Concentration device for traditional Chinese medicine ointment production based on AI dynamic regulation and control
The concentration device for the production of traditional Chinese medicine ointments, which is dynamically controlled by AI, solves the problem of water vapor condensation and fall back by using scraping and suction components, thereby achieving efficient concentration of traditional Chinese medicine ointments and stability of finished product quality, and is suitable for large-scale production.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- HENAN YUCAOTANG TRADITIONAL CHINESE MEDICINE IND TECHNOLOGY DEVELOPMENT CO LTD
- Filing Date
- 2026-03-04
- Publication Date
- 2026-04-17
AI Technical Summary
In existing Chinese medicine ointment concentration equipment, during the heating and evaporation process, water vapor easily adheres to the inner wall of the concentration tank, condenses into water droplets, and falls back into the medicinal liquid. This results in a decrease in the concentration of the concentrated liquid, uneven consistency, and poor component stability, affecting production efficiency and product quality.
The concentration device for the production of traditional Chinese medicine ointments, which adopts AI dynamic control, uses a scraping component that fits tightly against the inner wall of the concentration tank. It uses a scraper and inclined structure to quickly scrape off condensed water droplets, which are then collected by a fan-shaped water box. Combined with lifting, reciprocating and driving components, it achieves automated cleaning, preventing water droplets from falling back. An additional suction component is added to drain the condensed water in a timely manner.
It effectively avoids water droplets falling back and diluting the medicine, improves concentration efficiency and product quality consistency, reduces manual labor intensity, and enhances production efficiency and adapts to the needs of large-scale production.
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Figure CN121868883A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of traditional Chinese medicine concentration technology, and in particular to a concentration device for the production of traditional Chinese medicine ointments based on AI dynamic control. Background Technology
[0002] Traditional Chinese medicine ointments, widely used in clinical practice, are characterized by their definite efficacy and ease of use, and are commonly used in the management of chronic diseases and daily health maintenance. The concentration process is a crucial step in the preparation of traditional Chinese medicine ointments, directly affecting the retention rate of active ingredients, consistency uniformity, taste, and final product quality. However, traditional concentration equipment has the following drawbacks during use: In actual operation, existing Chinese herbal paste concentration equipment generates a large amount of high-temperature steam during the heating and evaporation of the extracted medicinal liquid to remove moisture and increase concentration. As this steam diffuses upwards and is expelled, only a portion escapes through the exhaust pipe; the rest comes into contact with the relatively cooler inner wall of the concentration tank and easily adheres to its surface. As production continues, the steam adhering to the inner wall accumulates and condenses, gradually forming larger droplets. When these droplets reach a certain weight, they fall back into the heated and concentrated medicinal liquid under gravity. These condensed droplets are essentially pure water; their direct fall dilutes the medicinal liquid, causing a decrease in concentration and preventing the liquid from quickly reaching the required concentration. This necessitates extending the concentration time and significantly reducing overall production efficiency. Furthermore, the temperature of the falling condensed droplets is usually lower than that of the medicinal liquid inside the tank, causing a sudden drop in temperature and disrupting temperature stability during the concentration process. Temperature fluctuations not only affect the rate of water evaporation, but also lead to uneven consistency of the medicinal liquid and poor stability of the ingredients, ultimately affecting the finished product quality and batch consistency of traditional Chinese medicine ointments, making it difficult to meet the needs of modern and standardized production. Summary of the Invention
[0003] In view of the problems existing in the concentration process of traditional Chinese medicine ointments, water vapor generated can easily adhere to the inner wall of the concentration tank, forming water droplets that fall into the concentrated liquid, causing the concentration of the liquid to decrease, reducing the concentration efficiency, and easily causing the local temperature of the concentrated liquid to drop, resulting in uneven consistency and poor component stability, a concentration device for the production of traditional Chinese medicine ointments based on AI dynamic control is proposed.
[0004] This application provides a concentration device for the production of traditional Chinese medicine ointments based on AI dynamic control. Its purpose is to collect and treat water droplets adhering to the inner wall of the concentration tank in a timely manner during the concentration process of traditional Chinese medicine ointments, so as to avoid water droplets flowing into the concentrate, which would reduce the concentration of the concentrate, reduce the concentration efficiency, and cause uneven consistency and poor stability of the components.
[0005] The technical solution of the present invention is: a concentration device for the production of traditional Chinese medicine ointment based on AI dynamic control, including a concentration tank, a discharge pipe at the bottom of the concentration tank, a cover plate at the top of the concentration tank, a feed pipe on the cover plate, an air outlet pipe on one side of the top of the concentration tank, and a cleaning and scraping component set on the cover plate. The cleaning and scraping component includes a scraping assembly disposed on the cover plate, a lifting assembly disposed on the scraping assembly, a reciprocating assembly disposed on the top of the lifting assembly, and an adjusting assembly disposed on the reciprocating assembly; The cleaning and scraping component is used to scrape and clean water vapor droplets on the inner wall of the concentration tank; The scraping assembly includes a column mounted on a cover plate, a sliding sleeve mounted on the column, a fan-shaped water box mounted on the sliding sleeve, a scraper mounted inside the fan-shaped water box, the side of the scraper away from the fan-shaped water box being in contact with the inner wall of the concentration tank, an inclined surface mounted on the scraper, and several inclined grooves arranged in a circular array on the scraper.
[0006] Furthermore, the lifting assembly includes a lifting rod mounted on a column, a through hole on the column, a lifting block inside the through hole, one end of the lifting block being fixedly connected to the lifting rod, and the other end of the lifting block being fixedly connected to a sliding sleeve.
[0007] Furthermore, the reciprocating assembly includes a disc disposed on the top of the cover plate, an arc-shaped plate disposed on the disc, a cylindrical pin disposed on the arc-shaped plate, a strip frame disposed on the top of the cover plate, the cylindrical pin being slidably connected to the inner side of the strip frame, a connecting block disposed on the strip frame, and the connecting block being rotatably connected to the lifting rod.
[0008] Furthermore, the adjustment assembly includes an adjustment threaded rod disposed on the disc, the adjustment threaded rod being rotatably connected to the arc plate, and two limiting rods symmetrically distributed on the disc, the limiting rods being fixedly connected to the arc plate.
[0009] Furthermore, the cleaning and scraping component also includes a drive component disposed on the reciprocating assembly, and the drive component is provided with an intermittent rotation component; The drive assembly includes a mounting plate disposed on the cover plate, a connecting shaft disposed on the mounting plate, the connecting shaft being fixedly connected to the disc, a first gear disposed on the connecting shaft, a drive motor disposed on the mounting plate, and an incomplete gear disposed on the output shaft of the drive motor, the incomplete gear being meshed with the first gear.
[0010] Furthermore, the intermittent rotation assembly includes a fixed shaft mounted on an incomplete gear, a rotating shaft mounted on a cover plate, the rotating shaft and the fixed shaft being connected by a belt drive, an incomplete bevel gear mounted on the rotating shaft, and a first bevel gear mounted on a column, the incomplete bevel gear meshing with the first bevel gear.
[0011] Furthermore, it also includes a suction component installed on the scraping component. The suction component includes a connecting hose installed on the column. The bottom of the connecting hose is fixedly connected to the fan-shaped water box. A hollow rubber ball is installed on the top of the connecting hose, and a discharge pipe is installed on the hollow rubber ball.
[0012] The beneficial effects of this invention are: By precisely matching the scraper assembly with the concentration tank, the industry pain point of condensate dripping from the inner wall of traditional concentration equipment is effectively solved. The scraper fits tightly against the inner wall of the concentration tank, and the inclined surface and the ring-shaped array of ramps quickly scrape off condensate droplets from the tank wall and guide them to a fan-shaped water box for centralized collection, preventing water droplets from falling back and diluting the medicine. At the same time, the conical recessed cover guides condensate droplets from the bottom of the cover to the tank wall, where they are then uniformly scraped off by the scraper. This fundamentally prevents the concentration of the medicine from decreasing and the consistency from becoming uneven, improving concentration efficiency and the consistency of the finished ointment quality.
[0013] By coordinating the lifting, reciprocating, and driving components, the scraper automatically scrapes up and down and rotates intermittently, completing the entire cleaning of the inner wall of the concentration tank without manual intervention. The intermittent rotation component allows the scraper to rotate a certain angle after scraping up and down once, ensuring thorough cleaning without any blind spots or omissions. The drive motor drives the incomplete gear to mesh with the first gear, achieving efficient power transmission, stable structural transmission, significantly reducing manual labor intensity, and improving the continuous operation capability and production efficiency of the unit.
[0014] By adding an adjustment component and a suction component, practicality and adaptability are significantly improved. The adjustment component allows for flexible adjustment of the scraper's vertical movement by rotating the adjusting screw rod, adapting to different liquid levels in the concentration tank and avoiding resource waste. The suction component, through the cooperation of a connecting hose, hollow rubber ball, and one-way valve, can promptly drain the condensate collected in the fan-shaped water box, preventing water overflow and ensuring the continuous and stable operation of the scraping component. The overall structure is compact and easy to operate, suitable for the large-scale production needs of traditional Chinese medicine ointments. Attached Figure Description
[0015] Figure 1 This is a three-dimensional structural diagram of the present invention; Figure 2 This is a schematic diagram of the cleaning and scraping component structure of the present invention; Figure 3 This is a partial structural diagram of the scraping component of the present invention; Figure 4 This is a schematic diagram of the scraper structure from a first-view perspective of the present invention; Figure 5 This is a schematic diagram of the scraper structure from a second perspective of the present invention; Figure 6 This is a schematic diagram of the lifting component structure of the present invention; Figure 7This is a schematic diagram of the reciprocating component structure of the present invention; Figure 8 This is a schematic diagram of the adjustment component structure of the present invention; Figure 9 This is a schematic diagram of the drive component structure of the present invention; Figure 10 This is a schematic diagram of the intermittent rotation component structure of the present invention; Figure 11 This is a schematic diagram of the suction component structure of the present invention.
[0016] In the picture: 1. Concentrating tank; 11. Discharge pipe; 12. Cover plate; 13. Feed pipe; 14. Air outlet pipe; 2. Scraping assembly; 21. Column; 22. Sliding sleeve; 23. Fan-shaped water box; 24. Scraper; 25. Inclined surface; 26. Sloping trough; 3. Lifting assembly; 31. Lifting rod; 32. Lifting block; 4. Reciprocating assembly; 41. Disc; 42. Arc plate; 43. Cylindrical pin; 44. Strip frame; 45. Connecting block; 5. Adjustment 51. Adjusting threaded rod; 52. Limiting rod; 6. Drive assembly; 61. Mounting plate; 62. Connecting shaft; 63. First gear; 64. Drive motor; 65. Incomplete gear; 7. Intermittent rotation assembly; 71. Fixed shaft; 72. Rotating shaft; 73. Belt; 74. Incomplete bevel gear; 75. First bevel gear; 8. Suction assembly; 81. Connecting hose; 82. Hollow rubber ball; 83. Discharge pipe. Detailed Implementation
[0017] To make the above-mentioned objects, features and advantages of the present invention more apparent and understandable, the specific embodiments of the present invention will be described in detail below with reference to the accompanying drawings.
[0018] Example 1, referring to Figures 1-8This invention provides a concentration device for producing traditional Chinese medicine ointments based on AI dynamic control, comprising a concentration tank 1, a discharge pipe 11 fixedly connected to the bottom of the concentration tank 1, a cover plate 12 provided on the top of the concentration tank 1, a feed pipe 13 fixedly connected to the cover plate 12, and an air outlet pipe 14 fixedly connected to one side of the top of the concentration tank 1. It also includes a cleaning and scraping component installed on the cover plate 12; the cleaning and scraping component includes a scraping assembly 2 installed on the cover plate 12, a lifting assembly 3 installed on the scraping assembly 2, and a reciprocating assembly installed on the top of the lifting assembly 3. Component 4, the reciprocating assembly 4 is equipped with an adjusting assembly 5; the cleaning and scraping component is used to scrape and clean water vapor droplets on the inner wall of the concentration tank 1; the scraping assembly 2 includes a column 21 rotatably connected to the cover plate 12, a sliding sleeve 22 slidably connected to the column 21, a fan-shaped water box 23 fixedly connected to the sliding sleeve 22, a scraper 24 fixedly connected to the inner side of the fan-shaped water box 23, the side of the scraper 24 away from the fan-shaped water box 23 is in contact with the inner wall of the concentration tank 1, the scraper 24 has an inclined surface 25, and the scraper 24 has a number of inclined grooves 26 distributed in a ring array.
[0019] Specifically, the liquid medicine enters the concentration tank 1 through the feed pipe 13 on the cover plate 12. In the concentration tank 1, it is heated and evaporated to form a large amount of water vapor. Some of the water vapor is discharged through the vent pipe 14, while the rest adheres to the inner wall of the concentration tank 1 upon cooling, forming droplets. The concentration tank 1 is equipped with a temperature sensor and a concentration sensor, which monitor the temperature and concentration of the liquid medicine in the concentration tank 1 in real time and transmit the data to the AI control system. The AI control system analyzes the data, determines whether the parameters meet the standards, and automatically adjusts the heating power and steam valve to maintain a stable temperature and concentration in the concentration tank 1. When the set value is reached, the concentration automatically ends. The sliding sleeve 22 slides on the column 21, causing the fan-shaped water box 23 to slide up and down, causing the scraper 24 to scrape the inner wall of the concentration tank 1, removing the adhering water droplets and allowing them to flow into the inner side of the fan-shaped water box 23. The cover plate 12 has a conical structure with an upward-facing concave bottom. When water vapor adheres to the bottom of the cover plate 12, the concave structure causes water droplets to flow downwards along the inner wall of the cover plate 12, onto the inner wall of the concentration tank 1, where they are scraped off by the scraper 24. After the scraper 24 moves up and down once, the column 21 rotates at a certain angle, causing the fan-shaped water box 23 and the scraper 24 to rotate at a certain angle, so that the scraper 24 leaves the area on the inner wall of the concentration tank 1 where water droplets have just been scraped off and moves to the unscraped area. Then, the scraper 24 moves up and down once more, and so on, continuously scraping the water droplets off the inner wall of the concentration tank 1 and into the fan-shaped water box 23. The inclined surface 25 on the scraper 24 causes water droplets to flow to the lower end of the scraper 24 when the scraper 24 moves downwards. Under the action of the inclined surface 25, the water droplets flow downwards along the inclined surface 25 and then fall into the fan-shaped water box 23. When the scraper 24 scrapes upward, water droplets will flow to the upper end of the scraper 24. Under the action of the inclined groove 26, the water droplets will flow along the inclined surface of the inclined groove 26 into the fan-shaped water box 23.
[0020] Reference Figure 6 The lifting assembly 3 includes a lifting rod 31 slidably connected to the column 21. The column 21 has a through hole, and a lifting block 32 is slidably connected inside the through hole. One end of the lifting block 32 is fixedly connected to the lifting rod 31, and the other end of the lifting block 32 is fixedly connected to the sliding sleeve 22.
[0021] Specifically, when the lifting rod 31 moves upward, the lifting block 32 slides upward inside the through hole, causing the sliding sleeve 22 to slide upward, which in turn causes the scraper 24 to scrape upward. When the lifting rod 31 moves downward, the lifting block 32 slides downward inside the through hole, causing the sliding sleeve 22 to slide downward, which in turn causes the scraper 24 to scrape downward.
[0022] Reference Figure 7 The reciprocating assembly 4 includes a disc 41 rotatably connected to the top of the cover plate 12, an arc plate 42 slidably connected to the disc 41, a cylindrical pin 43 fixedly connected to the arc plate 42, a strip frame 44 slidably connected to the top of the cover plate 12, the cylindrical pin 43 slidably connected to the inner side of the strip frame 44, a connecting block 45 fixedly connected to the strip frame 44, and the connecting block 45 rotatably connected to the lifting rod 31.
[0023] Specifically, the rotation of the disc 41 causes the arc plate 42 and the cylindrical pin 43 to rotate, causing the cylindrical pin 43 to slide inside the strip frame 44, which in turn causes the strip frame 44 to slide up and down, and causes the connecting block 45 and the lifting rod 31 to move up and down.
[0024] Example 2, refer to Figure 8 This is the second embodiment of the present invention. The difference between this embodiment and the first embodiment is that the adjusting component 5 includes an adjusting threaded rod 51 threadedly connected to the disc 41. The adjusting threaded rod 51 is rotatably connected to the arc plate 42. Two limiting rods 52 are symmetrically distributed and slidably connected on the disc 41. The limiting rods 52 are fixedly connected to the arc plate 42.
[0025] Specifically, rotating the adjusting threaded rod 51, under the action of the limiting rod 52, causes the arc-shaped plate 42 to move away from the disc 41, increasing the radius of the circle in which the arc-shaped plate 42 rotates. This increases the sliding range of the strip frame 44, the vertical sliding range of the lifting rod 31, and the vertical movement range of the scraper 24, thus increasing the area scraped by the scraper 24. By adjusting the adjusting threaded rod 51, the area scraped by the scraper 24 can be adjusted. When the liquid level in the concentration tank 1 is high, the area scraped by the scraper 24 is reduced; when the liquid level in the concentration tank 1 is low, the area scraped by the scraper 24 is increased.
[0026] Reference Figure 9 and Figure 10The cleaning and scraping components also include a drive assembly 6 mounted on the reciprocating assembly 4, and an intermittent rotation assembly 7 mounted on the drive assembly 6. The drive assembly 6 includes a mounting plate 61 fixedly connected to the cover plate 12, a connecting shaft 62 rotatably connected to the mounting plate 61, the connecting shaft 62 being fixedly connected to the disc 41, a first gear 63 fixedly sleeved on the connecting shaft 62, a drive motor 64 fixedly connected to the mounting plate 61, and an incomplete gear 65 fixedly connected to the output shaft of the drive motor 64, the incomplete gear 65 meshing with the first gear 63.
[0027] Specifically, the drive motor 64 is started, driving the incomplete gear 65 to rotate. The incomplete gear 65 meshes with the first gear 63, driving the first gear 63 to rotate, which in turn drives the connecting shaft 62 and the disc 41 to rotate. The diameter of the incomplete gear 65 is larger than that of the first gear 63, and the number of teeth of the incomplete gear 65 is the same as that of the first gear 63. When the incomplete gear 65 rotates, after the part meshing with the first gear 63 has rotated completely, the first gear 63 has rotated one revolution, causing the disc 41 to rotate one revolution, driving the lifting rod 31 to move up and down back and forth once, and driving the scraper 24 to move up and down one revolution. The rest of the structure is the same as that of Embodiment 1.
[0028] Example 3, referring to Figure 10 This is the third embodiment of the present invention. The difference between this embodiment and the second embodiment is that the intermittent rotation component 7 includes a fixed shaft 71 fixedly connected to the incomplete gear 65, a rotating shaft 72 rotatably connected to the cover plate 12, the rotating shaft 72 and the fixed shaft 71 being connected by a belt 73, an incomplete bevel gear 74 fixedly connected to the rotating shaft 72, and a first bevel gear 75 fixedly sleeved on the column 21, with the incomplete bevel gear 74 meshing with the first bevel gear 75.
[0029] Specifically, when the incomplete gear 65 rotates, it drives the fixed shaft 71 to rotate, which in turn drives the rotating shaft 72 to rotate via the belt 73, thus driving the incomplete bevel gear 74 to rotate. When the incomplete gear 65 meshes with the first gear 63, the toothless end of the incomplete bevel gear 74 is opposite to the first bevel gear 75. At this time, the first bevel gear 75 does not rotate, and the column 21 does not rotate. When the toothless end of the incomplete gear 65 is opposite to the first gear 63, the incomplete bevel gear 74 is just engaged with the first bevel gear 75, causing the first bevel gear 75 to rotate at a certain angle, which in turn causes the column 21 to rotate at a certain angle and stop. One rotation of the incomplete gear 65 causes the disc 41 to rotate one revolution, plus the column 21 to rotate at a certain angle, causing the scraper 24 to move up and down once and then rotate at a certain angle.
[0030] Reference Figure 11It also includes a suction assembly 8 installed on the scraping assembly 2. The suction assembly 8 includes a connecting hose 81 fixedly connected to the column 21. The bottom of the connecting hose 81 is fixedly connected to the fan-shaped water box 23. A hollow rubber ball 82 is fixedly connected to the top of the connecting hose 81. A discharge pipe 83 is fixedly connected to the hollow rubber ball 82.
[0031] Specifically, both the connecting hose 81 and the drain pipe 83 are equipped with one-way valves. When it is necessary to drain the fan-shaped water box 23, the hollow rubber ball 82 is squeezed. Under the action of the one-way valve, the water in the fan-shaped water box 23 enters the hollow rubber ball 82 and is then squeezed into the drain pipe 83 for discharge. By repeatedly squeezing the hollow rubber ball 82, the water in the fan-shaped water box 23 can be discharged, ensuring that the scraping component 2 can operate continuously. The rest of the structure is the same as that in Embodiment 2.
[0032] Based on embodiments 1-3, the working principle of the present invention is as follows: When the concentration tank 1 is started, a large amount of water vapor is generated, and some of the water vapor adheres to the inner wall of the concentration tank 1. The drive motor 64 is started, which drives the incomplete gear 65 to rotate, drives the first gear 63 meshing with it to rotate, drives the connecting shaft 62 and the disc 41 to rotate, causing the arc plate 42 and the cylindrical pin 43 to rotate, causing the cylindrical pin 43 to slide inside the strip frame 44, causing the strip frame 44 to move up and down, driving the lifting rod 31 to move up and down, causing the scraper 24 to move up and down, scraping away the water droplets on the inner wall of the concentration tank 1. When the toothless end of the incomplete gear 65 is opposite to the first gear 63, the fixed shaft 71 rotates, driving the rotating shaft 72 to rotate through the belt 73. The incomplete bevel gear 74 just meshes with the first bevel gear 75, causing the column 21 to rotate a certain angle and stop, causing the scraper 24 to rotate a certain angle, rotating from the scraped area to the unscraped area. The drive motor 64 rotates continuously, and the scraper 24 moves up and down and then rotates at a certain angle, repeating this process to completely scrape the water droplets on the inner wall of the concentration tank 1 into the fan-shaped water box 23. When the liquid level in the concentration tank 1 is low, the adjusting screw rod 51 is rotated, and under the action of the limiting rod 52, the arc plate 42 moves away from the disc 41. At this time, the radius of the circle formed by the rotation of the arc plate 42 will increase, which will increase the range of the up and down movement of the strip frame 44. The lifting rod 31 drives the scraper 24 to move up and down more, and the area scraped by the scraper 24 will increase. When the scraper 24 moves downward, under the action of the inclined surface 25, the water droplets scraped off by the scraper 24 flow from the inclined surface 25 into the fan-shaped water box 23. When the scraper 24 moves upward, under the action of the inclined groove 26, the water droplets scraped off by the scraper 24 flow from the slope of the inclined groove 26 into the fan-shaped water box 23.
[0033] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit it. Although the present invention has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of the present invention without departing from the spirit and scope of the technical solutions of the present invention.
Claims
1. A concentration device for producing traditional Chinese medicine ointments based on AI dynamic control, comprising a concentration tank (1), a discharge pipe (11) at the bottom of the concentration tank (1), a cover plate (12) at the top of the concentration tank (1), a feed pipe (13) on the cover plate (12), and an air outlet pipe (14) on one side of the top of the concentration tank (1), characterized in that: It also includes a cleaning and scraping component disposed on the cover plate (12); The cleaning and scraping component includes a scraping assembly (2) disposed on the cover plate (12), a lifting assembly (3) disposed on the scraping assembly (2), a reciprocating assembly (4) disposed on the top of the lifting assembly (3), and an adjusting assembly (5) disposed on the reciprocating assembly (4). The cleaning and scraping component is used to scrape and clean water vapor droplets on the inner wall of the concentration tank (1); The scraping assembly (2) includes a column (21) set on the cover plate (12), a sliding sleeve (22) set on the column (21), a fan-shaped water box (23) set on the sliding sleeve (22), a scraper (24) set on the inner side of the fan-shaped water box (23), the side of the scraper (24) away from the fan-shaped water box (23) is in contact with the inner wall of the concentration tank (1), the scraper (24) is provided with an inclined surface (25), and the scraper (24) is arranged in a ring array with several inclined grooves (26).
2. The AI-based dynamically regulated Chinese medicine paste production concentrating device according to claim 1, characterized in that: The lifting assembly (3) includes a lifting rod (31) set on a column (21), a through hole is provided on the column (21), a lifting block (32) is provided inside the through hole, one end of the lifting block (32) is fixedly connected to the lifting rod (31), and the other end of the lifting block (32) is fixedly connected to the sliding sleeve (22).
3. The AI-based dynamically regulated Chinese medicine paste production concentrating device according to claim 2, characterized in that: The reciprocating assembly (4) includes a disc (41) disposed on the top of the cover plate (12), an arc plate (42) disposed on the disc (41), a cylindrical pin (43) disposed on the arc plate (42), a strip frame (44) disposed on the top of the cover plate (12), the cylindrical pin (43) is slidably connected to the inner side of the strip frame (44), a connecting block (45) disposed on the strip frame (44), and the connecting block (45) is rotatably connected to the lifting rod (31).
4. The AI-based dynamically regulated Chinese medicine paste production concentrating device according to claim 3, characterized in that: The adjustment assembly (5) includes an adjustment threaded rod (51) disposed on a disc (41), the adjustment threaded rod (51) being rotatably connected to an arc plate (42), and two limiting rods (52) being symmetrically distributed on the disc (41), the limiting rods (52) being fixedly connected to the arc plate (42).
5. The AI-based dynamically regulated Chinese medicine paste production concentrating device according to claim 2, characterized in that: The cleaning and scraping component also includes a drive component (6) disposed on the reciprocating component (4), and an intermittent rotation component (7) is disposed on the drive component (6). The drive assembly (6) includes a mounting plate (61) disposed on the cover plate (12), a connecting shaft (62) disposed on the mounting plate (61), the connecting shaft (62) being fixedly connected to the disc (41), a first gear (63) disposed on the connecting shaft (62), and a drive motor (64) disposed on the mounting plate (61). The output shaft of the drive motor (64) is provided with an incomplete gear (65), which meshes with the first gear (63).
6. The concentration device for producing traditional Chinese medicine ointments based on AI dynamic control according to claim 5, characterized in that: The intermittent rotation assembly (7) includes a fixed shaft (71) mounted on an incomplete gear (65), a rotating shaft (72) mounted on a cover plate (12), the rotating shaft (72) and the fixed shaft (71) being connected by a belt (73), an incomplete bevel gear (74) mounted on the rotating shaft (72), and a first bevel gear (75) mounted on a column (21), the incomplete bevel gear (74) and the first bevel gear (75) being meshed together.
7. The concentration device for producing traditional Chinese medicine ointments based on AI dynamic control according to claim 1, characterized in that: It also includes a suction assembly (8) set on the scraping assembly (2). The suction assembly (8) includes a connecting hose (81) set on the column (21). The bottom of the connecting hose (81) is fixedly connected to the fan-shaped water box (23). A hollow rubber ball (82) is set on the top of the connecting hose (81). A discharge pipe (83) is set on the hollow rubber ball (82).