Meat food processing and beating machine
By designing an automated meat food processing and pounding machine, the hammer head in the hammer unit performs circular motion and circular motion in the horizontal direction, the problems of large manpower investment and high time consumption during the traditional manual pounding process are solved, and the comprehensive and even pounding of meat food raw materials is achieved, and the meat is soft and juicy and processing efficiency is improved.
Patent Information
- Application Number
- CN202510645998.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-20
- Publication Date
- 2025-06-20
- Estimated Expiration
- 2045-05-20
AI Technical Summary
The thrashing process in traditional meat food processing relies on manual operations, resulting in large labor investment and high time consumption, which cannot meet the needs of modern food production.
Design a meat food processing thrashing machine, including an outer frame, a stud unit and a hammer unit. The hammer unit consists of a long groove plate, a spindle, a long plate, a carriage, a connecting sleeve and a hammer head. The hammer head is driven by the power unit to perform circular motion and cyclic movement in the horizontal direction, achieving comprehensive and uniform hammering of meat raw materials.
By replacing manual operations by automation, manpower investment and time consumption are reduced, production efficiency is improved, and the raw materials of meat food are comprehensive and evenly beaten, destroying the meat cell layer, improving the soft and juicy meat quality, and improving the quality and efficiency of meat processing.
Smart Images

Figure CN120167481A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of food processing, in particular to a meat food processing pounding machine. Background Art
[0002] With the improvement of people's living standards and changes in eating habits, the demand for meat products is increasing, not only in quantity but also in quality. Consumers are paying more and more attention to the taste, nutrition and health of food. Against this background, the meat processing industry is facing unprecedented challenges and opportunities. In order to meet the diversified needs of the market and improve product quality, the development of new meat processing equipment has become an inevitable trend in the industry.
[0003] When processing meat products, such as lion's head and meatballs, the chopped meat needs to be beaten continuously to improve the meat structure, destroy the cell layer, improve cooking efficiency, enrich the taste, and facilitate the absorption of seasonings. The traditional pounding method mainly relies on manual labor. Due to the large number of pounding times, it requires a lot of manpower and time, and therefore it is gradually unable to meet the needs of modern food production. Summary of the invention
[0004] In order to solve the above technical problems, the present invention provides a meat food processing pounding machine, the specific technical scheme adopted by the present invention is: According to a first aspect of the present invention, there is provided a meat food processing hammering machine, comprising an outer frame, a supporting unit and a hammering unit mounted on the outer frame, wherein the supporting unit is used to carry raw materials, and the hammering unit is used to hammer the raw materials on the supporting unit; The hammer unit comprises a long slot plate, a main shaft and a long plate, wherein the long slot plate is located on the inner side of the outer frame, the main shaft is mounted on the top of the long slot plate, the long slot plate is mounted on the outer frame by rotating the main shaft, the long slot plate is opened downward, the long plate is located on the inner side of the long slot plate, a hole is opened on the long plate that passes through from top to bottom, the shape of the hole is capsule-shaped, a plurality of slides are slidably arranged in the hole, the slides perform circular motion along the shape of the hole, a column is fixed at the bottom of the slide, a connecting sleeve is slidably sleeved on the outer wall of the column, and a hammer head is arranged at the bottom of the connecting sleeve; A driving unit for driving a plurality of connecting sleeves to move up and down synchronously and a power unit for driving a plurality of slides to move are arranged in the long groove plate.
[0005] Furthermore, a plug rod is vertically slidably arranged in the connecting sleeve, the bottom of the plug rod extends out of the connecting sleeve, and the bottom of the plug rod is fixed to the hammer head, and the connecting sleeve and the hammer head are elastically connected by a first spring sheet.
[0006] Furthermore, the power unit includes two transmission wheels rotatably mounted in the long slot plate, the two transmission wheels are connected by a transmission belt, a plurality of connecting rods are arranged on the transmission belt, and the connecting rods are connected to the slide; A main motor for providing power to the main shaft is provided on the outer frame. A jacket is sleeved on the outer wall of the main shaft. One end of the jacket is fixed to the outer frame, and a fixed gear is provided at the other end of the jacket. Two moving gears are meshed with the fixed gear. The moving gears are rotatably installed on the long groove plate, and the moving gears are in transmission connection with the transmission wheels.
[0007] Further, the pushing unit includes adjusting columns coaxially installed at the bottom of the transmission wheels. A floating plate is arranged between the two adjusting columns, and the floating plate can slide vertically on the adjusting columns. The shape of the floating plate is the same as the movement track of the carriage. A buckle groove plate is fixed on the side wall of each connecting sleeve, and the buckle groove plate is slidably buckled on the edge of the floating plate; Two mounting plates are fixed to the bottom of the floating plate. Two limiting columns are arranged on the side wall of each mounting plate. A guiding plate is arranged on the outer wall of the adjusting column. The shape of the guiding plate is wavy. The two limiting columns are respectively located on the upper and lower sides of the guiding plate. When the adjusting column and the guiding plate rotate, the mounting plate and the two limiting columns thereon move up and down.
[0008] Further, the material supporting unit includes an outer ring located on the outside, a tray and a rotating ring located on the inside. The tray is fixed to the inner wall of the outer ring, and the outer ring is fixed to the outer frame. The tray is used for carrying food raw materials, and the rotating ring is rotatably installed on the inner wall of the outer ring; Two side planes are oppositely arranged on the inner wall of the rotating ring. A shovel plate is arranged between the two side planes, and the shovel plate can move horizontally on the side planes; Wherein, the shovel plate is inclined, and the shovel plate is used for gathering the food raw materials scattered on the tray towards the middle of the tray.
[0009] Further, guiding grooves and deep grooves are formed on the side planes. The guiding grooves are composed of transverse grooves located on both sides and an arc groove located in the middle. The transverse grooves and the arc groove are communicated. The deep grooves are formed through the inner side walls of the two transverse grooves, and the deep grooves coincide with the transverse grooves. The vertical diameter of the deep grooves is smaller than the vertical diameter of the transverse grooves; A moving column is slidably arranged in the guiding grooves, a slider is slidably arranged in the deep grooves, a right-angle plate is fixed to the slider, a secondary column is arranged on the right-angle plate, and both the moving column and the secondary column are rotatably connected to the end face of the shovel plate; Wherein, the secondary column is close to the tray, the moving column is far from the tray, the end face of the shovel plate close to the tray is set as a conical surface. When the moving column moves into the arc groove, the axis of the secondary column coincides with the center of the arc groove.
[0010] Further, a moving seat is slidably arranged vertically on the right-angle plate. The secondary column is fixed to the moving seat, and the moving seat is connected to the right-angle plate through a second elastic sheet.
[0011] Furthermore, two transverse movement structures are oppositely arranged on the swivel ring, and the transverse movement structures are used to provide power for the transverse movement of the shovel plate on the side plane; The transverse movement structure includes a threaded rod rotatably arranged on the swivel ring and a first motor fixedly arranged on the swivel ring. A threaded sleeve is meshed on the threaded rod, a support rod is fixed on the threaded sleeve, a sliding rod is vertically slidably arranged on the support rod, and the bottom of the sliding rod is rotatably connected to the shovel plate.
[0012] Furthermore, a notch is formed on the outer wall of the outer ring, an annular tooth groove is formed on the circumferential outer wall of the swivel ring, a second motor is fixed on the outer wall of the outer ring, a power gear is arranged at the output end of the second motor, the power gear is located at the notch position, and the power gear is meshed with the annular tooth groove.
[0013] The beneficial effects of the present invention are as follows: By replacing manual operation with automation, the labor input and time consumption are greatly reduced, the production efficiency is improved, and the machine can operate stably for a long time without being affected by human factors, ensuring the continuity and stability of production; by enabling the hammer head to perform circular motion in the horizontal direction and also perform cyclic motion along the long groove plate, the hammer head can cover a large area on the material supporting unit, thereby enabling comprehensive and uniform hammering of the meat food raw materials on the material supporting unit, which helps to better break the cell layer of the meat and make the meat more tender and juicy; in summary, the meat food processing hammering machine not only solves many problems of traditional manual hammering, but also improves the quality and efficiency of meat processing through technological innovation, providing strong support for the development of the modern food industry. Description of the Drawings
[0014] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the following drawings are only some embodiments recorded in the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0015] Figure 1 is the structural schematic diagram of the present invention; Figure 2 is the structural schematic diagram of the hammering unit in the embodiment of the present invention; Figure 3 is Figure 2 the schematic diagram of the internal structure of the long groove plate in Figure 4 is the structural schematic diagram of the material supporting unit in the embodiment of the present invention; Figure 5 is Figure 4 the sectional structural schematic diagram of Figure 6 is Figure 5 The partial enlarged structure schematic diagram at position A in
[0016] Reference numerals: 1. Outer frame; 2. Stock support unit; 3. Hammering unit; 4. Long groove plate; 5. Main shaft; 6. Long plate; 7. Slide carriage; 8. Column; 9. Connecting sleeve; 10. Hammer head; 11. Insert rod; 12. First elastic piece; 13. Driving wheel; 14. Transmission belt; 15. Connecting rod; 16. Main motor; 17. Outer sleeve; 18. Fixed gear; 19. Moving gear; 20. Adjusting column; 21. Floating plate; 22. Buckle groove plate; 23. Mounting plate; 24. Limiting column; 25. Guide plate; 26. Outer ring; 27. Tray; 28. Rotating ring; 29. Side plane; 30. Shoveling plate; 31. Horizontal groove; 32. Arc groove; 33. Deep groove; 34. Moving column; 35. Slide block; 36. Right-angled plate; 37. Auxiliary column; 38. Moving seat; 39. Second elastic piece; 40. Threaded rod; 41. Threaded sleeve; 42. Support rod; 43. First motor; 44. Second motor; 45. Power gear; 46. Annular tooth groove; 47. Slide rod. Detailed implementation manners
[0017] 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.
[0018] In the description of the present invention, it should be noted that the orientation or positional relationship indicated by terms such as "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc. is based on the orientation or positional relationship shown in the accompanying drawings. It is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation to the present invention.
[0019] In the description of the present invention, it should be noted that unless otherwise clearly specified and limited, the terms "installation", "connection", and "connection" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium, and it can be the communication inside two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific situations. This embodiment is written in a progressive manner.
[0020] Such as Figures 1 to 6As shown in the figure, a meat food processing hammering machine of the present invention includes an outer frame 1, a material supporting unit 2 and a hammering unit 3 installed on the outer frame 1. The material supporting unit 2 is used to carry raw materials, and the hammering unit 3 is used to hammer the raw materials on the material supporting unit 2; The hammering unit 3 includes a long groove plate 4, a main shaft 5 and a long plate 6. The long groove plate 4 is located inside the outer frame 1. The main shaft 5 is installed on the top of the long groove plate 4. The long groove plate 4 is rotatably installed on the outer frame 1 through the main shaft 5. The long groove plate 4 has an opening facing downwards. The long plate 6 is located inside the long groove plate 4. A hole penetrating up and down is opened on the long plate 6. The shape of the hole is capsule-shaped. A plurality of sliding frames 7 are slidably arranged in the hole. The sliding frames 7 perform circular motion along the shape of the hole. At the bottom of the sliding frame 7, a column 8 is fixed. A connecting sleeve 9 is slidably sleeved on the outer wall of the column 8. A hammering head 10 is arranged at the bottom of the connecting sleeve 9; Wherein, a pushing unit for pushing a plurality of connecting sleeves 9 to move up and down synchronously and a power unit for pushing a plurality of sliding frames 7 to move are arranged in the long groove plate 4.
[0021] Specifically, the outer frame 1 is used to support the material supporting unit 2 and the hammering unit 3. The hammering unit 3 can hammer the meat food raw materials carried on the material supporting unit 2. Among them, the long groove plate 4 on the hammering unit 3 can rotate on the outer frame 1 through the main shaft 5. In this way, the long plate 6, the sliding frames 7, the columns 8, the connecting sleeves 9 and the hammering heads 10 on the long groove plate 4 can perform circular motion around the axis of the main shaft 5. The long plate 6 mainly provides support and guidance for a plurality of sliding frames 7 thereon. Specifically, annular grooves can be opened on both the upper and lower surfaces of the long plate 6. The shape of the annular groove is the same as the shape of the capsule-shaped hole. Two sliding columns are arranged in the annular groove for each sliding frame 7. In this way, the sliding frame 7 can slide in the annular groove through the sliding columns, that is, the sliding frame 7 can perform circular motion along the shape of the capsule-shaped hole. The sliding frame 7 will drive the columns 8, the connecting sleeves 9 and the hammering heads 10 thereon to move synchronously. At this time, while the hammering head 10 performs circular motion around the axis of the main shaft 5, it can perform cyclic motion along the length direction of the long groove plate 4. In this way, the hammering head 10 can perform hammering work in a larger working area on the material supporting unit 2. The power unit mainly provides power for the movement of the sliding frame 7 on the long plate 6. And because the pushing unit can push the connecting sleeve 9 to slide up and down on the column 8, the hammering head 10 can be continuously close to or away from the material supporting unit 2, so as to realize its hammering work.
[0022] During use, the meat food raw materials are placed on the material supporting unit 2. By making the long groove plate 4 perform circular motion around the axis of the main shaft 5 and the sliding frames 7 perform cyclic motion on the long plate 6, the hammering head 10 performs comprehensive motion on the water surface. At this time, the motion range of the hammering head 10 can cover a large range on the material supporting unit 2. The pushing unit is used to push the hammering head 10 to move up and down, so that the hammering head 10 can continuously hammer and process the raw materials on the material supporting unit 2.
[0023] It should be pointed out here that in order to improve the pounding effect or reduce the phenomenon of meat sticking to the bottom of the hammer head 10, a protrusion can be set at the bottom of the hammer head 10. At the same time, the up and down movement of the hammer head 10 can also be regarded as the vibration of the hammer head 10 in the vertical direction, so that the food stuck to the bottom of the hammer head 10 can be shaken off.
[0024] By replacing manual operation with automation, the manpower input and time consumption are greatly reduced, the production efficiency is improved, and the machine can run stably for a long time without being affected by human factors, thereby ensuring the continuity and stability of production; by enabling the hammer head 10 to perform circular motion in the horizontal direction and circular motion on the long groove plate 4, the hammer head 10 can cover a larger area on the supporting unit 2, thereby achieving comprehensive and uniform beating of the meat food raw materials on the supporting unit 2, which helps to better destroy the cell layer of the meat and make the meat softer and juicier; in summary, the meat food processing beating machine not only solves many problems of traditional manual beating, but also improves the quality and efficiency of meat processing through technological innovation, and provides strong support for the development of the modern food industry.
[0025] Furthermore, a plug rod 11 is vertically slidably arranged in the connecting sleeve 9 , the bottom of the plug rod 11 extends out of the connecting sleeve 9 , and the bottom of the plug rod 11 is fixed to the hammer head 10 , and the connecting sleeve 9 and the hammer head 10 are elastically connected via a first spring sheet 12 .
[0026] In detail, since the thickness of the raw materials is different during hammering, it is necessary to use the insert rod 11 and the first spring piece 12 to provide a buffer effect for the hammer head 10. This can avoid the situation where the hammer head 10 still needs to move down to a fixed position when the raw material thickness is large, which causes the hammer head 10 to exert excessive squeezing force on the supporting unit 2 and the raw material. The hammer head 10 can slide in the connecting sleeve 9 through the insert rod 11, and the first spring piece 12 can provide a reset elastic force for the hammer head 10.
[0027] Furthermore, the power unit includes two transmission wheels 13 rotatably mounted in the long slot plate 4, the two transmission wheels 13 are connected to each other through a transmission belt 14, a plurality of connecting rods 15 are arranged on the transmission belt 14, and the connecting rods 15 are connected to the carriage 7; The outer frame 1 is provided with a main motor 16 for providing power to the main shaft 5. The outer wall of the main shaft 5 is provided with a sleeve 17. One end of the sleeve 17 is fixed to the outer frame 1. The other end of the sleeve 17 is provided with a fixed gear 18. Two movable gears 19 are meshed on the fixed gear 18. The movable gear 19 is rotatably installed on the long groove plate 4, and the movable gear 19 is connected to the transmission wheel 13 in transmission.
[0028] Specifically, both the outer casing 17 and the fixed gear 18 are fixed on the outer frame 1. The main motor 16 can drive the main shaft 5 and the long groove plate 4 to perform rotational motion. At this time, the long groove plate 4 will drive the moving gear 19 to roll on the fixed gear 18, thereby driving the transmission wheel 13 to rotate. The transmission wheel 13 will drive the carriage 7 to move on the long plate 6 through the transmission belt 14 and the connecting rod 15. Thus, it can not only provide the power for the circumferential motion of the hammer head 10, but also provide the power for the cyclic motion of the hammer head 10 along the length direction of the long groove plate 4.
[0029] Further, the pushing unit includes adjusting columns 20 coaxially installed at the bottom of the transmission wheel 13. A floating plate 21 is arranged between the two adjusting columns 20, and the floating plate 21 can slide vertically on the adjusting columns 20. The shape of the floating plate 21 is the same as the movement track of the carriage 7. A buckle groove plate 22 is fixed on the side wall of each connecting sleeve 9, and the buckle groove plate 22 is slidably buckled on the edge of the floating plate 21; Two mounting plates 23 are fixed at the bottom of the floating plate 21. Two limiting columns 24 are arranged on the side wall of each mounting plate 23. A guiding plate 25 is arranged on the outer wall of the adjusting column 20. The shape of the guiding plate 25 is wavy. The two limiting columns 24 are respectively located on the upper and lower sides of the guiding plate 25. When the adjusting column 20 and the guiding plate 25 rotate, the mounting plate 23 and the two limiting columns 24 thereon move up and down.
[0030] Specifically, when the carriage 7 moves on the long plate 6, it will drive the buckle groove plate 22 to slide on the edge of the floating plate 21 through the connecting sleeve 9. At this time, the two adjusting columns 20 support and guide the floating plate 21. When the transmission wheel 13 rotates, the transmission wheel 13 will drive the adjusting column 20 to rotate synchronously. The adjusting column 20 will drive the guiding plate 25 thereon to rotate. The two limiting columns 24 on the mounting plate 23 are respectively in contact with the upper and lower surfaces of the guiding plate 25, that is, the clamping work of the guiding plate 25 is realized by using the two limiting columns 24. When the guiding plate 25 rotates, it will push the two limiting columns 24 to move up and down synchronously. Thus, it can push the mounting plate 23 and the floating plate 21 to move up and down. The floating plate 21 can push the connecting sleeve 9 to move up and down through the buckle groove plate 22, thereby providing power for the hammering of the hammer head 10.
[0031] Further, the material supporting unit 2 includes an outer ring 26 located on the outside and a tray 27, a rotating ring 28 located on the inside. The tray 27 is fixed on the inner wall of the outer ring 26. The outer ring 26 is fixed on the outer frame 1. The tray 27 is used for carrying food raw materials. The rotating ring 28 is rotatably installed on the inner wall of the outer ring 26; Two side planes 29 are oppositely arranged on the inner wall of the rotating ring 28. A shovel plate 30 is arranged between the two side planes 29. The shovel plate 30 can move horizontally on the side planes 29; Among them, the shovel plate 30 is inclined, and the shovel plate 30 is used to gather the scattered food raw materials on the tray 27 towards the middle of the tray 27.
[0032] Specifically, meat food raw materials can be placed on the tray 27, and the hammer head 10 hammers the raw materials on the tray 27. After hammering for a specified time, the food raw materials will spread out over a large area on the tray 27. At this time, some raw materials will move to the outside of the working area of the hammer head 10. By using the lateral movement of the shovel plate 30 on the side plane 29, the shovel plate 30 shovels the meat on the tray 27 and gathers it towards the middle of the tray 27. At the same time, by using the rotation of the swivel ring 28 on the outer ring 26, the meat in different directions can be shoveled and gathered, thus facilitating the hammering process of the hammer head 10.
[0033] Furthermore, a guide groove and a deep groove 33 are formed on the side plane 29. The guide groove is composed of transverse grooves 31 on both sides and an arc groove 32 in the middle. The transverse grooves 31 and the arc groove 32 are connected. The deep groove 33 is formed through the inner side walls of the two transverse grooves 31, and the deep groove 33 coincides with the transverse grooves 31. The vertical diameter of the deep groove 33 is smaller than the vertical diameter of the transverse grooves 31. A moving column 34 is slidably arranged in the guide groove, and a slider 35 is slidably arranged in the deep groove 33. A right-angle plate 36 is fixed to the slider 35, and a secondary column 37 is arranged on the right-angle plate 36. Both the moving column 34 and the secondary column 37 are rotatably connected to the end face of the shovel plate 30. Among them, the secondary column 37 is close to the tray 27, the moving column 34 is far from the tray 27, and the end face of the shovel plate 30 close to the tray 27 is set as a conical surface. When the moving column 34 moves into the arc groove 32, the axis of the secondary column 37 coincides with the center of the arc groove 32.
[0034] Specifically, since there is a height difference between the moving column 34 and the auxiliary column 37 in the vertical direction, the shovel plate 30 is inclined, and the conical surface of the shovel plate 30 contacts the upper surface of the tray 27. When the shovel plate 30 moves horizontally, it will drive the moving column 34 to slide in the guiding groove, and the shovel plate 30 drives the slider 35 to slide in the deep groove 33 through the auxiliary column 37 and the right-angle plate 36. The moving column 34 and the slider 35 do not interfere with each other. When the moving column 34 slides in a transverse groove 31, the inclined shovel plate 30 shovels and aggregates the raw materials on the tray 27. When the moving column 34 moves to the position of the arc groove 32, the moving column 34 slides in the arc groove 32. Since the axis of the auxiliary column 37 coincides with the center of the arc groove 32 at this time, the position of the auxiliary column 37 is fixed, that is, the shovel plate 30 performs a flipping motion. The shovel plate 30 flips the meat carried on its inclined surface onto the tray 27, thus preventing the shovel plate 30 from carrying the meat from one side of the tray 27 to the other side, so that the aggregation work cannot be achieved. The meat buckled on the tray 27 will be adhesively contacted with the original meat on the tray 27. At this time, the moving column 34 slides into another transverse groove 31, and the shovel plate 30 inclines towards the other side. The continuously moving shovel plate 30 will perform relative movement with the meat on the tray 27 on its original working inclined surface. Thus, the meat adhered to the original working inclined surface of the shovel plate 30 can be wiped off, preventing the meat from staying on the shovel plate 30. In this way, the meat can stay in the middle of the tray 27. At this time, the shovel plate 30 completes the aggregation work of the meat on one side of the tray 27. When the shovel plate 30 moves in the reverse direction, the aggregation work of the meat on the other side of the tray 27 can be achieved. When the swivel ring 28 rotates, the aggregation effect of the meat on the tray 27 in different directions can be achieved.
[0035] It should be noted that when the shovel plate 30 leaves the middle position of the tray 27, the shovel plate 30 inclines towards its moving direction, thus avoiding the phenomenon that the shovel plate 30 shovels the meat on the tray 27.
[0036] Furthermore, a moving seat 38 is vertically slidably arranged on the right-angle plate 36. The auxiliary column 37 is fixedly connected to the moving seat 38, and the moving seat 38 is connected to the right-angle plate 36 through a second elastic sheet 39.
[0037] Specifically, since the meat will have a certain thickness during aggregation, at the meat aggregation position, the meat can push the moving seat 38 to slide on the right-angle plate 36 in the reverse direction, so that the shovel plate 30 is separated from the tray 27, that is, the meat pads up the shovel plate 30. In this process, the setting of the arc groove 32 allows the shovel plate 30 to complete this operation, that is, the caliber of the arc groove 32 allows the moving column 34 to deviate from the movement within a small range. The second elastic sheet 39 provides a reset elastic force for the moving seat 38 and the auxiliary column 37.
[0038] Furthermore, two transverse movement structures are oppositely arranged on the swivel ring 28. The transverse movement structures are used to provide power for the horizontal movement of the shovel plate 30 on the side plane 29; The transverse movement structure includes a threaded rod 40 rotatably arranged on the rotating ring 28 and a first motor 43 fixedly arranged on the rotating ring 28. A threaded sleeve 41 is engaged on the threaded rod 40. A support rod 42 is fixed on the threaded sleeve 41. A sliding rod 47 is vertically slidably arranged on the support rod 42. The bottom of the sliding rod 47 is rotatably connected to the shovel plate 30.
[0039] Specifically, the first motor 43 can push the threaded sleeve 41 to move through the threaded rod 40. The threaded sleeve 41 can drive the shovel plate 30 to move through the support rod 42 and the sliding rod 47. Since the shovel plate 30 can be turned over, the sliding rod 47 needs to be slidably connected to the support rod 42.
[0040] Further, a notch is formed on the outer wall of the outer ring 26. An annular tooth groove 46 is formed on the circumferential outer wall of the rotating ring 28. A second motor 44 is fixed on the outer wall of the outer ring 26. The output end of the second motor 44 is provided with a driving gear 45. The driving gear 45 is located at the notch position and is meshed with the annular tooth groove 46.
[0041] Specifically, the second motor 44 can drive the rotating ring 28 to rotate through the driving gear 45 and the annular tooth groove 46, so as to adjust the orientation of the shovel plate 30.
[0042] The above are only the preferred embodiments of the present invention. It should be noted that for those of ordinary skill in the art of this technology, without departing from the technical principle of the present invention, several improvements and deformations can still be made, and these improvements and deformations should also be regarded as the protection scope of the present invention.
Claims
1. A meat food processing pounding machine, characterized in that: It includes an outer frame, a supporting unit and a hammer unit installed on the outer frame, the supporting unit is used to carry the raw materials, and the hammer unit is used to hammer the raw materials on the supporting unit; The hammer unit comprises a long slot plate, a main shaft and a long plate, wherein the long slot plate is located on the inner side of the outer frame, the main shaft is mounted on the top of the long slot plate, the long slot plate is mounted on the outer frame by rotating the main shaft, the long slot plate is opened downward, the long plate is located on the inner side of the long slot plate, a hole is opened on the long plate that passes through from top to bottom, the shape of the hole is capsule-shaped, a plurality of slides are slidably arranged in the hole, the slides perform circular motion along the shape of the hole, a column is fixed at the bottom of the slide, a connecting sleeve is slidably sleeved on the outer wall of the column, and a hammer head is arranged at the bottom of the connecting sleeve; A driving unit for driving a plurality of connecting sleeves to move up and down synchronously and a power unit for driving a plurality of slides to move are arranged in the long groove plate.
2. A meat food processing pounding machine according to claim 1, characterized in that: A plug rod is vertically slidably arranged in the connecting sleeve, the bottom of the plug rod extends out of the connecting sleeve, and the bottom of the plug rod is fixed to the hammer head, and the connecting sleeve and the hammer head are elastically connected through a first spring sheet.
3. A meat food processing pounding machine according to claim 2, characterized in that: The power unit comprises two transmission wheels rotatably mounted in the long slot plate, the two transmission wheels are connected by a transmission belt, a plurality of connecting rods are arranged on the transmission belt, and the connecting rods are connected to the slide; The outer frame is provided with a main motor for providing power to the main shaft, the outer wall of the main shaft is provided with an outer sleeve, one end of the outer sleeve is fixed to the outer frame, the other end of the outer sleeve is provided with a fixed gear, the fixed gear is meshed with two moving gears, the moving gear is rotatably mounted on the long slot plate, and the moving gear is connected to the transmission wheel.
4. A meat food processing thrashing machine according to claim 3, characterized in that: The pushing unit comprises an adjusting column coaxially mounted at the bottom of the transmission wheel, a floating plate is arranged between the two adjusting columns, and the floating plate can slide vertically on the adjusting column, the shape of the floating plate is the same as the motion track of the slide, and a buckle groove plate is fixed on the side wall of each connecting sleeve, and the buckle groove plate is slidably buckled on the edge of the floating plate; Two mounting plates are fixed at the bottom of the floating plate, two limiting columns are arranged on the side wall of each mounting plate, a guide plate is arranged on the outer wall of the adjusting column, the shape of the guide plate is wavy, the two limiting columns are respectively located on the upper and lower sides of the guide plate, when the adjusting column and the guide plate rotate, the mounting plate and the two limiting columns thereon move up and down.
5. A meat food processing thrashing machine according to claim 4, characterized in that: The material support unit includes an outer ring located on the outside and a tray and a rotating ring located on the inside. The tray is fixed on the inner wall of the outer ring, and the outer ring is fixed on the outer frame. The tray is used to carry food materials, and the rotating ring is rotatably installed on the inner wall of the outer ring. Two side planes are arranged opposite to each other on the inner wall of the rotating ring, and a shovel plate is arranged between the two side planes, and the shovel plate can move laterally on the side planes; The shovel plate is inclined, and is used to gather the scattered food materials on the tray to the middle of the tray.
6. A meat food processing pounding machine according to claim 5, characterized in that: The side plane is provided with a guide groove and a deep groove, the guide groove is composed of transverse grooves located on both sides and an arc-shaped groove located in the middle, the transverse groove and the arc-shaped groove are connected, the deep groove is penetrated and opened on the inner side walls of the two transverse grooves, and the deep groove and the transverse groove overlap, and the vertical diameter of the deep groove is smaller than the vertical diameter of the transverse groove; A movable column is slidably arranged in the guide groove, a sliding block is slidably arranged in the deep groove, a right-angle plate is fixed to the sliding block, a secondary column is arranged on the right-angle plate, and both the movable column and the secondary column are rotatably connected to the end surface of the shovel plate; Among them, the auxiliary column is close to the pallet, the movable column is far away from the pallet, and the end surface of the shovel plate close to the pallet is set as a cone surface. When the movable column moves into the arc groove, the axis of the auxiliary column coincides with the center of the arc groove.
7. A meat food processing pounding machine according to claim 6, characterized in that: A moving seat is vertically slidably arranged on the right-angle plate, the secondary column is fixedly connected to the moving seat, and the moving seat and the right-angle plate are connected via a second elastic sheet.
8. A meat food processing pounding machine according to claim 7, characterized in that: Two transverse movement structures are arranged on the rotating ring in a relative manner, and the transverse movement structures are used to provide power for the transverse movement of the shovel plate on the side plane; The transverse movement structure includes a threaded rod rotatably arranged on a rotating ring and a first motor fixedly arranged on the rotating ring, a threaded sleeve is meshedly arranged on the threaded rod, a support rod is fixed on the threaded sleeve, a sliding rod is vertically slidably arranged on the support rod, and the bottom of the sliding rod is rotatably connected to the shovel plate.
9. A meat food processing pounding machine according to claim 8, characterized in that: A notch is provided on the outer wall of the outer ring, an annular tooth groove is provided on the circumferential outer wall of the rotating ring, a second motor is fixed on the outer wall of the outer ring, a power gear is provided at the output end of the second motor, the power gear is located at the notch, and the power gear is meshed and connected with the annular tooth groove.
Citation Information
Patent Citations
Beef beating equipment for making beef balls
CN112042714A
Preparation process of heat-resistant plastic
CN112980077A
Shellfish product cleaning device
CN209219078U
Hammering and kneading device for meat processing
CN220494111U
Method and device for producing a rotisserie meat product, a meat product of this type and device for cutting off pieces thereof
WO2018078549A1