Meat continuous sorting assembly and conveying equipment

By using a drive motor to drive a reciprocating screw and connecting rod system to strike the feed frame, the problem of meat particles adhering to the inner wall of the pipe is solved, the sorting efficiency is improved and the maintenance process is simplified.

CN223475538UActive Publication Date: 2025-10-28JIHONG AMSEN (CHENGDU) FOOD CO LTD
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Patent Information

Application Number
CN202422827478.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-20
Publication Date
2025-10-28
Estimated Expiration
2034-11-20

AI Technical Summary

Technical Problem

In the existing meat sorting components, some meat particles will be adsorbed on the inner wall of the feed pipe, resulting in a decrease in the input efficiency of the feed pipe and further reducing the sorting efficiency of the meat particles.

Method used

A continuous meat sorting component and conveying equipment is adopted. The drive motor drives the reciprocating screw to rotate, which in turn drives the threaded plate and connecting rod system, so that the main and auxiliary striking plates strike the outer wall of the feed frame to reduce meat particle adsorption. At the same time, a fixing part is designed to facilitate quick disassembly of the cover plate for maintenance.

Benefits of technology

It improves the sorting efficiency of meat pieces, reduces blockage in the feed box, simplifies the maintenance process, and facilitates regular maintenance by staff.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a meat continuous sorting assembly and conveying equipment. Relates to the technical field of meat processing. In the using process of a feeding pipeline of the sorting assembly, part of meat particles can be adsorbed on the inner wall of the pipeline, the meat particle input efficiency of the feeding pipeline can be reduced due to accumulation of the meat particles, and therefore the meat particle sorting efficiency is reduced. The meat particle sorting device comprises a sorting assembly body, a feeding frame and a vibration part, and the feeding frame is fixedly arranged above a frame body of the sorting assembly body; and the feeding frame is communicated with the interior of the sorting assembly main body frame body, and the vibrating part is arranged above the sorting assembly main body frame body and provided with a driving motor arranged above the sorting assembly main body frame body. The reciprocating lead screw can be driven to rotate by starting the driving motor, the reciprocating lead screw rotates to drive the main knocking plate to slightly knock the outer wall of the feeding frame in a reciprocating manner, so that the feeding frame generates certain vibration, the situation that meat granules are adsorbed on the inner wall of the vibration frame is reduced, and the sorting efficiency of the meat granules is improved.
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Description

Technical Field

[0001] This utility model relates to the field of meat processing technology, specifically to a continuous meat sorting component and conveying equipment. Background Technology

[0002] Meat comes in different sizes when cut, so sorting components are needed to sieve out the unqualified ingredients.

[0003] Existing sorting components typically consist of a vibrating motor, a fixed frame, and a filter screen. By starting the vibrating motor, the filter screen can vibrate to screen meat particles. When meat particles pass through the feed pipe, some of them will adhere to the inner wall of the pipe. The accumulation of meat particles will reduce the input efficiency of meat particles in the feed pipe, thereby reducing the sorting efficiency of meat particles. Utility Model Content

[0004] The purpose of this utility model is to provide a continuous meat sorting component and conveying device to solve the problem mentioned in the background art that during the use of the sorting component's feed pipe, some meat particles will adhere to the inner wall of the pipe, and the accumulation of meat particles will reduce the input efficiency of meat particles in the feed pipe, thereby reducing the sorting efficiency of meat particles.

[0005] To achieve the above objectives, this utility model provides the following technical solution: This utility model provides a continuous meat sorting component and conveying device, including a sorting component body, a feeding frame, and a vibrating part. The feeding frame is fixed above the main frame of the sorting component and is internally connected to the main frame. The vibrating part is located above the main frame of the sorting component. The vibrating part includes a drive motor located above the main frame, a reciprocating screw fixed to the output end of the drive motor, a threaded plate sleeved on the reciprocating screw, a first connecting rod located above the main frame, and a main striking plate located outside the feeding frame. The threaded plate has a threaded hole that mates with the reciprocating screw, and the reciprocating screw is threadedly connected to the threaded hole of the threaded plate. One end of the first connecting rod is hinged to the threaded plate, and the other end of the first connecting rod is hinged to the main striking plate.

[0006] By adopting the above technical solution, the drive motor can drive the reciprocating lead screw to rotate, the reciprocating lead screw can drive the threaded plate to move, the horizontal movement of the threaded plate can drive the first connecting rod to rotate, the rotation of the first connecting rod can drive the main striking plate to move horizontally, and the main striking plate can strike the outer wall of the feed frame, thereby reducing the occurrence of feed frame blockage.

[0007] Preferably, the vibration unit further comprises a second connecting rod disposed above the main body of the sorting component, a secondary striking plate disposed outside the feed frame, a vibration frame fixed above the main frame of the sorting component, and a cover plate slidably connected above the vibration frame. One end of the second connecting rod is hinged to the secondary striking plate, and the other end of the second connecting rod is hinged to the main striking plate.

[0008] By adopting the above technical solution, the main striking plate can drive the second connecting rod to rotate when it moves horizontally. The rotation of the second connecting rod can drive the secondary striking plate to move. The movement of the secondary striking plate can strike the feed frame, further reducing the occurrence of feed frame blockage.

[0009] Preferably, the fixing part is disposed on the outside of the vibration frame. The fixing part has a fixing frame fixed to the outer wall of the vibration frame, a connecting block slidably connected to the inner wall of the fixing frame, a spring fixed to the bottom of the connecting block, and a fixing block rotatably connected to the top of the connecting block. The bottom end of the spring is fixedly connected to the bottom of the inner side of the fixing frame.

[0010] By adopting the above technical solution, the cover plate can be quickly removed or installed by pulling and rotating the fixing block. The operation process is simple and facilitates the staff to perform regular maintenance on the internal structure of the vibration frame.

[0011] Preferably, a bearing seat is fixed inside the vibration frame, and two sets of bearing seats are provided, and the bearing seats are rotatably connected to the reciprocating lead screw.

[0012] By adopting the above technical solution, the reciprocating lead screw can be limited by the bearing housing, ensuring the stability of the reciprocating lead screw during rotation.

[0013] Preferably, telescopic rods are fixedly provided on both sides of the inner wall of the vibration frame, and the output end of the telescopic rods is fixedly connected to the main striking plate.

[0014] By adopting the above technical solution, the main striking plate is limited by the telescopic rod, ensuring the stability of the main striking plate during horizontal reciprocating motion.

[0015] Preferably, a guide rod is fixed inside the fixed frame, and the guide rod is slidably connected to the connecting block, and the guide rod passes through the hole in the center of the spring.

[0016] By adopting the above technical solution, the guide rod can limit the connecting block, ensuring the stability of the connecting block during movement. The guide rod also limits the spring, preventing the spring from deforming or misaligning.

[0017] In another aspect, this utility model provides a transmission device, including the aforementioned meat continuous sorting component. The transmission device also includes a transmission structure fixed to the bottom of the main body of the sorting component.

[0018] By adopting the above technical solution, non-qualified meat pieces and qualified meat pieces are transported separately by activating the transmission structure, which facilitates the collection by staff for subsequent processing.

[0019] Compared with the prior art, the beneficial effects of this utility model are:

[0020] (1) By starting the drive motor, the reciprocating screw can be driven to rotate. The rotation of the reciprocating screw can drive the main striking plate to reciprocate and lightly strike the outer wall of the feeding frame, so that the feeding frame will vibrate to a certain extent, thereby reducing the occurrence of meat particles adhering to the inner wall of the vibrating frame, and thus improving the sorting efficiency of meat particles.

[0021] (2) The fixed part is formed by setting a fixed frame, spring, connecting block and fixed block. The cover plate can be quickly removed or installed by pulling and rotating the fixed block. The operation process is simple and it is convenient for staff to perform regular maintenance on the internal structure of the vibration frame. Attached Figure Description

[0022] Figure 1 This is a side view of the present invention.

[0023] Figure 2 This utility model Figure 1 Enlarged schematic diagram of part A;

[0024] Figure 3 This is a schematic diagram of the top surface structure of this utility model;

[0025] Figure 4 This utility model Figure 3 Enlarged schematic diagram of part B;

[0026] Figure 5 This utility model Figure 3 Enlarged schematic diagram of part C.

[0027] In the diagram: 1. Main body of sorting component; 2. Feed frame; 3. Vibrating part; 301. Vibrating frame; 302. Drive motor; 303. Reciprocating screw; 304. Threaded plate; 305. First connecting rod; 306. Main striking plate; 307. Second connecting rod; 308. Secondary striking plate; 309. Bearing seat; 310. Telescopic rod; 311. Cover plate; 4. Fixing part; 401. Fixing frame; 402. Spring; 403. Connecting block; 404. Fixing block; 405. Guide rod; 5. Transmission structure. Detailed Implementation

[0028] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0029] The following is in conjunction with the appendix Figure 1-5 The present invention will be described in further detail below.

[0030] Example 1

[0031] Please see Figure 1-5 This embodiment provides a technical solution: a continuous meat sorting component and conveying device, including a sorting component body 1, a feeding frame 2, and a vibrating part 3. The sorting component body 1 consists of a frame, a vibrating motor, and a filter plate assembly. By starting the vibrating motor, the filter plate vibrates, and the meat particles can be screened through the inclined vibrating plate. The feeding frame 2 is fixed above the frame of the sorting component body 1 and is connected to the inside of the frame of the sorting component body 1. The meat particles can be fed into the frame of the sorting component body 1 through the feeding frame 2 for screening. The vibrating part 3 is located above the frame of the sorting component body 1 and has a drive motor 302 located above the frame of the sorting component body 1. The drive motor 302 is connected to an external power supply. A reciprocating screw 303 is fixed at the output end of the drive motor 302. Starting the drive motor 302 can drive the reciprocating screw 303 to rotate. A threaded plate 304 is sleeved on the reciprocating screw 303. The threaded plate 304 is made of stainless steel to avoid... During prolonged use, the threaded plate 304 may rust. A first connecting rod 305 is located above the main body 1 of the sorting assembly, and a main impact plate 306 is located outside the feed frame 2. A buffer pad is provided on one side of the main impact plate 306 to prevent damage to the feed frame 2 from the reciprocating impacts. The threaded plate 304 has a threaded hole that mates with the reciprocating screw 303, and the reciprocating screw 303 is threadedly connected to the threaded hole of the threaded plate 304. The rotation of the lead screw 303, under the influence of the thread, can drive the threaded plate 304 to move horizontally. One end of the first connecting rod 305 is hinged to the threaded plate 304, and the other end of the first connecting rod 305 is hinged to the main striking plate 306. The horizontal movement of the threaded plate 304 can drive the first connecting rod 305 to rotate. The rotation of the first connecting rod 305 drives the main striking plate 306 to move horizontally. The main striking plate 306 strikes the outer wall of the feed frame 2, thereby reducing the occurrence of blockage in the feed frame 2.

[0032] Example 2

[0033] Please see Figure 1-5The vibrating unit 3 also has a second connecting rod 307 located above the main body 1 of the sorting component. The second connecting rod 307 is made of stainless steel to prevent rusting during long-term use. A secondary striking plate 308 is located on the outside of the feed frame 2. A buffer pad is provided on one side of the secondary striking plate 308 to protect it from damage during impact. A vibrating frame 301 is fixed above the frame of the main body 1 of the sorting component. The vibrating frame 301 is a hollow cuboid. A cover plate 311 is slidably connected to the top of the vibrating frame 301. The bottom of the cover plate 311 has four sets of mating protrusions that are embedded in the vibrating frame 301. One end of the second connecting rod 307 is hinged to the secondary striking plate 308, and the other end of the second connecting rod 307 is... The main striking plate 306 is hinged. When the main striking plate 306 moves horizontally, it can drive the second connecting rod 307 to rotate. The rotation of the second connecting rod 307 can drive the auxiliary striking plate 308 to move. The movement of the auxiliary striking plate 308 strikes the feed frame 2, further reducing the occurrence of blockage in the feed frame 2. The vibrating frame 301 is equipped with a bearing seat 309, and there are two sets of bearing seats 309. The bearing seats 309 are rotatably connected to the reciprocating screw 303. The bearing seats 309 can limit the reciprocating screw 303 to ensure the stability of the reciprocating screw 303 during rotation. The inner walls of the vibrating frame 301 are equipped with telescopic rods 310 on both sides, and the output end of the telescopic rods 310 is fixedly connected to the main striking plate 306. The telescopic rods 310 limit the main striking plate 306 to ensure the stability of the main striking plate 306 during horizontal reciprocating motion.

[0034] Example 3

[0035] Please see Figure 1-5The fixing part 4 is located on the outside of the vibration frame 301. The fixing part 4 has a fixing frame 401 fixed to the outer wall of the vibration frame 301. The fixing frame 401 is welded to the outer wall of the vibration frame 301 to prevent separation. A connecting block 403 is slidably connected to the inner wall of the fixing frame 401. The connecting block 403 fits against the inner wall of the fixing frame 401 to ensure stability during movement. A spring 402 is fixed to the bottom of the connecting block 403. The spring 402 is in a stretched state. A fixing block 404 is rotatably connected to the top of the connecting block 403. The movement of the fixing block 404 can drive the connecting block 403 to move. The bottom end of the spring 402 is connected to the fixing block 404. The bottom inner side of the fixed frame 401 is fixedly connected, and the spring force of the spring 402 makes the fixed block 404 fit tightly against the top of the cover plate 311. The vibration frame 301 is slidably connected to the threaded plate 304. The vibration frame 301 can limit the threaded plate 304 to ensure the stability of the threaded plate 304 during movement. The fixed frame 401 is fixedly provided with a guide rod 405, and the guide rod 405 is slidably connected to the connecting block 403. The guide rod 405 passes through the hole in the center of the spring 402. The guide rod 405 can limit the connecting block 403 to ensure the stability of the connecting block 403 during movement. The guide rod 405 also limits the spring 402 to prevent the spring 402 from deforming and misaligning.

[0036] Example 4

[0037] Please see Figure 1-5 This embodiment also provides a technical solution: a transmission device, including the meat continuous sorting component of Embodiment 1, 2 or 3, the transmission device further includes a transmission structure 5, which is fixed at the bottom of the main body 1 of the sorting component. The transmission structure 5 consists of two sets of opposite conveyor belts. The two sets of opposite conveyor belts can respectively transport unqualified meat particles and qualified meat particles, which is convenient for workers to collect for subsequent processing.

[0038] Working principle: First, when meat particles are input through the feed box 2, the drive motor 302 is started. The operation of the drive motor 302 will drive the reciprocating screw 303 to rotate. Since the reciprocating screw 303 is threadedly connected to the threaded plate 304, and the threaded plate 304 is slidably connected to the vibration frame 301, the rotation of the reciprocating screw 303 will drive the threaded plate 304 to move horizontally under the influence of the thread.

[0039] Secondly, since the threaded plate 304 is hinged to the first connecting rod 305, and the first connecting rod 305 is hinged to the main striking plate 306, and the main striking plate 306 is fixedly connected to the telescopic rod 310, the movement of the threaded plate 304 will drive the main striking plate 306 to move horizontally under the action of the first connecting rod 305. The movement of the main striking plate 306 will strike the outer wall of the feeding frame 2. The main striking plate 306 is hinged to the second connecting rod 307, and the second connecting rod 307 is hinged to the auxiliary striking plate 308. Therefore, the movement of the main striking plate 306 will drive the auxiliary striking plate 308 to move. The movement of the auxiliary striking plate 308 will strike the outer wall of the feeding frame 2. The reciprocating striking of the main striking plate 306 and the auxiliary striking plate 308 will cause the feeding frame 2 to vibrate, thereby reducing the occurrence of meat particles adhering to the inner wall of the feeding frame 2.

[0040] Finally, when maintenance of the inner wall structure of the vibration frame 301 is required, manually pull the fixing block 404 to separate it from the cover plate 311. The movement of the fixing block 404 causes the spring 402 to deform. Then rotate the fixing block 404 to position it at the protruding position of the fixing frame 401, release the fixing block 404, and the spring 402 will return to its original deformation and pull the fixing block 404 to fit against the protruding position of the fixing frame 401. Then pull the cover plate 311 upward to separate it from the vibration frame 301. Then pull the cover plate 311 horizontally to complete the disassembly. When the cover plate 311 needs to be installed, move the cover plate 311 horizontally to fit against the feed frame 2, then press the cover plate 311 downward to fit against the vibration frame 301. Rotate the fixing block 404 again to position it above the cover plate 311, release the fixing block 404, and the spring 402 will return to its original deformation and pull the fixing block 404 to fit against the cover plate 311 to complete the fixation. The operation is simple and convenient for staff to perform regular maintenance on the internal structure of the vibration frame 301.

[0041] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention. No reference numerals in the claims should be construed as limiting the scope of the claims.

Claims

1. A continuous meat sorting component, characterized in that, include: Sorting component main body; The feeding frame is fixed above the main frame of the sorting component and is connected to the interior of the main frame of the sorting component. The vibration section is located above the main frame of the sorting component. The vibration section has a drive motor located above the main frame of the sorting component, a reciprocating screw fixed to the output end of the drive motor, a threaded plate sleeved on the reciprocating screw, a first connecting rod located above the main body of the sorting component, and a main striking plate located outside the feed frame. The threaded plate has a threaded hole that mates with the reciprocating lead screw, and the reciprocating lead screw is threadedly connected to the threaded hole of the threaded plate. One end of the first connecting rod is hinged to the threaded plate, and the other end of the first connecting rod is hinged to the main striking plate.

2. The meat continuous sorting component according to claim 1, characterized in that: The vibration unit also includes a second connecting rod disposed above the main body of the sorting component, a secondary striking plate disposed outside the feed frame, a vibration frame fixed above the main frame of the sorting component, and a cover plate slidably connected above the vibration frame. One end of the second connecting rod is hinged to the secondary striking plate, and the other end of the second connecting rod is hinged to the main striking plate.

3. The meat continuous sorting component according to claim 2, characterized in that, The continuous meat sorting assembly also includes; The fixing part is located on the outside of the vibration frame. The fixing part has a fixing frame fixed to the outer wall of the vibration frame, a connecting block slidably connected to the inner wall of the fixing frame, a spring fixed to the bottom of the connecting block, and a fixing block rotatably connected to the top of the connecting block. The bottom end of the spring is fixedly connected to the bottom of the inner side of the fixing frame.

4. A continuous meat sorting component according to claim 2, characterized in that: The vibrating frame is equipped with a bearing seat inside, and there are two sets of bearing seats. The bearing seats are rotatably connected to the reciprocating lead screw.

5. A continuous meat sorting component according to claim 2, characterized in that: Telescopic rods are fixed on both sides of the inner wall of the vibration frame, and the output end of the telescopic rods is fixedly connected to the main striking plate.

6. A continuous meat sorting component according to claim 3, characterized in that: A guide rod is fixed inside the fixed frame, and the guide rod is slidably connected to the connecting block, and the guide rod passes through the hole in the center of the spring.

7. A transmission device, characterized in that, The continuous meat sorting component according to any one of claims 1-6, the conveying device further includes: The transmission structure is fixed at the bottom of the main body of the sorting component.