A medicine isodose dispensing machine
By designing a drug equal-dosage dispensing machine, which uses a cylinder to drive the opening and closing of the sealing plate and the flow cut-off plate, quantitative dispensing and sealed preservation of blood products are realized, solving the problems of sample contamination and inconvenient operation, and improving experimental efficiency.
Patent Information
- Application Number
- CN202311811987.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-12-26
- Publication Date
- 2025-12-05
- Estimated Expiration
- 2043-12-26
AI Technical Summary
In existing technologies, when blood products require multiple sample measurements during experiments, the samples are easily contaminated when exposed to air, and the process is inconvenient.
A drug equal-dosage dispensing machine was designed, comprising a dispensing tank, a rotating part, a sealing plate, a flow-stopping plate, and a drive assembly. The sealing plate and flow-stopping plate are opened and closed by a cylinder to achieve quantitative dispensing and sealed preservation of drugs.
This technology enables quantitative dispensing of medicines, avoids sample exposure to air, reduces the risk of contamination, and improves operational efficiency.
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Figure CN117550534B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of blood medicine experiment, in particular to a medicine equal-dose dispensing machine. BACKGROUND
[0002] Blood products refer to various human plasma protein products, including human blood albumin, human placental blood albumin, intravenous human immunoglobulin, human immunoglobulin for intramuscular injection, histamine human immunoglobulin, specific immunoglobulin, immunoglobulin, human coagulation factor VIII, human prothrombin complex, human fibrinogen, anti-human lymphocyte immunoglobulin, etc., and the raw material of blood products is plasma.
[0003] At present, in the experimental process of blood products, the experimenter will take a certain amount of medicine as a sample for experiment according to the need, and the existing one is taken by manual, when multiple samples are needed, the experimenter always takes multiple times, and after taking, if it cannot be used immediately, the sample will be exposed to the air, causing certain pollution. SUMMARY
[0004] The purpose of the present application is to solve the above-mentioned deficiencies, and to provide a medicine equal-dose dispensing machine.
[0005] In order to solve the above technical problems, the present application adopts the following technical scheme:
[0006] A medicine equal-dose dispensing machine, comprising a liquid distribution tank, a liquid inlet is formed in the top of the liquid distribution tank, a liquid distribution port is formed in the inner cavity of the liquid distribution tank, and a glass bottle inlet is formed in the outer side wall of the liquid distribution tank;
[0007] A fixed base is fixedly arranged at the bottom of the liquid distribution tank, a glass bottle outlet is formed in the fixed base, and a supporting plate is formed in the glass bottle outlet;
[0008] A rotating part is rotatably arranged between the liquid distribution tank and the fixed base, used for moving the glass bottle, and a plurality of receiving cavities are circumferentially arranged on the rotating part;
[0009] A sealing plate is movably arranged at the bottom of the liquid distribution port, used for controlling the opening and closing of the liquid distribution port;
[0010] A plurality of intercepting plates are inserted into the liquid distribution port, used for intercepting the sample;
[0011] A driving assembly is arranged in the liquid distribution tank, used for controlling the opening and closing of the sealing plate and the intercepting plate.
[0012] Further, the driving assembly comprises a pushing part sliding in the liquid separation tank, one end of the pushing part is provided with an adjusting part for pushing the intercepting plate, the other end of the pushing part is provided with a driving part for driving the pushing part to move, one side of the driving part away from the pushing part is provided with a cylinder for pushing the driving part, and the driving part is further provided with a pressing part for abutting against the pushing part.
[0013] Further, the pushing part comprises two first sliding rods arranged in the liquid separation tank, the first sliding rods are provided with moving sliding blocks, the adjusting part slides between the two moving sliding blocks, one side of the moving sliding blocks is provided with a first spring sleeved on the first sliding rods, one side of the moving sliding blocks is provided with a driven connecting rod, one end of the driven connecting rod is fixedly provided with a first push plate, and the driving part pushes the first push plate to slide.
[0014] Further, the adjusting part comprises a lead screw rotating between the two moving sliding blocks, the lead screw is provided with a lifting sliding block, one side of the lifting sliding block is provided with a fixed rod, one end of the fixed rod away from the lifting sliding block is provided with a second push plate, one side of the lead screw is provided with a second sliding rod, the second sliding rod is fixed between the two moving sliding blocks, and one side of the lifting sliding block away from the fixed rod is provided with a connecting block sleeved on the second sliding rod.
[0015] Further, the driving part comprises a first driving rod connected with the first push plate, a second driving rod rotatably arranged at the bottom end of the first driving rod, a third driving rod rotatably arranged at the bottom end of the second driving rod, a compression roller rotatably arranged at the top end of the first driving rod and abutting against the first push plate, an extension rod movably arranged in the third driving rod, a first movable plate rotatably arranged at the bottom end of the extension rod, an active end of the cylinder connected with the first movable plate through a mounting plate, the cylinder driving the sealing plate to slide through the first movable plate, and the pressing part is arranged on the first driving rod and connected with the third driving rod through the pressing part.
[0016] Further, one end of the sealing plate is provided with a magnet, one side of the bottom of the liquid outlet is provided with a small iron block, the sealing plate is attracted to the small iron block through the magnet, one end of the sealing plate away from the magnet is provided with a connecting plate, a first movable slot is formed in one end of the connecting plate away from the sealing plate, and a limiting sliding block sliding in the first movable slot is fixedly arranged on the first movable plate.
[0017] Further, the pressing part comprises a fixing frame mounted on the first driving rod, a third sliding rod arranged in the fixing frame, a second movable plate sleeved on the third sliding rod, a second movable slot formed in the second movable plate, a second spring sleeved on the third sliding rod arranged on one side of the second movable plate, a deflection rod fixedly arranged on the third driving rod arranged at the bottom of the fixing frame, and a limiting plug sliding in the second movable slot arranged at one end of the deflection rod away from the third driving rod.
[0018] Furthermore, a hidden groove is provided on one side of the flow-cutting plate, and a flow-cutting connecting rod inserted into the hidden groove is fixedly installed on the flow-cutting plate. A baffle is fixedly installed at the end of the flow-cutting connecting rod away from the flow-cutting plate, and a return spring sleeved on the flow-cutting connecting rod is provided between the baffle and the inner wall of the hidden groove.
[0019] Furthermore, the bottom of the rotating part is provided with a slide bar, the fixed base is provided with a slide groove that cooperates with the slide bar, the rotating part is also provided with a limiting component, and the rotating part is fixedly connected to the liquid separator through the limiting component.
[0020] Furthermore, the limiting assembly includes a limiting spring located within the rotating part and a limiting rod connected to the limiting spring, and multiple slots are provided at the bottom of the separating tank.
[0021] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0022] This invention features multiple flow-blocking plates within the separating tank. A suitable flow-blocking plate can be selected as needed. A cylinder drives a drive unit, which first rotates a first shaft, causing an upper pressure roller to push a first pusher plate inward. This, in turn, causes a second pusher plate to push the corresponding flow-blocking plate. The cylinder then continues to pull the drive unit, causing it to deflect along a second shaft, opening a sealing plate and allowing the medicine below the flow-blocking plate to fall into a glass bottle for sampling. After sampling, the cylinder moves forward, and the pusher unit, under the pressure of the squeezing section... The container remains stationary until the bottom sealing plate seals the dispensing port. Only then will the first drive rod gradually disengage from the pusher, which will then move back under the force of the first spring, eventually opening the throttling plate. The rotating part at the bottom of the dispensing container will then rotate to the next receiving chamber to complete the next dispensing cycle. Since the glass bottles are all inside the rotating part, which maintains a certain degree of sealing, contamination of the medicine can be avoided. When in use, the glass bottles can be removed. This allows for the dispensing of equal doses and separate storage of the bottles, saving time and effort. Attached Figure Description
[0023] The accompanying drawings, which form part of this application, are used to provide a further understanding of the invention. The illustrative embodiments of the invention and their descriptions are used to explain the invention and do not constitute an undue limitation of the invention. In the drawings:
[0024] Figure 1 This is a schematic diagram of the overall structure of the present invention;
[0025] Figure 2 This is a schematic diagram of the internal structure of the separator of the present invention;
[0026] Figure 3 This is an unfolded schematic diagram of the rotating part and the fixed base of the present invention;
[0027] Figure 4 This is a schematic diagram of the internal structure of the liquid distribution port of the present invention;
[0028] Figure 5 This is a schematic diagram of the structure of the interceptor plate of the present invention;
[0029] Figure 6 This is a schematic diagram of the structure of the driving component of the present invention;
[0030] Figure 7 This is a schematic diagram showing the connection between the pushing part and the adjusting part of the present invention;
[0031] Figure 8 This is a schematic diagram of the structure of the drive unit of the present invention;
[0032] Figure 9 This is a schematic diagram showing the connection between the extrusion part and the driving part of the present invention.
[0033] In the diagram: 1. Separating tank; 11. Inlet; 12. Separating port; 13. Glass bottle inlet; 2. Fixed base; 21. Glass bottle outlet; 22. Support plate; 23. Slide groove; 3. Rotating part; 31. Receiving cavity; 32. Limiting assembly; 321. Limiting rod; 322. Limiting spring; 33. Slide bar; 4. Sealing plate; 41. Magnet; 42. Small iron block; 43. Connecting plate; 5. Flow-cutting plate; 51. Flow-cutting connecting rod; 52. Baffle; 53. Return spring; 6. Drive assembly; 61. Pushing part; 611. Moving slider; 612. Driven connecting rod; 613. First push plate; 614. First slide bar; 615. First spring; 6 2. Adjustment section; 621. Lead screw; 622. Lifting slider; 623. Fixed rod; 624. Second push plate; 625. Connecting block; 626. Second slide rod; 63. Drive section; 631. First drive rod; 632. Second drive rod; 633. Third drive rod; 634. First rotating shaft; 635. Second rotating shaft; 636. Pressure roller; 637. Telescopic rod; 638. First movable plate; 639. Limiting slider; 64. Cylinder; 641. Mounting plate; 65. Extrusion section; 651. Fixed frame; 652. Third slide rod; 653. Second spring; 654. Second movable plate; 655. Deflection rod; 656. Limiting block. Detailed Implementation
[0034] The technical solutions of the present invention will be clearly and completely described below with reference to the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. Unless otherwise specified, the embodiments and features in the embodiments of this application can be combined with each other. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0035] It should be noted that if the embodiments of the present invention involve directional indicators (such as up, down, left, right, front, back, etc.), the directional indicators are only used to explain the relative positional relationship and movement of the components in a specific posture. If the specific posture changes, the directional indicators will also change accordingly.
[0036] Reference Figures 1-9 As shown, a drug equal dosage dispensing machine includes a dispensing tank 1. The top of the dispensing tank 1 has an inlet 11. The drug is first poured into the dispensing tank 1 through the inlet 11. The inner cavity of the dispensing tank 1 has a dispensing port 12 for quantitative dispensing of the drug. The outer wall of the dispensing tank 1 has a glass bottle inlet 13. After the glass bottle is placed in, it is moved to the bottom of the dispensing port 12 to perform quantitative sampling.
[0037] A fixed base 2 is fixedly installed at the bottom of the separator 1. A glass bottle outlet 21 is provided on the fixed base 2, and a tray 22 is provided on the glass bottle outlet 21.
[0038] The rotating part 3 is rotatably disposed between the dispensing tank 1 and the fixed base 2. A driving component can be provided to drive the rotation of the rotating part 3 to move the glass bottle. The rotating part 3 has multiple storage cavities 31 arranged in a circular array. The storage cavities 31 can be connected vertically. When it moves to the glass bottle outlet 21, the tray 22 can be pulled out and then taken out from the bottom.
[0039] The sealing plate 4 is movably disposed at the bottom of the liquid distribution port 12 and is used to control the opening and closing of the liquid distribution port 12.
[0040] It also includes multiple intercepting plates 5, which are inserted into the liquid distribution port 12 for intercepting samples;
[0041] The drive assembly 6 is located inside the separator 1 and is used to control the opening and closing of the sealing plate 4 and the flow-blocking plate 5. During sampling, the drive assembly 6 will first drive the flow-blocking plate 5 to complete the flow-blocking and sealing, and then open the sealing plate 4 to allow the sample to flow into the glass bottle. After sampling, the drive assembly 6 will also first close the bottom sealing plate 4 before opening the flow-blocking plate 5.
[0042] In one embodiment, the drive assembly 6 includes a pusher 61 that slides inside the separator 1. One end of the pusher 61 is provided with an adjustment part 62 for pushing the baffle plate 5, and the other end of the pusher 61 is provided with a drive part 63 for driving the pusher 61 to move. A cylinder 64 for pushing the drive part 63 is provided on the side of the drive part 63 away from the pusher 61. The drive part 63 is also provided with a squeezing part 65 for pressing against the pusher 61.
[0043] Before starting, select the appropriate baffle plate 5 as needed. This mainly involves moving the adjusting part 62 to the corresponding baffle plate 5. This way, when pushing, only the corresponding baffle plate 5 will be pushed. When starting, the cylinder 64 retracts, which drives the driving part 63 to deflect. This causes one end of the driving part 63 to press inward against the pushing part 61. The pushing part 61 then pushes the adjusting part 62, which in turn pushes the baffle plate 5, dividing the liquid outlet 12 into two parts. The bottom part contains the required sample volume. Then, the driving part 63 drives the sealing plate 4 to open, allowing the sample at the bottom of the liquid outlet 12 to flow into the glass bottle.
[0044] In one embodiment, the pushing unit 61 includes two first slide rods 614 disposed in the liquid separator 1. A movable slider 611 is sleeved on the first slide rod 614. The adjusting unit 62 slides between the two movable sliders 611. A first spring 615 sleeved on the first slide rod 614 is disposed on one side of the movable slider 611. A driven connecting rod 612 is disposed on one side of the movable slider 611. A first push plate 613 is fixedly disposed at one end of the driven connecting rod 612. The driving unit 63 pushes the first push plate 613 to slide.
[0045] First, the drive unit 63 pushes the first push plate 613 toward the liquid distribution port 12. The first push plate 613 pushes the sliding slider 611 to slide through the driven connecting rod 612. The sliding slider 611 drives the adjustment unit 62 to push the throttling plate 5. At the same time, the sliding slider 611 also squeezes the first spring 615. When the drive unit 63 is released, the entire push unit 61 will move back under the elastic force of the first spring 615, and open the throttling plate 5.
[0046] In one embodiment, the adjustment unit 62 includes a lead screw 621 that rotates between two movable sliders 611. One end of the lead screw 621 is provided with a small motor for driving the lead screw 621 to rotate. A lifting slider 622 is sleeved on the lead screw 621. A fixed rod 623 is provided on one side of the lifting slider 622. A second push plate 624 is provided at the end of the fixed rod 623 away from the lifting slider 622. A second slide rod 626 is provided on one side of the lead screw 621. The second slide rod 626 is fixed between the two movable sliders 611. A connecting block 625 sleeved on the second slide rod 626 is provided on the side of the lifting slider 622 away from the fixed rod 623.
[0047] When selecting the cutoff plate 5, the lead screw 621 is rotated by a small motor, which causes the second push plate 624 to move up and down, so that the second push plate 624 moves to the corresponding cutoff plate 5.
[0048] In one embodiment, the drive unit 63 includes a first drive rod 631 connected to the first push plate 613. The bottom end of the first drive rod 631 is rotatably connected to a second drive rod 632 via a first rotating shaft 634. The bottom end of the second drive rod 632 is rotatably connected to a third drive rod 633 via a second rotating shaft 635. A torsion spring can also be provided on the second rotating shaft 635 to increase the torsional force. The top end of the first drive rod 631 is rotatably connected to a pressure roller 636 that is in close contact with the first push plate 613. A telescopic rod 637 is movably connected inside the third drive rod 633. The bottom end of the telescopic rod 637 is rotatably connected to a first movable plate 638. The movable end of the cylinder 64 is connected to the first movable plate 638 via a mounting plate 641. The cylinder 64 drives the sealing plate 4 to slide via the first movable plate 638. The extrusion unit 65 is located on the first drive rod 631, and the first drive rod 631 is connected to the third drive rod 633 via the extrusion unit 65.
[0049] When cylinder 64 pulls the first movable plate 638, the first movable plate 638 will first move along the rear end of the sealing plate 4. At this time, the entire drive unit 63 will rotate along the first rotating shaft 634, causing the first drive rod 631 to push the first push plate 613. Since the entire drive unit 63 is deflected, in order to maintain the height of the first movable plate 638, the telescopic rod 637 will slide outward inside the third drive rod 633, extending the length of the entire drive unit 63. When the first drive rod 631 can no longer move, the third drive rod 633 at the bottom will deflect along the second rotating shaft 635. At this time, the first movable plate 638 will pull the sealing plate 4, causing the medicine to fall and completing the quantitative sampling.
[0050] In one embodiment, a magnet 41 is provided at one end of the sealing plate 4, and a small iron block 42 is provided on one side of the bottom of the liquid outlet 12. The sealing plate 4 is attracted to the small iron block 42 by the magnet 41. A connecting plate 43 is provided at the end of the sealing plate 4 away from the magnet 41. A first movable groove is provided on the end of the connecting plate 43 away from the sealing plate 4. A limiting slider 639 that slides in the first movable groove is fixedly provided on the first movable plate 638.
[0051] When cylinder 64 pulls the first movable plate 638, the first movable plate 638 drives the limiting slider 639 to slide within the first movable groove, thereby allowing the upper first drive rod 631 to push the first push plate 613. When the first push plate 613 can no longer be pushed, the limiting slider 639 has just moved to the other end of the first movable groove. At this time, when cylinder 64 pulls the first movable plate 638, it will simultaneously pull the connecting plate 43 to move together, thereby pulling the sealing plate 4 open. When closing, cylinder 64 extends forward, the limiting slider 639 moves along the first movable groove to the other end, and finally pushes the first push plate 613. The movable plate 638 moves together with the sealing plate 4. When the third drive rod 633 returns to the same straight line as the second drive rod 632, the magnet 41 on the sealing plate 4 will also approach the small iron block 42. Under the action of magnetic force, the magnet 41 will be attracted to the small iron block 42, allowing the sealing plate 4 to complete the sealing of the bottom of the liquid outlet 12. At this time, the entire drive part 63 continues to deflect back, the first drive rod 631 gradually moves away from the first push plate 613, and the entire push part 61 will also gradually retreat under the elastic force of the first spring 615, thereby gradually removing the pressure on the throttling plate 5, making it easier for the throttling plate 5 to open.
[0052] In one embodiment, the extrusion part 65 includes a fixing frame 651 mounted on the first drive rod 631, a third slide rod 652 is provided inside the fixing frame 651, a second movable plate 654 is sleeved on the third slide rod 652, a second movable groove is provided on the second movable plate 654, a second spring 653 is provided on one side of the second movable plate 654 and sleeved on the third slide rod 652, a deflection rod 655 fixed to the third drive rod 633 is provided at the bottom of the fixing frame 651, and a limiting insert 656 that slides in the second movable groove is provided at the end of the deflection rod 655 away from the third drive rod 633;
[0053] When the third drive rod 633 rotates along the second rotating shaft 635, the third drive rod 633 deflects upward, which will drive the deflection rod 655 to deflect upward as well. The limiting block 656 will slide along the second movable groove, thereby driving the second movable plate 654 to squeeze the second spring 653. The elastic force of the second spring 653 is used to squeeze the first drive rod 631, keeping the pressure roller 636 in close contact with the first push plate 613.
[0054] In one embodiment, a dark groove is provided on one side of the flow-blocking plate 5, and a flow-blocking connecting rod 51 inserted into the dark groove is fixedly provided on the flow-blocking plate 5. A baffle 52 is fixedly provided at the end of the flow-blocking connecting rod 51 away from the flow-blocking plate 5, and a return spring 53 sleeved on the flow-blocking connecting rod 51 is provided between the baffle 52 and the inner side wall of the dark groove.
[0055] After the flow cutter 5 divides the liquid outlet 12, the flow cutter 5 compresses the return spring 53 through the baffle 52. As the second push plate 624 gradually retracts, the flow cutter 5 will also move back under the elastic force of the return spring 53, gradually opening the liquid outlet 12.
[0056] In one embodiment, the bottom of the rotating part 3 is provided with a slide bar 33, and the fixed base 2 is provided with a slide groove 23 that cooperates with the slide bar 33. The rotating part 3 is also provided with a limiting component 32, and the rotating part 3 is fixedly connected to the dispensing tank 1 through the limiting component 32. The angle of rotation of the rotating part 3 each time will make the receiving cavity 31 located at the bottom of the dispensing port 12.
[0057] In one embodiment, the limiting component 32 includes a limiting spring 322 located inside the rotating part 3 and a limiting rod 321 connected to the limiting spring 322. The bottom of the dispensing tank 1 is provided with multiple slots. The slots are arranged in a circumferential array at the bottom of the dispensing tank 1, and their number is the same as that of the receiving cavity 31. When the rotating part 3 rotates, the limiting rod 321 will push the limiting rod 321 along its inclined surface, so that the limiting rod 321 will be retracted into the rotating part 3. When it reaches the next slot, the limiting rod 321 will be inserted into the slot again, thereby fixing the rotating part 3.
[0058] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the invention can be implemented in other specific forms without departing from the spirit or essential characteristics of the invention. Therefore, the embodiments should be considered in all respects as exemplary and non-limiting, and the scope of the invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within the present invention.
Claims
1. A medicine isodose dispenser, comprising a liquid distribution tank (1), a liquid inlet (11) is formed on the top of the liquid distribution tank (1), a liquid distribution opening (12) is formed in the inner cavity of the liquid distribution tank (1), and a glass bottle inlet (13) is formed on the outer side wall of the liquid distribution tank (1); A fixed base (2) is fixedly arranged at the bottom of the liquid distribution tank (1), a glass bottle outlet (21) is formed on the fixed base (2), and a supporting plate (22) is formed on the glass bottle outlet (21); A rotating part (3) is rotatably arranged between the liquid distribution tank (1) and the fixed base (2) and is used for moving the glass bottle, a plurality of accommodating cavities (31) are circumferentially arranged on the rotating part (3); A sealing plate (4) is movably arranged at the bottom of the liquid distribution opening (12) and is used for controlling the opening and closing of the liquid distribution opening (12); characterized in that Further comprising: A plurality of intercepting plates (5) are inserted into the liquid distribution opening (12) and are used for intercepting samples; A driving assembly (6) is arranged in the liquid distribution tank (1) and is used for controlling the opening and closing of the sealing plate (4) and the intercepting plate (5); The driving assembly (6) comprises a pushing part (61) sliding in the liquid distribution tank (1), one end of the pushing part (61) is provided with an adjusting part (62) used for pushing the intercepting plate (5), the other end of the pushing part (61) is provided with a driving part (63), the driving part (63) is used for driving the pushing part (61) to move, a cylinder (64) is arranged on the side of the driving part (63) away from the pushing part (61) and is used for pushing the driving part (63), and the driving part (63) is further provided with a pressing part (65) used for abutting against the pushing part (61); The pushing part (61) comprises two first sliding rods (614) arranged in the liquid distribution tank (1), a moving block (611) is sleeved on the first sliding rod (614), the adjusting part (62) slides between the two moving blocks (611), a first spring (615) is arranged on one side of the moving block (611) and is sleeved on the first sliding rod (614), a driven connecting rod (612) is arranged on one side of the moving block (611), a first push plate (613) is fixedly arranged at one end of the driven connecting rod (612), and the driving part (63) pushes the first push plate (613) to slide. The driving part (63) comprises a first driving rod (631) connected with the first push plate (613), the bottom end of the first driving rod (631) is rotationally provided with a second driving rod (632) through a first rotating shaft (634), the bottom end of the second driving rod (632) is rotationally provided with a third driving rod (633) through a second rotating shaft (635), the top end of the first driving rod (631) is rotationally provided with a compression roller (636) closely attached to the first push plate (613), a telescopic rod (637) is movably arranged in the third driving rod (633), the bottom end of the telescopic rod (637) is rotationally provided with a first movable plate (638), the movable end of the air cylinder (64) is connected with the first movable plate (638) through a mounting plate (641), and the air cylinder (64) drives the sealing plate (4) to slide through the first movable plate (638), the extrusion part (65) is located on the first driving rod (631), and the first driving rod (631) is connected with the third driving rod (633) through the extrusion part (65).
2. The medicine isodose dispensing machine according to claim 1, characterized in that, The adjusting part (62) comprises a lead screw (621) rotationally arranged between the two moving sliders (611), a lifting slider (622) is sleeved on the lead screw (621), a fixed rod (623) is arranged on one side of the lifting slider (622), a second push plate (624) is arranged at the end of the fixed rod (623) away from the lifting slider (622), a second sliding rod (626) is arranged on one side of the lead screw (621), the second sliding rod (626) is fixed between the two moving sliders (611), and a connecting block (625) is arranged on the second sliding rod (626) away from the fixed rod (623).
3. The medicine equal-dose dispensing machine according to claim 1, characterized in that, One end of the sealing plate (4) is provided with a magnet (41), a small iron block (42) is arranged on one side of the bottom of the liquid distribution port (12), the sealing plate (4) is attracted to the small iron block (42) through the magnet (41), one end of the sealing plate (4) away from the magnet (41) is provided with a connecting plate (43), a first movable slot is formed in the end of the connecting plate (43) away from the sealing plate (4), and a limiting sliding block (639) is fixedly arranged on the first movable plate (638) and slides in the first movable slot.
4. The medicine isodose dispensing machine according to claim 1, characterized in that, The extrusion part (65) comprises a fixing frame (651) mounted on the first driving rod (631), a third sliding rod (652) is arranged in the fixing frame (651), a second movable plate (654) is sleeved on the third sliding rod (652), a second movable slot is formed in the second movable plate (654), a second spring (653) is arranged on one side of the second movable plate (654) and sleeved on the third sliding rod (652), a deflection rod (655) is arranged at the bottom of the fixing frame (651) and fixed to the third driving rod (633), and a limiting plug (656) is arranged in the second movable slot and at the end of the deflection rod (655) away from the third driving rod (633).
5. The medicine isodose dispensing machine according to claim 1, characterized in that, One side of the intercepting plate (5) is provided with a hidden groove, the intercepting plate (5) is fixedly provided with an intercepting connecting rod (51) inserted in the hidden groove, one end of the intercepting connecting rod (51) away from the intercepting plate (5) is fixedly provided with a baffle (52), and the baffle (52) and the inner side wall of the hidden groove are provided with a reset spring (53) sleeved on the intercepting connecting rod (51).
6. The medicine isodose dispensing machine according to claim 1, wherein, The bottom of the rotating part (3) is provided with a sliding strip (33), the fixed base (2) is provided with a sliding groove (23) matched with the sliding strip (33), the rotating part (3) is further provided with a limiting assembly (32), and the rotating part (3) is fixedly connected with the liquid distribution tank (1) through the limiting assembly (32).
7. The medicine isodose dispensing machine according to claim 6, characterized in that, The limiting assembly (32) comprises a limiting spring (322) in the rotating part (3) and a limiting rod (321) connected with the limiting spring (322), and the bottom of the liquid distribution tank (1) is provided with a plurality of insertion grooves.
Citation Information
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