Stuffing wrapping machine for mixing, processing and forming various food wrappers and stuffing

By designing a filling machine containing extrusion, filling, cutting knife and feeding parts, the filling problems of clogged filling, dispersed power structure and insufficient dough rubbing in the existing filling machine are solved, and the product appearance is improved and the equipment reliability and efficiency are improved.

CN120052388APending Publication Date: 2025-05-30SHANGHAI SHENGYI MASCH EQUIP CO LTD
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Patent Information

Application Number
CN202510538611.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-27
Publication Date
2025-05-30

AI Technical Summary

Technical Problem

The existing filling machines are prone to clogging during the mixing and stirring of the filling, the power structure is dispersed, and the coordinated work is difficult, and the dough is not kneaded enough, which affects the appearance of the product.

Method used

A filling machine including a feeding part, a filling part, a cutting part and a feeding part is designed. The extrusion part prevents clogging by setting up a pressing roller and a discharge paddle. The filling part realizes secondary kneading of the dough through the diversion pipe and the stirring teeth. The cutting part improves the concentration and coordination of the power structure through the integrated cutting assembly and the synchronous lifting assembly.

Benefits of technology

It effectively prevents the filling from being blocked, improves the degree of kneading of the dough, makes the filling food smooth and beautiful, and solves the problem of dispersed power structure, improving the reliability and production efficiency of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an encrusting machine for mixing, processing and forming various food wrappers and fillings, which solves the problems that the fillings are easy to block and a power structure is dispersed, and the wrappers are kneaded twice in the encrusting process, so that the formed encrusting food is smooth and attractive in appearance. A material pressing roller is transversely arranged on a hopper, a material stirring piece is also axially arranged on the material pressing roller to assist material stirring and prevent stuffing or flour from flowing to the outer side of the hopper, a discharging stirring piece is arranged at the corner of a discharging pipeline, the discharging stirring piece and a stirring roller synchronously rotate, thrust is increased for the stuffing or the flour in the pipeline, and the pipeline is prevented from being blocked; two dough channels which are divided into two are formed on the surface of a flow dividing pipeline, then the dough is secondarily stirred together through second stirring fins in stirring teeth, wrappers are kneaded in place, the formed stuffed food is smooth and attractive in appearance, the cutting action of a cutting assembly is driven by an independent cutter motor, and lifting of the cutter assembly and lifting of a receiving plate are synchronous; the encrusting machine can be widely applied to the field of encrusting machines.
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Description

Technical Field

[0001] The present invention relates to a stuffing machine for mixing and processing the skins and fillings of various foods, and belongs to the technical field of food skin and filling mixing and processing. Background Art

[0002] In the food processing industry, stuffing machines are widely used machines, but there are many problems with existing stuffing machines. On the one hand, in some stuffing machines, the filling is not mixed and stirred properly, and there is no good feeding and squeezing structure, so the filling is likely to be blocked in the pipeline. On the other hand, in some stuffing machines, the surface of the dough is not kneaded properly during the process of mixing and forming the skin and filling, which affects the appearance of the product.

[0003] In addition, when dealing with different types of stuffed foods, existing stuffing machines often need to replace different models of stuffing machines, resulting in increased use costs. At the same time, the power structures of existing stuffing machines are relatively scattered, making it difficult for them to work together, prone to failures, and affecting the production process. Summary of the Invention

[0004] The present invention overcomes the deficiencies of the prior art, provides a stuffing machine for mixing and processing the skins and fillings of various foods, solves the problems of easy blockage during the mixing and stirring of the filling and the scattered power structure, and the dough is kneaded twice during the process of mixing and forming the skin and filling, so that the appearance of the stuffed food formed is smooth and beautiful.

[0005] To solve the above technical problems, the technical solution adopted by the present invention is: a stuffing machine for mixing and processing the skins and fillings of various foods, including a squeezing part, a stuffing part, a cutting knife part and a receiving part. The squeezing part is arranged at the upper end of the machine body part, and the outlet of the squeezing part is communicated with the inlet of the stuffing part; the outlet of the stuffing part is communicated with the inlet of the cutting knife part, and the outlet of the cutting knife part is located above the receiving part. The structure of the squeezing part is: it includes a stuffing squeezing structure and a dough squeezing structure with the same structure. Both the stuffing squeezing structure and the dough squeezing structure include two stirring rollers with opposite rotation directions arranged in the hopper. First stirring fins are spirally arranged on the stirring rollers. The first stirring fins rotate with the stirring rollers to mix the stuffing or dough evenly and push it downward and forward. A pressing roller is arranged on the hopper at the front end of the stirring roller. The pressing roller is arranged perpendicular to the stirring roller, and the stirring roller and the pressing roller share a stirring motor; The structure of the stuffed part is as follows: it includes a stuffing inlet pipe, a dough inlet pipe, an upper shell, a lower shell, a diversion pipeline, stirring teeth, a material receiving pipe, and a forming seat. The material receiving pipe is connected to the lower end of the diversion pipeline. The upper shell and the lower shell are respectively arranged outside the diversion pipeline and the material receiving pipe. The upper shell and the lower shell are hermetically connected in a matching manner. Ear plates are correspondingly arranged on both sides of the upper shell and the lower shell. The ear plates are lapped on the food processing machine body in a matching manner, and after being pressed by a pressing strip, they are connected and fixed to the food processing machine body by hand-tightening bolts. One ends of the stuffing inlet pipe and the dough inlet pipe are respectively communicated with the discharge ports of the stuffing and the dough. The other ends of the stuffing inlet pipe and the dough inlet pipe respectively penetrate through the upper shell and are then communicated with the inner cavity and the outside of the diversion pipeline. A stuffing passing pipeline is arranged inside the diversion pipeline. A dough channel is formed between the outside of the diversion pipeline and the inner side of the upper shell. And an arc-shaped protrusion is arranged at the dough inlet end of the diversion pipeline, so that after the dough enters the dough channel, two dough channels are formed by splitting one into two. Stirring teeth are arranged between the material receiving pipe and the inner side of the lower shell. A second stirring fin is arranged on the inner ring of the stirring teeth. The outer ring of the stirring teeth is connected with an external power assembly through a reserved hole of the lower shell. The forming seat is located below the material receiving pipe and is connected to the lower end of the lower shell.

[0006] Further, the structure of the cutting part is as follows: it includes a cutting component, a synchronous lifting component, and a mounting plate. The synchronous lifting component is mounted on the mounting plate, and the cutting component is mounted on the synchronous lifting component. The synchronous lifting component includes a lifting motor, a driving shaft, a crank and connecting rod mechanism, a lifting plate, a guiding column, a cam, a connecting rod mechanism, and a support rod. The power output end of the lifting motor is connected with the driving shaft through power conversion. One end of the driving shaft is provided with a crank and connecting rod mechanism. The end of the crank and connecting rod mechanism is connected with a lifting plate. The guiding column is arranged at the lower end of the lifting plate. The cutting component is arranged at the upper end of the lifting plate. The lifting plate is driven to move up and down by the crank and connecting rod mechanism, driving the cutting component to lift synchronously. The other end of the driving shaft is provided with a cam. The cam is connected with the support rod through a connecting rod mechanism. The side of the support rod is slidably arranged in a slide rail. A material receiving plate is arranged at the top end of the support rod. The material receiving plate and the cutting component are synchronously lifted under the synchronous driving of the driving shaft.

[0007] Further, the structure of the cutting component is as follows: it includes a cutting tool component and a cutting tool motor. The body of the cutting tool motor and the outer shell of the cutting tool component are both fixedly arranged on the lifting plate. A driving connecting rod mechanism is arranged on the power output end of the cutting tool motor. One end of the driving connecting rod mechanism is connected with the cutting tool motor, and the other end of the driving connecting rod mechanism is connected with the cutter head of the cutting tool component. The cutter head of the cutting tool component is driven to move by driving the connecting rod mechanism by the cutting tool motor.

[0008] Further, a plurality of arc-shaped protrusions on the dough inlet pipe cooperate with each other to form a passage for the dough to pass through, and the outer side of the arc-shaped protrusion is closely attached to the inner side of the upper shell; the stuffing inlet pipe penetrates through the arc-shaped protrusion and is communicated with the inner cavity of the shunt pipe.

[0009] Further, a discharge paddle is arranged in the discharge pipe of the stuffing extrusion structure and the dough extrusion structure, and the discharge paddle is connected to the end of one of the stirring rollers and is driven to rotate synchronously by the stirring roller.

[0010] Further, a plurality of paddles with different lengths are arranged on the surface of the discharge paddle, and the discharge paddle is arranged at the corner of the discharge pipe to prevent the pipe from being blocked.

[0011] Further, the two stirring rollers are meshed through gears, one of the stirring rollers is chain-driven with the stirring motor, and the other stirring roller is power-connected to the pressing roller through chain drive and bevel gear drive.

[0012] Further, a sensor is arranged on the lifting plate, and the sensor is used to detect the stroke of the driving link mechanism and provide a control signal for the forward and reverse rotation of the cutter motor.

[0013] Further, the second stirring fins are arc-shaped fins, and a plurality of the arc-shaped fins are circumferentially and arrayedly distributed on the inner ring of the stirring teeth.

[0014] Further, a roller is arranged at one end of the link mechanism, and the roller is arranged in an annular groove on one side of the cam in a matching manner. By the rotation of the cam, the roller rolls in the annular groove, thereby driving the link mechanism to act.

[0015] The present invention has the following beneficial effects compared with the prior art.

[0016] 1. In the present invention, a pressing roller is horizontally arranged on the hopper, and a material-pushing piece is also axially arranged on the pressing roller to assist in pushing the material, blocking and downwardly extruding the stuffing or dough that moves forward with the first stirring fins, preventing the stuffing or dough from flowing out of the hopper. Even if a small amount of stuffing or dough overflows, it will be collected by the tray arranged below, which is convenient for cleaning. In addition, in the present invention, a discharge paddle is arranged at the corner of the discharge pipe, and the discharge paddle rotates synchronously with the stirring roller, increasing the thrust for the mixing and stirring of the stuffing or dough in the pipe and preventing the pipe from being blocked.

[0017] 2. In the present invention, two dough channels are formed on the surface of the shunt pipe to divide into two, and then the dough is secondarily mixed and stirred together through the second stirring fins in the stirring teeth, so that the dough is kneaded in place, and the appearance of the stuffed food formed is smooth and beautiful. The ear plates on the upper shell and the lower shell can facilitate the disassembly and assembly of the food processing machine body, facilitating the replacement of the stuffing device and meeting the requirements for different types of stuffed foods.

[0018] 3. In the present invention, the cutting component and the synchronous lifting component are integrated onto the mounting plate. Among them, the cutting action of the cutting component is driven by a separate cutting knife motor. The lifting of the cutting knife component is synchronized with the lifting of the material receiving plate, and the lifting speed of the cutting knife component is adapted to the material feeding speed, avoiding material accumulation or material breakage in the cutter head. At the same time, the synchronous lifting of the material receiving plate and the cutting knife component can ensure the falling distance of the cut material and provide a certain buffering effect, preventing the material from being broken or deformed. Meanwhile, the problem of the currently dispersed power structure is solved. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] The present invention will be further described below with reference to the drawings.

[0020] Figure 1 It is a schematic structural diagram of the present invention.

[0021] Figure 2 It is a schematic diagram of the internal exposed structure of the material extrusion part in the present invention Figure 1 .

[0022] Figure 3 It is a schematic diagram of the internal exposed structure of the material extrusion part in the present invention Figure 2 .

[0023] Figure 4 It is a schematic structural diagram of the discharging flap in the present invention.

[0024] Figure 5 It is a schematic diagram of the flap distribution of the discharging flap in the present invention.

[0025] Figure 6 It is a schematic structural diagram of the stuffing part in the present invention.

[0026] Figure 7 It is a schematic structural diagram of the hidden lower housing of the stuffing part in the present invention.

[0027] Figure 8 It is a schematic structural diagram of the installation of the present invention on the food processing machine body.

[0028] Figure 9 It is a schematic structural diagram of the stirring teeth in the present invention.

[0029] Figure 10 It is a schematic diagram of the structure of the shunt pipeline in the present invention Figure 1 .

[0030] Figure 11 It is a schematic diagram of the structure of the shunt pipeline in the present invention Figure 2 .

[0031] Figure 12 It is a schematic diagram of the structure of the shunt pipeline in the present invention Figure 3 .

[0032] Figure 13 This is a schematic structural diagram of the cutter part in the present invention.

[0033] Figure 14 This is a front view structural schematic diagram of the cutter part in the present invention.

[0034] Figure 15 This is a three-dimensional structural schematic of the cutter part in the present invention Figure 1 .

[0035] Figure 16 This is a three-dimensional structural schematic of the cutter part in the present invention Figure 2 .

[0036] In the figure: 1. Extrusion part; 111. Filling extrusion structure; 1111. Hopper; 1112. Stirring roller; 1113. First stirring fin; 1114. Pressing roller; 1115. Stirring motor; 112. Dough extrusion structure; 113. Discharge deflector; 2. Stuffed part; 21. Filling inlet pipe; 22. Dough inlet pipe; 23. Upper housing; 24. Lower housing; 25. Shunt pipeline; 26. Stirring teeth; 27. Material receiving pipe; 28. Forming seat; 29. Arc-shaped protrusion; 210. Second stirring fin; 211. Food processing machine body; 212. Pressure strip; 213. Hand-tightening bolt; 214. Ear plate; 3. Cutter part; 31. Cutting component; 311. Cutter assembly; 312. Cutter motor; 313. Driving link mechanism; 314. Sensor; 32. Synchronous lifting component; 321. Lifting motor; 322. Driving shaft; 323. Crank-link mechanism; 324. Lifting plate; 325. Guide post; 326. Cam; 327. Link mechanism; 328. Support rod; 329. Slide rail; 3210. Material receiving plate; 3211. Roller; 3212. Ring groove; 3213. Limiting plate; 33. Mounting plate; 4. Material receiving part; 5. Machine body part. Detailed implementation manners

[0037] The present invention will be further described below in conjunction with specific embodiments.

[0038] As Figures 1 to 16As shown in the figure, a stuffing machine for the mixed processing and forming of various food skins and fillings according to the present invention includes a stuffing part 1, a stuffing part 2, a cutter part 3, and a material receiving part 4. The stuffing part 1 is arranged at the upper end of the machine body part 5, and the outlet of the stuffing part 1 is communicated with the inlet of the stuffing part 2; the outlet of the stuffing part 2 is communicated with the inlet of the cutter part 3, and the outlet of the cutter part 3 is located above the material receiving part 4. The structure of the stuffing part 1 is as follows: it includes a stuffing extrusion structure 111 and a dough extrusion structure 112 with the same structure. Both the stuffing extrusion structure 111 and the dough extrusion structure 112 include two stirring rollers 1112 with opposite rotation directions arranged in the hopper 1111. The stirring roller 1112 is spirally provided with first stirring fins 1113. The first stirring fins 1113 rotate with the stirring roller 1112 to mix the stuffing or dough evenly and push it downward and forward. A pressure roller 1114 is arranged on the hopper 1111 at the front end of the stirring roller 1112. The pressure roller 1114 is arranged perpendicular to the stirring roller 1112. The stirring roller 1112 and the pressure roller 1114 share a stirring motor 1115. An outlet baffle 113 is arranged in the outlet pipeline of the stuffing extrusion structure 111 and the dough extrusion structure 112. The outlet baffle 113 is connected to the end of one of the stirring rollers 1112 and is driven to rotate synchronously by the stirring roller 1112. The surface of the outlet baffle 113 is provided with a plurality of baffles with different lengths. The outlet baffle 113 is arranged at the corner of the outlet pipeline to prevent the pipeline from being blocked. The two stirring rollers 1112 are meshed by gears. One of the stirring rollers 1112 is power-connected to the stirring motor 1115 through chain drive, and the other stirring roller 1112 is power-connected to the pressure roller 1114 through chain drive and bevel gear drive.

[0039] In the present invention, a pressure roller 1114 is horizontally arranged on the hopper 1111. The pressure roller 1114 is also axially provided with a material guiding piece to assist in guiding the material, blocking and squeezing downward the stuffing or dough moving forward with the first stirring fins 1113, preventing the stuffing or dough from flowing out of the hopper 1111. Even if a small amount of stuffing or dough overflows, it will be collected by the tray arranged below, which is convenient for cleaning. In addition, in the present invention, an outlet baffle 113 is arranged at the corner of the outlet pipeline. The outlet baffle 113 rotates synchronously with the stirring roller 1112 to increase the thrust on the stuffing or dough in the pipeline and prevent the pipeline from being blocked.

[0040] The structure of the stuffed part 2 is as follows: It includes a stuffing inlet pipe 21, a dough inlet pipe 22, an upper housing 23, a lower housing 24, a diversion pipeline 25, stirring teeth 26, a material receiving pipe 27, and a forming seat 28. The material receiving pipe 27 is connected to the lower end of the diversion pipeline 25. The upper housing 23 and the lower housing 24 are respectively arranged outside the diversion pipeline 25 and the material receiving pipe 27. The upper housing 23 and the lower housing 24 are hermetically connected in a matching manner. On both sides of the upper housing 23 and the lower housing 24, ear plates 214 are correspondingly arranged. The ear plates 214 are lapped on the food processing body 211 in a matching manner, and after being pressed by a pressing strip 212, they are connected and fixed to the food processing body 211 with a hand-tightened bolt 213. One end of the stuffing inlet pipe 21 and the dough inlet pipe 22 is respectively communicated with the discharge ports of the stuffing and the dough. The other ends of the stuffing inlet pipe 21 and the dough inlet pipe 22 respectively penetrate through the upper housing 23 and then communicate with the inner cavity and the outside of the diversion pipeline 25. The diversion pipeline 25 is internally provided with a stuffing passage. A dough passage is formed between the outside of the diversion pipeline 25 and the inner side of the upper housing 23. And an arc-shaped protrusion 29 is arranged at the dough inlet end of the diversion pipeline 25, so that after the dough enters the dough passage, two dough passages are formed by splitting one into two. A stirring tooth 26 is arranged between the material receiving pipe 27 and the inner side of the lower housing 24. A second stirring fin 210 is arranged on the inner circle of the stirring tooth 26. The outer circle of the stirring tooth 26 is power-connected to an external power component through a reserved hole in the lower housing 24. The forming seat 28 is located below the material receiving pipe 27 and is connected to the lower end of the lower housing 24. The second stirring fin 210 is an arc-shaped fin, and a plurality of the arc-shaped fins are circumferentially and arrayedly distributed on the inner circle of the stirring tooth 26. The stirring tooth 26 is meshed with a gear of an external power through a reserved hole in the lower housing 24. The arc-shaped protrusions 29 on the dough inlet pipe 22 cooperate with each other to form a passage for the dough to pass through, and the outer side of the arc-shaped protrusion 29 is closely attached to the inner side of the upper housing 23. The stuffing inlet pipe 21 penetrates through the arc-shaped protrusion 29 and then communicates with the inner cavity of the diversion pipeline 25. In the present invention, two dough passages are formed by splitting one into two on the surface of the diversion pipeline 25, and then they are stirred together again by the second stirring fin 210 inside the stirring tooth 26. The dough is kneaded in place, and the appearance of the stuffed food formed is smooth and beautiful. The ear plates 214 on the upper housing 23 and the lower housing 24 can facilitate the disassembly and assembly with the food processing body 211, facilitate the replacement of the stuffing device, and meet the requirements of different types of stuffed foods. The arc-shaped protrusions 29 on the dough inlet pipe 22 cooperate with each other to form a passage for the dough to pass through, and the outer side of the arc-shaped protrusion 29 is closely attached to the inner side of the upper housing 23. The stuffing inlet pipe 21 penetrates through the arc-shaped protrusion 29 and then communicates with the inner cavity of the diversion pipeline 25.

[0041] The structure of the cutting tool part 3 is as follows: It includes a material cutting component 31, a synchronous lifting component 32, and a mounting plate 33. The synchronous lifting component 32 is installed on the mounting plate 33, and the material cutting component 31 is installed on the synchronous lifting component 32. The synchronous lifting component 32 includes a lifting motor 321, a driving shaft 322, a crank and connecting rod mechanism 323, a lifting plate 324, a guiding column 325, a cam 326, a connecting rod mechanism 327, and a support rod 328. The power output end of the lifting motor 321 is power-connected to the driving shaft 322 after power conversion. One end of the driving shaft 322 is provided with a crank and connecting rod mechanism 323, and the end of the crank and connecting rod mechanism 323 is connected to a lifting plate 324. The guiding column 325 is arranged at the lower end of the lifting plate 324, and the material cutting component 31 is arranged at the upper end of the lifting plate 324. The crank and connecting rod mechanism 323 drives the lifting plate 324 to move up and down, driving the material cutting component 31 to lift and lower synchronously. The other end of the driving shaft 322 is provided with a cam 326. The cam 326 is connected to the support rod 328 through a connecting rod mechanism 327. The side of the support rod 328 is slidably arranged in a slide rail 329. The top of the support rod 328 is provided with a material receiving plate 3210. The material receiving plate 3210 and the material cutting component 31 achieve synchronous lifting and lowering under the synchronous drive of the driving shaft 322. The structure of the material cutting component 31 is as follows: It includes a cutting tool component 311 and a cutting tool motor 312. The body of the cutting tool motor 312 and the housing of the cutting tool component 311 are both fixedly arranged on the lifting plate 324. A driving connecting rod mechanism 313 is arranged on the power output end of the cutting tool motor 312. One end of the driving connecting rod mechanism 313 is connected to the cutting tool motor 312, and the other end of the driving connecting rod mechanism 313 is power-connected to the tool disc of the cutting tool component 311. The cutting tool motor 312 drives the driving connecting rod mechanism 313 to act, thereby driving the tool disc of the cutting tool component 311 to act. A sensor 314 is arranged on the lifting plate 324. The sensor 314 is used to detect the moving stroke of the driving connecting rod mechanism 313 and provide a control signal for the forward and reverse rotation of the cutting tool motor 312. One end of the connecting rod mechanism 327 is provided with a roller 3211. The roller 3211 is arranged in an annular groove 3212 on one side of the cam 326 in a matching manner. By the rotation of the cam 326, the roller 3211 rolls in the annular groove 3212, thereby driving the connecting rod mechanism 327 to act. The upper end of the guiding column 325 is fixed on the lifting plate 324, and the lower end of the guiding column 325 is movably inserted into a limiting plate 3213 fixed to the mounting plate 33.

[0042] In the present invention, the blanking component 31 and the synchronous lifting component 32 are integrated onto the mounting plate 33. Among them, the blanking action of the blanking component 31 is driven by a separate cutting tool motor 312. The lifting of the cutting tool component 311 is synchronized with the lifting of the material receiving plate 3210, and the lifting speed of the cutting tool component 311 is adapted to the blanking speed, avoiding material accumulation or material breakage in the cutter head. The synchronous lifting of the material receiving plate 3210 and the cutting tool component 311 can ensure the falling distance of the cut material and provide a certain buffering effect, preventing the material from being broken or deformed. At the same time, the problem of the currently scattered power structure is solved.

[0043] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Within the scope of knowledge possessed by those of ordinary skill in the art, various changes can be made without departing from the gist of the present invention.

Claims

1. A stuffing machine for mixing and processing a variety of food skins and fillings, comprising a material extruding part (1), a stuffing part (2), a cutting part (3) and a material receiving part (4), wherein the material extruding part (1) is arranged at the upper end of a machine body part (5), and the outlet of the material extruding part (1) is connected to the inlet of the stuffing part (2); the outlet of the stuffing part (2) is connected to the inlet of the cutting part (3), and the outlet of the cutting part (3) is located above the material receiving part (4), characterized in that: The structure of the extrusion part (1) is as follows: it comprises a filling extrusion structure (111) and a material extrusion structure (112) of the same structure; the filling extrusion structure (111) and the material extrusion structure (112) both comprise two stirring rollers (1112) arranged in a hopper (1111) and rotating in opposite directions; the stirring roller (1112) is spirally provided with a first stirring fin (1113); the first stirring fin (1113) rotates with the stirring roller (1112) to mix the filling or material evenly and push it downward and forward; a pressing roller (1114) is arranged on the hopper (1111) at the front end of the stirring roller (1112); the pressing roller (1114) is arranged perpendicular to the stirring roller (1112); the stirring roller (1112) and the pressing roller (1114) share a stirring motor (1115); The structure of the stuffing part (2) is as follows: it comprises a stuffing feeding tube (21), a dough feeding tube (22), an upper shell (23), a lower shell (24), a flow distribution pipe (25), stirring teeth (26), a material receiving tube (27) and a forming seat (28); the material receiving tube (27) is connected to the lower end of the flow distribution pipe (25); the upper shell (23) and the lower shell (24) are respectively arranged on the outside of the flow distribution pipe (25) and the material receiving tube (27); the upper shell (23) and the lower shell (24) are matched and sealed to each other; both sides of the upper shell (23) and the lower shell (24) are respectively provided with ear plates (214); the ear plates (214) are matched and overlapped on the food processing machine body (211); and after being pressed by a pressure strip (212), they are connected and fixed to the food processing machine body (211) by hand-tightening bolts (213); one end of the stuffing feeding tube (21) and the dough feeding tube (22) are respectively The filling and dough outlets are connected, the other ends of the filling inlet pipe (21) and the dough inlet pipe (22) respectively penetrate the upper shell (23) and are connected to the inner cavity and the outer side of the shunt pipe (25), the shunt pipe (25) has a filling pipe built in, the outer side of the shunt pipe (25) and the inner side of the upper shell (23) form a dough channel, and an arc-shaped protrusion (29) is provided at the dough inlet end of the shunt pipe (25), so that after the dough enters the dough channel, two dough channels are formed, one is divided into two, a stirring tooth (26) is provided between the material receiving pipe (27) and the inner side of the lower shell (24), the inner ring of the stirring tooth (26) is provided with a second stirring fin (210), the outer ring of the stirring tooth (26) is connected to the external power component through the reserved channel of the lower shell (24), and the forming seat (28) is located at the lower side of the material receiving pipe (27) and is connected to the lower end of the lower shell (24).

2. A stuffing machine for mixing and processing a variety of food skins and fillings according to claim 1, characterized in that: The structure of the cutting blade part (3) is as follows: it comprises a cutting assembly (31), a synchronous lifting assembly (32) and a mounting plate (33); the synchronous lifting assembly (32) is mounted on the mounting plate (33), and the cutting assembly (31) is mounted on the synchronous lifting assembly (32); the synchronous lifting assembly (32) comprises a lifting motor (321), a drive shaft (322), a crank connecting rod mechanism (323), a lifting plate (324), a guide column (325), a cam (326), a connecting rod mechanism (327) and a support rod (328); the power output end of the lifting motor (321) is connected to the drive shaft (322) through power reversing; one end of the drive shaft (322) is provided with a crank connecting rod mechanism (323); the crank connecting rod mechanism (32 3) The end is connected with a lifting plate (324), the guide column (325) is arranged at the lower end of the lifting plate (324), the cutting assembly (31) is arranged at the upper end of the lifting plate (324), and the lifting plate (324) is driven up and down by a crank connecting rod mechanism (323), thereby driving the cutting assembly (31) to rise and fall synchronously; the other end of the driving shaft (322) is provided with a cam (326), and the cam (326) is connected to a support rod (328) through a connecting rod mechanism (327), and the side of the support rod (328) is slidably arranged in a slide rail (329), and the top end of the support rod (328) is provided with a material receiving plate (3210), and the material receiving plate (3210) and the cutting assembly (31) are synchronously lifted and lowered under the synchronous drive of the driving shaft (322).

3. A stuffing machine for mixing and processing a variety of food skins and fillings according to claim 2, characterized in that: The structure of the cutting assembly (31) is as follows: it comprises a cutter assembly (311) and a cutter motor (312); the body of the cutter motor (312) and the shell of the cutter assembly (311) are both fixedly arranged on the lifting plate (324); a driving connecting rod mechanism (313) is arranged on the power output end of the cutter motor (312); one end of the driving connecting rod mechanism (313) is connected to the cutter motor (312); the other end of the driving connecting rod mechanism (313) is connected to the power of the cutter disc of the cutter assembly (311); the cutter motor (312) drives the driving connecting rod mechanism (313) to move, thereby driving the cutter disc of the cutter assembly (311) to move.

4. A stuffing machine for mixing and processing a variety of food skins and fillings according to claim 1, characterized in that: The plurality of arc-shaped protrusions (29) on the dough inlet tube (22) cooperate with each other to form a passage for the dough to pass through, and the outer side of the arc-shaped protrusion (29) is tightly fitted with the inner side of the upper shell (23); the stuffing inlet tube (21) passes through the arc-shaped protrusion (29) and communicates with the inner cavity of the diversion pipe (25).

5. The stuffing machine for mixing and processing a variety of food skins and fillings according to claim 1, characterized in that: A discharge paddle (113) is provided in the discharge pipes of the filling extrusion structure (111) and the fabric extrusion structure (112); the discharge paddle (113) is connected to the end of one of the stirring rollers (1112) and is driven to rotate synchronously via the stirring roller (1112).

6. A stuffing machine for mixing and processing a variety of food skins and fillings according to claim 5, characterized in that: The surface of the discharge paddle (113) is provided with a plurality of paddles of different lengths, and the discharge paddle (113) is arranged at a corner of a discharge pipe to prevent the pipe from being blocked.

7. A stuffing machine for mixing and processing a variety of food skins and fillings according to claim 1, characterized in that: The two stirring rollers (1112) are meshed with each other via gears, one of the stirring rollers (1112) is connected to the stirring motor (1115) via a chain drive, and the other stirring roller (1112) is connected to the pressing roller (1114) via a chain drive and a bevel gear drive.

8. The stuffing machine for mixing and processing a variety of food skins and fillings according to claim 2, characterized in that: The lifting plate (324) is provided with a sensor (314), and the sensor (314) is used to detect the travel of the driving connecting rod mechanism (313) and provide a control signal for the forward and reverse rotation of the cutter motor (312).

9. A stuffing machine for mixing and processing a variety of food skins and fillings according to claim 1, characterized in that: The second stirring fins (210) are arc-shaped fins, and a plurality of the arc-shaped fins are distributed in a circular array on the inner circle of the stirring teeth (26).

10. A stuffing machine for mixing and processing a variety of food skins and fillings according to claim 2, characterized in that: A roller (3211) is provided at one end of the connecting rod mechanism (327); the roller (3211) is matched and arranged in an annular groove (3212) on one side of the cam (326); the cam (326) rotates so that the roller (3211) rolls in the annular groove (3212), thereby driving the connecting rod mechanism (327) to move.

Citation Information

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