Skin-care soft capsule production equipment convenient for loading and unloading
By designing a vertically rotatable drying cylinder and a dehumidification component, the problems of inconvenient loading and unloading and poor drying effect of traditional drying cylinders are solved, realizing convenient operation and efficient drying in soft capsule production.
Patent Information
- Application Number
- CN202520972041.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-16
- Publication Date
- 2026-02-24
- Estimated Expiration
- 2035-05-16
AI Technical Summary
Traditional horizontal fixed drying cylinders are inconvenient for loading and unloading soft capsules, which increases the complexity of production operations and labor costs. In addition, poor sealing results in poor drying effect, affecting capsule quality and stability.
A production device including a drying cylinder, a drive base, a drying component, and a dehumidification component was designed. The vertical rotation of the drying cylinder facilitates loading and unloading, and the combination of air vents and the dehumidification component effectively removes moisture and improves the drying effect.
This technology enables convenient loading and unloading of soft capsules, reduces the complexity of production operations and labor costs, and improves drying efficiency, ensuring capsule quality and stability.
Smart Images

Figure CN223939814U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of soft capsule production equipment, specifically a skin care soft capsule production equipment that facilitates loading and unloading. Background Technology
[0002] Soft capsules are a type of capsule packaging commonly found in pharmaceuticals and health foods. They are capsules made by sealing liquid or liquid-solid drugs within a soft capsule material. The soft capsule material is made alone or in combination with capsule gelatin, glycerin, or other suitable pharmaceutical excipients.
[0003] The production process of soft capsules mainly includes the following steps: First, the liquid drug is pretreated to ensure that its composition is uniform, stable and meets the quality requirements; then, the treated drug is filled into the soft capsule material. Advanced technologies such as rotary molding or dripping are usually used for capsule forming and sealing. During this process, key parameters such as filling amount, temperature and humidity must be strictly controlled to ensure that the quality indicators such as appearance, size and sealing of the capsule meet the standards.
[0004] In the production process of soft capsules, the drying process is crucial. Existing soft capsule drying equipment mostly uses drying cylinders for drying. However, traditional horizontal fixed drying cylinders have many drawbacks, such as inconvenience in loading and unloading soft capsules, increasing the complexity of production operations and labor costs. Moreover, the sealed drying cylinder can easily trap water vapor inside, resulting in poor drying effect and thus affecting the quality and stability of soft capsules.
[0005] Based on this, a skin care soft capsule production equipment that facilitates loading and unloading is now provided, which can eliminate the drawbacks of existing equipment. Utility Model Content
[0006] The purpose of this invention is to provide a skin care soft capsule production equipment that facilitates loading and unloading of materials, in order to solve the problems in the background art.
[0007] To achieve the above objectives, this utility model provides the following technical solution:
[0008] A skin care soft capsule production equipment that facilitates loading and unloading includes a drying cylinder. A drying mechanism is provided on the outside of the drying cylinder. The drying mechanism includes a drying component located at the lower end of the drying cylinder and a dehumidification component located at the upper end of the drying cylinder. One end of the drying cylinder is rotatably connected to a drive base. A first rotating component is provided on one side of the drive base, and a second rotating component is provided on one side of the dehumidification component.
[0009] Based on the above technical solutions, this utility model also provides the following optional technical solutions:
[0010] In one alternative: the drying cylinder includes a cylinder body, which is disposed between the drying component and the dehumidification component. The cylinder body is uniformly provided with air holes. One end of the cylinder body is provided with a feed inlet, and a movable cover plate is provided at the feed inlet. The other end of the cylinder body is provided with a discharge outlet, and a sealing plug is provided inside the discharge outlet. A conical groove is provided near the inner side of the cylinder body at the discharge outlet.
[0011] In one alternative: the drying assembly includes a first mounting base, a support column at the lower end of the first mounting base, a base at the lower end of the support column, a first semi-circular mounting groove at the upper end of the first mounting base, a first ventilation hole on the first semi-circular mounting groove, first arc-shaped pads at both ends of the first semi-circular mounting groove, a first air duct at the lower end of the first semi-circular mounting groove, and a heating assembly inside the first air duct.
[0012] In one alternative: the heating assembly includes a first fan disposed in a first air duct, the lower end of the first fan is provided with a heating pipe, the lower end of the heating pipe is provided with a sealing plate, and the sealing plate is provided with a ventilation groove.
[0013] In one alternative: the dehumidification component includes a second mounting base, which is disposed on the upper end of the first mounting base. One end of the second mounting base is hinged to the first mounting base. The second mounting base is provided with a second semi-circular mounting groove, which is provided with a second ventilation hole. The two ends of the second semi-circular mounting groove are provided with second arc-shaped pads. One side of the second semi-circular mounting groove is provided with a second air duct, and a second fan is installed in the second air duct.
[0014] In one alternative: the drive base includes a fixing plate fixed to one end of a first mounting base, a third mounting base is hinged to one end of the fixing plate, one end of the drying cylinder is rotatably connected to the third mounting base, a motor is provided on one side of the third mounting base, the output end of the motor is connected to the drying cylinder, and a discharge chute is also provided on the third mounting base.
[0015] In one alternative: the first rotating assembly includes a first telescopic rod disposed on one side of the third mounting base, the fixed end of the first telescopic rod being hinged to the base, and the output end of the first telescopic rod being hinged to the third mounting base.
[0016] In one alternative embodiment: the second rotating assembly includes a second telescopic rod disposed on one side of the second mounting base, the fixed end of the second telescopic rod being hinged to the base, and the output end of the second telescopic rod being hinged to the second mounting base.
[0017] Compared with the prior art, the beneficial effects of this utility model are as follows:
[0018] This invention enables the drying cylinder to rotate vertically through the cooperation of the drying cylinder, drive base, drying component, dehumidification component, first rotating component, and second rotating component, facilitating the loading and unloading of soft capsules. At the same time, the air holes provided on the drying cylinder and the cooperation between the drying component and the dehumidification component effectively solve the problem that sealed drying cylinders easily trap water vapor inside, resulting in poor drying effect. Attached Figure Description
[0019] Figure 1 This is a structural schematic diagram of one side of the present invention.
[0020] Figure 2 This is a schematic diagram of the structure on the other side of this utility model.
[0021] Figure 3 This is a schematic diagram of the structure of the drying cylinder in this utility model.
[0022] Figure 4 This is a schematic diagram of the drying mechanism in this utility model.
[0023] Figure reference numerals: 100, Drying cylinder; 101, Cylinder body; 102, Vent; 103, Feed inlet; 104, Movable cover plate; 105, Discharge outlet; 106, Sealing plug; 107, Conical groove; 200, Drying mechanism; 300, Drying assembly; 301, First mounting base; 302, Support column; 303, Base; 304, First semi-circular mounting groove; 305, First ventilation hole; 306, First arc-shaped pad; 307, First air duct; 308, First fan; 309, Heating element. Pipe; 310, sealing plate; 311, ventilation slot; 400, dehumidification component; 401, second mounting base; 402, second semi-circular mounting slot; 403, second ventilation hole; 404, second arc-shaped pad; 405, second air duct; 406, second fan; 500, drive base; 501, fixing plate; 502, third mounting base; 503, motor; 504, discharge chute; 600, first rotating component; 601, first telescopic rod; 700, second rotating component; 701, second telescopic rod. Detailed Implementation
[0024] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments.
[0025] In one embodiment, such as Figure 1 and Figure 2As shown, a skin care soft capsule production device that facilitates loading and unloading includes a drying cylinder 100. A drying mechanism 200 is provided on the outside of the drying cylinder 100. The drying mechanism 200 includes a drying component 300 disposed at the lower end of the drying cylinder 100 and a dehumidification component 400 disposed at the upper end of the drying cylinder 100. One end of the drying cylinder 100 is rotatably connected to a drive base 500. A first rotating component 600 is provided on one side of the drive base 500, and a second rotating component 700 is provided on one side of the dehumidification component 400. In use, the dehumidification component 400 and the drying cylinder 100 are first rotated to a vertical position by the second rotating component 700 and the first rotating component 600, respectively. Then, the soft capsules are added into the drying cylinder 100. The dehumidification component 400 and the drying cylinder 100 are then returned to a horizontal position. The drying cylinder 100 is then driven to rotate by the drive base 500, while the drying component 300 performs the drying process, and the dehumidification component 400 discharges the moisture inside the drying cylinder 100.
[0026] In one embodiment, such as Figure 3 As shown, the drying cylinder 100 includes a cylinder body 101, which is located between the drying component 300 and the dehumidification component 400. Air holes 102 are evenly distributed on the cylinder body 101. One end of the cylinder body 101 is provided with a feed inlet 103, and a movable cover plate 104 is provided at the feed inlet 103. The other end of the cylinder body 101 is provided with a discharge outlet 105, and a sealing plug 106 is provided inside the discharge outlet 105. A conical groove 107 is provided near the inner side of the discharge outlet 105. In use, materials are loaded into the cylinder body 101 through the feed inlet 103 and discharged through the discharge outlet 105. The conical groove 107 facilitates the collection of soft capsules inside the cylinder body 101 to the discharge outlet 105.
[0027] In one embodiment, such as Figure 4 As shown, the drying assembly 300 includes a first mounting base 301, a support column 302 at the lower end of the first mounting base 301, a base 303 at the lower end of the support column 302, a first semi-circular mounting groove 304 at the upper end of the first mounting base 301, a first ventilation hole 305 on the first semi-circular mounting groove 304, first arc-shaped pads 306 at both ends of the first semi-circular mounting groove 304, a first air duct 307 at the lower end of the first semi-circular mounting groove 304, and a heating assembly inside the first air duct 307. In use, the drying cylinder 100 is horizontally installed inside the first semi-circular mounting groove 304 and supported on the first arc-shaped pads 306, and is heated and dried by the heating assembly.
[0028] In one embodiment, such as Figure 4As shown, the heating assembly includes a first fan 308 disposed in the first air duct 307, a heating tube 309 disposed at the lower end of the first fan 308, a sealing plate 310 disposed at the lower end of the heating tube 309, and a ventilation slot 311 disposed on the sealing plate 310. In use, the hot air generated by the heating tube 309 is blown by the first fan 308 through the first ventilation hole 305 to the drying cylinder 100, thereby drying the soft capsules inside the drying cylinder 100.
[0029] In one embodiment, such as Figure 4 As shown, the dehumidification assembly 400 includes a second mounting base 401, which is disposed on the upper end of the first mounting base 301. One end of the second mounting base 401 is hinged to the first mounting base 301. The second mounting base 401 is provided with a second semi-circular mounting groove 402, and a second ventilation hole 403 is provided on the second semi-circular mounting groove 402. A second arc-shaped pad 404 is provided at both ends of the second semi-circular mounting groove 402. A second air duct 405 is provided on one side of the second semi-circular mounting groove 402. A second fan 406 is installed in the second air duct 405. In use, the second fan 406 draws out the water vapor in the drying cylinder 100, and the water vapor is discharged from the second air duct 405 through the second ventilation hole 403.
[0030] In one embodiment, such as Figure 4 As shown, the drive base 500 includes a fixing plate 501 fixed to one end of the first mounting base 301. A third mounting base 502 is hinged to one end of the fixing plate 501. One end of the drying cylinder 100 is rotatably connected to the third mounting base 502. A motor 503 is provided on one side of the third mounting base 502. The output end of the motor 503 is connected to the drying cylinder 100. A discharge chute 504 is also provided on the third mounting base 502. In use, the drying cylinder 100 is driven to rotate by the motor 503.
[0031] In one embodiment, such as Figure 4 As shown, the first rotating assembly 600 includes a first telescopic rod 601 disposed on one side of the third mounting base 502. The fixed end of the first telescopic rod 601 is hinged to the base 303, and the output end of the first telescopic rod 601 is hinged to the third mounting base 502. In use, the vertical rotation of the drying cylinder 100 and the drive base 500 is controlled by controlling the extension and retraction of the first telescopic rod 601.
[0032] In one embodiment, such as Figure 4 As shown, the second rotating assembly 700 includes a second telescopic rod 701 disposed on one side of the second mounting base 401. The fixed end of the second telescopic rod 701 is hinged to the base 303, and the output end of the second telescopic rod 701 is hinged to the second mounting base 401. In use, the vertical rotation of the dehumidification assembly 400 is controlled by controlling the extension and retraction of the second telescopic rod 701.
[0033] The above embodiment discloses a skin care soft capsule production equipment that facilitates loading and unloading. During loading, the second telescopic rod 701 is first retracted to rotate the dehumidification component 400 to a vertical position. Then, the first telescopic rod 601 is retracted to rotate the drying cylinder 100 to a vertical position. Soft capsules are then added into the cylinder through the feed inlet 103. Next, the movable cover 104 is closed. Then, the drying cylinder 100 and the dehumidification component 400 are sequentially restored to a horizontal position. The drying cylinder 100 is then driven to rotate by the motor 503. Simultaneously, the hot air generated by the heating tube 309 is blown into the drying cylinder 100 through the first ventilation hole 305 by the first fan 308, thereby drying the soft capsules inside the drying cylinder 100. The water vapor inside the drying cylinder 100 is extracted by the second fan 406 and discharged through the second ventilation hole 403 and the second air duct 405.
[0034] The above description is merely a specific embodiment of this application, but the scope of protection of this application is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in this application should be included within the scope of protection of this application. Therefore, the scope of protection of this application should be determined by the scope of the claims.
Claims
1. A skincare soft capsule production equipment with convenient loading and unloading, comprising a drying cylinder (100), characterized in that, A drying mechanism (200) is provided on the outside of the drying cylinder (100). The drying mechanism (200) includes a drying component (300) disposed at the lower end of the drying cylinder (100) and a dehumidification component (400) disposed at the upper end of the drying cylinder (100). One end of the drying cylinder (100) is rotatably connected to a drive seat (500). A first rotating component (600) is provided on one side of the drive seat (500), and a second rotating component (700) is provided on one side of the dehumidification component (400).
2. The skincare soft capsule production equipment for convenient loading and unloading of materials according to claim 1, characterized in that, The drying cylinder (100) includes a cylinder body (101), which is located between the drying assembly (300) and the dehumidification assembly (400). The cylinder body (101) is evenly provided with air holes (102). One end of the cylinder body (101) is provided with a feed inlet (103), and a movable cover plate (104) is provided at the feed inlet (103). The other end of the cylinder body (101) is provided with a discharge outlet (105), and a sealing plug (106) is provided inside the discharge outlet (105). A conical groove (107) is provided near the inner side of the cylinder body (101) of the discharge outlet (105).
3. The skincare soft capsule production equipment for convenient loading and unloading of materials according to claim 1, characterized in that, The drying assembly (300) includes a first mounting base (301), a support column (302) at the lower end of the first mounting base (301), a base (303) at the lower end of the support column (302), a first semi-circular mounting groove (304) at the upper end of the first mounting base (301), a first ventilation hole (305) on the first semi-circular mounting groove (304), first arc-shaped pads (306) at both ends of the first semi-circular mounting groove (304), a first air duct (307) at the lower end of the first semi-circular mounting groove (304), and a heating assembly inside the first air duct (307).
4. The skincare soft capsule production equipment for convenient loading and unloading of materials according to claim 3, characterized in that, The heating assembly includes a first fan (308) disposed in a first air duct (307), a heating tube (309) provided at the lower end of the first fan (308), a sealing plate (310) provided at the lower end of the heating tube (309), and a ventilation groove (311) provided on the sealing plate (310).
5. The skincare soft capsule production equipment for convenient loading and unloading of materials according to claim 3, characterized in that, The dehumidification assembly (400) includes a second mounting base (401), which is disposed on the upper end of the first mounting base (301). One end of the second mounting base (401) is hinged to the first mounting base (301). The second mounting base (401) is provided with a second semi-circular mounting groove (402), and a second ventilation hole (403) is provided on the second semi-circular mounting groove (402). A second arc-shaped pad (404) is provided at both ends of the second semi-circular mounting groove (402). A second air duct (405) is provided on one side of the second semi-circular mounting groove (402), and a second fan (406) is installed in the second air duct (405).
6. The skincare soft capsule production equipment with convenient loading and unloading as described in claim 1, characterized in that, The drive base (500) includes a fixing plate (501) fixed to one end of the first mounting base (301), a third mounting base (502) hinged to one end of the fixing plate (501), one end of the drying cylinder (100) being rotatably connected to the third mounting base (502), a motor (503) being provided on one side of the third mounting base (502), the output end of the motor (503) being connected to the drying cylinder (100), and a discharge chute (504) being provided on the third mounting base (502).
7. The skincare soft capsule production equipment for convenient loading and unloading of materials according to claim 1, characterized in that, The first rotating assembly (600) includes a first telescopic rod (601) disposed on one side of the third mounting base (502), the fixed end of the first telescopic rod (601) is hinged to the base (303), and the output end of the first telescopic rod (601) is hinged to the third mounting base (502).
8. The skincare soft capsule production equipment with convenient loading and unloading as described in claim 5, characterized in that, The second rotating assembly (700) includes a second telescopic rod (701) disposed on one side of the second mounting base (401), the fixed end of the second telescopic rod (701) is hinged to the base (303), and the output end of the second telescopic rod (701) is hinged to the second mounting base (401).