at an angle below the feeding belt (26), and the water punching head (212) is located above the feeding belt (26); The frying box (5) includes a material carrying frame (51), a limiting frame (53) movably sleeved on the material carrying frame (51), a driving block (54) fixed on the side wall of the limiting frame (53), an oil passing groove (52) formed in the bottom of the material carrying frame (51), movable side plates (511) horizontally extending on the left and right sides of the material carrying frame (51), limiting side plates (531) arranged on the left and right sides of the limiting frame (53), and limiting bottom grooves (532) symmetrically formed on the back of the limiting side plates (531), and a driving port (541) is also formed in the driving block (54), and the material carrying frame (51) is located directly below the scraping plate (27). The boxing mechanism (4) comprises a loading belt (41) mounted on the integrated base (1), side baffles (43) mounted on both sides of the loading belt (41), a front baffle (44) mounted on the front side of the loading belt (41), and a loading cylinder (42) mounted outwardly between the side baffles (43) and the front baffle (44), the movable end of the loading cylinder (42) corresponds to the position of the frying box (5), and the side baffles (43) and the front baffle (44) on the inner side are provided with an opening corresponding to the position of the frying box (5).

2. The apparatus according to claim 1, wherein The frying box (5) further comprises a plurality of telescopic rods (56) fixed upward and symmetrically on the limiting side plate (531) and a reset spring (55) sleeved on the telescopic rod (56), and the upper end of the telescopic rod (56) is movably provided in the movable side plate (511).

3. The apparatus according to claim 1, wherein The driving assembly (7) comprises a driving belt (72) mounted on the left side of the frying integrated groove (3) and a driving column (71) fixed horizontally and equidistantly on the right side of the driving belt (72), and the driving column (71) is movably provided in the driving port (541).

4. The apparatus according to claim 1, wherein The limiting assembly (6) comprises support pieces (61) symmetrically mounted on both sides of the frying integrated groove (3) and limiting rods (62) fixed on the support pieces (61), and the limiting bottom groove (532) is movably clamped on the limiting rod (62).

5. The apparatus according to claim 1, wherein The frying integrated groove (3) comprises a frying groove (31), an oil filtering groove (32) and an inclined bottom groove (33) sequentially arranged from front to back, an oil filtering port (34) arranged between the oil filtering groove (32) and the inclined bottom groove (33), a lower pressing support plate (35) mounted above the frying groove (31), and a pair of lower pressing vertical plates (351) fixed downward on the lower pressing support plate (35), the lower pressing support plate (35) is fixed on the integrated base (1), and the lower pressing vertical plates (351) correspond to the positions of the movable side plates (511).

Citation Information

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