Gizzard peeling machine for meat duck processing
By combining a height adjustment mechanism with a worm gear and a threaded rod, along with belt drive and spray nozzle rinsing function, the problems of cumbersome operation and inconvenient cleaning of existing gizzard peeling machines have been solved, achieving convenient height adjustment and efficient yellow skin peeling effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-13
- Publication Date
- 2026-04-07
AI Technical Summary
The existing gizzard peeling machine has a separate height adjustment mechanism from the gizzard peeling drive system, which makes operation cumbersome and makes it difficult to clean the yellow skin residue on the extrusion rollers, affecting the efficiency and cleanliness of the equipment.
The workbench height is adjusted by using a worm gear mechanism and a threaded rod. The gizzard-stripping roller is driven to rotate via belt and chain drives. Combined with the spray nozzle rinsing function, the operation process is simplified and the cleaning efficiency is improved.
The system allows for convenient adjustment of the workbench height, simplifies operation, improves equipment efficiency and cleanliness, and ensures efficient gizzard removal.
Smart Images

Figure CN224084580U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a stripping machine technical field, specifically point to a kind of stripping machine for meat duck processing. BACKGROUND
[0002] Stripping machine is used for the peeling of chicken gizzard and duck gizzard, workers work by driving extrusion roller through electricity, so that relative rotation is realized, so that the requirement of stripping the yellow skin inside chicken gizzard and duck gizzard is achieved, stripping machine solves the problem of slow manual operation, and improves work efficiency. But the general stripping machine structure is single, the height of the equipment cannot be adjusted, so that people of different heights are extremely inconvenient when using;And there will be chicken gizzard or duck gizzard yellow skin scraps on extrusion roller when using, which will affect the cleanliness of chicken gizzard or duck gizzard later, and it is inconvenient for users to clean.
[0003] In order to solve these technical problems, the prior art CN214283071U provides a stripping machine for meat duck processing, by setting worm wheel, worm, screw rod, limiting block, support frame, rotating worm, worm drives worm wheel to rotate when rotating, worm wheel can move up and down when rotating, so that the height of the equipment can be adjusted, by setting nozzle, connecting pipe, connecting water inlet pipe with external connecting pipe, so that water flows through water inlet pipe and is sprayed through nozzle, so that extrusion roller can be washed, and extrusion roller can be washed all-round with the rotation of extrusion roller.
[0004] But there may be some technical problems in the use process, for example: the height adjusting mechanism of the equipment and the stripping drive system are independent of each other, and need to be configured with power source respectively, which leads to complex equipment structure, and this may lead to that the operation of the device by workers becomes more complicated, not only inconvenient for workers to adjust the vertical height of workbench, but also inconvenient for workers to use, and strip the yellow skin on the surface of chicken gizzard or duck gizzard. UTILITY MODEL CONTENTS
[0005] The utility model aims at the deficiency of prior art, provides a stripping machine for meat duck processing, which can not only adjust the vertical height of workbench for workers, but also facilitate workers to use and strip the yellow skin on the surface of chicken gizzard or duck gizzard.
[0006] The utility model discloses a kind of stripping machines for meat duck processing, including workbench and two support rods installed in the bottom of workbench, the bottom of support rod is provided with movable hole, screw rod is provided in movable hole, the bottom of support rod is provided with the support frame being fixedly connected with screw rod, worm wheel is rotatably arranged in the bottom of support rod, screw rod is located in worm wheel and is threadedly connected with worm wheel, the bottom of workbench is fixedly connected with vertical plate, horizontal bar is rotatably arranged on vertical plate, the outer side wall of horizontal bar is provided with the worm thread being engaged with worm wheel, limit hole is coaxially arranged in the end surface of vertical plate towards horizontal bar, first limit rod is arranged in limit hole, the end of first limit rod away from horizontal bar is coaxially fixedly connected with the rotating shaft passing through vertical plate, the end of rotating shaft away from first rotating rod is coaxially fixedly connected with second limit rod, first sprocket is rotatably connected with vertical plate on second limit rod, rotating motor is installed on vertical plate, the output shaft of rotating motor is fixedly connected with second sprocket, and second sprocket is drivingly connected with first sprocket by chain, the output shaft end of rotating motor is provided with the drive mechanism that makes the two stripping rollers in workbench rotate towards each other.
[0007] In use, this utility model features a workbench and two support rods installed at the bottom of the workbench. The support rods have movable holes at their bottoms, and threaded rods are installed within these holes. A support frame is fixedly connected to the bottom of the threaded rods below the support rods. A worm gear is rotatably mounted at the bottom of the support rods, and the threaded rods are located within and threadedly connected to the worm gear. A vertical plate is fixedly attached to the bottom of the workbench, and a horizontal bar is rotatably mounted on the vertical plate. The outer wall of the horizontal bar has worm-like patterns that mesh with the worm gear. A limiting hole is coaxially formed on the end of the horizontal bar facing the vertical plate, and a first limiting rod is installed within the limiting hole. The end of the first limiting rod away from the horizontal bar is coaxially fixed to a point passing through the vertical plate. The device has a rotating shaft with a second limiting rod coaxially fixed to the end of the shaft away from the first rotating rod. A first sprocket, rotatably connected to the vertical plate, is fitted onto the second limiting rod. A rotating motor is mounted on the vertical plate, and a second sprocket, driven by a chain, is fixed to the output shaft of the rotating motor. A drive mechanism is located at the end of the output shaft of the rotating motor to rotate the two peeling rollers in the worktable towards each other. In use, the rotating motor on the vertical plate is turned on, causing its output shaft to rotate in either the forward or reverse direction, driving the second sprocket to rotate. Through the chain drive, the first sprocket rotates along with the second sprocket, thereby driving the second limiting rod. The position lever rotates, causing the shaft to rotate within the vertical plate along with the second limit lever. This rotation, in turn, drives the first limit lever to rotate, which in turn drives the horizontal bar to rotate on the vertical plate. The worm gear rotates along with the horizontal bar, causing the worm wheel meshing with the worm gear to rotate on the threaded rod. Since the threaded rod and support frame remain relatively fixed, the threaded rod itself does not rotate with the worm wheel. Instead, the worm wheel moves upward or downward under the rotational drive of the worm gear on the horizontal bar, causing the support lever to move upward or downward on the threaded rod. This adjusts the vertical height of the worktable, facilitating operation of the device. The second limit lever is then controlled... The rotating shaft moves away from the horizontal bar, causing the end of the shaft away from the horizontal bar to move away from the horizontal bar within the vertical plate under the drive of the second limiting rod, and enters the first sprocket. Then, the first limiting rod is disengaged from the limiting hole under the transmission of the rotating shaft and enters the vertical plate. After that, the rotating motor is controlled to rotate in the forward direction, so that the rotating motor drives the two gizzard peeling rollers in the worktable to rotate in opposite directions through the drive mechanism. This makes it convenient for workers to peel off the yellow skin on the surface of chicken or duck gizzards. This not only makes it convenient for workers to adjust the vertical height of the worktable, but also makes it convenient for workers to use the worktable to peel off the yellow skin on the surface of chicken or duck gizzards.
[0008] Preferably, both the first and second limiting rods have hexagonal cross-sections, with the inscribed circle diameter of the second limiting rod larger than the diameter of the rotating shaft, and the diameter of the rotating shaft larger than the circumscribed circle diameter of the first limiting rod. By setting both the first and second limiting rods to hexagonal cross-sections, with the inscribed circle diameter of the second limiting rod larger than the diameter of the rotating shaft, and the diameter of the rotating shaft larger than the circumscribed circle diameter of the first limiting rod, it is easier for the operator to control the second limiting rod to move away from the horizontal bar. This allows the end of the rotating shaft away from the horizontal bar to move away from the horizontal bar within the vertical plate under the drive of the second limiting rod, and enter the first sprocket. Consequently, the first limiting rod, driven by the rotating shaft, disengages from the limiting hole and enters the vertical plate.
[0009] Preferably, the top of the workbench has a connecting opening, and the two gizzard peeling rollers are arranged in the connecting opening and distributed laterally in the front-back direction. Each gizzard peeling roller includes a first rotating rod rotatably connected to the inner sidewall of the connecting opening and a rotating roller fixed to the outer sidewall of the first rotating rod. The outer sidewalls of the two first rotating rods are respectively provided with meshing gears. A first pulley is fixedly connected to the outer sidewall of one of the first rotating rods. The driving mechanism includes a second rotating rod fixedly connected to the end of the output shaft of the rotating motor. The second rotating rod extends laterally toward the worm gear and passes through the vertical plate. A second pulley is provided on the side of the vertical plate away from the rotating motor and fixedly connected to the outer sidewall of the second rotating rod. The first pulley and the second pulley are connected by belt drive. A communication opening is provided at the top of the workbench, and two gizzard-peeling rollers are arranged inside the communication opening and laterally distributed along the front-to-back direction. Each gizzard-peeling roller includes a first rotating rod rotatably connected to the inner wall of the communication opening and a rotating roller fixed to the outer wall of the first rotating rod. Meshing gears are respectively provided on the outer walls of the two first rotating rods. A first pulley is fixedly connected to the outer wall of one of the first rotating rods. The drive mechanism includes a second rotating rod fixedly connected to the end of the output shaft of a rotating motor. The second rotating rod extends laterally towards the worm gear and passes through a vertical plate. A second pulley is fixedly connected to the outer wall of the second rotating rod on the side of the vertical plate away from the rotating motor. The first pulley and the second pulley are connected by a communication channel. The device is connected via belt drive. When the motor rotates forward, the second rotating rod rotates within the vertical plate, which in turn drives the second pulley to rotate. This, in turn, drives the first pulley to rotate via the belt, causing one of the first rotating rods to rotate with the first pulley. The other first rotating rod also rotates under the transmission of meshing gears located on the outer walls of the two first rotating rods. This causes the two first rotating rods to drive the two rotating rollers to rotate within the connecting opening, making the two gizzard-peeling rollers rotate towards each other within the connecting opening. This facilitates the removal of the yellow skin from the surface of chicken or duck gizzards by the workers.
[0010] Preferably, both the first pulley and the gear are located between the vertical plate and the gizzard-peeling roller. By positioning both the first pulley and the gear between the vertical plate and the gizzard-peeling roller, the second pulley can easily drive the first pulley to rotate via the belt, and the two gizzard-peeling rollers can rotate in opposite directions within the connecting opening under the drive of the gear.
[0011] Preferably, the two support rods are located on the left and right sides of the communication port, respectively. By positioning the two support rods on the left and right sides of the communication port, the stability of the device during use can be improved.
[0012] Preferably, the rotating shaft is configured as a magnetic rod. By configuring the rotating shaft as a magnetic rod, the stability of the rotating shaft moving within the vertical rod during use can be improved.
[0013] Preferably, a pull rod is fixedly connected to the end of the second limiting rod away from the vertical plate, and the pull rod is fitted against the side wall of the first sprocket away from the vertical plate. By fixing a pull rod to the end of the second limiting rod away from the vertical plate, and fitting the pull rod against the side wall of the first sprocket away from the vertical plate, the pull rod allows the operator to easily control the movement of the second limiting rod away from the horizontal bar.
[0014] Preferably, the left and right sides of the gizzard peeling roller are provided with baffles fixed to the inner wall of the connecting port. The bottom of the baffles is flush with the top of the gizzard peeling roller, and the baffles are located above the gear and the first pulley. By providing baffles fixed to the inner wall of the connecting port on the left and right sides of the gizzard peeling roller, with the bottom of the baffles flush with the top of the gizzard peeling roller and the baffles located above the gear and the first pulley, the baffles can protect the first pulley, gear, and rotating rod, preventing debris from entering the first pulley, gear, and rotating rod during use and causing damage to the device.
[0015] Preferably, a water inlet pipe is provided in the connecting port between the two baffles. One end of the water inlet pipe extends to the outside of the workbench, and the other end is fixedly connected to a nozzle. By providing a water inlet pipe between the two baffles in the connecting port, with one end extending to the outside of the workbench and the other end fixedly connected to a nozzle, after use, the device can be connected to an external connecting pipe to allow water to flow through the water inlet pipe and be sprayed out through the nozzle, thereby rinsing the extrusion roller. The rotation of the extrusion roller allows for a comprehensive rinsing of the roller.
[0016] The beneficial effects of this utility model are as follows: A workbench and two support rods installed at the bottom of the workbench are provided. A movable hole is opened at the bottom of the support rod, and a threaded rod is installed inside the movable hole. A support frame is fixedly connected to the bottom of the threaded rod below the support rod. A worm gear is rotatably installed at the bottom of the support rod, and the threaded rod is located inside the worm gear and threadedly connected to it. A vertical plate is fixedly connected to the bottom of the workbench, and a horizontal bar is rotatably installed on the vertical plate. A worm pattern that meshes with the worm gear is opened on the outer wall of the horizontal bar. A limiting hole is coaxially opened on the end face of the horizontal bar facing the vertical plate, and a first limiting rod is installed inside the limiting hole. The end of the first limiting rod away from the horizontal bar is coaxially fixedly connected to a part passing through the vertical plate. The device has a rotating shaft with a second limiting rod coaxially fixed to the end of the shaft away from the first rotating rod. A first sprocket, rotatably connected to the vertical plate, is fitted onto the second limiting rod. A rotating motor is mounted on the vertical plate, and a second sprocket, driven by a chain, is fixed to the output shaft of the rotating motor. A drive mechanism is located at the end of the output shaft of the rotating motor to rotate the two peeling rollers in the worktable towards each other. In use, the rotating motor on the vertical plate is turned on, causing its output shaft to rotate in either the forward or reverse direction, driving the second sprocket to rotate. Through the chain drive, the first sprocket rotates along with the second sprocket, thereby driving the second limiting rod. The position lever rotates, causing the shaft to rotate within the vertical plate along with the second limit lever. This rotation, in turn, drives the first limit lever to rotate, which in turn drives the horizontal bar to rotate on the vertical plate. The worm gear rotates along with the horizontal bar, causing the worm wheel meshing with the worm gear to rotate on the threaded rod. Since the threaded rod and support frame remain relatively fixed, the threaded rod itself does not rotate with the worm wheel. Instead, the worm wheel moves upward or downward under the rotational drive of the worm gear on the horizontal bar, causing the support lever to move upward or downward on the threaded rod. This adjusts the vertical height of the worktable, facilitating operation of the device. The second limit lever is then controlled... The rotating shaft moves away from the horizontal bar, causing the end of the shaft away from the horizontal bar to move away from the horizontal bar within the vertical plate under the drive of the second limiting rod, and enters the first sprocket. Then, the first limiting rod is disengaged from the limiting hole under the transmission of the rotating shaft and enters the vertical plate. After that, the rotating motor is controlled to rotate in the forward direction, so that the rotating motor drives the two gizzard peeling rollers in the worktable to rotate in opposite directions through the drive mechanism. This makes it convenient for workers to peel off the yellow skin on the surface of chicken or duck gizzards. This not only makes it convenient for workers to adjust the vertical height of the worktable, but also makes it convenient for workers to use the worktable to peel off the yellow skin on the surface of chicken or duck gizzards. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the structure of this utility model;
[0018] Figure 2 for Figure 1 Perspective view of section A in the middle;
[0019] Figure 3 for Figure 2Sectional view of the structure 'aa' in the middle;
[0020] Figure 4 for Figure 2 Sectional view of the BB structure;
[0021] Figure 5 for Figure 1 Perspective view of section B;
[0022] Figure 6 for Figure 1 Perspective view of the C section structure;
[0023] Figure 7 This is a top view of the structure of this utility model;
[0024] Figure 8 for Figure 7 Structural perspective view;
[0025] As shown in the figure:
[0026] 1. Workbench, 2. Support rod, 3. Worm gear, 4. Support frame, 5. Belt, 6. Second rotating rod, 7. Vertical plate, 8. Worm gear, 9. Horizontal bar, 10. Chain, 11. Rotating motor, 12. Pull rod, 13. Limiting hole, 14. First limiting rod, 15. Rotating shaft, 16. Second limiting rod, 17. First sprocket, 18. Second sprocket, 19. Movable hole, 20. Threaded rod, 21. First rotating rod, 22. Rotating roller, 23. First pulley, 24. Baffle, 25. Gear, 26. Second pulley, 27. Nozzle, 28. Connecting port, 29. Water inlet pipe. Detailed Implementation
[0027] To clearly illustrate the technical features of this solution, the following detailed implementation method will be used to explain the solution.
[0028] like Figures 1-8The present invention discloses a gizzard removal machine for processing duck meat, comprising a workbench 1 and two support rods 2 installed at the bottom of the workbench 1. Each support rod 2 has a movable hole 19 at its bottom, and a threaded rod 20 is disposed within the movable hole 19. A support frame 4 is fixedly connected to the bottom of the threaded rod 20 below the support rod 2. A worm gear 8 is rotatably mounted at the bottom of the support rod 2, and the threaded rod 20 is located within and threadedly connected to the worm gear 8. A vertical plate 7 is fixedly mounted at the bottom of the workbench 1, and a horizontal bar 9 is rotatably mounted on the vertical plate 7. A worm pattern 3 engaging with the worm gear 8 is formed on the outer wall of the horizontal bar 9, with the end face of the horizontal bar 9 facing the vertical plate 7. A limiting hole 13 is coaxially provided, and a first limiting rod 14 is provided in the limiting hole 13. The end of the first limiting rod 14 away from the horizontal bar 9 is coaxially fixed to a rotating shaft 15 that passes through the vertical plate 7. The end of the rotating shaft 15 away from the first rotating rod 21 is coaxially fixed to a second limiting rod 16. A first sprocket 17 that is rotatably connected to the vertical plate 7 is sleeved on the second limiting rod 16. A rotating motor 11 is installed on the vertical plate 7. A second sprocket 18 that is fixed to the output shaft of the rotating motor 11 and is driven by the first sprocket 17 through a chain 10 is connected to the output shaft of the rotating motor 11. A drive mechanism is provided at the end of the output shaft of the rotating motor 11 to make the two peeling rollers in the worktable 1 rotate towards each other.
[0029] By setting the cross-sections of both the first limiting rod 14 and the second limiting rod 16 to regular hexagons, with the inscribed circle diameter of the second limiting rod 16 being larger than the diameter of the rotating shaft 15, and the diameter of the rotating shaft 15 being larger than the circumscribed circle diameter of the first limiting rod 14, it is convenient for the operator to control the second limiting rod 16 to move away from the horizontal bar 9. This allows the end of the rotating shaft 15 away from the horizontal bar 9 to move away from the horizontal bar 9 within the vertical plate 7 under the drive of the second limiting rod 16, and enter the first sprocket 17. Consequently, the first limiting rod 14 is disengaged from the limiting hole 13 under the transmission of the rotating shaft 15 and enters the vertical plate 7. A communication port 28 is provided at the top of the workbench 1. Two gizzard-peeling rollers are arranged inside the communication port 28 and are laterally distributed in the front-to-back direction. The gizzard-peeling rollers include a first rotating rod 21 rotatably connected to the inner sidewall of the communication port 28 and a rotating roller 22 fixed to the outer sidewall of the first rotating rod 21. The outer sidewalls of the two first rotating rods 21 are respectively provided with meshing gears 25. A first pulley 23 is fixedly connected to the outer sidewall of one of the first rotating rods 21. The drive mechanism includes a second rotating rod 6 fixedly connected to the end of the output shaft of the rotating motor 11. The second rotating rod 6 extends laterally toward the worm gear 8 and passes through the vertical plate 7. A second pulley 26 fixedly connected to the outer sidewall of the second rotating rod 6 is provided on the side of the vertical plate 7 away from the rotating motor 11. The first pulley 23 and the second pulley 26 The two parts are connected by a belt 5. When the device is in use, the rotating motor 11 rotates in the forward direction, which causes the second rotating rod 6 to rotate in the vertical plate 7. This drives the second pulley 26 to rotate, which in turn drives the first pulley 23 to rotate via the belt 5. This causes one of the first rotating rods 21 to rotate with the first pulley 23, and the other first rotating rod 21 to rotate under the transmission of gears 25 that are respectively set on the outer walls of the two first rotating rods 21 and mesh with each other. This causes the two first rotating rods 21 to drive the two rotating rollers 22 to rotate in the connecting port 28, so that the two gizzard peeling rollers rotate in opposite directions in the connecting port 28, which makes it convenient for workers to peel off the yellow skin on the surface of chicken or duck gizzards. By positioning both the first pulley 23 and the gear 25 between the vertical plate 7 and the peeling rollers, the second pulley 26 can easily drive the first pulley 23 to rotate via the belt 5, and the two peeling rollers can rotate in opposite directions within the connecting opening 28 under the drive of the gear 25. Positioning the two support rods 2 on the left and right sides of the connecting opening 28 respectively improves the stability of the device during use. Using a magnetic shaft 15 enhances the stability of its movement within the vertical rod during operation. A pull rod 12 is fixed to the end of the second limiting rod 16 away from the vertical plate 7, and the pull rod 12 is fitted against the side wall of the first sprocket 17 away from the vertical plate 7. This pull rod 12 allows the operator to easily control the movement of the second limiting rod 16 away from the horizontal bar 9.By providing baffles 24 fixed to the inner wall of the connecting port 28 on both sides of the gizzard peeling roller, with the bottom of the baffles 24 flush with the top of the gizzard peeling roller and positioned above the gear 25 and the first pulley 23, the baffles 24 can shield and protect the first pulley 23, gear 25, and rotating rod, preventing debris from entering these components and causing damage during use. A water inlet pipe 29 is provided inside the connecting port 28, located between the two baffles 24. One end of the water inlet pipe 29 extends to the outside of the worktable 1, and the other end is fixed to a nozzle 27. After use, water is connected to the water inlet pipe 29 via an external connection pipe, allowing water to flow through the pipe and spray out through the nozzle 27 to rinse the extrusion roller. The rotation of the extrusion roller provides comprehensive rinsing.
[0030] Combined with appendix Figures 1-8The method of using this utility model is as follows: First, by controlling the rotation motor 11 on the vertical plate 7 to turn on, the output shaft of the rotation motor 11 rotates in the forward or reverse direction, driving the second sprocket 18 to rotate. Through the transmission of the chain 10, the first sprocket 17 rotates with the second sprocket 18, thereby driving the second limiting rod 16 to rotate. This causes the rotating shaft 15 to rotate within the vertical plate 7 along with the second limiting rod 16, and also drives the first limiting rod 14 to rotate, thereby driving the horizontal bar 9 to rotate on the vertical plate 7. This causes the worm gear 3 to rotate with the horizontal bar 9, thus... The worm wheel 8, meshing with the worm 3, rotates on the threaded rod 20. Since the threaded rod 20 remains relatively fixed to the support frame 4, it does not rotate with the worm wheel 8. The worm wheel 8 moves upward or downward under the rotational drive of the worm 3 on the crossbar 9, causing the support rod 2 to move upward or downward on the threaded rod 20. This adjusts the vertical height of the workbench 1, facilitating the operator's use of the device. Then, the pull rod 12 controls the second limit rod 16 to move away from the crossbar 9, causing the end of the rotating shaft 15 away from the crossbar 9 to be positioned on the second limit rod 16. Driven by the movement, the first limiting rod 14 moves away from the horizontal bar 9 within the vertical plate 7 and enters the first sprocket 17. This causes the first limiting rod 14 to disengage from the limiting hole 13 under the transmission of the rotating shaft 15 and enter the vertical plate 7. Then, by controlling the rotating motor 11 to rotate forward, the second rotating rod 6 rotates within the vertical plate 7, thereby driving the second pulley 26 to rotate. Through the transmission of the belt 5, this drives the first pulley 23 to rotate, causing one of the first rotating rods 21 to rotate with the first pulley 23, and the other first rotating rod... The rod 21 also rotates under the transmission of gears 25 that are respectively set on the outer side walls of the two first rotating rods 21 and mesh with each other. This causes the two first rotating rods 21 to drive the two rotating rollers 22 to rotate in the connecting port 28, so that the two gizzard peeling rollers rotate in opposite directions in the connecting port 28, which makes it convenient for workers to peel off the yellow skin on the surface of chicken or duck gizzards. After the device is used, the water inlet pipe 29 is connected to the external connecting pipe, so that water flows through the water inlet pipe 29 and sprays out through the nozzle 27 to rinse the squeezing roller. The rotation of the squeezing roller can rinse the squeezing roller from all directions.
[0031] Of course, the above description is not limited to the examples above. Technical features of this utility model not described can be implemented by or using existing technology, and will not be repeated here. The above embodiments and drawings are only used to illustrate the technical solution of this utility model and are not intended to limit this utility model. This utility model has been described in detail with reference to preferred embodiments. Those skilled in the art should understand that any changes, modifications, additions or substitutions made by those skilled in the art within the scope of this utility model do not depart from the spirit of this utility model and should also fall within the protection scope of the claims of this utility model.
Claims
1. A gizzard removal machine for processing duck meat, comprising a workbench (1) and two support rods (2) installed at the bottom of the workbench, characterized in that: The support rod has a movable hole (19) at its bottom, and a threaded rod (20) is installed in the movable hole. A support frame (4) is fixedly connected to the bottom of the threaded rod below the support rod. A worm gear (8) is rotatably installed at the bottom of the support rod. The threaded rod is located in the worm gear and is threadedly connected to the worm gear. A vertical plate (7) is fixedly connected to the bottom of the workbench. A horizontal bar (9) is rotatably installed on the vertical plate. A worm pattern (3) that meshes with the worm gear is opened on the outer wall of the horizontal bar. A limiting hole (13) is coaxially opened on one end face of the horizontal bar facing the vertical plate. A limiting hole is provided in the limiting hole. A first limiting rod (14) is provided. A rotating shaft (15) passing through the vertical plate is coaxially fixed to the end of the first limiting rod away from the horizontal bar. A second limiting rod (16) is coaxially fixed to the end of the rotating shaft away from the horizontal bar. A first sprocket (17) rotatably connected to the vertical plate is sleeved on the second limiting rod. A rotating motor (11) is installed on the vertical plate. A second sprocket (18) is fixed to the output shaft of the rotating motor and is connected to the first sprocket through a chain (10). A drive mechanism is provided at the end of the output shaft of the rotating motor to make the two peeling rollers in the workbench rotate towards each other.
2. The gizzard removal machine for processing duck meat according to claim 1, characterized in that: Both the first limiting rod and the second limiting rod have a cross-section of a regular hexagon. The diameter of the inscribed circle of the second limiting rod is larger than the diameter of the rotating shaft, and the diameter of the rotating shaft is larger than the diameter of the circumscribed circle of the first limiting rod.
3. The gizzard removal machine for processing duck meat according to claim 1, characterized in that: The top of the workbench has a connecting opening (28). The two gizzard peeling rollers are arranged in the connecting opening and are laterally distributed in the front-back direction. The gizzard peeling rollers include a first rotating rod (21) rotatably connected to the inner side wall of the connecting opening and a rotating roller (22) fixed on the outer side wall of the first rotating rod. The outer side walls of the two first rotating rods are respectively provided with meshing gears (25). A first pulley (23) is fixedly connected to the outer side wall of one of the first rotating rods. The driving mechanism includes a second rotating rod (6) fixedly connected to the end of the output shaft of the rotating motor. The second rotating rod extends laterally toward the worm gear and passes through the vertical plate. A second pulley (26) fixedly connected to the outer side wall of the second rotating rod is provided on the side of the vertical plate away from the rotating motor. The first pulley and the second pulley are connected by a belt (5).
4. The gizzard removal machine for processing duck meat according to claim 3, characterized in that: Both the first pulley and the gear are located between the vertical plate and the gizzard peeling roller.
5. The gizzard removal machine for processing duck meat according to claim 4, characterized in that: The two support rods are located on the left and right sides of the connecting opening, respectively.
6. The gizzard removal machine for processing duck meat according to claim 4, characterized in that: The rotating shaft is configured as a magnetic rod.
7. The gizzard removal machine for processing duck meat according to claim 4, characterized in that: A pull rod (12) is fixedly connected to the end of the second limiting rod away from the vertical plate, and the pull rod is fitted to the side wall of the first sprocket away from the vertical plate.
8. The gizzard removal machine for processing duck meat according to claim 4, characterized in that: The left and right sides of the rotating roller are provided with baffles (24) that are fixed to the inner sidewall of the connecting port. The bottom of the baffle is flush with the top of the gizzard peeling roller, and the baffle is located above the gear and the first pulley.
9. The gizzard removal machine for processing duck meat according to claim 3, characterized in that: The communication port is provided with a water inlet pipe (29) located between two baffles. One end of the water inlet pipe extends to the outside of the workbench, and the other end of the water inlet pipe is fixedly connected to a nozzle (27).
Citation Information
Patent Citations
Gizzard peeling machine for meat duck processing
CN214283071U