Solid medicine counting machine
Through a simplified structure solid-state drug counter, the use of buffers and counters to control the inflow of drugs is solved, and the problems of complexity and high cost of existing equipment are achieved, and low-cost and high-durability drug counting is achieved.
Patent Information
- Application Number
- CN202422515985.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-17
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-10-17
AI Technical Summary
The existing solid-state drug counters have complex structures and high cost and insufficient durability.
A solid-state drug counter is designed including a body, a charging mechanism, a conveying mechanism, a discharge mechanism and a counter. The buffer is used to slow down the speed of drugs falling into the packaging bottle or a storage tank, and the amount of drugs is recorded in real time through the counter, and the barrier plate controls the inflow of drugs.
Simplifies the structure, reduces cost and improves the durability and counting accuracy of the equipment.
Smart Images

Figure CN223132565U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of pharmaceutical manufacturing, and particularly relates to a solid pharmaceutical counting machine. Background Art
[0002] A solid pharmaceutical counting machine is an important device in the pharmaceutical manufacturing process, and its main function is to convey solid pharmaceuticals into a packaging bottle or a medicine storage tank according to a specified quantity.
[0003] However, the structure of the existing solid pharmaceutical counting machine is usually relatively complex, the manufacturing cost is relatively high, and the durability is slightly insufficient. Therefore, it is particularly important to develop a solid pharmaceutical counting machine with a simple structure, low cost and easy to manufacture. Content of the Utility Model
[0004] To solve the defects in the prior art, the solid pharmaceutical counting machine provided by the utility model mainly includes a machine body, a loading mechanism, a conveying mechanism, a blanking mechanism and a counter. During use, the pre-prepared solid pharmaceuticals are poured into the loading mechanism; then, the solid pharmaceuticals can flow from the discharge end of the loading mechanism into the conveying mechanism; next, the conveying mechanism is started, and the solid pharmaceuticals on the conveying mechanism are always in a rotating and vibrating state; during this process, the solid pharmaceuticals gradually flow from the discharge port of the conveying mechanism into the blanking mechanism; finally, the solid pharmaceuticals fall into a packaging bottle or a medicine storage tank; before the solid pharmaceuticals fall from the blanking port of the blanking mechanism into the packaging bottle or the medicine storage tank, the solid pharmaceuticals generally touch a buffer arranged at the blanking port, which can slow down the speed of the solid pharmaceuticals falling into the packaging bottle or the medicine storage tank, and can also prevent the solid pharmaceuticals from popping out of the packaging bottle or the medicine storage tank; and, during the whole process, the counter on the blanking mechanism can record the number of solid pharmaceuticals flowing into the blanking mechanism in real time, and when the number reaches a preset value, the first baffle on the conveying mechanism will block the solid pharmaceuticals from flowing into the blanking mechanism. The utility model simplifies the corresponding structure compared with the prior art, thereby reducing the manufacturing cost.
[0005] To achieve the above object, the utility model provides the following technical solutions:
[0006] A solid pharmaceutical counting machine, comprising:
[0007] A machine body;
[0008] A loading mechanism, arranged at the top of the machine body, and the loading mechanism is provided with a feeding end and a discharge end;
[0009] A conveying mechanism, used for carrying and conveying the solid pharmaceuticals flowing out of the loading mechanism, the conveying mechanism is arranged at the top of the machine body, and the conveying mechanism is located on one side of the loading mechanism, the conveying mechanism is provided with a discharge port, and a first baffle is arranged near the discharge port;
[0010] A blanking mechanism, which is arranged on one side of the machine body. The feed inlet of the blanking mechanism is located in the downstream direction of the discharge port, and the blanking mechanism is communicated with the conveying mechanism.
[0011] A counter, which is arranged at a position close to the feed inlet of the blanking mechanism.
[0012] Among them,
[0013] A buffer is arranged at the discharge port of the blanking mechanism.
[0014] Further, the counter is a photoelectric counting sensor.
[0015] Further, the loading mechanism includes:
[0016] A first connection block, which is arranged at the top of the machine body. The first connection block is provided with a cavity, and holes communicating with the cavity are respectively arranged at the top of the first connection block and on one side of the first connection block close to the conveying mechanism.
[0017] A loading hopper, which is arranged at the position of the hole opened at the top of the first connection block; a first feeding trough, which is used to send the solid medicine in the loading hopper into the conveying mechanism. The first feeding trough is obliquely arranged at the position of the cavity, and the height of the end of the first feeding trough close to the conveying mechanism is lower than that of the other end.
[0018] Further, the solid medicine counting machine further includes:
[0019] A first connection frame;
[0020] One end of the first connection frame is connected to the outer wall surface of the loading hopper, and the other end of the first connection frame is connected to the machine body.
[0021] Further, the conveying mechanism includes:
[0022] A turntable, which is used to carry the solid medicine flowing out of the loading mechanism. The turntable is arranged between the discharge end of the first feeding trough and the top of the machine body;
[0023] A rotating column, which is used to drive the turntable to rotate. The rotating column is arranged on the turntable and is arranged close to the center position of the turntable;
[0024] A motor, which is arranged above the top of the machine body. The working end of the motor is connected to one end of the rotating column;
[0025] A turntable guardrail, which is arranged above the turntable and does not contact the turntable;
[0026] A fixing block is used to stabilize the position of the turntable guardrail. The fixing block is arranged on the outer peripheral surface of the turntable guardrail, and one end of the fixing block is connected to the top end of the machine body.
[0027] Further, the discharge port is arranged on the turntable guardrail;
[0028] The first baffle is arranged on the turntable guardrail.
[0029] Further, the conveying mechanism further includes:
[0030] A second connecting frame is used to stabilize the position of the motor;
[0031] One end of the second connecting frame is connected to the motor, and the other end of the second connecting frame is connected to the machine body.
[0032] Further, the blanking mechanism includes:
[0033] A third connecting block is arranged on one side of the machine body close to the discharge port;
[0034] A blanking hopper is used to accurately feed the solid medicine on the conveying mechanism into a medicine storage container. The blanking hopper is arranged on the third connecting block.
[0035] Further, the solid medicine counting machine further includes:
[0036] A second connecting block is arranged at the top end of the machine body, and the second connecting block is located between the blanking mechanism and the discharge port;
[0037] A second feeding chute is used to slow down the speed of the solid medicine falling from the conveying mechanism into the blanking mechanism. The second feeding chute is obliquely arranged on the second connecting block, and the height of the end of the second feeding chute close to the discharge port is greater than the height of the other end;
[0038] A second baffle is used to block the solid medicine on the second feeding chute from flowing into the blanking mechanism. The second baffle is arranged on one side of the medicine discharge port of the second feeding chute.
[0039] Further, the solid medicine counting machine further includes:
[0040] A control panel is used to monitor and control the components in the solid medicine counting machine;
[0041] The control panel is arranged on one side of the machine body, and the control panel is arranged at an interval from the blanking mechanism.
[0042] The beneficial effects of the present utility model are:
[0043] The solid drug counter provided by the present utility model mainly includes a machine body, a loading mechanism, a conveying mechanism, a blanking mechanism, a counter and a buffer. The loading mechanism is arranged at the top of the machine body, and the loading mechanism is provided with a feeding end and a discharging end; the conveying mechanism is arranged at the top of the machine body, and the conveying mechanism is located on one side of the loading mechanism. A discharge port is arranged on the conveying mechanism, and a first baffle is arranged near the discharge port; the blanking mechanism is arranged on one side of the machine body, the feeding port of the blanking mechanism is located downstream of the discharge port, and the blanking mechanism is communicated with the conveying mechanism; the counter is arranged near the feeding port of the blanking mechanism; a buffer is arranged at the discharging port of the blanking mechanism. Compared with the prior art, the present utility model simplifies the corresponding structure, thereby reducing the manufacturing cost. BRIEF DESCRIPTION OF THE DRAWINGS
[0044] Figure 1 is a schematic diagram of the overall structure of the present utility model;
[0045] Figure 2 is a partially enlarged schematic diagram of the conveying mechanism and the auxiliary conveying mechanism of the present utility model;
[0046] Figure 3 For the present utility model Figure 2 is a schematic diagram of the state where the first baffle blocks the discharge port and the second baffle blocks the second feeding groove.
[0047] REFERENCE NUMERALS:
[0048] 1, machine body;
[0049] 2, loading mechanism; 21, first connecting block; 211, cavity; 22, loading hopper; 23, first feeding groove; 24, first connecting frame;
[0050] 3, conveying mechanism; 31, turntable; 32, rotating column; 33, motor; 34, second connecting frame; 351, turntable guardrail; 352, fixed block; 353, discharge port; 354, first baffle;
[0051] 4, auxiliary conveying mechanism; 41, second connecting block; 42, second feeding groove; 43, second baffle;
[0052] 5, blanking mechanism; 51, third connecting block; 52, blanking hopper; 53, buffer;
[0053] 6, counter;
[0054] 7, bearing platform;
[0055] 8, medicine storage bottle;
[0056] 9, control panel. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0057] Embodiments of the present utility model will be described in detail below. Examples of the embodiments are shown in the accompanying drawings, where the same or similar reference numerals represent the same or similar elements or elements with the same or similar functions throughout. The embodiments described below by referring to the accompanying drawings are exemplary and are only used to explain the present utility model and should not be construed as a limitation to the present utility model.
[0058] Embodiment 1
[0059] As shown in the attached Figure 1 and the attached Figure 2 figures, the present utility model discloses a solid medicine counting machine for assisting in packaging solid medicines, which mainly includes: a machine body 1, a feeding mechanism 2, a conveying mechanism 3, a blanking mechanism 5, a counter 6, and a buffer 53. When in use, the pre-prepared solid medicines are poured into the feeding mechanism 2; then, the solid medicines can flow from the discharge port of the feeding mechanism 2 into the conveying mechanism 3; next, the conveying mechanism 3 is started, and the solid medicines on the conveying mechanism 3 are constantly kept in a rotating and vibrating state; during this process, the solid medicines gradually flow from the discharge port 353 of the conveying mechanism 3 into the blanking mechanism 5; finally, the solid medicines fall into a packaging bottle or a medicine storage tank; before the solid medicines fall from the blanking port of the blanking mechanism 5 into the packaging bottle or the medicine storage tank, the solid medicines generally touch the buffer 53 provided at the blanking port, which can slow down the speed of the solid medicines falling into the packaging bottle or the medicine storage tank and can also prevent the solid medicines from popping out of the packaging bottle or the medicine storage tank; and, during the whole process, the counter 6 on the blanking mechanism 5 can record in real time the number of solid medicines flowing into the blanking mechanism 5. When the number reaches a preset value, the first baffle on the conveying mechanism 3 will block the solid medicines from flowing into the blanking mechanism 5, and the packaging bottle or the medicine storage tank is removed; then, another empty packaging bottle or medicine storage tank is placed at the bottom of the blanking port, the value recorded by the counter 6 is reset to zero, and the solid medicine counting machine controls the first baffle to return to the initial position, so that the solid medicines on the conveying mechanism 3 can continue to flow into the blanking mechanism 5, and the counter 6 continues to count, repeating the above process, so as to achieve the purpose of assisting in packaging solid medicines.
[0060] The structure of the solid drug counting machine is specifically described as follows: There is a machine body 1 at its lower side. At the top of the machine body 1, there is a loading mechanism 2 which is provided with a feeding end and a discharging end; at the top of the machine body 1, there is also a conveying mechanism 3, and the conveying mechanism 3 is located on one side of the loading mechanism 2. There is a discharging port 353 on the conveying mechanism 3, and a first baffle 354 is arranged near the discharging port 353; on one side of the machine body 1, there is a blanking mechanism 5, and the feeding port of the blanking mechanism 5 is located in the downstream direction of the discharging port 353, and the blanking mechanism 5 is communicated with the conveying mechanism 3; a counter 6 is arranged near the feeding port of the blanking mechanism 5; a buffer 53 is arranged at the discharging port of the blanking mechanism 5. Compared with the prior art, the corresponding structure of the present utility model is simplified, thereby reducing the manufacturing cost.
[0061] In a specific application scenario, the loading mechanism 2 arranged at the top of the machine body 1 includes components such as a first connecting block 21, a loading hopper 22, and a first feeding chute 23. As shown in the attached Figure 1 figure, the first connecting block 21 is arranged on the left side of the top of the machine body 1, and a cavity 211 is opened inside the first connecting block 21. Holes communicating with the cavity 211 are opened at the top and the right side of the first connecting block 21; a loading hopper 22 is arranged at the top of the first connecting block 21. The loading hopper 22 is arranged substantially vertically, and the bottom end of the loading hopper 22 passes through the hole at the top of the first connecting block 21. The bottom end of the loading hopper 22 is located at the position of the cavity 211, the top end of the loading hopper 22 is located outside the first connecting block 21, and the outer wall of the loading hopper 22 is connected to the inner wall of the first connecting block 21; a first feeding chute 23 is obliquely arranged at the position of the cavity 211. The solid drugs poured into the loading hopper 22 will directly fall on the first feeding chute 23; among them, the left part of the first feeding chute 23 is located inside the cavity 211, and the outer wall of the left part of the first feeding chute 23 is connected to the inner wall of the cavity 211. The left part of the first feeding chute 23 is located below the bottom end of the loading hopper 22; the right part of the first feeding chute 23 is located outside the cavity 211. The right end of the first feeding chute 23 is open, and the left part of the first feeding chute 23 is higher than its right part. Such a design is beneficial to the rapid flow of the solid drugs in the loading hopper 22 from the first feeding chute 23. During use, the pre-prepared solid drugs are poured from the feeding end of the loading hopper 22, and the solid drugs will fall towards the first feeding chute 23; then, the solid drugs will fall on the first feeding chute 23; then, the solid drugs will flow from the left part of the first feeding chute 23 to its right part, and finally flow out from the discharging end of the right part of the first feeding chute 23. The solid drugs enter the conveying mechanism 3, thereby achieving the purpose of injecting the solid drugs into the solid drug counting machine.
[0062] To enhance the stability of the overall structure of the loading mechanism 2, a first connecting frame 24 is provided on the loading hopper 22. In a specific application scenario, as shown in the appendix Figure 1 As shown, the first connecting frame 24 is generally L-shaped. The outer surface of the lower end of the first connecting frame 24 is connected to the top end of the machine body 1, and the front end of the first connecting frame 24 is connected to the outer wall of the loading hopper 22. Such a design prevents the loading hopper 22 from collapsing due to long-term use, thereby enhancing the stability of the overall structure of the loading mechanism 2. Of course, the shape of the first connecting frame 24 and the connection form between the first connecting frame 24 and the loading hopper 22 can be appropriately adjusted according to the needs of the user, and the corresponding content will not be elaborated here.
[0063] In a specific application scenario, the conveying mechanism 3 provided on one side of the loading mechanism 2 includes components such as a turntable 31, a rotating column 32, a motor 33, a turntable guardrail 351, and a fixing block 352. As shown in the appendix Figure 1 As shown, the turntable 31 is arranged between the discharge end of the first feeding trough 23 and the top end of the machine body 1. A through hole is provided at the center position of the turntable 31. And generally, a vibration element is arranged inside the turntable 31, and the vibration element is electrically connected to the control panel 9. Usually, a bearing is arranged below the through hole of the turntable 31. A rotating column 32 is arranged on the turntable 31. The rotating column 32 is vertically arranged at the center position of the turntable 31. The lower end of the rotating column 32 is connected to the bearing, and the upper end of the rotating column 32 is connected to the working end of the motor 33. The motor 33 is generally electrically connected to the control panel 9. A turntable guardrail 351 is arranged above the turntable 31. The turntable guardrail 351 does not contact any position of the turntable 31, and a plurality of fixing blocks 352 are arranged on the outer peripheral surface of the turntable guardrail 351. The bottom end of the fixing block 352 is connected to the top end of the machine body 1. The gap between the turntable guardrail 351 and the turntable 31 is smaller than the size of the solid medicine. Such a design can prevent the solid medicine on the turntable 31 from spilling onto the top end of the machine body 1 or an area outside the solid medicine counter; as shown in the appendix Figure 2As shown in the figure, a discharge port 353 is provided at a position of the turntable guardrail 351 close to the front side of the machine body 1, and a first baffle 354 adapted to the size of the discharge port 353 is provided at a position close to the discharge port 353. The first baffle 354 is connected to the inner peripheral surface of the turntable guardrail 351; under normal circumstances, the first baffle 354 is electrically connected to the control panel 9; of course, the first baffle 354 can also be provided on the outer peripheral surface of the turntable guardrail 351, as long as it can prevent the solid medicine on the turntable 31 from flowing out of the discharge port 353. When the solid medicine in the loading mechanism 2 flows into the turntable 31, the user starts the motor 33 and the vibration element on the turntable 31 through the control panel 9. The working end of the motor 33 drives the rotating column 32 to rotate, and the rotating column 32 drives the turntable 31 and the solid medicine to rotate. Under the action of the motor 33 and the vibration element, the solid medicine on the turntable 31 can always maintain a rotating and vibrating state, which can avoid the phenomenon of accumulation of the solid medicine; during this process, the solid medicine on the turntable 31 will slowly flow into the feeding mechanism 5 from the discharge port 353; when the solid medicine flowing into the feeding mechanism 5 reaches a preset value, the control panel 9 sends a closing instruction to the first baffle 354. At this time, the first baffle 354 will move from the initial position to the target position to prevent the solid medicine on the turntable 31 from flowing out of the discharge port 353, as shown in the appendix Figure 3 ; among them, for the rotation speed and vibration frequency of the turntable 31, the user can input corresponding values on the control panel 9 to meet their own needs.
[0064] To stabilize the position of the motor 33 in the conveying mechanism 3, a second connecting frame 34 is provided on the motor 33. In a specific application scenario, as shown in the appendix Figure 1 ; the second connecting frame 34 is L-shaped. The bottom end of the second connecting frame 34 is connected to the top end of the machine body 1, and the front end of the second connecting frame 34 is connected to the motor 33. Such a design fixes the motor 33 above the turntable 31, thus stabilizing the position of the motor 33; of course, the shape and position of the second connecting frame 34 can be appropriately adjusted according to the user's needs, as long as the position of the motor 33 can be stabilized.
[0065] In another specific application scenario, the motor 33 in the conveying mechanism 3 can be provided at the top end of the machine body 1. The working end of the motor 33 is connected to the bottom end of the rotating column 32. The top end of the rotating column 32 passes through the through hole on the turntable 31, and the outer wall of the rotating column 32 is connected to the inner wall of the turntable 31. Other corresponding contents will not be elaborated here. Such a design can omit the bearing and the second connecting frame 34 in the foregoing content, thereby reducing the manufacturing cost to a certain extent. Therefore, when implementing, the user can make a reasonable choice according to their own needs.
[0066] In a specific application scenario, the blanking mechanism 5 connected to the conveying mechanism 3 mainly includes a third connecting block 51, a blanking hopper 52, and a buffer 53. As shown in the appendix Figure 1 As shown, the third connecting block 51 in the blanking mechanism 5 is arranged on the right side in the front of the machine body 1. A through hole is provided at the top end of the third connecting block 51. A blanking hopper 52 is generally vertically arranged at the through hole of the third connecting block 51. The outer wall of the blanking hopper 52 is connected to the inner wall of the through hole. The feeding port at the top end of the blanking hopper 52 is communicated with the discharging port 353 on the conveying mechanism 3. The solid medicine on the conveying mechanism 3 can flow into the blanking hopper 52 through the discharging port 353 and the feeding port of the blanking hopper 52. A counter 6 is arranged at the feeding port of the blanking hopper 52. Of course, in order to improve the counting accuracy, as shown in the appendix Figure 2 As shown, the counter 6 can be arranged at the top end of the blanking hopper 52. When the solid medicine in the conveying mechanism 3 falls into the blanking hopper 52, the counter 6 on the feeding port can record the quantity of the solid medicine. The counter 6 can be an optoelectronic counting sensor, which is generally electrically connected to the control panel 9. The optoelectronic counting sensor can transmit the data information it records to the control panel 9. A buffer 53 is arranged at the discharging port at the bottom end of the blanking hopper 52. As shown in the appendix Figure 1As shown, the buffer 53 is provided at the bottom end of the hopper 52; of course, the user can also provide the buffer 53 on the inner wall near the discharge port of the hopper 52; the buffer 53 can be a wool fabric. When the user implements it, it is not advisable to provide too much or too thick wool fabric, otherwise it may cause the solid medicine to be blocked at the discharge port of the hopper 52; usually, a solid medicine image sensor is provided on the lower part of the hopper 52, and a medicine storage bottle 8 is generally placed below the hopper 52, and the solid medicine image sensor is directly opposite to the bottom of the inner wall of the medicine storage bottle 8; in addition, the solid medicine image sensor is electrically connected to the control panel 9, and photos of certain types of solid medicines are stored inside the control panel 9. The substance obtained by the solid medicine image sensor from the medicine storage bottle 8 is compared with the photos in the control panel 9, and then the comparison result is transmitted back to the control panel 9; of course, the position of the solid medicine image sensor can be appropriately adjusted according to the needs of the user, as long as it can obtain whether there is a corresponding solid medicine in the medicine storage bottle 8, and the corresponding content will not be elaborated here; in addition, if the user needs to process other types of solid medicines, the user can take photos of the corresponding types of solid medicines and then upload the photos to the control panel 9, so as to achieve the corresponding needs; a part of the aforementioned wool fabric extends into the medicine storage bottle 8. Because the solid medicine is generally hard, the wool fabric can prevent the solid medicine from popping out of the medicine storage bottle 8, so as to ensure that the number of solid medicines loaded in each medicine storage bottle 8 is consistent.In use, first set the quantity of solid medicine loaded in each medicine storage bottle 8, the rotation speed of the rotating column 32 driven by the motor 33, and the working frequency of the vibration element on the control panel 9; then, start the solid medicine counter; next, pour the pre-prepared solid medicine from the loading mechanism 2, and the solid medicine flows into the blanking hopper 52 through the discharge port 353 of the conveying mechanism 3; when a solid medicine is scanned by the counter 6, the counting program inside the counter 6 will increment by 1. Of course, the counting program inside the counter 6 starts accumulating from 0, and the data recorded in real time by the counter 6 will be displayed on the screen of the control panel 9; then, the solid medicine recorded by the counter 6 will fall towards the discharge port of the blanking hopper 52; immediately afterwards, the solid medicine will hit the buffer 53 at the discharge port, and at this time, the falling speed of the solid medicine is slowed down; then, the solid medicine will fall from the buffer 53 towards the medicine storage bottle 8, and finally the solid medicine is successfully loaded into the medicine storage bottle 8; after a period of time, the accumulated data of the counter 6 is equal to the quantity set in advance on the control panel 9, and the control panel 9 sends a closing instruction to the first baffle 354, and the first baffle 354 will block the discharge port 353, so that the solid medicine on the conveying mechanism 3 cannot flow into the blanking mechanism 5 anymore; at this time, the user needs to remove the medicine storage bottle 8 filled with solid medicine, and then place another empty medicine storage bottle 8 under the discharge port of the blanking mechanism 5; the solid medicine image sensor on the blanking mechanism 5 starts to scan or detect the situation inside the medicine storage bottle 8, and then compares the situation with the photo of the solid medicine stored in the control panel 9; because the current medicine storage bottle 8 is empty, the solid medicine image sensor cannot scan or detect the solid medicine paired with the control panel 9, and the solid medicine image sensor sends the pairing result to the control panel 9; at this time, the control panel 9 first resets the current counted value of the counter 6 to 0, the counter 6 starts accumulating from 0 again, and the control panel 9 then sends an opening instruction to the first baffle 534, and the solid medicine on the conveying mechanism 3 can flow into the blanking mechanism 5 again, repeating the above process.
[0067] To achieve the purpose of intelligentizing the solid medicine counter, as shown in the appendix Figure 1 As shown, the control panel 9 described above is provided on the body 1. In a specific application scenario, the control panel 9 is provided on the left side of the front of the body 1; of course, the position of the control panel 9 can be appropriately adjusted according to the needs of the user, and the corresponding content will not be elaborated here.
[0068] Embodiment 2
[0069] As shown in the appendix Figure 1 and in the appendix Figure 2As shown in the figure, the present utility model discloses a solid medicine counting machine, which is used to enhance the working performance of the solid medicine counting machine in the foregoing Embodiment 1. In addition to the components in the foregoing Embodiment 1, it further includes an auxiliary conveying mechanism 4 and a second baffle plate 43. The auxiliary conveying mechanism 4 can slow down the speed at which the solid medicine on the conveying mechanism 3 falls into the blanking mechanism 5; the second baffle plate 43 can block the discharge port of the auxiliary conveying mechanism 4, so that the solid medicine on the conveying mechanism 3 cannot flow into the blanking mechanism 5 anymore, thereby enhancing the working performance of the solid medicine counting machine in the foregoing Embodiment 1.
[0070] In a specific application scenario, the auxiliary conveying mechanism 4 includes components such as a second connecting block 41, a second feeding chute 42, and a second baffle plate 43. As shown in the attached Figure 1 figure, a second connecting block 41 is provided on the front side of the top end of the machine body 1, and the second connecting block 41 is located between the feeding port of the blanking mechanism 5 and the discharging port 353 of the conveying mechanism 3; a second feeding chute 42 is obliquely provided at the top end of the second connecting block 41, the height of the rear end of the second feeding chute 42 is greater than the height of its front end, the discharge port of the second feeding chute 42 is located at its front end, the discharge port of the second feeding chute 42 is located above the feeding port of the blanking mechanism 5, and the solid medicine on the second feeding chute 42 can flow into the blanking mechanism 5; moreover, the rear end of the second feeding chute 42 does not contact the turntable 31 in the conveying mechanism 3, and such a design can also allow the solid medicine on the conveying mechanism 3 to fall into the blanking mechanism 5; a second baffle plate 43 adapted to it is provided on the right side of the discharge port of the second feeding chute 42, and the second baffle plate 43 is generally electrically connected to the control panel 9; of course, multiple second feeding chutes 42 can be provided, and the position of the second feeding chute 42 can be appropriately adjusted according to the needs of the user. Similarly, the corresponding number of second connecting blocks 41, second baffle plates 43, blanking mechanisms 5, counters 6 need to be provided, and discharge ports 353 and first baffle plates 354 need to be provided at the corresponding positions of the conveying mechanism 3. As shown in the attached Figure 1 figure, two second feeding chutes 42 are provided in this embodiment, and the corresponding content will not be elaborated here. During use, the solid medicine on the conveying mechanism 3 first falls from the discharge port 353 onto the second feeding chute 42, the solid medicine slides towards the blanking mechanism 5, and then flows out from the discharge port of the second feeding chute 42; finally, the solid medicine falls into the blanking mechanism 5; during this process, when the value accumulated by the counter 6 reaches the preset quantity, the control panel 9 simultaneously sends a closing instruction to the first baffle plate 354 and the second baffle plate 43, and the solid medicine on the conveying mechanism 3 and the second feeding chute 42 cannot flow out. As shown in the attached Figure 3As shown, such a design not only reduces the accumulation degree of solid drugs in the conveying mechanism 3, but also slows down the speed at which the solid drugs fall into the blanking mechanism 5. Additionally, the outlet of the second feeding trough 42 allows at most two or two pieces of solid drugs to pass through simultaneously, thereby reducing the difficulty of detection by the counter 6. Such a design improves the accuracy of the data recorded by the counter 6 to a certain extent.
[0071] In another specific application scenario, a carrier platform 7 is provided on the front side of the body 1. As shown in the appendix Figure 1 As shown, the carrier platform 7 is arranged below the outlet of the blanking mechanism 5. During use, the medicine storage bottle 8 can be placed on the carrier platform 7 to prevent the medicine storage bottle 8 from being directly placed on the ground. At the same time, such a design enhances the integrity of the overall structure of the solid drug counter.
[0072] Those skilled in the art can understand that unless specifically stated, the singular forms "a", "an", and "the" used in this embodiment may also include the plural forms. It should be further understood that the term "comprising" used in this embodiment means the presence of the stated features, integers, steps, operations, elements, and / or components, but does not exclude the presence or addition of one or more other features, integers, steps, operations, elements, components, and / or their groups. It should be understood that when we say an element is "connected" or "coupled" to another element, it can be directly connected or coupled to other elements, or there may also be intermediate elements. In addition, the "connection" or "coupling" used here may include wireless connection or wireless coupling. The phrase "and / or" used here includes all or any unit and all combinations of one or more of the associated listed items.
Claims
1. Solid drug counting machine, characterized in that, Including: A machine body (1); a loading mechanism (2) provided at the top of the machine body (1), and the loading mechanism (2) is provided with a feeding end and a discharging end; a conveying mechanism (3) for carrying and conveying solid medicines flowing out of the loading mechanism (2), the conveying mechanism (3) is provided at the top of the machine body (1), and the conveying mechanism (3) is located on one side of the loading mechanism (2), and a discharging port (353) is provided on the conveying mechanism (3), and a first baffle plate (354) is provided near the discharging port (353); a blanking mechanism (5) provided on one side of the machine body (1), the feeding port of the blanking mechanism (5) is located in the downstream direction of the discharging port (353), and the blanking mechanism (5) is communicated with the conveying mechanism (3); a counter (6) provided at a position close to the feeding port of the blanking mechanism (5); wherein, a buffer (53) is provided at the discharging port of the blanking mechanism (5).
2. The solid pharmaceutical counting machine according to claim 1, characterized in that, The counter (6) is an optoelectronic counting sensor.
3. The solid drug counting machine according to claim 1, characterized in that, The loading mechanism (2) includes: a first connecting block (21) provided at the top of the machine body (1), the first connecting block (21) is provided with a cavity (211), and holes communicating with the cavity (211) are provided at the top of the first connecting block (21) and on one side of the first connecting block (21) close to the conveying mechanism (3); a loading hopper (22) provided at the position of the hole opened at the top of the first connecting block (21); a first feeding trough (23) for feeding the solid medicines in the loading hopper (22) into the conveying mechanism (3), the first feeding trough (23) is obliquely arranged at the position of the cavity (211), and the height of the end of the first feeding trough (23) close to the conveying mechanism (3) is lower than that of the other end.
4. The solid drug counting machine according to claim 3, characterized in that, It further includes: A first connecting frame (24); one end of the first connecting frame (24) is connected to the outer wall surface of the loading hopper (22), and the other end of the first connecting frame (24) is connected to the machine body (1).
5. The solid drug counting machine according to claim 3, wherein The conveying mechanism (3) includes: a turntable (31) for carrying the solid medicine flowing out from the loading mechanism (2), the turntable (31) being arranged between the discharge end of the first feeding trough (23) and the top end of the machine body (1); a rotating column (32) for driving the turntable (31) to rotate, the rotating column (32) being arranged on the turntable (31) and being arranged near the central position of the turntable (31); a motor (33) arranged above the top end of the machine body (1), the working end of the motor (33) being connected to one end of the rotating column (32); a turntable guardrail (351) arranged above the turntable (31) and not in contact with the turntable (31); a fixing block (352) for stabilizing the position of the turntable guardrail (351), the fixing block (352) being arranged on the outer peripheral surface of the turntable guardrail (351), and one end of the fixing block (352) being connected to the top end of the machine body (1).
6. The solid drug counting machine according to claim 5, wherein, The discharge port (353) is arranged on the turntable guardrail (351); the first baffle plate (354) is arranged on the turntable guardrail (351).
7. The solid drug counting machine according to claim 5, wherein The conveying mechanism (3) further includes: a second connecting frame (34) for stabilizing the position of the motor (33); one end of the second connecting frame (34) is connected to the motor (33), and the other end of the second connecting frame (34) is connected to the machine body (1).
8. The solid pharmaceutical counting machine according to claim 1, characterized in that, The blanking mechanism (5) includes: a third connecting block (51) arranged on one side of the machine body (1) close to the discharge port (353); a blanking hopper (52) for accurately feeding the solid medicine on the conveying mechanism (3) into a medicine storage container, the blanking hopper (52) being arranged on the third connecting block (51).
9. The solid pharmaceutical counting machine according to claim 1, wherein It further includes: a second connecting block (41) arranged on the top end of the machine body (1) and located between the blanking mechanism (5) and the discharge port (353); a second feeding trough (42) for slowing down the speed of the solid medicine falling from the conveying mechanism (3) into the blanking mechanism (5), the second feeding trough (42) being obliquely arranged on the second connecting block (41), and the height of the end of the second feeding trough (42) close to the discharge port (353) being greater than the height of its other end; a second baffle plate (43) for blocking the solid medicine on the second feeding trough (42) from flowing into the blanking mechanism (5), the second baffle plate (43) being arranged on one side of the medicine discharge port of the second feeding trough (42).
10. The solid drug counting machine according to any one of claims 1-9, characterized in that, It further includes: a control panel (9) for monitoring and controlling the components in the solid medicine counter; the control panel (9) is arranged on one side of the machine body (1) and is spaced from the blanking mechanism (5).