Production process and device of traditional Chinese medicine component tablets for treating cerebral arterial thrombosis

By designing an automated granulation and molding structure, the problem of manual operation required for traditional Chinese medicine component tablet production equipment has been solved, realizing efficient and side-effect-free production of traditional Chinese medicine component tablets, which are suitable for the treatment of ischemic stroke.

CN121606484APending Publication Date: 2026-03-06JIANGSU MARINE RESOURCES DEV RES INST LIAN YUNGANG +2
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Patent Information

Application Number
CN202410055987.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-01-15
Publication Date
2026-03-06

AI Technical Summary

Technical Problem

Existing production equipment for tablets containing traditional Chinese medicine components for treating ischemic stroke requires manual operation and lacks automation, resulting in low production efficiency and susceptibility to external environmental interference.

Method used

A production device including a granulation structure, a molding structure, and a feeding and connecting structure was designed to realize integrated automated production of feeding, granulation, and molding. The granulation is carried out by a rotating guide plate and an extrusion plate in the granulation structure, and molding is carried out by atomization and heat treatment in the molding structure.

Benefits of technology

It has enabled the automated production of Chinese medicine tablets, reducing manual intervention, improving production efficiency, and ensuring product quality. It can quickly and effectively treat ischemic stroke, and the formula is simple and has no side effects.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of traditional Chinese medicine tablet production, in particular to a production process and device of traditional Chinese medicine component tablets for treating cerebral arterial thrombosis, and the process comprises the following steps: squeezing celery and pumpkin vines in a juice squeezer, and sequentially filtering, deoxidizing and vacuum freeze-drying to obtain fine powder for later use; soaking salvia miltiorrhiza, pseudo-ginseng, ginkgo leaves, astragalus membranaceus and liquorice in a container, boiling, and mixing the two extracting solutions for later use; the preparation method comprises the following steps: putting naffide and betahistine into a container, adding distilled water, and uniformly stirring to obtain a solution for later use; and mixing the obtained fine powder, the filtrate and the solution, adding distilled water, then carrying out spray granulation, then carrying out tabletting forming, then carrying out drying again, and carrying out sealed packaging. The production device comprises a granulating structure, a forming structure and a feeding communicating structure. The traditional Chinese medicine component tablet can soften blood vessels, promote blood circulation and quickly and effectively treat cerebral arterial thrombosis, meanwhile, the production process is simple, the production efficiency is high, and industrial production is easy to achieve.
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Description

Technical Field

[0001] This invention relates to the field of traditional Chinese medicine tablet production technology, specifically to a production process and apparatus for traditional Chinese medicine tablets for treating ischemic stroke. Background Technology

[0002] Stroke, also known as apoplexy, is an acute cerebrovascular disease caused by the sudden rupture or blockage of blood vessels in the brain, leading to brain tissue damage. It includes ischemic and hemorrhagic strokes. Ischemic stroke has a higher incidence than hemorrhagic stroke, accounting for 60%-70% of all strokes. Occlusion and stenosis of the internal carotid artery and vertebral artery can cause ischemic stroke, which can be fatal in severe cases. Hemorrhagic stroke has a higher mortality rate. Different types of stroke require different treatments. Due to the lack of effective treatments, prevention is considered the best approach. Hypertension is a significant controllable risk factor for stroke; therefore, antihypertensive treatment is particularly important for preventing stroke onset and recurrence.

[0003] However, the existing production equipment for tablets containing traditional Chinese medicine components for treating ischemic stroke requires integrated production of feeding, granulation, and molding due to its mechanized structural design, in order to reduce interference from the external environment. Current production equipment often adopts single-step operation, which requires manual operation to complete the overall production. Therefore, there is a need for a production equipment for tablets containing traditional Chinese medicine components for treating ischemic stroke to solve the problems mentioned above. Summary of the Invention

[0004] The purpose of this invention is to provide a manufacturing process and apparatus for traditional Chinese medicine tablets for treating ischemic stroke, so as to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, the present invention provides the following technical solution:

[0006] A production apparatus for tablets containing traditional Chinese medicine components for treating ischemic stroke includes a granulation structure, a molding structure, and a feeding and connecting structure. The right side of the granulation structure is connected to the molding structure, and the right side of the molding structure is connected to the feeding and connecting structure.

[0007] The granulation structure includes a first feeding frame, a first feeding pump, a connecting seat, a first granulation component, a second granulation component, and a second feeding frame;

[0008] The upper part of the first feeding pump is connected to the first feeding frame, the lower end of the first feeding pump is connected to the connecting seat, the right side of the first feeding frame is connected to the second feeding frame, the right side of the second feeding frame is connected to the second granulation component, the first feeding frame and the second feeding frame are symmetrically arranged and symmetrically distributed about the first feeding pump, and the first feeding frame and the second feeding frame at symmetrical positions are connected to the first granulation component;

[0009] The second pelletizing component includes a feed hopper, a connecting guide seat, a first hydraulic seat, a guide tube, an upper die seat, a rotating guide plate, a protective plate, a second hydraulic seat, an extrusion plate, a pellet guide frame, and a lower die seat;

[0010] The lower end of the feed hopper is connected to the connecting guide seat, the lower end of the connecting guide seat is fixedly connected to the protective plate, the protective plate is rotatably connected to the rotating guide plate, the lower end of the rotating guide plate is fixedly connected to the extrusion plate through the protective plate, the front end of the extrusion plate is pressed into contact with the second hydraulic seat, the upper end of the second hydraulic seat is telescopically connected to the lower die seat, the front end of the second hydraulic seat is connected to the guide tube, the rear end of the guide tube is connected to the first hydraulic seat, the lower end of the first hydraulic seat is telescopically connected to the upper die seat, and the lower right side of the protective plate is connected to the particle guide frame.

[0011] The molded structure includes a dust collection bin, an atomizing bin, and an atomizing connector;

[0012] The lower end of the dust collection bin is connected to the atomizing bin, and the right side of the atomizing bin is connected to the atomizing connector.

[0013] The molding structure also includes a vibration motor, a mounting base, a third conveying rack, a storage tank, a heating base, a hot air blower, and a connecting main pipe;

[0014] The lower end of the atomizing barrel is connected to the heating base, the right side of the heating base is connected to the hot air blower, the rear end of the hot air blower is connected to the connecting main pipe, the lower end of the heating base is connected to the storage barrel, vibration motors are installed on the left and right sides of the storage barrel, the lower end of the storage barrel is connected to the third material conveying rack, and the lower end of the vibration motor is fixedly connected to the mounting base.

[0015] The feeding connection structure includes a protective top plate, a ladder, and a positioning support plate. The positioning support plate is fixedly connected to the left side of the ladder, and the protective top plate is located at the center of the left side of the positioning support plate.

[0016] Preferably, the feeding connection structure further includes a placement bucket seat, a second feeding pump, and a second feeding hose. The lower end of the protective top plate is limitedly connected to the placement bucket seat, and the rear end of the placement bucket seat is equipped with the second feeding pump. The rear end of the second feeding pump is equipped with a connecting hose.

[0017] Preferably, the connecting hose is connected to the atomizing connector, and the vibration motor is connected to the connecting seat.

[0018] Preferably, the connecting seat is connected to the second feeding frame via the first feeding pump, and the second feeding frame is connected to the feed hopper inside the second granulation component.

[0019] Preferably, a motor is provided at the center of the protective disc, and the motor drives the rotating guide disc to rotate on the protective disc, and simultaneously drives the extrusion disc to rotate.

[0020] Preferably, the connecting guide seat is provided with a groove adapted to the first hydraulic seat and the upper mold seat, and there is a gap between the rotating guide plate and the protective plate.

[0021] Preferably, the gap between the feed hopper and the rotating guide plate and the protective plate is connected, and the material moves in coordination with the rotation of the rotating guide plate.

[0022] Preferably, a barrier cone is fixedly connected to the upper end of the particle guide frame, and a fan is installed at both the front and rear ends of the barrier cone.

[0023] A manufacturing process for a traditional Chinese medicine tablet for treating ischemic stroke includes the following steps:

[0024] a. Juice the celery and pumpkin vine in a juicer, then filter, deoxygenate, and freeze-dry under vacuum to obtain a fine powder that passes through 100-150 mesh, and set aside.

[0025] b. Place the salvia miltiorrhiza, notoginseng, ginkgo leaves, astragalus, and licorice in a container, add 10-12 times the amount of distilled water and soak for 2-4 hours, then heat to boiling for 3-5 hours to extract; add 6-8 times the amount of distilled water a second time and heat to boiling for 2-3 hours to extract; combine the two extracts and obtain the filtrate for later use.

[0026] c. Place naproxen and betahistine in a container, add 5 to 7 times the amount of distilled water, stir well, filter, remove impurities, and obtain a solution for later use.

[0027] d. Mix the fine powder, filtrate and solution obtained above, add 6 to 8 times the amount of distilled water, then spray granulate through a granulation structure, then compress into tablets through a molding structure, and finally dry and seal the tablets to obtain tablets containing traditional Chinese medicine components for treating ischemic stroke.

[0028] Preferably, the raw materials of the traditional Chinese medicine tablets for treating ischemic stroke include, by weight, 30-50 parts celery, 30-50 parts pumpkin vine, 20-25 parts salvia miltiorrhiza, 15-20 parts notoginseng, 8-12 parts ginkgo leaves, 8-12 parts astragalus, 6-10 parts licorice, 0.7-1.5 parts naproxen, and 0.04-0.06 parts betahistine.

[0029] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0030] I. This invention integrates feeding, granulation, and molding into a single production process by setting up a granulation structure, a molding structure, and a feeding and connecting structure. This reduces interference from the external environment and minimizes manual intervention, enabling automated production. The connecting seat at the inner end of the granulation structure is connected to the first conveying pump. The material is then conveyed to the second granulation component via the first and second conveying frames. The second granulation component performs the granulation work. The material is conveyed through the feeding hopper to the gap between the rotating guide plate and the protective plate. The rotating guide plate is driven to rotate, causing the material to move. At this time, the extrusion plate rotates along with the rotating guide plate. Pressing the switch of the second hydraulic seat activates the second hydraulic seat. The second hydraulic seat transmits hydraulic oil to the position of the first hydraulic seat through a conduit, driving the upper die seat to extend and retract. Simultaneously, the second hydraulic seat drives the lower die seat to extend and retract, causing the upper and lower die seats to contact each other and perform the granulation work. Afterward, the granules are guided and discharged through the granulation frame, enabling automated production.

[0031] II. This invention performs atomization molding by setting up a molding structure. The solution material is transferred to the atomization tank through the atomization connector for atomization treatment. At this time, the hot air blower transfers air through the connecting pipe and then heats it, so that it comes into contact with the atomized solution, causing the atomized solution to be formed into powder, which is then transferred to the storage tank and transferred again through the third material conveyor, which facilitates automated molding production.

[0032] Third, the Chinese herbal tablets produced by this invention can soften blood vessels and promote blood circulation, thus rapidly and effectively treating ischemic stroke. At the same time, the formulation of the components is simple, the combination is reasonable, they complement each other, it is economical and affordable, and there are no adverse reactions or toxic side effects. It is worth promoting and applying. In addition, the production process of this invention is simple, the production efficiency is high, and it is easy to realize industrial production. Attached Figure Description

[0033] To more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0034] Figure 1 This is a schematic diagram of the production process of the present invention;

[0035] Figure 2 This is a three-dimensional structural diagram of the main body of the present invention from a frontal perspective;

[0036] Figure 3This is a three-dimensional structural diagram of the main body of the invention from the right side view.

[0037] Figure 4 This is a three-dimensional structural diagram of the main body of the invention from a rear view.

[0038] Figure 5 This is a frontal perspective three-dimensional structural diagram of the granulation structure of the present invention;

[0039] Figure 6 This is an exploded view of the second granulation component of the present invention;

[0040] Figure 7 This is a frontal perspective three-dimensional structural diagram of the molded structure of the present invention;

[0041] Figure 8 This is a frontal perspective three-dimensional structural diagram of a portion of the molding structure of the present invention;

[0042] Figure 9 This is a frontal perspective three-dimensional structural diagram of the feeding and connecting structure of the present invention;

[0043] Figure 10 This is a three-dimensional structural diagram of the feeding and connecting structure of the present invention from the left side view.

[0044] Figure 11 This is a frontal perspective three-dimensional structural diagram of the second embodiment of the main body of the present invention.

[0045] In the diagram: 1-Pelletizing structure, 2-Forming structure, 3-Feeding connection structure, 4-First conveying frame, 5-First conveying pump, 6-Connecting seat, 7-First pelletizing component, 8-Second pelletizing component, 9-Second conveying frame, 10-Feeding barrel, 11-Connecting guide seat, 12-First hydraulic seat, 13-Conduit, 14-Upper mold seat, 15-Rotating guide plate, 16-Protective plate, 17-Second hydraulic seat, 18-Extrusion plate, 19-Guide 20-Pellet rack, 21-Lower mold base, 22-Dust collection bin, 23-Atomizing bin, 24-Atomizing connector, 25-Vibration motor, 26-Mounting base, 27-Third conveyor rack, 28-Storage bin, 29-Heating base, 30-Hot air blower, 31-Connecting main pipe, 32-Protective top plate, 33-Ladder, 34-Positioning support plate, 35-Placement bin base, 36-Second conveyor pump, 37-Connecting hose, 38-Blower, 39-Barrier cone frame. Detailed Implementation

[0046] To enable those skilled in the art to better understand the present application, the technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present application, and not all embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative effort should fall within the scope of protection of the present application.

[0047] It should be noted that the terms "first," "second," etc., in the specification, claims, and accompanying drawings of this application are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence. It should be understood that such data can be interchanged where appropriate for the embodiments of this application described herein. Furthermore, the terms "comprising" and "having," and any variations thereof, are intended to cover non-exclusive inclusion; for example, a process, method, system, product, or apparatus that comprises a series of steps or units is not necessarily limited to those steps or units explicitly listed, but may include other steps or units not explicitly listed or inherent to such processes, methods, products, or apparatus.

[0048] The invention will be further described below with reference to the accompanying drawings.

[0049] Example 1

[0050] A manufacturing process for a traditional Chinese medicine tablet for treating ischemic stroke, see [link / reference]. Figure 1 This includes the following steps:

[0051] a. Juice the celery and pumpkin vine in a juicer, then filter, deoxygenate, and freeze-dry under vacuum to obtain a fine powder that passes through 100 mesh, and set aside.

[0052] b. Place the salvia miltiorrhiza, notoginseng, ginkgo leaves, astragalus, and licorice in a container, add 10 times the amount of distilled water and soak for 2 hours, then heat to boiling for 4 hours to extract; add 6 times the amount of distilled water a second time and heat to boiling for 2 hours to extract; combine the two extracts and obtain the filtrate for later use.

[0053] c. Place naproxen and betahistine in a container, add 5 times the amount of distilled water, stir well, filter, remove impurities, and obtain a solution for later use.

[0054] d. Mix the fine powder, filtrate and solution obtained above, add 6 times the amount of distilled water, then spray granulate through a granulation structure, then compress into tablets through a molding structure, and finally dry and seal the tablets to obtain tablets containing traditional Chinese medicine components for treating ischemic stroke.

[0055] The raw materials for the Chinese medicine tablets for treating ischemic stroke, by weight, include 30 parts celery, 35 parts pumpkin vine, 20 parts salvia miltiorrhiza, 16 parts notoginseng, 8 parts ginkgo leaves, 8 parts astragalus, 6 parts licorice, 0.7 parts naproxen, and 0.04 parts betahistine.

[0056] Example 2

[0057] A manufacturing process for a traditional Chinese medicine tablet for treating ischemic stroke, see [link / reference]. Figure 1 This includes the following steps:

[0058] a. Juice the celery and pumpkin vine in a juicer, then filter, deoxygenate, and freeze-dry under vacuum to obtain a fine powder that passes through 120 mesh, and set aside.

[0059] b. Place the salvia miltiorrhiza, notoginseng, ginkgo leaves, astragalus and licorice in a container, add 11 times the amount of distilled water and soak for 3 hours, then heat to boiling for 3 hours to extract; add 7 times the amount of distilled water a second time and heat to boiling for 3 hours to extract; combine the two extracts and keep the filtrate for later use.

[0060] c. Place naproxen and betahistine in a container, add 7 times the amount of distilled water, stir well, filter, remove impurities, and obtain a solution for later use.

[0061] d. Mix the fine powder, filtrate and solution obtained above, add 6 times the amount of distilled water, then spray granulate through a granulation structure, then compress into tablets through a molding structure, and finally dry and seal the tablets to obtain tablets containing traditional Chinese medicine components for treating ischemic stroke.

[0062] The raw materials for the Chinese medicine tablets for treating ischemic stroke, by weight, include 35 parts celery, 40 parts pumpkin vine, 22 parts salvia miltiorrhiza, 18 parts notoginseng, 9 parts ginkgo leaves, 9 parts astragalus, 8 parts licorice, 1.2 parts naproxen, and 0.05 parts betahistine.

[0063] Example 3

[0064] A manufacturing process for a traditional Chinese medicine tablet for treating ischemic stroke, see [link / reference]. Figure 1 This includes the following steps:

[0065] a. Juice the celery and pumpkin vine in a juicer, then filter, deoxygenate, and freeze-dry under vacuum to obtain a fine powder that passes through 150 mesh, and set aside.

[0066] b. Place the salvia miltiorrhiza, notoginseng, ginkgo leaves, astragalus, and licorice in a container, add 12 times the amount of distilled water and soak for 4 hours, then heat to boiling for 5 hours to extract; add 8 times the amount of distilled water a second time and heat to boiling for 3 hours to extract; combine the two extracts and obtain the filtrate for later use.

[0067] c. Place naproxen and betahistine in a container, add 7 times the amount of distilled water, stir well, filter, remove impurities, and obtain a solution for later use.

[0068] d. Mix the fine powder, filtrate and solution obtained above, add 8 times the amount of distilled water, then spray granulate through a granulation structure, then compress into tablets through a molding structure, and finally dry and seal the tablets to obtain tablets containing traditional Chinese medicine components for treating ischemic stroke.

[0069] The raw materials for the Chinese medicine tablets for treating ischemic stroke, by weight, include 50 parts celery, 40 parts pumpkin vine, 25 parts salvia miltiorrhiza, 20 parts notoginseng, 12 parts ginkgo leaves, 10 parts astragalus, 8 parts licorice, 1.5 parts naproxen, and 0.06 parts betahistine.

[0070] Based on Examples 1-3, it can be concluded that the Chinese herbal tablets produced by this invention can soften blood vessels, promote blood circulation, and can quickly and effectively treat ischemic stroke. At the same time, the formulation of the components is simple, the combination is reasonable, they complement each other, it is economical and affordable, and there are no adverse reactions or toxic side effects. It is worth promoting and applying. In addition, the production process of this invention is simple, the production efficiency is high, and it is easy to realize industrial production.

[0071] Example 4

[0072] Please see Figure 2 , Figure 3 , Figure 4 The present invention provides an embodiment of a production device for tablets containing traditional Chinese medicine components for treating ischemic stroke, comprising a granulation structure 1, a molding structure 2, and a feeding and connecting structure 3, wherein the right side of the granulation structure 1 is connected to the molding structure 2, and the right side of the molding structure 2 is connected to the feeding and connecting structure 3.

[0073] Please see Figure 5 The granulation structure 1 includes a first feeding frame 4, a first feeding pump 5, a connecting seat 6, a first granulation component 7, a second granulation component 8, and a second feeding frame 9;

[0074] The upper part of the first feeding pump 5 is connected to the first feeding frame 4, the lower end of the first feeding pump 5 is connected to the connecting seat 6, the right side of the first feeding frame 4 is connected to the second feeding frame 9, and the right side of the second feeding frame 9 is connected to the second granulation component 8. The first feeding frame 4 and the second feeding frame 9 are symmetrically arranged and symmetrically distributed about the first feeding pump 5. The first feeding frame 4 and the second feeding frame 9 at symmetrical positions are connected to the first granulation component 7.

[0075] Please see Figure 6The second pelletizing component 8 includes a feeding hopper 10, a connecting guide seat 11, a first hydraulic seat 12, a guide tube 13, an upper die seat 14, a rotating guide plate 15, a protective plate 16, a second hydraulic seat 17, an extrusion plate 18, a pellet guide frame 19, and a lower die seat 20. The rotating guide plate 15 can drive the extrusion plate 18 to rotate synchronously, so that the rotating guide plate 15 and the extrusion plate 18 cooperate synchronously. When the material reaches the position of the upper die seat 14 and the lower die seat 20, it can be processed and produced, realizing the motion coordination function between the rotating guide plate 15 and the extrusion plate 18.

[0076] The lower end of the feed hopper 10 is connected to the connecting guide seat 11. The lower end of the connecting guide seat 11 is fixedly connected to the protective plate 16. The rotating guide plate 15 is rotatably connected to the protective plate 16. The lower end of the rotating guide plate 15 is connected to the protective plate 16 and the extrusion plate 18. The front end of the extrusion plate 18 is pressed and contacted with the second hydraulic seat 17. The upper end of the second hydraulic seat 17 is telescopically connected to the lower mold seat 20. The front end of the second hydraulic seat 17 is connected to the guide tube 13. The rear end of the guide tube 13 is connected to the first hydraulic seat 12. The lower end of the first hydraulic seat 12 is telescopically connected to the upper mold seat 14. The lower right side of the protective plate 16 is connected to the particle guide frame 19.

[0077] Please see Figure 7 The molding structure 2 includes a dust collection bin 21, an atomizing bin 22, and an atomizing connector 23. The dust collection bin 21 is set up for integrated work, so that residual material is collected at the inner end of the dust collection bin 21, which facilitates the subsequent unified processing work.

[0078] The lower end of the dust collection bin 21 is connected to the atomizing bin 22, and the right side of the atomizing bin 22 is connected to the atomizing connector 23.

[0079] Please see Figure 8 The molding structure 2 also includes a vibration motor 24, a mounting base 25, a third conveying rack 26, a storage tank 27, a heating base 28, a hot air blower 29, and a connecting main pipe 30. The vibration motor 24 can vibrate, causing the material to move on the storage tank 27. The vibrating material is better collected. The material reaches the third conveying rack 26 and can be used for secondary transmission.

[0080] The lower end of the atomizing barrel 22 is connected to the heating base 28, the right side of the heating base 28 is connected to the hot air blower 29, the rear end of the hot air blower 29 is connected to the connecting main pipe 30, the lower end of the heating base 28 is connected to the storage barrel 27, the left and right sides of the storage barrel 27 are equipped with vibration motors 24, the lower end of the storage barrel 27 is connected to the third conveying rack 26, and the lower end of the vibration motor 24 is fixedly connected to the mounting base 25.

[0081] Please see Figure 9The feeding connection structure 3 includes a protective top plate 31, a ladder 32, and a positioning support plate 33. The positioning support plate 33 is fixedly connected to the left side of the ladder 32. The protective top plate 31 is located at the center of the left side of the positioning support plate 33. The ladder 32 and the positioning support plate 33 are fixed together, which facilitates the opening and closing of the protective top plate 31 and helps the operator with the later maintenance work.

[0082] Please see Figure 10 The feeding connection structure 3 also includes a placement tank base 34, a second feeding pump 35, and a second feeding pump 36. The lower end of the protective top plate 31 is limited and connected to the placement tank base 34. The second feeding pump 35 is installed at the rear end of the placement tank base 34, and a connecting hose 36 is installed at the rear end of the second feeding pump 35. The placement tank base 34 is connected to the second feeding pump 35 and the connecting hose 36, so that the solution inside the placement tank base 34 is drawn out by the second feeding pump 35 and centrally discharged through the connecting hose 36, which facilitates the transfer of the material.

[0083] The connecting hose 36 is connected to the atomizing connector 23, the vibration motor 24 is connected to the connecting seat 6, the connecting seat 6 is connected to the second conveying frame 9 through the first conveying pump 5, and the second conveying frame 9 is connected to the feeding barrel 10 in the second granulation component 8. The center of the protective plate 16 is provided with a motor, which drives the rotating guide plate 15 to rotate on the protective plate 16 and synchronously drives the extrusion plate 18 to rotate. The connecting guide seat 11 is provided with a groove that is compatible with the first hydraulic seat 12 and the upper mold seat 14, and there is a gap between the rotating guide plate 15 and the protective plate 16. The feeding barrel 10 is connected to the gap between the rotating guide plate 15 and the protective plate 16, and the material moves in coordination with the rotation of the rotating guide plate 15.

[0084] Working principle of Example 4: The user combines the granulation structure 1, the molding structure 2, and the feeding and connecting structure 3. First, the material is stored in the placement tank 34, and the top of the protective top plate 31 is sealed. The material is conveyed to the connecting hose 36 through the second conveying pump 35 for conveying. At the same time, the ladder 32 and the positioning support plate 33 are connected to the upper end of the placement tank 34 for easy inspection and maintenance inside the placement tank 34. Then, the material reaches the position of the atomizing connector 23. After being processed by the atomizing connector 23, it is conveyed to the inside of the atomizing tank 22. At this time, the hot air fan 29 is working. Air is conveyed to the hot air fan 29 through the connecting main pipe 30 for heating. The heated gas comes into contact with the atomizing solution in the heating seat 28, causing the atomized solution to form and reach the storage tank 27. Then, the vibration motor 24 is started, which conveys the material to the third conveying rack 26 for further transmission. The vibration motor 24 and the connecting seat The first feed pump 5, connected to the first feed rack 4, delivers the material to the second feed rack 9. The material is then transferred to the first pelletizing component 7 and the second pelletizing component 8. The material then passes through the lower die base 20 onto the rotating guide plate 15. The rotating guide plate 15 rotates, and the material reaches the gap between the rotating guide plate 15 and the protective plate 16. The rotation of the rotating guide plate 15 causes the material to move synchronously. When the material reaches the upper end of the second hydraulic seat 17, the rotating guide plate 15 drives the extrusion plate 18 to move synchronously, opening the second hydraulic seat 17. The second hydraulic seat 17 extrudes the oil and transmits it to the conduit 13 and the first hydraulic seat 12. The first hydraulic seat 12 then drives the upper die base 14 to press downwards, and the second hydraulic seat 17 drives the lower die base 20 to press upwards, performing the pelletizing process. Following the rotation of the rotating guide plate 15, the pellets reach the pellet guide rack 19 for unified collection.

[0085] Example 5

[0086] Based on Example 4, such as Figure 11 As shown, a barrier cone 38 is fixedly connected to the upper end of the particle guide frame 19, and a fan 37 is installed at both the front and rear ends of the barrier cone 38.

[0087] In this embodiment, the barrier cone 38 is used to seal the upper end of the particle guide frame 19, forming a sealed environment. Then, the operation of the fan 37 can adsorb dust and conduct the dust for unified collection and secondary granulation.

[0088] Although embodiments of the 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 invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A device for producing a tablet of traditional Chinese medicine components for treating ischemic stroke, comprising a granulating structure (1), a molding structure (2), and a feed communication structure (3), characterized in that: The right side of the granulating structure (1) is communicated with the forming structure (2), and the right side of the forming structure (2) is communicated with the feeding communicating structure (3); The granulating structure (1) comprises a first feeding frame (4), a first feeding pump (5), a communicating seat (6), a first granulating component (7), a second granulating component (8) and a second feeding frame (9); The upper part of the first feeding pump (5) is communicated with the first feeding frame (4), the lower end of the first feeding pump (5) is communicated with the communicating seat (6), the right side of the first feeding frame (4) is communicated with the second feeding frame (9), the right side of the second feeding frame (9) is communicated with the second granulating component (8), the first feeding frame (4) and the second feeding frame (9) are symmetrically arranged and symmetrically distributed about the first feeding pump (5), and the symmetrically arranged first feeding frame (4) and the second feeding frame (9) are communicated with the first granulating component (7).

2. The production device of the therapeutic ischemic stroke traditional Chinese medicine component tablet according to claim 1, characterized in that: The second granulating component (8) comprises a feeding barrel (10), a guiding seat (11), a first hydraulic seat (12), a guide pipe (13), an upper die seat (14), a rotating guide disc (15), a protection disc (16), a second hydraulic seat (17), a pressing disc (18), a guide frame (19) and a lower die seat (20); The lower end of the feeding barrel (10) is throughly arranged with the guiding seat (11), the lower end of the guiding seat (11) is fixedly connected with the protection disc (16), the protection disc (16) is rotatably connected with the rotating guide disc (15), the lower end of the rotating guide disc (15) is fixedly connected with the pressing disc (18) through the protection disc (16), the front end of the pressing disc (18) is press-contacted with the second hydraulic seat (17), the upper end of the second hydraulic seat (17) is telescopically arranged with the lower die seat (20), the front end of the second hydraulic seat (17) is communicated with the guide pipe (13), the rear end of the guide pipe (13) is communicated with the first hydraulic seat (12), the lower end of the first hydraulic seat (12) is telescopically connected with the upper die seat (14), and the right lower side of the protection disc (16) is communicated with the guide frame (19).

3. The production device of the ischemic stroke treating traditional Chinese medicine component tablet according to claim 2, characterized in that: The forming structure (2) comprises a dust collecting barrel (21), an atomizing barrel (22) and an atomizing communicating device (23); The lower end of the dust collecting barrel (21) is communicated with the atomizing barrel (22), and the right side of the atomizing barrel (22) is communicated with the atomizing communicating device (23); The forming structure (2) further comprises a vibrating motor (24), a mounting seat (25), a third feeding frame (26), a storage barrel (27), a heating seat (28), a hot air blower (29) and a communicating main pipe (30); The lower end of the atomizing barrel (22) is communicated with a heating seat (28), the right side of the heating seat (28) is communicated with a hot air blower (29), the rear end of the hot air blower (29) is communicated with a communication main pipe (30), the lower end of the heating seat (28) is communicated with a storage barrel (27), the left and right sides of the storage barrel (27) are provided with vibration motors (24), the lower end of the storage barrel (27) is communicated with a third material conveying frame (26), and the lower end of the vibration motor (24) is fixedly connected with a mounting seat (25).

4. The production device of claim 3, wherein: The inlet communication structure (3) comprises a protective top disc (31), a staircase (32) and a positioning support plate (33), the left side of the staircase (32) is fixedly connected with the positioning support plate (33), and the left side center of the positioning support plate (33) is provided with the protective top disc (31); The inlet communication structure (3) further comprises a placing barrel seat (34), a second material conveying pump (35) and a second material conveying pump (35), the lower end of the protective top disc (31) is limitingly connected with the placing barrel seat (34), the rear end of the placing barrel seat (34) is provided with the second material conveying pump (35), and the rear end of the second material conveying pump (35) is provided with a communication hose (36); The communication hose (36) is communicated with the atomizing communication device (23), and the vibration motor (24) is communicated with the communication seat (6).

5. The production device of the ischemic stroke treating traditional Chinese medicine component tablet according to claim 4, characterized in that: The communication seat (6) is communicated with the second material conveying frame (9) through the first material conveying pump (5), and the second material conveying frame (9) is communicated with the inlet barrel (10) in the second granulating component (8); the center of the protective disc (16) is provided with a motor, the motor drives the rotating guide disc (15) to be rotatably connected on the protective disc (16), and synchronously drives the extrusion disc (18) to be rotatably connected.

6. The production device of a traditional Chinese medicine component tablet for treating ischemic stroke according to claim 5, characterized in that: The rotating guide disc (15) and the protective disc (16) are provided with gaps.

7. The device for producing a traditional Chinese medicine component tablet for treating ischemic stroke according to claim 6, characterized in that: The inlet barrel (10) is communicated with the gaps between the rotating guide disc (15) and the protective disc (16), and the material body moves in cooperation with the rotation of the rotating guide disc (15).

8. The device for producing a traditional Chinese medicine component tablet for treating ischemic stroke according to claim 7, characterized in that: The upper end of the guide frame (19) is fixedly connected with a barrier cone frame (38), and the front and rear ends of the barrier cone frame (38) are provided with air fans (37).

9. A production process of the Chinese medicine component tablet for treating ischemic stroke, using the production device of any one of claims 1-8, characterized in that, The method comprises the following steps: a. Juice the celery and pumpkin vines in a juicer, then filter, deoxidize, and vacuum freeze-dry in sequence to obtain fine powder with a particle size of 100-150 mesh for standby use; b. Put Danshen, Sanqi, Ginkgo leaves, Huangqi and Gancao into a container, soak in 10-12 times the amount of distilled water for 2-4 hours, then heat and boil for 3-5 hours for extraction; add 6-8 times the amount of distilled water for the second time, heat and boil for 2-3 hours for extraction; combine the two extracted liquids to obtain a filtrate for standby use; c. Put naphazoline and betahistine into a container, add 5-7 times the amount of distilled water, stir evenly, filter, and remove impurities to obtain a solution for standby use; d, the fine powder, filtrate and solution obtained above are mixed, 6-8 times the amount of distilled water is added, then spray granulation is carried out through a granulation structure (1), then tablet compression is carried out through a tablet compression structure (2), and finally re-drying is carried out, and the product is sealed and packaged to obtain the Chinese medicinal component tablet for treating ischemic cerebral stroke.

10. The production process of the traditional Chinese medicine component tablet for treating ischemic stroke according to claim 9, characterized in that, The raw materials of the Chinese medicinal component tablet for treating ischemic cerebral stroke include celery 30-50 parts, pumpkin vine 30-50 parts, salvia miltiorrhiza 20-25 parts, panax notoginseng 15-20 parts, ginkgo leaves 8-12 parts, astragalus 8-12 parts, licorice 6-10 parts, nafomate 0.7-1.5 parts and betahistine 0.04-0.06 parts in terms of weight.