Novel automatic medicine packaging device
By designing a fixing mechanism in the automatic drug packaging device, the second motor drives the turntable and the connecting rod to drive the arc-shaped card plate to move relative to each other, firmly fixing the drug bottle, solving the problem of moving or tilting during the packaging process, and improving the accuracy and efficiency of drug packaging.
Patent Information
- Application Number
- CN202422076147.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-27
- Publication Date
- 2025-06-13
- Estimated Expiration
- 2034-08-27
AI Technical Summary
Existing drug packaging devices cannot effectively fix the drug bottle, resulting in the possibility of moving or tilting of the drug bottle during the packaging process, affecting the accurate filling and packaging quality of the drug.
A new type of drug automatic packaging device is designed, and a fixing mechanism is adopted, including a second motor, a turntable, a connecting rod, a fixing rod, a moving block, a connecting plate and a curved card plate. Through the relative movement of these components, a firm fixation of the drug bottle is achieved.
Ensure the position of the bottle is stable during the packaging process, prevent movement or tilt, improve operating accuracy, ensure accurate loading of drugs, avoid overflow or insufficient filling of drugs, and improve the efficiency and quality of drug packaging.
Smart Images

Figure CN222973757U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a packaging device, in particular to a novel automatic drug packaging device. Background Art
[0002] A drug is a chemical substance or biological product used for preventing, diagnosing, treating or alleviating diseases. They can be natural, semi-synthetic or synthetic, have biological activity and can affect the function or structure of the body. Drugs can exist in various forms, including tablets, capsules, liquids, powders, injections and patches, etc. After drug production is completed, a packaging device is needed to load the drugs into appropriate packaging containers to prevent the drugs from being exposed to air, moisture, light or other environmental factors, thereby prolonging the shelf life of the drugs.
[0003] When the existing packaging device packages drugs, first, the drugs to be packaged are put into a medicine storage tank. Next, an empty medicine filling bottle is placed on the upper part of the packaging table. Then, the drugs are injected into the medicine bottle from the medicine storage tank through a filling port.
[0004] Although this packaging device can complete the drug packaging process, when an empty medicine filling bottle is placed on the upper part of the packaging table, the device cannot effectively fix the medicine bottle. Due to the lack of fixation, the medicine bottle may move or tilt during the packaging process due to vibration, mechanical operation or the action of gravity. This movement or tilt will cause the medicine bottle to deviate from the predetermined position, thus affecting the accurate filling of the drugs, possibly resulting in drug spillage, insufficient filling or poor sealing, and ultimately affecting the packaging quality and production efficiency of the drugs. Summary of the Invention
[0005] In order to make up for the above deficiencies, the utility model provides a novel automatic drug packaging device, aiming to improve the problem in the prior art that when an empty medicine filling bottle is placed on the upper part of the packaging table, the device cannot effectively fix the medicine bottle, and due to the lack of fixation, the medicine bottle may move or tilt during the packaging process due to vibration, mechanical operation or the action of gravity.
[0006] To achieve the above object, the utility model provides the following technical solutions:
[0007] A new type of automatic drug encapsulation device, comprising: an encapsulation table, which is a basic installation component for the overall encapsulation device. A fixing frame is fixedly connected to the upper part of the encapsulation table, and a medicine storage box is fixedly connected to the middle of the fixing frame. A medicine inlet pipe is fixedly connected to the left side of the outside of the medicine storage box; A fixing mechanism for fixing the medicine bottle is arranged inside the encapsulation table. The fixing mechanism includes a second motor, and the output end of the second motor is fixedly connected to a turntable. One ends of two connecting rods are rotatably connected to both sides of the outside of the turntable, and the other ends of the two connecting rods are fixedly connected to fixing rods. Fixing blocks are fixedly connected to the tops of the two fixing rods, connecting plates are fixedly connected to the upper parts of the two fixing blocks, and arc-shaped clamping plates are fixedly connected to the outside of the two connecting plates; A quantitative mechanism is arranged outside the medicine storage box.
[0008] Furthermore, a fixing ring is fixedly connected inside the encapsulation table, and the second motor is fixedly connected inside the fixing ring.
[0009] Furthermore, the quantitative mechanism includes a first motor, the output end of the first motor is fixedly connected to a driving wheel, a driven wheel is arranged below the driving wheel, the driving wheel is connected to the driven wheel through a belt, a rotating rod is fixedly connected inside the driving wheel, the rotating rod is rotatably connected inside the medicine storage box, stirring rods are fixedly connected to the peripheries of the outside of the rotating rod, a transmission rod is fixedly connected inside the driven wheel, the transmission rod is rotatably connected inside the medicine storage box, a quantitative roller is fixedly connected to the outside of the transmission rod, the quantitative roller is rotatably connected inside the medicine storage box, and quantitative grooves are opened in the peripheries of the inside of the quantitative roller.
[0010] Furthermore, guide rods are fixedly connected to both sides of the upper part of the encapsulation table, and the two moving blocks are slidably connected to the outside of the two guide rods.
[0011] Furthermore, through holes are opened on both sides inside the encapsulation table, and the two fixing rods are slidably connected to the inside of the two through holes.
[0012] Furthermore, protective pads are arranged inside the two arc-shaped clamping plates, and the two protective pads are made of rubber material.
[0013] Furthermore, an encapsulation port is fixedly connected to the bottom of the medicine storage box, a cabinet door is installed on the front side of the outside of the encapsulation table, and a handle is fixedly connected to the outside of the cabinet door.
[0014] Furthermore, an installation ring is fixedly connected to the right side of the outside of the medicine storage box, and the first motor is fixedly connected inside the installation ring.
[0015] The utility model has the following beneficial effects:
[0016] In the present utility model, during drug encapsulation, first place the medicine bottle in the upper middle part of the encapsulation table, and then start the second motor. The motor drives the turntable to rotate, and the turntable drives the fixed rod to move relatively in the through hole through the connecting rod. The fixed rod drives the moving block and the connecting plate, causing the arc-shaped clamping plate to move relatively, and finally fixing the medicine bottle. This design ensures the stable position of the medicine bottle during the encapsulation process, prevents movement or tilting, improves the operation accuracy, ensures the accurate filling of the medicine, and avoids medicine waste or poor packaging.
[0017] In the present utility model, during drug encapsulation, start the first motor to drive the driving wheel, drive the driven wheel and the transmission rod through the belt, make the metering roller rotate, and load the medicine in the metering groove into the medicine bottle through the encapsulation port. At the same time, the driving wheel also drives the rotating rod and the stirring rod to stir the powdery medicine in the medicine storage box to prevent caking. This design realizes the quantitative encapsulation of the medicine and ensures the uniform drug composition, guaranteeing the drug efficacy. Description of the Drawings
[0018] Figure 1 It is a three-dimensional view of a novel automatic drug encapsulation device proposed by the present utility model.
[0019] Figure 2 It is a schematic diagram of the external structure of the fixing frame of a novel automatic drug encapsulation device proposed by the present utility model.
[0020] Figure 3 It is a schematic diagram of the internal structure of the medicine storage box of a novel automatic drug encapsulation device proposed by the present utility model.
[0021] Figure 4 It is a schematic diagram of the internal structure of the encapsulation table of a novel automatic drug encapsulation device proposed by the present utility model.
[0022] In the figure, 1. Encapsulation table; 2. Fixing frame; 3. Medicine storage box; 4. Medicine inlet pipe; 5. Cabinet door; 6. Installation ring; 7. Metering mechanism; 701. First motor; 702. Driving wheel; 703. Belt; 704. Driven wheel; 705. Rotating rod; 706. Stirring rod; 707. Transmission rod; 708. Metering roller; 709. Metering groove; 8. Encapsulation port; 9. Fixed ring; 10. Fixing mechanism; 1001. Second motor; 1002. Turntable; 1003. Connecting rod; 1004. Fixed rod; 1005. Moving block; 1006. Connecting plate; 1007. Arc-shaped clamping plate; 11. Guide rod; 12. Protective pad; 13. Through hole. Detailed Implementation Manner
[0023] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0024] As Figure 1 and Figure 2 shown, an embodiment provided by the present invention: a new type of automatic drug packaging device, including: a packaging table 1, which is a basic installation component for the overall packaging device. A fixed frame 2 is fixedly connected to the upper part of the packaging table 1. A medicine storage box 3 is fixedly connected to the middle of the fixed frame 2. A medicine inlet pipe 4 is fixedly connected to the left side of the outside of the medicine storage box 3. A packaging port 8 is fixedly connected to the bottom of the medicine storage box 3. A cabinet door 5 is installed on the front side of the outside of the packaging table 1, and a handle is fixedly connected to the outside of the cabinet door 5; By setting the packaging table 1, it is convenient to package the medicine. By setting the medicine storage box 3, it is convenient to store the medicine. By setting the medicine inlet pipe 4, it is convenient to transport the medicine to be packaged into the inside of the medicine storage box 3. By setting the packaging port 8, it is convenient for the medicine to be discharged.
[0025] As Figure 4 shown, a fixing mechanism 10 is arranged inside the packaging table 1 and is used for fixing the medicine bottle. The fixing mechanism 10 includes a second motor 1001. The output end of the second motor 1001 is fixedly connected to a turntable 1002. One ends of two connecting rods 1003 are rotatably connected to both sides of the outside of the turntable 1002. The other ends of the two connecting rods 1003 are fixedly connected to fixing rods 1004. The tops of the two fixing rods 1004 are fixedly connected to moving blocks 1005. Connecting plates 1006 are fixedly connected to the upper parts of the two moving blocks 1005. Arc-shaped clamping plates 1007 are fixedly connected to the outside of the two connecting plates 1006. A fixing ring 9 is fixedly connected inside the packaging table 1. The second motor 1001 is fixedly connected inside the fixing ring 9. Guide rods 11 are fixedly connected to both sides of the upper part of the packaging table 1. The two moving blocks 1005 are slidably connected to the outside of the two guide rods 11. Through holes 13 are opened on both sides inside the packaging table 1. The two fixing rods 1004 are slidably connected to the inside of the two through holes 13. Protective pads 12 are arranged inside the two arc-shaped clamping plates 1007. The materials of the two protective pads 12 are rubber materials;
[0026] When encapsulating the medicine, first, place the medicine bottle in the upper middle position of the encapsulation table 1. Next, start the second motor 1001, and the second motor 1001 starts to operate, driving the turntable 1002 fixed to its output end to rotate. As the turntable 1002 rotates, the connecting rods 1003 connected to both sides of its outside also rotate accordingly. At the other end of the connecting rod 1003, two fixed rods 1004 are fixed, and these two fixed rods 1004 are installed inside the two through holes 13 of the encapsulation table 1. As the turntable 1002 rotates, the connecting rod 1003 drives the fixed rod 1004 to move relatively inside the through hole 13. This movement simultaneously drives the two moving blocks 1005 fixed to the top of the fixed rod 1004 to move relatively. During the relative movement of the moving blocks 1005, the connecting plate 1006 connected to their outside moves accordingly, thereby driving the two arc-shaped clamping plates 1007 fixed to the outside of the connecting plate 1006 to move relatively closer or farther away. When the two arc-shaped clamping plates 1007 move relatively inward, they will firmly clamp the medicine bottle, realizing the fixation of the medicine bottle, ensuring the stable position of the medicine bottle during the encapsulation process, and preventing it from moving or tilting due to the vibration of the equipment or the mechanical action during the operation process. Secondly, by fixing the medicine bottle, the position of the medicine bottle during the encapsulation process is accurate, enabling the medicine to be precisely filled into the bottle, avoiding the situation of medicine overflow or insufficient injection. This not only improves the efficiency of medicine encapsulation but also ensures the dose consistency of each bottle of medicine, meeting the requirements of quality control. The materials of the two protective pads 12 are rubber materials. The rubber materials have good softness and buffering effects. When the arc-shaped clamping plates 1007 clamp the medicine bottle, the rubber protective pads 12 can effectively disperse the pressure, preventing scratches, cracks or even breakage on the surface of the medicine bottle due to excessive clamping force.
[0027] As Figure 3 shown, the metering mechanism 7 is arranged outside the medicine storage box 3 and is used for the operation of quantitatively encapsulating the medicine. The metering mechanism 7 includes a first motor 701. The output end of the first motor 701 is fixedly connected with a driving wheel 702. A driven wheel 704 is arranged below the driving wheel 702. The driving wheel 702 is connected to the driven wheel 704 through a belt 703. A rotating rod 705 is fixedly connected inside the driving wheel 702. The rotating rod 705 is rotatably connected inside the medicine storage box 3. Stirring rods 706 are fixedly connected to the periphery of the rotating rod 705. A transmission rod 707 is fixedly connected inside the driven wheel 704. The transmission rod 707 is rotatably connected inside the medicine storage box 3. A metering roller 708 is fixedly connected to the outside of the transmission rod 707. The metering roller 708 is rotatably connected inside the medicine storage box 3. Quantitative grooves 709 are opened in the periphery of the inside of the metering roller 708. An installation ring 6 is fixedly connected to the right side outside the medicine storage box 3. The first motor 701 is fixedly connected inside the installation ring 6.
[0028] When encapsulating the medicine, by starting the first motor 701, the first motor 701 drives the driving wheel 702 fixed to its output end to start rotating. The rotation of the driving wheel 702 transmits power through the connected belt 703, driving the driven wheel 704 connected to it to rotate synchronously. During the rotation of the driven wheel 704, it further drives the transmission rod 707 fixed inside to rotate. The rotation of the transmission rod 707 directly drives the quantitative roller 708 fixed outside to rotate synchronously. The rotation of the quantitative roller 708 enables the medicine pre-stored in the quantitative groove 709 to accurately pass through the encapsulation port 8 and enter the inside of the medicine bottle. This process ensures that the medicine dosage for each encapsulation is strictly controlled and consistent, thus effectively guaranteeing the accuracy of the medicine dosage. At the same time, during the rotation of the driving wheel 702, it also drives the rotating rod 705 fixed inside to rotate synchronously inside the medicine storage box 3. The rotation of the rotating rod 705 drives the stirring rods 706 fixed around it to perform continuous stirring movements. The rotating and stirring action of the stirring rods 706 can effectively prevent the powdery medicine inside the medicine storage box 3 from caking or precipitating. Through this design, during the medicine encapsulation, not only is accurate quantitative encapsulation achieved, but also the medicine components inside the medicine storage box 3 are ensured to be uniform and consistent. The continuous stirring action of the stirring rods 706 can ensure that the powdery medicine inside the medicine storage box 3 is in a good flowing state, avoiding caking problems caused by long-term storage of the medicine or external influences. This stirring function is crucial for maintaining the uniformity of the medicine, ensuring that the component ratio of the medicine is consistent during each quantitative encapsulation.
[0029] The working principle of the present utility model is as follows: When encapsulating drugs, first, place the medicine bottle in the upper middle part of the encapsulation table 1. Then, start the second motor 1001. The second motor 1001 drives the turntable 1002 fixed to its output end to rotate. The rotation of the turntable 1002 drives the connecting rods 1003 rotatably connected to both sides of the outside to rotate. The rotation of the two connecting rods 1003 drives the two fixing rods 1004 fixed to the other ends to move relatively inside the two through holes 13. When the two fixing rods 1004 move, they drive the two moving blocks 1005 fixed to the top to move relatively. The relative movement of the two moving blocks 1005 drives the two arc-shaped clamping plates 1007 fixed to the outside of the two connecting plates 1006 to move relatively. The medicine bottle can be fixed by the relative movement of the two arc-shaped clamping plates 1007. When encapsulating drugs, it is convenient to fix the medicine bottle. Fixing the medicine bottle can ensure the position of the medicine bottle remains stable during the encapsulation process, prevent the bottle from moving or tilting, which helps to improve the operation accuracy of the encapsulation equipment, ensure the accurate filling of drugs, and avoid drug waste or poor packaging caused by the displacement of the bottle. Then, when encapsulating drugs, start the first motor 701. The first motor 701 drives the driving wheel 702 fixed to its output end to rotate. The rotation of the driving wheel 702 drives the driven wheel 704 to rotate through the belt 703. When the driven wheel 704 rotates, it drives the transmission rod 707 fixed inside to rotate. The rotation of the transmission rod 707 drives the metering roller 708 fixed to the outside to rotate. The drugs stored in the metering groove 709 can be filled into the medicine bottle through the encapsulation port 8 by the rotation of the metering roller 708. At the same time, when the driving wheel 702 rotates, it drives the rotating rod 705 fixed inside to rotate inside the medicine storage box 3. When the rotating rod 705 rotates, it drives the stirring rods 706 fixed around the outside to rotate. Through the rotation of the stirring rods 706, the problem of caking of the powdery drugs inside the medicine storage box 3 can be avoided. When encapsulating drugs, it is possible to perform quantitative encapsulation of drugs and facilitate the stirring of the powdery drugs stored inside the medicine storage box 3, ensuring that the composition ratio of the drugs is consistent each time of encapsulation, thereby ensuring the efficacy of the drugs.
Claims
1. A novel automatic drug packaging device, characterized in that: include: A packaging platform (1) is used as a basic installation component for an overall packaging device, wherein a fixing frame (2) is fixedly connected to the upper part of the packaging platform (1), a medicine storage box (3) is fixedly connected to the middle part of the fixing frame (2), and a medicine inlet pipeline (4) is fixedly connected to the left side of the outside of the medicine storage box (3); a fixing mechanism (10) for fixing medicine bottles is arranged inside the packaging platform (1), and the fixing mechanism (10) comprises a second motor (1001), and a rotating disk (1002) is fixedly connected to the output end of the second motor (1001), and the rotating disk ( 1002) are rotatably connected to one end of a connecting rod (1003) on both sides of the outside, the other ends of the two connecting rods (1003) are fixedly connected to a fixing rod (1004), the tops of the two fixing rods (1004) are fixedly connected to a moving block (1005), the upper parts of the two moving blocks (1005) are fixedly connected to a connecting plate (1006), and the outsides of the two connecting plates (1006) are fixedly connected to an arc-shaped clamping plate (1007); the quantitative mechanism (7) is arranged on the outside of the medicine storage box (3).
2. A novel automatic drug packaging device according to claim 1, characterized in that: A fixing ring (9) is fixedly connected inside the packaging platform (1), and the second motor (1001) is fixedly connected inside the fixing ring (9).
3. A novel automatic drug packaging device according to claim 1, characterized in that: The quantitative mechanism (7) comprises a first motor (701), the output end of the first motor (701) is fixedly connected to a driving wheel (702), a driven wheel (704) is arranged at the lower part of the driving wheel (702), the driving wheel (702) is connected to the driven wheel (704) via a belt (703), a rotating rod (705) is fixedly connected inside the driving wheel (702), the rotating rod (705) is rotatably connected to the inside of the medicine storage box (3), stirring rods (706) are fixedly connected to the outside of the rotating rod (705), a transmission rod (707) is fixedly connected inside the driven wheel (704), the transmission rod (707) is rotatably connected to the inside of the medicine storage box (3), a quantitative roller (708) is fixedly connected to the outside of the transmission rod (707), the quantitative roller (708) is rotatably connected to the inside of the medicine storage box (3), and quantitative grooves (709) are arranged around the inside of the quantitative roller (708).
4. A novel automatic drug packaging device according to claim 1 or 2, characterized in that: Both sides of the upper part of the packaging platform (1) are fixedly connected to guide rods (11), and the two moving blocks (1005) are slidably connected to the outside of the two guide rods (11).
5. A novel automatic drug packaging device according to claim 4, characterized in that: Through holes (13) are provided on both sides of the packaging platform (1), and two fixing rods (1004) are slidably connected inside the two through holes (13).
6. A novel automatic drug packaging device according to claim 1, characterized in that: Protection pads (12) are arranged inside the two arc-shaped clamping plates (1007), and the two protection pads (12) are made of rubber material.
7. A novel automatic drug packaging device according to claim 1, characterized in that: The bottom of the medicine storage box (3) is fixedly connected to a sealing opening (8), a cabinet door (5) is installed on the front side of the outside of the sealing platform (1), and a handle is fixedly connected to the outside of the cabinet door (5).
8. A novel automatic drug packaging device according to claim 1 or 7, characterized in that: A mounting ring (6) is fixedly connected to the right side of the exterior of the medicine storage box (3), and the first motor (701) is fixedly connected to the interior of the mounting ring (6).