Biological fermentation feed processing material residue recovery device

By designing a biofermented feed slag recycling device and using crushing, screening and compression technologies, the problem of feed slag being not effectively recycled and utilized is solved, and efficient utilization of feed slag and resource conservation is achieved.

CN222998865UActive Publication Date: 2025-06-20CHONGQING YONG DA FEEDSTUFF CO LTD
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Patent Information

Application Number
CN202422001891.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-19
Publication Date
2025-06-20
Estimated Expiration
2034-08-19

AI Technical Summary

Technical Problem

The feed slag generated during the processing of biofermented feed cannot be effectively recycled, resulting in waste of resources and space occupation.

Method used

A biofermented feed slag recycling device is designed, including a slag collection seat, multi-stage electric push rod, extrusion board, screening seat, crushing bin and crushing motor. Through the steps of crushing, screening and compression, the slag is crushed into small particles, automatically screened, and finally compressed and molded, for easy storage and transportation.

Benefits of technology

It realizes efficient crushing, automatic screening and compression forming of slag, solves the problems of resource waste and space occupation, and improves the utilization rate of slag.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a biological fermentation feed processing material residue recovery device which comprises a residue collecting base, a multi-stage electric push rod is arranged on one side of the residue collecting base, one end of the multi-stage electric push rod penetrates through the residue collecting base and is connected with an extrusion plate, a screening base is arranged at the top of the residue collecting base, a screening assembly is arranged in the screening base, and the extrusion plate is connected with the screening assembly. An integrated structure is adopted, in the running process, biological fermentation feed residues are smashed into small particles through cooperation of the smashing bin and the smashing blades, the smashed residues are automatically screened through the screening assembly, compression forming operation is conducted on the residues after screening is finished, and therefore the biological fermentation feed residues are obtained. And subsequent storage and transportation of the feed residues are facilitated.
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Description

Technical Field

[0001] The utility model relates to the technical field of biological fermentation feed processing, in particular to a device for recycling the residue of biological fermentation feed processing. Background Art

[0002] Biological fermentation feed is made by fermenting organic waste or plant raw materials using microorganisms (such as yeast, bacteria, fungi, etc.). This kind of feed not only improves the nutritional value and digestibility of the feed, but also improves the breeding environment, contributing to animal welfare and environmental protection;

[0003] In the processing and production process of biological fermentation feed, a large amount of feed residue will be generated. In the existing production process of biological fermentation feed, most of the generated feed residue is not processed separately, but directly discarded or simply recycled. Due to the large volume of the feed residue, the unprocessed feed residue will occupy a large amount of space, causing certain resource waste. Content of the Utility Model

[0004] In order to solve the above technical problems, the utility model provides a device for recycling the residue of biological fermentation feed processing, which is convenient for realizing the recycling of the residue.

[0005] To achieve the above purposes, the utility model is realized through the following technical solutions: A device for recycling the residue of biological fermentation feed processing includes a hollow slag collection seat. It is characterized in that a multi-stage electric push rod is arranged outside the right side of the slag collection seat, and an extrusion plate that can move left and right along the slag collection seat is arranged inside the slag collection seat. One end of the multi-stage electric push rod penetrates through the slag collection seat and is connected to the extrusion plate. A hollow screening seat is arranged on the right side of the top cover of the slag collection seat. A screening component is arranged inside the screening seat. A crushing bin is installed on the top of the screening seat. A crushing motor is installed on the top of the crushing bin. The driving end of the crushing motor penetrates through the top wall of the crushing bin and is connected to a crushing blade. The lower side of the crushing bin is communicated with the screening seat, and an assembly plate is arranged at the communicating part. Adjusting electric push rods are arranged on both the front and rear sides of the assembly plate. An insertion plate is inserted into the communicating part, and the output end of the adjusting electric push rod is connected to one side of the insertion plate.

[0006] Preferably, the screening component includes a driving member installed on the outer wall of one side of the screening seat. The driving end of the driving member is connected to a cam. A screening frame is slidably connected to the middle inside the screening seat. One side of the screening frame penetrates through the inner wall of the screening seat and is in close contact with the cam. A sieve plate is arranged inside the screening frame. An insertion block is arranged on one side inside the screening frame. One side of the sieve plate is inserted into the insertion block. A switch door is arranged on one side of the screening frame.

[0007] Preferably, a groove is provided on the side of the sieve plate away from the insertion block, a threaded seat is provided inside the groove, and the lower side of the switch door is threadedly connected to the threaded seat through a screw.

[0008] Preferably, a feed inlet is provided at the top of the crushing bin.

[0009] Preferably, the side of the screening frame away from the driving member is connected to the inner wall of the screening seat through a spring.

[0010] The biological fermentation feed processing residue recovery device provided by the present utility model has the following beneficial effects: This technical solution adopts an integrated structure. During operation, first, the crushing bin and the crushing blades cooperate to crush the biological fermentation feed residue into smaller particles, and the crushed residue is automatically screened by the screening assembly. After the screening is completed, the residue is subjected to a compression molding operation, which is convenient for subsequent storage and transportation of the feed residue. BRIEF DESCRIPTION OF THE DRAWINGS

[0011] Figure 1 is the front view structural schematic diagram of the present utility model.

[0012] Figure 2 is the top view structural schematic diagram of the assembly plate of the present utility model.

[0013] Figure 3 is the top view structural schematic diagram of the screening frame of the present utility model.

[0014] Figure 4 is the three-dimensional structural schematic diagram of the present utility model.

[0015] In the figure: 1, slag collection seat; 2, multi-stage electric push rod; 3, extrusion plate; 4, screening seat; 5, crushing bin; 6, crushing motor; 7, crushing blade; 8, assembly plate; 9, adjusting electric push rod; 10, insertion plate; 11, driving member; 12, cam; 13, screening frame; 14, sieve plate; 15, insertion block; 16, switch door; 17, threaded seat; 18, screw; 19, feed inlet; 20, spring. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0016] Based on the embodiments in the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.

[0017] Embodiment

[0018] Please refer to Figures 1-4, the utility model provides a device for recycling the residue of biological fermentation feed processing; it includes a hollow slag collection seat 1, a multi-stage electric push rod 2 is arranged outside the right side of the slag collection seat 1, and an extrusion plate 3 capable of moving left and right along the slag collection seat 1 is arranged inside the slag collection seat 1. The left end of the multi-stage electric push rod 2 penetrates through the slag collection seat 1 and is connected with the extrusion plate 3. On the top cover of the slag collection seat 1, a hollow screening seat 4 is arranged on the right side. A screening assembly is arranged inside the screening seat 4. A crushing bin 5 is installed above the screening seat 4. A crushing motor 6 is installed on the top of the crushing bin 5. The driving end of the crushing motor 6 penetrates through the top surface of the crushing bin 5 and is connected with a crushing blade 7. The crushing blade 7 is located inside the crushing bin 5. The lower side of the crushing bin 5 is communicated with the screening seat 4. An assembly plate 8 is arranged at the communicating place. Adjusting electric push rods 9 are arranged on both the front and back sides of the assembly plate 8. An insertion plate 10 is inserted into the communicating place between the crushing bin 5 and the screening seat 4. The output end of the adjusting electric push rod 9 is connected with one side of the insertion plate 10. A feed inlet 19 is arranged at the top of the crushing bin 5.

[0019] The screening assembly includes a driving part 11. The driving part 11 is installed on the outer wall of one side of the screening seat 4. The driving end of the driving part 11 is connected with a cam 12. A screening frame 13 is slidably connected to the middle part inside the screening seat 4. One side of the screening frame 13 penetrates through the inner wall of the screening seat 4 and is in close contact with the cam 12. The other side of the screening frame is connected with the inner wall of the screening seat through a spring 20. A screen plate 14 is arranged inside the screening frame 13. Specifically, an insertion block 15 is arranged on one side inside the screening frame 13. One side of the screen plate 14 is inserted into the insertion block 15. A switch door 16 is arranged on one side of the screening frame 13. A groove is arranged on the side of the screen plate away from the insertion block. A threaded seat 17 is arranged inside the groove. The lower side of the switch door 16 is threadedly connected with the threaded seat 17 through a screw 18.

[0020] During the processing of biological fermentation feed, residues will be generated. The operator can put the residues into the crushing bin 5 through the feed inlet 19, and drive the crushing blade 7 to run through the crushing motor 6, so as to crush the residues into smaller particles. After the crushing operation is completed, the adjusting electric push rod 9 runs, and the insertion plate 10 can be withdrawn from the communicating place between the lower side of the crushing bin 5 and the upper side of the screening seat 4.

[0021] Subsequently, the crushed residues will fall onto the top of the screen plate 14 located inside the screening seat 4. Then the driving part 11 runs. Through the cooperation of the cam 12 and the spring 20, the screening frame 13 and the screen plate 14 can be driven to perform reciprocating motion, so as to automatically screen the crushed residues. The screened residues will fall into the slag collection seat 1 through the first opening and the second opening. At the same time, the larger particles screened out will be located on the top of the screen plate 14. Then the multi-stage electric push rod 2 runs, and the residues inside the slag collection seat 1 can be compressed through the extrusion plate 3. A material taking port is arranged on the side of the top of the slag collection seat 1 away from the multi-stage electric push rod 2. After the compression is completed, the compressed residues can be taken out through the material taking port for subsequent storage and transportation of the feed residues.

[0022] After the operation of the device is completed, the operator can separate the screw 18 from the threaded seat 17, then open the switch door 16, and separate the sieve plate 14 from the insertion block 15. At this time, the sieve plate 14 can be taken out, and the operator can process the slag remaining on the top of the sieve plate 14.

[0023] Although the embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A biological fermentation feed processing residue recovery device, comprising a hollow residue collection seat, characterized in that: A multi-stage electric push rod is arranged outside the right side of the slag collecting seat, an extrusion plate which can move left and right along the slag collecting seat is arranged inside the slag collecting seat, one end of the multi-stage electric push rod passes through the slag collecting seat and is connected with the extrusion plate, a hollow screening seat is arranged on the right side of the top cover of the slag collecting seat, a screening assembly is arranged inside the screening seat, a crushing bin is installed on the top of the screening seat, a crushing motor is installed on the top of the crushing bin, a driving end of the crushing motor passes through the top wall of the crushing bin and is connected with a crushing blade, the lower side of the crushing bin is connected with the screening seat, an assembly plate is arranged at the connection point, and adjusting electric push rods are arranged on the front and rear sides of the assembly plate, an insert plate is inserted in the connection point, and the output end of the adjusting electric push rod is connected with one side of the insert plate.

2. The biological fermentation feed processing residue recovery device according to claim 1, characterized in that: The screening assembly includes a driving member, which is installed on the outer wall of one side of the screening seat. A cam is connected to the driving end of the driving member. A screening frame is slidably connected to the middle part of the screening seat. One side of the screening frame passes through the inner wall of the screening seat and is tightly attached to the cam. A sieve plate is arranged inside the screening frame. An insertion block is arranged on one side of the screening frame. One side of the sieve plate is plugged into the insertion block. A switch door is arranged on one side of the screening frame.

3. The biological fermentation feed processing residue recovery device according to claim 2, characterized in that: A groove is arranged on one side of the screen plate away from the insert block, a threaded seat is arranged inside the groove, and the lower side of the switch door is threadedly connected with the threaded seat through screws.

4. The biological fermentation feed processing residue recovery device according to claim 3, characterized in that: A feeding port is arranged on the top of the crushing bin.

5. The biological fermentation feed processing residue recovery device according to claim 4, characterized in that: The side of the screening frame away from the driving member is connected to the inner wall of the screening seat through a spring.