A meat conveying device with integrated path optimization and deviation correction functions
Through the meat conveying device with integrated path optimization and deviation correction functions, the problems of low processing efficiency and transmission offset of meat conveying device in poking holes are solved, and efficient and accurate meat conveying is achieved.
Patent Information
- Application Number
- CN202510726959.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-03
- Publication Date
- 2025-09-02
- Estimated Expiration
- 2045-06-03
AI Technical Summary
The existing meat conveying devices are inefficient when poking holes, and easily lead to the meat transfer offset and disengagement from the belt, and cannot be accurately transmitted to the next pickling process.
A meat conveying device with integrated path optimization and deviation correction functions is designed, including angle adjustment components, moving components, functional covers and deviation correction functions. The conveying path optimization and deviation correction are achieved through the motor drive threaded rod and universal wheel, and efficient hole poking operation is performed in combination with the sliding hole poking needle plate.
It realizes efficient hole-poking operation and path optimization of meat during the conveying process, reduces the risk of meat offset and disengages from the belt, and improves the conveying efficiency and accuracy.
Smart Images

Figure CN120229525B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of food conveying devices, in particular to a meat conveying device with integrated path optimization and deviation correction functions. Background Art
[0002] The meat conveyor is a friction-driven machine that transports materials in a continuous manner. It can transport both bulk materials and large-scale semi-cost meat. In addition to pure material transportation, it can also cooperate with the requirements of the process in the company's production process to form a rhythmic flow operation transportation line. For example, large-scale semi-cost meat needs to be manually poked on the way to the next pickling process to facilitate better flavoring in the next pickling step. The existing processing method is to manually poke holes with a handheld poking needle during the transmission process. Due to the limitation of the tools, the poking efficiency is relatively low, and the transmission speed often needs to be reduced to cooperate during the process; and while manually poking holes, the original position of the meat is often disturbed, causing its transmission position to shift, resulting in inaccurate transmission to the next pickling step, and the meat often falls off the belt; therefore, this traditional operation consumes a large number of operators and is not only inefficient, but also causes the meat transmission to shift.
[0003] Therefore, it is necessary to improve the meat conveying device so that it can not only conveniently and efficiently poke holes in the meat being transported, but also have path optimization and deviation correction functions. Summary of the Invention
[0004] The technical problem to be solved by the present invention is: in order to overcome the deficiencies in the prior art, a meat conveying device with integrated path optimization and deviation correction functions is provided.
[0005] The technical solution adopted by the present invention is: a meat conveying device with integrated path optimization and deviation correction functions, including a stabilizing seat, the stabilizing seat is located at the bottom end of the entire device, an angle adjustment component is installed in the upper end of the stabilizing seat, a moving component is installed in the lower end of the stabilizing seat, a connecting platform is provided at the upper end of the stabilizing seat, a frame is fixedly installed on the connecting platform, a conveying device is installed on the frame, a first fixed block and a second fixed block are fixedly installed on both side ends of the frame, and an inclined plate and an adjustment block cooperating with the inclined plate are installed on the first fixed block and the second fixed block;
[0006] A functional cover is also installed overhead across the frame, and guide rails are installed on the top of the functional cover and at the front and rear ends corresponding to the conveying direction. A force-bearing top plate is installed at one end of the guide rail in the functional cover, and the other end of the guide rail is slidably connected to a needle plate through a sliding ring;
[0007] Punching needles are evenly arranged on the needle plate, and stress-bearing concave cavities matching the punching needles are evenly arranged on the stress-bearing top plate;
[0008] A thrust handle is installed on the outer side of the needle plate through a threaded connection hole;
[0009] The angle adjustment assembly is equipped with a first motor, an output end of the first motor is equipped with a first threaded rod, and a first threaded sleeve is threadedly connected to the first threaded rod. A moving rod is fixedly installed on the top of the first threaded sleeve through a connecting block, and the upper end of the moving rod is slidably connected to the connecting platform.
[0010] A second motor is installed on the moving component, a second threaded rod is installed on the output end of the second motor, and a second threaded sleeve is threadedly connected to the second threaded rod. Both side ends of the second threaded sleeve are fixedly connected to the connecting plate, and a universal wheel is installed at the bottom end of the connecting plate.
[0011] Furthermore, the first fixing block, the second fixing block and the inclined plate of the present invention are rotatably connected via a rotating shaft, and the top ends of the first fixing block and the second fixing block are both provided with a socket for inserting an axle pin.
[0012] Furthermore, the adjusting block of the present invention is provided with a plurality of openings, the adjusting block is inserted into a hollow slot provided on the second fixing block, and the openings on the adjusting block are plugged into shaft pins.
[0013] Furthermore, the first slider is fixedly mounted on the bottom end of the first threaded sleeve of the present invention, and a first sliding groove is provided on the bottom end of the stabilizing seat, and the first sliding groove is slidably connected to the first slider on the bottom end of the first threaded sleeve.
[0014] Furthermore, the stabilizing seat of the present invention is provided with a slot, the connecting block passes through the slot, and the slot opening diameter is larger than the size of the connecting block.
[0015] Furthermore, a support column is fixedly mounted on the stabilizing seat of the present invention, the top end of the support column is located at the U-shaped frame, and the U-shaped frame and the top end of the support column are penetrated and rotatably connected by a connecting shaft.
[0016] Furthermore, a panel is fixedly mounted on the front side of the frame of the present invention, and the first motor and the conveying device are both controlled by the panel.
[0017] Furthermore, the bottom end of the stabilizing seat described in the present invention is provided with an opening, and the diameter of the opening is larger than the size of the universal wheel. Second sliders are fixedly installed on both side ends of the connecting plate, and second sliding grooves are provided on both sides of the stabilizing seat. The second sliding grooves are slidably connected to the second sliders on both sides of the connecting plate.
[0018] Compared with the prior art, the present invention has the following beneficial effects:
[0019] 1. The meat conveying device of the present invention integrates path optimization and deviation correction functions. By providing a functional cover that facilitates sliding poking, the meat can be conveniently and efficiently poked during the conveying process. Even if the poking operation may cause the position of the meat to shift, the correction function at the fixed blocks upstream and downstream of the conveying direction can be used to adjust and optimize the conveying direction of the meat at any time, thus achieving multiple goals at one stroke.
[0020] 2. The present invention provides a meat conveying device with integrated path optimization and deviation correction functions. The angle adjustment component provided in the device adjusts the angle of the connecting platform through the drive of the first motor, so that the angle of the conveying device on the top of the connecting platform can be adjusted according to the needs of use. This can optimize the material conveying path, reduce the material resistance during the conveying process, and thus improve the conveying efficiency.
[0021] 3. The present invention provides a meat conveying device with integrated path optimization and deviation correction functions. A first fixed block and a second fixed block are respectively installed on the conveying device frame of the device. The angle of the inclined plate is controlled by manually pushing the adjustment blocks on the first fixed block and the second fixed block, so that the device has a deviation correction function.
[0022] 4. The present invention provides a meat conveying device with integrated path optimization and deviation correction functions. A moving component is installed on the stable seat at the bottom of the conveying device provided in this device. The universal wheel is raised and lowered by the drive of the second motor. When the entire conveying device needs to be moved, the universal wheel is lowered through the opening to move the position. Anyway, the universal wheel can be folded up to ensure the stability of the device's transportation, thereby ensuring the practicality of the device. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 2 is a schematic structural diagram of a meat conveying device with integrated path optimization and deviation correction functions according to an embodiment of the present invention;
[0024] Figure 2 2 is a schematic diagram of the internal structure of a meat conveying device with integrated path optimization and deviation correction functions according to an embodiment of the present invention;
[0025] Figure 3 According to the present invention Figure 1 A schematic diagram of the structure enlarged in the middle;
[0026] Figure 4 2 is a schematic structural diagram of a moving assembly of a meat conveying device with integrated path optimization and deviation correction functions according to an embodiment of the present invention;
[0027] Figure 5 According to the present invention Figure 4 The enlarged structural diagram at B in the middle;
[0028] Figure 6It is a structural schematic diagram of the needle plate in the present invention;
[0029] Figure 7 It is a schematic diagram of the needle plate in the retreating and rotating state in the present invention.
[0030] Reference numerals:
[0031] 1. Stable seat; 2. Moving rod; 3. Connecting platform; 4. Frame; 5. Panel; 6. Conveying device; 7. First fixed block; 8. Second fixed block; 9. U-shaped frame; 10. Connecting shaft; 11. Support column; 12. First motor; 13. First threaded rod; 14. First threaded sleeve; 15. First slider; 16. First slide; 17. Slot; 18. Tilt plate; 19. Rotating shaft; 20. Adjusting block; 21. Opening; 22. Hollow groove; 23. Axis pin; 24. Second motor; 25. Second threaded rod; 26. Second threaded sleeve; 27. Connecting plate; 28. Second slider; 29. Second slide groove; 30. Universal wheel; 31. Opening; 32. Functional cover; 33. Guide rail; 34. Load-bearing top plate; 35. Sliding ring; 36. Needle plate; 37. Punching needle; 38. Load-bearing cavity; 39. Threaded connection hole; 40. Thrust handle. DETAILED DESCRIPTION
[0032] The embodiments of the present invention are described in detail below. The embodiments are implemented based on the technical solutions of the present invention, and detailed implementation methods and specific operating processes are given. However, the protection scope of the present invention is not limited to the following embodiments.
[0033] like Figures 1 to 7 A meat conveying device with integrated path optimization and deviation correction functions is shown, comprising a stabilizing base 1, the stabilizing base 1 being located at the bottom end of the entire device, an angle adjustment assembly being installed in the upper end of the stabilizing base 1, a moving assembly being installed in the lower end of the stabilizing base 1, a connecting platform 3 being provided at the upper end of the stabilizing base 1, a frame 4 being fixedly installed on the connecting platform 3, a conveying device 6 being installed in the frame 4, a first fixing block 7 and a second fixing block 8 being fixedly installed at both side ends of the frame 4, an inclined plate 18 and an adjustment block 20 cooperating with the inclined plate 18 being installed on each of the first and second fixing blocks 7 and 8;
[0034] A functional cover 32 is also installed overhead across the frame 4. Guide rails 33 are installed on the top of the functional cover 32 and at the front and rear ends corresponding to the conveying direction. A force-bearing top plate 34 is installed at one end of the guide rail 33 in the functional cover 32. The other end of the guide rail 33 is slidably connected to a needle plate 36 via a sliding ring 35. Punching needles 37 are evenly arranged on the needle plate 36, and force-bearing concave cavities 38 matching the punching needles 37 are evenly arranged on the force-bearing top plate 34. A thrust handle 40 is installed on the outer side of the needle plate 36 through a threaded connection hole 39.
[0035] The angle adjustment assembly is equipped with a first motor 12, the output end of which is equipped with a first threaded rod 13, and the first threaded sleeve 14 is threadedly connected to the first threaded rod 13. The top end of the first threaded sleeve 14 is fixedly equipped with a moving rod 2 via a connecting block, and the upper end of the moving rod 2 is slidably connected to the connecting platform 3.
[0036] A second motor 24 is installed on the moving component, a second threaded rod 25 is installed on the output end of the second motor 24, and a second threaded sleeve 26 is threadedly connected to the second threaded rod 25. Both side ends of the second threaded sleeve 26 are fixedly connected to the connecting plate 27, and a universal wheel 30 is installed at the bottom end of the connecting plate 27.
[0037] The first fixing block 7 , the second fixing block 8 and the tilting plate 18 are rotatably connected via a rotating shaft 19 . The top ends of the first fixing block 7 and the second fixing block 8 are both provided with insertion holes for inserting the shaft pin 23 .
[0038] The adjusting block 20 is provided with a plurality of openings 21 . The adjusting block 20 is inserted into a hollow slot 22 provided on the second fixing block 8 . The openings 21 on the adjusting block 20 are plugged into shaft pins 23 .
[0039] A first slider 15 is fixedly mounted on the bottom end of the first threaded sleeve 14 . A first sliding groove 16 is provided on the bottom end of the stabilizing seat 1 . The first sliding groove 16 is slidably connected to the first slider 15 on the bottom end of the first threaded sleeve 14 .
[0040] A slot 17 is provided on the stabilizing seat 1 , and the connecting block passes through the slot 17 , and the slot opening diameter of the slot 17 is larger than the size of the connecting block.
[0041] A support column 11 is fixedly mounted on the stabilizing seat 1 , and the top end of the support column 11 is located at the U-shaped frame 9 . The U-shaped frame 9 and the top end of the support column 11 are penetrated and rotatably connected by a connecting shaft 10 .
[0042] A panel 5 is fixedly mounted on the front of the frame 4 , and the first motor 12 and the conveying device 6 are both controlled by the panel 5 .
[0043] An opening 31 is provided at the bottom end of the stabilizing seat 1, and the diameter of the opening 31 is larger than the size of the universal wheel 30. Second sliders 28 are fixedly installed on both sides of the connecting plate 27. Second sliding grooves 29 are provided on both sides of the stabilizing seat 1, and the second sliding grooves 29 are slidably connected to the second sliders 28 on both sides of the connecting plate 27.
[0044] Working principle:
[0045] In specific applications, the bottom end of the angle adjustment component provided in the present device is installed with a first motor 12, which drives the first threaded sleeve 14 on the first threaded rod 13 to move. The bottom end of the first threaded sleeve 14 is slidably connected to the first slide block 15 and the first slide groove 16, and the top end of the first threaded sleeve 14 moves the position of the moving rod 2, wherein the top end of the moving rod 2 is also slidably connected to the connecting platform 3, thereby adjusting the angle of the connecting platform 3; so that the conveying device 6 at the top end of the connecting platform 3 can be adjusted in angle according to the use needs, which can optimize the conveying path of the material, reduce the resistance of the material during the conveying process, and thus improve the conveying efficiency;
[0046] The conveying device 6 is arranged in the frame 4, and the side plates on both sides of the frame 4 are higher than the conveying device 6, which can prevent the conveyed meat from escaping from the conveying device 6, and the frame 4 is respectively installed with a first fixed block 7 and a second fixed block 8, wherein the sleeve on the adjusting block 20 is rotatably connected to the protrusion on the inclined plate 18 through an axis, so that the angle of the inclined plate 18 can be controlled by manually pushing the adjusting block 20 on the first fixed block 7 and the second fixed block 8, so that the device has a correction function, which effectively prevents the meat duck on the conveyor belt from deviating and falling;
[0047] A moving component is installed on the stable seat 1 at the bottom end of the conveying device, which is driven by the second motor 24 to drive the second threaded sleeve 26 on the second threaded rod 25. Since connecting plates 27 are fixed on both side ends of the second threaded sleeve 26, and the two sides of the connecting plate 27 are slidably connected by the second slider 28 and the second slide groove 29, the height adjustment of the connecting plate 27 on the second threaded sleeve 26 is driven, and the universal wheel 30 is at the bottom end of the connecting plate 27 and distributed around the connecting plate 27. When the entire conveying device needs to be moved, the universal wheel 30 is lowered through the opening 31 for position movement by lifting the universal wheel 30. Anyway, the universal wheel 30 can be folded up to ensure the stability of the device's transportation, thereby ensuring the practicality of the device.
[0048] Punch hole treatment:
[0049] During the transportation of block-shaped semi-finished meat, the needle plate 36 can be pushed by the thrust handle 40 through the bottom of the functional cover 32, and the needle plate 36 slides on the guide rail 33, and then holes are poked in the meat. The sliding of the needle plate 36 is limited by the unloading force of the force-bearing top plate 34. When the needle plate 36 retreats after poking the holes, due to the action of the sliding ring 35, the retreat angle can be rotated, so that the meat can slide down while being brought back slightly by the needle plate 36.
[0050] At the same time, the functional cover 32 can be set between the upstream and downstream fixed blocks in the conveying direction. Even if the meat block is shifted after being punctured, the deviation can be corrected at the downstream first fixed block 7 and the second fixed block 8 so that the meat block can be returned to the preset position.
Claims
1. A meat conveying device with integrated path optimization and deviation correction functions, characterized by: The invention comprises a stabilizing seat (1), wherein the stabilizing seat (1) is located at the bottom end of the entire device, an angle adjustment component is installed in the upper end of the stabilizing seat (1), a moving component is installed in the lower end of the stabilizing seat (1), a connecting platform (3) is provided at the upper end of the stabilizing seat (1), a frame (4) is fixedly installed on the connecting platform (3), a conveying device (6) is installed on the frame (4), a first fixed block (7) and a second fixed block (8) are fixedly installed on both sides of the frame (4), and an inclined plate (18) and an adjusting block (20) matched with the inclined plate (18) are installed on the first fixed block (7) and the second fixed block (8); A functional cover (32) is also installed overhead on the frame (4), and guide rails (33) are installed on the top of the functional cover (32) and at the front and rear ends corresponding to the conveying direction. A load-bearing top plate (34) is installed at one end of the guide rail (33) in the functional cover (32), and the other end of the guide rail (33) is slidably connected to a needle plate (36) through a sliding ring (35); Punching needles (37) are evenly arranged on the needle plate (36), and stress-bearing concave cavities (38) matching the punching needles (37) are evenly arranged on the stress-bearing top plate (34); The outer side surface of the needle plate (36) is provided with a thrust handle (40) through a threaded connection hole (39); the sliding of the needle plate (36) is limited by the force unloading of the force-bearing top plate (34); when the needle plate (36) is withdrawn after the hole is punctured, the sliding ring (35) can realize the withdrawal angle rotation, so that the meat can slide down while being brought back slightly by the needle plate (36); A first motor (12) is installed on the angle adjustment component, a first threaded rod (13) is installed on the output end of the first motor (12), and a first threaded sleeve (14) is threadedly connected to the first threaded rod (13), a moving rod (2) is fixedly installed on the top end of the first threaded sleeve (14) through a connecting block, and the upper end of the moving rod (2) is slidably connected to the connecting platform (3); A second motor (24) is mounted on the moving assembly, a second threaded rod (25) is mounted on the output end of the second motor (24), and a second threaded sleeve (26) is threadedly connected to the second threaded rod (25), both side ends of the second threaded sleeve (26) are fixedly connected to a connecting plate (27), and a universal wheel (30) is mounted on the bottom end of the connecting plate (27).
2. The meat conveying device with integrated path optimization and deviation correction functions according to claim 1, characterized in that: The first fixed block (7), the second fixed block (8) and the inclined plate (18) are rotatably connected via a rotating shaft (19), and the top ends of the first fixed block (7) and the second fixed block (8) are each provided with a socket for inserting an axle pin (23).
3. The meat conveying device with integrated path optimization and deviation correction functions according to claim 2, characterized in that: The adjusting block (20) is provided with a plurality of openings (21), the adjusting block (20) is arranged to penetrate into a hollow groove (22) provided on the second fixed block (8), and the openings (21) on the adjusting block (20) are plugged into the shaft pins (23).
4. The meat conveying device with integrated path optimization and deviation correction functions according to claim 1, characterized in that: A first slider (15) is fixedly mounted on the bottom end of the first threaded sleeve (14), a first slide groove (16) is provided on the bottom end of the stabilizing seat (1), and the first slide groove (16) is slidably connected to the first slider (15) at the bottom end of the first threaded sleeve (14).
5. The meat conveying device with integrated path optimization and deviation correction functions according to claim 1, characterized in that: A slot (17) is provided on the stabilizing seat (1), the connecting block passes through the slot (17), and the slot opening diameter of the slot (17) is larger than the size of the connecting block.
6. The meat conveying device with integrated path optimization and deviation correction functions according to claim 1, characterized in that: A support column (11) is fixedly mounted on the stabilizing seat (1), the top end of the support column (11) is located at the U-shaped frame (9), and the U-shaped frame (9) and the top end of the support column (11) are penetrated and rotatably connected via a connecting shaft (10).
7. The meat conveying device with integrated path optimization and deviation correction functions according to claim 1, characterized in that: A panel (5) is fixedly mounted on the front of the frame (4), and the first motor (12) and the conveying device (6) are both controlled by the panel (5).
8. The meat conveying device with integrated path optimization and deviation correction functions according to claim 1, characterized in that: The bottom end of the stabilizing seat (1) is provided with an opening (31), and the diameter of the opening (31) is larger than the size of the universal wheel (30). Second sliders (28) are fixedly installed on both sides of the connecting plate (27). Second sliding grooves (29) are provided on both sides of the stabilizing seat (1), and the second sliding grooves (29) are slidably connected to the second sliders (28) on both sides of the connecting plate (27).
Citation Information
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