Residue recycling device for liquid medicine production

By designing a residue reuse device for the production of medicine liquids, and using an electric telescopic rod to drive the extrusion sleeve and an electric heating plate drying and crushing knife to crush the residue, the problem of difficult residues in the production of medicine liquids is solved, and the recovery rate of medicine liquids and residue utilization rate is improved.

CN223083503UActive Publication Date: 2025-07-11ZHEJIANG NONGYING TECH CO LTD
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Patent Information

Application Number
CN202422171164.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-05
Publication Date
2025-07-11
Estimated Expiration
2034-09-05

AI Technical Summary

Technical Problem

The solid residue produced during the production of the pharmaceutical liquid is difficult to fully extrude, dry and crush, resulting in low recovery rate of the pharmaceutical liquid, low utilization rate of the residue and difficult to remove.

Method used

A residue reuse device for the production of medicine liquids is designed, including a recycling cylinder, a detachable filter cylinder and a guide seat, equipped with an electric heating plate and a crushing knife, which drives the extrusion sleeve to lift and lower through a multi-stage electric telescopic rod, and combines the electric heating plate drying and crushing knife to achieve multi-step treatment of residues.

Benefits of technology

It improves the recovery rate of the medicinal liquid and the dryness of the residue, facilitates the removal and reuse of the residue, and enhances the stability and operation flexibility of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of liquid medicine production, and discloses a residue recycling device for liquid medicine production, which comprises a recycling barrel, a liquid outlet pipe arranged below the recycling barrel, a detachable filter barrel arranged in the recycling barrel, a detachable guide seat arranged in the filter barrel, an electric heating plate embedded in the side wall of the guide seat, and a plurality of crushing cutters arranged below the guide seat. A control structure for controlling the smashing cutter to ascend and descend is arranged in the guide seat, a support is arranged above the recycling barrel, an extrusion sleeve matched with the filter barrel and the guide seat is arranged below the support, and the extrusion sleeve is driven by a multi-stage electric telescopic rod fixed to the support to ascend and descend. The device has the advantages that the residues can be extruded, dried, crushed and the like, the utilization rate of the residues is high, and materials are convenient to take.
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Description

Technical Field

[0001] The utility model relates to the technical field of liquid medicine production, in particular to a residue recycling device for liquid medicine production. Background Technique

[0002] During the production process of liquid medicine, a large amount of solid residue is often generated. These residues are usually regarded as waste for treatment. There is usually still some liquid medicine in the residues. Directly discarding them not only causes waste of resources, but also may cause environmental pollution.

[0003] At present, although there are some methods for treating the residues of liquid medicine production, most of them use specific equipment to squeeze and filter the liquid medicine residues to further separate the liquid medicine for recycling. This method still cannot ensure that the liquid medicine is fully squeezed out, nor can it further process the residues after extrusion. The residue recycling rate is low, and the residues after extrusion are still relatively humid and easy to stick to the inside of the equipment, making it difficult to take out. Content of the Utility Model

[0004] In order to solve the above various problems, the utility model proposes a residue recycling device for liquid medicine production, which can perform various treatments such as squeezing, drying, and pulverizing on the residues, has a high residue utilization rate, and is convenient for taking materials.

[0005] In order to solve the above technical problems, the technical solution proposed by the utility model is: a residue recycling device for liquid medicine production, including a recycling cylinder, a liquid outlet pipe is arranged below the recycling cylinder, a detachable filter cylinder is arranged inside the recycling cylinder, a detachable guide seat is arranged inside the filter cylinder, an electric heating plate is embedded in the side wall of the guide seat, several pulverizing knives are arranged below the guide seat, a control structure for controlling the lifting of the pulverizing knives is arranged inside the guide seat, a bracket is arranged above the recycling cylinder, and an extrusion sleeve for cooperating with the filter cylinder and the guide seat is arranged below the bracket. The extrusion sleeve is driven to lift by a multi-stage electric telescopic rod fixed on the bracket.

[0006] Further, the lower wall of the recycling cylinder is an arc surface protruding towards the liquid outlet pipe, and a valve is arranged on the liquid outlet pipe.

[0007] Based on the above characteristics, the arc surface design of the lower wall of the recycling cylinder can make the liquid medicine squeezed out from the residues flow more smoothly towards the liquid outlet pipe, avoiding liquid residue in the recycling cylinder. A valve is arranged on the liquid outlet pipe, which can conveniently control the discharge of the squeezed liquid medicine and improve the flexibility of operation.

[0008] Further, several connecting rods are connected to the upper edge of the filter cylinder, and the other ends of the connecting rods are connected and fixed to the upper wall of the recycling cylinder through screws. Several supporting seats for cooperating with the filter cylinder are connected inside the recycling cylinder.

[0009] Based on the above features, the connecting rod is fixedly connected to the upper wall of the recycling cylinder through screws, with a firm and reliable connection. At the same time, it is convenient for the disassembly and installation of the filter cylinder. The support base can provide stable support for the filter cylinder, ensuring that the filter cylinder will not shake or shift during operation, and guaranteeing the stability and reliability of the device.

[0010] Further, a magnetic attraction block is connected and provided at the center of the lower part of the guide seat, a magnet for cooperating with the magnetic attraction block is embedded at the center of the bottom surface of the filter cylinder, and the upper wall of the guide seat is an arc surface that bulges upward at the center.

[0011] Based on the above features, the magnetic attraction block and the magnet cooperate with each other, enabling the guide seat to be firmly fixed inside the filter cylinder, preventing the guide seat from moving during the operation of the device, and facilitating the quick disassembly and assembly of the guide seat. It is convenient and practical. The arc-shaped upper wall of the guide seat can play a good guiding role for the residue, enabling the residue to quickly and stably fall into the filter cylinder for processing.

[0012] Further, the control structure includes an activity cavity provided in the guide seat. A connecting plate is slidably provided in the activity cavity. The connecting plate is driven to lift and lower by an electric push rod fixed at the upper end of the activity cavity. A plurality of motors are connected below the connecting plate. The output end of the motor is connected with a rotating shaft, and the lower end of the rotating shaft extends out of the guide seat and the crushing knife is fixedly provided at the lower end of the rotating shaft.

[0013] Based on the above features, the electric push rod drives the crushing knife to lift and lower, and the position of the crushing knife can be flexibly adjusted according to the height of the residue and the processing requirements to achieve sufficient crushing.

[0014] Further, a sealing sleeve is rotatably connected at the joint of the lower wall of the guide seat and the rotating shaft. The rotating shaft is slidably arranged through the sealing sleeve, and a sealing gasket for cooperating with the rotating shaft is provided on the inner wall of the sealing sleeve.

[0015] Based on the above features, the sealing sleeve and the sealing gasket can effectively prevent the residue from entering the activity cavity, protecting components such as the electric push rod and the motor from being affected by the residue. The rotatable connection design of the sealing sleeve can reduce the friction between the rotating shaft and the sealing sleeve and extend the service life of the sealing sleeve.

[0016] Further, the bracket includes a support plate and a plurality of support columns. The support columns are arranged at the lower edge of the support plate, and their upper and lower ends are respectively fixedly connected to the support plate and the recycling cylinder. A sliding strip is connected to the side wall of the extrusion sleeve near the support column, and a sliding groove for cooperating with the sliding strip is provided on the support column.

[0017] Based on the above features, the design of multiple support columns and the support plate facilitates the addition of residue into the filter cylinder and also facilitates the disassembly and assembly of the filter cylinder. The sliding strip cooperating with the sliding groove can increase the lifting stability of the extrusion sleeve, thereby achieving a good extrusion effect.

[0018] The advantages of the present utility model compared with the prior art are as follows: The extrusion sleeve is driven by a multi-stage electric telescopic rod fixed on the bracket to lift and lower, which can extrude the residue in the recovery cylinder, squeeze out the residual liquid medicine in the residue, improve the dryness of the residue and the recovery rate of the liquid medicine. An electric heating plate is embedded in the side wall of the guiding seat, which can heat and dry the residue, reduce the moisture content in the residue, and is conducive to the recycling of the residue. The crushing knife driven by the motor can crush the residue in the filter cylinder, and the crushing knife can lift and lower under the action of the electric push rod. The cooperation of multiple crushing knives can fully crush the residue at different positions, facilitating the recycling of the residue powder. The detachable design of the filter cylinder and the guiding seat facilitates directly taking out the filter cylinder to achieve material taking, and the residue that has been dried and crushed will automatically separate from the filter cylinder wall, facilitating quick taking out. Description of the Drawings

[0019] Figure 1 is the three-dimensional view of the present utility model Figure 1 ;

[0020] Figure 2 is the three-dimensional view of the present utility model Figure 2 ;

[0021] Figure 3 is the front view of the present utility model;

[0022] Figure 4 is the sectional view of the present utility model,

[0023] Figure 5 is the enlarged view of part A of the present utility model.

[0024] As shown in the figure: 1. Recovery cylinder; 2. Liquid outlet pipe; 3. Filter cylinder; 4. Guiding seat; 5. Electric heating plate; 6. Crushing knife; 7. Extrusion sleeve; 8. Multi-stage electric telescopic rod; 9. Valve; 10. Connecting rod; 11. Support seat; 12. Magnetic attraction block; 13. Magnet; 14. Connecting plate; 15. Electric push rod; 16. Motor; 17. Rotating shaft; 18. Sealing sleeve; 19. Sealing gasket; 20. Support plate; 21. Support column. Detailed Embodiment

[0025] The following further describes the present utility model in detail with reference to the accompanying drawings.

[0026] Combined with the attached Figure 3 、attached Figure 4, A residue recycling device for liquid medicine production, including a recovery cylinder 1. A liquid outlet pipe 2 is provided below the recovery cylinder 1. The lower wall of the recovery cylinder 1 is an arc surface protruding towards the liquid outlet pipe 2. A valve 9 is provided on the liquid outlet pipe 2. The arc surface design of the lower wall of the recovery cylinder 1 can make the liquid medicine extruded from the residue flow more smoothly towards the liquid outlet pipe 2, avoiding liquid residue in the recovery cylinder 1. The valve 9 provided on the liquid outlet pipe 2 can conveniently control the discharge of the extruded liquid medicine, improving the flexibility of operation.

[0027] Combined with the attached Figure 1 and the attached Figure 4 , A detachable filter cylinder 3 is provided inside the recovery cylinder 1. Several connecting rods 10 are connected to the upper edge of the filter cylinder 3. The other ends of the connecting rods 10 are connected and fixed to the upper wall of the recovery cylinder 1 by screws. Several support seats 11 cooperating with the filter cylinder 3 are connected inside the recovery cylinder 1. The connecting rods 10 are connected and fixed to the upper wall of the recovery cylinder 1 by screws, with firm and reliable connection. At the same time, it is convenient for the disassembly and installation of the filter cylinder 3. The support seats 11 can provide stable support for the filter cylinder 3, ensuring that the filter cylinder 3 will not shake or shift during operation, and guaranteeing the stability and reliability of the device.

[0028] Combined with the attached Figure 1 and the attached Figure 4 , A detachable guide seat 4 is provided inside the filter cylinder 3. A magnetic attraction block 12 is connected to the center of the lower part of the guide seat 4. A magnet 13 cooperating with the magnetic attraction block 12 is embedded in the center of the bottom surface of the filter cylinder 3. The upper wall of the guide seat 4 is an arc surface protruding upwards from the center. The magnetic attraction block 12 and the magnet 13 cooperate with each other, enabling the guide seat 4 to be firmly fixed inside the filter cylinder 3, avoiding the movement of the guide seat 4 during the operation of the device, and facilitating the quick disassembly and assembly of the guide seat 4, which is convenient and practical. The arc surface of the upper wall of the guide seat 4 can play a good guiding role for the residue, enabling the residue to quickly and stably fall into the filter cylinder 3 for processing.

[0029] Combined with the attached Figure 4 and the attached Figure 5, an electric heating plate 5 is embedded in the side wall of the guiding seat 4. A plurality of crushing knives 6 are arranged below the guiding seat 4. A control structure for controlling the lifting of the crushing knives 6 is arranged in the guiding seat 4. The control structure includes a moving cavity arranged in the guiding seat 4. A connecting plate 14 is slidably arranged in the moving cavity. The connecting plate 14 is driven to lift by an electric push rod 15 fixed at the upper end of the moving cavity. A plurality of motors 16 are connected below the connecting plate 14. The output end of the motor 16 is connected with a rotating shaft 17. The lower end of the rotating shaft 17 extends out of the guiding seat 4 and the crushing knife 6 is fixedly arranged at the lower end of the rotating shaft 17. The electric push rod 15 drives the crushing knife 6 to lift, and the position of the crushing knife 6 can be flexibly adjusted according to the height of the residue and the processing requirements to achieve sufficient crushing. A sealing sleeve 18 is rotatably connected at the joint of the lower wall of the guiding seat 4 and the rotating shaft 17. The rotating shaft 17 is slidably arranged through the sealing sleeve 18. A sealing gasket 19 matching the rotating shaft 17 is arranged on the inner wall of the sealing sleeve 18. The sealing sleeve 18 and the sealing gasket 19 can effectively prevent the residue from entering the moving cavity and protect components such as the electric push rod 15 and the motor 16 from being affected by the residue. The rotatable connection design of the sealing sleeve 18 can reduce the friction between the rotating shaft 17 and the sealing sleeve 18 and extend the service life of the sealing sleeve 18.

[0030] Combined with the attached Figure 1 , attached Figure 2 , a bracket is arranged above the recovery cylinder 1. An extrusion sleeve 7 for cooperating with the filter cylinder 3 and the guiding seat 4 is arranged below the bracket. The extrusion sleeve 7 is driven to lift by a multi-stage electric telescopic rod 8 fixed on the bracket. The bracket includes a support plate 20 and a plurality of support columns 21. The support columns 21 are arranged at the lower edge of the support plate 20 and its upper and lower ends are respectively fixedly connected with the support plate 20 and the recovery cylinder 1. A slide bar is connected near the support column 21 on the side wall of the extrusion sleeve 7. A sliding groove for cooperating with the slide bar is arranged on the support column 21. The design of multiple support columns 21 and the support plate 20 facilitates adding residue into the filter cylinder 3 and also facilitates disassembling and assembling the filter cylinder 3. The slide bar cooperating with the sliding groove can increase the lifting stability of the extrusion sleeve 7, thereby achieving a good extrusion effect.

[0031] Specific embodiments of the present utility model: Install the device at a suitable position and connect it to an external power supply. Place the guide seat 4 inside the filter cartridge 3. The magnetic attraction block 12 cooperates with the magnet 13 to fix the guide seat 4 in the middle of the filter cartridge 3. Place the filter cartridge 3 into the recovery cylinder 1 so that its lower end contacts the support seat 11. Use screws to connect and fix the connecting rod 10 to the recovery cylinder 1, and the fixation of the filter cartridge 3 can be achieved. Put the drug residue into the filter cartridge 3, and the residue falls along the guide seat 4 into the filter cartridge 3 and is located around the guide seat 4. Control the multi-stage electric telescopic rod 8 to drive the extrusion sleeve 7 to move downward. At the same time, the sliding strip slides in the chute. The extrusion sleeve 7 enters between the filter cartridge 3 and the guide seat 4 and squeezes the residue. The squeezed liquid medicine enters the recovery cylinder 1 after being filtered by the filter cartridge 3. Open the valve 9 regularly to discharge and collect the liquid medicine from the liquid outlet pipe 2. After extrusion, control the multi-stage electric telescopic rod 8 to drive the extrusion sleeve 7 to move upward. Turn on the electric heating plate 5 to heat and dry the residue. During the process, the residue spreads out and detaches from the side walls of the filter cartridge 3 and the guide seat 4. After drying for a period of time, control the extrusion sleeve 7 to descend again, squeeze the dried residue below the guide seat 4 to contact the crushing knife 6, and turn on the motor 16. The motor 16 drives the crushing knife 6 to rotate through the rotating shaft 17. At the same time, the sealing sleeve 18 rotates in cooperation to achieve the crushing of the residue. During the process, the electric push rod 15 can also be controlled to drive the connecting plate 14 to move downward, thereby changing the height of the crushing knife 6 and achieving the crushing of residues at different heights. After crushing is completed, take out the filter cartridge 3 and the guide seat 4, pour out and collect the residue powder for reuse.

[0032] In the description of the present utility model, it should be noted that unless otherwise clearly specified and limited, the term "connection" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; for those of ordinary skill in the art, the specific meaning of the above terms in the present utility model can be understood according to specific situations.

[0033] The above describes the present utility model and its embodiments. This description is not restrictive. What is shown in the drawings is only one of the embodiments of the present utility model, and the actual structure is not limited thereto. Generally speaking, if those of ordinary skill in the art are inspired by it and without departing from the gist of the creation of the present utility model, they design similar structural modes and embodiments to this technical solution without creative efforts, and all should belong to the protection scope of the present utility model.

Claims

1. A residue recycling device for liquid medicine production, comprising a recovery cylinder (1), characterized in that: A liquid outlet pipe (2) is provided below the recovery cylinder (1). A detachable filter cylinder (3) is provided inside the recovery cylinder (1). A detachable guide seat (4) is provided inside the filter cylinder (3). An electric heating plate (5) is embedded in the side wall of the guide seat (4). A plurality of crushing knives (6) are provided below the guide seat (4). A control structure for controlling the lifting of the crushing knives (6) is provided inside the guide seat (4). A bracket is provided above the recovery cylinder (1). An extrusion sleeve (7) for cooperating with the filter cylinder (3) and the guide seat (4) is provided below the bracket. The extrusion sleeve (7) is driven to lift by a multi-stage electric telescopic rod (8) fixed on the bracket.

2. The residue recycling device for liquid medicine production according to claim 1, wherein: The lower wall of the recovery cylinder (1) is an arc surface protruding towards the liquid outlet pipe (2). A valve (9) is provided on the liquid outlet pipe (2).

3. The residue recycling device for liquid medicine production according to claim 1, characterized in that: A plurality of connecting rods (10) are connected and provided at the upper end edge of the filter cylinder (3). The other ends of the connecting rods (10) are connected and fixed to the upper wall of the recovery cylinder (1) by screws. A plurality of support seats (11) for cooperating with the filter cylinder (3) are connected and provided inside the recovery cylinder (1).

4. A residue recycling device for liquid medicine production according to claim 1, characterized in that: A magnetic attraction block (12) is connected and provided at the center of the lower surface of the guide seat (4). A magnet (13) for cooperating with the magnetic attraction block (12) is embedded at the center of the bottom surface of the filter cylinder (3). The upper wall of the guide seat (4) is an arc surface protruding upwards at the center.

5. A residue recycling device for liquid medicine production according to claim 1, wherein: The control structure includes a movable cavity provided inside the guide seat (4). A connecting plate (14) is slidably provided inside the movable cavity. The connecting plate (14) is driven to lift by an electric push rod (15) fixed at the upper end of the movable cavity. A plurality of motors (16) are connected and provided below the connecting plate (14). The output end of the motor (16) is connected with a rotating shaft (17). The lower end of the rotating shaft (17) extends out of the guide seat (4) and the crushing knife (6) is fixedly provided at the lower end of the rotating shaft (17).

6. The residue recycling device for liquid medicine production according to claim 5, characterized in that: A sealing sleeve (18) is rotatably connected at the joint of the lower wall of the guide seat (4) and the rotating shaft (17). The rotating shaft (17) is slidably arranged through the sealing sleeve (18). A sealing gasket (19) for cooperating with the rotating shaft (17) is provided on the inner wall of the sealing sleeve (18).

7. A residue recycling device for liquid medicine production according to claim 1, characterized in that: The bracket includes a support plate (20) and a plurality of support columns (21). The support columns (21) are provided at the lower edge of the support plate (20) and their upper and lower ends are respectively fixedly connected with the support plate (20) and the recovery cylinder (1). A slide bar is connected and provided on the side wall of the extrusion sleeve (7) near the support column (21). A slide groove for cooperating with the slide bar is provided on the support column (21).