Meat mincing and sausage filling all-in-one machine with uniform discharging mechanism
By designing a meat grinding and enema all-in-one machine with a uniform discharge mechanism, the problems of inefficiency and uneven discharge caused by traditional separate treatment are solved, and efficient integrated processing of meat grinding and enema are achieved.
Patent Information
- Application Number
- CN202510693213.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-27
- Publication Date
- 2025-06-27
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The traditional mincing and enema process are separate, resulting in low processing efficiency and the meat squeezing pressure increases during enema, which can easily lead to loosening of enema instruments and uneven discharge.
A meat grinding and enema integrated machine with a uniform discharge mechanism is designed. The circular tube is driven by a servo motor, and the ball head protrusion and semicircular groove are meshed to realize the rotation of the dragon grinding piece and promote the meat to perform preliminary mincing of the meat. At the same time, the enema mechanism ensures the stability of the enema mouth and the uniformity of the discharge through the self-locking keyhole and anti-slip removal assembly.
The integrated processing of ground meat and enema is achieved, which improves the uniformity of meat and enema effect, and reduces the problem of uneven discharge.
Smart Images

Figure CN120203102A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of meat processing, and specifically to a meat grinding and sausage stuffing integrated machine with a uniform discharging mechanism. Background Art
[0002] With the rapid progress of society, people's requirements for food varieties are also increasing, and sausage is one of the delicacies on the table. When making sausage, grinding meat and stuffing it into casings are essential steps for meat ingredients. A meat grinding and sausage stuffing integrated machine is a food processing equipment that integrates the functions of meat grinding and sausage stuffing, and is widely used in the food processing industry, especially in meat product processing. The meat grinder drives the auger to rotate, transports the meat blocks to the meat grinding knife, and the meat grinding knife rotates at a high speed to cut the meat blocks. At the same time, the orifice plate is used to grind the meat into particles of different sizes. The spiral structure of the auger can continuously push the meat blocks to ensure the continuity of the meat grinding process, and the ground meat directly enters the sausage stuffing part. Generally, there is a hopper in the sausage stuffing part to store the meat stuffing, and the meat stuffing is extruded into the stuffing tube through a piston or a screw propeller. Then, the casing is sleeved on the stuffing tube, and the meat stuffing is extruded into the casing to complete the sausage stuffing operation.
[0003] Currently, traditional meat grinding and sausage stuffing are processed separately, which affects the processing efficiency of sausage meat ingredients. Moreover, during sausage stuffing, as the extrusion pressure on the meat increases, the sausage stuffing device is prone to looseness, resulting in poor sealing. The original stable pressure environment is damaged, causing uneven discharging and affecting the sausage stuffing effect. Summary of the Invention
[0004] To achieve the above objectives, the present invention is realized through the following technical solutions: A meat grinding and sausage stuffing integrated machine with a uniform discharging mechanism, comprising: A meat grinding cylinder, and a feeding hopper installed on the side of the top of the meat grinding cylinder. A meat grinding mechanism is installed inside the meat grinding cylinder; The meat grinding mechanism includes a circular tube and a servo motor. The circular tube is rotatably installed in the middle of the inner cavity of the meat grinding cylinder. The servo motor is installed on the surface of the support leg at the bottom of the meat grinding cylinder. A screw blade is fixedly connected to the outer circular surface of the circular tube. A first blade is fixedly connected to the end surface of the outer circular surface of the screw blade. A first semi-circular groove is formed on the surface of the screw blade and extends to one end outside the meat grinding cylinder. The output end of the servo motor is fixedly installed with a conical top cap. A spherical head protrusion is fixedly connected to the side of the top of the conical top cap. A secondary treatment component is installed at the center of the circular tube. By the rotation of the output end of the servo motor, the conical top cap can be driven to rotate, so that the uniformly distributed spherical head protrusions on the top perform circular rotation. Combining the meshing installation between the spherical head protrusions and the first semi-circular grooves, the circular tube is subjected to a driving force, so that the circular tube can rotate. The screw blade will rotate with the circular tube to push the meat material entering the meat grinding cylinder, so that the meat material moves towards the direction close to the first blade, and the meat material can be fed, thus facilitating subsequent meat grinding. An enema mechanism, which is used to extrude the ground meat into the sausage casing. The enema mechanism is installed at the discharge port of the meat grinding cylinder. Among them, the enema mechanism includes an enema nozzle and a self-locking hole. The enema nozzle is threadedly installed at the discharge port on the surface of the meat grinding cylinder through a threaded groove. The self-locking hole is formed in the annular piece on the outer circular surface of the meat grinding cylinder. A connecting rod is hinged to the side of the surface of the enema nozzle. A locking rod is fixedly connected to the surface of the connecting rod, and the locking rod and the self-locking hole are installed at the same height. An anti-slip-off component is installed at the end of the connecting rod away from the locking rod. When the connecting rod is turned counterclockwise, the connecting rod drives the anti-slip-off component as a whole to rotate away from the enema nozzle. The connecting rod is in a vertical state, and the connecting rod drives the locking rod to rotate together, so that the locking rod is removed from the self-locking hole, and the self-locking is released. By turning the enema nozzle, the enema nozzle can be installed and disassembled. And by moving the anti-slip-off component to the side away from the enema nozzle, it is convenient to put the sausage casing on the surface of the enema nozzle.
[0005] Preferably, the axis of the circular tube coincides with the central axis of the middle part of the meat grinding cylinder. The first semi-circular grooves are evenly distributed on the surface of the screw blade and extend to one end outside the meat grinding cylinder. There are two first blades, and the two first blades are symmetrically installed along the central axis of the circular tube. By the rotation of the screw blade, the meat material in the meat grinding cylinder is pushed and extruded. And by the rotation of the circular tube, the first blades can be rotated, so that the meat approaching the first blades can be broken, thus preliminarily grinding the meat material.
[0006] Preferably, the secondary treatment component includes a rotating shaft rotatably installed at the middle inside the circular tube. A second blade is fixedly connected to the end of the rotating shaft surface, and the second blade is installed inside the meat grinding cylinder. A ball is rollingly installed on the outer circular surface of the rotating shaft. A second semi-circular groove is formed at one end of the outer circular surface of the rotating shaft extending to the outside of the circular tube. By engaging the ball head protrusion with the second semi-circular groove, the rotating shaft is subjected to a pulling force, and under the rolling connection of the ball, the rotating shaft rotates smoothly without jamming. Then the rotating shaft can drive the second blade to rotate. Since the rotating direction of the rotating shaft is opposite to that of the circular tube, the rotating directions of the second blade and the first blade are opposite, so that the second blade and the first blade form a scissor shape to break the meat material, and the meat material can be evenly ground.
[0007] Preferably, there are two second blades, and the two second blades are symmetrically installed along the axis center of the rotating shaft. The balls are evenly distributed on the outer circular surface of the rotating shaft, and the spherical surface of the ball is in contact with the inner wall of the circular tube. The second semi-circular grooves are evenly distributed on the outer circular surface of the rotating shaft and extend to one end outside the circular tube.
[0008] Preferably, there are three self-locking holes, and the three self-locking holes are evenly distributed at the annular piece on the outer circular surface of the meat grinding cylinder. The locking rod is arc-shaped, and the end of the locking rod away from the connecting rod passes through the center of the self-locking hole. The connecting rod is installed obliquely. When enema is needed, rotate the connecting rod clockwise, so that the anti-slip component moves towards the side close to the enema nozzle, and the locking rod is inserted into the self-locking hole for self-locking, making the whole enema nozzle more stable, not easy to loosen and leak meat material, reducing the influence of the extrusion force of the meat material, and making the discharging uniform.
[0009] Preferably, the anti-slip component includes a Y-shaped bracket fixedly installed on the end of the connecting rod away from the locking rod by screws. A cylindrical roller is rollingly installed at the middle inside the Y-shaped bracket. Anti-slip bumps are fixedly connected to the outer circular surface of the cylindrical roller. A tension spring is fixedly connected to the side of the Y-shaped bracket surface. Using the elastic pulling force of the tension spring, the outer circular surface of the cylindrical roller is in contact with the sausage casing sleeved on the enema nozzle. By rolling the cylindrical roller, the sausage casing can be rolled, and the anti-slip bumps increase the friction force, so that the sausage casing will not slip randomly, and the discharging speed of the sausage casing can be controlled, making the meat material in the sausage casing tightly filled.
[0010] Preferably, there are three cylindrical rollers, and the three cylindrical rollers are evenly distributed at the conical surface of the enema nozzle surface. The anti-slip bumps are evenly distributed on the outer circular surface of the cylindrical roller. The tension spring is arc-shaped.
[0011] Preferably, an auxiliary component is installed in the inner cavity of the meat grinding cylinder, and the auxiliary component is installed at the discharge port of the meat grinding cylinder. The auxiliary component includes a disc. The outer circumferential surface of the disc is fixedly connected to the inner wall of the meat grinding cylinder. A connecting bushing is fixedly installed at the center of the disc. A clamping cap is rotatably installed at the center of the connecting bushing, and the opening of the clamping cap faces the round tube. Through holes are formed on the surface of the disc. A semi-circular cutting piece is fixedly connected to the inner cavity of the through hole. By embedding one end of the rotating shaft away from the second semi-circular groove into the inside of the clamping cap, and under the rotation of the rotating shaft, the clamping cap is driven to rotate together, so that the end of the rotating shaft can be rotationally supported, thereby making the rotation of the second blade driven by the rotating shaft more stable, and making full use of the interaction between structures to connect the structures together.
[0012] Preferably, the central axis of the middle part of the clamping cap coincides with the central axis of the middle part of the connecting bushing, and the clamping cap and the round tube are installed at the same height. After the first blade and the second blade grind the meat material, and under the action of the extrusion force on the meat material, the meat material enters the through hole. The through hole is conical. The meat material enters from the large-diameter end of the through hole and exits from the small-diameter end. As the diameter gradually decreases, the extrusion effect on the meat increases, and the meat can be more effectively ground. Moreover, the conical hole can make the meat material enter the hole more smoothly, reducing the accumulation and blockage of the meat material at the hole opening, thereby improving the speed and efficiency of meat grinding.
[0013] Preferably, the through hole is conical, the through holes are uniformly distributed on the surface of the disc, the through holes penetrate the disc, and the cutting edge slope of the semi-circular cutting piece faces the center of the through hole. When the meat material enters the conical through hole, with the increase of the extrusion force, the meat material fully contacts the semi-circular cutting piece. As the meat material moves out of the through hole, the semi-circular cutting piece can cut an opening on the surface of the meat material, increasing the contact area between the meat materials, which helps the seasonings on the surface of the meat material to enter the cut opening, facilitating the flavoring of the meat material.
[0014] The present invention provides a meat grinding and sausage stuffing integrated machine with a uniform discharging mechanism, which has the following beneficial effects: First, for the meat grinding and sausage stuffing integrated machine with a uniform discharging mechanism, by using the rotation of the output end of the servo motor, the conical top cap can be driven to rotate, so that the spherical head protrusions evenly distributed on the top perform circular rotation. Combined with the meshing installation between the spherical head protrusions and the first semi-circular grooves, the round tube is subjected to a driving force, so that the round tube can rotate. The auger blades will rotate with the round tube, pushing the meat material entering the meat grinding cylinder, making the meat material move towards the direction close to the first blade, so as to feed the meat material, thus facilitating subsequent meat grinding.
[0015] Second, for the meat mincing and sausage stuffing integrated machine with a uniform discharging mechanism, through the rotation of the auger blades, the meat material in the meat mincing cylinder is pushed and extruded. And by the rotation of the round tube, the first blade can be rotated, and the meat approaching the first blade can be broken, thus preliminarily mincing the meat material.
[0016] Third, for the meat mincing and sausage stuffing integrated machine with a uniform discharging mechanism, the rotating shaft rotates under the action of a driving force. And through the rolling connection of the ball bearings, the rotating shaft rotates smoothly without jamming. Then the rotating shaft drives the second blade to rotate. Since the rotating direction of the rotating shaft is opposite to that of the round tube, the rotating directions of the second blade and the first blade are opposite, so that a scissor-like shape is formed between the second blade and the first blade to break the meat material, and the meat material can be evenly minced.
[0017] Fourth, for the meat mincing and sausage stuffing integrated machine with a uniform discharging mechanism, when the connecting rod is rotated counterclockwise, the connecting rod drives the anti-slip-off component as a whole to rotate away from the sausage stuffing nozzle. The connecting rod is in a vertical state, and the connecting rod drives the locking rod to rotate together, so that the locking rod is removed from the self-locking hole, and the self-locking is released. Then by turning the sausage stuffing nozzle, the sausage stuffing nozzle can be installed and disassembled. And by moving the anti-slip-off component to the side away from the sausage stuffing nozzle, it is convenient to put the casing on the surface of the sausage stuffing nozzle.
[0018] Fifth, for the meat mincing and sausage stuffing integrated machine with a uniform discharging mechanism, when the connecting rod is rotated clockwise, the anti-slip-off component moves closer to the sausage stuffing nozzle, and the locking rod is inserted into the self-locking hole, then self-locking can be carried out, making the whole sausage stuffing nozzle more stable, not prone to looseness and leakage of meat material, reducing the influence of the extrusion force of the meat material, and making the discharging uniform.
[0019] Sixth, for the meat mincing and sausage stuffing integrated machine with a uniform discharging mechanism, by the elastic tension of the tension spring, the outer circumferential surface of the cylindrical roller is attached to the casing sleeved on the sausage stuffing nozzle. And by the rolling of the cylindrical roller, the casing can be rolled. And through the anti-slip convex points, the friction force is increased, so that the casing will not slip off randomly, and the discharging speed of the casing can be controlled, making the meat material in the casing tightly stuffed.
[0020] Seventh, for the meat mincing and sausage stuffing integrated machine with a uniform discharging mechanism, one end of the rotating shaft away from the second semi-circular groove is embedded into the inside of the clamping cap. And under the rotation of the rotating shaft, the clamping cap is driven to rotate together, so that the end of the rotating shaft can be rotationally supported, making the rotating shaft drive the second blade to rotate more smoothly, and making full use of the interaction between the structures to connect the structures together.
[0021] VIII. For the meat mincing and sausage stuffing integrated machine with a uniform discharging mechanism, after the first blade and the second blade mince the meat material, and under the action of the extrusion force on the meat material, the meat material enters into the through hole. The through hole is conical. The meat material enters from the large-diameter end of the through hole and discharges from the small-diameter end. As the diameter gradually decreases, the extrusion effect on the meat gradually increases, which can more effectively mince the meat. Moreover, the conical hole can make the meat material enter the hole more smoothly, reducing the situation of meat material accumulation and blockage at the hole opening, thereby improving the speed and efficiency of meat mincing.
[0022] IX. For the meat mincing and sausage stuffing integrated machine with a uniform discharging mechanism, by using the meat material to enter into the conical through hole, along with the increase of the extrusion force, the meat material fully contacts with the semi-circular cutting piece. As the meat material moves out of the through hole, the semi-circular cutting piece can draw an opening on the surface of the meat material, increasing the contact area between the meat materials, which helps the seasonings on the surface of the meat material to enter the drawn opening, facilitating the flavoring of the meat material. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 is a schematic structural diagram of the whole meat mincing and sausage stuffing integrated machine with a uniform discharging mechanism of the present invention; Figure 2 is a schematic cross-sectional internal structural diagram of the meat mincing and sausage stuffing integrated machine with a uniform discharging mechanism of the present invention; Figure 3 is a schematic connection structural diagram between the meat mincing mechanism and the meat mincing barrel of the present invention; Figure 4 is a schematic structural diagram of the whole meat mincing mechanism of the present invention; Figure 5 is a schematic structural diagram of the whole secondary treatment component of the present invention; Figure 6 is a schematic connection structural diagram between the sausage stuffing mechanism and the meat mincing barrel of the present invention; Figure 7 is a schematic structural diagram of the whole anti-slip component of the present invention; Figure 8 is a schematic connection structural diagram between the auxiliary component and the meat mincing barrel of the present invention; Figure 9 is a schematic structural diagram of the whole auxiliary component of the present invention.
[0024] In the figure: 1, meat grinding cylinder; 2, feed hopper; 3, meat grinding mechanism; 4, sausage stuffing mechanism; 5, auxiliary component; 31, round tube; 32, servo motor; 33, auger blade; 34, first blade; 35, first semi-circular groove; 36, conical top cap; 37, spherical head protrusion; 38, secondary treatment component; 381, rotating shaft; 382, second blade; 383, ball; 384, second semi-circular groove; 41, sausage stuffing nozzle; 42, self-locking lock hole; 43, connecting rod; 44, lock rod; 45, anti-slip-off component; 451, Y-shaped bracket; 452, cylindrical roller; 453, anti-slip protrusion; 454, tension spring; 51, disc; 52, connecting shaft sleeve; 53, clamping cap; 54, through hole; 55, semi-circular cutting piece. Specific embodiments
[0025] The following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0026] The first embodiment is as Figures 1 to 5 shown. The present invention provides a technical solution: A meat grinding and sausage stuffing integrated machine with a uniform discharging mechanism, comprising: A meat grinding cylinder 1, and a feed hopper 2 installed on the side at the top of the meat grinding cylinder 1. A meat grinding mechanism 3 is installed inside the meat grinding cylinder 1; The meat grinding mechanism 3 includes a round tube 31 and a servo motor 32. The round tube 31 is rotatably installed in the middle of the inner cavity of the meat grinding cylinder 1. The servo motor 32 is installed on the surface of the support leg at the bottom of the meat grinding cylinder 1. The outer circumferential surface of the round tube 31 is fixedly connected with an auger blade 33. The end surface of the outer circumferential surface of the auger blade 33 is fixedly connected with a first blade 34. A first semi-circular groove 35 is opened on the surface of the auger blade 33 and extends to one end outside the meat grinding cylinder 1. The output end of the servo motor 32 is fixedly installed with a conical top cap 36. The side at the top of the conical top cap 36 is fixedly connected with a spherical head protrusion 37. A secondary treatment component 38 is installed at the center of the round tube 31. When the staff turns on the servo motor 32 to work, the rotation of the output end of the servo motor 32 can drive the conical top cap 36 to rotate, so that the uniformly distributed spherical head protrusions 37 at the top perform circular rotation, and combined with the meshing installation between the spherical head protrusion 37 and the first semi-circular groove 35, the round tube 31 is subjected to a driving force, so that the round tube 31 can rotate. The auger blade 33 will rotate with the round tube 31 to push the meat material entering the meat grinding cylinder 1, so that the meat material moves towards the direction close to the first blade 34, and the meat material can be fed; The axis of the circular tube 31 coincides with the central axis at the middle of the meat grinding cylinder 1. The first semi-circular grooves 35 are evenly distributed on the surface of the auger blade 33 and extend to one end outside the meat grinding cylinder 1. There are two first blades 34, and the two first blades 34 are symmetrically installed along the central axis of the circular tube 31. By rotating the auger blade 33, the meat material in the meat grinding cylinder 1 is pushed and extruded. And by rotating the circular tube 31, the first blade 34 can be rotated, and the meat approaching the first blade 34 can be broken.
[0027] The secondary treatment component 38 includes a rotating shaft 381. The rotating shaft 381 is rotatably installed at the middle inside the circular tube 31. The end of the surface of the rotating shaft 381 is fixedly connected with a second blade 382, and the second blade 382 is installed inside the meat grinding cylinder 1. A ball 383 is rollingly installed on the outer circumferential surface of the rotating shaft 381. A second semi-circular groove 384 is opened at one end of the outer circumferential surface of the rotating shaft 381 and extending outside the circular tube 31. By engaging and installing the ball protrusion 37 with the second semi-circular groove 384, the rotating shaft 381 receives a driving force, and under the rolling connection of the ball 383, the rotating shaft 381 rotates smoothly and is not prone to jamming, so that the rotating shaft 381 can drive the second blade 382 to rotate. And by using the fact that the rotating direction of the rotating shaft 381 and the circular tube 31 is opposite, the rotating directions of the second blade 382 and the first blade 34 are opposite, so that a scissor shape is formed between the second blade 382 and the first blade 34 to evenly grind the meat material.
[0028] There are two second blades 382, and the two second blades 382 are symmetrically installed along the central axis of the rotating shaft 381. The balls 383 are evenly distributed on the outer circumferential surface of the rotating shaft 381, and the spherical surfaces of the balls 383 are in contact with the inner wall of the circular tube 31. The second semi-circular grooves 384 are evenly distributed on the outer circumferential surface of the rotating shaft 381 and extend to one end outside the circular tube 31.
[0029] Second Embodiment, on the basis of the first embodiment, please refer to Figures 1 to 7 as shown: The enema mechanism 4 is used to extrude the ground meat into the sausage casing. The enema mechanism 4 is installed at the discharge port of the meat grinding cylinder 1; Among them, the enema mechanism 4 includes an enema nozzle 41 and a self-locking hole 42. The enema nozzle 41 is threadedly installed at the discharge port on the surface of the meat grinder cylinder 1 through a threaded groove. The self-locking hole 42 is opened at the annular piece on the outer cylindrical surface of the meat grinder cylinder 1. A connecting rod 43 is hinged at the side of the surface of the enema nozzle 41. A locking rod 44 is fixedly connected to the surface of the connecting rod 43, and the locking rod 44 and the self-locking hole 42 are installed at the same height. An anti-slip-off component 45 is installed at one end of the connecting rod 43 away from the locking rod 44. When the connecting rod 43 is turned counterclockwise, the connecting rod 43 drives the anti-slip-off component 45 as a whole to rotate away from the enema nozzle 41. The connecting rod 43 is in a vertical state, and the connecting rod 43 drives the locking rod 44 to rotate together, so that the locking rod 44 is removed from the self-locking hole 42, the self-locking is released, and the enema nozzle 41 is twisted, then the enema nozzle 41 can be installed and disassembled. And by moving the anti-slip-off component 45 to the side away from the enema nozzle 41, it is convenient to put the sausage casing on the surface of the enema nozzle 41.
[0030] There are three self-locking holes 42, and the three self-locking holes 42 are evenly distributed at the annular piece on the outer cylindrical surface of the meat grinder cylinder 1. The locking rod 44 is arc-shaped, and the end of the locking rod 44 away from the connecting rod 43 passes through the center of the self-locking hole 42. The connecting rod 43 is installed obliquely.
[0031] When enema is needed, the connecting rod 43 is rotated clockwise, so that the anti-slip-off component 45 moves to the side close to the enema nozzle 41, and the locking rod 44 is inserted into the self-locking hole 42, then self-locking can be carried out, making the whole enema nozzle 41 more stable, not easy to loosen and leak meat, reducing the influence of the extrusion force of the meat, and making the discharge uniform.
[0032] The anti-slip-off component 45 includes a Y-shaped bracket 451. The Y-shaped bracket 451 is fixedly installed at one end of the connecting rod 43 away from the locking rod 44 through a screw. A cylindrical roller 452 is rotatably installed at the middle of the inner side of the Y-shaped bracket 451. An anti-slip convex point 453 is fixedly connected to the outer cylindrical surface of the cylindrical roller 452. A tension spring 454 is fixedly connected to the side of the surface of the Y-shaped bracket 451. Using the elastic tension of the tension spring 454, the outer cylindrical surface of the cylindrical roller 452 is attached to the sausage casing sleeved on the enema nozzle 41. And by the rolling of the cylindrical roller 452, the sausage casing can be rolled, and the friction force is increased through the anti-slip convex points 453, so that the sausage casing will not slip off randomly.
[0033] There are three cylindrical rollers 452, and the three cylindrical rollers 452 are evenly distributed at the conical surface on the surface of the enema nozzle 41. The anti-slip convex points 453 are evenly distributed on the outer cylindrical surface of the cylindrical roller 452. The tension spring 454 is arc-shaped.
[0034] The third embodiment, on the basis of the first and second embodiments, please refer to Figures 1 to 9 as shown: An auxiliary component 5 is installed in the inner cavity of the meat grinding cylinder 1, and the auxiliary component 5 is installed at the discharge port of the meat grinding cylinder 1. The auxiliary component 5 includes a disc 51. The outer circumferential surface of the disc 51 is fixedly connected to the inner wall of the meat grinding cylinder 1. A connecting shaft sleeve 52 is fixedly installed at the center of the disc 51. A clamping cap 53 is rotatably installed at the center of the connecting shaft sleeve 52, and the opening of the clamping cap 53 faces the circular tube 31. Through holes 54 are formed on the surface of the disc 51. A semi-circular cutting piece 55 is fixedly connected to the inner cavity of the through holes 54. One end of the rotating shaft 381 away from the second semi-circular groove 384 is inserted into the inside of the clamping cap 53, and with the rotation of the rotating shaft 381, the clamping cap 53 is driven to rotate together, so as to rotatably support the end of the rotating shaft 381, thereby making the rotation of the rotating shaft 381 drive the second blade 382 more stable.
[0035] The central axis in the middle of the clamping cap 53 coincides with the central axis in the middle of the connecting shaft sleeve 52. The clamping cap 53 and the circular tube 31 are installed at the same height. After the first blade 34 and the second blade 382 grind the meat material, and under the action of the extrusion force of the meat material, the meat material enters into the through holes 54. The through holes 54 are conical. The meat material enters from the large-diameter end of the through holes 54 and discharges from the small-diameter end. As the diameter gradually decreases, the extrusion effect on the meat increases, and the meat can be more effectively ground.
[0036] The through holes 54 are conical. The through holes 54 are evenly distributed on the surface of the disc 51. The through holes 54 penetrate through the disc 51. The cutting edge slope of the semi-circular cutting piece 55 faces the center of the through holes 54. When the meat material enters into the conical through holes 54, along with the increase of the extrusion force, the meat material fully contacts with the semi-circular cutting piece 55. As the meat material moves out of the through holes 54, the semi-circular cutting piece 55 can cut an opening on the surface of the meat material, increasing the contact area between the meat materials and facilitating the flavoring of the meat material.
[0037] When in use, first turn the connecting rod 43 counterclockwise. The connecting rod 43 drives the anti-slip-off component 45 as a whole to rotate away from the position of the enema nozzle 41. The connecting rod 43 is in a vertical state, and the connecting rod 43 drives the locking rod 44 to rotate together, so that the locking rod 44 moves out from the self-locking lock hole 42, and the self-locking is released. Then twist the enema nozzle 41, and the enema nozzle 41 can be installed and disassembled. And by moving the anti-slip-off component 45 to the side away from the enema nozzle 41, it is convenient to put the sausage casing on the surface of the enema nozzle 41; When enema is needed, rotate the connecting rod 43 clockwise, so that the anti-slip component 45 moves towards the side close to the enema nozzle 41, and the locking rod 44 is inserted into the self-locking hole 42, then self-locking can be carried out, making the whole enema nozzle 41 more stable. And by using the elastic tension of the tension spring 454, the outer circumferential surface of the cylindrical roller 452 is attached to the sausage casing sleeved on the enema nozzle 41. And by using the rolling of the cylindrical roller 452, the sausage casing can be rolled, and the friction force is increased through the anti-slip bumps 453, so that the sausage casing will not slip off randomly; At the same time, the staff puts the pre-treated meat material into the meat grinding cylinder 1 from the feed hopper 2 and starts the servo motor 32 to work. By using the rotation of the output end of the servo motor 32, the conical top cap 36 can be driven to rotate, so that the spherical head protrusions 37 evenly distributed on the top perform circular rotation. And combined with the meshing installation between the spherical head protrusions 37 and the first semi-circular groove 35, the round tube 31 is subjected to a driving force, so that the round tube 31 can rotate. The auger blade 33 will rotate with the round tube 31, push the meat material entering the meat grinding cylinder 1, and make the meat material move towards the direction close to the first blade 34, so that the meat material can be fed; And by the rotation of the auger blade 33, the meat material in the meat grinding cylinder 1 is pushed and extruded. And by using the rotation of the round tube 31, the first blade 34 can be rotated, so that the meat approaching the first blade 34 can be broken; And by the meshing installation between the spherical head protrusions 37 and the second semi-circular groove 384, the rotating shaft 381 is subjected to a driving force, and under the rolling connection of the ball 383, the rotating shaft 381 rotates smoothly and is not prone to jamming, so that the rotating shaft 381 can drive the second blade 382 to rotate. And by using the fact that the rotation direction of the rotating shaft 381 is opposite to that of the round tube 31, the rotation directions of the second blade 382 and the first blade 34 are opposite, so that a scissors shape is formed between the second blade 382 and the first blade 34 to evenly grind the meat material; At the same time, one end of the rotating shaft 381 far from the second semi-circular groove 384 is embedded in the inside of the clamping cap 53, and under the rotation of the rotating shaft 381, the clamping cap 53 is driven to rotate together, so that the end of the rotating shaft 381 can be rotationally supported, so that the rotating shaft 381 drives the second blade 382 to rotate more smoothly; Moreover, after the first blade 34 and the second blade 382 grind the meat material, and under the action of the extrusion force on the meat material, the meat material enters the through hole 54. And the through hole 54 is conical. The meat material enters from the large-diameter end of the through hole 54 and exits from the small-diameter end. As the diameter gradually decreases, the extrusion effect on the meat increases, and the meat can be more effectively ground; The meat material enters into the conical through-hole 54. Along with the increase of the extrusion pressure, the meat material fully contacts with the semi-circular cutting piece 55. As the meat material moves out of the through-hole 54, the opening can be scratched on the surface of the meat material through the semi-circular cutting piece 55, increasing the contact area between the meat materials and facilitating the flavoring of the meat materials. At this time, one end of the casing extends out of the discharging port of the sausage filling nozzle 41. The meat material is extruded from the inside of the sausage filling nozzle 41 and moves together with the casing, and then the sausage filling can be carried out.
[0038] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "include", "comprise" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements, but also includes other elements not expressly listed, or further includes elements inherent to such process, method, article or device. Without more limitations, the element defined by the statement "including one..." does not exclude the existence of additional identical elements in the process, method, article or device including the said element.
[0039] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A meat grinding and sausage stuffing integrated machine with a uniform discharging mechanism, characterized in that Including: A meat grinding cylinder (1), and a feed hopper (2) installed on the top side of the meat grinding cylinder (1). A meat grinding mechanism (3) is installed inside the meat grinding cylinder (1); The meat grinding mechanism (3) includes a circular tube (31) and a servo motor (32). The circular tube (31) is rotatably installed in the middle of the inner cavity of the meat grinding cylinder (1). The servo motor (32) is installed on the surface of the support leg at the bottom of the meat grinding cylinder (1). A screw conveyor blade (33) is fixedly connected to the outer circular surface of the circular tube (31). A first blade (34) is fixedly connected to the end surface of the outer circular surface of the screw conveyor blade (33). A first semi-circular groove (35) is formed on the surface of the screw conveyor blade (33) and extends to one end outside the meat grinding cylinder (1). A conical top cap (36) is fixedly installed at the output end of the servo motor (32). A spherical protrusion (37) is fixedly connected to the side of the top of the conical top cap (36). A secondary treatment component (38) is installed at the center of the circular tube (31); An enema mechanism (4) for extruding the ground meat into the sausage casing. The enema mechanism (4) is installed at the discharge port of the meat grinding cylinder (1); Among them, the enema mechanism (4) includes an enema nozzle (41) and a self-locking hole (42). The enema nozzle (41) is threadedly installed at the discharge port on the surface of the meat grinding cylinder (1) through a threaded groove. The self-locking hole (42) is formed in the annular piece on the outer circular surface of the meat grinding cylinder (1). A connecting rod (43) is hinged to the side of the surface of the enema nozzle (41). A locking rod (44) is fixedly connected to the surface of the connecting rod (43), and the locking rod (44) and the self-locking hole (42) are installed at the same height. An anti-slip-off component (45) is installed at the end of the connecting rod (43) away from the locking rod (44).
2. The meat grinder and sausage stuffer integrated machine with a uniform discharging mechanism according to claim 1, wherein: The axis of the circular tube (31) coincides with the central axis of the middle of the meat grinding cylinder (1). The first semi-circular grooves (35) are evenly distributed on the surface of the screw conveyor blade (33) and extend to one end outside the meat grinding cylinder (1). There are two first blades (34), and the two first blades (34) are symmetrically installed along the central axis of the circular tube (31).
3. The meat grinder and sausage stuffer integrated machine with a uniform discharging mechanism according to claim 1, wherein: The secondary treatment component (38) includes a rotating shaft (381). The rotating shaft (381) is rotatably installed in the middle of the inside of the circular tube (31). A second blade (382) is fixedly connected to the end of the surface of the rotating shaft (381), and the second blade (382) is installed inside the meat grinding cylinder (1). A ball (383) is rollingly installed on the outer circular surface of the rotating shaft (381). A second semi-circular groove (384) is formed on the outer circular surface of the rotating shaft (381) and extends to one end outside the circular tube (31).
4. The meat grinder and sausage stuffer integrated machine with a uniform discharging mechanism according to claim 3, characterized in that: There are two of the second blades (382), and the two second blades (382) are symmetrically installed along the axis center of the rotating shaft (381). The ball bearings (383) are evenly distributed on the outer circular surface of the rotating shaft (381), and the spherical surfaces of the ball bearings (383) are in contact with the inner wall of the circular tube (31). The second semi-circular grooves (384) are evenly distributed on the outer circular surface of the rotating shaft (381) and extend to one end outside the circular tube (31).
5. The meat mincing and sausage stuffing integrated machine with a uniform discharging mechanism according to claim 1, wherein: There are three self-locking lock holes (42), and the three self-locking lock holes (42) are evenly distributed at the annular piece on the outer circular surface of the meat grinding cylinder (1). The lock rod (44) is arc-shaped, and one end of the lock rod (44) far from the connecting rod (43) passes through the center of the self-locking lock hole (42), and the connecting rod (43) is installed obliquely.
6. The meat grinder and sausage stuffer integrated machine with a uniform discharging mechanism according to claim 1, characterized in that: The anti-slip component (45) includes a Y-shaped bracket (451). The Y-shaped bracket (451) is fixedly installed at one end of the connecting rod (43) far from the lock rod (44) by screws. A cylindrical roller (452) is rotatably installed at the middle of the inner side of the Y-shaped bracket (451). An anti-slip bump (453) is fixedly connected to the outer circular surface of the cylindrical roller (452), and a tension spring (454) is fixedly connected to the side of the surface of the Y-shaped bracket (451).
7. A meat grinding and sausage stuffing integrated machine with a uniform discharging mechanism according to claim 6, characterized in that: There are three of the cylindrical rollers (452), and the three cylindrical rollers (452) are evenly distributed at the conical surface on the surface of the sausage filling nozzle (41). The anti-slip bumps (453) are evenly distributed on the outer circular surface of the cylindrical roller (452), and the tension spring (454) is arc-shaped.
8. A meat grinding and sausage stuffing integrated machine with a uniform discharging mechanism according to claim 1, characterized in that: An auxiliary component (5) is installed in the inner cavity of the meat grinding cylinder (1), and the auxiliary component (5) is installed at the discharge port of the meat grinding cylinder (1). The auxiliary component (5) includes a disc (51). The outer circular surface of the disc (51) is fixedly connected to the inner wall of the meat grinding cylinder (1). A connecting shaft sleeve (52) is fixedly installed at the center of the disc (51). A clamping cap (53) is rotatably installed at the center of the connecting shaft sleeve (52), and the opening of the clamping cap (53) faces the circular tube (31). Through holes (54) are formed on the surface of the disc (51), and a semi-circular cutting piece (55) is fixedly connected to the inner cavity of the through holes (54).
9. The meat mincing and sausage stuffing integrated machine with a uniform discharging mechanism according to claim 8, characterized in that: The central axis at the middle of the clamping cap (53) coincides with the central axis at the middle of the connecting shaft sleeve (52), and the clamping cap (53) and the circular tube (31) are installed at the same height.
10. A meat mincing and sausage stuffing integrated machine with a uniform discharging mechanism according to claim 8, characterized in that: The through holes (54) are conical. The through holes (54) are evenly distributed on the surface of the disc (51). The through holes (54) penetrate through the disc (51), and the cutting edge slope of the semi-circular cutting piece (55) faces the center of the through holes (54).
Citation Information
Cited By
Sausage and energy-saving processing equipment and processing method thereof
CN121058706A