Accurate adhesive medicine dispensing device
By designing a precise drug dispensing device that adheres to the drug, and employing a multi-stage cutting and weighing mechanism, the problem of dispensing efficiency and accuracy caused by the adhesion and clumping of traditional Chinese medicine was solved, achieving rapid and accurate drug dispensing.
Patent Information
- Application Number
- CN202423323804.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2025-12-02
- Estimated Expiration
- 2034-12-31
AI Technical Summary
During storage, traditional Chinese medicines may clump together due to viscous components, affecting dispensing efficiency and accuracy. Conventional methods are insufficient to separate and precisely control the amount of medicine dispensed.
A precise drug dispensing device for adhesive drugs was designed, including a pushing mechanism, a feeding container, a first cutting mechanism, a second cutting mechanism, a weighing mechanism, and a conveying mechanism. The device achieves rapid and precise drug dispensing through multi-stage cutting and precise weighing.
It enables rapid and precise dispensing of adhesive drugs, avoiding drug contamination and inaccurate dispensing during manual processing, and improving dispensing efficiency and accuracy.
Smart Images

Figure CN223619781U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of traditional Chinese medicine dispensing equipment, specifically to a device for precise dispensing of adhesive drugs. Background Technology
[0002] During the storage of some traditional Chinese medicines, due to their inherent properties, such as the presence of fatty oils, volatile oils, mucilage, or sugars, they may exhibit oiliness or sugar reversion. Additionally, some medicinal materials containing sugar gums, resins, or waxes may soften under elevated temperatures or moisture, leading to adhesion and clumping. When dispensing these herbs, it is often found that the original bulk herbs have transformed into large clumps, making further dispensing impossible and rendering them unusable. In particular, for herbs that are severely adhered, conventional methods of dispersing are ineffective, requiring dispensing personnel to perform meticulous separation work—a tedious and time-consuming process that also fails to accurately control the dispensing quantity.
[0003] Therefore, how to solve the problem of viscous drugs sticking together and clumping, which affects the efficiency and accuracy of drug dispensing, has become the research topic to be addressed by this utility model. Summary of the Invention
[0004] The purpose of this invention is to provide a precise dispensing device for adhesive drugs, so as to solve the problem that adhesive drugs stick together and clump together, affecting dispensing efficiency and accuracy.
[0005] To achieve the above objectives, this utility model proposes a precise dispensing device for adhesive drugs, which is used for the precise dispensing of adhesive drugs. Its innovation lies in:
[0006] The dispensing device includes a pushing mechanism, a feeding container, a first cutting mechanism, a second cutting mechanism, a weighing mechanism, and a conveying mechanism.
[0007] The pushing mechanism has a pushing drive unit and a pushing action end, and the pushing drive unit drives the pushing action end to move and displace.
[0008] The feeding container is a container structure for placing adhesive drugs. The feeding container has a connected inlet, a pushing chamber and an outlet. The inlet and outlet are at least partially open. The displacement path of the pushing end is between the inlet and the pushing chamber.
[0009] The first cutting mechanism is located in the rear half of the pushing chamber or at the discharge port. The first cutting mechanism is a structure for cutting the adhesive drug into strips. The first cutting mechanism has a first cutting blade.
[0010] The second cutting mechanism is located on the outlet side of the first cutting mechanism. The second cutting mechanism is a structure for cutting long strips of adhesive medicine into n-shaped pieces. The second cutting mechanism has a second cutting blade.
[0011] The weighing mechanism and the conveying mechanism are located on the outlet side of the second cutting mechanism. The weighing mechanism is used to weigh the t-shaped adhesive drug, and the conveying mechanism is used to transport the weighed t-shaped adhesive drug to the next station.
[0012] The relevant contents of this utility model are explained as follows:
[0013] 1. In the above-mentioned technical solution of this utility model, by setting up the above-mentioned feeding container, pushing mechanism, first cutting mechanism, second cutting mechanism, weighing mechanism and conveying mechanism, the working process is as follows: the block of adhesive medicine enters the feeding container from the feeding port, part of the adhesive medicine enters the pushing chamber, and part of the adhesive medicine is located at the front end of the pushing chamber; the pushing mechanism works, and the pushing drive unit drives the pushing end to push the adhesive medicine from the feeding port into the pushing chamber; the pushed adhesive medicine is cut into strips by the first cutting blade on the first cutting mechanism under the action of the pushing end; the strip adhesive medicine continues to be pushed forward under the action of the pushing end, and enters the station of the second cutting mechanism through the discharge port; the second cutting blade on the second cutting mechanism cuts the strip adhesive medicine into T-shaped adhesive medicine; the T-shaped adhesive medicine enters the next station, and the weighing mechanism weighs the T-shaped adhesive medicine; the T-shaped adhesive medicine is then transported to the next station by the conveying mechanism after accurate weighing. By implementing the above technical solutions, multi-stage cutting, accurate weighing, and precise dispensing of adhesive drugs are achieved. The operating frequency of the second cutting blade and the downward pressing action of the pushing end can be matched, so that even drugs that are difficult to handle in the past and are particularly sticky can be dispensed quickly and accurately through the modified dispensing device, avoiding problems such as drug contamination, inaccurate dispensing, and waste of medicinal materials during manual processing.
[0014] 2. In the above technical solution, the first cutting blade has multiple cutting edges, and the opening direction of the cutting edges is consistent with the length extension direction of the elongated adhesive drug. A further preferred embodiment, demonstrating the feasibility of the complete solution, explains the structure of the first cutting blade. This structure can cooperate well with the feeding mechanism, allowing the adhesive drug to be formed into an elongated adhesive drug from the cutting edges after being pushed. The structure is simple and reasonable.
[0015] 3. In the above technical solution, the first cutting mechanism includes a first mounting plate spanning across the pushing chamber or the outlet of the feeding container, with the first cutting blade mounted in the first mounting plate. The first cutting blade is located on the pushing path of the adhesive drug under the action of the pushing end. Further preferred embodiments and feasibility of the complete solution are described, facilitating installation, adjustment, and subsequent replacement.
[0016] 4. In the above technical solution, the first cutting blade is a mesh structure, and the mesh openings of the mesh structure constitute the cutting edge. A further preferred embodiment, and to ensure the feasibility of the complete solution, is that the size of the mesh structure can be changed to meet the needs of drugs of different sizes. The mesh openings can be triangular, square, prismatic, honeycomb, etc.
[0017] 5. In the above technical solution, the second cutting mechanism has a second cutting drive unit for driving the second cutting blade. The second cutting drive unit drives the second cutting blade to move and displace in a direction perpendicular to the length extension of the strip-shaped adhesive drug. A further preferred embodiment, demonstrating the feasibility of the complete solution, explains the second cutting mechanism. This change in driving direction allows the T-shaped adhesive drug, after secondary cutting, to form a square T-shape, making weight control easier and ensuring a uniform volume and shape of the adhesive drug. The arrangement of this structure is also convenient and quick.
[0018] 6. In the above technical solution, there are two second cutting blades and two second cutting drive units, with the blades of the two second cutting blades arranged parallel to each other. A further preferred embodiment, demonstrating the feasibility of the complete solution, is that this structural arrangement of the second cutting blades enables efficient and rapid dicing operations, and the adhesive will not adhere to the second cutting blades. This utility model is not limited to this; other combinations such as three or four blades are also possible, and even a single blade is acceptable.
[0019] 7. In the above technical solution, the pushing drive unit is a cylinder, and the telescopic end of the pushing drive unit is connected to the pushing action end. A further preferred embodiment, considering the feasibility of the complete solution, is one preferred embodiment, which features a simple structure, precise and rapid driving action. This utility model is not limited to this; the pushing drive unit here is a linear drive mechanism.
[0020] 8. In the above technical solution, the pushing drive unit is a motor, and the driving end of the pushing drive unit is connected to the pushing action end through a gear screw motion assembly. A further preferred embodiment, and considering the feasibility of the complete solution, is the second preferred embodiment, which has a reliable and stable structure and can provide a sufficiently large pushing force to ensure that the adhesive drug is well cut into strips from the pushing chamber and the second cutting blade. This utility model is not limited to this; the pushing drive unit here is a rotary drive mechanism.
[0021] 9. In the above technical solution, the pushing end is a piston, and the pushing end and the inner wall of the pushing chamber are in clearance fit. A further preferred embodiment, and to ensure the feasibility of the complete solution, allows the pushing end to effectively act on the adhesive drug, and the piston moves freely back and forth in the pushing chamber. When the piston is lifted upwards, the adhesive drug will fall downwards.
[0022] 10. In the above technical solution, the conveying mechanism adopts one of the following: vibratory feeder, conveyor belt, and push rod conveying assembly.
[0023] 11. In this utility model, unless otherwise expressly specified and limited, the terms "installation," "connection," "joining," "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection, a direct connection, or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components, unless otherwise expressly limited. Those skilled in the art can understand the specific meaning of the above terms in this application according to the specific circumstances.
[0024] 12. In this utility model, the terms “center”, “upper”, “lower”, “axial”, “bottom”, “inner”, “outer”, etc., indicate the orientation or positional relationship based on the orientation or positional assembly relationship shown in the drawings. They are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this application.
[0025] 13. Furthermore, the terms "first," "second," etc., are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one of that feature. In the description of this application, "multiple" means at least two, such as two, three, etc., unless otherwise explicitly specified.
[0026] Due to the application of the above solution, this utility model has the following advantages and effects compared with the prior art:
[0027] The above-mentioned solution of this utility model realizes multi-stage cutting, accurate weighing and precise dispensing of adhesive drugs. The operating frequency of the second cutting blade and the downward pressing action of the pushing end can be matched, so that even drugs that are difficult to handle in the previous dispensing process and are particularly sticky can be dispensed quickly and accurately through the modified dispensing device, avoiding problems such as drug contamination, inaccurate dispensing and waste of medicinal materials during manual processing. Attached Figure Description
[0028] Appendix Figure 1 This is a three-dimensional schematic diagram (view 1) of an embodiment of the present invention, showing that the material pushing drive unit is a cylinder.
[0029] Appendix Figure 2 This is a three-dimensional schematic diagram (view 2) showing that the material pushing drive unit of this utility model is a cylinder.
[0030] Appendix Figure 3 This is a three-dimensional schematic diagram (view 1) of an embodiment of the present invention, showing that the material pushing drive unit is a motor.
[0031] Appendix Figure 4 This is a three-dimensional schematic diagram (view 2) of an embodiment of the present invention, showing that the material pushing drive unit is a motor.
[0032] Appendix Figure 5 This is a schematic diagram of the first cutting mechanism in an embodiment of the present invention.
[0033] Appendix Figure 6 This is a schematic diagram of the structure of the second cutting mechanism in an embodiment of this utility model.
[0034] The parts shown in the above attached diagram are illustrated below:
[0035] 1. Pushing mechanism
[0036] 11 Material Pushing Drive Unit
[0037] 111 cylinder
[0038] 1111 Telescopic End
[0039] 112 motor
[0040] 1121 Gear and Lead Screw Motion Assembly
[0041] 12 Pushing end
[0042] 2. Feed container
[0043] 21 Feed Inlet
[0044] 22 Pushing Chamber
[0045] 23 Discharge port
[0046] 3 First Cutting Mechanism
[0047] 31 First Cutting Blade
[0048] 311 Cutting edge
[0049] 32 First mounting plate
[0050] 4 Second cutting mechanism
[0051] 41 Second cutting blade
[0052] 42 Second cutting drive unit. Detailed Implementation
[0053] To make the above-mentioned objectives, features, and advantages of this application more apparent and understandable, the specific embodiments of this application are described in detail below with reference to the accompanying drawings. Many specific details are set forth in the following description to provide a thorough understanding of this application. However, this application can be implemented in many other ways different from those described herein, and those skilled in the art can make similar modifications without departing from the spirit of this application. Therefore, this application is not limited to the specific embodiments disclosed below.
[0054] As attached Figure 1 To be continued Figure 6 As shown, this utility model proposes a precise dispensing device for adhesive drugs, which is used for precise dispensing of adhesive drugs. The dispensing device includes a pushing mechanism 1, a feeding container 2, a first cutting mechanism 3, a second cutting mechanism 4, a weighing mechanism, and a conveying mechanism.
[0055] The pushing mechanism 1 has a pushing drive unit 11 and a pushing action end 12, and the pushing drive unit 11 drives the pushing action end 12 to move and displace.
[0056] The feeding container 2 is a container structure for placing adhesive drugs. The feeding container 2 has a connected inlet 21, a pushing chamber 22 and an outlet 23. The inlet 21 and the outlet 23 are at least partially open. The displacement path of the pushing end 12 is between the inlet 21 and the pushing chamber 22.
[0057] The first cutting mechanism 3 is located in the rear half of the pushing chamber 22 or at the discharge port 23. The first cutting mechanism 3 is a structure for cutting the adhesive drug into strips. The first cutting mechanism 3 has a first cutting blade 31.
[0058] The second cutting mechanism 4 is located on the outlet side of the first cutting mechanism 3. The second cutting mechanism 4 is a structure for cutting long strips of adhesive drugs into n-shaped pieces. The second cutting mechanism 4 has a second cutting blade 41.
[0059] The weighing mechanism and conveying mechanism (not shown in the figure) are located on the outlet side of the second cutting mechanism 4. The weighing mechanism is used to weigh the t-shaped adhesive drug, and the conveying mechanism is used to transport the weighed t-shaped adhesive drug to the next station.
[0060] The workflow of this utility model can be referenced as follows:
[0061] The bulk adhesive enters the feed container 2 through the feed inlet 21. Part of the adhesive enters the push chamber 22, and part of the adhesive is located at the front end of the push chamber 22. The push mechanism 1 works, and the push drive unit 11 drives the push action end 12 to push the adhesive from the feed inlet 21 into the push chamber 22. The pushed adhesive is cut into strips by the first cutter 31 on the first cutting mechanism 3 under the action of the push action end 12. The strip adhesive continues to be pushed forward under the action of the push action end 12 and enters the station of the second cutting mechanism 4 through the discharge port 23. The second cutter 41 on the second cutting mechanism 4 cuts the strip adhesive into T-shaped adhesive. The T-shaped adhesive enters the next station and is weighed by the weighing mechanism. After being accurately weighed, the T-shaped adhesive is finally transported to the next station by the conveying mechanism.
[0062] In the above embodiments of this utility model, the first cutting blade 31 has multiple cutting edges 311, and the opening direction of the cutting edges 311 is consistent with the length extension direction of the elongated adhesive drug. Further preferred embodiments and the feasibility of the complete solution are explained below. The structure of the first cutting blade 31 can cooperate well with the feeding mechanism 1, allowing the adhesive drug to be formed into an elongated adhesive drug from the cutting edges 311 after being pushed. The structure is simple and reasonable.
[0063] In the above embodiments of this utility model, the first cutting mechanism 3 includes a first mounting plate 32 spanning across the pushing chamber 22 or the discharge port 23 of the feeding container 2. The first cutting blade 31 is mounted in the first mounting plate 32, and the first cutting blade 31 is located on the pushing path of the adhesive drug under the action of the pushing end 12. Further preferred embodiments and the feasibility of the complete solution are explained, and the structure of the first cutting mechanism 3 is described to facilitate installation, adjustment, and subsequent replacement.
[0064] In the above embodiments of this utility model, the first cutting blade 31 has a mesh structure, and the mesh openings of the mesh structure constitute the cutting edge 311. In a further preferred embodiment, and to ensure the feasibility of the complete solution, the size of the mesh structure can be changed to meet the needs of drugs of different sizes. The mesh openings can be triangular, square, prismatic, honeycomb, etc.
[0065] In the above embodiments of this utility model, the second cutting mechanism 4 has a second cutting drive unit 42 for driving the second cutting blade 41. The second cutting drive unit 42 drives the second cutting blade 41 to move and displace in a direction perpendicular to the length extension of the strip-shaped adhesive drug. Further preferred embodiments and feasibility of the complete solution are explained below. The modified driving direction allows the T-shaped adhesive drug after secondary cutting to form a square T-shape, making weight control easier and ensuring a uniform volume and shape of the adhesive drug. The arrangement of this structure is also convenient and quick.
[0066] In the above embodiments of this utility model, reference is made to Figure 6 As shown, there are two second cutting blades 41 and two second cutting drive units 42, with the blades of the two second cutting blades 41 arranged parallel to each other. In a further preferred embodiment, and to demonstrate the feasibility of the complete solution, this structural arrangement of the second cutting blades 41 enables efficient and rapid dicing operations, and the adhesive will not adhere to the second cutting blades 41. This invention is not limited to this; other combinations such as three or four blades are also possible, and even a single blade is acceptable.
[0067] In the above embodiments of this utility model, reference is made to Figure 1 and Figure 2 As shown, the pushing drive unit 11 is a cylinder 111, and the telescopic end 1111 of the pushing drive unit 11 is connected to the pushing action end 12. A further preferred embodiment, considering the feasibility of the complete solution, is one preferred embodiment, which features a simple structure, precise and rapid driving action. This utility model is not limited to this; the pushing drive unit 11 here is a linear drive mechanism.
[0068] The linear drive mechanism adopts one of the following mechanisms:
[0069] (a) Cylinder 111, the piston rod of cylinder 111 serves as the working end of the linear drive mechanism;
[0070] (b) Linear motor 112, the rotor of linear motor 112 serves as the working end of the linear drive mechanism;
[0071] (c) The combination of control motor 112 and lead screw mechanism, wherein control motor 112 is stepper motor 112 or servo motor 112, lead screw and nut mechanism is formed by lead screw and nut to form a screw pair, control motor 112 is connected to lead screw transmission, and nut is the working end of linear drive mechanism;
[0072] (d) The control motor 112 is combined with the pulley mechanism, wherein the control motor 112 is a stepper motor 112 or a servo motor 112, and the pulley mechanism is a linear motion pair consisting of a pulley and a belt. The control motor 112 is connected to the belt through the wheel set, and the belt serves as the working end of the linear drive mechanism.
[0073] In the above embodiments of this utility model, reference is made to Figure 3 and Figure 4 As shown, the pushing drive unit 11 is a motor 112, and the driving end of the pushing drive unit 11 is connected to the pushing action end 12 through a gear screw motion assembly 1121. A further preferred embodiment, and considering the feasibility of the complete solution, is the second preferred embodiment, which has a reliable and stable structure and can provide a sufficiently large pushing force to ensure that the adhesive drug is well cut into strips from the pushing chamber 22 and the second cutting blade 41. This invention is not limited to this; the pushing drive unit 11 here is a rotary drive mechanism.
[0074] The rotary drive mechanism adopts one of the following mechanisms:
[0075] (a) Rotary cylinder 111, the piston rod of rotary cylinder 111 serves as the working end of the rotary drive mechanism;
[0076] (b) Control motor 112, the rotor of control motor 112 is the working end of the rotary drive mechanism.
[0077] In the above embodiments of this utility model, the pushing end 12 is a piston, and the pushing end 12 and the inner wall of the pushing cavity 22 are in clearance fit. A further preferred embodiment, and the feasibility of the complete embodiment, ensures that the pushing end 12 effectively acts on the adhesive drug, the piston moves freely back and forth in the pushing cavity 22, and when the piston is lifted upwards, the adhesive drug falls downwards.
[0078] In the above embodiments of this utility model, the conveying mechanism adopts one of the following: a vibratory feeder, a conveyor belt, and a push rod conveying assembly.
[0079] The preferred embodiment of this utility model will now be described.
[0080] In this preferred embodiment, the dispensing device includes a pushing mechanism 1, a feeding container 2, a first cutting mechanism 3, a second cutting mechanism 4, a weighing mechanism, and a conveying mechanism.
[0081] In this preferred embodiment, the pushing mechanism 1 has a pushing drive unit 11 and a pushing action end 12, and the pushing drive unit 11 drives the pushing action end 12 to move and displace.
[0082] In this preferred embodiment, the feeding container 2 is a container structure for holding the adhesive drug. The feeding container 2 has a connected inlet 21, a pushing chamber 22, and an outlet 23. Both the inlet 21 and the outlet 23 are at least partially open. The displacement path of the pushing end 12 is between the inlet 21 and the pushing chamber 22. The pushing drive unit 11 is a cylinder 111, and the telescopic end 1111 of the pushing drive unit 11 is connected to the pushing end 12. The pushing end 12 is a piston, and the pushing end 12 is clearance-fitted with the inner wall of the pushing chamber 22.
[0083] In this preferred embodiment, the first cutting mechanism 3 is located in the rear half of the feeding chamber 22 or at the outlet 23. The first cutting mechanism 3 is a structure for cutting the adhesive drug into strips, and it has a first cutting blade 31. The first cutting blade 31 has multiple cutting edges 311, and the opening direction of the cutting edges 311 is consistent with the length extension direction of the strip-shaped adhesive drug. The first cutting mechanism 3 includes a first mounting plate 32 spanning the feeding chamber 22 or the outlet 23 of the feeding container 2. The first cutting blade 31 is mounted in the first mounting plate 32, and the first cutting blade 31 is located on the feeding path of the adhesive drug under the action of the feeding end 12. The first cutting blade 31 has a mesh structure, and the mesh openings of the mesh structure constitute the cutting edges 311.
[0084] In this preferred embodiment, the second cutting mechanism 4 is located on the outlet side of the first cutting mechanism 3. The second cutting mechanism 4 is a structure for cutting a strip of adhesive medicine into a T-shape, and it has a second cutting blade 41. The second cutting mechanism 4 has a second cutting drive unit 42 for driving the second cutting blade 41. The second cutting drive unit 42 drives the second cutting blade 41 to move in a direction perpendicular to the length extension of the strip of adhesive medicine. There are two second cutting blades 41 and two second cutting drive units 42, and the blades of the two second cutting blades 41 are arranged parallel to each other.
[0085] In this preferred embodiment, the weighing mechanism and the conveying mechanism are located on the outlet side of the second cutting mechanism 4. The weighing mechanism is used to weigh the t-shaped adhesive drug, and the conveying mechanism is used to transport the weighed t-shaped adhesive drug to the next station.
[0086] Through the implementation of the above embodiments of this utility model, multi-stage cutting, accurate weighing and precise dispensing of adhesive drugs are achieved. The operating frequency of the second cutting blade 41 and the downward pressing action of the pushing end 12 can be matched, so that drugs that are difficult to handle in the previous dispensing process and are particularly sticky can be dispensed quickly and accurately through the modified dispensing device, avoiding problems such as drug contamination, inaccurate dispensing and waste of medicinal materials during manual processing, thus achieving the purpose of this utility model.
[0087] The above embodiments are only for illustrating the technical concept and features of this utility model, and are intended to enable those skilled in the art to understand the content of this utility model and implement it accordingly. They should not be construed as limiting the scope of protection of this utility model. All equivalent changes or modifications made in accordance with the spirit and essence of this utility model should be included within the scope of protection of this utility model.
Claims
1. A precise dispensing device for adhesive drugs, used for precise dispensing of adhesive drugs, characterized in that: The dispensing device includes a feeding mechanism (1), a feeding container (2), a first cutting mechanism (3), a second cutting mechanism (4), a weighing mechanism, and a conveying mechanism; wherein... The pushing mechanism (1) has a pushing drive unit (11) and a pushing action end (12), and the pushing drive unit (11) drives the pushing action end (12) to move and displace. The feeding container (2) is a container structure for placing adhesive drugs. The feeding container (2) has a connected inlet (21), a pusher chamber (22) and an outlet (23). The inlet (21) and the outlet (23) are at least partially open. The displacement path of the pusher end (12) is between the inlet (21) and the pusher chamber (22). The first cutting mechanism (3) is located in the rear half of the pushing chamber (22) or at the discharge port (23). The first cutting mechanism (3) is a structure for cutting the adhesive drug into strips. The first cutting mechanism (3) has a first cutting blade (31). The second cutting mechanism (4) is located on the outlet side of the first cutting mechanism (3). The second cutting mechanism (4) is a structure for cutting long strip adhesive drugs into t-shaped pieces. The second cutting mechanism (4) has a second cutting blade (41). The weighing mechanism and the conveying mechanism are located on the outlet side of the second cutting mechanism (4). The weighing mechanism is used to weigh the t-shaped adhesive drug, and the conveying mechanism is used to convey the weighed t-shaped adhesive drug to the next station.
2. The precise dispensing device for adhesive drugs according to claim 1, characterized in that: The first cutting blade (31) has a plurality of cutting edges (311), the opening direction of which is consistent with the length extension direction of the strip-shaped adhesive drug.
3. The precise dispensing device for adhesive drugs according to claim 2, characterized in that: The first cutting mechanism (3) includes a first mounting plate (32) spanning the push chamber (22) or the outlet (23) of the feed container (2). The first cutting blade (31) is mounted in the first mounting plate (32). The first cutting blade (31) is located on the push path of the adhesive drug under the action of the push end (12).
4. The precise dispensing device for adhesive drugs according to claim 3, characterized in that: The first cutting blade (31) has a mesh structure, and the mesh of the mesh structure forms the cutting edge (311).
5. The precise dispensing device for adhesive drugs according to claim 1, characterized in that: The second cutting mechanism (4) has a second cutting drive unit (42) for driving the second cutting blade (41), and the second cutting drive unit (42) drives the second cutting blade (41) to move in a direction perpendicular to the length extension of the strip-shaped adhesive drug.
6. The precise dispensing device for adhesive drugs according to claim 5, characterized in that: There are two second cutting blades (41) and two second cutting drive units (42), and the blades of the two second cutting blades (41) are arranged in parallel relative to each other.
7. The precise dispensing device for adhesive drugs according to claim 5, characterized in that: The pushing drive unit (11) is a cylinder (111), and the telescopic end (1111) of the pushing drive unit (11) is connected to the pushing action end (12).
8. The precise dispensing device for adhesive drugs according to claim 5, characterized in that: The pusher drive unit (11) is a motor (112), and the drive end of the pusher drive unit (11) is connected to the pusher action end (12) through the gear screw motion assembly (1121).
9. The precise dispensing device for adhesive drugs according to claim 1, characterized in that: The pushing end (12) is a piston, and the pushing end (12) and the inner wall of the pushing chamber (22) are in clearance fit.
10. The precise dispensing device for adhesive drugs according to claim 1, characterized in that: The conveying mechanism adopts one of the following: vibratory feeder, conveyor belt, and push rod conveying assembly.