Rabbit feeding conveying belt with self-cleaning function
By designing a self-cleaning feed belt, which uses a scraper and brush roller to automatically clean impurities from the feed belt, the problem of incomplete cleaning by traditional feed belts is solved, thus improving breeding efficiency and health and safety.
Patent Information
- Application Number
- CN202520589358.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-31
- Publication Date
- 2026-02-03
- Estimated Expiration
- 2035-03-31
AI Technical Summary
Traditional rabbit feeding conveyors produce feed dust during long-term operation, leading to reduced conveying efficiency, equipment contamination, and health risks. Furthermore, manual cleaning is ineffective and cannot meet the cleanliness and stability requirements of modern, efficient farming.
Design a self-cleaning feed belt, including a scraper and a brush roller. The scraper consists of a triangular main body, a feed belt scraper and a rubber roller scraper, and is used to clean impurities on the reverse side of the feed belt. The brush roller cleans impurities on the front side of the feed belt, thereby achieving automated cleaning.
It enables automatic cleaning of the feed belt, reduces manual labor, lowers breeding costs, improves conveying efficiency, ensures feed cleanliness and hygiene, reduces the risk of bacterial growth, and protects the health of rabbits.
Smart Images

Figure CN223865667U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of breeding equipment, and specifically relates to a rabbit feeding and feeding belt with self-cleaning function. BACKGROUND
[0002] In the large-scale rabbit breeding industry, the feeding belt as the key equipment of feed conveying plays an indispensable role. However, the traditional rabbit feeding and feeding belt exposes many problems to be solved in the long-term operation. On the one hand, during the feed conveying, the feed tailings will inevitably be generated due to the friction between the feed particles and the collision with the feeding belt. With the accumulation of time, these feed tailings not only hinder the smooth conveying of the feed and reduce the conveying efficiency, but also breed a large number of bacteria due to factors such as humid environment, thereby polluting the feed and seriously threatening the health of rabbits; on the other hand, the feed tailings may also have adverse effects on the normal operation of the equipment during continuous operation, and regular cleaning and maintenance are also needed.
[0003] At present, the cleaning work of the feeding belt mainly depends on manual operation, which not only consumes a lot of manpower and time cost, but also the cleaning effect is often unsatisfactory. Manual cleaning is difficult to be comprehensive and meticulous, and cannot meet the strict requirements of modern high-efficiency breeding for equipment cleanliness and stability.
[0004] Therefore, it is an urgent need to develop a feeding belt that can be automatically cleaned to improve the efficiency and quality of rabbit breeding. UTILITY MODEL CONTENTS
[0005] The utility model aims at providing a rabbit feeding and feeding belt with self-cleaning function to solve the above technical problems.
[0006] To solve the above problems, the utility model adopts the technical scheme of:
[0007] A rabbit feeding and feeding belt with self-cleaning function, comprising a feeding belt, a power roller, a driven roller, a first tensioning roller and a second tensioning roller, the feeding belt is sleeved on the power roller and the driven roller, the first tensioning roller is located at the rear side of the power roller, the second tensioning roller is located at the front side of the driven roller, and the first tensioning roller and the second tensioning roller are both located below the downward feeding belt; a material scraper is arranged between the power roller and the first tensioning roller, and the material scraper is located above the downward feeding belt.
[0008] Preferably, the material scraper comprises a triangular main plate body, a material belt scraper perpendicular to two side edges of the main plate body and a rubber roller scraper perpendicular to the bottom edge of the main plate body, a connecting lug is arranged at the bottom corner part of the main plate body, and an assembly hole is arranged on the connecting lug; during assembly, the main plate body of the material scraper is parallel to the feeding belt, the bottom of the material belt scraper is in contact with the reverse side of the feeding belt, and the top edge of the rubber roller scraper is in contact with the roller surface of the power roller.
[0009] Preferably, two triangular material guide plates are symmetrically arranged on the main plate body of the material scraper, both of which are in the shape of a slope, the bottom edges of which are fixed on the inner side wall of the rubber roller scraper, and the outer side edges of which are fixed on the main plate body, and the inner side edges are opposite to each other; the positions where the main plate body and the rubber roller scraper are connected are respectively provided with a material falling port at both ends; and the material falling port is located outside the bottom corner of the material guide plate.
[0010] Preferably, the top edge of the rubber roller scraper is bent outward by 180 degrees to form a circular arc scraping surface.
[0011] Preferably, the position where the material belt scraper and the main plate body are connected is bent by 90 degrees to form a circular arc scraping surface.
[0012] Preferably, a brush roller is arranged between the driven roller and the second tensioning roller, and the brush roller is located below the downward feeding belt.
[0013] Beneficial effects: compared with the prior art, the automatic cleaning of the material ends and other impurities on the feeding belt is realized, the workload and frequency of manual cleaning are greatly reduced, the breeding cost is effectively reduced, the breeding efficiency is significantly improved, the breeding operation is more efficient and convenient, meanwhile, the cleanliness of the feed is effectively ensured, the risk of bacterial breeding and spread is reduced, and a solid guarantee is provided for the healthy growth of rabbits. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 It is a structural schematic view of the utility model;
[0015] Figure 2 It is a three-dimensional structural schematic view of the material scraper in the utility model;
[0016] Figure 3 It is a practical application schematic view of the utility model.
[0017] The signs are as follows: 1-driven roller; 2-second tensioning roller; 3-feeding belt; 4-power roller; 5-fixed plate; 6-material scraper; 7-first tensioning roller; 8-brush roller; 9-material end collecting box; 61-main plate body; 62-material belt scraper; 63-rubber roller scraper; 64-material falling port; 65-material guide plate; 66-material scraping bent edge. DETAILED DESCRIPTION
[0018] The technical scheme of the utility model will be described clearly and completely in combination with specific embodiments and drawings. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor belong to the protection scope of the utility model. Embodiment:
[0019] Reference Figure 1 As shown in the figure, the rabbit feeding belt with self-cleaning function described in this embodiment includes a feeding belt 3, a power roller 4, a driven roller 1, a first tension roller 7, and a second tension roller 2. The feeding belt 3 is fitted on the power roller 4 and the driven roller 1. The first tension roller 7 is located behind the power roller 4, and the second tension roller 2 is located in front of the driven roller 1. Both the first tension roller 7 and the second tension roller 2 are located below the downward feeding belt.
[0020] A scraper 6 is disposed between the power roller 4 and the first tension roller 7, and the scraper 6 is located above the downward feeding belt. Specifically, as Figure 2 As shown, the scraper 6 includes a triangular main body 61 (preferably an isosceles triangle), a strip scraper 62 perpendicular to two sides of the main body 61, and a rubber roller scraper 63 perpendicular to the bottom edge of the main body 61. During assembly, the main body 61 of the scraper 6 is parallel to the feeding belt 3, and the bottom of the strip scraper 62 contacts the reverse side of the feeding belt 3 to scrape off the material residue and impurities attached to the reverse side of the feeding belt 3. The top edge of the rubber roller scraper 63 contacts the roller surface of the power roller 4 to scrape off the material residue and impurities attached to the roller surface of the power roller 4. To avoid damage to the surface of the feeding belt 3 and the roller surface of the power roller 3 during scraping, the top edge of the rubber roller scraper 63 is bent outward by 180° to form an arc scraping surface 66, and the part where the strip scraper 62 contacts the main body 61 is an arc scraping surface formed by a 90° bend.
[0021] Two triangular guide plates 65 are symmetrically arranged on the main body 61 of the scraper 6. Both guide plates 65 are sloping, with their bottom edges fixed to the inner wall of the rubber roller scraper 63 and their outer edges fixed to the main body 61, and their inner edges facing each other. A discharge port 64 is provided at both ends of the part where the main body 61 connects with the rubber roller scraper 63. The discharge port 64 is located outside the bottom corner of the guide plate 65. After the rubber roller scraper 63 scrapes off the material residue and impurities adhering to the surface of the power roller 4, the residue slides down through the sloping guide plates 65 and falls from the discharge port 64 into the material residue collection box 9 below.
[0022] A brush roller 8 is provided between the driven roller 1 and the second tension roller 2. The brush roller 8 is located below the downward feeding belt and contacts the bottom surface of the downward feeding belt. It is used to clean the material residue attached to the front of the feeding belt 3.
[0023] The bottom corner of the main board body 61 is provided with a connecting ear 67, and the connecting ear 67 is provided with an assembly hole.
[0024] In specific implementation, such as Figure 3As shown, the power roller 4 and the first tension roller 7 are mounted on the fixed plate 5 of the cage frame, and the connecting lug 67 of the scraper 6 is fastened on the fixed plate 5 by bolts. The driven roller 1, the second tension roller 2 and the brush roller 8 are mounted on the mounting frame at the tail end of the cage frame. During the feeding process, the power roller 4 is driven to drive the feeding belt 3 to run under the driving of the driving device; the feeding belt 3 drives the driven roller 1, the brush roller 8 and the two tension rollers to rotate. The belt scraper 62 of the scraper 6 scrapes the feed residues and impurities attached to the reverse side of the feeding belt 3; the top edge of the rubber roller scraper 63 is in contact with the roller surface of the power roller 4 to scrape the feed residues and impurities attached to the roller surface of the power roller 4; and the brush roller 8 cleans the feed residues attached to the front side of the feeding belt 3. Thus, the automatic cleaning of the feed residues and other impurities on the front side and the reverse side of the feeding belt is realized, the workload and frequency of manual cleaning are greatly reduced, the breeding cost is effectively reduced, the breeding efficiency is significantly improved, the breeding operation is more efficient and convenient, meanwhile, the cleanliness of the feed is effectively ensured, the risk of bacterial breeding and spread is reduced, and a solid guarantee is provided for the healthy growth of rabbits.
[0025] The contents not described in detail in the specification belong to the prior art known by the person skilled in the art.
[0026] Although the utility model has been described in detail with reference to the foregoing embodiments, the skilled in the art can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacement to part of the technical features, and any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the utility model should be included in the protection scope of the utility model.
Claims
1. A rabbit feeding conveyor belt with self-cleaning function, comprising a feeding belt (3), a power roller (4), a driven roller (1), a first tension roller (7), and a second tension roller (2), wherein the feeding belt (3) is fitted onto the power roller (4) and the driven roller (1), the first tension roller (7) is located behind the power roller (4), the second tension roller (2) is located in front of the driven roller (1), and both the first tension roller (7) and the second tension roller (2) are located below the descending feeding belt; characterized in that: A scraper (6) is provided between the power roller (4) and the first tension roller (7), and the scraper (6) is located above the downward feeding belt.
2. The rabbit feeding belt with self-cleaning function according to claim 1, characterized in that: The scraper (6) includes a triangular main body (61), a strip scraper (62) perpendicular to the two sides of the main body (61) and a rubber roller scraper (63) perpendicular to the bottom edge of the main body (61). The bottom corner of the main body (61) is provided with a connecting ear (67), and the connecting ear (67) is provided with an assembly hole. During assembly, the main body (61) of the scraper (6) is parallel to the feeding belt (3), and the bottom of the strip scraper (62) is in contact with the back of the feeding belt (3). The top edge of the rubber roller scraper (63) is in contact with the roller surface of the power roller (4).
3. The rabbit feeding belt with self-cleaning function according to claim 2, characterized in that: The scraper (6) has two triangular guide plates (65) symmetrically arranged on the main body (61). Both guide plates (65) are sloping, and their bottom edges are fixed to the inner side wall of the rubber roller scraper (63). Their outer edges are fixed to the main body (61), and their inner edges are connected to each other. The main body (61) and the rubber roller scraper (63) are respectively provided with a drop port (64) at both ends. The drop port (64) is located on the outer side of the bottom corner of the guide plate (65).
4. A rabbit feeding belt with self-cleaning function according to claim 2 or 3, characterized in that: The top edge of the rubber roller scraper (63) is bent outward by 180° to form an arc scraping surface (66).
5. A rabbit feeding belt with self-cleaning function according to claim 2 or 3, characterized in that: The part where the scraper (62) of the material strip connects with the main body (61) is a circular arc scraping surface formed by a 90° bend.
6. A rabbit feeding belt with self-cleaning function according to claim 1 or 3, characterized in that: A brush roller (8) is provided between the driven roller (1) and the second tension roller (2), and the brush roller (8) is located below the downward feeding belt.