Earthworm protein filtering and purifying machine

By introducing a rotary motor-driven stirring rod for centrifugal filtration and a vibration pump to shake off residues in the earthworm protein filtration and purification machine, combined with a scraper to scrape the inner wall of the feed hopper, the problems of cumbersome operation and solution adhesion were solved, thus improving purification efficiency and reducing waste.

CN224167024UActive Publication Date: 2026-04-28DILONGLI BIOENGINEERING (TIANJIN) CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
DILONGLI BIOENGINEERING (TIANJIN) CO LTD
Filing Date
2025-05-23
Publication Date
2026-04-28

AI Technical Summary

Technical Problem

The existing earthworm protein filtration and purification machine has a complicated operation process, poor purification effect, and the earthworm protein solution tends to stick to the inner wall of the feeding hopper, which is difficult to clean and easily leads to waste.

Method used

A filtration and purification machine for earthworm protein was designed, comprising a base, a vibration pump, a separation chamber, a fine-mesh filter, a stirring rod, and a rotary motor. The rotary motor drives the stirring rod to perform centrifugal filtration, and the vibration pump is equipped to shake off the residue. At the same time, a scraper is set to scrape the inner wall of the feed hopper to prevent the solution from adhering.

Benefits of technology

It achieves convenient centrifugal filtration, avoids filter screen clogging and solution adhesion to the inner wall of the feed hopper, improves purification efficiency and reduces waste.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224167024U_ABST
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Abstract

The utility model discloses an earthworm protein filtering and purifying machine, which relates to the technical field of earthworm protein processing equipment and comprises a base, a vibration pump is mounted on the outer wall of the base, a separation bin is mounted at the top of the base, a discharge port is formed in the side wall of the separation bin, a fine-mesh filter screen is mounted on the inner wall of the separation bin, and a filter screen is mounted on the fine-mesh filter screen. And a stirring rod is mounted on the inner wall of the fine-mesh filter screen. Through the arrangement of the base, the vibration pump, the separation bin, the discharge hole, the fine-mesh filter screen, the stirring rod and the rotating motor, the rotating motor is started to drive the stirring rod to rotate, so that an earthworm protein solution entering the separation bin is centrifugally rotated and is centrifugally filtered through the fine-mesh filter screen, the operation is convenient and fast, and the working efficiency is improved. Meanwhile, a vibration pump is arranged, residues, solid particles and the like filtered on the inner wall of the fine-mesh filter screen can be shaken off, and the situation that the inner wall of the fine-mesh filter screen is blocked, and the filtering effect is affected is avoided.
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Description

Technical Field

[0001] This utility model relates to the technical field of earthworm protein processing equipment, specifically an earthworm protein filtration and purification machine. Background Technology

[0002] Earthworm protein, extracted from earthworms, contains various components such as collagenase, plasminase, lumbrokinase, nucleic acid, and trace elements. It is a short-chain small molecule substance that has a wide range of effects on the coagulation and fibrinolytic systems in the body. Traditional earthworm protein extraction usually uses selective precipitation methods, which require multiple steps, each requiring corresponding equipment such as filtration equipment, dosing equipment, mixing equipment, and precipitation equipment. This process is cumbersome, time-consuming, and labor-intensive, affecting processing efficiency. Furthermore, earthworm protein solutions tend to adhere to the inner wall of the hopper during filtration, making them difficult to clean and prone to waste. To solve these problems, an earthworm protein filtration and purification machine is needed.

[0003] The existing earthworm protein filtration and purification machine has problems such as cumbersome operation process, poor purification effect, and earthworm protein solution easily adhering to the inner wall of the feeding hopper, which is difficult to clean and easily causes waste. Therefore, there is an urgent need for an earthworm protein filtration and purification machine. Utility Model Content

[0004] Based on this, the purpose of this utility model is to provide a filtration and purification machine for earthworm protein, so as to solve the problems of existing earthworm protein filtration and purification machines having cumbersome operation procedures, poor purification effect, and earthworm protein solution easily adhering to the inner wall of the feeding hopper, which is difficult to clean and easily causes waste.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a filtration and purification machine for earthworm protein, comprising a base, a vibration pump mounted on the outer wall of the base, a separation chamber mounted on the top of the base, a discharge port on the side wall of the separation chamber, a fine mesh filter mounted on the inner wall of the separation chamber, a stirring rod mounted on the inner wall of the fine mesh filter, a rotary motor mounted on the bottom of the stirring rod, a feed hopper mounted on the top of the separation chamber, a positioning shaft mounted on the inner wall of the outer periphery of the feed hopper, a positioning sleeve mounted on the outer wall of the positioning shaft, a fixing frame mounted on the top of the feed hopper, a transmission motor mounted on the top of the fixing frame, a connecting rod mounted on the bottom of the transmission motor, a locking block mounted on the outer wall of the bottom of the connecting rod, a scraper mounted on the outer wall of the locking block, a slot formed on the inner wall of the scraper, and a limit sleeve mounted on the outer wall of the bottom of the connecting rod.

[0006] Preferably, the vibration pump is symmetrically arranged with the central axis of the base as the center, and the fine filter screen is set to 200 mesh.

[0007] Preferably, the stirring rod is in close contact with the bottom inner wall of the fine mesh filter, and the stirring rod and the fine mesh filter form a rotating structure through a rotating motor.

[0008] Preferably, the positioning shafts are arranged in a circular array with the central axis of the feed hopper as the center, and the positioning shafts are threadedly connected to the positioning sleeves.

[0009] Preferably, the card block engages with the card slot, and the limiting sleeve is threadedly connected to the connecting rod.

[0010] Preferably, the bottom of the scraper is spirally arranged, and the bottom of the scraper is in close contact with the inner wall of the feed hopper.

[0011] Compared with the prior art, the beneficial effects of this utility model are:

[0012] 1. This utility model, through the setting of a base, a vibration pump, a separation chamber, a discharge port, a fine mesh filter, a stirring rod, and a rotary motor, drives the stirring rod to rotate by starting the rotary motor, thereby centrifugally rotating the earthworm protein solution entering the separation chamber and filtering it through the fine mesh filter. The operation is convenient. At the same time, the setting of vibration pump can shake off the residue and solid particles filtered on the inner wall of the fine mesh filter, avoiding clogging of the inner wall of the fine mesh filter and affecting the filtration effect.

[0013] 2. This utility model uses a feeding hopper, positioning shaft, positioning sleeve, fixing frame, transmission motor, connecting rod, locking block, scraper, locking groove, and limiting sleeve to connect the scraper to the locking block via the locking groove, and then to fix it with threads via the limiting sleeve. This makes disassembly and assembly convenient. At this time, the bottom of the scraper is in close contact with the feeding hopper. Then, the feeding hopper is fixed to the separation chamber via the positioning shaft and positioning sleeve. Then, the transmission motor is started to drive the scraper to rotate at a uniform speed. The bottom of the scraper is spirally centripetally designed, which can guide the added earthworm protein solution to feed quickly and scrape the inner wall of the feeding hopper at the same time to prevent the earthworm protein solution from adhering to the inner wall of the feeding hopper and being difficult to clean after drying. Attached Figure Description

[0014] Figure 1 This is a structural schematic diagram of the present utility model from the front view;

[0015] Figure 2 This is a schematic diagram of the adjustment mechanism of this utility model;

[0016] Figure 3 This is a schematic diagram of the buffer mechanism of this utility model;

[0017] Figure 4 This is a schematic diagram of the structure of the display mechanism of this utility model.

[0018] In the diagram: 1. Base; 2. Vibration pump; 3. Separation chamber; 4. Discharge port; 5. Fine mesh filter; 6. Stirring rod; 7. Rotary motor; 8. Feed hopper; 9. Positioning shaft; 10. Positioning sleeve; 11. Fixing frame; 12. Drive motor; 13. Connecting rod; 14. Locking block; 15. Scraper; 16. Slot; 17. Limiting sleeve. Detailed Implementation

[0019] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present invention, and should not be construed as limiting the present invention.

[0020] The embodiments of this utility model will be described below based on its overall structure.

[0021] Please see Figures 1-4 A filtration and purification machine for earthworm protein includes a base 1, a vibration pump 2 mounted on the outer wall of the base 1, a separation chamber 3 mounted on the top of the base 1, a discharge port 4 on the side wall of the separation chamber 3, a fine-mesh filter screen 5 mounted on the inner wall of the separation chamber 3, a stirring rod 6 mounted on the inner wall of the fine-mesh filter screen 5, and a rotary motor 7 mounted on the bottom of the stirring rod 6. The vibration pump 2 is symmetrically arranged around the central axis of the base 1. The fine-mesh filter screen 5 is 200 mesh. The stirring rod 6 is in close contact with the bottom inner wall of the fine-mesh filter screen 5, and the stirring rod 6 is connected to the fine-mesh filter screen 5 via the rotary motor 7. The mesh 5 forms a rotating structure. It is equipped with a base 1, a vibration pump 2, a separation chamber 3, a discharge port 4, a fine mesh filter 5, a stirring rod 6, and a rotary motor 7. By starting the rotary motor 7, the stirring rod 6 is rotated, thereby centrifugally rotating the earthworm protein solution that enters the separation chamber 3 and centrifugally filtering it through the fine mesh filter 5. The operation is convenient. At the same time, the vibration pump 2 can shake off the residue and solid particles filtered from the inner wall of the fine mesh filter 5, so as to avoid clogging of the inner wall of the fine mesh filter 5 and affecting the filtration effect.

[0022] Please see Figures 1-4A filtration and purification machine for earthworm protein includes a feeding hopper 8 installed at the top of a separation chamber 3. A positioning shaft 9 is installed on the inner wall of the outer periphery of the feeding hopper 8, and a positioning sleeve 10 is installed on the outer wall of the positioning shaft 9. A fixing frame 11 is installed at the top of the feeding hopper 8, and a drive motor 12 is installed at the top of the fixing frame 11. A connecting rod 13 is installed at the bottom of the drive motor 12, and a locking block 14 is installed on the outer wall of the bottom of the connecting rod 13. A scraper 15 is installed on the outer wall of the locking block 14, and a slot 16 is formed on the inner wall of the scraper 15. A limiting sleeve 17 is installed on the outer wall of the bottom of the connecting rod 13. The positioning shafts 9 are arranged in a circular array around the central axis of the feeding hopper 8, and the positioning shafts 9 are threadedly connected to the positioning sleeve 10. The locking block 14 is engaged with the slot 16, and the limiting sleeve 17 is threadedly connected to the connecting rod 13. The bottom of the scraper 15 is spirally arranged. The bottom of the scraper 15 is tightly fitted to the inner wall of the feed hopper 8. The scraper 15 is connected to the clamping block 14 by the clamping block 16 through the clamping block 16 and then fixed by the threaded fixing through the limiting sleeve 17. The scraper 15 is easy to disassemble and assemble. At this time, the bottom of the scraper 15 is tightly fitted to the feed hopper 8. Then the feed hopper 8 is fixed to the separation chamber 3 by the threaded fixing through the clamping block 14 through the clamping block 16 and the positioning sleeve 17. Then the drive motor 12 is started to drive the scraper 15 to rotate at a uniform speed. The bottom of the scraper 15 is spirally centripetally set, which can guide the added earthworm protein solution to feed quickly and scrape the inner wall of the feed hopper 8 at the same time to prevent the earthworm protein solution from adhering to the inner wall of the feed hopper 8 and being difficult to clean after drying.

[0023] Working principle: In use, first move the device to the desired position, then connect the scraper 15 to the locking block 14 via the slot 16, and then secure it with threads via the limiting sleeve 17. This facilitates easy assembly and disassembly. At this point, the bottom of the scraper 15 is tightly fitted to the feed hopper 8. Then, the feed hopper 8 is threadedly secured to the separation chamber 3 via the positioning shaft 9 and the positioning sleeve 10. Next, start the drive motor 12 to drive the scraper 15 to rotate at a uniform speed. The bottom of the scraper 15 is spirally oriented in a centripetal pattern, which guides the added earthworm protein solution to feed quickly, while simultaneously scraping the inner wall of the feed hopper 8 to prevent the earthworm protein solution from leaking out. The residue adheres to the inner wall of the feed hopper 8 and is difficult to clean after drying. Then, by starting the rotary motor 7, the stirring rod 6 is rotated, which causes the earthworm protein solution entering the separation chamber 3 to undergo centrifugal rotation and centrifugal filtration through the fine mesh filter 5. The operation is convenient. At the same time, the vibration pump 2 can shake off the residue and solid particles filtered from the inner wall of the fine mesh filter 5, so as to avoid clogging of the inner wall of the fine mesh filter 5 and affecting the filtration effect. This completes the use of the device. The contents not described in detail in this specification are existing technologies known to those skilled in the art.

[0024] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. A filtration and purification machine for earthworm protein, comprising a base (1), characterized in that: A vibration pump (2) is installed on the outer wall of the base (1). A separation chamber (3) is installed on the top of the base (1). A discharge port (4) is opened on the side wall of the separation chamber (3). A fine mesh filter (5) is installed on the inner wall of the separation chamber (3). A stirring rod (6) is installed on the inner wall of the fine mesh filter (5). A rotary motor (7) is installed at the bottom of the stirring rod (6). A feed hopper (8) is installed on the top of the separation chamber (3). A positioning shaft (9) is installed on the outer periphery of the feed hopper (8). A positioning sleeve (10) is installed on the outer wall of the positioning shaft (9). A fixing frame (11) is installed on the top of the feed hopper (8). A drive motor (12) is installed on the top of the fixing frame (11). A connecting rod (13) is installed on the bottom of the drive motor (12). A locking block (14) is installed on the bottom outer wall of the connecting rod (13). A scraper (15) is installed on the outer wall of the locking block (14). A slot (16) is opened on the inner wall of the scraper (15). A limit sleeve (17) is installed on the bottom outer wall of the connecting rod (13).

2. The earthworm protein filtration and purification machine according to claim 1, characterized in that: The vibration pump (2) is symmetrically arranged with the central axis of the base (1) as the center, and the fine mesh filter (5) is set to 200 mesh.

3. The earthworm protein filtration and purification machine according to claim 1, characterized in that: The stirring rod (6) is tightly attached to the bottom inner wall of the fine mesh filter (5), and the stirring rod (6) and the fine mesh filter (5) form a rotating structure through the rotating motor (7).

4. The earthworm protein filtration and purification machine according to claim 1, characterized in that: The positioning shafts (9) are arranged in a ring array with the central axis of the feed hopper (8) as the center, and the positioning shafts (9) are threadedly connected to the positioning sleeve (10).

5. The earthworm protein filtration and purification machine according to claim 1, characterized in that: The card block (14) engages with the card slot (16), and the limiting sleeve (17) is threadedly connected to the connecting rod (13).

6. The earthworm protein filtration and purification machine according to claim 1, characterized in that: The bottom of the scraper (15) is spirally arranged, and the bottom of the scraper (15) is closely attached to the inner wall of the feed hopper (8).