A proportioning device for biological feed research and development

CN224613652UActive Publication Date: 2026-08-11HEILONGJIANG POLYTECHNIC
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-19
Publication Date
2026-08-11

AI Technical Summary

Technical Problem

经检索,公开号为CN215693264U3,公开了一种改善家禽肠道健康生物饲料研发用配比装置,通过先将原料拿起并倒入到一个定量筒内,当原料倒入完成后再将添加剂拿起,添加剂在倒入到另一个定量筒内时通过一边倒入一边观察数字刻度线,能够对原料和添加剂进行定量配比,提高了饲料的研发效率,减少了工作人员的工作量;然而,在生物饲料的研发过程中,对原料配比的精确计量是至关重要的环节,该装置依靠定量筒完成原料配比操作,可能会导致不同原料之间的配比出现偏差,从而导致生物饲料的研发失败,为此,我们提出一种生物饲料研发用配比装置

Benefits of technology

[0011]采用上述技术方案,通过将饲料原料放置到进料筒中,使得饲料原料对电子秤进行挤压,此时电子秤会将饲料原料的重量显示出来,当进料筒内部饲料原料的重量达到需求后停止,然后通过第一电机和齿轮驱使第一螺杆带动移动块向一侧移动,反之向另一侧移动,此时移动块会推动第一滑杆滑动,从而使电子秤对进料筒的封闭消失,使进料筒内部的饲料原料掉入混合罐中,然后依次对其它饲料原料进行称重并投放,使生物饲料研发用配比装置可以对需要投放的饲料原料进行精准称重,避免饲料原料配比失误导致的研发失败;

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Abstract

This utility model discloses a proportioning device for biological feed research and development. The device relates to the field of feed research and development technology. It includes a base, with a mixing tank and a fixing plate fixed to the upper end of the base. A control box and an observation window are fixed to one end of the mixing tank. A feed cylinder is fixed to one side of the upper end of the mixing tank. A connecting plate is fixed inside the mixing tank near the top. A protective box is fixed to one side of the mixing tank, and a fixing block is fixed to one side of the protective box. The advantages of this utility model are: it allows for precise weighing of the feed ingredients to be added, avoiding research failures caused by incorrect proportioning of feed ingredients; it allows for scraping off feed ingredients adhering to the inner wall of the mixing tank; and it allows for quick loading and unloading of the collection bucket, preventing the collection bucket from shifting and facilitating feed collection.
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Description

Technical Field

[0001] This utility model relates to the field of feed research and development technology, specifically to a formulation device for biological feed research and development. Background Technology

[0002] Bio-feed refers to feed products that utilize biotechnology, such as microbial fermentation, enzymatic hydrolysis, and genetic engineering, to transform agricultural waste, industrial by-products, or specific raw materials into feed products rich in active ingredients, high in nutritional value, and beneficial to animal health. The formulation device in bio-feed research and development is an equipment system used to accurately mix and adjust various raw materials. Its core function is to ensure that the components in the formula are mixed evenly in a preset ratio to meet the process requirements of bio-feed production or experimentation. A search revealed CN215693264U3, which discloses a formulation device for developing biological feed to improve poultry gut health. This device first picks up the raw materials and pours them into a metering cylinder. After the raw materials are poured in, the additives are then picked up and poured into another metering cylinder. By observing the digital scale while pouring, the raw materials and additives can be quantitatively proportioned, improving feed development efficiency and reducing the workload of staff. However, accurate measurement of raw material proportions is crucial in the development of biological feed. This device, relying on metering cylinders for raw material proportioning, may lead to deviations in the proportions of different raw materials, resulting in the failure of biological feed development. Therefore, we propose a formulation device for biological feed development. Utility Model Content

[0003] The purpose of this invention is to provide a formulation device for the research and development of biological feed.

[0004] To address the problems mentioned in the background art, this utility model provides the following technical solution: a proportioning device for biological feed research and development, comprising a base, a mixing tank and a fixing plate fixed to the upper end of the base, a control box and an observation window fixed to one end of the mixing tank, a feeding cylinder fixed to one side of the upper end of the mixing tank, a connecting plate fixed inside the mixing tank near the top, a protective box fixed to one side of the mixing tank, a fixing block fixed to one side of the protective box, a first motor fixed to the upper end of the fixing block, a gear installed at the lower end of the first motor, a gear cylinder rotatably arranged on one side of the protective box near the lower side, a first screw arranged inside the gear cylinder, a moving block fixed to one side of the first screw, an electronic scale fixed to the upper end of the moving block, first sliding rods fixed to both ends of one side of the moving block, a collecting hopper fixed to one side of the upper end of the connecting plate, and an electronic valve arranged at the lower end of the mixing tank.

[0005] Preferably, the first slide rod passes through the protective box, and the first slide rod is slidably connected to the protective box.

[0006] Preferably, the gear is meshed with the gear cylinder, and the protective box is slidably connected to the moving block.

[0007] Preferably, the movable block and the electronic scale are located directly above the hopper, and the movable block and the movable block are located directly below the feed cylinder.

[0008] Preferably, a second motor is fixed at the center of the upper end of the mixing tank, a mixing rod is provided at the lower end of the second motor, a first scraper is fixed at the top of the side wall of the mixing rod, and a second scraper is fixed on both sides of the bottom of the side wall of the mixing rod. A second slide rod and a second screw are respectively fixed at one end of the fixing plate, a clamping block is provided at one end of the second slide rod, and a collection bucket is placed at the center of the upper end of the base.

[0009] Preferably, the mixing rod passes through the connecting plate, and both the first scraper and the second scraper are located inside the mixing tank, and both the first scraper and the second scraper are located below the connecting plate.

[0010] Preferably, both the second slide rod and the second screw pass through the clamping block, and the second slide rod is slidably connected to the clamping block.

[0011] Using the above technical solution, feed ingredients are placed into the feeding cylinder, causing them to press against the electronic scale. The scale displays the weight of the feed ingredients. Once the required weight is reached, the feeding cylinder stops. Then, a first motor and gears drive a first screw to move a moving block to one side and vice versa. This moving block pushes a first sliding rod, causing the electronic scale to lose its seal on the feeding cylinder. The feed ingredients then fall into the mixing tank. Other feed ingredients are then weighed and added sequentially. This allows the biofeed R&D formulation device to accurately weigh the feed ingredients to be added, avoiding R&D failures caused by incorrect feed ingredient ratios. Using the above technical solution, the feed ingredients can be stirred and mixed by the second motor and the mixing rod. During mixing, the side walls and bottom of the mixing tank can be scraped by the first and second scraper plates to prevent the feed ingredients from adhering to the inner wall of the mixing tank. Then, by rotating the second screw, the distance between the fixing plate and the clamping block can be adjusted so that the fixing plate and the clamping block can clamp the collection bucket, which is convenient for picking up and putting down the collection bucket. The bio-feed research and development proportioning device can scrape off the feed ingredients adhering to the inner wall of the mixing tank and can quickly load and unload the collection bucket without it shifting, which is convenient for collecting feed. Attached Figure Description

[0012] Figure 1 This is a schematic diagram of the structure in an embodiment of the present utility model; Figure 2 This is a cross-sectional view of an embodiment of the present utility model; Figure 3 This is a schematic diagram of the internal structure of the mixing tank in an embodiment of the present invention; Figure 4 This is a schematic diagram of the connection structure between the protective box and the first sliding rod in an embodiment of this utility model.

[0013] In the diagram: 1. Base; 2. Mixing tank; 3. Control box; 4. Feed cylinder; 5. Observation window; 6. Connecting plate; 7. Protection box; 8. Fixing block; 9. First motor; 10. Gear; 11. Gear cylinder; 12. First screw; 13. Moving block; 14. Electronic scale; 15. First slide bar; 16. Collection hopper; 17. Electronic valve; 18. Second motor; 19. Mixing rod; 20. First scraper; 21. Second scraper; 22. Fixing plate; 23. Second slide bar; 24. Clamping block; 25. Second screw; 26. Collection bucket. Detailed Implementation

[0014] The specific embodiments of this utility model will be further described below with reference to the accompanying drawings. It should be noted that these descriptions are for the purpose of aiding understanding of this utility model, but do not constitute a limitation thereof. Furthermore, the technical features involved in the various embodiments of this utility model described below can be combined with each other as long as they do not conflict with each other.

[0015] Example 1: Please see Figure 1-4 This utility model provides a technical solution: a formulation device for biological feed research and development, including a base 1, a mixing tank 2 and a fixing plate 22 fixed to the upper end of the base 1, a control box 3 and an observation window 5 fixed to one end of the mixing tank 2, a feed cylinder 4 fixed to one side of the upper end of the mixing tank 2, a connecting plate 6 fixed to the inside of the mixing tank 2 near the top, a protective box 7 fixed to one side of the mixing tank 2, a fixing block 8 fixed to one side of the protective box 7, a first motor 9 fixed to the upper end of the fixing block 8, a gear 10 installed at the lower end of the first motor 9, and a gear cylinder 11 rotatably arranged on one side of the protective box 7 near the lower side. A first screw 12 is provided on the inner side of the mixing tank 2. A moving block 13 is fixed on one side of the first screw 12. An electronic scale 14 is fixed on the upper end of the moving block 13. A first slide rod 15 is fixed on both ends of one side of the moving block 13. A hopper 16 is fixed on one side of the upper end of the connecting plate 6. An electronic valve 17 is provided at the lower end of the mixing tank 2. The first slide rod 15 passes through the protective box 7 and is slidably connected to the protective box 7. The gear 10 is meshed with the gear cylinder 11. The protective box 7 is slidably connected to the moving block 13. The moving block 13 and the electronic scale 14 are located directly above the hopper 16. The moving block 13 and the moving block 14 are located directly below the feed cylinder 4.

[0016] Specifically, by opening the feed cylinder 4 and placing the feed ingredients into it, the feed ingredients entering the feed cylinder 4 will compress the electronic scale 14 at the bottom. The electronic scale 14 will weigh the feed ingredients and display their weight. Once the required weight of the feed ingredients in the feed cylinder 4 is reached, the process stops, and then the first motor 9 is started, causing the gear 10 to rotate. As the gear 10 rotates, it drives the gear cylinder 11 to rotate as well. The gear cylinder 11 then drives the first screw 12 inside to move the moving block 13 to one side. 13 pushes the first slide bar 15 to one side and drives the electronic scale 14 to slide into the protective box 7, thereby eliminating the seal of the electronic scale 14 on the feed cylinder 4. Then, the feed raw materials inside the feed cylinder 4 will fall into the mixing tank 2 through the collection hopper 16. Then, the first motor 9 is reverse-started, and the first motor 9 drives the first screw 12 through the gear 10 and gear cylinder 11 to push the moving block 13 and the electronic scale 14 back to their original positions. Then, other feed raw materials are weighed and added in sequence, so that the bio-feed R&D ratio device can accurately weigh the feed raw materials to be added, avoiding R&D failure caused by feed raw material ratio errors.

[0017] Example 2: Please see Figure 1-4 This utility model provides a technical solution: a proportioning device for biological feed research and development, wherein a second motor 18 is fixed at the center of the upper end of the mixing tank 2, a mixing rod 19 is provided at the lower end of the second motor 18, a first scraper 20 is fixed at the top of the side wall of the mixing rod 19, and a second scraper 21 is fixed on both sides of the bottom of the side wall of the mixing rod 19. A second sliding rod 23 and a second screw 25 are respectively fixed at one end of the fixing plate 22, and a clamping block 24 is provided at one end of the second sliding rod 23. A collection bucket 26 is placed at the center of the upper end of the base 1; the mixing rod 19 passes through the connecting plate 6, the first scraper 20 and the second scraper 21 are both located inside the mixing tank 2, and the first scraper 20 and the second scraper 21 are both located below the connecting plate 6; the second sliding rod 23 and the second screw 25 both pass through the clamping block 24, and the second sliding rod 23 is slidably connected to the clamping block 24.

[0018] Specifically, when it is necessary to scrape the side walls and bottom of the mixing tank 2, the second motor 18 is started, causing the mixing rod 19 to rotate. The mixing rod 19 mixes the feed ingredients inside the mixing tank 2. Simultaneously, the rotation of the mixing rod 19 also rotates the first scraper plate 20 above it, causing it to scrape the inner wall of the mixing tank 2. At the same time, the rotation of the mixing rod 19 also rotates the second scraper plate 21 at its bottom, causing it to scrape the bottom of the mixing tank 2. Then, the electronic valve 17 is opened, allowing the feed inside the mixing tank 2 to fall into the collection bucket 26. Then, the second screw 25 is rotated clockwise, causing the clamping block 24 to move to one end, increasing the distance between the clamping block 24 and the fixing plate 22. This removes the clamping block 24 and the fixing plate 22 from the collection bucket 26. Then, the collection bucket 26 is removed and clamped in reverse. This allows the biological feed research and development proportioning device to scrape off the feed raw materials adhering to the inner wall of the mixing tank 2 and to quickly load and unload the collection bucket 26, preventing it from shifting and facilitating feed collection.

[0019] The embodiments of this utility model have been described in detail above with reference to the accompanying drawings, but this utility model is not limited to the described embodiments. For those skilled in the art, various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of this utility model, and these variations still fall within the protection scope of this utility model.

Claims

1. A formulation device for biological feed research and development, comprising a base (1), characterized in that: The upper end of the base (1) is fixed with a mixing tank (2) and a fixing plate (22). One end of the mixing tank (2) is fixed with a control box (3) and an observation window (5). A feed cylinder (4) is fixed on one side of the upper end of the mixing tank (2). A connecting plate (6) is fixed inside the mixing tank (2) near the top. A protective box (7) is fixed on one side of the mixing tank (2). A fixing block (8) is fixed on one side of the protective box (7). A first motor (9) is fixed at the upper end of the fixing block (8). The lower end of the first motor (9) is... A gear (10) is installed at the end. A gear cylinder (11) is rotatably installed on one side of the protective box (7) near the lower side. A first screw (12) is installed on the inner side of the gear cylinder (11). A moving block (13) is fixed on one side of the first screw (12). An electronic scale (14) is fixed on the upper end of the moving block (13). A first slide rod (15) is fixed on both ends of one side of the moving block (13). A hopper (16) is fixed on one side of the upper end of the connecting plate (6). An electronic valve (17) is installed at the lower end of the mixing tank (2).

2. The biological feed formulation device according to claim 1, characterized in that: The first slide rod (15) passes through the protective box (7) and is slidably connected to the protective box (7).

3. The biological feed formulation device according to claim 2, characterized in that: The gear (10) is meshed with the gear cylinder (11), and the protective box (7) is slidably connected to the moving block (13).

4. The biological feed formulation device according to claim 3, characterized in that: The moving block (13) and the electronic scale (14) are located directly above the hopper (16), and the moving block (13) and the moving block (13) are located directly below the feed cylinder (4).

5. The formulation device for biological feed research and development according to claim 1, characterized in that: A second motor (18) is fixed at the center of the upper end of the mixing tank (2). A mixing rod (19) is provided at the lower end of the second motor (18). A first scraper (20) is fixed at the top of the side wall of the mixing rod (19). A second scraper (21) is fixed on both sides of the bottom of the side wall of the mixing rod (19). A second slide rod (23) and a second screw (25) are fixed at one end of the fixing plate (22). A clamping block (24) is provided at one end of the second slide rod (23). A collection bucket (26) is placed at the center of the upper end of the base (1).

6. The biological feed formulation device according to claim 5, characterized in that: The mixing rod (19) passes through the connecting plate (6), and the first scraper (20) and the second scraper (21) are both located inside the mixing tank (2), and the first scraper (20) and the second scraper (21) are both located below the connecting plate (6).

7. The biological feed formulation device according to claim 5, characterized in that: The second slide rod (23) and the second screw (25) both pass through the clamping block (24), and the second slide rod (23) is slidably connected to the clamping block (24).

Citation Information

Patent Citations

  • Proportioning device for research and development of biological feed for improving intestinal health of poultry

    CN215693264U