Automatic filling equipment for penicillin capsules
By designing an automated penicillin capsule filling equipment, a motor and an electric push rod are used to realize the automatic fastening of the capsule sleeve and the cap body, which solves the problem of low production efficiency caused by manual operation in the existing technology and realizes efficient automated production.
Patent Information
- Application Number
- CN202422572118.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-24
- Publication Date
- 2025-10-03
- Estimated Expiration
- 2034-10-24
AI Technical Summary
Existing penicillin capsule filling equipment requires manual pressing of the capsule sleeve and cap into the positioning device, resulting in low production efficiency and lack of automation.
An automatic filling device for penicillin capsules was designed. The device uses a motor to drive a rotating plate to rotate the placement slot, and an electric push rod to realize the automatic fastening and discharge of the capsule cover and cap body, reducing manual operation.
It improves production efficiency, realizes automatic filling of capsules, reduces labor costs and improves work efficiency.
Smart Images

Figure CN223404148U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of pharmaceutical equipment, in particular to an automatic filling device for penicillin capsules. Background Art
[0002] Penicillin (also known as penicillin) is also known as penicillin G[1], peillin G, penicillin, penicillin sodium, benzylpenicillin sodium, penicillin potassium, and benzylpenicillin potassium.
[0003] Penicillin is mostly formulated into capsules when used. These medications are typically powders or granules that are irritating to the esophagus and gastric mucosa, or contain unpleasant tastes, are volatile, are easily broken down by saliva in the mouth, or are easily inhaled into the trachea. Encapsulating these medications protects the drug's properties while also protecting the digestive organs and respiratory tract. Removing the capsule shell can cause drug loss, waste, and reduced efficacy. Furthermore, some medications require intestinal dissolution and absorption, and capsules protect them from being broken down by stomach acid. In medicine, capsules refer to capsules made of specialized film-forming materials that hold the contents or dosage for easy swallowing.
[0004] However, when filling capsules, most filling machines require manual pressing of the capsule sleeve and the cap into the corresponding positioning devices, and then buckling them together when filling the medicine. This method is affected by manpower, resulting in low production efficiency, and is not automated enough to continuously perform automatic filling work.
[0005] The invention provides an automatic filling device for penicillin capsules for this purpose. Utility Model Content
[0006] (1) Technical issues to be resolved
[0007] In order to overcome the shortcomings of the existing technology, an automatic filling device for penicillin capsules is proposed to solve the problem of low production efficiency caused by manually pressing the capsule sleeve and the cap body into the corresponding positioning device during filling of penicillin capsules.
[0008] (2) Technical solution
[0009] The utility model is realized through the following technical solutions: The utility model proposes an automatic filling device for penicillin capsules, comprising a mounting frame for fixing support,
[0010] The upper and lower ends of the mounting frame are connected to an upper mounting plate and a lower mounting plate, and the upper mounting plate and the lower mounting plate form a rotatable cavity, and a rotating plate is rotatably connected inside the cavity. A motor is installed at the lower end of the mounting frame through a fixed plate, and the output end of the motor is connected to the rotating plate;
[0011] The outer side of the rotating plate is provided with a plurality of placement grooves running through the upper and lower parts;
[0012] The upper end of the mounting frame is connected to the capsule sleeve feed port, the drug feed port and the cap body feed port in sequence, and the capsule sleeve feed port, the drug feed port and the cap body feed port are connected through the upper end mounting plate. The upper end of the mounting frame is installed with a first electric push rod, and the outer side of the upper end mounting plate is provided with a pushing groove running through the upper and lower ends, and the output end of the first electric push rod is connected to an extrusion plate located inside the pushing groove;
[0013] A through feeding opening is provided on the outer side of the lower end mounting plate.
[0014] Furthermore, the upper and lower end surfaces of the rotating plate are in contact with the inner side surfaces of the upper mounting plate and the lower mounting plate, and the upper and lower end surfaces in the middle part of the rotating plate are provided with rotating shafts which are rotatably connected to the upper mounting plate and the lower mounting plate through bearings, and the upper and lower end surfaces in the middle part of the rotating plate are smoothly arranged with the inner end surfaces of the upper mounting plate and the lower mounting plate.
[0015] Furthermore, a second electric push rod is installed on the other side of the outer side of the mounting frame, and the second electric push rod is located on the same axis as the discharge port, and the push groove is provided with two locations, and the output end of the second electric push rod is connected to a push plate when it is located at the other location of the push groove.
[0016] Furthermore, the bottom end surface of the push plate can be set to be flat, and the bottom end surface of the extrusion plate can be set to be arc-shaped.
[0017] Furthermore, the lower end of the discharge port is connected to a conduit.
[0018] Furthermore, a control panel is installed on the outside of the mounting frame.
[0019] (3) Beneficial effects
[0020] Compared with the prior art, the present invention has the following beneficial effects:
[0021] In the utility model, the external capsule sleeve is input into the placement groove through the capsule sleeve feed port, and then when the motor drives the rotating plate to make the placement groove pass through the medicine feed port and the cap body feed port, the medicine and the cap body are sequentially placed in the placement groove and contact with the capsule sleeve, and then the rotating plate is rotated to the extrusion plate, and the extrusion plate downward buckles the capsule sleeve and the cap body, and then rotates to the discharge port for discharge, and this is repeated, so that manual placement of the capsule sleeve and the cap body is avoided, the work efficiency is faster, more automated, and the labor cost is reduced. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] Other features, objects and advantages of the present invention will become more apparent from the detailed description of the non-limiting embodiments with reference to the following drawings:
[0023] Figure 1This is a schematic diagram of the internal structure of the utility model;
[0024] Figure 2 This is a schematic diagram of the top structure of the upper mounting plate of the utility model;
[0025] Figure 3 This is a schematic diagram of the top view of the rotating plate of the utility model;
[0026] Figure 4 This is a schematic diagram of the top structure of the lower end mounting plate of the utility model;
[0027] Figure 5 This is a side structural diagram of the mounting bracket of the utility model;
[0028] In the figure: mounting frame 1, control panel 2, upper mounting plate 3, rotating plate 4, lower mounting plate 5, rotating shaft 6, fixing plate 7, motor 8, placement slot 9, feed port 10, catheter 11, capsule feed port 12, drug feed port 13, cap feed port 14, first electric push rod 15, second electric push rod 16, pushing slot 17, squeezing plate 18, pushing plate 19. DETAILED DESCRIPTION
[0029] In order to make the purpose, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention.
[0030] See also Figure 1-Figure 5The utility model provides an automatic filling device for penicillin capsules, including a mounting frame 1 for fixed support, which makes the device more stable and facilitates the rotation of the capsule under force. A control panel 2 is installed on the outside of the mounting frame 1 to operate the electrical components of the device, making the operation more convenient. The upper and lower ends of the mounting frame 1 are connected with an upper mounting plate 3 and a lower mounting plate 5, so that the interior is sealed to prevent the influence of external dust on the internal medicine, and the upper mounting plate 3 and the lower mounting plate 5 form a rotatable cavity, and the interior of the cavity is rotatably connected with a rotating plate 4. A motor 8 is installed at the lower end of the mounting frame 1 through a fixed plate 7, and the output end of the motor 8 is connected to the rotating plate 4. Then, the upper and lower end surfaces of the rotating plate 4 are fitted with the inner side surfaces of the upper mounting plate 3 and the lower mounting plate 5, and the upper and lower end surfaces in the middle of the rotating plate 4 are provided with rotating shafts 6 that are rotatably connected to the upper mounting plate 3 and the lower mounting plate 5 through bearings, so that the rotating plate 4 can rotate under the drive of the motor 8, so that the placement slot 9 in the rotating plate 4 is forced to rotate to perform processing work at different positions, and continuous rotation makes the production more automated and reduces manual operation. The upper and lower end surfaces in the middle of the rotating plate 4 and the inner end surfaces of the upper mounting plate 3 and the lower mounting plate 5 are smoothly arranged, so that the sliding effect is better, avoiding the situation where the capsule is damaged during the rotation process.
[0031] The outer side of the rotating plate 4 is provided with a plurality of placement grooves 9 that penetrate up and down, so that the placement grooves 9 can prevent the capsules from being put in contact with each other, and the capsules fit the inner walls of the placement grooves 9 to avoid the spillage of the medicine. In addition, a plurality of placement grooves 9 are provided to enable sustainable filling work. The outer side of the lower mounting plate 5 is provided with a through discharge port 10 to discharge the snapped capsules. The lower end of the discharge port 10 is connected to a conduit 11 to discharge the snapped capsules to a suitable working position. The upper end of the mounting frame 1 is connected with a capsule sleeve feed port 12, a medicine feed port 13 and a cap body feed port 14 in sequence, and the capsule sleeve feed port 12, the medicine feed port 13 and the cap body feed port 14 penetrate each other. The upper mounting plate 3 is connected to facilitate the input of the capsule sleeve into the placement groove 9 through the capsule sleeve feed port 12, and then into the capsule sleeve in the placement groove 9 through the drug feed port 13, and then the cap body is placed into the placement groove 9 through the cap body feed port 14 to contact the capsule sleeve, so as to achieve the wrapping of the medicine. A first electric push rod 15 is installed on the upper end of the mounting frame 1, and a push groove 17 is provided on the outer side of the upper mounting plate 3 which passes through the upper and lower parts, and an extrusion plate 18 is connected to the output end of the first electric push rod 15 and is located inside the push groove 17. The extrusion plate 18 is pushed downward by the first electric push rod 15 to close the cap body, so that the capsule is fastened, making capsule processing convenient.
[0032] Preferably, a second electric push rod 16 is installed on the other side of the outer side of the mounting frame 1, and the second electric push rod 16 is located on the same axis as the discharge port 10, and the pushing groove 17 is provided at two locations. When the output end of the second electric push rod 16 is located at the other location of the pushing groove 17, it is connected to a push plate 19, so that the second electric push rod 16 pushes the push plate 19 to discharge the capsule downward, avoiding the situation where the capsule is stuck inside the placement groove 9. The bottom end surface of the push plate 19 can be set to be flat, which is convenient for downward force to discharge all the sides downward, and the bottom end surface of the extrusion plate 18 is set to be arc-shaped, so that the contact surface with the capsule is increased, so that the effect of buckling is better.
[0033] Working principle: When in use, first connect the control panel 2, motor 8, first electric push rod 15 and second electric push rod 16 to the external power supply, and connect the capsule sleeve feeding port 12, the medicine feeding port 13 and the cap body feeding port 14 to the external feeding equipment, under the action of the capsule sleeve feeding port 12, the capsule sleeve is input into the placement slot 9 on the rotating plate 4, and then the motor 8 drives the rotating plate 4 to rotate so that the placement slot 9 with the capsule sleeve rotates to the medicine feeding port 13, so that the medicine is discharged from the medicine feeding port 13 to fill the capsule sleeve, and then rotates so that the capsule sleeve rotates to the cap body feeding port 14, so that the cap body is discharged from the cap body feeding port 14 into the placement slot 9 and contacts the capsule sleeve, and then rotates the rotating plate 4 so that the placement slot 9 is at the lower end of the squeezing plate 18, and the first electric push rod 15 pushes the squeezing plate 18 so that the capsule is forcefully buckled, and then rotates the rotating plate 4 so that the capsule rotates to the discharge port 10, and the capsule is discharged under the action of the second electric push rod 16, thereby completing the work.
[0034] The above shows and describes the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The above embodiments and descriptions are merely preferred examples of the present invention and are not intended to limit the present invention. Various changes and improvements may be made to the present invention without departing from the spirit and scope of the present invention, and such changes and improvements fall within the scope of the present invention. The scope of protection claimed in the present invention is defined by the appended claims and their equivalents.
Claims
1. An automatic filling device for penicillin capsules, comprising a mounting frame (1) for fixed support, characterized in that ; The upper and lower ends of the mounting frame (1) are connected to an upper mounting plate (3) and a lower mounting plate (5), and the upper mounting plate (3) and the lower mounting plate (5) form a rotatable cavity, and a rotating plate (4) is rotatably connected inside the cavity. A motor (8) is installed at the lower end of the mounting frame (1) through a fixed plate (7), and the output end of the motor (8) is connected to the rotating plate (4); The outer side of the rotating plate (4) is provided with a plurality of placement grooves (9) extending vertically therethrough; The upper end of the mounting frame (1) is connected in sequence with a capsule sleeve feed port (12), a drug feed port (13) and a cap body feed port (14), and the capsule sleeve feed port (12), the drug feed port (13) and the cap body feed port (14) are connected through the upper end mounting plate (3). A first electric push rod (15) is installed on the upper end of the mounting frame (1), and a push groove (17) is provided on the outer side of the upper end mounting plate (3) and is passed through from top to bottom. The output end of the first electric push rod (15) is connected to an extrusion plate (18) located inside the push groove (17); A through-cutting opening (10) is provided on the outer side of the lower end mounting plate (5).
2. The automatic penicillin capsule filling device according to claim 1, characterized in that: The upper and lower end surfaces of the rotating plate (4) are fitted with the inner side surfaces of the upper mounting plate (3) and the lower mounting plate (5); the upper and lower end surfaces of the middle portion of the rotating plate (4) are provided with a rotating shaft (6) which is rotatably connected to the upper mounting plate (3) and the lower mounting plate (5) through a bearing; and the upper and lower end surfaces of the middle portion of the rotating plate (4) and the inner end surfaces of the upper mounting plate (3) and the lower mounting plate (5) are smoothly arranged.
3. The automatic penicillin capsule filling device according to claim 1, characterized in that: A second electric push rod (16) is installed on the other side of the outer side of the mounting frame (1), and the second electric push rod (16) and the discharge port (10) are located on the same axis, and the pushing groove (17) is provided at two locations, and the output end of the second electric push rod (16) is connected to a push plate (19) when it is located at the other location of the pushing groove (17).
4. The automatic penicillin capsule filling device according to claim 3, characterized in that: The bottom end surface of the push plate (19) can be set to be flat, and the bottom end surface of the extrusion plate (18) can be set to be arc-shaped.
5. The automatic penicillin capsule filling device according to claim 1, characterized in that: The lower end of the discharge port (10) is connected to a conduit (11).
6. The automatic penicillin capsule filling device according to claim 1, characterized in that: A control panel (2) is mounted on the outside of the mounting frame (1).