Hollow capsule moisture-proof processing equipment
By designing moisture-proof processing equipment, and utilizing the combination of rotating mesh cylinders and stirring blades, along with moisture-proof rods and airflow scouring, the problem of hollow capsules deforming or sticking due to moisture was solved, thus improving the moisture-proof effect and processing quality of the capsules.
Patent Information
- Application Number
- CN202521299153.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-24
- Publication Date
- 2026-06-09
- Estimated Expiration
- 2035-06-24
AI Technical Summary
Traditional empty capsule storage devices lack moisture-proof functions, making the capsules prone to moisture absorption, deformation, or sticking together, which affects processing quality.
A moisture-proof processing device for hollow capsules was designed, comprising components such as a sealed storage box, a rotating mesh cylinder, a servo motor, a rotating support, a feed inlet, a sealing cover, spiral stirring blades, a moisture-proof rod, and a guide fan. Through the cooperation of rotation and stirring blades, sealing and moisture-proofing and airflow scouring are achieved to prevent capsules from becoming damp and sticking together.
It effectively prevents empty capsules from getting damp, deforming, or sticking together, thus improving the processing quality of the capsules.
Smart Images

Figure CN224340539U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of hollow capsule processing equipment, and in particular to the technical field of hollow capsule moisture-proof processing equipment. 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 drugs and have good bioavailability, dissolving rapidly, reliably, and safely. In the production of empty capsules, storage and transportation are often required. Traditional empty capsule storage devices have limited functionality and lack moisture protection, making the capsules prone to moisture absorption, deformation, or sticking together, which seriously affects the quality of subsequent processing. Summary of the Invention
[0003] The purpose of this invention is to solve the problems in the existing technology and to propose a moisture-proof processing equipment for hollow capsules, which can effectively prevent hollow capsules from getting damp, deforming, or sticking together, and improve the processing quality of hollow capsules after moisture-proofing.
[0004] To achieve the above objectives, this utility model proposes a hollow capsule moisture-proof processing device, including a sealed storage box, a rotating mesh cylinder, a servo motor, a rotating support, a feed inlet, a sealing cover, spiral stirring blades, moisture-proof rods, a guide fan, and a control center. The sealed storage box contains an elliptical rotating mesh cylinder. The left end of the rotating mesh cylinder is connected to the left side wall of the sealed storage box via the servo motor, and the right end of the rotating mesh cylinder is connected to the right side wall of the sealed storage box via the rotating support. The rotating support has a feed inlet communicating with the rotating mesh cylinder inside, and the outer end of the feed inlet extends to the outside of the sealed storage box. A sealing cover is detachably installed at the outer opening of the feed inlet. Spiral stirring blades are evenly arranged spirally around the inside of the rotating mesh cylinder. Several moisture-proof rods are evenly sandwiched inside the rotating mesh cylinder. Several guide fans facing the rotating mesh cylinder are located at the bottom of the sealed storage box. A control center is located on the outer side of the sealed storage box, and the control center is connected to the servo motor and the guide fans respectively.
[0005] Preferably, the rotating mesh cylinder is a stainless steel mesh cylinder, and the surface of the rotating mesh cylinder is uniformly coated with a non-stick coating, and the mesh diameter of the rotating mesh cylinder is less than half the diameter of the hollow capsule.
[0006] Preferably, the rotating bracket is mounted on the right side wall of the sealed storage box via a rotating bearing, the inner ring of the rotating bearing being connected to the rotating mesh cylinder and the feed inlet, and the outer ring of the rotating bearing being connected to the right side wall of the sealed storage box.
[0007] Preferably, the moisture-proof rod is detachably installed inside the rotating mesh cylinder.
[0008] Preferably, the sealing cover is a transparent plastic cover, and a rubber sealing ring is provided at the connection between the sealing cover and the feed inlet.
[0009] Preferably, the sealed storage box is an insulated storage box, and self-locking casters are evenly arranged at the four corners of the bottom of the sealed storage box.
[0010] The beneficial effects of this utility model are as follows: This utility model combines a sealed storage box, a rotating mesh cylinder, a servo motor, a rotating support, a feed port, a sealing cover, spiral stirring blades, moisture-proof rods, a guide fan, and a control center. Through experimental optimization, the hollow capsules are fed into the rotating mesh cylinder from the feed port by the clockwise rotation of the elliptical rotating mesh cylinder and the internally fixed spiral stirring blades, while the spiral stirring blades rotate counterclockwise to discharge the hollow capsules from the rotating mesh cylinder to the feed port. The sealed storage box seals and prevents moisture from entering the hollow capsules inside the rotating mesh cylinder. The elliptical rotating mesh cylinder and the internally fixed spiral stirring blades tumble and stir the hollow capsules, effectively preventing them from sticking together due to moisture. The moisture-proof rods, evenly sandwiched inside the rotating mesh cylinder, make rapid and even contact with the tumbling hollow capsules, further improving the moisture-proof effect. The guide fan at the bottom of the sealed storage box provides airflow from outside the rotating mesh cylinder, effectively preventing the hollow capsules from adhering to the rotating mesh cylinder and improving the processing quality of the moisture-proof hollow capsules.
[0011] The features and advantages of this utility model will be described in detail through embodiments and accompanying drawings. Attached Figure Description
[0012] Figure 1 This is a schematic diagram of the structure of the hollow capsule moisture-proof processing equipment of this utility model.
[0013] In the diagram: 1-Sealed storage box, 2-Rotating mesh cylinder, 3-Servo motor, 4-Rotating support, 5-Feeding port, 6-Sealed cover, 7-Helical stirring blade, 8-Moisture-proof rod, 9-Guide fan, 10-Control center. Detailed Implementation
[0014] See Figure 1This utility model discloses a hollow capsule moisture-proof processing equipment, comprising a sealed storage box 1, a rotating mesh cylinder 2, a servo motor 3, a rotating support 4, a feed inlet 5, a sealing cover 6, spiral stirring blades 7, moisture-proof rods 8, a guide fan 9, and a control center 10. The sealed storage box 1 contains an elliptical rotating mesh cylinder 2. The left end of the rotating mesh cylinder 2 is connected to the left side wall of the sealed storage box 1 via the servo motor 3, and the right end of the rotating mesh cylinder 2 is connected to the right side wall of the sealed storage box 1 via the rotating support 4. The rotating support 4 has a feed inlet 5 communicating with the rotating mesh cylinder 2. The outer end of the feed inlet 5 extends to the outside of the sealed storage box 1. A sealing cover 6 is detachably installed at the opening of the outer end of the feed inlet 5. Spiral stirring blades 7 are evenly arranged in a spiral pattern inside the rotating mesh cylinder 2. Several moisture-proof rods 8 are evenly sandwiched inside the rotating mesh cylinder 2. The lower part of the sealed storage box 1... The unit is equipped with several guide fans 9 facing the rotating mesh cylinder 2. The outer side of the sealed storage box 1 is equipped with a control center 10, which is connected to the servo motor 3 and the guide fans 9 respectively. The rotating mesh cylinder 2 is a stainless steel mesh cylinder, and the surface of the rotating mesh cylinder 2 is uniformly coated with a non-stick coating. The mesh diameter of the rotating mesh cylinder 2 is less than half the diameter of the hollow capsule. The rotating bracket 4 is installed on the right side wall of the sealed storage box 1 through a rotating bearing. The inner ring of the rotating bearing is connected to the rotating mesh cylinder 2 and the feed inlet 5, and the outer ring of the rotating bearing is connected to the right side wall of the sealed storage box 1. The moisture-proof rod 8 is detachably installed inside the rotating mesh cylinder 2. The sealing cover 6 is a transparent plastic cover, and a rubber sealing ring is provided at the connection between the sealing cover 6 and the feed inlet 5. The sealed storage box 1 is an insulated storage box, and self-locking universal wheels are evenly arranged at the four corners of the bottom of the sealed storage box 1.
[0015] This invention combines a sealed storage tank 1, a rotating mesh cylinder 2, a servo motor 3, a rotating support 4, a feed inlet 5, a sealing cover 6, spiral stirring blades 7, a moisture-proof rod 8, a guide fan 9, and a control center 10. Through experimental optimization, the elliptical rotating mesh cylinder 2, in conjunction with the internally fixed spiral stirring blades 7, rotates clockwise to feed hollow capsules from the feed inlet 5 into the rotating mesh cylinder 2. The spiral stirring blades 7 rotate counterclockwise to discharge the hollow capsules from the rotating mesh cylinder 2 to the feed inlet 5. The sealed storage tank 1 then controls the flow of the hollow capsules within the rotating mesh cylinder 2. The capsules are sealed and moisture-proof. The hollow capsules are turned and stirred by an elliptical rotating mesh cylinder 2 and a spiral stirring blade 7 fixed inside, which effectively prevents the hollow capsules from getting damp and sticking together. Moisture-proof rods 8, which are evenly sandwiched inside the rotating mesh cylinder 2, make rapid and even contact with the tumbling hollow capsules to prevent moisture, further improving the moisture-proof effect of the hollow capsules. The airflow fan 9 set at the bottom of the sealed storage box 1 blows air from the outside of the rotating mesh cylinder 2, which effectively prevents the hollow capsules from adhering to the rotating mesh cylinder 2, thus improving the processing quality of the hollow capsules after moisture-proofing.
[0016] The above embodiments are illustrative of the present invention and are not intended to limit the present invention. Any simple modifications to the present invention are within the protection scope of the present invention.
Claims
1. A moisture-proof processing equipment for empty capsules, characterized in that: The system includes a sealed storage box (1), a rotating mesh cylinder (2), a servo motor (3), a rotating support (4), a feed inlet (5), a sealing cover (6), spiral stirring blades (7), a moisture-proof rod (8), a guide fan (9), and a control center (10). The sealed storage box (1) contains an elliptical rotating mesh cylinder (2). The left end of the rotating mesh cylinder (2) is connected to the left side wall of the sealed storage box (1) via the servo motor (3), and the right end of the rotating mesh cylinder (2) is connected to the right side wall of the sealed storage box (1) via the rotating support (4). The rotating support (4) has a feed inlet that communicates with the rotating mesh cylinder (2). (5) The outer end of the feed inlet (5) extends to the outside of the sealed storage box (1). The outer end of the feed inlet (5) is detachably provided with a sealing cover (6). The inside of the rotating mesh cylinder (2) is evenly surrounded by spiral stirring blades (7). The inside of the rotating mesh cylinder (2) is evenly sandwiched with several moisture-proof rods (8). The lower part of the sealed storage box (1) is provided with several guide fans (9) facing the rotating mesh cylinder (2). The outer side of the sealed storage box (1) is provided with a control center (10). The control center (10) is connected to the servo motor (3) and the guide fan (9) respectively.
2. The hollow capsule moisture-proof processing equipment as described in claim 1, characterized in that: The rotating mesh cylinder (2) is a stainless steel mesh cylinder. The surface of the rotating mesh cylinder (2) is uniformly coated with a non-stick coating. The mesh diameter of the rotating mesh cylinder (2) is less than half the diameter of the hollow capsule.
3. The hollow capsule moisture-proof processing equipment as described in claim 1, characterized in that: The rotating bracket (4) is installed on the right side wall of the sealed storage box (1) via a rotating bearing. The inner ring of the rotating bearing is connected to the rotating mesh cylinder (2) and the feed inlet (5), and the outer ring of the rotating bearing is connected to the right side wall of the sealed storage box (1).
4. The hollow capsule moisture-proof processing equipment as described in claim 1, characterized in that: The moisture-proof rod (8) is detachably installed inside the rotating mesh cylinder (2).
5. The hollow capsule moisture-proof processing equipment as described in claim 1, characterized in that: The sealing cover (6) is a transparent plastic cover, and a rubber sealing ring is provided at the connection between the sealing cover (6) and the feed inlet (5).
6. The hollow capsule moisture-proof processing equipment as described in claim 1, characterized in that: The sealed storage box (1) is an insulated storage box, and self-locking casters are evenly arranged at the four corners of the bottom of the sealed storage box (1).