Meat mincer for meat food production

By designing an automated meat processing machine for meat products, the problems of time-consuming, labor-intensive, and difficult cleaning in traditional meat processing have been solved. The machine automates the mincing, feeding, and cleaning of meat, thereby improving production efficiency and food safety.

CN121369458BActive Publication Date: 2026-07-31SHIJIAZHUANG BEIRONG FOOD CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
SHIJIAZHUANG BEIRONG FOOD CO LTD
Filing Date
2025-06-23
Publication Date
2026-07-31

AI Technical Summary

Technical Problem

Traditional meat filling processing suffers from problems such as being time-consuming and labor-intensive, difficult equipment cleaning, complex operation, and inability to achieve automated continuous production.

Method used

A meat mincing machine for meat processing was designed, comprising a grinding drum, an auxiliary feeding component, and a cleaning component. The machine uses a motor to drive the grinding, tumbling, and cleaning processes, thereby automating the grinding, feeding, and cleaning of meat chunks.

Benefits of technology

It automates the processes of mincing, feeding, and cleaning meat, reducing manual intervention, improving production efficiency, ensuring food safety, and lowering labor intensity and costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention provides a meat processing machine for meat production, comprising a housing with a circular sleeve installed inside. A grinding cylinder is slidably installed inside the circular sleeve. Connecting shafts are fixedly installed at both ends of the circular sleeve, and both connecting shafts are rotatably connected to the housing. A gear is fixedly installed on each connecting shaft. A cover plate is provided above the circular sleeve, and a motor is fixedly installed in the middle of the upper part of the cover plate. This meat processing machine for meat production achieves a high degree of automation from meat chunk grinding and minced meat feeding to equipment cleaning. The operator only needs to perform the initial meat chunk placement operation; the electric telescopic rod and motor work together to complete the grinding work; motor and auxiliary feeding components achieve automatic feeding; after feeding, the cleaning component automatically cleans the grinding cylinder, reducing manual intervention, lowering labor costs, and improving production efficiency.
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Description

Technical Field

[0001] This invention belongs to the field of meat product production technology, and more specifically, relates to a meat filling making machine for meat product production. Background Technology

[0002] In the meat processing industry, minced meat is an important raw material for many foods such as dumplings, buns, and meat patties.

[0003] Traditional minced meat processing typically involves hand-chopping or using a simple meat grinder, but these methods have the following problems:

[0004] 1. Manual chopping is time-consuming and labor-intensive, while ordinary meat grinders can improve efficiency, but the feeding process still requires manual assistance and cannot achieve automated continuous production;

[0005] 2. Traditional meat grinders have a fixed structure, and the inner wall of the drum is not easy to clean. Residual meat scraps can easily breed bacteria, affecting food safety.

[0006] 3. Existing equipment typically only has a grinding function; operations such as feeding and washing require manual intervention, increasing labor intensity and operational complexity. Therefore, in view of this, this paper studies and improves upon the existing structure and its shortcomings to provide a meat filling machine for meat processing. Summary of the Invention

[0007] To solve the above-mentioned technical problems, the present invention provides a meat filling machine for meat product production, which is achieved by the following specific technical means:

[0008] A meat processing machine for meat products includes a housing, a circular sleeve installed inside the housing, a grinding cylinder slidably installed inside the circular sleeve, connecting shafts fixedly installed at both ends of the circular sleeve, both connecting shafts being rotatably connected to the housing, and a gear fixedly installed on each connecting shaft. A cover plate is provided above the circular sleeve, and a motor is fixedly installed at the middle of the upper end of the cover plate. The output shaft of the motor is fixedly connected to a rotating shaft, and a blade is fixedly installed on the rotating shaft. A feeding port is provided on the bottom surface of the housing, and an auxiliary feeding assembly is provided on the housing. The auxiliary feeding assembly includes a slide rail, a rack, and a connecting shaft. The housing includes a connecting plate and a rotating shaft. The number of racks is the same as the number of gears. Two gears mesh with two racks to drive the circular sleeve and the crushing drum to rotate. There are two rotating shafts, each with an eccentric wheel and a second gear fixedly installed. Both rotating shafts are rotatably installed inside the housing and located on both sides of the circular sleeve to drive the crushing drum to vibrate and discharge materials. A cleaning assembly is provided below the housing. The cleaning assembly includes a slide and a cleaning pipe. Several nozzles are provided on the cleaning pipe. An electric telescopic rod is fixedly installed on the slide to drive the cleaning pipe to rise and fall.

[0009] Furthermore, contact plates are fixedly installed on both ends of the mixing cylinder, and both contact plates movably pass through the circular sleeve. Ear plates are provided below both contact plates, and both ear plates are fixedly installed on the outer wall of the circular sleeve. Each contact plate is arc-shaped, and a spring is fixedly connected between each contact plate and the ear plate.

[0010] Furthermore, the slide rail is fixedly installed on the housing, and a second motor is fixedly installed on the slide rail. Slide grooves are provided on both sides of the upper surface of the slide rail. A bidirectional threaded rod is rotatably installed in each of the two slide grooves. The bidirectional threaded rod is fixedly connected to the output shaft of the second motor. A slider is slidably installed in each of the two slide grooves. The bidirectional threaded rod passes through the two sliders and is threadedly connected to them. A push block is fixedly installed at the upper end of each slider. An extension rod is fixedly connected to the bottom of the push block near the second motor.

[0011] Furthermore, each of the racks is fixedly mounted with a connecting rod, each of the connecting rods is fixedly mounted with a contact block, each push block is in contact with the surface of each contact block, and the contact surfaces are all designed with an angle. Each of the connecting rods is fixedly mounted with a straight rod, each of the straight rods is fixedly connected to each contact block, and each of the connecting rods is movably connected with a limit rod, each of the limit rods being fixedly mounted on the outer wall of the housing.

[0012] Furthermore, a slide rod is fixedly installed at the bottom end of each rack, and each slide rod is slidably installed on the housing. A fixing block is provided below each rack, and each fixing block is fixedly installed on the housing. A limit rod is fixedly installed on each fixing block, and a spring is movably sleeved on each limit rod. Each slide rod is fixedly connected to the fixing block through the spring.

[0013] Furthermore, the connecting plate is fixedly installed on the housing, and two racks are provided at the upper end of the connecting plate. Each rack is fixedly installed with a fixing rod, and each fixing rod is located below the slide rail and is aligned with the positions of the two sliders.

[0014] Furthermore, both sides of the upper surface of the connecting plate are provided with sliding grooves II, and each rack II is fixedly installed with a slider II at its bottom end. Each slider II is slidably installed in the sliding groove II, and each sliding groove II is fixedly installed with a limit rod III. Each limit rod III is movably sleeved with a spring III, and each slider II is fixedly connected to the inner wall of the sliding groove II through the spring III.

[0015] Furthermore, each of the gears engages with each of the racks.

[0016] Furthermore, a connecting hose is connected to the cleaning pipe, the telescopic rod of the second electric telescopic rod is fixedly connected to the bottom end of the cleaning pipe, an L-rod is fixedly installed on the slide block, a sliding sleeve is slidably installed on the L-rod, the extension rod is fixedly connected to the sliding sleeve, a stop block is fixedly connected to the end of the L-rod, support legs are fixedly installed at the four corners of the bottom of the box, a placement plate is fixedly installed between the four support legs, the slide block is slidably installed on the placement plate, a limit rod four moves through the L-rod, a spring four is movably sleeved on the limit rod four, the limit rod four is fixedly installed between the two support legs, and the L-rod is fixedly connected to the support legs through the spring four.

[0017] Furthermore, a bracket is fixedly installed on the box body, an electric telescopic rod is fixedly installed on the bracket, a fixing component is provided on the cover plate, a screw is screwed into the fixing component, the fixing component is threaded to the cover plate by the screw, and the telescopic rod of the electric telescopic rod is fixedly connected to the fixing component.

[0018] Compared with the prior art, the present invention has the following beneficial effects:

[0019] I. This meat processing machine for meat products achieves a high degree of automation throughout the entire process, from mincing meat chunks and feeding minced meat to equipment cleaning. Operators only need to perform the initial meat chunk placement operation, and the electric telescopic rod I and motor I work together to complete the mincing work; motor II and auxiliary feeding components realize automatic feeding; after feeding is completed, the cleaning component automatically cleans the mincing drum, reducing manual intervention, lowering labor costs, and improving production efficiency.

[0020] Second, in the auxiliary feeding component, the meshing transmission of rack one and gear one causes the sleeve and the grinding cylinder to rotate 180 degrees, so that the minced meat can fall automatically; the eccentric wheel periodically acts on the contact plate, causing the grinding cylinder to vibrate up and down, effectively breaking the adhesion between the minced meat and the inner wall of the grinding cylinder, making the feeding more thorough and greatly reducing the residue of minced meat in the grinding cylinder.

[0021] Third, the cleaning component can automatically move to the bottom of the grinding drum after the equipment finishes feeding. The electric telescopic rod 2 sends the cleaning pipe into the grinding drum. Through multi-angle rinsing by the nozzle, the residual meat scraps and impurities on the inner wall of the grinding drum can be thoroughly removed, effectively avoiding cross-contamination in the meat filling production process, ensuring food hygiene and safety, and also reducing the workload and difficulty of manual cleaning.

[0022] Fourth, the connection and transmission design between the various components of the equipment is reasonable. The inclined surface cooperation between the slider and the contact block and the fixed rod, as well as the application of springs in the reset of each component, ensure that the movement of each component is accurate and coordinated during the operation of the equipment, and that it can reliably return to the initial position after completing the corresponding action, thus ensuring the stable operation and cyclic work of the equipment.

[0023] V. This meat processing machine integrates functions such as mincing, feeding, and cleaning of meat into one unit. Compared with traditional decentralized processing equipment, this machine has a compact structure and reasonable design. Attached Figure Description

[0024] Figure 1 This is a schematic diagram of the entire meat filling manufacturing machine for meat food production according to the present invention.

[0025] Figure 2 This is a schematic diagram of the housing of the present invention.

[0026] Figure 3 This is a schematic diagram of the slide rail of the present invention.

[0027] Figure 4 This is a schematic diagram of the circular sleeve of the present invention.

[0028] Figure 5 This is a schematic diagram of the circular sleeve of the present invention cut open.

[0029] Figure 6 This is a schematic diagram of the connecting plate of the present invention.

[0030] Figure 7 This is a schematic diagram of the slide rail of the present invention cut open.

[0031] Figure 8 This is a schematic diagram of the connecting rod of the present invention.

[0032] Figure 9 This is a schematic diagram of the cleaning component of the present invention.

[0033] Figure 10 This is a schematic diagram of the rotating shaft of the present invention.

[0034] In the diagram, the correspondence between component names and drawing numbers is as follows:

[0035] 1. Box body; 11. Discharge port; 12. Support leg; 13. Placement plate; 14. Bracket; 15. Electric telescopic rod one; 2. Circular sleeve; 21. Grinding cylinder; 22. Connecting shaft; 23. Gear one; 24. Contact plate; 25. Ear plate; 26. Spring one; 3. Cover plate; 31. Motor one; 32. Rotating shaft; 33. Blade; 34. Fixing component; 4. Slide rail; 41. Motor two; 42. Bidirectional threaded rod; 43. Slide groove one; 44. Sliding block one; 45. Push block; 46. Extension rod; 5. Rack one; 51. Connecting rod; 52. Contact block; 53. Straight rod; 54. Sliding rod; 55. Fixing block; 56. Limiting rod one; 57. Spring two; 58. Limiting rod two; 6. Connecting plate; 61. Rack two; 62. Fixing rod; 63. Sliding block two; 64. Slide groove two; 65. Limiting rod three; 66. Spring three; 7. Cleaning assembly; 71. Sliding seat; 72. Electric telescopic rod two; 73. Cleaning pipe; 74. Connecting hose; 75. L-rod; 76. Sliding sleeve; 77. Stop block; 78. Nozzle; 79. Limiting rod four; 8. Spring four; 9. Rotating shaft; 91. Eccentric wheel; 92. Gear two. Detailed Implementation

[0036] The embodiments of the present invention will be described in further detail below with reference to the accompanying drawings and examples. The following examples are for illustrative purposes only and should not be construed as limiting the scope of the invention.

[0037] In the description of this invention, unless otherwise stated, "a plurality of" means two or more; the terms "upper," "lower," "left," "right," "inner," "outer," "front end," "rear end," "head," "tail," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing the invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of the invention. Furthermore, the terms "first," "second," "third," etc., are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0038] In the description of this invention, it should be noted that, unless otherwise explicitly specified and limited, the terms "connected" and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in this invention based on the specific circumstances.

[0039] Example:

[0040] As attached Figure 1 To be continued Figure 10 As shown:

[0041] This invention provides a meat mincing machine for meat processing, comprising a housing 1, a circular sleeve 2 installed inside the housing 1, a grinding cylinder 21 slidably installed inside the circular sleeve 2, connecting shafts 22 fixedly installed at both ends of the circular sleeve 2, both connecting shafts 22 being rotatably connected to the housing 1, a gear 23 fixedly installed on each connecting shaft 22, a cover plate 3 provided above the circular sleeve 2, a motor 31 fixedly installed at the middle of the upper end of the cover plate 3, a rotating shaft 32 fixedly connected to the output shaft of the motor 31, and blades 33 fixedly installed on the rotating shaft 32, a feeding port 11 opened on the bottom surface of the housing 1, the output shaft of the motor 31 drives the rotating shaft 32 to rotate at high speed, and the several blades 33 fixedly installed on the rotating shaft 32 rotate at high speed accordingly, thoroughly grinding the meat into minced meat;

[0042] The housing 1 is equipped with an auxiliary feeding assembly, which includes a slide rail 4, a rack 5, a connecting plate 6, and a rotating shaft 9. The number of racks 5 is the same as the number of gears 23. The two gears 23 mesh with the two racks 5 respectively to drive the sleeve 2 and the grinding drum 21 to rotate. There are two rotating shafts 9. Each rotating shaft 9 is fixedly installed with an eccentric wheel 91 and a gear 92. The two rotating shafts 9 are rotatably installed inside the housing 1 and located on both sides of the sleeve 2. They are used to drive the grinding drum 21 to vibrate and feed the material, effectively breaking the adhesion between the minced meat and the inner wall of the grinding drum 21, so that the minced meat in the grinding drum 21 can be discharged more smoothly, greatly reducing the amount of minced meat remaining in the grinding drum 21 and improving the thoroughness of feeding.

[0043] A cleaning assembly 7 is provided at the bottom of the box 1. The cleaning assembly 7 includes a slide 71 and a cleaning pipe 73. Several nozzles 78 are provided on the cleaning pipe 73. An electric telescopic rod 72 for driving the cleaning pipe 73 to rise and fall is fixedly installed on the slide 71. The cleaning pipe 73 is sprayed through several nozzles 78 evenly distributed on the cleaning pipe 73 to rinse the inner wall of the grinding cylinder 21 in all directions and at multiple angles, so as to thoroughly remove the residual meat scraps and impurities.

[0044] Contact plates 24 are fixedly installed on both ends of the grinding cylinder 21. Both contact plates 24 movably pass through the circular sleeve 2. Both contact plates 24 are provided with ear plates 25 below them. Both ear plates 25 are fixedly installed on the outer wall of the circular sleeve 2. Each contact plate 24 is arc-shaped. A spring 26 is fixedly connected between each contact plate 24 and the ear plate 25. Each contact plate 24 movably passes through the circular sleeve 2 to limit the movement of the grinding cylinder 21, so that it can only move in the vertical direction. The arc shape of the contact plates 24 facilitates better cooperation with the eccentric wheel 91.

[0045] The slide rail 4 is fixedly installed on the housing 1. The motor 41 is fixedly installed on the slide rail 4. The upper surface of the slide rail 4 has two slide grooves 43 on both sides. The two slide grooves 43 are rotatably installed in the two slide grooves 43. The two slide grooves 42 are fixedly connected to the output shaft of the motor 41. The two slide grooves 43 are slidably installed in the two slide grooves 44. The two slide grooves 43 are threaded through the two slide grooves 44 and threadedly connected to the two slide grooves 44. The upper end of the two slide grooves 44 is fixedly installed with push blocks 45. The bottom of the push block 45 near the motor 41 is fixedly connected with an extension rod 46, which is used to push the slide sleeve 76 to move, thereby driving the cleaning component 7 to the bottom of the discharge port 11.

[0046] Each rack 5 is fixedly mounted with a connecting rod 51, and each connecting rod 51 is fixedly mounted with a contact block 52. Each push block 45 is in contact with the surface of each contact block 52, and the contact surfaces are all designed with an inclined surface. During the movement, the two push blocks 45 apply an oblique pushing force to the contact block 52 on the connecting rod 51 respectively.

[0047] Each connecting rod 51 is fixedly installed with a straight rod 53, and each straight rod 53 is fixedly connected to each contact block 52. Each connecting rod 51 is movably connected with a limiting rod 58, and each limiting rod 58 is fixedly installed on the outer wall of the box 1 for limiting and supporting the connecting rod 51.

[0048] Each rack 5 is fixedly mounted with a slide rod 54 at its bottom end. Each slide rod 54 is slidably mounted on the housing 1. Each rack 5 is fixedly mounted with a fixing block 55 below it. Each fixing block 55 is fixedly mounted on the housing 1. Each fixing block 55 is fixedly mounted with a limit rod 56. Each limit rod 56 is movably fitted with a spring 57. Each slide rod 54 is fixedly connected to the fixing block 55 through the spring 57.

[0049] The connecting plate 6 is fixedly installed on the housing 1. Two racks 61 are provided on the upper end of the connecting plate 6. Each rack 61 is fixedly installed with a fixing rod 62. Each fixing rod 62 is located below the slide rail 4 and is aligned with the positions of the two sliders 44 respectively, so that after the sliders 44 move a certain distance, they can contact the fixing rod 62, which facilitates the movement of the racks 61.

[0050] Both sides of the upper surface of the connecting plate 6 are provided with sliding grooves 64. Each rack 61 is fixedly installed with a slider 63 at its bottom end. Each slider 63 is slidably installed in the sliding groove 64. Each sliding groove 64 is fixedly installed with a limit rod 65. Each limit rod 65 is movably fitted with a spring 66. Each slider 63 is fixedly connected to the inner wall of the sliding groove 64 through the spring 66. Each gear 92 meshes with each rack 61. The movement of the rack 61 facilitates the rotation of the rotating shaft 9 and the eccentric wheel 91.

[0051] A connecting hose 74 is connected to the cleaning pipe 73. The telescopic rod of the electric telescopic rod 72 is fixedly connected to the bottom end of the cleaning pipe 73. An L rod 75 is fixedly installed on the slide 71. A sliding sleeve 76 is slidably installed on the L rod 75. An extension rod 46 is fixedly connected to the sliding sleeve 76. A stop block 77 is fixedly connected to the end of the L rod 75. Support legs 12 are fixedly installed at the four corners of the bottom of the box 1. A placement plate 13 is fixedly installed between the four support legs 12. The slide 71 is slidably installed on the placement plate 13. A limit rod 79 is movably passed through the L rod 75. A spring 8 is movably sleeved on the limit rod 79. The limit rod 79 is fixedly installed between the two support legs 12. The L rod 75 is fixedly connected to the support leg 12 through the spring 8. The spring 8 plays the role of resetting the cleaning component 7.

[0052] A bracket 14 is fixedly installed on the housing 1, and an electric telescopic rod 15 is fixedly installed on the bracket 14. A fixing part 34 is provided on the cover plate 3. A screw is screwed into the fixing part 34 and the fixing part 34 is threaded to the cover plate 3 by the screw, which is convenient for disassembly. The telescopic rod of the electric telescopic rod 15 is fixedly connected to the fixing part 34 and is used to drive the cover plate 3 to move vertically.

[0053] The working principle of this embodiment:

[0054] Step 1: When using the equipment, the operator first places the meat pieces into the grinding drum 21, then starts the electric telescopic rod 15. The telescopic rod extends, causing the cover plate 3 connected to the fixing part 34 to move down. This causes the cover plate 3 to move the rotating shaft 32 and the blades 33 down together, so that the rotating shaft 32 and the blades 33 are located inside the grinding drum 21. At this time, the motor 31 is started. The output shaft of the motor 31 drives the rotating shaft 32 to rotate at high speed. Several blades 33 fixed on the rotating shaft 32 rotate at high speed, generating a strong shearing force and impact force inside the grinding drum 21, which thoroughly grinds the meat pieces into minced meat. After grinding is completed, the electric telescopic rod 15 is started again, so that the cover plate 3, the rotating shaft 32 and the blades 33 move up and reset to their initial positions to avoid interference with other components in subsequent operations.

[0055] Step 2: When material needs to be unloaded, motor 41 starts working, and its output shaft drives the bidirectional threaded rod 42 to rotate. Since the two threads of the bidirectional threaded rod 42 have opposite directions of rotation, and the two sliders 44 are respectively connected to the two threads of the bidirectional threaded rod 42, as the bidirectional threaded rod 42 rotates, the two sliders 44 move away from each other in the slide groove 43. The movement of the sliders 44 drives the push block 45 fixed on its upper end to move synchronously. During the movement, the two push blocks 45 apply an oblique pushing force to the contact block 52 on the connecting rod 51. Because the surface where the contact block 52 and the push block 45 are in contact is designed with an oblique surface, under the pushing force of the push block 45, the contact block 52 drives the connecting rod 51 to overcome... The elastic force of spring 57 and the movement of connecting rod 51 drive the rack 5 fixed on it to move. Since rack 5 meshes with gear 23, the movement of rack 5 drives gear 23 and connecting shaft 22 to rotate, which in turn causes sleeve 2 and grinding cylinder 21 to rotate around connecting shaft 22. When sleeve 2 and grinding cylinder 21 are rotated 180 degrees, the opening of grinding cylinder 21 faces downward, and the meat scraps in grinding cylinder 21 fall naturally under the action of gravity and are discharged from the discharge port 11 on the bottom of box 1. The operator can place the container on the placement plate 13 between the four support legs 12 in advance to collect the discharged meat scraps, realizing the automatic feeding function, reducing manual operation and improving production efficiency.

[0056] Step 3: When the push block 45 is completely misaligned with the contact block 52, the push block 45 moves to the straight rod 53. Since the surface of the straight rod 53 is flat, the push block 45 will no longer exert force on the contact block 52 and the connecting rod 51 when it continues to move. Therefore, the rack 5 stops moving and remains in its current position, so that the sleeve 2 and the crushing cylinder 21 are rotated 180 degrees and the opening faces downward. At the same time, the bidirectional threaded rod 42 continues to rotate, and the two sliders 44 and the push block 45 continue to move away from each other. At this time, the movement of the slider 44 pushes the fixed rod 62. Since the fixed rod 62 is fixedly connected to the rack 61, it drives the two racks 61 to move away from each other, ensuring that the crushing cylinder 21 always maintains a stable state with the opening facing downward during the subsequent vibration feeding process, thus ensuring the smooth feeding process.

[0057] Step 4: As the two fixed rods 62 drive the two racks 61 to move away from each other, the racks 61 mesh with the gears 92. The movement of the racks 61 drives the gears 92 to rotate. The rotation of the gears 92 drives the eccentric wheel 91 fixed on the rotating shaft 9 to rotate together. After the sleeve 2 and the grinding cylinder 21 are rotated 180 degrees, the contact plate 24, ear plate 25 and spring 26 also rotate. As the eccentric wheel 91 rotates, it will periodically apply an upward force to the contact plate 24, causing the contact plate 24 to overcome the elastic force of the spring 26 and move upward. When the effect of the eccentric wheel 91 disappears, the contact plate 24 returns to its original position under the action of the spring 26. This process is repeated, causing the contact plate 24 to drive the grinding cylinder 21 to move up and down and generate vibration. This can effectively break the adhesion between the minced meat and the inner wall of the grinding cylinder 21, allowing the minced meat in the grinding cylinder 21 to be discharged more smoothly, greatly reducing the amount of minced meat remaining in the grinding cylinder 21, and improving the thoroughness of feeding.

[0058] Step 5: During the movement of slider 44, the extension rod 46 connected to it will move synchronously. When the extension rod 46 drives the sliding sleeve 76 to contact the stop block 77, the feeding process is completed. After the operator removes the container, slider 44 and push block 45 continue to move away from each other under the drive of the bidirectional threaded rod 42. The circular sleeve 2 and the crushing cylinder 21 remain rotated 180 degrees with their openings facing downwards. As slider 44 continues to move, the extension rod 46 applies a pushing force to the stop block 77, causing the stop block 77 to drive the L rod 75 to move against the elastic force of spring 48. The movement of the L rod 75 drives the fixed... The sliding seat 71, the electric telescopic rod 72, and the cleaning pipe 73 move together until the nozzle 78 moves to the bottom of the grinding cylinder 21 and stops. At this time, the electric telescopic rod 72 is activated, and its telescopic rod extends, pushing the cleaning pipe 73 up into the grinding cylinder 21. The connecting hose 74 is connected to the external pump body. After the pump body is started, water is pumped into the cleaning pipe 73 and sprayed out through several nozzles 78 evenly distributed on the cleaning pipe 73 to rinse the inner wall of the grinding cylinder 21 from all directions and angles, thoroughly removing residual meat scraps and impurities. After cleaning, the electric telescopic rod 72 retracts, driving the cleaning pipe 73 to descend and reset.

[0059] Step 6: After cleaning, start motor 2 41, causing the bidirectional threaded rod 42 to reverse, which in turn causes the two sliders 1 44 to move closer to each other and return to their initial positions. Under the reset action of spring 4 8, the slide 71, electric telescopic rod 2 72, and cleaning pipe 73 are reset. Under the reset action of spring 3 66, rack 2 61 is reset. Under the reset action of spring 2 57, rack 1 5, connecting rod 51, contact block 52, and straight rod 53 are reset, ensuring that each component can return to its initial position after completing its corresponding action, thus ensuring the stable operation and cyclical work of the equipment.

[0060] The embodiments of the present invention are given for illustrative and descriptive purposes only, and are not intended to be exhaustive or to limit the invention to the forms disclosed. Many modifications and variations will be apparent to those skilled in the art. The embodiments were chosen and described in order to better illustrate the principles and practical application of the invention, and to enable those skilled in the art to understand the invention and to design various embodiments with various modifications suitable for a particular purpose.

Claims

1. A meat paste manufacturing machine for meat food production, comprising a cabinet (1), characterized in that: A circular sleeve (2) is installed inside the box (1). A grinding cylinder (21) is slidably installed inside the circular sleeve (2). A connecting shaft (22) is fixedly installed at both ends of the circular sleeve (2). Both connecting shafts (22) are rotatably connected to the box (1). A gear (23) is fixedly installed on each connecting shaft (22). A cover plate (3) is provided above the circular sleeve (2). A motor (31) is fixedly installed in the middle of the upper end of the cover plate (3). A rotating shaft (32) is fixedly connected to the output shaft of the motor (31). A blade (33) is fixedly installed on the rotating shaft (32). A discharge port (11) is opened on the bottom surface of the box (1). The box (1) is provided with an auxiliary feeding assembly, which includes a slide rail (4), a rack (5), a connecting plate (6) and a rotating shaft (9). The number of racks (5) is the same as the number of gears (23). The two gears (23) mesh with the two racks (5) respectively to drive the sleeve (2) and the crushing cylinder (21) to rotate. There are two rotating shafts (9), each of which is fixedly equipped with an eccentric wheel (91) and a gear (92). Both rotating shafts (9) are rotatably installed inside the housing (1) and located on both sides of the sleeve (2) to drive the crushing drum (21) to vibrate and feed the material. The box (1) is provided with a cleaning assembly (7) below it. The cleaning assembly (7) includes a slide (71) and a cleaning pipe (73). The cleaning pipe (73) is provided with a number of nozzles (78). The slide (71) is fixedly installed with an electric telescopic rod (72) for driving the cleaning pipe (73) to rise and fall. Contact plates (24) are fixedly installed on both ends of the grinding cylinder (21). Both contact plates (24) movably pass through the circular sleeve (2). Ear plates (25) are provided below both contact plates (24). Both ear plates (25) are fixedly installed on the outer wall of the circular sleeve (2). Each contact plate (24) is arc-shaped. A spring (26) is fixedly connected between each contact plate (24) and the ear plate (25). The slide rail (4) is fixedly installed on the housing (1). The second motor (41) is fixedly installed on the slide rail (4). The upper surface of the slide rail (4) has two slide grooves (43) on both sides. Two bidirectional threaded rods (42) are rotatably installed in the two slide grooves (43). The bidirectional threaded rods (42) are fixedly connected to the output shaft of the second motor (41). Two sliders (44) are slidably installed in the two slide grooves (43). The bidirectional threaded rods (42) pass through the two sliders (44) and are threadedly connected to the two sliders (44). The upper ends of the two sliders (44) are fixedly installed with push blocks (45). The bottom of the push blocks (45) near the second motor (41) is fixedly connected with an extension rod (46). A connecting hose (74) is connected to the cleaning pipe (73). The telescopic rod of the electric telescopic rod two (72) is fixedly connected to the bottom end of the cleaning pipe (73). An L rod (75) is fixedly installed on the slide (71). A sliding sleeve (76) is slidably installed on the L rod (75). The extension rod (46) is fixedly connected to the sliding sleeve (76). A stop block (77) is fixedly connected to the end of the L rod (75). Among them, the four corners of the bottom of the box (1) are fixedly installed with... There are support legs (12), and a placement plate (13) is fixedly installed between the four support legs (12). The slide (71) is slidably installed on the placement plate (13). A limit rod (79) is movably passed through the L rod (75). A spring (8) is movably sleeved on the limit rod (79). The limit rod (79) is fixedly installed between two support legs (12). The L rod (75) is fixedly connected to the support leg (12) through the spring (8). A bracket (14) is fixedly installed on the box (1), and an electric telescopic rod (15) is fixedly installed on the bracket (14). A fixing member (34) is provided on the cover plate (3). A screw is screwed into the fixing member (34). The fixing member (34) is threaded to the cover plate (3) by the screw. The telescopic rod of the electric telescopic rod (15) is fixedly connected to the fixing member (34).

2. The meat filling machine for meat processing as described in claim 1, characterized in that: Each of the racks (5) is fixedly mounted with a connecting rod (51), and each of the connecting rods (51) is fixedly mounted with a contact block (52). Each push block (45) is in contact with the surface of each contact block (52), and the contact surfaces are all designed with bevels. Each of the connecting rods (51) is fixedly installed with a straight rod (53), each of the straight rods (53) is fixedly connected to each of the contact blocks (52), each of the connecting rods (51) is movably connected with a limiting rod (58), and each of the limiting rods (58) is fixedly installed on the outer wall of the box (1).

3. The meat loaf manufacturing machine for producing a meat food according to claim 2, wherein: Each rack (5) is fixedly mounted with a slide rod (54) at its bottom end. Each slide rod (54) is slidably mounted on the housing (1). Each rack (5) is provided with a fixing block (55) below it. Each fixing block (55) is fixedly mounted on the housing (1). Each fixing block (55) is fixedly mounted with a limit rod (56). Each of the limiting rods (56) is movably fitted with a spring (57), and each of the sliding rods (54) is fixedly connected to the fixing block (55) through the spring (57).

4. The meat loaf manufacturing machine for producing a meat food according to claim 3, wherein: The connecting plate (6) is fixedly installed on the box (1). Two racks (61) are provided on the upper end of the connecting plate (6). Each rack (61) is fixedly installed with a fixing rod (62). Each fixing rod (62) is located below the slide rail (4) and is aligned with the positions of the two sliders (44).

5. The meat loaf manufacturing machine for producing a meat food product according to claim 4, wherein: The upper surface of the connecting plate (6) is provided with two sliding grooves (64) on both sides. Each rack (61) is fixedly installed with a slider (63) at its bottom end. Each slider (63) is slidably installed in the sliding groove (64). Each sliding groove (64) is fixedly installed with a limit rod (65). Each limit rod (65) is movably fitted with a spring (66). Each slider (63) is fixedly connected to the inner wall of the sliding groove (64) through the spring (66).

6. The meat loaf manufacturing machine for producing a meat food product according to claim 5, wherein: Each of the gears 2 (92) meshes with each of the racks 2 (61).