A beef cattle slaughter shavings recycling equipment

CN224700310UActive Publication Date: 2026-09-01MENGCHENG YINGCAI NIU AGRICULTURAL TECHNOLOGY DEVELOPMENT CO LTD
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Patent Information

Application Number
CN202522097049.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-29
Publication Date
2026-09-01
Estimated Expiration
2035-09-29

AI Technical Summary

Technical Problem

[0003]现有的肉牛屠宰角料回收设备清洁难度大,破碎腔与破碎刀多为封闭或半封闭结构,清洁时需拆解多个部件才能暴露清洁区域,操作繁琐且耗时,若清洁不彻底,残留的角料碎屑易滋生细菌,影响后续回收料的品质

Benefits of technology

1.当需要清洁时,无需拆解设备,仅需启动电机二即可带动上筒与下筒分离,使原本包裹在两筒内部的破碎刀完全暴露,同时,启动马达一与马达二可带动上筒、下筒缓慢转动,配合竖板上的喷头喷出的高压水流,方便对上筒与下筒的内壁和外壁进行清洁,又能直接冲刷破碎刀的刀刃及刀轴连接处,提高清洁效果,减少清洁死角;

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Abstract

This utility model discloses a beef cattle slaughter scrap recycling device, including a base plate, on the top of which a C-shaped frame one and a C-shaped frame two are fixedly installed. Beneficial effects: When cleaning is required, there is no need to disassemble the equipment; simply starting motor two will cause the upper and lower cylinders to separate, fully exposing the crushing blades originally encased inside the two cylinders. Simultaneously, starting motor one and motor two will cause the upper and lower cylinders to rotate slowly. Combined with the high-pressure water jets from the nozzles on the vertical plate, this facilitates cleaning of the inner and outer walls of the upper and lower cylinders, and directly washes the blades and shaft connections of the crushing blades, improving cleaning efficiency and reducing cleaning dead zones. The corrugated telescopic tube and the two side walls of the C-shaped frame two are sealed with wear-resistant and corrosion-resistant sealing strips or sealing rings, creating an independent closed space inside the corrugated telescopic tube. This effectively isolates scrap, sewage, and other impurities, preventing them from entering the threaded gaps of the double-ended threaded rod and causing transmission jamming.
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Description

Technical Field

[0001] This utility model relates to the field of slaughterhouse scrap recycling technology, specifically a beef cattle slaughter scrap recycling device. Background Technology

[0002] The beef slaughtering and processing industry generates a large amount of slaughter scraps, including meat scraps, bone fragments, and tendons. Discarding these scraps directly not only wastes resources like protein but also risks environmental pollution due to spoilage and the growth of harmful microorganisms, posing a potential threat to the surrounding ecosystem and public health. Therefore, the industry typically recycles and processes these scraps into feed ingredients, organic fertilizer, and other renewable resources, achieving resource utilization.

[0003] Existing beef cattle slaughtering scrap recycling equipment is difficult to clean. The crushing chamber and crushing blades are mostly closed or semi-closed structures. Multiple parts need to be disassembled to expose the cleaning area during cleaning, which is cumbersome and time-consuming. If the cleaning is not thorough, the remaining scraps can easily breed bacteria, affecting the quality of the subsequent recycled materials.

[0004] Therefore, it is necessary to invent a device for recycling beef cattle slaughter shavings. Utility Model Content

[0005] The purpose of this invention is to provide a beef cattle slaughter shavings recycling device to solve the problems mentioned in the background art.

[0006] To achieve the above objectives, this utility model provides the following technical solution: a beef cattle slaughtering shavings recycling device, comprising a base plate, a C-shaped frame one and a C-shaped frame two fixedly provided on the top of the base plate, a placement box one and a placement box two slidably provided on one side of the C-shaped frame one, a connecting block one and a connecting block two slidably provided on one side of the C-shaped frame two, an upper cylinder rotatably provided between the placement box one and the connecting block one, a lower cylinder rotatably provided between the placement box two and the connecting block two, symmetrically distributed rotating shafts rotatably provided between the C-shaped frame one and the C-shaped frame two, a crushing blade fixedly provided on the outer wall of the rotating shaft, a vertical plate fixedly provided on the top of the base plate, a connecting pipe and multiple water pipes fixedly provided on one side of the vertical plate, the connecting pipe communicating with the multiple water pipes, and multiple nozzles communicating on one side of the water pipes.

[0007] Preferably, a connecting box is fixedly provided on one side of the C-shaped frame, and a motor is fixedly provided symmetrically distributed inside the connecting box. The output shaft of the motor passes through the C-shaped frame and is fixedly connected to the rotating shaft.

[0008] Preferably, a motor is fixedly installed in the first placement box and a motor is fixedly installed in the second placement box. The output shaft of the first motor passes through the first placement box and is fixedly connected to the upper cylinder. The output shaft of the second motor passes through the second placement box and is fixedly connected to the lower cylinder.

[0009] Preferably, the bottom of the upper cylinder is provided with multiple arc-shaped grooves, and a groove 1 is provided in the arc-shaped grooves. Rotary sealing rings are fixedly provided on the outer walls of both ends of the rotating shaft. The rotary sealing rings are rotatably installed in the groove 1. The top of the lower cylinder is provided with a groove 2. Multiple rubber blocks are fixedly provided on the bottom of the upper cylinder. The rubber blocks are movably locked in the groove 2.

[0010] Preferably, a corrugated telescopic tube is fixed between the two side walls of the C-shaped frame, and a double-headed threaded rod is rotatably provided inside the corrugated telescopic tube. A slider one and a slider two are threadedly sleeved on the outer wall of the double-headed threaded rod. The slider one passes through the corrugated telescopic tube and is fixedly connected to the connecting block one, and the slider two passes through the corrugated telescopic tube and is fixedly connected to the connecting block two.

[0011] Preferably, a second motor is fixedly mounted on the top of the second C-shaped frame, and the output shaft of the second motor passes through the second C-shaped frame and is fixedly connected to the double-ended threaded rod.

[0012] Preferably, the top of the upper cylinder has a feed inlet, the top of the feed inlet is movably covered with a cover plate, a block is fixedly provided on one side of the cover plate, and a screw is threaded into the top of the block, the screw being movably inserted into the top of the upper cylinder.

[0013] Preferably, the bottom of the lower cylinder has a discharge port.

[0014] Compared with the prior art, the beneficial effects of this utility model are as follows: 1. When cleaning is required, there is no need to disassemble the equipment. Simply start motor 2 to separate the upper and lower cylinders, so that the crushing blades that were originally wrapped inside the two cylinders are fully exposed. At the same time, starting motor 1 and motor 2 can drive the upper and lower cylinders to rotate slowly. Combined with the high-pressure water jet from the nozzles on the vertical plate, it is convenient to clean the inner and outer walls of the upper and lower cylinders. It can also directly wash the blades and blade shaft connection of the crushing blades, improve the cleaning effect, and reduce cleaning dead corners. 2. The corrugated expansion tube and the two side walls of the C-shaped frame are sealed with wear-resistant and corrosion-resistant sealing strips or sealing rings, so that the inside of the corrugated expansion tube forms an independent closed space, effectively isolating debris, sewage and other impurities, and preventing them from entering the thread gap of the double-threaded rod and causing transmission jamming. Attached Figure Description

[0015] Figure 1 A schematic diagram of the overall structure of this utility model; Figure 2 A schematic diagram of the upper cylinder structure provided by this utility model; Figure 3 A schematic diagram of the lower cylinder structure provided by this utility model; Figure 4A schematic diagram of the rotating shaft structure provided by this utility model; Figure 5 A schematic diagram of the arc-shaped groove structure provided by this utility model; Figure 6 A schematic diagram of the vertical plate structure provided by this utility model.

[0016] In the diagram: 1. Base plate; 11. C-frame one; 12. C-frame two; 13. Vertical plate; 131. Connecting pipe; 132. Water pipe; 133. Nozzle; 14. Connecting box; 15. Motor one; 151. Rotating shaft; 152. Crusher; 153. Rotary sealing ring; 21. Motor two; 22. Double-headed threaded rod; 221. Slider one; 222. Slider two; 23. Corrugated telescopic pipe; 24. Connecting block one; 25. Upper cylinder; 251. Placement box one; 2511. Motor one; 252. Feed inlet; 253. Cover plate; 254. Block; 255. Screw; 256. Arc groove; 2561. Groove one; 257. Rubber block; 26. Connecting block two; 27. Lower cylinder; 271. Placement box two; 272. Motor two; 275. Feed outlet; 278. Groove two. Detailed Implementation

[0017] 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.

[0018] Example: Figures 1-6 As shown, this utility model provides a beef cattle slaughtering shavings recycling device, including a base plate 1. A C-shaped frame 11 and a C-shaped frame 22 are fixedly provided on the top of the base plate 1. A placement box 251 and a placement box 271 are slidably provided on one side of the C-shaped frame 11. A connecting block 24 and a connecting block 26 are slidably provided on one side of the C-shaped frame 22. An upper cylinder 25 is rotatably provided between the placement box 251 and the connecting block 24. A lower cylinder 27 is rotatably provided between the placement box 271 and the connecting block 26. A symmetrically distributed rotating shaft 151 is rotatably provided between the C-shaped frame 11 and the C-shaped frame 22. A crushing blade 152 is fixedly provided on the outer wall of the rotating shaft 151. A vertical plate 13 is fixedly provided on the top of the base plate 1. A connecting pipe 131 and a plurality of water pipes 132 are fixedly provided on one side of the vertical plate 13. The connecting pipe 131 and the plurality of water pipes 132 are connected in communication. A plurality of nozzles 133 are connected to one side of the water pipes 132.

[0019] Furthermore, a connecting box 14 is fixedly provided on one side of the C-shaped frame 11, and symmetrically distributed motors 15 are fixedly provided inside the connecting box 14. The output shaft of the motor 15 passes through the C-shaped frame 11 and is fixedly connected to the rotating shaft 151.

[0020] Furthermore, a motor 2511 and a motor 272 are respectively fixedly installed inside the first placement box 251 and the second placement box 271. The output shaft of the first motor 2511 passes through the first placement box 251 and is fixedly connected to the upper cylinder 25. The output shaft of the second motor 272 passes through the second placement box 271 and is fixedly connected to the lower cylinder 27.

[0021] Furthermore, the bottom of the upper cylinder 25 is provided with multiple arc-shaped grooves 256, and a groove 2561 is provided in each arc-shaped groove 256. Rotary sealing rings 153 are fixedly installed on the outer walls of both ends of the rotating shaft 151. The rotary sealing rings 153 are rotatably installed in the groove 2561. The top of the lower cylinder 27 is provided with a groove 278. The bottom of the upper cylinder 25 is fixedly provided with multiple rubber blocks 257, which are movably engaged in the groove 278. The groove 2561 in the arc-shaped groove 256 at the bottom of the upper cylinder 25 cooperates with the rotating sealing ring 153 on the outer wall of both ends of the rotating shaft 151, which not only ensures the stable rotation of the rotating shaft 151, but also prevents scrap from leaking out from the gap. At the same time, the rubber block 257 at the bottom of the upper cylinder 25 is movably locked in the groove 278 at the top of the lower cylinder 27, which enhances the sealing between the upper cylinder 25 and the lower cylinder 27, further preventing scrap from leaking out during the crushing process, and ensuring that the crushing work is carried out efficiently in a relatively closed space.

[0022] Furthermore, a corrugated telescopic tube 23 is fixedly installed between the two side walls of the C-shaped frame 22. A double-headed threaded rod 22 is rotatably installed inside the corrugated telescopic tube 23. A slider 1 221 and a slider 222 are threadedly fitted on the outer wall of the double-headed threaded rod 22. The slider 1 221 passes through the corrugated telescopic tube 23 and is fixedly connected to the connecting block 1 24. The slider 222 passes through the corrugated telescopic tube 23 and is fixedly connected to the connecting block 26. The corrugated telescopic tube 23 and the two side walls of the C-shaped frame 22 are designed with a sealed structure. By adding wear-resistant and corrosion-resistant sealing strips or sealing rings at the connection gaps, an independent closed space is formed inside the corrugated telescopic tube 23 to prevent impurities from entering the gaps of the double-headed threaded rod 22 and affecting the transmission. The outer wall of the double-headed threaded rod 22 has threaded grooves with opposite ends to facilitate the movement of slider 1 221 and slider 222 in opposite directions.

[0023] Furthermore, a motor 21 is fixedly installed on the top of the C-shaped frame 2 12, and the output shaft of the motor 21 passes through the C-shaped frame 2 12 and is fixedly connected to the double-headed threaded rod 22.

[0024] Furthermore, the top of the upper cylinder 25 is provided with a feed inlet 252, and a cover plate 253 is movably placed on the top of the feed inlet 252. A block 254 is fixed on one side of the cover plate 253, and a screw 255 is threaded into the top of the block 254. The screw 255 is movably inserted into the top of the upper cylinder 25.

[0025] Furthermore, the bottom of the lower cylinder 27 is provided with a discharge port 275.

[0026] Working principle: When using this solution, the beef slaughter shavings to be processed are put into the upper cylinder 25 through the feed inlet 252. After feeding, the cover plate 253 is replaced and the screws 255 are tightened to ensure that the feed inlet 252 is sealed and to prevent the shavings from splashing during the subsequent crushing process. Then, the two motors 15 are started, which in turn drive the two rotating shafts 151 to rotate in opposite directions, thereby driving the two crushing blades 152 to rotate in opposite directions, thus cutting and crushing the beef slaughter shavings. The crushed beef slaughter shavings are discharged through the discharge outlet 275. The operator can collect the shavings by placing a collection container below. When cleaning of the upper cylinder 25, lower cylinder 27, and crusher 152 is required, motor 21 can be started, which will drive the double-headed threaded rod 22 to rotate. This will cause slider 1 221 and slider 2 222 to move in opposite directions, which in turn causes connecting block 1 24 and connecting block 2 26 to move in opposite directions. This will cause the upper cylinder 25 and lower cylinder 27 to gradually separate, exposing the crusher 152, making it convenient for operators or cleaning devices to thoroughly clean each component. Then, motor 1 2511 and motor 2 272 are started, which will drive the upper cylinder 25 and lower cylinder 27 to rotate slowly. At the same time, the water source of connecting pipe 131 is turned on, so that nozzle 133 continuously sprays high-pressure water. The water flow forms an all-round rinsing path inside the equipment: on the one hand, it rinses the inner and outer walls of the upper cylinder 25 and lower cylinder 27 to remove residual scrap and oil stains; on the other hand, it directly rinses the exposed crusher 152 to clean the blades and impurities at the connection of the blade shaft, improving the cleaning effect.

[0027] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A beef cattle slaughter trim recovery apparatus comprising a floor (1) characterised in that: The top of the base plate (1) is fixedly provided with a C-shaped frame one (11) and a C-shaped frame two (12). A placement box one (251) and a placement box two (271) are slidably provided on one side of the C-shaped frame one (11). A connecting block one (24) and a connecting block two (26) are slidably provided on one side of the C-shaped frame two (12). An upper cylinder (25) is rotatably provided between the placement box one (251) and the connecting block one (24). A lower cylinder (27) is rotatably provided between the placement box two (271) and the connecting block two (26). A symmetrically distributed rotating shaft (151) is provided between the C-shaped frame one (11) and the C-shaped frame two (12). A crushing blade (152) is fixed on the outer wall of the rotating shaft (151). A vertical plate (13) is fixed on the top of the base plate (1). A connecting pipe (131) and multiple water pipes (132) are fixed on one side of the vertical plate (13). The connecting pipe (131) is connected to the multiple water pipes (132). Multiple nozzles (133) are connected to one side of the water pipes (132).

2. A beef cattle slaughter offal recovery apparatus according to claim 1, characterised in that: A connecting box (14) is fixedly provided on one side of the C-shaped frame (11). A motor (15) is fixedly provided symmetrically inside the connecting box (14). The output shaft of the motor (15) passes through the C-shaped frame (11) and is fixedly connected to the rotating shaft (151).

3. The beef cattle slaughter shavings recycling equipment according to claim 1, characterized in that: Motor 1 (2511) and Motor 2 (272) are respectively fixedly installed in the first placement box (251) and the second placement box (271). The output shaft of Motor 1 (2511) passes through the first placement box (251) and is fixedly connected to the upper cylinder (25). The output shaft of Motor 2 (272) passes through the second placement box (271) and is fixedly connected to the lower cylinder (27).

4. The beef cattle slaughter shavings recycling equipment according to claim 1, characterized in that: The bottom of the upper cylinder (25) is provided with multiple arc-shaped grooves (256), and groove 1 (2561) is provided in the arc-shaped grooves (256). Rotary sealing rings (153) are fixed on the outer walls of both ends of the rotating shaft (151). The rotating sealing rings (153) are rotatably installed in groove 1 (2561). Groove 2 (278) is provided on the top of the lower cylinder (27). Multiple rubber blocks (257) are fixed on the bottom of the upper cylinder (25). The rubber blocks (257) are movably locked in groove 2 (278).

5. The beef cattle slaughter shavings recycling equipment according to claim 1, characterized in that: A corrugated telescopic tube (23) is fixed between the two side walls of the C-shaped frame 2 (12). A double-headed threaded rod (22) is rotatably provided inside the corrugated telescopic tube (23). A slider 1 (221) and a slider 2 (222) are threadedly fitted on the outer wall of the double-headed threaded rod (22). The slider 1 (221) passes through the corrugated telescopic tube (23) and is fixedly connected to the connecting block 1 (24). The slider 2 (222) passes through the corrugated telescopic tube (23) and is fixedly connected to the connecting block 2 (26).

6. The beef cattle slaughter shavings recycling equipment according to claim 5, characterized in that: The top of the C-shaped frame 2 (12) is fixedly provided with a motor 2 (21), and the output shaft of the motor 2 (21) passes through the C-shaped frame 2 (12) and is fixedly connected to the double-headed threaded rod (22).

7. The beef cattle slaughter shavings recycling equipment according to claim 1, characterized in that: The upper cylinder (25) has a feed inlet (252) at the top. A cover plate (253) is movably placed on the top of the feed inlet (252). A block (254) is fixed on one side of the cover plate (253). A screw (255) is threaded into the top of the block (254). The screw (255) is movably inserted into the top of the upper cylinder (25).

8. The beef cattle slaughter shavings recycling equipment according to claim 1, characterized in that: The bottom of the lower cylinder (27) is provided with a discharge port (275).