Rapid meat ball mincing mechanism
By designing a feeding system that can quickly switch and adjust the size of the holes in the meat grinder, the problem of frequent replacement of orifices when producing meat pellets of different thicknesses is solved, and the operation efficiency is improved.
Patent Information
- Application Number
- CN202422226952.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-11
- Publication Date
- 2025-06-17
- Estimated Expiration
- 2034-09-11
AI Technical Summary
When producing meat granules of different thicknesses, existing meat grinders need to frequently replace and disassemble the orifice plates, resulting in inefficient operation.
A meatball fast meat grinding mechanism is designed, and the hole size is quickly switched and adjusted by setting the first discharge plate and the second discharge hole, as well as a switching mechanism and a control mechanism.
The rapid production of meat pellets of different thicknesses is achieved, avoiding the trouble of frequent replacement of orifices and improving operational efficiency.
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Figure CN222982365U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of meat grinders, in particular to a meatball rapid meat grinding mechanism. Background Technique
[0002] Making meatballs requires meat grains of different thicknesses. The meat grinding mechanism is an efficient and precise meat grain processing equipment. It adopts advanced mechanical design and a powerful drive system, and can quickly grind and mix the meat raw materials evenly. This mechanism usually includes a meat grinding cylinder with sharp blades, a feeding screw for pushing the meat material, and necessary discharge ports and cleaning systems.
[0003] For example, the application number is CN202420428328.2. The utility model relates to the technical field of meat grinders, especially a meat grinding mechanism for beef tendon balls. A counterbore for the discharge plate is arranged on the front end face of the barrel; the discharge plate is embedded into the counterbore for the discharge plate; a sealing ring for pressing the discharge plate on the counterbore for the discharge plate is connected to the barrel; at least one barrel rib is arranged on the outer surface of the barrel; the inner surface of the arc-shaped positioning plate is attached to the outer wall of the barrel; a circular snap ring detachably connected to the outside of the sealing ring is arranged between the barrel rib and the sealing ring rib; both side surfaces of the circular snap ring are respectively pressed between the barrel rib and the sealing ring rib. When using the utility model, in this structure, the detachable connection of the sealing ring and the discharge plate is realized through the limit of the detachable circular snap ring to the sealing ring, and the disassembly and assembly efficiency is high, and the disassembly and assembly are more convenient.
[0004] Based on the retrieval of the above patent and the combination with the equipment in the prior art, it is found that the existing discharge plate is fixed by a cover, and the cover is connected and fixed to the barrel by at least two screws; the disassembly and assembly efficiency of the screws is low, and the processing environment is humid, so the screws are easy to rust and are prone to slipping teeth, which affects the service life of the meat grinder. Although the above equipment can solve the problem that the meat grains not crushed to the specified specifications are easily blocked in the discharge holes of the discharge plate when applied. However, in the process of use, for various food processing requirements, it is necessary to produce meat grains of different thicknesses, and usually, it is necessary to replace the orifice plates with different sizes of holes to achieve this. However, frequently replacing and disassembling these orifice plates is relatively troublesome, which affects the operation efficiency. Content of the Utility Model
[0005] To solve the problems raised in the above background technique, the purpose of the present utility model is to provide a meatball rapid meat grinding mechanism, which has the advantage of switching between large and small orifice plates.
[0006] To achieve the above object, the present utility model provides the following technical solutions: A rapid meat grinding mechanism for meatballs, comprising a stirring cylinder, a screw roller, a feeding port, a motor, a discharge plate and a first discharge hole. The feeding port is fixedly communicated with the top of the left side of the surface of the stirring cylinder. The motor is fixedly connected to the left end of the stirring cylinder. The screw roller is arranged inside the stirring cylinder. The output end of the motor is fixedly connected to the left end of the screw roller. The discharge plate is movably connected to the right end of the stirring cylinder. The first discharge hole is opened at the right end of the discharge plate. A plurality of first discharge holes are opened and are evenly distributed at equal intervals in a ring shape. A first hole plate is movably connected to the front surface of the discharge plate. A second discharge hole is opened at the right end of the first hole plate. A switching mechanism is arranged at the right end of the first hole plate. A control mechanism is arranged at the right end of the discharge plate.
[0007] Preferably, the switching mechanism includes a second hole plate, a third discharge hole and a fourth discharge hole. The second hole plate is movably connected to the right end of the first hole plate. The third discharge hole is opened on the right side of the second hole plate. A plurality of third discharge holes are provided and are evenly distributed at equal intervals in a ring shape. The fourth discharge hole is opened at the right end of the second discharge hole. A plurality of fourth discharge holes are provided and are evenly distributed at equal intervals in a ring shape.
[0008] Preferably, the control mechanism includes a first annular plate, a second annular plate, an arc-shaped groove and a fixing column. The first annular plate is fixedly connected to the surface of the second hole plate. The arc-shaped groove is opened on the front surface of the first annular plate. A plurality of arc-shaped grooves are provided and are evenly distributed at equal intervals in a ring shape. The second annular plate is movably connected to the right end of the discharge plate. The fixing column is fixedly connected to the front surface of the second annular plate. Four groups of fixing columns are provided and are evenly distributed at equal intervals in a ring shape. The fixing column is slidably connected to the arc-shaped groove.
[0009] Preferably, a slider is fixedly connected to the left end of the second annular plate. A slide rail groove is opened at the right end of the discharge plate. A plurality of slide rail grooves are provided and are evenly distributed at equal intervals in a ring shape. The slider is slidably connected to the slide rail groove.
[0010] Preferably, a limiting block is connected to the right end of the fixing column by a thread. The right end of the limiting block is slidably connected to the right end of the first annular plate.
[0011] Preferably, a clamping block is fixedly connected to the left end of the first hole plate. A clamping groove is provided at the right end of the discharge plate. A plurality of clamping grooves are provided and are evenly distributed at equal intervals in a ring shape. The clamping block is in clamping fit with the clamping groove.
[0012] Preferably, a rotary blade is fixedly connected to the right end of the surface of the screw roller. A collection box is arranged at the bottom of the discharge plate.
[0013] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0014] 1. By providing a first discharge plate and a second discharge hole, when the meat particles come out from the right end of the mixing cylinder and pass through the first discharge hole opened in the discharge plate, and then come out through the second discharge hole opened in the first hole plate at the right end of the second discharge hole, meat particles of different thicknesses are produced, avoiding the trouble of frequently replacing and disassembling the hole plate due to the production of meat particles of different thicknesses, and having the advantage of switching between large and small hole plates.
[0015] 2. By providing a switching mechanism, when the second hole plate is arranged at the right end of the first hole plate to connect the third discharge hole with the second discharge hole, and then the second hole plate is rotated to connect the fourth discharge hole with the second discharge hole, thus completing the hole switching. By further providing a control mechanism, by rotating the second annular plate, the fixing column of the second annular plate rotates, and then the fixing column drives the first annular plate to rotate by moving inside the arc-shaped groove opened in the first annular plate, and then the first annular plate drives the second hole plate to rotate, so as to adjust the size of the hole by rotating the second annular plate.
[0016] 3. By providing a slider and a slide rail groove, when the second annular plate rotates, the second annular plate drives the slider to rotate, and then the slider rotates inside the slide rail groove, so as to stably rotate the second annular plate for support and positioning. By further providing a limit block, the first annular plate is positioned during rotation to prevent it from sliding off during rotation. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 is a schematic three-dimensional sectional structure view of the present utility model;
[0018] Figure 2 is a schematic three-dimensional exploded structure view of the first hole plate of the present utility model;
[0019] Figure 3 is a schematic three-dimensional exploded structure view of the second hole plate of the present utility model.
[0020] In the figure: 1, mixing cylinder; 2, auger roller; 3, feed inlet; 4, motor; 5, discharge plate; 6, first discharge hole; 7, first hole plate; 8, second discharge hole; 9, switching mechanism; 91, second hole plate; 92, third discharge hole; 93, fourth discharge hole; 10, control mechanism; 101, first annular plate; 102, second annular plate; 103, arc-shaped groove; 104, fixing column; 11, slider; 12, slide rail groove; 13, limit block; 14, clamping block; 15, clamping groove; 16, rotating blade; 17, collection box. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0021] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with 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. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0022] As shown in Figures 1 to 3 the figure, a rapid meat grinding mechanism for meatballs provided by the present invention includes a stirring cylinder 1, a screw roller 2, a feed inlet 3, a motor 4, a discharge plate 5 and a first discharge hole 6. The feed inlet 3 is fixedly communicated with the top of the left side of the surface of the stirring cylinder 1. The motor 4 is fixedly connected to the left end of the stirring cylinder 1. The screw roller 2 is arranged inside the stirring cylinder 1. The output end of the motor 4 is fixedly connected to the left end of the screw roller 2. The discharge plate 5 is movably connected to the right end of the stirring cylinder 1. The first discharge hole 6 is opened at the right end of the discharge plate 5. A plurality of first discharge holes 6 are provided and are distributed at equal intervals in a ring shape. A first hole plate 7 is movably connected to the front surface of the discharge plate 5. A second discharge hole 8 is opened at the right end of the first hole plate 7. A switching mechanism 9 is arranged at the right end of the first hole plate 7. A control mechanism 10 is arranged at the right end of the discharge plate 5.
[0023] Referring to Figure 1 , the switching mechanism 9 includes a second hole plate 91, a third discharge hole 92 and a fourth discharge hole 93. The second hole plate 91 is movably connected to the right end of the first hole plate 7. The third discharge hole 92 is opened on the right side of the second hole plate 91. A plurality of third discharge holes 92 are provided and are distributed at equal intervals in a ring shape. The fourth discharge hole 93 is opened at the right end of the second discharge hole 8. A plurality of fourth discharge holes 93 are provided and are distributed at equal intervals in a ring shape.
[0024] As a technical optimization scheme of the present invention, by setting the switching mechanism 9, when the second hole plate 91 is arranged at the right end of the first hole plate 7, the third discharge hole 92 is communicated with the second discharge hole 8, and then the second hole plate 91 is rotated to make the fourth discharge hole 93 communicate with the second discharge hole 8, thereby completing the hole switching.
[0025] Referring to Figure 2 , the control mechanism 10 includes a first annular plate 101, a second annular plate 102, an arc-shaped groove 103 and a fixed column 104. The first annular plate 101 is fixedly connected to the surface of the second hole plate 91. The arc-shaped groove 103 is opened on the front surface of the first annular plate 101. A plurality of arc-shaped grooves 103 are provided and are distributed at equal intervals in a ring shape. The second annular plate 102 is movably connected to the right end of the discharge plate 5. The fixed column 104 is fixedly connected to the front surface of the second annular plate 102. Four groups of fixed columns 104 are provided and are distributed at equal intervals in a ring shape. The fixed column 104 is slidably connected to the arc-shaped groove 103.
[0026] As a technical optimization solution of the present utility model, by setting the control mechanism 10, rotating the second annular plate 102, the second annular plate 102 drives the fixed column 104 to rotate, and then the fixed column 104 drives the first annular plate 101 to rotate by moving inside the arc-shaped groove 103 opened on the first annular plate 101. After that, the first annular plate 101 drives the second orifice plate 91 to rotate, so as to adjust the size of the orifice by rotating the second annular plate 102.
[0027] Referring to Fig. 3, a slider 11 is fixedly connected to the left end of the second annular plate 102, and a slide rail groove 12 is opened at the right end of the discharge plate 5. A plurality of slide rail grooves 12 are provided and are distributed at equal intervals in a ring shape. The slider 11 is slidably connected to the slide rail groove 12.
[0028] As a technical optimization solution of the present utility model, by setting the slider 11 and the slide rail groove 12, when the second annular plate 102 rotates, the second annular plate 102 drives the slider 11 to rotate, and then the slider 11 rotates inside the slide rail groove 12, so that the second annular plate 102 can be stably rotated and supported and positioned.
[0029] Referring to Fig. 3, a limit block 13 is threadedly connected to the right end of the fixed column 104, and the right end of the limit block 13 is slidably connected to the right end of the first annular plate 101.
[0030] As a technical optimization solution of the present utility model, by setting the limit block 13, the first annular plate 101 is positioned during rotation to prevent it from sliding off during rotation.
[0031] Referring to Figure 3 , a clamping block 14 is fixedly connected to the left end of the first orifice plate 7, and a clamping groove 15 is provided at the right end of the discharge plate 5. A plurality of clamping grooves 15 are provided and are distributed at equal intervals in a ring shape. The clamping block 14 is in clamping fit with the clamping groove 15.
[0032] As a technical optimization solution of the present utility model, by setting the clamping block 14 and the clamping groove 15, the first orifice plate 7 drives the clamping block 14 to insert into the clamping groove 15, and then the first orifice plate 7 is rotated to make the clamping block 14 and the clamping groove 15 in clamping and positioning, so as to facilitate the disassembly and cleaning of the first orifice plate 7.
[0033] Referring to Figure 1 , a rotary blade 16 is fixedly connected to the right end of the surface of the auger roller 2, and a collection box 17 is arranged at the bottom of the discharge plate 5.
[0034] As a technical optimization solution of the present utility model, by setting the rotary blade 16 and the collection box 17, when the auger roller 2 rotates, it drives the rotary blade 16 to rotate to make the meat particles more finely chopped and crushed. When the meat particles are chopped, they fall from the discharge plate 5 into the collection box 17 for collection.
[0035] Working principle and usage process of the present utility model: When in use, after the meat particles come out from the right end of the mixing cylinder 1 and pass through the first discharge hole 6 opened in the discharge plate 5, when the second hole plate 91 is arranged at the right end of the first hole plate 7 to make the third discharge hole 92 communicate with the second discharge hole 8, by rotating the second annular plate 102, the second annular plate 102 drives the fixed column 104 to rotate, and then the fixed column 104 drives the first annular plate 101 to rotate by moving inside the arc-shaped groove 103 opened in the first annular plate 101. After that, the first annular plate 101 drives the second hole plate 91 to rotate to make the fourth discharge hole 93 communicate with the second discharge hole 8, so as to realize the adjustment of the hole size by rotating the second annular plate 102. Thus, the advantages of switching between large and small hole plates are achieved. At the same time, when the second annular plate 102 rotates, the second annular plate 102 drives the slider 11 to rotate, and then the slider 11 rotates inside the slide rail groove 12, so that the second annular plate 102 can be stably rotated and supported and positioned.
[0036] To sum up: For this meatball rapid meat mincing mechanism, the present utility model outputs meat particles of different thicknesses by setting the first discharge plate 5 and the second discharge hole 8. After the meat particles come out from the right end of the mixing cylinder 1 and pass through the first discharge hole 6 opened in the discharge plate 5, and then come out through the second discharge hole 8 opened in the first hole plate 7 at the right end of the second discharge hole 8, thus improving the operation efficiency.
[0037] 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 "including", "comprising" or any other variant 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 also includes elements inherent to such process, method, article or device.
[0038] Although the embodiments of the present utility model 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 utility model. The scope of the present utility model is defined by the appended claims and their equivalents.
Claims
1. A meatball quick mincing mechanism, comprising a mixing drum (1), an auger roller (2), a feed port (3), a motor (4), a discharge plate (5) and a first discharge hole (6), characterized in that: The feed port (3) is fixedly connected to the top of the left side of the surface of the mixing drum (1); the motor (4) is fixedly connected to the left end of the mixing drum (1); the auger roller (2) is arranged inside the mixing drum (1); the output end of the motor (4) is fixedly connected to the left end of the auger roller (2); the discharge plate (5) is movably connected to the right end of the mixing drum (1); the first discharge hole (6) is opened at the right end of the discharge plate (5); a plurality of the first discharge holes (6) are opened and distributed in a circular shape with equal distances; the front side of the discharge plate (5) is movably connected to the first orifice plate (7); the right end of the first orifice plate (7) is opened with a second discharge hole (8); the right end of the first orifice plate (7) is provided with a switching mechanism (9); and the right end of the discharge plate (5) is provided with a control mechanism (10).
2. A meatball quick mincing mechanism according to claim 1, characterized in that: The switching mechanism (9) comprises a second orifice plate (91), a third discharge hole (92) and a fourth discharge hole (93); the second orifice plate (91) is movably connected to the right end of the first orifice plate (7); the third discharge hole (92) is opened on the right side of the second orifice plate (91); a plurality of the third discharge holes (92) are arranged and are distributed in a circular shape with equal distances; the fourth discharge hole (93) is opened on the right end of the second discharge hole (8); a plurality of the fourth discharge holes (93) are arranged and are distributed in a circular shape with equal distances.
3. The meatball quick mincing mechanism according to claim 2, characterized in that: The control mechanism (10) comprises a first annular plate (101), a second annular plate (102), an arc groove (103) and a fixed column (104); the first annular plate (101) is fixedly connected to the surface of the second orifice plate (91); the arc groove (103) is opened on the front of the first annular plate (101); a plurality of arc grooves (103) are arranged and are distributed in an annular shape with equal distances; the second annular plate (102) is movably connected to the right end of the discharge plate (5); the fixed column (104) is fixedly connected to the front of the second annular plate (102); four groups of the fixed columns (104) are arranged and are distributed in an annular shape with equal distances; the fixed column (104) is slidably connected to the arc groove (103).
4. The meatball quick mincing mechanism according to claim 3, characterized in that: The left end of the second annular plate (102) is fixedly connected to a sliding block (11), the right end of the discharge plate (5) is provided with a sliding rail groove (12), a plurality of the sliding rail grooves (12) are provided and are distributed in an annular shape at equal distances, and the sliding block (11) is slidably connected to the sliding rail grooves (12).
5. The meatball quick mincing mechanism according to claim 3, characterized in that: The right end of the fixing column (104) is connected to the limiting block (13) via a thread, and the right end of the limiting block (13) is slidably connected to the right end of the first annular plate (101).
6. The meatball quick mincing mechanism according to claim 1, characterized in that: A clamping block (14) is fixedly connected to the left end of the first orifice plate (7), and a clamping slot (15) is clamped on the right end of the discharge plate (5). The clamping slots (15) are provided in a plurality and are distributed in an annular shape at equal distances, and the clamping block (14) is clamped and matched with the clamping slots (15).
7. The meatball quick mincing mechanism according to claim 1, characterized in that: A rotating blade (16) is fixedly connected to the right end of the surface of the auger roller (2), and a collecting box (17) is provided at the bottom of the discharge plate (5).
Citation Information
Patent Citations
Beef tendon ball meat mincing mechanism
CN221468899U