A fresh meat hanging conveyor

CN122809179APending Publication Date: 2026-09-25JIANGSU HURUN AGRICULTURAL PRODUCTS CO LTD
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Patent Information

Application Number
CN202611278765.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-08-21
Publication Date
2026-09-25

AI Technical Summary

Technical Problem

[0003]本申请的目的在于提供一种生鲜肉类悬挂输送装置,以解决现有技术中存在的污染生鲜肉类和输送效率低的技术问题

Benefits of technology

本申请提供的一种生鲜肉类悬挂输送装置,在驱动组件和两个夹持组件的作用下,能够将生鲜肉类固定。在旋转平台的作用下,拉钩能够将挂钩钩住。在直线驱动器的作用下,通过拉钩,挂钩和生鲜肉类实现分离。综上所述,在驱动组件、两个夹持组件、拉钩和直线驱动器的共同作用下,能够自动将挂钩从生鲜肉类上取下,相较于现有技术,避免人工干预导致生鲜肉类污染,自动化程度高,从而有助于提高输送效率。

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Abstract

The application provides a fresh meat suspension conveying device, which comprises a suspension conveying mechanism, a discharging conveying mechanism and a separation mechanism. The suspension conveying mechanism comprises a suspension rail, a plurality of conveying pulleys and a plurality of hooks. The plurality of conveying pulleys are installed on the suspension rail, and the plurality of hooks are suspended on the plurality of conveying pulleys respectively. The discharging conveying mechanism comprises a rotating platform, a translation assembly, a driving assembly, two clamping assemblies and a slide. The translation assembly is installed on the rotating platform, the driving assembly is installed on the translation assembly, the two clamping assemblies are installed on the driving assembly, and the slide is installed on the rotating platform. The separation mechanism comprises a linear actuator and a pull hook. The pull hook is installed on the linear actuator. The fresh meat suspension conveying device provided by the application can avoid the pollution of fresh meat caused by manual intervention and has high automation degree, thereby helping to improve the conveying efficiency.
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Description

Technical Field

[0001] This application relates to the field of fresh food conveying equipment technology, and in particular to a fresh meat hanging conveyor device. Background Technology

[0002] Fresh meat is typically transported using hooks. Compared to pallets and crates, hooks allow fresh meat to hang suspended, preventing it from being crushed or having its fat squeezed out. This protects the meat's appearance, reduces bruising and tissue damage, improves its quality, and minimizes direct human contact, saving storage space. However, after reaching its destination, the meat still needs to be manually removed from the hooks, posing a risk of contamination and resulting in low transport efficiency. Summary of the Invention

[0003] The purpose of this application is to provide a fresh meat hanging conveyor device to solve the technical problems of contaminated fresh meat and low conveying efficiency in the prior art.

[0004] To achieve the above objectives, the technical solution adopted in this application is: to provide a fresh meat hanging conveyor device, comprising: A suspended conveying mechanism includes a suspended track, multiple conveying pulleys, and multiple hooks. The multiple conveying pulleys are all installed on the suspended track, and the multiple hooks are respectively suspended from the multiple conveying pulleys. The feeding conveying mechanism includes a rotating platform, a translation component, a drive component, two clamping components, and a slide rail. The translation component is mounted on the rotating platform and rotates about an axial direction under the drive of the rotating platform. The drive component is mounted on the translation component and moves radially under the drive of the translation component. The two clamping components are both mounted on the drive component and move radially towards each other or away from each other under the drive of the drive component. The slide rail is mounted on the rotating platform and rotates about an axial direction under the drive of the rotating platform, and is located between the two clamping components. A separation mechanism comprising a linear actuator and a hook, the hook being mounted on the linear actuator and configured to pull the hook when fresh meat is clamped between two clamping assemblies.

[0005] Optionally, the hook includes a suspension section, a connecting section, and a piercing section. The suspension section is suspended from the conveying pulley. The connecting section is connected to the end of the suspension section away from the conveying pulley and is bent relative to the suspension section. The piercing section is connected to the end of the connecting section away from the suspension section.

[0006] Optionally, the clamping assembly includes a sliding plate, a plurality of lifting drivers, a lifting plate, and a clamping frame. The sliding plate is mounted on the driving assembly and moves radially under the drive of the driving assembly. The plurality of lifting drivers are all mounted on the sliding plate. The lifting plate is mounted on the plurality of lifting drivers and moves axially under the drive of the plurality of lifting drivers. The clamping frame is mounted on the lifting plate.

[0007] Optionally, the clamping assembly further includes a linear bearing and a lifting guide rod, wherein the linear bearing is mounted on the slide plate, and the lifting guide rod is mounted on the lifting plate and passes through the linear bearing.

[0008] Optionally, the translation assembly includes two limiting plates, two translation tracks, and two carriages. The two limiting plates are both mounted on the rotating platform and rotate about the axis under the drive of the rotating platform. The two translation tracks are mounted between the two limiting plates, and the two carriages are mounted between the two translation tracks and can slide between the two ends of the translation tracks.

[0009] Optionally, the translation assembly further includes a translation guide rod and two elastic structures. The translation guide rod is installed between the two limiting plates and passes through the two carriages. The two elastic structures are each sleeved on the translation guide rod and are respectively located at both ends of the translation guide rod, and abut against the limiting plates and the carriages.

[0010] Optionally, the carriage includes a frame and two rollers, the two rollers being respectively installed at both ends of the frame and respectively engaged with the two translation rails.

[0011] Optionally, the drive assembly includes a mounting plate, a rotary driver, and two followers. The mounting plate is mounted on the translation assembly, and the rotary driver and the two followers are both mounted on the mounting plate. The rotary driver is used to drive the two followers to move radially toward each other or toward each other.

[0012] Optionally, the clamping assembly includes a sliding plate; The driven component includes a screw, multiple guide rails, and multiple sliders. The screw is mounted on the rotary driver, passes through the slide plate, and is screwed to the slide plate. It also rotates radially under the drive of the rotary driver. The multiple guide rails are all mounted on the mounting plate. The multiple sliders are respectively engaged with the multiple guide rails and mounted on the slide plate, and are able to slide relative to the guide rails.

[0013] Optionally, the feeding and conveying mechanism further includes a conveyor belt disposed at one end of the slide away from the clamping assembly.

[0014] The beneficial effects of the fresh meat hanging conveyor device provided in this application are as follows: This application provides a fresh meat hanging conveyor device that, through the action of a drive assembly and two clamping assemblies, can fix the fresh meat in place. A hook, activated by a rotating platform, can engage a hook. A linear actuator then separates the hook from the fresh meat via the hook. In summary, the combined action of the drive assembly, the two clamping assemblies, the hook, and the linear actuator automatically removes the hook from the fresh meat. Compared to existing technologies, this avoids human intervention that could lead to meat contamination, and its high degree of automation helps improve conveying efficiency. Attached Figure Description

[0015] To more clearly illustrate the technical solutions in the embodiments of this application, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0016] Figure 1 A perspective view of the overall structure of a hanging conveyor for fresh meat provided in this application; Figure 2 for Figure 1 A magnified view of a section at point A in the middle; Figure 3 A perspective view of a drive assembly and two clamping assemblies for a fresh meat hanging conveyor provided in this application; Figure 4 A perspective view of the translation component of a fresh meat hanging conveyor provided in this application.

[0017] The following are the labeling elements in the figure: 1. Suspended conveying mechanism; 11. Suspended track; 12. Conveying pulley; 121. Pulley; 122. Lifting ring; 13. Hook; 131. Suspension section; 132. Connecting section; 133. Puncture section; 2. Material feeding and conveying mechanism; 21. Rotary platform; 22. Translation assembly; 221. Limiting plate; 222. Translation track; 223. Carriage; 2231. Frame; 2232. Roller; 224. Translation guide rod; 225. Elastic structure; 23. Drive assembly; 231. Mounting plate; 232. Rotary driver; 233. Follower; 2331. Screw; 2332. Guide rail; 2333. Slider; 24. Clamping assembly; 241. Slide plate; 242. Lifting driver; 243. Lifting plate; 244. Clamping frame; 245. Linear bearing; 246. Lifting guide rod; 25. Slide rail; 3. Separation mechanism; 31. Linear actuator; 32. Hook. Detailed Implementation

[0018] To make the technical problems, technical solutions, and beneficial effects to be solved by this application clearer, the following detailed description is provided in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and are not intended to limit the scope of this application.

[0019] It should be noted that when a component is referred to as being "mounted to," "fixed to," or "set on" another component, it can be directly on or indirectly on that other component. When a component is referred to as being "connected to" another component, it can be directly connected to or indirectly connected to that other component.

[0020] It should be understood that the terms "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this application.

[0021] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this application, "multiple" means two or more, unless otherwise explicitly specified.

[0022] like Figures 1 to 4As shown, this application provides a fresh meat hanging conveyor device, including a hanging conveyor mechanism 1, a feeding conveyor mechanism 2, and a separating mechanism 3. The hanging conveyor mechanism 1 includes a suspended track 11, multiple conveying pulleys 12, and multiple hooks 13. The multiple conveying pulleys 12 are all installed on the suspended track 11, and the multiple hooks 13 are respectively suspended from the multiple conveying pulleys 12. The feeding conveyor mechanism 2 includes a rotating platform 21, a translation component 22, a drive component 23, two clamping components 24, and a slide 25. The translation component 22 is installed on the rotating platform 21 and rotates around the axial direction under the drive of the rotating platform 21. The drive component 23 is installed on the translation component 22 and moves radially under the drive of the translation component 22. The two clamping components 24 are both installed on the drive component 23 and move radially towards each other or away from each other under the drive of the drive component 23. The slide 25 is installed on the rotating platform 21 and rotates around the axial direction under the drive of the rotating platform 21, and is located between the two clamping components 24. The separation mechanism 3 includes a linear actuator 31 and a hook 32, which is mounted on the linear actuator 31 and configured to pull the hook 13 when the fresh meat is clamped between the two clamping components 24.

[0023] It should be noted that the "above" and "below" axes refer to the bidirectional direction of the rotation axis at the output end of the rotary platform 21, specifically as follows: Figure 1 The X-axis is shown in the diagram. The radial directions above and below refer to the directions perpendicular to the rotation axis of the output end of the rotary platform 21, specifically as shown below. Figure 1 The Y-axis is shown in the figure.

[0024] This application provides a fresh meat hanging conveyor device that, under the action of a drive assembly 23 and two clamping assemblies 24, can fix the fresh meat. Under the action of a rotating platform 21, a hook 32 can hook a hook 13. Under the action of a linear actuator 31, the hook 13 and the fresh meat are separated via the hook 32. In summary, under the combined action of the drive assembly 23, the two clamping assemblies 24, the hook 32, and the linear actuator 31, the hook 13 can be automatically removed from the fresh meat. Compared with existing technologies, this avoids contamination of the fresh meat due to manual intervention, has a high degree of automation, and thus helps improve conveying efficiency.

[0025] Optionally, the conveying pulley 12 includes a pulley 121 and a lifting ring 122, the lifting ring 122 being rotatably mounted on the pulley 121.

[0026] Alternatively, the linear actuator 31 may be configured as a pneumatic or electric cylinder.

[0027] In one embodiment of this application, please refer to Figures 1 to 4The hook 13 includes a suspension section 131, a connecting section 132, and a piercing section 133. The suspension section 131 is suspended from the conveying pulley 12. The connecting section 132 is connected to the end of the suspension section 131 away from the conveying pulley 12 and is bent relative to the suspension section 131. The piercing section 133 is connected to the end of the connecting section 132 away from the suspension section 131.

[0028] With this configuration, under the action of the suspension section 131, the hook 13 can be suspended from the conveyor pulley 12 and can be detachably connected to the conveyor pulley 12, making disassembly and installation convenient and easy to use. Under the action of the piercing section 133, the hook 13 can pierce the fresh meat to support it, effectively preventing the fresh meat from falling off and ensuring stable support. Under the action of the connecting section 132, the linear actuator 31 can drive the hook 13 to rotate through the pull hook 32, thereby separating the hook 13 from the fresh meat, replacing manual separation and achieving a high degree of automation.

[0029] In one embodiment of this application, please refer to the following: Figures 1 to 4 The clamping assembly 24 includes a slide plate 241, multiple lifting drivers 242, a lifting plate 243, and a clamping frame 244. The slide plate 241 is mounted on the drive assembly 23 and moves radially under the drive of the drive assembly 23. The multiple lifting drivers 242 are all mounted on the slide plate 241. The lifting plate 243 is mounted on the multiple lifting drivers 242 and moves axially under the drive of the multiple lifting drivers 242. The clamping frame 244 is mounted on the lifting plate 243.

[0030] It should be noted that during use, due to the varying shapes of fresh meat, when the two clamping components 24 move radially towards each other to clamp the fresh meat, the clamping parts of the fresh meat will automatically center. Therefore, the clamping parts of the fresh meat will exert a radial pulling force on the suspended part of the fresh meat, causing the hook 13 to rotate relative to the conveyor pulley 12. In addition, when the two clamping components 24 clamp the fresh meat, the fresh meat will deform under pressure, causing the suspended part of the fresh meat to move axially away from the rotating platform 21, and the hook 13 will also easily detach from the conveyor pulley 12. When the hook 13 rotates in an inclined state, the hook 13 is also prone to detaching from the conveyor pulley 12. Furthermore, the hook 13 and the pull hook 32 may fail to engage, meaning the pull hook 32 may not be able to hook the hook 13, resulting in the hook 13 and the fresh meat being unable to separate.

[0031] With this configuration, under the action of the lifting driver 242, the two clamping components 24 can be driven to move axially toward the rotating platform 21, thereby generating a pulling force on the fresh meat along the axial direction. This ensures that the hook 13 is always suspended from the conveyor pulley 12, preventing the hook 13 from falling off the conveyor pulley 12 and helping to improve the structural stability between the hook 13 and the conveyor pulley 12. Furthermore, the pulling force exerted by the lifting driver 242 on the hook 13 ensures that the suspension section 131 of the hook 13 is always aligned with the axial direction, guaranteeing that the pull hook 32 can hook the connecting section 132 and preventing situations where the pull hook 32 cannot hook the hook 13.

[0032] Alternatively, the lifting actuator 242 may be configured as a pneumatic or electric cylinder.

[0033] In one embodiment of this application, see [reference] Figures 1 to 4 The clamping assembly 24 also includes a linear bearing 245 and a lifting guide rod 246. The linear bearing 245 is mounted on the slide plate 241, and the lifting guide rod 246 is mounted on the lifting plate 243 and passes through the linear bearing 245.

[0034] With this configuration, the axial movement of the lifting plate 243 can be guided by the linear bearing 245 and the lifting guide rod 246, which helps to improve the axial movement stability of the lifting plate 243 and allows the power of the lifting drive 242 to be stably transmitted to the hook 13.

[0035] In one embodiment of this application, please refer to Figures 1 to 4 The translation component 22 includes two limiting plates 221, two translation tracks 222, and two carriages 223. The two limiting plates 221 are both mounted on the rotating platform 21 and rotate around the axis under the drive of the rotating platform 21. The two translation tracks 222 are mounted between the two limiting plates 221, and the two carriages 223 are mounted between the two translation tracks 222 and can slide between the two ends of the translation tracks 222.

[0036] With this configuration, under the action of the two translation rails 222 and the two carriages 223, the drive assembly 23 can slide radially relative to the rotating platform 21. When the lifting driver 242 pulls the fresh meat, it prevents the drive assembly 23 and the rotating platform 21 from jamming, ensuring that the suspension section 131 of the hook 13 is always aligned with the axial direction. Furthermore, the two translation rails 222 and the two carriages 223 also guide the movement of the drive assembly 23, allowing it to slide only radially, thus improving the radial stability of the drive assembly 23. The two limiting plates 221 prevent the two carriages 223 from detaching from between the two translation rails 222, further improving the structural stability between the carriages 223 and the translation rails 222.

[0037] In one embodiment of this application, please refer to the following: Figures 1 to 4 The translation component 22 also includes a translation guide rod 224 and two elastic structures 225. The translation guide rod 224 is installed between two limiting plates 221 and passes through two slides 223. The two elastic structures 225 are both sleeved on the translation guide rod 224 and are respectively located at both ends of the translation guide rod 224, and abut against the limiting plates 221 and the slides 223.

[0038] This configuration, with the two elastic structures 225 acting as elastic forces, allows the slide 223 to automatically reset after sliding relative to the two translation rails 222, facilitating future use and improving ease of use. The translation guide rod 224 limits the elastic structures 225, ensuring they are stably held between the limiting plate 221 and the slide 223. This improves the structural stability between the elastic structures 225, the limiting plate 221, and the slide 223, allowing the elastic force of the elastic structures 225 to act stably on the slide 223, enabling the slide 223 to reset stably. Furthermore, the translation guide rod 224 guides the movement of the slide 223, further enhancing its stability.

[0039] Optionally, the elastic structure 225 is configured as a spring or a sheet.

[0040] In one embodiment of this application, see [reference] Figures 1 to 4 The carriage 223 includes a frame 2231 and two rollers 2232. The two rollers 2232 are respectively installed at both ends of the frame 2231 and respectively engaged with two translation rails 222.

[0041] With this configuration, the drive assembly 23 and the translation track 222 are connected by a rolling connection under the action of the two rollers 2232, making it easier for the drive assembly 23 to slide relative to the rotating platform 21, and making the movement of the drive assembly 23 more stable.

[0042] In one embodiment of this application, please refer to Figures 1 to 4The drive assembly 23 includes a mounting plate 231, a rotary driver 232, and two driven members 233. The mounting plate 231 is mounted on the translation assembly 22. The rotary driver 232 and the two driven members 233 are both mounted on the mounting plate 231. The rotary driver 232 is used to drive the two driven members 233 to move radially towards each other or backwards. The clamping assembly 24 includes a sliding plate 241. The driven member 233 includes a screw 2331, multiple guide rails 2332, and multiple sliders 2333. The screw 2331 is mounted on the rotary driver 232, passes through the sliding plate 241, and is screwed to the sliding plate 241. It also rotates radially under the drive of the rotary driver 232. The multiple guide rails 2332 are all mounted on the mounting plate 231. The multiple sliders 2333 are respectively engaged with the multiple guide rails 2332 and mounted on the sliding plate 241, and can slide relative to the guide rails 2332.

[0043] With this configuration, under the action of the rotary actuator 232, the two screws 2331 can drive the two slide plates 241 to move radially towards each other or away from each other, thus enabling them to clamp fresh meat of different shapes and making them widely applicable. The guide rails 2332 and sliders 2333 guide the movement of the slide plates 241, ensuring that they can only move radially, and also helping to improve the radial stability of the slide plates 241. Thus, the two clamping frames 244 can stably clamp the fresh meat.

[0044] Optionally, the rotary driver 232 is configured as a dual-shaft output reducer.

[0045] In one embodiment of this application, please refer to the following: Figures 1 to 4 The feeding conveyor mechanism 2 also includes a conveyor belt (not shown in the figure), which is located at one end of the slide 25 away from the clamping assembly 24.

[0046] With this configuration, the conveyor belt can receive fresh meat that slides down from the slide 25 and transport it to the target location, thus preventing the fresh meat from piling up on the rotating platform 21. It is highly automated and easy to use.

[0047] The working principle of the fresh meat hanging conveyor provided in this application is as follows: the conveying pulley 12 moves along the suspended track 11 until the hook 13 moves between the two clamping components 24. After the hook 13 conveys the fresh meat between the two clamping components 24, the rotary driver 232 drives the two screws 2331 to rotate, so that the two slide plates 241 move radially towards each other until the two clamping frames 244 clamp the fresh meat. After the two clamping frames 244 clamp the fresh meat, the lifting driver 242 drives the lifting plate 243 to move axially toward the slide plate 241, so that the distance between the lifting plate 243 and the slide plate 241 is reduced. As the distance between the lifting plate 243 and the slide plate 241 is reduced, the mounting plate 231 can move relative to the translational guide rod 224 through the two slides 223 until the suspension section 131 of the hook 13 is aligned with the axial direction. Driven by the rotating platform 21, the two carriages 223 rotate the fresh meat around the axial direction, causing the hook 13 to rotate relative to the conveyor pulley 12 around the axial direction until the connecting section 132 and the pull hook 32 abut against each other. The linear driver 31 drives the pull hook 32 to move, hooking the connecting section 132 to pull the hook 13, which is tilted relative to the conveyor pulley 12. When the hook 13 is pulled, the fresh meat remains fixed, the piercing section 133 is pulled out of the fresh meat, and the pull hook 32 separates from the fresh meat. The rotating platform 21 drives the fresh meat, translation component 22, drive component 23, and clamping component 24 to reset until the slide 25 is realigned with the conveyor belt. The drive component 23 drives the two clamping components 24 to move radially in opposite directions. The fresh meat falls into the slide 25 under the action of gravity. The fresh meat slides along the slide 25 to the surface of the conveyor belt. The conveyor belt transports the fresh meat to the target position.

[0048] One or more embodiments in this application are intended to cover all such substitutions, modifications, and variations that fall within the broad scope of this application. Therefore, any omissions, modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of one or more embodiments in this application should be included within the protection scope of this application.

Claims

1. A hanging conveyor device for fresh meat, characterized in that, include: A suspended conveying mechanism includes a suspended track, multiple conveying pulleys, and multiple hooks. The multiple conveying pulleys are all installed on the suspended track, and the multiple hooks are respectively suspended from the multiple conveying pulleys. The feeding conveying mechanism includes a rotating platform, a translation component, a drive component, two clamping components, and a slide rail. The translation component is mounted on the rotating platform and rotates about an axial direction under the drive of the rotating platform. The drive component is mounted on the translation component and moves radially under the drive of the translation component. The two clamping components are both mounted on the drive component and move radially towards each other or away from each other under the drive of the drive component. The slide rail is mounted on the rotating platform and rotates about an axial direction under the drive of the rotating platform, and is located between the two clamping components. A separation mechanism comprising a linear actuator and a hook, the hook being mounted on the linear actuator and configured to pull the hook when fresh meat is clamped between two clamping assemblies.

2. The fresh meat hanging conveyor device as described in claim 1, characterized in that, The hook includes a suspension section, a connecting section, and a piercing section. The suspension section is suspended from the conveying pulley. The connecting section is connected to the end of the suspension section away from the conveying pulley and is bent relative to the suspension section. The piercing section is connected to the end of the connecting section away from the suspension section.

3. The fresh meat hanging conveyor device as described in claim 1, characterized in that, The clamping assembly includes a sliding plate, multiple lifting drivers, a lifting plate, and a clamping frame. The sliding plate is mounted on the driving assembly and moves radially under the drive of the driving assembly. The multiple lifting drivers are all mounted on the sliding plate. The lifting plate is mounted on the multiple lifting drivers and moves axially under the drive of the multiple lifting drivers. The clamping frame is mounted on the lifting plate.

4. The fresh meat hanging conveyor device as described in claim 3, characterized in that, The clamping assembly also includes a linear bearing and a lifting guide rod. The linear bearing is mounted on the slide plate, and the lifting guide rod is mounted on the lifting plate and passes through the linear bearing.

5. The fresh meat hanging conveyor device as described in claim 1, characterized in that, The translation assembly includes two limiting plates, two translation tracks, and two carriages. The two limiting plates are mounted on the rotating platform and rotate around the axis under the drive of the rotating platform. The two translation tracks are mounted between the two limiting plates, and the two carriages are mounted between the two translation tracks and can slide between the two ends of the translation tracks.

6. The fresh meat hanging conveyor device as described in claim 5, characterized in that, The translation assembly further includes a translation guide rod and two elastic structures. The translation guide rod is installed between the two limiting plates and passes through the two slides. The two elastic structures are each sleeved on the translation guide rod and are respectively located at both ends of the translation guide rod, and abut against the limiting plates and the slides.

7. A fresh meat hanging conveyor device as described in claim 6, characterized in that, The carriage includes a frame and two rollers. The two rollers are respectively installed at both ends of the frame and respectively engaged with the two translation rails.

8. A fresh meat hanging conveyor device as described in claim 1, characterized in that, The drive assembly includes a mounting plate, a rotary driver, and two driven members. The mounting plate is mounted on the translation assembly, and the rotary driver and the two driven members are both mounted on the mounting plate. The rotary driver is used to drive the two driven members to move radially towards each other or backwards.

9. A fresh meat hanging conveyor device as described in claim 8, characterized in that, The clamping assembly includes a sliding plate; The driven component includes a screw, multiple guide rails, and multiple sliders. The screw is mounted on the rotary driver, passes through the slide plate, and is screwed to the slide plate. It also rotates radially under the drive of the rotary driver. The multiple guide rails are all mounted on the mounting plate. The multiple sliders are respectively engaged with the multiple guide rails and mounted on the slide plate, and are able to slide relative to the guide rails.

10. A fresh meat hanging conveyor device as described in claim 1, characterized in that, The material feeding and conveying mechanism also includes a conveyor belt, which is disposed at the end of the slide away from the clamping assembly.