Quantitative subpackaging device for cooked food processing

Through the design of the quantitative packaging device, the problems of low packaging efficiency and poor packaging of cooked food are solved, and efficient and accurate quantitative packaging and sealed packaging of cooked food are achieved, which improves food safety and production efficiency.

CN120288303AInactive Publication Date: 2025-07-11ANHUI TAI UNIQUE FOOD TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202510509304.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-22
Publication Date
2025-07-11
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing deliquent packaging method relies on manual operation, which is inefficient and difficult to ensure accurate consistency. The existing equipment has a complex structure and high maintenance cost, which can easily lead to poor packaging and affect food safety and quality.

Method used

The quantitative packaging device is adopted, including a placement frame, conveying module, packaging module and heat sealing assembly. Through the coordinated work of the drive module, the quantitative roller and the heat seal, the efficient, precise quantitative packaging and sealing packaging of cooked food is achieved.

Benefits of technology

It realizes efficient and precise quantitative packaging of cooked food, improves the sealing and efficiency of packaging, meets the market's requirements for standardized food packaging, and reduces labor costs and food safety risks.

✦ Generated by Eureka AI based on patent content.

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Abstract

The quantitative subpackaging device for cooked food processing comprises a containing frame, a conveying module is arranged in the containing frame, and subpackaging modules are evenly arranged at the lower end of the containing frame. In operation, efficient separation conveying of cooked food materials is achieved by combining a fan-shaped mesh plate, a guide frame and a rotary push plate which are specially designed in the containing frame, material blockage can be effectively avoided, and it is ensured that the conveying process is smooth and stable; the conveying module tightly cooperates with the quantifying roller, so that the quantity of cooked food loaded into a packaging bag each time can be accurately controlled, the consistency of product quality is ensured, and the strict requirement of the market on standardized food packaging is met; the heat sealing assembly can directly package the quantified cooked food, the functions of vacuumizing, heat sealing and cutting are integrated, and the packaging sealing performance and the packaging efficiency are remarkably improved.
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Description

Technical Field

[0001] The present application relates to the technical field of food processing, and particularly to a quantitative packaging device for cooked food processing. Background Art

[0002] In the food processing industry, the quantitative packaging link of cooked food is crucial. Cooked foods such as sausages and chicken feet need to be quantitatively packaged during the production process. Traditional methods of packaging cooked food mostly rely on manual operation, with low efficiency, being greatly affected by the proficiency and fatigue level of the operators, and it is difficult to ensure that the weight or quantity of each bag of cooked food is exactly the same, resulting in uneven product quality. With the increasing requirements of the market for the standardization and high efficiency of food packaging, the existing packaging methods can no longer meet the needs of large-scale production.

[0003] Large cooked food processing plants process a large amount of cooked food every day. Manual packaging is slow and costly, and it is difficult to achieve continuous production. Moreover, manual operation increases the risk of food contamination and affects food safety. Some existing quantitative packaging equipment has a quantitative function, but it has a complex structure and high maintenance costs. Problems such as loose packaging and insecure sealing are prone to occur during the packaging process, resulting in the deterioration and leakage of cooked food during storage and transportation, bringing economic losses to enterprises and harming the interests of consumers. Therefore, it is extremely urgent to develop a quantitative packaging device for cooked food processing that is efficient, accurate, reliable, relatively simple in structure, and convenient to maintain. Summary of the Invention

[0004] In order to achieve the efficient and accurate quantitative packaging of cooked food and improve the packaging efficiency and quality, the present application provides a quantitative packaging device for cooked food processing.

[0005] The quantitative packaging device for cooked food processing provided by the present application adopts the following technical solutions:

[0006] A quantitative packaging device for cooked food processing includes a placement frame, a conveying module is arranged inside the placement frame, and a packaging module is evenly arranged at the lower end of the placement frame;

[0007] The conveying module includes a mounting rack arranged on the placement frame, a driving module is arranged on the mounting rack, the driving module extends into the interior of the placement frame, and fan-shaped mesh plates are equidistantly arranged on the inner wall of the placement frame from top to bottom;

[0008] The packaging module includes a diversion frame arranged on the lower end face of the placement frame, a quantitative roller is arranged inside the diversion frame, film conveying components are symmetrically arranged at both ends of the diversion frame, the two film conveying components are connected by a linkage, the film conveying components are located below the quantitative roller, heat sealing components are symmetrically arranged on the diversion frame, and an adjusting component for controlling the working state of the heat sealing components is arranged on the side wall of the diversion frame;

[0009] The heat-sealing assembly includes a positioning seat provided on the side wall of the diversion frame. A rotating column is provided on the positioning seat through a bearing. A control rod is provided on the rotating column. Auxiliary grooves are symmetrically formed on the side walls of the diversion frame on the upper and lower sides of the positioning seat. Feed rods are slidably arranged in the auxiliary grooves. A moving groove is formed on the control rod. A moving block is provided on the feed rod, and the moving block is slidably arranged in the moving groove. A heat-sealing member is provided on the feed rod inside the auxiliary groove on the upper side of the diversion frame, and a cutting member is provided on the feed rod inside the auxiliary groove on the lower side of the diversion frame.

[0010] Further, the driving module includes a driving motor provided on the mounting frame through a motor seat. A rotating shaft is installed on the output shaft of the driving motor. The rotating shaft passes through the placement frame through a bearing. A guiding frame is provided on the rotating shaft. The guiding frame is slidably connected to the limiting module. Rotating push plates cooperating with the limiting module are uniformly arranged on the guiding frame. The rotating push plates are located between two adjacent mesh plates, and the mesh plates are slidably connected to the guiding frame.

[0011] Further, quantitative grooves are uniformly formed along the circumferential direction of the quantitative roller. A first motor is installed on the outer wall of the diversion frame through a motor seat, and the first motor is connected to the quantitative roller through a coupling.

[0012] Further, the film conveying assembly includes a first fixing frame and a second fixing frame provided on the side wall of the diversion frame, and the second fixing frame is located below the first fixing frame. A winding roller is provided on the first fixing frame through a bearing, and a winding roller is provided on the second fixing frame through a bearing. A tensioning roller is provided on the side wall of the diversion frame. Two guiding grooves are arranged on the diversion frame from top to bottom. A packaging film is provided on the winding roller, and the packaging film passes around the tensioning roller and the two guiding grooves in sequence and is connected to the winding roller.

[0013] The tensioning roller includes a tensioning spring rod, a tensioning frame, and a round roller. The round roller is provided on the tensioning frame through a bearing, and the tensioning frame is connected to the diversion frame through the tensioning spring rod.

[0014] Further, the linkage member includes belt pulleys provided on the winding roller. The two belt pulleys are connected by a belt. A second motor is installed on the outer wall of the diversion frame through a motor seat, and the output shaft of the second motor is connected to the winding roller through a coupling.

[0015] Further, the heat-sealing member includes a mounting box provided on the feed rod. A battery is placed in the mounting box. A heat-sealing frame is provided on the side wall of the mounting box. An electric heating block is provided on the heat-sealing frame. A heat-sealing spring rod is provided between the heat-sealing frame and the mounting box. A conductive rod is provided on the battery, and through holes are provided on both the mounting box and the heat-sealing frame.

[0016] Furthermore, inner grooves are provided on both of the symmetrically arranged heat-sealing frames. When the heat-sealing frames are butted, the two inner grooves form a rectangular cavity. A rubber strip is arranged on the heat-sealing frame, and the rubber strip is located above the inner groove. A control groove is provided on the diversion frame, and a control pipe is slidably arranged in the control groove. An electric push rod is arranged between the control pipe and the diversion frame.

[0017] Furthermore, the cutting member includes a cutting frame arranged on the feeding rod. Cutting spring rods are symmetrically arranged at both ends of the cutting frame, and longitudinal cutting scissors are arranged on the cutting spring rods. A transverse cutting scissors is arranged on the cutting frame, and the transverse cutting scissors is located below the longitudinal cutting scissors.

[0018] Furthermore, the adjusting assembly includes a cylinder installed on the diversion frame. A connecting frame is arranged on the cylinder, and the connecting frame is of an H-shaped structure. Connecting rods are symmetrically arranged at both ends of the connecting frame in a sliding fit manner, and the connecting rods are connected to the rotating column.

[0019] Furthermore, the placement frame is composed of a support frame, an outer frame, and a bottom frame. The bottom frame and the outer frame are of an integrally formed structure, and the support frame is connected to the outer frame. The bottom frame is evenly provided with discharge ports.

[0020] In the above technical solution, a quantitative packaging device for cooked food provided by the present invention combines a fan-shaped mesh plate, a guiding frame, and a rotating pushing plate with special designs in the placement frame to achieve efficient separation and transportation of cooked food materials, which can effectively avoid material blockage and ensure the smooth and stable transportation process; the transportation module and the quantitative roller cooperate closely to accurately control the number of cooked foods loaded into the packaging bag each time, ensuring the consistency of product quality and meeting the strict requirements of the market for standardized food packaging; the heat-sealing assembly can directly package the quantitatively measured cooked food, and the integrated functions of vacuum pumping, heat-sealing, and cutting significantly improve the sealing performance and packaging efficiency of the package. Description of the Drawings

[0021] The present invention will be further described below with reference to the drawings and embodiments.

[0022] Figure 1 is a three-dimensional structural schematic diagram of the present application.

[0023] Figure 2 is a structural schematic diagram of the driving module of the present application.

[0024] Figure 3 is a first structural schematic diagram of the packaging module of the present application.

[0025] Figure 4 is a second structural schematic diagram of the packaging module of the present application.

[0026] Figure 5 is a cross-sectional view of the packaging module of the present application.

[0027] Figure 6 It is a schematic diagram of the planar structure between the diversion frame and the heat-sealing component of this application.

[0028] Figure 7 It is this application Figure 4 A partial enlarged view of part A.

[0029] Figure 8 It is this application Figure 1 A partial enlarged view of part B.

[0030] Explanation of reference numerals: 1. Placing frame; 2. Conveyor module; 3. Sub-packaging module; 21. Mounting frame; 22. Driving module; 23. Limiting module; 31. Diversion frame; 32. Quantitative roller; 33. Film conveying component; 34. Linkage member; 35. Heat-sealing component; 30. Adjusting component; 351. Positioning seat; 352. Rotating column; 353. Control rod; 354. Feeding rod; 36. Heat-sealing member; 37. Cutting member; 221. Driving motor; 222. Rotating shaft; 223. Guide frame; 224. Rotary pushing plate; 231. Mesh plate; 32. Quantitative roller; 331. Fixing frame one; 332. Fixing frame two; 333. Winding roller; 334. Wrapping roller; 335. Tensioning roller; 341. Belt pulley; 343. Driving roller; 342. Belt; 361. Installation box; 362. Heat-sealing frame; 38. Control pipe; 371. Cutting frame; 372. Cutting spring rod; 302. Connecting frame; 303. Connecting rod. Detailed implementation manners

[0031] In order to enable those skilled in the art to better understand the technical solutions of the present invention, the present invention will be further introduced in detail below with reference to the accompanying drawings.

[0032] Please refer to Figures 1-8 , a quantitative sub-packaging device for cooked food processing provided in an embodiment of the present invention includes a placing frame 1. During operation, the cooked food to be packaged and processed is sent into the placing frame 1. A conveyor module 2 is arranged in the placing frame 1. During operation, the conveyor module 2 controls the cooked food to be packaged to enter the sub-packaging module 3 in an orderly manner. The sub-packaging module 3 is evenly arranged at the lower end of the placing frame 1, and the sub-packaging module 3 performs quantitative packaging on the cooked food.

[0033] The placing frame 1 is composed of a support frame, an outer frame, and a bottom frame. The bottom frame and the outer frame are of an integrally formed structure, and the support frame is connected to the outer frame. The bottom frame is evenly provided with discharge ports.

[0034] The conveying module 2 includes a mounting frame 21 provided on the placing frame 1. A driving module 22 is provided on the mounting frame 21. The driving module 22 extends into the placing frame 1. On the inner wall of the placing frame 1, a fan-shaped mesh plate 231 is arranged from top to bottom. The meshes evenly distributed on the mesh plate 231 have good water drainage function. The gaps between two adjacent mesh plates 231 are the same. However, the gap between the lowermost mesh plate 231 in the placing frame 1 and the lower end surface of the placing frame 1 cannot allow two stacked cooked foods to pass through simultaneously.

[0035] The driving module 22 includes a driving motor 221 provided on the mounting frame 21 through a motor base. A rotating shaft 222 is installed on the output shaft of the driving motor 221. The rotating shaft 222 passes through the placing frame 1 through a bearing. A guiding frame 223 is arranged on the rotating shaft 222. The guiding frame 223 is slidably connected to the limiting module 23. Rotating push plates 224 that cooperate with the limiting module 23 are evenly arranged on the guiding frame 223. The rotating push plates 224 are located between two adjacent mesh plates 231. The mesh plate 231 is slidably connected to the guiding frame 223. The rotating push plates 224 are arranged obliquely. During the process of pushing the cooked food to move, the cooked food that cannot enter between the two mesh plates 231 is sent to the upper layer of the mesh plate 231 under the cooperation of the rotating push plates 224 and the mesh plate 231.

[0036] By adopting the above technical solution, the driving motor 221 starts to work. The driving motor 221 controls the rotating shaft 222 to drive the guiding frame 223 to rotate. The guiding frame 223 and the mesh plate 231 are connected by a bearing. During the rotation of the guiding frame 223, the rotating push plates 224 are synchronously driven to rotate. During the rotation process, the rotating push plates 224 will contact the cooked food placed on the mesh plate 231, thereby applying a thrust force for the cooked food to move along the surface of the mesh plate 231. The rotating push plates 224 enable the cooked food to be smoothly conveyed from the placing frame 1 to the discharge port and enter the diversion frame 31 of the packaging module 3.

[0037] The sub-packaging module 3 includes a diversion frame 31 arranged on the lower end face of the placement frame 1. A metering roller 32 is arranged inside the diversion frame 31. Film conveying assemblies 33 are symmetrically arranged at both ends of the diversion frame 31. The two film conveying assemblies 33 are connected by a linkage member 34. The film conveying assemblies 33 are located below the metering roller 32. Heat-sealing assemblies 35 are symmetrically arranged on the diversion frame 31. And an adjusting assembly 30 for controlling the working state of the heat-sealing assemblies 35 is arranged on the side wall of the diversion frame 31; The heat-sealing assembly 35 includes a positioning seat 351 arranged on the side wall of the diversion frame 31. A rotating column 352 is arranged on the positioning seat 351 through a bearing. A control rod 353 is arranged on the rotating column 352. Auxiliary grooves are symmetrically formed on the side walls of the diversion frame 31 above and below the positioning seat 351. Feeding rods 354 are slidably arranged in the auxiliary grooves. A moving groove is formed on the control rod 353. A moving block is arranged on the feeding rod 354. The moving block is slidably arranged in the moving groove. A heat-sealing member 36 is arranged on the feeding rod 354 inside the upper auxiliary groove of the diversion frame 31. A cutting member 37 is arranged on the feeding rod 354 inside the lower auxiliary groove of the diversion frame 31.

[0038] The metering roller 32 is evenly provided with metering grooves along its circumferential direction. A first motor is installed on the outer wall of the diversion frame 31 through a motor seat. The first motor is connected to the metering roller 32 through a coupling. The metering grooves are used for separating cooked foods. When performing quantitative packaging of cooked foods, quantitative packaging of cooked foods is carried out according to the cooked foods that fall downward when the metering roller 32 rotates.

[0039] By adopting the above technical solution, it falls onto the metering roller 32 inside the diversion frame 31. In this process, the linkage member 34 drives the conveying assembly 33 to work. The two film conveying assemblies 33 drive the packaging film to continuously move during the operation. The heat-sealing member 36 in the heat-sealing assembly 35 heat-seals three sides of the two packaging films, so that the two packaging films form a packaging bag structure with an open upper end. The metering roller 32 rotates at a constant speed under the control of the first motor. The cooked foods in the metering grooves fall into the packaging bag according to the packaging specifications. The continuously moving film conveying assembly 33 drives the packaging film to move from top to bottom. When packaging the next cooked food, the heat-sealing member 36 performs vacuum pumping and sealing operations on the upper opening of the packaging bag. And the cutting member 37 synchronously cuts the cooked foods that have been packaged during the movement of the film conveying assembly 33. The cooked foods after being packaged fall from the diversion frame 31.

[0040] The film feeding assembly 33 includes a first fixing frame 331 and a second fixing frame 332 provided on the side wall of the diversion frame 31, and the second fixing frame 332 is located below the first fixing frame 331. A winding roller 333 is provided on the first fixing frame 331 through a bearing, and a winding roller 334 is provided on the second fixing frame 332 through a bearing. A tension roller 335 is provided on the side wall of the diversion frame 31. Two guiding grooves are arranged on the diversion frame 31 from top to bottom. A packaging film is provided on the winding roller 333, and the packaging film passes around the tension roller 335 and the two guiding grooves in sequence and is connected to the winding roller 334.

[0041] The tension roller 335 includes a tension spring rod, a tension frame, and a round roller. The round roller is provided on the tension frame through a bearing, and the tension frame is connected to the diversion frame 31 through the tension spring rod.

[0042] The linkage member 34 includes a pulley 341 provided on the winding roller 334. The two pulleys 341 are connected by a belt 342. A second motor is installed on the outer wall of the diversion frame 31 through a motor base, and the output shaft of the second motor is connected to the winding roller 334 through a coupling.

[0043] By adopting the above technical solution, when the second motor is started during the operation of packaging cooked food, the second motor drives the two winding rollers 334 to rotate synchronously through the mutual cooperation between the two pulleys 341 and the belt 342 during operation. The two winding rollers 334 wind the packaging film synchronously during movement, and the normal supply of the packaging film can be ensured during the quantitative packaging of cooked food.

[0044] The adjusting assembly 30 includes a cylinder installed on the diversion frame 31. A connecting frame 302 is provided on the cylinder. The connecting frame 302 has an H-shaped structure. Two connecting rods 33 are symmetrically arranged at both ends of the connecting frame 302 in a sliding fit manner, and the connecting rods 33 are connected to the rotating column 352.

[0045] The heat-sealing member 36 includes an installation box 361 provided on the feeding rod 354. A battery is placed in the installation box 361. A heat-sealing frame 362 is provided on the side wall of the installation box 361. An electric heating block is provided on the heat-sealing frame 362. A heat-sealing spring rod is provided between the heat-sealing frame 362 and the installation box 361. A conducting rod is provided on the battery. Electrically conductive holes are provided on both the installation box 361 and the heat-sealing frame 362. The electric heating block includes a U-shaped electric heating block and a strip-shaped electric heating block. The electric heating blocks on the two heat-sealing frames 362 work simultaneously to form a packaging bag structure with an upper opening after the two layers of packaging film are butted, and the cooked food directly falls into the packaging bag during operation.

[0046] By adopting the above technical solution, the cylinder control connecting frame 32 is started to move up and down during work. During the movement of the connecting frame 32, it cooperates with the connecting rod 33 to drive the rotating column 352 to rotate reciprocally. During the rotation of the rotating column 352, it cooperates with the control rod 353 to drive the upper and lower feeding rods 354 to move alternately in the auxiliary groove;

[0047] The feeding rod 354 drives the mounting box 361 to move towards the packaging film. When the two heating blocks come into contact, the two layers of packaging film are adhered together. The feeding rod 354 continuously applies pressure to the mounting box 361. In this state, the heat-sealing spring rod contracts, and the conductive rod passes through the power-on hole and is connected to the heating block. After the heating block is powered on, the heat-sealing operation of the two layers of packaging film is completed;

[0048] Inner grooves are provided on both of the symmetrically arranged heat-sealing frames 362. When the heat-sealing frames 362 are butted, the two inner grooves form a rectangular cavity. Rubber strips are provided on the heat-sealing frames 362. The rubber strips are located above the inner grooves and between the strip-shaped heating block and the U-shaped heating block. A control groove is provided on the flow guide frame 31, and a control pipe 38 is slidably arranged in the control groove. An electric push rod is arranged between the control pipe 38 and the flow guide frame 31.

[0049] By adopting the above technical solution, when the opening of the food bag containing cooked food moves to the position where the strip-shaped heat-sealing block works, the feeding rod 354 drives the mounting box 361 to move towards the packaging film. The rubber strips on the two heat-sealing frames 362 are adhered to each other. The two adhered rubber strips press and adhere the two layers of packaging film located above the food bag in this state. And the electric push rod synchronously drives the control pipe 38 to be inserted into the rectangular cavity. The control pipe 38 is docked with the rectangular cavity. The control pipe 38 is externally connected to a vacuum pump. The vacuum pump works to perform vacuum pumping on the food bag through the cooperation of the control pipe and the rectangular cavity. After the vacuum pumping operation of the food bag is completed, the electric push rod drives the control pipe 38 to reset. The feeding rod 354 continues to drive the mounting box 361 to move towards the packaging film. During this process, the heat-sealing spring rod contracts, and the conductive rod passes through the power-on hole and is connected to the heating block. After the heating block is powered on, the heat-sealing operation of the two layers of packaging film is completed, thereby completing the sealing operation of the food bag in the previous operation.

[0050] The cutting member 37 includes a cutting frame 371 arranged on the feeding rod 354. Cutting spring rods 372 are symmetrically arranged at both ends of the cutting frame 371. Longitudinal cutting scissors are arranged on the cutting spring rods 372. Transverse cutting scissors are arranged on the cutting frame 371. The transverse cutting scissors are located below the longitudinal cutting scissors.

[0051] By adopting the above technical solution, during the operation, the feed rod 354 controls the cutting frame 371 to move towards the packaging film. With the assistance of the cutting spring rod 372, the cutting frame 371 first drives the longitudinal cutting knife towards the heat-sealed area of the packaging film to form a packaging bag. As the packaging film moves, the longitudinal cutting of the packaging bag is completed by the longitudinal cutting knife. When the packaging bag moves to the heat-sealed area in its opening direction, the feed rod 354 moves to drive the transverse cutting knife to perform transverse cutting on it. During continuous operation, the longitudinal cutting knife and the transverse cutting knife cooperate with each other to cut the packaging bag from the packaging film.

[0052] Only some exemplary embodiments of the present invention have been described by way of illustration. Without doubt, for those of ordinary skill in the art, various different ways can be used to modify the described embodiments without departing from the spirit and scope of the present invention. Therefore, the above drawings and descriptions are illustrative in nature and should not be construed as limiting the scope of protection of the claims of the present invention.

Claims

1. A quantitative packaging device for cooked food processing, including a placement frame, characterized in that, A conveying module is arranged inside the placing frame, and sub-packaging modules are evenly arranged at the lower end of the placing frame; The conveying module includes a mounting frame arranged on the placing frame, a driving module is arranged on the mounting frame, the driving module extends into the placing frame, and a fan-shaped mesh plate is arranged on the inner wall of the placing frame from top to bottom; The sub-packaging module includes a diversion frame arranged on the lower end face of the placing frame, a metering roller is arranged inside the diversion frame, film conveying components are symmetrically arranged at both ends of the diversion frame, the two film conveying components are connected by a linkage, the film conveying components are located below the metering roller, heat sealing components are symmetrically arranged on the diversion frame, and an adjusting component for controlling the working state of the heat sealing components is arranged on the side wall of the diversion frame; The heat sealing component includes a positioning seat arranged on the side wall of the diversion frame, a rotating column is arranged on the positioning seat through a bearing, a control rod is arranged on the rotating column, auxiliary grooves are symmetrically opened on the side walls of the diversion frame above and below the positioning seat, a feeding rod is slidably arranged in the auxiliary grooves, a moving groove is opened on the control rod, a moving block is arranged on the feeding rod, the moving block is slidably arranged in the moving groove, a heat sealing piece is arranged on the feeding rod inside the auxiliary groove on the upper side of the diversion frame, and a cutting piece is arranged on the feeding rod inside the auxiliary groove on the lower side of the diversion frame.

2. The quantitative packaging device for cooked food processing according to claim 1, wherein, The driving module includes a driving motor arranged on the mounting frame through a motor seat, a rotating shaft is installed on the output shaft of the driving motor, the rotating shaft passes through the placing frame through a bearing, a guiding frame is arranged on the rotating shaft, the guiding frame is slidably connected with a limiting module, rotary pushing plates cooperating with the limiting module are evenly arranged on the guiding frame, the rotary pushing plates are located between two adjacent mesh plates, and the mesh plate is slidably connected with the guiding frame.

3. A quantitative packaging device for cooked food processing according to claim 1, characterized in that, Quantitative grooves are evenly opened on the circumferential direction of the metering roller, a motor I is installed on the outer wall of the diversion frame through a motor seat, and the motor I is connected with the metering roller through a coupling.

4. A quantitative packaging device for cooked food processing according to claim 1, characterized in that, The film conveying component includes a fixing frame I and a fixing frame II arranged on the side wall of the diversion frame, and the fixing frame II is located below the fixing frame I. A winding roller is arranged on the fixing frame I through a bearing, a winding roller is arranged on the fixing frame II through a bearing, a tensioning roller is arranged on the side wall of the diversion frame, two guiding grooves are arranged on the diversion frame from top to bottom, a packaging film is arranged on the winding roller, and the packaging film passes through the tensioning roller and the two guiding grooves in sequence and is connected to the winding roller; The tensioning roller includes a tensioning spring rod, a tensioning frame and a circular roller. The circular roller is arranged on the tensioning frame through a bearing, and the tensioning frame is connected to the diversion frame through the tensioning spring rod.

5. The quantitative packaging device for cooked food processing according to claim 1, characterized in that The linkage includes a belt pulley arranged on the winding roller, a motor II is installed on the outer wall of the diversion frame through a motor seat, a driving roller is installed on the output shaft of the motor II, and the driving roller is connected with the two belt pulleys through a belt.

6. The quantitative packaging device for cooked food processing according to claim 1, characterized in that, The heat sealing piece includes an installation box arranged on the feeding rod, a battery is placed inside the installation box, a heat sealing frame is arranged on the side wall of the installation box, an electric heating block is arranged on the heat sealing frame, a heat sealing spring rod is arranged between the heat sealing frame and the installation box, a conducting rod is arranged on the battery, and through holes are arranged on both the installation box and the heat sealing frame.

7. A quantitative packaging device for cooked food processing according to claim 6, characterized in that Inner grooves are formed in both of the symmetrically arranged heat-sealing frames. When the heat-sealing frames are butted, the two inner grooves form a rectangular cavity. A rubber strip is arranged on the heat-sealing frame, and the rubber strip is located on the upper side of the inner groove. A control groove is formed in the diversion frame, and a control pipe is slidably arranged in the control groove. An electric push rod is arranged between the control pipe and the diversion frame.

8. A quantitative packaging device for cooked food processing according to claim 7, characterized in that, The cutting member includes a cutting frame arranged on the feed rod. Cutting spring rods are symmetrically arranged at both ends of the cutting frame, and longitudinal cutting scissors are arranged on the cutting spring rods. A transverse cutting scissors is arranged on the cutting frame, and the transverse cutting scissors is located below the longitudinal cutting scissors.

9. A quantitative packaging device for cooked food processing according to claim 8, characterized in that, The adjusting assembly includes a cylinder installed on the diversion frame. A connecting frame is arranged on the cylinder, and the connecting frame is in an H-shaped structure. Connecting rods are symmetrically arranged at both ends of the connecting frame in a sliding fit manner, and the connecting rods are connected to the rotating column.

10. The quantitative packaging device for cooked food processing according to claim 1, characterized in that, The placement frame is composed of a support frame, an outer frame and a bottom frame. The bottom frame and the outer frame are of an integrally formed structure, and the support frame is connected to the outer frame. Material discharge ports are evenly formed in the bottom frame.