Quantitative capsule filling device
By designing the collection structure and rotating fan blades of the capsule quantitative filling device, the problem of powder throwing and leakage in the capsule filling device is solved, accurate quantitative filling is achieved and powder scattering is prevented, reducing material waste and maintenance costs.
Patent Information
- Application Number
- CN202422320096.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-23
- Publication Date
- 2025-10-03
- Estimated Expiration
- 2034-09-23
AI Technical Summary
Existing capsule filling devices are prone to powder shedding and leakage during filling, resulting in material waste, machine damage, and high maintenance costs.
A capsule quantitative filling device is designed, which includes a collection structure and a rotating fan blade. The powder is collected through a collection grid, and the rotating fan blade collects the powder in a centralized manner. The motor controls the rotation to prevent the powder from scattering, and accurate quantitative filling is achieved through the support component and the filling component.
It achieves precise quantitative filling of medicine powder, prevents powder from scattering and wasting, reduces machine damage, reduces maintenance costs, and prevents the entry of pathogens.
Smart Images

Figure CN223404147U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of medicine preparation, in particular to a capsule quantitative filling device. Background Art
[0002] The capsule quantitative filling device is a mechanical device specially used to accurately and quantitatively fill drugs into hard capsules. Its main purpose is to accurately fill different types of drugs into capsules according to the predetermined dosage during the pharmaceutical process, thereby producing medicines that meet the standards.
[0003] Current capsule filling devices may experience powder spillage during filling. If the scattered powder is not collected, it will cause material waste. In addition, the accumulation of powder in the machine can easily affect the normal operation of the machine, causing damage to the machine and increasing maintenance costs.
[0004] Therefore, according to the above-mentioned capsule filling device, powder will be thrown away and leaked during filling. If these scattered powders are not collected, it will cause material waste, and the accumulation of powders in the machine will easily affect the normal operation of the machine, causing damage to the machine and high maintenance costs. A filling device that can collect loose powder can be designed. By setting up a collection structure, accurate and quantitative filling can be performed during operation, and the powder can be prevented from being scattered and wasted. At the same time, it can effectively prevent pathogens from entering during the filling process. Utility Model Content
[0005] In order to overcome the problem that in the prior art, the capsule filling device may throw away and leak powder during filling. If the scattered powder is not collected, it will cause material waste, and the powder accumulation in the machine will easily affect the normal operation of the machine, cause damage to the machine, and increase the maintenance cost.
[0006] The technical solution of the utility model is: a capsule quantitative filling device, including a main body bottom plate, a storage component, a plate placement block, a plate placement groove, a collecting grid, a rotating fan blade, a rotating shaft, an integrated mounting block, a connecting column, a motor, a barrier component, a support component, a conveying component, a blanking component and a filling component. The top surface of the main body bottom plate is provided with a storage component, the surface of the storage component is provided with a plate placement block, the surface of the plate placement block is provided with a plate placement groove, the interior of the plate placement groove is provided with a collecting grid, the interior of the collecting grid is provided with a rotating fan blade, the top surface of the storage component is provided with a barrier component, the bottom surface of the main body bottom plate is equidistantly provided with a supporting component, one side of the storage component is provided with a conveying component, one side of the conveying component is provided with a blanking component, and the bottom of the blanking component is provided with a filling component.
[0007] Preferably, the main body bottom plate bears the weight, the storage component stores waste chips, the plate placement groove is installed on the surface of the collection block through the plate placement block, the capsule plate is limited and fixed by setting the plate placement groove, the medicine powder is collected by the collection grid, the medicine powder is collected and concentrated by the rotating fan blades, the integrated mounting block is connected by the rotating shaft, the integrated circuit is installed by the integrated mounting block, the motor is connected by the connecting column, the rotation of the rotating fan blades is controlled by rotating the motor, the waste chips generated when the machine is working are blocked by the blocking component to prevent the waste chips from splashing, the whole device is supported by the supporting component, the medicine powder is transported by the conveying component, the medicine powder is limitedly filled by the unloading component, and the medicine powder is filled in the capsule by the filling component.
[0008] Preferably, the storage component includes a collection block, a collection circular hole, an installation slot, a collection slot, an inspection door frame, a tempered glass slot, a collection door hinge and a collection bolt. A collection block is provided on the top surface of the main body bottom plate, a collection circular hole is provided on the surface of the collection block, an installation slot is provided in the middle of the collection block, a collection slot is provided on one side of the collection block, an inspection door frame is provided on the surface of the collection slot, a tempered glass slot is provided inside the inspection door frame, a collection door hinge is provided on one side of the inspection door frame, and a collection bolt is provided on one side of the inspection door frame.
[0009] Preferably, a rotating shaft is provided at the bottom of the rotating fan blade, an integrated mounting block is provided at the bottom of the rotating shaft, a connecting column is provided on one side of the integrated mounting block, and a motor is provided at one end of the connecting column.
[0010] Preferably, the barrier assembly includes a baffle, a discharge door, a barrier hinge and a barrier bolt. The top surface of the collecting block is provided with a baffle, a discharge door is provided on one side of the baffle, the surface of the discharge door is provided with a barrier hinge, and one side of the discharge door is provided with a barrier bolt.
[0011] Preferably, the support assembly includes support columns, fixing blocks and fixing bolts. The support columns are equidistantly arranged on the bottom surface of the main body base plate, the fixing blocks are arranged on the bottom surface of the support columns, and the fixing bolts are arranged on the surface of the fixing blocks.
[0012] Preferably, the conveying assembly includes a control mounting block, a powder storage block, a circuit block, a pumping pump and a conveying pipe. A control mounting block is provided on one side of the main body bottom plate, a powder storage block is provided on the top surface of the control mounting block, a circuit block is provided on one side of the powder storage block, a pumping pump is provided on the top of the powder storage block, and a conveying pipe is provided inside the pumping pump.
[0013] Preferably, the unloading assembly includes a working mounting block, a processing electric pipe, a unloading hopper and a quantitative pipe. The working mounting block is provided at the top of the circuit block, the processing electric pipe is provided at the top of the working mounting block, one end of the processing electric pipe is connected to the unloading hopper, and the quantitative pipe is provided at the bottom of the unloading hopper.
[0014] Preferably, the filling assembly includes a filling block, a telescopic tube and a filling tray. The filling block is provided at the bottom of the quantitative tube, the bottom surface of the filling block is provided with a telescopic tube, and one end of the telescopic tube is provided with a filling tray.
[0015] Beneficial effects of the utility model:
[0016] 1. Compared with traditional capsule filling devices, which may cause powder leakage during filling, the scattered powder will cause material waste if it is not collected, and the accumulation of powder in the machine will easily affect the normal operation of the machine, causing damage to the machine and high maintenance costs. By setting up a collection structure, the device can perform accurate and quantitative filling during operation, prevent powder from being scattered and wasted, and effectively prevent pathogens from entering during the filling process.
[0017] 2. Install the plate placement slot on the surface of the collecting block through the plate placement block, limit and fix the capsule plate by setting the plate placement slot, collect the powder through the collection grid, collect the powder centrally through the rotating fan blades, connect the integrated mounting block through the rotating shaft, install the integrated circuit through the integrated mounting block, connect the motor through the connecting column, and control the rotation of the rotating fan blades by rotating the motor. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 Shown is a schematic diagram of the first three-dimensional structure of a quantitative capsule filling device of the present invention;
[0019] Figure 2 Shown is a schematic diagram of a second three-dimensional structure of a quantitative capsule filling device of the present invention;
[0020] Figure 3 Shown is a schematic side view of a three-dimensional structure of a quantitative capsule filling device of the present invention;
[0021] Figure 4 Shown is a partial three-dimensional structural schematic diagram of a quantitative capsule filling device of the present invention;
[0022] Figure 5 Shown is a schematic diagram of the three-dimensional structure of parts of a quantitative capsule filling device of the present invention;
[0023] Explanation of reference numerals: 1. Main body bottom plate; 201. Collecting block; 202. Collecting circular hole; 203. Mounting slot; 204. Collecting slot; 205. Inspection door frame; 206. Tempered glass slot; 207. Collecting door hinge; 208. Collecting bolt; 301. Plate placement block; 302. Plate placement slot; 303. Collecting grille; 304. Rotating fan blade; 305. Rotating shaft; 306. Integrated mounting block; 307. Connecting column; 308. Motor; 401. Baffle; 402. Discharge door; 403. Enclosure hinge; 404. Enclosure bolt; 501. Support column; 502. Fixing block; 503. Fixing bolt; 601. Control mounting block; 602. Powder storage block; 603. Circuit block; 604. Pumping pump; 605. Delivery pipe; 701. Working mounting block; 702. Processing electrical pipe; 703. Discharge hopper; 704. Dosing pipe; 801. Filling block; 802. Telescopic tube; 803. Filling tray. DETAILED DESCRIPTION
[0024] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0025] See also Figure 1 The utility model provides an embodiment: a capsule quantitative filling device, comprising a main body bottom plate 1, a storage component, a plate placement block 301, a plate placement groove 302, a collecting grille 303, a rotating fan blade 304, a rotating shaft 305, an integrated mounting block 306, a connecting column 307, a motor 308, a barrier component, a support component, a conveying component, a blanking component and a filling component. The top surface of the main body bottom plate 1 is provided with a storage component, the surface of the storage component is provided with a plate placement block 301, the surface of the plate placement block 301 is provided with a plate placement groove 302, the interior of the plate placement groove 302 is provided with a collecting grille 303, the interior of the collecting grille 303 is provided with a rotating fan blade 304, a barrier component is provided around the top surface of the storage component, a support component is equidistantly provided on the bottom surface of the main body bottom plate 1, a conveying component is provided on one side of the storage component, a blanking component is provided on one side of the conveying component, and a filling component is provided at the bottom of the blanking component.
[0026] See also Figure 2-4In this embodiment, the storage assembly includes a collection block 201, a collection circular hole 202, a mounting slot 203, a collection slot 204, an inspection door frame 205, a tempered glass slot 206, a collection door hinge 207 and a collection bolt 208. The top surface of the main body bottom plate 1 is provided with a collection block 201, a collection circular hole 202 is opened on the surface of the collection block 201, a mounting slot 203 is opened in the middle of the collection block 201, a collection slot 204 is opened on one side of the collection block 201, and the surface of the collection slot 204 is provided with Inspection door frame 205, the interior of inspection door frame 205 is provided with tempered glass groove 206, one side of inspection door frame 205 is provided with collection door hinge 207, one side of inspection door frame 205 is provided with collection bolt 208. When in use, the collection chamber is installed through the collection block 201, the powder is collected into the collection chamber through the collection circular hole 202, the components are placed through the installation slot 203, the situation in the collection chamber is observed through the collection slot 204, the powder is cleaned through the inspection door frame 205 to inspect the machine, and the steel The glass tank 206 prevents the powder from flying out when the machine is working. The opening and closing of the inspection door frame 205 is controlled by the collection door hinge 207, and the inspection door frame 205 is closed and fixed by the collection bolt 208. The bottom of the rotating fan 304 is provided with a rotating shaft 305, and the bottom of the rotating shaft 305 is provided with an integrated mounting block 306. A connecting column 307 is provided on one side of the integrated mounting block 306, and a motor 308 is provided at one end of the connecting column 307. The barrier assembly includes a baffle 401, a discharge door 402, a barrier hinge 403 and a barrier. A baffle 401 is provided on the top surface of the collecting block 201, a discharge door 402 is provided on one side of the baffle 401, a blocking hinge 403 is provided on the surface of the discharge door 402, and a blocking bolt 404 is provided on one side of the discharge door 402. When in use, the baffle 401 is used to block the machine when it is working to prevent powder from splashing, and the material is placed through the discharge door 402. The discharge door 402 is driven to open and close by rotating the blocking hinge 403, and the discharge door 402 is closed and fixed by the blocking bolt 404.
[0027] The support assembly includes a support column 501, a fixing block 502 and a fixing bolt 503. The bottom surface of the main body bottom plate 1 is equidistantly provided with support columns 501, the bottom surface of the support column 501 is provided with a fixing block 502, and the surface of the fixing block 502 is provided with a fixing bolt 503. When in use, the entire filling device is supported by the support column 501, the filling device is fixed by the fixing block 502, and the fixing bolt 503 is fixed by the fixing block 502. The conveying assembly includes a control installation block 601, a powder storage block 602, a circuit block 603, and a pumping pump 603. 04 and a delivery pipe 605. A control mounting block 601 is provided on one side of the main body bottom plate 1. A powder storage block 602 is provided on the top surface of the control mounting block 601. A circuit block 603 is provided on one side of the powder storage block 602. A pumping pump 604 is provided on the top of the powder storage block 602. A delivery pipe 605 is provided inside the pumping pump 604. When in use, the powder storage block 602 is supported and installed by the control mounting block 601, the powder to be filled is stored through the powder storage block 602, other components are installed through the circuit block 603, and the powder to be filled is pumped through the pumping pump 604. The powder is transported to the filling structure through the conveying pipe 605. The feeding assembly includes a working mounting block 701, a processing electric pipe 702, a feeding hopper 703 and a quantitative pipe 704. The top of the circuit block 603 is provided with a working mounting block 701, the top of the working mounting block 701 is provided with a processing electric pipe 702, one end of the processing electric pipe 702 is connected to the feeding hopper 703, and the bottom end of the feeding hopper 703 is provided with a quantitative pipe 704. When in use, the device is controlled by the working mounting block 701, and the control circuit is transported through the processing electric pipe 702. The medicine powder is transported through the discharge hopper 703, and the powder discharge is quantitatively controlled through the metering tube 704. The filling component includes a filling block 801, a telescopic tube 802 and a filling tray 803. The filling block 801 is provided at the bottom of the metering tube 704, and the bottom surface of the filling block 801 is provided with a telescopic tube 802. A filling tray 803 is provided at one end of the telescopic tube 802. When in use, the telescopic tube 802 is installed on one side of the circuit block 603 through the filling block 801, and the capsule is filled by extending and lowering the telescopic tube 802, and the capsule is filled through the filling tray 803.
[0028] When working, first, install the collection chamber through the collection block 201, collect the powder into the collection chamber through the collection circular hole 202, place the components through the installation slot 203, observe the situation in the collection chamber through the collection slot 204, clean the powder through the inspection door frame 205 and inspect the machine, prevent the powder from flying out through the tempered glass slot 206 when the machine is working, control the opening and closing of the inspection door frame 205 through the collection door hinge 207, and close and fix the inspection door frame 205 through the collection bolt 208. 5. A rotating shaft 305 is provided at the bottom of the rotating fan blade 304. An integrated mounting block 306 is provided at the bottom of the rotating shaft 305. A connecting column 307 is provided on one side of the integrated mounting block 306. A motor 308 is provided at one end of the connecting column 307. A baffle 401 is used to block the machine when it is working to prevent powder from splashing. Materials are placed through the discharge door 402. The discharge door 402 is opened and closed by rotating the enclosure hinge 403. The discharge door 402 is closed and fixed by the enclosure bolt 404.
[0029] Then, the entire filling device is supported by the support column 501, the filling device is fixed by the fixing block 502, the fixing bolt 503 is fixed by the fixing block 502, the powder storage block 602 is supported and installed by the control installation block 601, the powder to be filled is stored by the powder storage block 602, other components are installed by the circuit block 603, the powder to be filled is pumped by the pumping pump 604, the powder is transported to the filling structure by the conveying pipe 605, the device is controlled to work by the working installation block 701, the control circuit is transported by the processing electric pipe 702, the powder is transported by the discharge hopper 703, the powder discharge is quantitatively controlled by the quantitative tube 704, the telescopic tube 802 is installed on one side of the circuit block 603 by the filling block 801, the capsule is filled by extending and lowering the telescopic tube 802, and the capsule is filled by the filling tray 803.
[0030] Through the above steps, the main body bottom plate 1 bears the weight, the storage component stores waste, the plate placement slot 302 is installed on the surface of the collection block 201 through the plate placement block 301, the capsule plate is limited and fixed by setting the plate placement slot 302, the collecting grid 303 collects the powder, the rotating fan blade 304 rotates and collects the powder, the integrated mounting block 306 is connected through the rotating shaft 305, the integrated circuit is installed through the integrated mounting block 306, the motor 308 is connected through the connecting column 307, the rotating fan blade 304 is controlled to rotate by rotating the motor 308, the waste generated when the machine is working is blocked by the blocking component to prevent the waste from splashing, the whole device is supported by the supporting component, the powder is transported by the conveying component, the powder is limitedly filled by the blanking component, and the capsule is filled with powder by the filling component.
[0031] The embodiments of the present invention are described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Various changes can be made within the scope of knowledge possessed by those skilled in the art without departing from the purpose of the present invention.
Claims
1. A quantitative capsule filling device, comprising a main body bottom plate (1); characterized in that: The invention also includes a storage component, a plate placement block (301), a plate placement groove (302), a collecting grille (303), a rotating blade (304), a rotating shaft (305), an integrated mounting block (306), a connecting column (307), a motor (308), a blocking component, a supporting component, a conveying component, a blanking component and a filling component. The top surface of the main body bottom plate (1) is provided with a storage component, the surface of the storage component is provided with a plate placement block (301), the surface of the plate placement block (301) is provided with a plate placement groove (302), the interior of the plate placement groove (302) is provided with a collecting grille (303), the interior of the collecting grille (303) is provided with a rotating blade (304), the top surface of the storage component is provided with a blocking component, the bottom surface of the main body bottom plate (1) is provided with a supporting component at equal intervals, one side of the storage component is provided with a conveying component, one side of the conveying component is provided with a blanking component, and the bottom of the blanking component is provided with a filling component.
2. The capsule quantitative filling device according to claim 1, characterized in that: The storage assembly comprises a collection block (201), a collection circular hole (202), a mounting slot (203), a collection slot (204), an inspection door frame (205), a tempered glass slot (206), a collection door hinge (207) and a collection bolt (208). The top surface of the main body bottom plate (1) is provided with the collection block (201), the surface of the collection block (201) is provided with a collection circular hole (202), the middle of the collection block (201) is provided with a mounting slot (203), one side of the collection block (201) is provided with a collection slot (204), the surface of the collection slot (204) is provided with an inspection door frame (205), the interior of the inspection door frame (205) is provided with a tempered glass slot (206), one side of the inspection door frame (205) is provided with a collection door hinge (207), and one side of the inspection door frame (205) is provided with a collection bolt (208).
3. The capsule quantitative filling device according to claim 2, characterized in that: A rotating shaft (305) is provided at the bottom of the rotating blade (304), an integrated mounting block (306) is provided at the bottom of the rotating shaft (305), a connecting column (307) is provided on one side of the integrated mounting block (306), and a motor (308) is provided at one end of the connecting column (307).
4. The capsule quantitative filling device according to claim 3, characterized in that: The barrier assembly comprises a baffle (401), a discharge door (402), a barrier hinge (403) and a barrier bolt (404); the baffle (401) is provided on the top surface of the collecting block (201); the discharge door (402) is provided on one side of the baffle (401); the surface of the discharge door (402) is provided with a barrier hinge (403); and the one side of the discharge door (402) is provided with a barrier bolt (404).
5. The capsule quantitative filling device according to claim 4, characterized in that: The support assembly comprises a support column (501), a fixing block (502) and a fixing bolt (503); the support columns (501) are equidistantly arranged on the bottom surface of the main body bottom plate (1); the fixing block (502) is arranged on the bottom surface of the support column (501); and the fixing bolt (503) is arranged on the surface of the fixing block (502).
6. The capsule quantitative filling device according to claim 4, characterized in that: The conveying assembly comprises a control installation block (601), a powder storage block (602), a circuit block (603), a pumping pump (604) and a conveying pipe (605). The control installation block (601) is provided on one side of the main body bottom plate (1), the powder storage block (602) is provided on the top surface of the control installation block (601), the circuit block (603) is provided on one side of the powder storage block (602), the pumping pump (604) is provided on the top of the powder storage block (602), and the conveying pipe (605) is provided inside the pumping pump (604).
7. The capsule quantitative filling device according to claim 6, characterized in that: The blanking assembly comprises a working mounting block (701), a processing electric pipe (702), a blanking hopper (703) and a quantitative pipe (704). The working mounting block (701) is provided at the top of the circuit block (603), the processing electric pipe (702) is provided at the top of the working mounting block (701), one end of the processing electric pipe (702) is connected to the blanking hopper (703), and the quantitative pipe (704) is provided at the bottom of the blanking hopper (703).
8. The capsule quantitative filling device according to claim 6, characterized in that: The filling assembly comprises a filling block (801), a telescopic tube (802) and a filling tray (803). The filling block (801) is arranged at the bottom of the quantitative tube (704), the telescopic tube (802) is arranged on the bottom surface of the filling block (801), and the filling tray (803) is arranged at one end of the telescopic tube (802).