Sol dissolving device for plant empty capsules
By designing a plant hollow capsule sol-gel device and adopting a stirring structure that combines a main stirring blade and stirring claws, the problem of low sol-gel efficiency in the existing technology has been solved, and a highly efficient sol-gel process has been achieved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-01
- Publication Date
- 2026-03-17
AI Technical Summary
The current production of plant-based empty capsules suffers from low efficiency in sol processing, requiring extensive manual stirring.
Design a sol-gel device for plant hollow capsules, which adopts a stirring structure combining a main stirring blade and stirring claws. Multi-layer stirring is achieved through a drive mechanism and a lifting mechanism, and an auxiliary stirring blade is used to accelerate the sol-gel process.
It improves the efficiency of the sol-gel process, achieves thorough stirring in all parts of the vessel, and significantly accelerates the sol-gel speed.
Smart Images

Figure CN223995847U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of capsule production technology, and more specifically, to a sol-gel device for plant-based hollow capsules. Background Technology
[0002] Empty capsules consist of a cap and a body, made from pharmaceutical gelatin and excipients. They are mainly used to contain solid and liquid medications, such as homemade powders, health products, and pharmaceuticals. This solves the problem of unpleasant taste and difficulty in swallowing, truly making good medicine palatable. Current plant-based empty capsule production methods require significant manpower for sol-gel processing, which is inefficient, resulting in low sol-gel efficiency. Utility Model Content
[0003] The purpose of this invention is to overcome the shortcomings of the prior art and provide a sol-gel device for plant hollow capsules.
[0004] To achieve the above objectives, the present invention adopts the following technical solution:
[0005] This utility model discloses a sol-gel device for plant hollow capsules, including a vessel body and a vessel lid. A rotating seat is provided at the middle position of the upper part of the vessel lid. A main shaft is rotatably arranged inside the rotating seat. Several support rods are installed on the side of the main shaft. A stirring claw is installed at the lower part of the lowest support rod, and the main stirring blades are installed at the lower parts of the remaining support rods. The device also includes a drive mechanism that drives and connects to the main shaft.
[0006] Furthermore, the drive mechanism includes a main stirring motor, which is driven by a first driving bevel gear, and a first driven bevel gear is connected to the main shaft. The first driving bevel gear and the first driven bevel gear mesh with each other.
[0007] Furthermore, it also includes a lifting seat, on which a movable groove is provided, and a lead screw is rotatably installed in the movable groove. The lead screw is vertically installed, and a lead screw motor is installed on the upper part of the lifting seat. The lead screw motor drives and connects to the lead screw, and a lead screw nut block is installed on the lead screw. A lifting plate is installed on the lead screw nut block, and the drive mechanism is installed on the lifting plate.
[0008] Furthermore, a guide rod is provided inside the moving groove. The guide rod is parallel to the lead screw and passes through the lifting plate.
[0009] Furthermore, a support base is provided below the lifting base, and a lifting mechanism is installed inside the support base. The lifting mechanism is driven and connected to the lifting base, and a connecting rod is connected to the side of the lifting base. The other end of the connecting rod is connected to the outer periphery of the vessel cover.
[0010] Furthermore, auxiliary stirring blades are installed on the outer ends of the support rods other than the bottommost support rod.
[0011] Furthermore, a rotating groove is provided inside the main shaft, and the upper end of the rotating groove is connected to the upper end of the main shaft. A secondary shaft is rotatably arranged inside the rotating groove. A secondary stirring motor is installed on the lifting plate. The secondary stirring motor drives and connects to the secondary shaft. A drive shaft is rotatably arranged inside the support rod on which the secondary stirring blade is installed. The outer end of the drive shaft passes through the support rod and is connected to the secondary stirring blade. The inner end of the drive shaft extends into the rotating groove and is connected to a driven bevel gear two. A driving bevel gear two is installed on the secondary shaft at a position corresponding to the driven bevel gear two. The driving bevel gear two meshes with the driven bevel gear two.
[0012] Furthermore, a feed pipe is connected to the lid of the vessel, and a cap is provided on the upper part of the feed pipe.
[0013] The beneficial effects of this invention are: by installing stirring claws on the lowest support rod and main stirring blades on the other support rods, it is possible to effectively stir various parts of the vessel body, accelerate the sol-gel process, and make the sol-gel process more efficient. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of a sol-gel device for plant hollow capsules in this embodiment;
[0015] Figure 2 This is a schematic diagram of one structure of the drive mechanism in this embodiment;
[0016] Figure 3 for Figure 1 Enlarged diagram of point A in the middle.
[0017] Reference numerals: 1. Vessel body; 2. Vessel lid; 3. Feed pipe; 4. Sealing cap; 5. Discharge pipe; 6. Heating pipe; 7. Vacuum pump; 8. Rotating seat; 9. Main shaft; 10. Support rod; 11. Stirring claw; 12. Main stirring blade; 13. Secondary stirring blade; 14. Support seat; 15. Lifting mechanism; 16. Lifting seat; 17. Connecting rod; 18. Moving groove; 19. Lead screw motor; 20. Lead screw; 21. Lead screw nut block; 22. Guide rod; 23. Lifting plate; 24. Rotating sleeve; 25. Rotating groove; 26. Secondary shaft; 27. Support frame; 28. Secondary stirring motor; 29. Driven bevel gear one; 30. Main stirring motor; 31. Driven bevel gear one; 32. Driven bevel gear two; 33. Driven bevel gear two; 34. Drive shaft. Detailed Implementation
[0018] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0019] like Figures 1-3 As shown, a sol-gel device for plant hollow capsules includes a vessel body 1 and a support base 14. Heating tubes 6 are installed inside the side wall of the vessel body 1, and the heating tubes 6 are arranged in a spiral pattern. A lifting mechanism 15 is provided inside the support base 14, and a lifting seat 16 is provided above the support base 14. The lifting mechanism 15 drives and connects to the lifting seat 16. The lifting mechanism 15 can be a cylinder, a hydraulic cylinder, or an electric push rod. A connecting rod 17 is connected to the side of the lifting seat 16, and the other end of the connecting rod 17 is connected to the vessel lid 2. By driving the lifting seat 16 to rise and fall through the lifting mechanism 15, the vessel lid 2 is also raised and lowered, allowing the vessel lid 2 to close onto the vessel body 1. A discharge pipe 5 with a valve is installed at the bottom of the vessel body 1, and a vacuum pump 7 is also installed on the vessel body 1.
[0020] Heating tubes 6 are installed inside the side wall of the vessel body 1. The heating tubes 6 are arranged in a spiral shape and are used to heat the inside of the vessel body 1.
[0021] A feed pipe 3 is installed on the lid 2, through which material can be fed into the body 1. After feeding is completed, a cap 4 is installed on the upper end of the feed pipe 3 to close the feed pipe 3.
[0022] A movable groove 18 is provided on the side of the lifting seat 16. A lead screw 20 is rotatably installed in the movable groove 18. The lead screw 20 is vertically installed. A lead screw motor 19 is installed on the upper part of the lifting seat 16. The lead screw motor 19 drives and connects to the lead screw 20. A lead screw nut block 21 is installed on the lead screw 20. A lifting plate 23 is installed on the lead screw nut block 21. A drive mechanism is installed on the lifting plate 23. The drive mechanism includes a main stirring motor 30. The main stirring motor 30 drives and connects to a driving bevel gear 31. A rotating seat 8 is located at the middle position of the upper part of the vessel cover 2. A main shaft 9 is rotatably installed in the rotating seat 8. A driven bevel gear 29 is connected to the main shaft 9. The driving bevel gear 31 meshes with the driven bevel gear 29. A rotating sleeve 24 is provided on the lifting plate 23. The main shaft 9 is rotatably installed in the rotating sleeve 24. Several support rods 10 are installed on the side of the portion of the main shaft 9 located inside the vessel body 1. These support rods 10 are arranged sequentially from top to bottom, with multiple rods at each height. These multiple support rods 10 at the same height are evenly distributed around the outer periphery of the main shaft 9. A stirring claw 11 is installed at the lower part of the lowest support rod 10, while main stirring blades 12 are installed at the lower parts of the remaining support rods 10. Through the main stirring blades 12 and stirring claws 11 arranged at different heights, stirring can be performed at all locations within the vessel body 1, thereby accelerating the sol-gel process.
[0023] The lead screw motor 19 drives the lead screw 20 to rotate, which causes the lead screw nut block 21 to drive the lifting plate 23 to rotate, thereby driving the main shaft 9 to rise and fall. This allows the height of the main stirring blade 12 and the stirring claw 11 to be adjusted, thus enabling more thorough stirring at different positions within the vessel body 1 and ensuring the stirring effect.
[0024] A rotating groove 25 is provided inside the main shaft 9. The upper end of the rotating groove 25 is connected to the upper end of the main shaft 9. A secondary shaft 26 is rotatably installed inside the rotating groove 25. A support frame 27 is installed on the lifting plate 23. A secondary stirring motor 28 is installed on the support frame 27. The secondary stirring motor 28 drives and connects to the secondary shaft 26. A secondary stirring blade 13 is installed on the outer end of the support rod 10 except for the lowest support rod 10. A drive shaft 34 is rotatably installed inside the support rod 10 with the secondary stirring blade 13. The outer end of the drive shaft 34 extends out of the support rod 10 and is connected to the secondary stirring blade 13. The inner end of the drive shaft 34 extends into the rotating groove 25 and is connected to the driven bevel gear 33. A driving bevel gear 32 is installed on the secondary shaft 26 at the position corresponding to the driven bevel gear 33. The driving bevel gear 32 meshes with the driven bevel gear 33. The auxiliary stirring motor 28 drives the auxiliary shaft 26 to rotate. The auxiliary shaft 26 drives the drive shaft 34 to rotate through the engagement of the driving bevel gear 32 and the driven bevel gear 33, which in turn drives the auxiliary stirring blade 13 to rotate. The auxiliary stirring blade 13 plays an auxiliary stirring role, so that the glue block can be heated evenly, thereby accelerating the melting speed.
[0025] The above description is merely a preferred embodiment of this utility model. The protection scope of this utility model is not limited to the above embodiments. All technical solutions falling within the scope of this utility model's concept are protected. It should be noted that for those skilled in the art, any improvements and modifications made without departing from the principle of this utility model should also be considered within the protection scope of this utility model.
Claims
1. A solvus apparatus for a plant hollow capsule, characterized by, The utility model provides a kind of double-axle stirring kettle, including kettle body (1) and kettle cover (2), the middle position of upper portion of the kettle cover (2) is provided with rotating seat (8), rotatingly arranged main shaft (9) in the rotating seat (8), several support rods (10) are installed on the side surface of main shaft (9), the lower portion of the lowermost support rod (10) is installed with stirring claw (11), the lower portion of the rest support rod (10) is installed with main stirring blade (12), further include driving mechanism, the driving mechanism driving connection main shaft (9).
2. The sol gel apparatus for plant hollow capsules according to claim 1, characterized in that, The driving mechanism includes main stirring motor (30), the main stirring motor (30) is drivingly connected with driving bevel gear one (31), the main shaft (9) is connected with driven bevel gear one (29), and the driving bevel gear one (31) is engaged with the driven bevel gear one (29).
3. The plant hollow capsule sol device according to claim 2, wherein, Further including lifting seat (16), the lifting seat (16) is opened with moving groove (18), the screw rod (20) is rotatably arranged in the moving groove (18), the screw rod (20) is vertically arranged, the lifting seat (16) upper portion is provided with screw rod motor (19), the screw rod motor (19) is drivingly connected with screw rod (20), the screw rod (20) is provided with screw rod nut block (21), the lifting plate (23) is installed on the screw rod nut block (21), and the driving mechanism is installed on the lifting plate (23).
4. The plant hollow capsule sol device according to claim 3, wherein, The moving groove (18) is provided with guide rod (22), the guide rod (22) is parallel with screw rod (20), and the guide rod (22) is arranged through lifting plate (23).
5. The plant hollow capsule sol device according to claim 3, wherein, The lifting seat (16) is provided with support seat (14) below, the lifting mechanism (15) is installed in the support seat (14), the lifting mechanism (15) is drivingly connected with lifting seat (16), the lifting seat (16) side surface is connected with connecting rod (17), and the other end of the connecting rod (17) is connected with the outer periphery of kettle cover (2).
6. The plant hollow capsule sol device according to claim 3, wherein, The outer end of the support rod (10) except the lowermost support rod (10) is installed with auxiliary stirring blade (13).
7. A plant-based hollow capsule solubilization device according to claim 6, characterized in that, The main shaft (9) is opened with rotating groove (25), the upper end of the rotating groove (25) is communicated with the upper end of main shaft (9), the auxiliary shaft (26) is rotatably arranged in the rotating groove (25), the auxiliary stirring motor (28) is installed on the lifting plate (23), the auxiliary stirring motor (28) is drivingly connected with auxiliary shaft (26), the inside of the support rod (10) installed with auxiliary stirring blade (13) is rotatably arranged with driving shaft (34), the outer end of the driving shaft (34) penetrates support rod (10) and is connected with auxiliary stirring blade (13), the inner end of the driving shaft (34) extends into rotating groove (25) and is connected with driven bevel gear two (33), the driving bevel gear two (32) is installed on the auxiliary shaft (26) corresponding to the position of driven bevel gear two (33), and the driving bevel gear two (32) is engaged with driven bevel gear two (33).
8. The plant hollow capsule sol device according to claim 1, wherein, The kettle cover (2) is connected with feed pipe (3), and the upper portion of the feed pipe (3) is provided with cover (4).