A natural plant composition preparation device and method for regulating uric acid and blood lipids

By combining steps such as vacuum extraction, grinding, sieving, and extrusion, the problems of low preparation efficiency and uneven mixing of natural plant compositions are solved, achieving efficient and uniform drug preparation and improving the consistency of drug efficacy.

CN119055530BActive Publication Date: 2026-08-25XINJIANG JISHANTANG TRADITIONAL CHINESE MEDICINE TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202411283878.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-09-13
Publication Date
2026-08-25
Estimated Expiration
2044-09-13

AI Technical Summary

Technical Problem

Existing methods for preparing natural plant compositions are inefficient and result in uneven mixing, leading to variations in drug efficacy.

Method used

By combining a vacuum extraction device, a grinding and mixing structure, a sieving structure, and a heating device, the drug is efficiently mixed and shaped through steps such as vacuum extraction, grinding, sieving, stirring, and extrusion.

Benefits of technology

It improves preparation efficiency, ensures uniform drug mixing, reduces manual intervention steps, and enhances the consistency of drug efficacy.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a kind of natural plant composition preparation device and preparation method for regulating uric acid, blood lipid, and is specifically related to combined drug preparation device technical field and preparation method, including vacuum extraction device, the grinding mixing structure is fixedly connected at the rear end of the vacuum extraction device, the grinding mixing structure upper end is fixedly connected with sieve grinding structure, and the grinding mixing structure right end is fixedly connected with heating device.The application discloses a kind of natural plant composition preparation device and preparation method for regulating uric acid, blood lipid, blackcurrant fruit is sent into grinding mixing structure and is boiled into paste, then through the action of sieve grinding structure, turmeric, bergamot piece ground into powder are screened into fine powder by the action of sieve grinding structure, cooperate grinding mixing structure to the stirring of berry paste to make it fully mixed, and blackcurrant leaf water is sent into grinding mixing structure and is stirred with mixture together and is refined into paste, simplify work flow and improve preparation efficiency, enhance efficacy.
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Description

Technical Field

[0001] This invention relates to the field of combination drug preparation apparatus technology, and in particular to an apparatus and method for preparing a natural plant composition for regulating uric acid and blood lipids. Background Technology

[0002] In Traditional Chinese Medicine (TCM), hyperuricemia and gout that develop on this basis are diagnosed as liver and kidney deficiency, and deficiency of the meridians. This allows dampness to take advantage of the deficiency and flow into the body, attaching to the tendons and bones, causing arthralgia. Over time, the dampness condenses into phlegm, and the phlegm and blood stasis combine to form uric acid crystals and stones, causing bone destruction and resulting in deformities and disabilities. Uric acid crystals can also deposit in vital organs such as the liver and kidneys, impairing their function.

[0003] This invention draws inspiration from the dietary habits of the Kazakh people in Xinjiang, refines and screens information according to the principles and methods of traditional Chinese medicine, and conducts extensive and long-term human trials to create a novel natural plant composition and its preparation device, which has a special effect on regulating uric acid.

[0004] The Kazakhs of Xinjiang have a fondness for meat and animal offal. They consider cooking high-purine foods like sheep's head, hooves, and offal with meat as the highest form of hospitality. However, they have a very low incidence of hyperuricemia and gout. A close study of the Kazakh diet reveals that they consider blackcurrant jam a valuable health food, and they often add spices to their milk tea. Based on this, the efficacy of these natural plants was determined according to classical Chinese medicine theory and human experience, supplemented by modern research data. Following the principles of traditional Chinese medicine, a combination was created using a special processing technique.

[0005] Existing preparation methods mostly involve primitive manual grinding, boiling, mixing, and kneading, which are not only slow, but also cause inconsistent efficacy due to differences in the operation steps during the processing, thus affecting the drug's effect. Summary of the Invention

[0006] The main objective of this invention is to provide a device and method for preparing a natural plant composition for regulating uric acid and blood lipids, which can effectively solve the problems of low efficiency and uneven mixing caused by different operations in existing preparation methods, resulting in differences in drug effects.

[0007] To achieve the above objectives, the technical solution adopted by the present invention is as follows:

[0008] A device for preparing a natural plant composition for regulating uric acid and blood lipids includes a vacuum extraction device, a grinding and mixing structure fixedly connected to the rear end of the vacuum extraction device, a sieve and grinding structure fixedly connected to the upper end of the grinding and mixing structure, a heating device fixedly connected to the right end of the grinding and mixing structure, a number of support legs fixedly connected in a rectangular distribution at the lower end of the grinding and mixing structure, and a discharge conveyor belt provided at the lower part of the grinding and mixing structure.

[0009] Preferably, the sieving and grinding structure includes a shielded tank, a drive motor is fixedly connected to the upper end of the shielded tank, the output end of the drive motor extends through the upper end of the shielded tank to the inner cavity of the shielded tank and is fixedly connected to a drive rod, a drive assembly is provided on the outer surface of the drive rod, and flipping fan plates are provided on the left and right sides of the drive assembly, a drive ring is fixedly connected to the middle of the inner cavity of the shielded tank, a screen is slidably connected to the inner surface of the drive ring, and several oscillating springs are fixedly connected to the upper and lower ends of the screen located on the inner surface of the drive ring in a ring and are fixedly connected to the adjacent surfaces of the inner cavity of the drive ring, an L-shaped notch with the ends connected is opened on the upper part of the inner arc surface of the drive ring, the drive rod is connected to the grinding and mixing structure, and a feed hopper is fixedly connected to the upper end of the sieving and grinding structure.

[0010] Preferably, the drive assembly includes a housing fixedly connected to the outer surface of the drive rod, a bevel gear 1 symmetrically rotatably connected to the inner surface of the housing, the ends of the two bevel gears 1 that are far apart from each other being fixedly connected to the connecting shaft of the adjacent flipping fan plate, a bevel gear 2 rotatably connected to the bottom wall of the inner surface of the housing and fixedly connected to the inner surface of the screen, and the lower end of the drive rod extends through the upper end of the screen to the lower end of the screen and is connected to the grinding and mixing structure for transmission.

[0011] Preferably, the grinding and mixing structure includes a conical drive plate fixedly connected to the lower part of the inner surface of the sieve and grinding structure and a paste-making tank fixedly connected to the lower end of the sieve and grinding structure and communicating with its inner cavity. The lower part of the conical drive plate is provided with a plurality of arc-shaped guide openings distributed in a ring. The inner cavity of the paste-making tank is provided with a heating wire electrically connected to a heating device. The lower end of the conical drive plate is fixedly connected with a second drive assembly. The lower end of the second drive assembly is provided with a stirring assembly. The bottom wall of the inner surface of the paste-making tank is provided with an extrusion component. The vacuum extraction device is connected to the upper part of the inner surface of the paste-making tank through a connecting pipe.

[0012] Preferably, the driving assembly 2 includes a housing 2 fixedly connected to the lower end of a conical driving plate, a bevel gear 3 rotatably connected to the upper part of the inner surface of the housing 2 and fixedly connected to the outer surface of the driving rod 1, a bevel gear 4 rotatably connected to one side of the vertical portion of the inner surface of the housing 2 and meshing with the bevel gear 3, a bevel gear 5 rotatably connected to the bottom wall of the inner surface of the housing 2 and fixedly connected to the agitation assembly, the output shaft of the bevel gear 3 extending through the housing 2 and the agitation assembly to the lower end of the agitation assembly and fixedly connected to a transmission rod 2, a plurality of toothed fan blades fixedly connected in a ring on the outer surface of the transmission rod 2, a transmission rod 1 sleeved on the outer surface of the transmission rod 2 fixedly connected to the inner surface of the bevel gear 5, and a plurality of agitation fan blades fixedly connected in a ring on the lower part of the outer surface of the transmission rod 1.

[0013] Preferably, the agitation assembly includes a cross-shaped drive rod two fixedly connected to the outer surface of the transmission rod one, four L-shaped agitator plates fixedly connected in a ring at the lower end of the cross-shaped drive rod two, and a plurality of hammering and quenching components arranged in a ring at the upper end of the cross-shaped drive rod two.

[0014] Preferably, the hammering and quenching component includes a guide post, the upper end of which is in contact with the arc surface of the lower arc-shaped guide opening of the conical drive plate, the lower end of which extends through the upper end of the cross drive rod II to the lower end of the cross drive rod II and is fixedly connected to a hammering plate, and the outer surface of the guide post is fixedly connected to a limiting plate I and a limiting plate II in the areas located at the upper and lower parts of the cross drive rod II, respectively, and the upper end of the limiting plate II is fixedly connected to a compression spring fixedly connected to the lower end of the cross drive rod II.

[0015] Preferably, the extrusion component includes annularly distributed electric telescopic rods fixedly connected to the bottom wall of the inner cavity of the paste-making tank. A partition plate is fixedly connected to the piston rods at the output ends of several electric telescopic rods. A connecting hole communicating with the lower end is opened in the middle of the upper part of the partition plate. An extrusion tube is fixedly connected to the lower part of the inner surface of the connecting hole. A connecting rod is rotatably connected to the bottom wall of the inner surface of the extrusion tube and slidably connected to the inner surface of the transmission rod. A screw conveyor plate is fixedly connected to the part of the outer surface of the connecting rod located inside the extrusion tube. A number of extrusion holes communicating with the lower end are annularly distributed in the bottom wall of the inner cavity of the extrusion tube. The lower end of the connecting rod extends through the bottom wall of the inner cavity of the extrusion tube to the lower end of the extrusion tube and is fixedly connected to a scraper.

[0016] Preferably, the present invention also provides a method for preparing a natural plant composition for regulating uric acid and blood lipids, which uses the above-mentioned apparatus for preparing a natural plant composition for regulating uric acid and blood lipids, characterized in that the method includes:

[0017] S1. Add 6-8 parts of blackcurrant berries to the grinding mixture and grind them at room temperature to make jam, and then heat and cook them into a concentrated paste.

[0018] S2. Mix 6-8 parts of blackcurrant leaves with 5 times the amount of room temperature water, and extract the extract by low-temperature vacuum concentration using a vacuum extraction device.

[0019] S3, 3-7 parts turmeric, 1-3.5 parts bergamot slices, mixed and crushed, and fed into a screen through a feed hopper for further screening so that it falls into the blackcurrant berry paste at the bottom;

[0020] S4. Stir and mix the blackcurrant berry paste prepared in S1, the turmeric and bergamot slice powder sieved through a sieve, and the blackcurrant leaf extract. Add wheat flour as needed according to the viscosity of the mixture, and extrude it into pellets through the extrusion part at the bottom.

[0021] Preferably, the concentration ratio of the concentrated ointment in S1 is 2:1, the vacuum concentration ratio in S2 is 30:1 and the concentration temperature is 60 degrees Celsius, and the particle size in S3 is 300 mesh.

[0022] Compared with the prior art, the present invention has the following beneficial effects:

[0023] 1. This invention involves feeding blackcurrant berries into a grinding and mixing structure for crushing and grinding, then using a heating device to boil them into a paste. Next, a sieve grinding structure is used to feed powdered turmeric and bergamot slices into the sieve grinding structure, which then sieves them into fine powder. This powder is then thoroughly mixed with the blackcurrant berry paste by the grinding and mixing structure. Blackcurrant leaf water extracted using a vacuum extraction device is added to the grinding and mixing structure and stirred along with the mixture to solidify into a paste. After adding an appropriate amount of wheat flour, the paste is extruded and cut into clumps using the grinding and mixing structure. This reduces manual steps in the drug preparation process, simplifies the workflow, and improves preparation efficiency.

[0024] 2. This invention uses a drive motor to drive a drive rod to rotate, and through the cooperation of the drive rod and the drive assembly, it drives the two side flipping fan plates to rotate around the drive rod. During the rotation, the drive assembly drives the flipping fan plates to flip and scrape the drug powder above the screen, reducing the large powder clumps that agglomerate inside. This avoids uneven mixing due to excessive particles in the subsequent mixing process, which would affect the drug's efficacy. It also avoids other situations that would affect the drug's efficacy due to particle agglomeration.

[0025] 3. In this invention, the drive rod and the drive component 2 work together to drive the drive component 2 to rotate, thereby crushing the blackcurrant berries in the boiling pot. The berries are then boiled together with the heating device and heating wire to solidify them into a paste-like fruit pulp, which is convenient for subsequent mixing with turmeric powder, bergamot slice powder and blackcurrant leaf extract.

[0026] 4. This invention utilizes the cooperation between the stirring component and the driving component two to follow the rotation of the driving component two, and uses the cooperation between the hammering and quenching component and the conical driving plate to drive the guide column to periodically hammer downwards, promoting the release of effective components in blackcurrant pulp, improving the ointment preparation effect. At the same time, in the subsequent mixing process, the paste-like medicine can be kneaded and hammered simultaneously to promote its water absorption and agglomeration. Attached Figure Description

[0027] Figure 1 This is a schematic diagram of the overall structure of the present invention;

[0028] Figure 2 This is a cross-sectional schematic diagram of the sieve grinding structure of the present invention;

[0029] Figure 3This is a partial structural diagram of the sieve grinding structure of the present invention;

[0030] Figure 4 This is a schematic diagram showing the connection relationship between the drive ring and the screen of the present invention;

[0031] Figure 5 This is a schematic diagram of the structure of the drive component one of the present invention;

[0032] Figure 6 This is a schematic diagram of the grinding and mixing structure of the present invention;

[0033] Figure 7 This is a schematic diagram of the structure of the second driving component of the present invention;

[0034] Figure 8 This is a cross-sectional structural diagram of the second driving component of the present invention;

[0035] Figure 9 This is a schematic diagram of the hammering and quenching component of the present invention;

[0036] Figure 10 This is a schematic diagram of the extrusion component of the present invention;

[0037] Figure 11 This is a cross-sectional structural diagram of the extrusion component of the present invention.

[0038] In the diagram: 1. Screening and grinding structure; 11. Shielding tank; 12. Drive motor; 13. Drive assembly one; 131. Outer shell one; 132. Bevel gear one; 133. Bevel gear two; 14. Feed hopper; 15. Drive ring; 16. Screen; 17. Drive rod one; 18. Vibrating spring; 19. Tilting fan plate; 2. Vacuum extraction device; 3. Heating device; 31. Heating wire; 4. Grinding and mixing structure; 41. Paste-making tank; 42. Conical drive plate; 43. Stirring assembly; 431. Cross drive rod two; 432. Hammering and quenching component; 4321. Guide column; 4322. Limiting plate one; 4 323. Compression spring; 4324. Limiting plate II; 4325. Hammering plate; 433. L-shaped stirring plate; 44. Drive assembly II; 441. Outer shell II; 442. Bevel gear III; 443. Bevel gear IV; 444. Bevel gear V; 445. Transmission rod I; 446. Stirring blade I; 447. Stirring blade II; 448. Transmission rod II; 45. Extrusion component; 451. Isolation plate; 452. Electric telescopic rod; 453. Extrusion tube; 454. Connecting hole; 455. Connecting rod; 456. Screwdriver plate; 457. Scraper; 458. Extrusion hole; 5. Discharge conveyor belt. Detailed Implementation

[0039] To make the technical means, creative features, objectives and effects of this invention easier to understand, the invention will be further described below in conjunction with specific embodiments.

[0040] Example 1, as Figure 1 As shown, a device for preparing a natural plant composition for regulating uric acid and blood lipids includes a vacuum extraction device 2, a grinding and mixing structure 4 fixedly connected to the rear end of the vacuum extraction device 2, a sieve grinding structure 1 fixedly connected to the upper end of the grinding and mixing structure 4, a heating device 3 fixedly connected to the right end of the grinding and mixing structure 4, several support legs fixedly connected in a rectangular distribution at the lower end of the grinding and mixing structure 4, and a discharge conveyor belt 5 provided at the lower part of the grinding and mixing structure 4.

[0041] It should be noted that the vacuum extraction device 2 mentioned above is a vacuum low-temperature extraction device. This structure uses vacuum and low temperature to extract the effective components in medicinal materials. It has been widely used in the prior art. In this invention, it is only used to extract blackcurrant leaves. Its internal structure, operating principle, wiring and control method will not be described in detail.

[0042] Similarly, the heating device 3 is also a conventional technology in the prior art. It uses electricity to heat the metal wire, and the heating temperature is controlled by the magnitude of the applied current. It is a mature technology. Therefore, in this invention, the vacuum extraction device 2, the heating device 3 and their internal structure and specific operating principle will not be further shown or explained.

[0043] In the operation of this embodiment, blackcurrant berries are first fed into the grinding and mixing structure 4 for crushing and grinding. Then, the heating device 3 is used to boil them into a paste. Next, the turmeric and bergamot slices, which have been ground into powder, are fed into the grinding and sieving structure 1 and sieved into fine powder. The grinding and mixing structure 4 is used to stir the blackcurrant berry paste to ensure thorough mixing. Blackcurrant leaf water extracted by the vacuum extraction device 2 is fed into the grinding and mixing structure 4 and stirred together with the mixture to form a paste. After adding an appropriate amount of wheat flour, the paste is extruded and cut into clumps by the grinding and mixing structure 4. This reduces the number of manual steps in the drug preparation process, simplifies the workflow, and improves preparation efficiency.

[0044] In Example 2, based on Example 1, the drive motor 12 drives the drive rod 17 to rotate. The drive rod 17, in conjunction with the drive assembly 13, drives the two side flipping fan plates 19 to rotate around the drive rod 17. During the rotation, the drive assembly 13 drives the flipping fan plates 19 to flip and scrape the drug powder above the screen 16, reducing the large powder clumps inside. This prevents uneven mixing due to excessive particles from affecting the drug's efficacy during subsequent mixing, and also avoids other situations that affect the drug's efficacy due to particle agglomeration.

[0045] Specifically, to achieve the sieving of turmeric and bergamot slice powders and reduce large particles in preparation for subsequent mixing, please refer to... Figure 2 , Figure 3 , Figure 4 and Figure 5 The sieve and mill structure 1 includes a shielded tank 11. A drive motor 12 is fixedly connected to the upper end of the shielded tank 11. The output end of the drive motor 12 extends through the upper end of the shielded tank 11 to the inner cavity of the shielded tank 11 and is fixedly connected to a drive rod 17. A drive assembly 13 is provided on the outer surface of the drive rod 17. A flipping fan plate 19 is provided on the left and right sides of the drive assembly 13. A drive ring 15 is fixedly connected to the middle of the inner cavity of the shielded tank 11. A screen 16 is slidably connected to the inner surface of the drive ring 15. Several oscillating springs 18 are fixedly connected to the upper and lower ends of the screen 16 located on the inner surface of the drive ring 15 in a ring. An L-shaped notch with the ends connected is opened on the upper part of the inner arc surface of the drive ring 15. The drive rod 17 is connected to the grinding and mixing structure 4. A feed hopper 14 is fixedly connected to the upper end of the sieve and mill structure 1.

[0046] The feeding hopper 14 is used to feed crushed turmeric and Buddha's hand slice powder, so that it falls onto the screen 16 below. Simultaneously, under the action of the drive motor 12, the drive rod 17 drives the drive assembly 13 to rotate. Through the action of the drive assembly 13, the flipping fan plates 19 on both sides are mobilized to rotate around the drive rod 17 while generating their own rotation, thereby scraping and stirring the drug powder on the screen 16.

[0047] Synchronously, as the flipping fan plate 19 rotates around the drive rod 17, it is periodically pressed downward by the internal track of the drive ring 15. Simultaneously, the screen 16 also moves downward with the movement of the flipping fan plate 19. After being pressed to the bottom, there will be a cliff-like connection between two adjacent L-shaped notches. The screen 16 will rebound through the action of the oscillating spring 18, causing the drug powder above the screen 16 to float upward with the action of the screen 16. The particles will be dispersed due to the oscillation, improving the processing efficiency.

[0048] Furthermore, to achieve simultaneous revolution and rotation of the rotating fan plate (19 revolutions), refer to... Figure 5 The drive assembly 13 includes a housing 131 fixedly connected to the outer surface of the drive rod 17. The inner surface of the housing 131 is symmetrically connected to bevel gears 132. The ends of the two bevel gears 132 that are far apart from each other are fixedly connected to the connecting shaft of the adjacent flipping fan plate 19. The bottom wall of the inner surface of the housing 131 is rotatably connected to bevel gears 133 that are fixedly connected to the inner surface of the screen 16. The lower end of the drive rod 17 extends through the upper end of the screen 16 to the lower end of the screen 16 and is connected to the grinding and mixing structure 4 for transmission.

[0049] The outer shell 131 is fixed together with the drive rod 17. When the drive rod 17 rotates, it will rotate synchronously with the drive rod 17, thereby driving the two vertical bevel gears 132 to rotate around the drive rod 17. The flipping fan plate 19, which is fixed together with the bevel gears 132, will also follow the bevel gears 132 to revolve around the drive rod 17.

[0050] However, during the rotation, the second bevel gear 133 is fixed to the bottom screen 16 and will not rotate. Since the first bevel gear 132 and the second bevel gear 133 are meshed, the first bevel gear 132 will rotate under the action of the second bevel gear 133, thereby driving the flipping fan plate 19 to rotate.

[0051] In Example 3, based on Example 2, the driving rod 17 and the driving component 2 44 are used to drive the driving component 2 44 to rotate, thereby crushing the blackcurrant berries in the paste-making pot 41. The blackcurrant berries are then cooked by the heating device 3 and the heating wire 31, causing them to solidify into a paste-like fruit pulp, which is convenient for subsequent mixing with turmeric powder, bergamot slice powder and blackcurrant leaf extract.

[0052] Specifically, for the crushing and boiling of blackcurrant berries and subsequent mixing with other drug powders, please refer to [link / reference needed]. Figure 6 The grinding and mixing structure 4 includes a conical drive plate 42 fixedly connected to the lower part of the inner surface of the sieve grinding structure 1 and a paste-making tank 41 fixedly connected to the lower end of the sieve grinding structure 1 and communicating with its inner cavity. The lower part of the conical drive plate 42 is provided with a number of arc-shaped guide ports distributed in a ring. The inner cavity of the paste-making tank 41 is provided with a heating wire 31 electrically connected to the heating device 3. The lower end of the conical drive plate 42 is fixedly connected with a second drive assembly 44. The lower end of the second drive assembly 44 is provided with a stirring assembly 43. The bottom wall of the inner surface of the paste-making tank 41 is provided with an extrusion component 45. The vacuum extraction device 2 is connected to the upper part of the inner surface of the paste-making tank 41 through a connecting pipe.

[0053] The blackcurrant berries that are put in will be blocked by the extrusion component 45 and will be within the range of action of the drive component 2 44. The drive component 2 44 works with the stirring component 43 to crush and boil the blackcurrant berries. At the same time, the stirring component 43 works with the conical drive plate 42 to pound and quench the blackcurrant berries during the boiling process and the mixed medicine in the subsequent mixing stage, thereby accelerating the mixing efficiency.

[0054] Furthermore, for the crushing and cooking of blackcurrant berries, see [link to relevant documentation]. Figure 7 and Figure 8The drive assembly 2 44 includes a housing 2 441 fixedly connected to the lower end of the conical drive plate 42. A bevel gear 3 442 fixedly connected to the outer surface of the drive rod 1 17 is rotatably connected to the upper part of the inner surface of the housing 2 441. A bevel gear 443 meshing with the bevel gear 3 442 is rotatably connected to one side of the vertical part of the inner surface of the housing 2 441. A bevel gear 5 444 fixedly connected to the stirring assembly 43 is rotatably connected to the bottom wall of the inner surface of the housing 2 441. The output shaft of the bevel gear 3 442 extends through the housing 2 441 and the stirring assembly 43 to the lower end of the stirring assembly 43 and is fixedly connected to the transmission rod 2 448. A number of toothed fan blades 447 are fixedly connected to the outer surface of the transmission rod 2 448 in a ring. A transmission rod 1 445 sleeved on the outer surface of the transmission rod 2 448 is fixedly connected to the inner surface of the bevel gear 5 444. A number of stirring fan blades 446 are fixedly connected to the lower part of the outer surface of the transmission rod 1 445 in a ring.

[0055] Drive rod 17 drives bevel gear 3 442 to rotate, which in turn drives bevel gear 443 to drive bevel gear 5 444 to rotate in the opposite direction to bevel gear 3 442. Bevel gear 3 442 then drives transmission rod 2 448 at the bottom, which in turn drives toothed fan blade 447 to rotate forward around transmission rod 2 448. Bevel gear 5 444, in turn, drives stirring fan blade 446 to rotate in the opposite direction around transmission rod 1 445 through transmission rod 1 445, creating a forward and reverse rotation effect. This effect is similar to a cutting knife, which chops the blackcurrant berries during rotation and gradually turns them into a pulp. Combined with the action of heating device 3 and heating wire 31, the pulp is cooked and finally formed into a thick blackcurrant berry paste.

[0056] Furthermore, to facilitate the crushing and paste-making processes in conjunction with the toothed fan blades 447 and the stirring fan blades 446, see [reference needed]. Figure 7 and Figure 9 The stirring assembly 43 includes a cross drive rod 431 fixedly connected to the outer surface of the transmission rod 445. Four L-shaped stirring plates 433 are fixedly connected to the lower end of the cross drive rod 431 in a ring. Several hammering and quenching components 432 are arranged in a ring at the upper end of the cross drive rod 431.

[0057] The cross drive lever 2 431 rotates together with the bevel gear 5 444, thereby enabling the three layers of blades to process blackcurrant berries simultaneously.

[0058] Example 4: Based on Example 3, this example utilizes the cooperation between the stirring component 43 and the second driving component 44 to rotate with the second driving component 44. In this way, the cooperation between the hammering and quenching component 432 and the conical driving plate 42 drives the guide column 4321 to periodically hammer downwards, promoting the release of effective components in the blackcurrant pulp and improving the ointment preparation effect. At the same time, in the subsequent mixing process, the paste-like medicine can be kneaded and hammered simultaneously to promote its water absorption and agglomeration.

[0059] Specifically, to achieve the pounding of blackcurrant berries and the drug mixture in subsequent mixing processes, see [reference needed]. Figure 9 The hammering and quenching component 432 includes a guide post 4321. The upper end of the guide post 4321 is in contact with the arc surface of the lower arc-shaped guide opening of the conical drive plate 42. The lower end of the guide post 4321 extends through the upper end of the cross drive rod 431 to the lower end of the cross drive rod 431 and is fixedly connected to the hammering plate 4325. The outer surface of the guide post 4321 is fixedly connected to the upper and lower parts of the cross drive rod 431 by a first limiting plate 4322 and a second limiting plate 4324, respectively. The upper end of the second limiting plate 4324 is fixedly connected to a compression spring 4323 that is fixedly connected to the lower end of the cross drive rod 431.

[0060] During the rotation of the cross drive rod 431, the guide column 4321 will be rotated synchronously. The upper part of the guide column 4321 is attached to the lower part of the conical drive plate 42 under the action of the compression spring 4323. When the guide column 4321 rotates around the center of the conical drive plate 42, it will be periodically pressed down by the conical drive plate 42. Thus, the pressing of the conical drive plate 42 drives the hammering plate 4325 to move downward to hammer the blackcurrant berries and the drug mixture in the subsequent mixing process, promoting their crushing or clumping.

[0061] Furthermore, to achieve drug extrusion and pelleting, see [reference needed]. Figure 10 and Figure 11 The extrusion component 45 includes annularly distributed electric telescopic rods 452 fixedly connected to the bottom wall of the inner cavity of the paste-making tank 41. A partition plate 451 is fixedly connected to the piston rods at the output ends of several electric telescopic rods 452. A connecting hole 454 communicating with the lower end is opened in the middle of the upper end of the partition plate 451. An extrusion tube 453 is fixedly connected to the lower part of the inner surface of the connecting hole 454. A connecting rod 455 is rotatably connected to the bottom wall of the inner surface of the extrusion tube 453 and slidably connected to the inner surface of the transmission rod 448. A screw conveyor plate 456 is fixedly connected to the part of the outer surface of the connecting rod 455 located inside the extrusion tube 453. A number of extrusion holes 458 communicating with the lower end are annularly distributed in the bottom wall of the inner cavity of the extrusion tube 453. The lower end of the connecting rod 455 extends through the bottom wall of the inner cavity of the extrusion tube 453 to the lower end of the extrusion tube 453 and is fixedly connected to a scraper 457.

[0062] The electric telescopic rod 452 drives the isolation plate 451 to descend, thereby causing the transmission rod 448 to disengage from the connecting hole 454. The paste-like medicine flows from the connecting hole 454 into the extrusion tube 453 under the scraping action of the L-shaped stirring plate 433. It then moves downward through the action of the connecting rod 455 and the auger fan plate 456 in the extrusion tube 453 until it is extruded from the scraper 457 at the bottom of the extrusion tube 453 and cut into small pills by the extrusion hole 458, which fall onto the discharge conveyor belt 5 and are sent out.

[0063] Example 5: This invention also provides a method for preparing a natural plant composition for regulating uric acid and blood lipids, which uses the above-mentioned apparatus for preparing a natural plant composition for regulating uric acid and blood lipids. The method includes:

[0064] S1. Add 6-8 parts of blackcurrant berries to grinding mixture structure 4 and grind them into jam at room temperature, then heat and cook into a concentrated paste.

[0065] S2. Mix 6-8 parts of blackcurrant leaves with 5 times the amount of room temperature water, and extract by low-temperature vacuum concentration using vacuum extraction device 2.

[0066] S3, 3-7 parts turmeric, 1-3.5 parts Buddha's hand slices, are mixed, crushed and fed into the screen 16 through the feed hopper 14 for further screening so that they fall into the blackcurrant berry paste at the bottom;

[0067] S4. Stir and mix the blackcurrant berry paste prepared in S1, turmeric and bergamot slice powder sieved through sieve 16, and blackcurrant leaf extract. Add wheat flour as needed according to the viscosity of the mixture, and extrude it into pellets through the lower extrusion part 45.

[0068] The concentration ratio of the concentrated ointment in S1 is 2:1, the vacuum concentration ratio in S2 is 30:1 and the concentration temperature is 60 degrees Celsius, and the particle size in S3 is 300 mesh.

[0069] Specifically, this invention formulates these edible plants and medicinal plants according to the theory of monarch, minister, assistant, and guide in traditional Chinese medicine. Through chemical and polymer effects, it produces special therapeutic effects. Blackcurrant berries nourish the liver and kidneys, and nourish yin and blood as the monarch drug. When the liver and kidneys are nourished, the meridians are replenished, bones are straightened and tendons are supple, preventing the flow of dampness and blocking the source of disease. Blackcurrant leaves are aromatic and dampness-resolving, and can clear the meridians as the minister drug. The biggest drawback of nourishing yin and blood is that it can promote dampness and phlegm. The combination of blackcurrant berries and leaves can eliminate the drawback of nourishing yin and blood by aromatically resolving dampness. The dampness-resolving and meridian-clearing effects can play an anti-inflammatory and analgesic role. The urination and defecation-promoting effects of the leaves can open the acid excretion channel. The monarch and minister drugs work together to double the efficacy. Turmeric invigorates blood, removes blood stasis, clears the meridians and relieves pain as the assistant drug. It enters the blood vessels of the limbs and clears the joints. When combined with blackcurrant leaves, it increases the efficacy of removing dampness and clearing the meridians. Buddha's hand resolves phlegm and removes dampness as the guide drug. Its shape is like fingers, which can guide the medicines directly to the lesion and play a guiding role. The above-mentioned foods and medicinal plants, when combined according to the principles of traditional Chinese medicine (TCM) and their corresponding ingredients, achieve remarkable effects with a simple taste, just like many classic prescriptions.

[0070] Furthermore, blackcurrant berries are made into a paste using traditional Kazakh techniques because it is the optimal dosage form for tonics, preserving the maximum amount of nutrients.

[0071] Blackcurrant leaves are extracted and concentrated at room temperature, resulting in a high content of active ingredients that facilitates rapid absorption and enhances medicinal efficacy.

[0072] Turmeric and Buddha's Hand slices belong to the rhizome category and are medicines that travel to the limbs. When added after being crushed, their medicinal effects are released slowly, which helps maintain a certain level of blood drug concentration and makes the medicinal effect last.

[0073] Making pills from flour paste makes them easy to take and store, while preserving the natural flavor of the food.

[0074] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of the invention. Various changes and modifications can be made to the invention without departing from its spirit and scope, and all such changes and modifications fall within the scope of the present invention as claimed. The scope of protection of this invention is defined by the appended claims and their equivalents.

Claims

1. A device for preparing a natural plant composition for regulating uric acid and blood lipids, comprising a vacuum extraction device (2), characterized in that: The vacuum extraction device (2) is fixedly connected to a grinding and mixing structure (4) at its rear end. The grinding and mixing structure (4) is fixedly connected to a sieve and grinding structure (1) at its upper end. The grinding and mixing structure (4) is fixedly connected to a heating device (3) at its right end. The grinding and mixing structure (4) is fixedly connected to several support legs in a rectangular distribution at its lower end. The grinding and mixing structure (4) is provided with a discharge conveyor belt (5) at its lower part. The sieve grinding structure (1) includes a shielding tank (11), and a drive motor (12) is fixedly connected to the upper end of the shielding tank (11). The output end of the drive motor (12) extends through the upper end of the shielding tank (11) to the inner cavity of the shielding tank (11) and is fixedly connected to a drive rod (17). The drive rod (17) is connected to the grinding and mixing structure (4) in a transmission connection. The grinding and mixing structure (4) includes a conical drive plate (42) fixedly connected to the lower part of the inner surface of the sieve grinding structure (1) and a paste-making tank (41) fixedly connected to the lower end of the sieve grinding structure (1) and communicating with the inner cavity. The lower part of the conical drive plate (42) is provided with several arc-shaped guide ports distributed in a ring. The inner cavity of the paste-making tank (41) is provided with a heating wire (31) electrically connected to the heating device (3). The lower end of the conical drive plate (42) is fixedly connected with a second drive assembly (44). The lower end of the second drive assembly (44) is provided with a stirring assembly (43). The bottom wall of the inner surface of the paste-making tank (41) is provided with an extrusion component (45). The vacuum extraction device (2) is connected to the upper part of the inner surface of the paste-making tank (41) through a connecting pipe. The second drive assembly (44) includes a second outer shell (441) fixedly connected to the lower end of the conical drive plate (42). A third bevel gear (442) fixedly connected to the outer surface of the first drive rod (17) is rotatably connected to the upper part of the inner surface of the second outer shell (441). A fourth bevel gear (443) meshing with the third bevel gear (442) is rotatably connected to one side of the vertical part of the inner surface of the second outer shell (441). A fifth bevel gear (444) fixedly connected to the stirring assembly (43) is rotatably connected to the bottom wall of the inner surface of the second outer shell (441). The output shaft of the bevel gear three (442) extends through the outer shell two (441) and the stirring assembly (43) to the lower end of the stirring assembly (43) and is fixedly connected to the transmission rod two (448). Several toothed fan blades (447) are fixedly connected in a ring on the outer surface of the transmission rod two (448). The inner surface of the bevel gear five (444) is fixedly connected to the transmission rod one (445) sleeved on the outer surface of the transmission rod two (448). Several stirring fan blades (446) are fixedly connected in a ring on the lower part of the outer surface of the transmission rod one (445). The agitation assembly (43) includes a cross drive rod two (431) fixedly connected to the outer surface of the transmission rod one (445). Four L-shaped agitation plates (433) are fixedly connected to the lower end of the cross drive rod two (431) in a ring. Several hammering and quenching components (432) are arranged in a ring at the upper end of the cross drive rod two (431).

2. The apparatus for preparing a natural plant composition for regulating uric acid and blood lipids according to claim 1, characterized in that: The outer surface of the drive rod (17) is provided with a drive assembly (13), and the drive assembly (13) is provided with a flipping fan plate (19) on the left and right sides. The inner cavity of the shielding tank (11) is fixedly connected with a drive ring (15). The inner surface of the drive ring (15) is slidably connected with a screen (16). The upper and lower ends of the screen (16) located on the inner surface of the drive ring (15) are respectively fixedly connected with a number of oscillating springs (18) that are fixedly connected to the adjacent surfaces of the inner cavity of the drive ring (15). The upper part of the inner arc surface of the drive ring (15) is provided with an L-shaped notch with the ends connected. The upper end of the screen grinding structure (1) is fixedly connected with a feed hopper (14).

3. The apparatus for preparing a natural plant composition for regulating uric acid and blood lipids according to claim 2, characterized in that: The drive assembly (13) includes a housing (131) fixedly connected to the outer surface of the drive rod (17). The inner surface of the housing (131) is symmetrically connected to a bevel gear (132). The ends of the two bevel gears (132) that are far apart from each other are fixedly connected to the connecting shaft of the adjacent flipping fan plate (19). The bottom wall of the inner surface of the housing (131) is rotatably connected to a bevel gear (133) fixedly connected to the inner surface of the screen (16). The lower end of the drive rod (17) extends through the upper end of the screen (16) to the lower end of the screen (16) and is connected to the grinding and mixing structure (4) in a transmission manner.

4. The apparatus for preparing a natural plant composition for regulating uric acid and blood lipids according to claim 1, characterized in that: The hammering and quenching component (432) includes a guide post (4321). The upper end of the guide post (4321) is in contact with the arc surface of the lower arc-shaped guide opening of the conical drive plate (42). The lower end of the guide post (4321) extends through the upper end of the cross drive rod (431) to the lower end of the cross drive rod (431) and is fixedly connected to a hammering plate (4325). The outer surface of the guide post (4321) is fixedly connected to a limiting plate (4322) and a limiting plate (4324) in the areas above and below the cross drive rod (431), respectively. The upper end of the limiting plate (4324) is fixedly connected to a compression spring (4323) that is fixedly connected to the lower end of the cross drive rod (431).

5. The apparatus for preparing a natural plant composition for regulating uric acid and blood lipids according to claim 4, characterized in that: The extrusion component (45) includes annularly distributed electric telescopic rods (452) fixedly connected to the bottom wall of the inner cavity of the paste-making tank (41). The piston rods at the output ends of several electric telescopic rods (452) are fixedly connected to an isolation plate (451). A connecting hole (454) communicating with the lower end is opened in the middle of the upper end of the isolation plate (451). An extrusion tube (453) is fixedly connected to the lower part of the inner surface of the connecting hole (454). A connecting rod (455) rotatably connected to the bottom wall of the inner surface of the extrusion tube (453) and slidably connected to the inner surface of the transmission rod (448) is rotatably connected. A screw conveyor plate (456) is fixedly connected to the part of the outer surface of the connecting rod (455) located inside the extrusion tube (453). Several extrusion holes (458) communicating with the lower end of the extrusion tube (453) are annularly distributed in the bottom wall of the inner cavity. The lower end of the connecting rod (455) extends through the bottom wall of the inner cavity of the extrusion tube (453) to the lower end of the extrusion tube (453) and is fixedly connected to a scraper (457).

6. A method for preparing a natural plant composition for regulating uric acid and blood lipids, comprising using the apparatus for preparing a natural plant composition for regulating uric acid and blood lipids as described in any one of claims 1-5, characterized in that, The method includes: S1. Add 6-8 parts of blackcurrant berries to the grinding mixture structure (4) and grind them at room temperature to make jam, and then heat and cook them into a concentrated paste. S2. Mix 6-8 parts of blackcurrant leaves with 5 times the amount of room temperature water, and extract by low temperature vacuum concentration using a vacuum extraction device (2). The vacuum concentration ratio in S2 is 30:1 and the concentration temperature is 60 degrees. S3, 3-7 parts of turmeric, 1-3.5 parts of Buddha's hand slices, are mixed, crushed and fed into the screen (16) through the feed hopper (14) for further screening so that they fall into the blackcurrant berry paste at the bottom; S4. The blackcurrant berry paste prepared in S1, the turmeric and bergamot powder sieved through a sieve (16) and the blackcurrant leaf extract are stirred and mixed. Wheat flour is added as appropriate according to the viscosity of the mixture, and the mixture is extruded into pellets through the lower extrusion part (45).

7. The method for preparing a natural plant composition for regulating uric acid and blood lipids according to claim 6, characterized in that: The concentration ratio of the concentrated ointment in S1 is 2:1, and the particle size of the powder in S3 is 300 mesh.

Citation Information

Patent Citations

  • Method for preparing solid blackcurrant ferment

    CN106942733A

  • Method for preparing uric acid reducing powder through nanotechnology and processing equipment

    CN112043599A