Preparation method of nourishment suitable for astronauts and used for heart recuperating crowds and matched production device of nourishment
By integrating mixing equipment to differentiate particle sizes and enhance grinding of traditional Chinese medicine powders, the problem of cumbersome mixing steps for traditional Chinese medicine powders is solved, and the preparation efficiency and mixing uniformity are improved.
Patent Information
- Application Number
- CN202511089096.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-05
- Publication Date
- 2025-10-31
AI Technical Summary
In existing technologies, the mixing steps for Chinese medicinal herb powders are cumbersome, requiring separate sieving, mixing, and grinding, resulting in low preparation efficiency.
An integrated mixing device is used to differentiate and intensify the grinding of Chinese medicine powder by particle size. Combined with a spiral feeding device and high-efficiency mixing, the powder can be directly blended and mixed, avoiding additional processing.
It improves the mixing efficiency of traditional Chinese medicine powders, reduces operation steps, avoids deviations in raw material weight ratios, and achieves efficient preparation of nutritional products.
Smart Images

Figure CN120860149A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of mixed preparation technology, specifically to a method for preparing nutritional products suitable for astronauts' cardiac care and its supporting production equipment. Background Technology
[0002] Astronauts are professionals who travel into space aboard manned spacecraft to perform specific missions. With technological breakthroughs, manned spaceflight is gradually entering the space station era, and astronauts will spend increasingly longer periods in space. Although spacesuits protect astronauts from or reduce the harmful effects of environmental factors such as vacuum, extreme temperatures, solar radiation, and micrometeoroids, prolonged exposure to the unique environment of space—including weightlessness, noise, vibration, radiation, altered circadian rhythms, and confined spaces—can negatively impact multiple physiological systems and severely affect the intake and metabolism of nutrients such as protein, fat, carbohydrates, and vitamins. Therefore, astronauts require targeted rehabilitation and nutritional supplementation after returning to Earth to ensure rapid recovery. These supplements are typically made from various traditional Chinese medicinal herbs, and mixing powdered herbs according to a formula is a necessary step in their preparation. The utility model disclosed in CN218609070U is a traditional Chinese medicine powder mixing device, including a base, with a cam seat fixedly installed above the base. A cam is rotated and engaged by the cam seat. This design achieves the mixing of traditional Chinese medicine powder by shaking the mixing tank up and down. During the mixing process, the mixing tank is supported by springs to provide elastic support, allowing for additional vibration and increasing the uniformity of mixing. Combined with the internal mixing rod, the mixing efficiency is increased, effectively dispersing the powder and making the powder more uniformly mixed. However, since traditional Chinese medicine powder usually contains granules and clumps of powder, it is necessary to perform sieving, mixing, and grinding steps in sequence before mixing. Sieving, mixing, and grinding require different devices, making the mixing process cumbersome and the preparation efficiency low. Summary of the Invention
[0003] The purpose of this invention is to provide a method for preparing nutritional products suitable for astronauts with heart health conditions, and a supporting production device thereof, so as to solve the problems mentioned in the background art.
[0004] To achieve the above objectives, the present invention provides the following technical solution: a method for preparing a nutritional supplement suitable for astronauts with cardiac conditions, comprising the following steps: Step 1: Select and prepare Chinese herbal products for making nutritional supplements, such as powdered Chinese herbs like Astragalus membranaceus, Panax notoginseng, ginseng, kudzu root, Ophiopogon japonicus, Angelica sinensis, Ginkgo biloba, licorice, and saffron. Step 2: Mix the prepared Chinese herbal powders according to the weight ratio, and then feed them evenly into the integrated mixing equipment through a screw feeder. Step 3: Use integrated mixing equipment to separate the Chinese medicine into different particle sizes, and perform intensive grinding on the larger particles of Chinese medicine. After reaching the appropriate fineness, perform centralized and efficient mixing. Step 4: After the nutritional supplement powder is thoroughly mixed, the staff will pour out the mixed Chinese herbal powder. Step 5: Pour the Chinese herbal powder into the relevant pharmaceutical equipment for the desired product, then add excipients such as vitamin B1, vitamin B2, magnesium stearate, maltodextrin, PQQ nutritional supplement and water, and make the Chinese herbal powder into tablets, pills, oral liquids, or powders to complete the preparation.
[0005] A supporting production apparatus for a method of preparing nutritional products for astronauts with heart conditions includes an integrated mixing device. The integrated mixing device includes a placement bracket, a preparation mixing barrel fixedly mounted on the upper end of the placement bracket, a valve hole discharge pipe connected to the lower end of one side of the preparation mixing barrel, a horizontally mounted partition support plate inside the preparation mixing barrel, a rotatable support at the center of the partition support plate, a mixing drive shaft at the lower end of the rotatable support, the mixing drive shaft rotatably passing through the preparation mixing barrel and the placement bracket, and a driven control wheel sleeved through the lower end of the placement bracket.
[0006] Preferably, a refining treatment tank is horizontally provided at the upper end of the self-rotating support, and an agitator cage is rotatably inserted into the inner cavity of the refining treatment tank. Several toothed plates are inclinedly provided on the agitator cage, and a gear shaft is provided at the center of one end of the agitator cage. The gear shaft rotates through the refining treatment tank and is provided with a driven gear. A reference toothed ring is horizontally provided at the upper end of the mixing tank, and several reference teeth are symmetrically provided at the lower end of the reference toothed ring. One side of the driven gear is meshed with the reference teeth of the reference toothed ring.
[0007] Preferably, the end of the refining tank away from the driven gear is fitted with a cover. The cover is a conical structure. A metal screen is inserted into one side of the cover. A powder dropping trough is opened through one side of the rotating support. The two ends of the powder dropping trough are located on the upper and lower sides of the partition support plate, respectively. A connecting bend is fixedly inserted into the end of the cover near the metal screen. One end of the connecting bend is connected to the end of the powder dropping trough located above the partition support plate.
[0008] Preferably, the upper end of the refining tank is vertically connected to a Chinese herbal powder input pipe, and an arc-shaped sealing groove is formed on one side of the Chinese herbal powder input pipe inside the refining tank. The cross-sectional area of the arc-shaped sealing groove is larger than the diameter of the Chinese herbal powder input pipe. An arc-shaped piston groove is formed on one side of the arc-shaped sealing groove inside the refining tank. A push piston plate is movably inserted into the arc-shaped piston groove. One end of the push piston plate is provided with an arc-shaped sealing plate, and the arc-shaped sealing plate is movably inserted into the arc-shaped sealing groove.
[0009] Preferably, arc-shaped guide rods are provided on both sides of the arc-shaped piston groove, and the piston plate is movably sleeved with two arc-shaped guide rods. A return spring is sleeved on the side of the arc-shaped guide rods near the arc-shaped sealing groove, and a constraint block is provided on the center side of the arc-shaped piston groove.
[0010] Preferably, the center of the hybrid drive shaft is connected to the arc-shaped piston groove, which has a high-pressure gas groove. The side of the refining tank away from the cover has an annular diversion groove. The annular diversion groove is connected to the inner cavity of the refining tank and has several blowing holes. One side of the annular diversion groove is connected to one side of the arc-shaped piston groove and has a blowing hole. When the arc-shaped sealing plate completely blocks the arc-shaped sealing groove, the gas in the arc-shaped piston groove enters the annular diversion groove through the blowing holes.
[0011] Preferably, the mixing drive shaft is provided with a mixing rack on one side inside the mixing tank, and an auxiliary mixing rod is provided at an angle on one side of the mixing rack. An auxiliary air groove is provided through the mixing rack and connected to the high-pressure air groove in the auxiliary mixing rod. Several mixing air holes are provided through both sides of the auxiliary mixing rod in the auxiliary air groove, and a first one-way valve is provided on the side of the auxiliary air groove that connects to the high-pressure air groove.
[0012] Preferably, the partition support plate has several exhaust windows, each with a press-fit ring inserted into it, and each press-fit ring has a filter cloth on one side.
[0013] Preferably, the end of the refining tank away from the hood and connected to the annular diversion groove is provided with a backflush pipe, one end of which points towards the filter cloth and is provided with an air nozzle, and a second one-way valve is provided on one side of the backflush pipe connected to the annular diversion groove.
[0014] Compared with the prior art, the beneficial effects of the present invention are: A cardiac nutrition supplement for astronauts was prepared using powdered Chinese medicinal herbs including Astragalus membranaceus, Panax notoginseng, ginseng, kudzu root, Ophiopogon japonicus, Angelica sinensis, Ginkgo biloba, licorice, and saffron. During the preparation process, an integrated mixing device was used to sieve the powders by particle size. For larger powders, there was no need to remove them and find another machine for processing; they could be processed directly and simultaneously, avoiding large deviations in the raw material weight ratio. Combined with the concentrated mixing in the later stage, double mixing could be performed during the sieving and refining of large powder particles, improving the mixing and processing efficiency. Attached Figure Description
[0015] Figure 1 This is a first-view schematic diagram of the structure of the present invention; Figure 2 This is a second-view schematic diagram of the structure of the present invention; Figure 3 The structure of this invention Figure 2 Schematic diagram of part A; Figure 4 This is a schematic diagram of a partial side-cut structure of the present invention; Figure 5 For the present invention Figure 4 Schematic diagram of part B; Figure 6 For the present invention Figure 5 Schematic diagram of part C; Figure 7 For the present invention Figure 4 Schematic diagram of part D; Figure 8 For the present invention Figure 4 Schematic diagram of part E; Figure 9 This is a schematic diagram of the installation structure of the hybrid drive shaft and the refining tank of the present invention; Figure 10 For the present invention Figure 9 Schematic diagram of part F; Figure 11 This is a side sectional view of the connection between the piston plate and the arc-shaped sealing plate of the present invention; Figure 12 For the present invention Figure 11 Schematic diagram of part G; Figure 13 This is a schematic diagram showing the arc-shaped guide rod and the air connection groove of the present invention; Figure 14 For the present invention Figure 13 A schematic diagram of part H.
[0016] In the diagram: 1. Placement bracket; 2. Preparation mixing tank; 3. Valve hole discharge pipe; 4. Mixing drive shaft; 5. Separating support plate; 6. Rotating support; 7. Refining treatment tank; 8. Stirring cage; 9. Toothed plate; 10. Driven gear; 11. Reference gear ring; 12. Cover; 13. Metal screen; 14. Powder drop trough; 15. Adapter bend; 16. Traditional Chinese medicine powder input pipe; 17. Arc-shaped sealing groove; 18. Arc-shaped piston groove; 19. High-pressure air groove; 20. Arc-shaped guide rod; 21. Pushing piston plate; 22. Arc-shaped sealing plate; 23. Reset spring; 24. Constraint block; 25. Annular diversion groove; 26. Connecting air groove; 27. Blowing air hole; 28. Mixing and stirring rack; 29. Auxiliary mixing rod; 30. Auxiliary air groove; 31. Mixing air hole; 32. First one-way valve; 33. Press ring; 34. Filter cloth; 35. Backflush pipe; 36. Second one-way valve. Detailed Implementation
[0017] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0018] Please see the appendix Figure 1-14 This application provides the following technical solutions.
[0019] Example 1: A method for preparing a nutritional supplement suitable for astronauts with heart conditions, comprising the following steps: Step 1: Select and prepare Chinese herbal products for making nutritional supplements, such as powdered Chinese herbs like Astragalus membranaceus, Panax notoginseng, ginseng, kudzu root, Ophiopogon japonicus, Angelica sinensis, Ginkgo biloba, licorice, and saffron. Step 2: Mix the prepared Chinese herbal powders according to the weight ratio, and then feed them evenly into the integrated mixing equipment through a screw feeder. Step 3: Use integrated mixing equipment to separate the Chinese medicine into different particle sizes, and perform intensive grinding on the larger particles of Chinese medicine. After reaching the appropriate fineness, perform centralized and efficient mixing. Step 4: After the nutritional supplement powder is thoroughly mixed, the staff will pour out the mixed Chinese herbal powder. Step 5: Pour the Chinese herbal powder into the relevant pharmaceutical equipment for the desired product, then add excipients such as vitamin B1, vitamin B2, magnesium stearate, maltodextrin, PQQ nutritional supplement and water, and make the Chinese herbal powder into tablets, pills, oral liquids, or powders to complete the preparation.
[0020] A supporting production apparatus for preparing nutritional products suitable for astronauts with heart conditions includes an integrated mixing device. The integrated mixing device includes a placement bracket 1, with a preparation mixing tank 2 fixedly mounted on the upper end of the placement bracket 1. A valve hole discharge pipe 3 is connected to the lower end of one side of the preparation mixing tank 2. A partition support plate 5 is horizontally mounted on the upper end of the preparation mixing tank 2. A self-rotating support 6 is rotatably mounted at the center of the partition support plate 5. A mixing drive shaft 4 is mounted on the lower end of the self-rotating support 6. The mixing drive shaft 4 rotatably passes through the preparation mixing tank 2 and the placement bracket 1. A driven control wheel, which can be a sprocket or a pulley, is sleeved on the lower end of the placement bracket 1 and is driven to rotate by a motor.
[0021] A refining tank 7 is horizontally mounted on the upper end of the self-rotating support 6. An agitator cage 8 is rotatably inserted into the inner cavity of the refining tank 7. Several toothed plates 9 are inclinedly mounted on the agitator cage 8. A gear shaft is located at the center of one end of the agitator cage 8. The gear shaft rotates through the refining tank 7 and is equipped with a driven gear 10. A reference gear ring 11 is horizontally mounted on the upper end of the mixing tank 2. Several reference teeth are symmetrically arranged on the lower end of the reference gear ring 11. One side of the driven gear 10 is aligned with the reference tooth ring 11. With teeth meshing together, when the mixing drive shaft 4 drives the self-rotating support 6 and the refining tank 7 to rotate, since the reference gear ring 11 remains stationary, the driven gear 10 controls the stirring cage 8 to rotate inside the refining tank 7 under the action of the reference gear ring 11. During normal use, the refining tank 7 is equipped with several grinding balls. The stirring cage 8 drives the toothed plate 9 to rotate, which can lift several grinding balls and drop them later, thus refining and grinding the Chinese medicine powder inside the refining tank 7.
[0022] A cover 12 is inserted into the end of the refining tank 7 away from the driven gear 10. The cover 12 has a conical structure. A metal screen 13 is inserted into one side of the cover 12. A powder drop trough 14 is opened through one side of the rotating support 6. The two ends of the powder drop trough 14 are located on the upper and lower sides of the partition support plate 5, respectively. A connecting bend 15 is fixedly inserted into the end of the cover 12 near the metal screen 13. One end of the connecting bend 15 is connected to the end of the powder drop trough 14 located above the partition support plate 5. Powder in the refining tank 7 that meets the fineness of the prepared nutrients can be sent into the connecting bend 15 by airflow, and then fall from the powder drop trough 14 into the lower part of the preparation mixing tank 2 for subsequent mixing. Before the powder enters the connecting bend 15, it needs to be filtered through the metal screen 13. Powder that does not meet the requirements flows back into the refining tank 7 under the conical guidance for refining. At the same time as refining, a mixing operation is also performed.
[0023] The upper end of the refining tank 7 is vertically connected to a Chinese herbal powder input pipe 16. An arc-shaped sealing groove 17 is formed on one side of the Chinese herbal powder input pipe 16 inside the refining tank 7. The cross-sectional area of the arc-shaped sealing groove 17 is larger than the diameter of the Chinese herbal powder input pipe 16. An arc-shaped piston groove 18 is formed on one side of the arc-shaped sealing groove 17 inside the refining tank 7. A pushing piston plate 21 is movably inserted into the arc-shaped piston groove 18. One end of the pushing piston plate 21 is provided with an arc-shaped sealing plate 22, which is movably inserted into the arc-shaped sealing groove. Inside the arc-shaped piston groove 17, arc-shaped guide rods 20 are provided on both sides. The push piston plate 21 is movably sleeved with two arc-shaped guide rods 20. A return spring 23 is sleeved on the side of the arc-shaped guide rods 20 near the arc-shaped sealing groove 17. A constraint block 24 is provided on the center side of the arc-shaped piston groove 18. The center of the mixing drive shaft 4 is connected to the arc-shaped piston groove 18 and a high-pressure gas groove 19 is opened. An annular diversion groove 25 is opened on the side of the refining treatment tank 7 away from the cover 12. The annular diversion groove 25 is connected to the inner cavity of the refining treatment tank 7. Several air blowing holes 27 are provided. One side of the annular diversion groove 25 is connected to one side of the arc-shaped piston groove 18, and air blowing holes 27 are provided. When the arc-shaped sealing plate 22 completely blocks the arc-shaped sealing groove 17, the gas in the arc-shaped piston groove 18 enters the annular diversion groove 25 through the air blowing holes 27. When the high-pressure gas groove 19 is located at the lower end of the placement bracket 1 and is connected to the high-pressure gas flow through the sealed bearing, the high-pressure gas flow enters the arc-shaped piston groove 18 through the high-pressure gas groove 19, and then pushes the push piston plate 21 along the arc-shaped guide rod 20. As the sliding motion continues, the arc-shaped sealing plate 22 moves along the arc-shaped sealing groove 17 and seals the Chinese medicine powder input pipe 16. Then, when the pushing piston plate 21 rises to a certain height, the high-pressure airflow enters the annular diversion groove 25 through the connecting air groove 26, and then blows the high-pressure airflow into the inner cavity of the refining tank 7 through several blowing air holes 27. At this time, the high-pressure airflow blows the Chinese medicine powder toward the metal screen 13 and the transfer bend 15, and then the Chinese medicine powder that meets the fineness enters the lower part of the preparation mixing tank 2 through the powder drop trough 14.
[0024] A mixing drive shaft 4 is located inside the mixing tank 2 and a mixing rack 28 is provided on one side. An auxiliary mixing rod 29 is inclined on one side of the mixing rack 28. An auxiliary air groove 30 is opened in the auxiliary mixing rod 29, which passes through the mixing rack 28 and connects to the high-pressure air groove 19. Several mixing air holes 31 are opened in the auxiliary air groove 30 on both sides of the auxiliary mixing rod 29. A first one-way valve 32 is provided on the side of the auxiliary air groove 30 that connects to the high-pressure air groove 19. During the period when the powder is fed into the mixing rack 28 inside the mixing tank 2, the refining tank 7 and the mixing drive shaft 4 rotate normally. The mixing rack 28 can fully mix the fed powder. The one-way sealing pressure of the first one-way valve 32 is less than the elastic pressure of the two return springs 23. At the same time as the powder is fed into the powder drop trough 14, the airflow can assist the powder in the mixing process by passing through several mixing air holes 31 to improve the mixing efficiency.
[0025] Example 2: Based on Example 1, the high-pressure airflow in the preparation mixing tank 2 can be separated and discharged. Several exhaust windows are provided on the partition support plate 5, and each exhaust window is fitted with a pressure ring 33. A filter cloth 34 is provided on one side of each pressure ring 33. A backflush pipe 35 is provided at the end of the refining tank 7 away from the cover 12 and connected to the annular diversion groove 25. One end of the backflush pipe 35 points towards the filter cloth 34 and is equipped with a jet nozzle. A second one-way valve 36 is provided on one side of the backflush pipe 35 connected to the annular diversion groove 25. Under the separation and filtration action of multiple filter cloths 34, the powder in the preparation mixing tank 2 remains in the area where the mixing rack 28 is located within the preparation mixing tank 2. The second one-way valve... The one-way release pressure of valve 36 is greater than the normal blowing pressure of powder in the refining tank 7. When filter cloth 34 is used for a long time, the pressure of high-pressure airflow in high-pressure air tank 19 increases. Under the throttling effect of mixing air hole 31 and blowing air hole 27, the pressure of high-pressure airflow gradually increases. When the air pressure is greater than the release pressure of second one-way valve 36, high-pressure airflow is quickly blown to filter cloth 34 through backflush pipe 35 to backflush filter cloth 34. It should be noted that in order to avoid the airflow from mixing air hole 31 and blowing air hole 27 from affecting filter cloth 34, the filter cloth 34 can be quickly backflushed by a short and rapid air pressure increase, thereby improving the separation quality of mixed airflow and accelerating the preparation of Chinese medicine powder nutrition products.
[0026] 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 method for preparing a nutritional supplement suitable for astronauts with heart conditions, characterized in that, Includes the following steps: Step 1: Select and prepare Chinese herbal products for making nutritional supplements, such as powdered Chinese herbs like Astragalus membranaceus, Panax notoginseng, ginseng, kudzu root, Ophiopogon japonicus, Angelica sinensis, Ginkgo biloba, licorice, and saffron. Step 2: Mix the prepared Chinese herbal powders according to the weight ratio, and then feed them evenly into the integrated mixing equipment through a screw feeder. Step 3: Use integrated mixing equipment to separate the Chinese medicine into different particle sizes, and perform intensive grinding on the larger particles of Chinese medicine. After reaching the appropriate fineness, perform centralized and efficient mixing. Step 4: After the nutritional supplement powder is thoroughly mixed, the staff will pour out the mixed Chinese herbal powder. Step 5: Pour the Chinese herbal powder into the relevant pharmaceutical equipment for the desired product, then add excipients such as vitamin B1, vitamin B2, magnesium stearate, maltodextrin, PQQ nutritional supplement and water, and make the Chinese herbal powder into tablets, pills, oral liquids, or powders to complete the preparation.
2. A supporting production apparatus for the preparation method of nutritional supplements for astronauts with cardiac care as described in claim 1, characterized in that, The supporting production device includes an integrated mixing equipment, which includes a placement bracket (1). The upper end of the placement bracket (1) is fixedly provided with a preparation mixing barrel (2). The lower end of one side of the preparation mixing barrel (2) is connected to a valve hole discharge pipe (3). The upper end of the preparation mixing barrel (2) is horizontally provided with a partition support plate (5). The center of the partition support plate (5) is provided with a rotating support (6). The lower end of the rotating support (6) is provided with a mixing drive shaft (4). The mixing drive shaft (4) rotates through the preparation mixing barrel (2) and the placement bracket (1). The lower end of the mixing drive shaft (4) is sleeved with a driven control wheel.
3. The supporting production apparatus according to claim 2, characterized in that: The upper end of the self-rotating support (6) is horizontally provided with a refining treatment tank (7). The inner cavity of the refining treatment tank (7) is rotatably connected with an agitator cage (8). Several toothed plates (9) are inclined on the agitator cage (8). A gear shaft is provided at the center of one end of the agitator cage (8). The gear shaft rotates through the refining treatment tank (7) and is provided with a driven gear (10). The upper end of the mixing tank (2) is horizontally provided with a reference toothed ring (11). Several reference teeth are symmetrically provided at the lower end of the reference toothed ring (11). One side of the driven gear (10) is meshed with the reference teeth of the reference toothed ring (11).
4. The supporting production apparatus according to claim 3, characterized in that: The fine processing tank (7) is equipped with a cover (12) at the end away from the driven gear (10). The cover (12) is a conical structure. A metal screen (13) is inserted into one side of the cover (12). A powder drop trough (14) is opened through one side of the self-rotating support (6). The two ends of the powder drop trough (14) are located on the upper and lower sides of the partition support plate (5), respectively. A connecting bend (15) is fixedly inserted into the end of the cover (12) near the metal screen (13). One end of the connecting bend (15) is connected to the end of the powder drop trough (14) located above the partition support plate (5).
5. The supporting production apparatus according to claim 4, characterized in that: The upper end of the refining tank (7) is vertically connected to a Chinese medicine powder input pipe (16). An arc-shaped sealing groove (17) is opened on one side of the Chinese medicine powder input pipe (16) inside the refining tank (7). The cross-sectional area of the arc-shaped sealing groove (17) is larger than the diameter of the Chinese medicine powder input pipe (16). An arc-shaped piston groove (18) is opened on one side of the arc-shaped sealing groove (17) inside the refining tank (7). A push piston plate (21) is movably inserted into the arc-shaped piston groove (18). An arc-shaped sealing plate (22) is provided at one end of the push piston plate (21), and the arc-shaped sealing plate (22) is movably inserted into the arc-shaped sealing groove (17).
6. The supporting production apparatus according to claim 5, characterized in that: Arc-shaped guide rods (20) are provided on both sides of the arc-shaped piston groove (18). The push piston plate (21) is movably sleeved with two arc-shaped guide rods (20). A reset spring (23) is sleeved on the side of the arc-shaped guide rod (20) close to the arc-shaped sealing groove (17). A constraint block (24) is provided on the center side of the arc-shaped piston groove (18).
7. The supporting production apparatus according to claim 6, characterized in that: The center of the hybrid drive shaft (4) is connected to the arc-shaped piston groove (18) with a high-pressure gas groove (19). The side of the fine treatment tank (7) away from the cover (12) is provided with an annular diversion groove (25). The annular diversion groove (25) is connected to the inner cavity of the fine treatment tank (7) with a number of blowing holes (27). The side of the annular diversion groove (25) is connected to the side of the arc-shaped piston groove (18) with a blowing hole (27). When the arc-shaped sealing plate (22) completely seals the arc-shaped sealing groove (17), the gas in the arc-shaped piston groove (18) enters the annular diversion groove (25) through the blowing hole (27).
8. The supporting production apparatus according to claim 7, characterized in that: The mixing drive shaft (4) is provided with a mixing rack (28) on one side inside the mixing tank (2). An auxiliary mixing rod (29) is inclined on one side of the mixing rack (28). An auxiliary air groove (30) is provided in the auxiliary mixing rod (29) through the mixing rack (28) and connected to the high-pressure air groove (19). Several mixing air holes (31) are provided in the auxiliary air groove (30) on both sides of the auxiliary mixing rod (29). A first one-way valve (32) is provided on the side of the auxiliary air groove (30) connected to the high-pressure air groove (19).
9. The supporting production apparatus according to claim 8, characterized in that: The partition support plate (5) is provided with several exhaust windows, and each exhaust window is fitted with a press ring (33), and each press ring (33) is provided with a filter cloth (34) on one side.
10. The supporting production apparatus according to claim 9, characterized in that: The fine treatment tank (7) is provided with a backflush pipe (35) at the end away from the cover (12) and connected to the annular diversion groove (25). One end of the backflush pipe (35) points to the filter cloth (34) and is provided with an air nozzle. A second one-way valve (36) is provided on one side of the backflush pipe (35) connected to the annular diversion groove (25).
Citation Information
Patent Citations
Traditional Chinese medicine powder mixing equipment
CN218609070U