Edible mushroom extract purification device
By combining a scraper and a rotating shaft into a stirring system and using a liquid pump spray design, the problem of separating the stirring and filtration stages in traditional edible fungus extract devices has been solved, achieving efficient dynamic crushing and simultaneous purification, thus improving purification efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHEJIANG HUIHE HEALTH TECH CO LTD
- Filing Date
- 2025-06-19
- Publication Date
- 2026-07-21
AI Technical Summary
Traditional edible fungus extract purification devices separate the stirring and filtration processes, resulting in uneven mass transfer, filter pore blockage, low extraction efficiency, and the need for additional crushing pretreatment. They also lack an integrated dynamic crushing and simultaneous purification design.
The mixing system, which combines a scraper and a rotating shaft, crushes large particles of material through friction between the scraper and the filter holes. It also utilizes a liquid pump spray and a curved scraper to form a circulating crushing process. Combined with the filter cover design, it achieves dynamic crushing and simultaneous purification.
It improves purification efficiency, reduces filtration steps, avoids filter clogging, and achieves highly efficient purification of edible fungi extracts.
Smart Images

Figure CN224524141U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to compound extraction technical field, concretely is a kind of edible mushroom extract purification device. BACKGROUND
[0002] Raw materials need to be stirred to speed up the purification speed in the process of edible mushroom extract purification, and traditional stirring device relies on single paddle or centrifugal force to disperse materials, which is easy to cause uneven mass transfer and filter hole blockage due to the agglomeration of bacterial particles. In addition, the stirring and crushing processes are separated, and an additional crushing pretreatment step is required. In the prior art, the traditional equipment lacks integrated dynamic crushing and synchronous purification design. Large particle materials are easy to block the filter hole and difficult to crush uniformly, which limits the extraction efficiency. The stirring and filtering processes are separated, and the dispersion of raw materials increases the subsequent filtering burden, and the filter residue is difficult to recover completely (such as the material adhered to the inner wall of the filter cover needs to be cleaned manually). SUMMARY
[0003] The utility model aims at providing a kind of edible mushroom extract purification device to solve the above problems.
[0004] To achieve the above object, the utility model provides the following technical scheme: a kind of edible mushroom extract purification device, comprising; A purification tank has a raw material filtering structure inside, which includes a transmission shaft, a scraper, a filter cover A, a rotating shaft, a stirring rod and a filter cover B. The scraper is attached to the inner wall of the filter cover A, the filter cover A is located inside the purification tank, the rotating shaft is located at the bottom of the filter cover A, the bottom of the transmission shaft passes through the scraper and the filter cover A, and the outer side of the transmission shaft has two integrally fixed clamps, the two clamps are respectively clamped and limited with the scraper and the rotating shaft, and the stirring rod is located outside the rotating shaft. The filter cover B is located at the bottom of the filter cover A and is sleeved outside the rotating shaft, the bottom of the inside of the filter cover B has an integrally fixed shaft, and the top of the shaft is embedded in the bottom of the stirring rod and is connected with it.
[0005] Preferably, a plurality of filter holes are formed on the filter cover A, and a group of protrusions is arranged between every two filter holes. The outer side of the scraper is fixedly glued with a rubber scraper, and the scraper is rotated to rub against the filter holes to crush the raw materials inside the filter cover A, so that large particle materials are avoided. The crushed materials enter the inside of the filter cover B through the filter holes for purification, and the purification efficiency of the crushed materials is higher.
[0006] Preferably, the middle part of the inside of the filter cover A has an integrally fixed limiting ring, and the bottom of the scraper is buckled outside the limiting ring and is connected with it in rotation. The position of the scraper is limited by the limiting ring, so as to prevent the scraper from deviating from the axis.
[0007] Preferably, the purification tank has an integrally fixed retaining ring A near the top. The top of the filter cover A is fastened to the outside of the retaining ring A. The retaining ring A lifts the filter cover A to prevent it from falling. After purification, the filter cover A can be removed to clean the residue inside.
[0008] Preferably, the purification tank has an integrally fixed retaining ring B at the bottom of the retaining ring A. The inner diameter of the retaining ring B is smaller than the inner diameter of the retaining ring A. The top of the filter cover B is fastened to the top of the retaining ring B. After purification, the top of the filter cover B can be removed through the retaining ring A to facilitate cleaning of the residue inside. During purification, the raw material is confined inside by the filter cover B, thereby reducing the filtration process for the purified raw liquid.
[0009] Preferably, the purification tank has an inverted top cover with multiple integrally fixed threaded rods on the top of the cover. A drive motor is located in the middle of the cover. The motor base is fastened to the outside of the threaded rods and fixed by a nut. The output end of the drive motor has a hexagonal structure and is inserted into the drive shaft for driving. The drive motor drives the output end to rotate downwards, causing the drive shaft to rotate synchronously. When the drive shaft rotates, it drives the scraper and the rotating shaft to rotate synchronously, thereby stirring the raw materials inside and accelerating the purification speed.
[0010] Preferably, the bottom of the purification tank has an integrally fixed drain pipe, the inside of which is a filter box, and the end of the drain pipe has a sealing cap for sealing. Both the top of the cover and the sealing cap have pipe joints, wherein the pipe joint on the sealing cap has a control valve.
[0011] Preferably, a liquid pump is installed on the outside of the purification tank, and a liquid pipe is connected to the liquid pump. The two ends of the liquid pipe are respectively connected to the pipe joint on the top cover and the pipe joint on the sealing cover. The bottom of the pipe joint on the top cover has a spray pipe. The liquid pump draws the liquid from the bottom of the purification tank to the top and sprays it into the filter hood A through the spray pipe, washing away the raw material remaining on the inner wall of the filter hood A. The scraper is curved and can push the material in the middle of the filter hood A to the inner wall of the filter hood A to form a circulation, thereby accelerating the crushing and purification of the raw material.
[0012] Compared with the prior art, the beneficial effects of this utility model are: 1. Start the drive motor to drive the transmission shaft to rotate. When the transmission shaft rotates, it drives the scraper and the rotating shaft to rotate synchronously. When the scraper rotates, it rubs against the filter holes to crush the raw material inside the filter cover A, avoiding the appearance of large particles. The crushed material enters the interior of the filter cover B through the filter holes for purification. The crushed material has a higher purification efficiency. When the rotating shaft and stirring rod rotate, they stir the raw material inside the filter cover B, which speeds up the purification process. The raw material is stirred only inside the filter cover B. The filter cover B forms a filter layer to avoid the dispersion of the raw material, thereby reducing the filtration process for the purified raw liquid. 2. The liquid at the bottom of the purification tank is pumped to the top by a liquid pump and sprayed into the filter hood A through a spray pipe. This washes away the raw material remaining on the inner wall of the filter hood A. The scraper is curved and can push the material in the middle of the filter hood A to the inner wall of the filter hood A to form a circulation, which accelerates the crushing and purification of the raw material. Attached Figure Description
[0013] Fig. 1 This is a three-dimensional structural diagram of the present invention; Fig. 2 This is a schematic diagram of the exploded structure of this utility model.
[0014] In the diagram: 100, purification tank; 101, liquid pump; 102, liquid pipe; 103, drain pipe; 104, filter box; 105, sealing cover; 106, retaining ring A; 107, retaining ring B; 200, top cover; 201, threaded rod; 202, drive motor; 203, spray pipe; 300, drive shaft; 301, clamp; 302, scraper; 400, filter cover A; 401, filter hole; 402, protrusion; 403, rotating shaft; 404, stirring rod; 500, filter cover B; 501, retaining shaft. Detailed Implementation
[0015] 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.
[0016] In the description of this utility model, it should be noted that the terms "vertical", "up", "down", "horizontal", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.
[0017] In the description of this utility model, it should also be noted that, unless otherwise explicitly specified and limited, the terms "set," "install," "connect," and "link" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.
[0018] Please seeFigs. 1-2 This utility model provides a technical solution: a device for purifying edible fungi extract, comprising; Purification tank 100 has a raw material filtration structure inside, which includes a drive shaft 300, a scraper 302, a filter cover A400, a rotating shaft 403, a stirring rod 404, and a filter cover B500. The scraper 302 is attached to the inner wall of the filter cover A400, which is located inside the purification tank 100. The rotating shaft 403 is located at the bottom of the filter cover A400. The bottom of the drive shaft 300 passes through the scraper 302 and the filter cover A400. The outer side of the drive shaft 300 has two integrally fixed clips 301. The two clips 301 are respectively engaged and limited with the scraper 302 and the rotating shaft 403. The stirring rod 404 is located on the outer side of the rotating shaft 403. The filter cover B500 is located at the bottom of the filter cover A400 and is fitted on the outside of the rotating shaft 403. The bottom of the inner side of the filter cover B500 has an integrally fixed retaining shaft 501. The top of the retaining shaft 501 is embedded in the bottom of the stirring rod 404 and rotates therewith.
[0019] Furthermore, the filter cover A400 has multiple sets of filter holes 401, and there is a set of protrusions 402 between every two sets of filter holes 401. The outer side of the scraper 302 has a rubber scraper that is glued and fixed. When the scraper 302 rotates, it rubs against the filter holes 401 to crush the raw materials inside the filter cover A400, avoiding the appearance of large particles. The crushed material enters the interior of the filter cover B500 through the filter holes 401 for purification. The purification efficiency of the crushed material is higher.
[0020] Furthermore, the filter cover A400 has an integrally fixed limiting ring in the middle of its inner side. The bottom of the scraper 302 is fastened to the outside of the limiting ring and rotated with it. The limiting ring restricts the position of the scraper 302, thereby preventing the scraper 302 from deviating from the axis.
[0021] Furthermore, the purification tank 100 has an integrally fixed retaining ring A106 near the top. The top of the filter cover A400 is fastened to the outside of the retaining ring A106. The retaining ring A106 lifts the filter cover A400 to prevent it from falling. After purification, the filter cover A400 can be removed to clean the residue inside.
[0022] Furthermore, the purification tank 100 has an integrally fixed retaining ring B107 at the bottom of the retaining ring A106. The inner diameter of the retaining ring B107 is smaller than the inner diameter of the retaining ring A106. The top of the filter cover B500 is fastened to the top of the retaining ring B107. After purification, the top of the filter cover B500 can be removed through the retaining ring A106 to facilitate cleaning of the residue inside. During purification, the raw material is confined inside the filter cover B500, thereby reducing the filtration process for the purified raw liquid.
[0023] Furthermore, the top of the purification tank 100 is covered by an inverted cover 200. The top of the cover 200 has multiple integrally fixed threaded rods 201. The middle of the cover 200 has a drive motor 202. The base of the drive motor 202 is fastened to the outside of the threaded rods 201 and fixed by a nut. The output end of the drive motor 202 has a hexagonal structure. The output end of the drive motor 202 is inserted into the inside of the transmission shaft 300 for driving. The drive motor 202 drives the output end to rotate downward, so that the transmission shaft 300 rotates synchronously. When the transmission shaft 300 rotates, it drives the scraper 302 and the rotating shaft 403 to rotate synchronously, thereby stirring the raw materials inside and accelerating the purification speed.
[0024] Furthermore, the bottom of the purification tank 100 has an integrally fixed drain pipe 103, the inside of which is a filter box 104, and the end of the drain pipe 103 has a sealing cap 105 for sealing. The top of the cover 200 and the sealing cap 105 both have pipe joints, and the pipe joint on the sealing cap 105 has a control valve.
[0025] Furthermore, a liquid pump 101 is installed on the outside of the purification tank 100. A liquid pipe 102 is connected to the liquid pump 101. The two ends of the liquid pipe 102 are respectively connected to the pipe joint on the upper cover 200 and the pipe joint on the sealing cover 105. The bottom of the pipe joint on the upper cover 200 has a spray pipe 203. The liquid pump 101 draws the liquid from the bottom of the purification tank 100 to the top and sprays it into the filter cover A400 through the spray pipe 203, flushing down the raw material remaining on the inner wall of the filter cover A400. The scraper 302 is curved and can push the material in the middle of the filter cover A400 to the inner wall of the filter cover A400 to form a circulation, which accelerates the crushing and purification of the raw material.
[0026] Working principle: In use, insert the filter cover B500 into the purification tank 100. The top of the filter cover B500 is secured to the top of the retaining ring B107, and the bottom of the rotating shaft 403 is aligned with the retaining shaft 501. Then, secure the top of the filter cover A400 to the top of the retaining ring A106. The two clips 301 on the drive shaft 300 are respectively engaged with the scraper 302 and the rotating shaft 403. Pour the raw material to be purified into the filter cover A400, then add hot water. Place the top cover 200 on the top of the purification tank 100, so that the output end of the drive motor 202 is inserted into the drive shaft 300. Start the drive motor 202 to drive the drive shaft 300. When the drive shaft 300 rotates, it drives the scraper 302 and the rotating shaft 403 to rotate synchronously. When the scraper 302 rotates, it rubs against the filter holes 401 to crush the raw materials inside the filter cover A400, avoiding the appearance of large particles. The crushed material enters the interior of the filter cover B500 through the filter holes 401 for purification. The crushed material has a higher purification efficiency. When the rotating shaft 403 and the stirring rod 404 rotate, they stir the raw materials inside the filter cover B500, accelerating the purification speed. The raw materials are stirred only inside the filter cover B500. The filter cover B500 forms a filter layer to avoid the dispersion of the raw materials, thereby reducing the filtration process for the purified raw liquid. Furthermore, the liquid at the bottom of the purification tank 100 is drawn to the top by the liquid pump 101 and sprayed into the filter hood A400 through the spray pipe 203, which washes away the raw material remaining on the inner wall of the filter hood A400. The scraper 302 is curved and can push the material in the middle of the filter hood A400 to the inner wall of the filter hood A400 to form a circulation, thereby accelerating the crushing and purification of the raw material.
[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 device for purifying edible fungi extract, characterized in that: include; Purification tank (100), the interior of which has a raw material filtration structure, the raw material filtration structure including a drive shaft (300), a scraper (302), a filter cover A (400), a rotating shaft (403), a stirring rod (404), and a filter cover B (500). The scraper (302) is attached to the inner wall of the filter cover A (400), the filter cover A (400) is located inside the purification tank (100), the rotating shaft (403) is located at the bottom of the filter cover A (400), the bottom of the drive shaft (300) passes through the scraper (302) and the filter cover A (400), the outer side of the drive shaft (300) has two integrally fixed clips (301), the two clips (301) are respectively engaged and limited with the scraper (302) and the rotating shaft (403), and the stirring rod (404) is located on the outer side of the rotating shaft (403); The filter cover B (500) is located at the bottom of the filter cover A (400) and is sleeved on the outside of the rotating shaft (403). The bottom of the inner side of the filter cover B (500) has an integrally fixed retaining shaft (501). The top of the retaining shaft (501) is embedded in the bottom of the stirring rod (404) and rotatedly connected to it.
2. The edible fungus extract purification device according to claim 1, characterized in that: The filter cover A (400) has multiple sets of filter holes (401), and there is a set of protrusions (402) between every two sets of filter holes (401). The outer side of the scraper (302) has a rubber scraper that is glued and fixed.
3. The edible fungus extract purification device according to claim 1, characterized in that: The filter cover A (400) has an integrally fixed limiting ring in the middle of its inner side, and the bottom of the scraper (302) is fastened to the outside of the limiting ring and rotatably connected to it.
4. The edible fungus extract purification device according to claim 1, characterized in that: The purification tank (100) has an integrally fixed retaining ring A (106) near the top on the inner side, and the top of the filter cover A (400) is fastened to the outside of the retaining ring A (106).
5. The edible fungus extract purification device according to claim 1, characterized in that: The purification tank (100) has an integrally fixed retaining ring B (107) at the bottom of retaining ring A (106). The inner diameter of retaining ring B (107) is smaller than the inner diameter of retaining ring A (106). The top of filter cover B (500) is fastened to the top of retaining ring B (107).
6. The edible fungus extract purification device according to claim 1, characterized in that: The purification tank (100) has an inverted cover (200) on top. The top of the cover (200) has multiple integrally fixed threaded rods (201). The middle part of the cover (200) has a drive motor (202). The base of the drive motor (202) is fastened to the outside of the threaded rods (201) and limited and fixed by nuts. The output end of the drive motor (202) has a hexagonal structure.
7. The edible fungus extract purification device according to claim 1, characterized in that: The bottom of the purification tank (100) has an integrally fixed drain pipe (103), the drain pipe (103) has a filter box (104) embedded inside, and the end of the drain pipe (103) has a sealing cap (105) for sealing. The top of the cover (200) and the sealing cap (105) both have pipe joints, wherein the pipe joint on the sealing cap (105) has a control valve.
8. The edible fungus extract purification device according to claim 1, characterized in that: A liquid pump (101) is installed on the outside of the purification tank (100). A liquid pipe (102) is connected to the liquid pump (101). The two ends of the liquid pipe (102) are respectively connected to the pipe joint on the top cover (200) and the pipe joint on the sealing cover (105). The bottom of the pipe joint on the top cover (200) has a spray pipe (203), and the scraper (302) is curved.