Swing arm type rubber plug cleaning machine
Through the multi-stage cleaning technology of swing arm type rubber plug cleaning machine, the problems of low efficiency and pollution risk in traditional manual cleaning are solved, and efficient and clean rubber plug cleaning is achieved, adapting to different specifications and meeting pharmaceutical industry standards.
Patent Information
- Application Number
- CN202510709230.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-29
- Publication Date
- 2025-07-08
AI Technical Summary
Traditional rubber plug cleaning relies on manual operation, which has problems such as low efficiency, large quality fluctuations, high energy consumption, easy damage to the rubber plug and risk of artificial contact pollution.
The swing arm plug cleaning machine is used to achieve multi-stage cleaning through a combination of lifting mechanism, ultrasonic generator and air compressor cleaning, including cleaning water overflow, ultrasonic overflow and bubble overflow, combined with automated control and recording systems, ensuring that the cleanliness meets the pharmaceutical industry standards.
It realizes efficient and even cleaning of rubber plugs, reduces the risk of artificial pollution, complies with GMP specifications, adapts to rubber plugs of different specifications, has a thorough cleaning effect, and reduces the residual risk of chemical cleaning agents.
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Figure CN120268718A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of rubber stopper cleaning machines, and more specifically to a swing arm type rubber stopper cleaning machine. Background Art
[0002] A vial, also known as a borosilicate glass or soda-lime glass controlled (molded) injection bottle, is a small bottle sealed with a rubber stopper and an aluminum-plastic combination cap. Penicillin was mostly filled in it in the early days, so it was named vial, and its rubber stopper is an important component of the vial.
[0003] Traditional cleaning methods rely on manual operation of simple tools to complete, which have problems such as low efficiency, large quality fluctuations, high energy consumption, easy damage to rubber stoppers, and are prone to the risk of manual contact contamination. Therefore, a new technical solution is needed to solve this problem. Summary of the Invention
[0004] The purpose of the present invention is to provide a swing arm type rubber stopper cleaning machine to solve the problems raised in the background art.
[0005] To achieve the above purpose, the present invention provides the following technical solution: A swing arm type rubber stopper cleaning machine, comprising: a machine body, a cleaning tank is arranged inside the machine body, and a partition is arranged inside the cleaning tank. An overflow hole is arranged inside the partition, and an overflow tank is formed in the cleaning tank through the partition. An overflow drain port is arranged on the side of the overflow tank. A lifting mechanism is arranged inside one side of the machine body, and the lifting mechanism includes a fixed column. A telescopic groove is arranged inside the fixed column, and a lifting rod is arranged inside the telescopic groove. The top of the lifting rod is provided with a support plate, and a lifting frame is arranged below the support plate. A connecting cover is arranged below the lifting frame, and a cleaning net barrel is arranged below the connecting cover. The connecting cover is threadedly connected with the cleaning net barrel. A drain pipe, a water inlet pipe and a detergent adding pipe are arranged at the bottom of the cleaning tank, and they are all communicated with the cleaning tank. Control valve groups are arranged on the surfaces of the drain pipe, the water inlet pipe and the detergent adding pipe. The control valve of the water inlet pipe is a diaphragm valve. An air compressor is arranged at the bottom inside the machine body, and an output end of the air compressor is provided with a purification booster pump. An output end of the purification booster pump extends into the cleaning tank and is provided with an aeration disc. A controller is arranged inside the other side of the machine body, and several groups of ultrasonic generators are arranged above the controller. A transfer plate is installed on the side of the ultrasonic generator and is fixedly connected with the transfer plate. The other side of the transfer plate extends into the cleaning tank. A control panel is arranged on the side of the machine body, and the control panel is connected with the control circuit inside the machine body.
[0006] As a preferred embodiment of the present invention, a moving mechanism is arranged at the bottom of the machine body, and the moving mechanism includes a steering shaft, a mounting frame, moving wheels and a self-locking mechanism.
[0007] As a preferred embodiment of the present invention, an installation base is provided at the bottom of the fixed column, and a lifting motor is provided on the upper part of the installation base. The power output end of the lifting motor extends into the interior of the installation base and is equipped with a driving gear. The bottom of the screw rod extends into the interior of the installation base and is equipped with a driven gear. A linkage gear is arranged between the driving gear and the driven gear. A threaded hole is provided inside the telescopic rod, and the screw rod extends into the threaded hole and is threadedly connected thereto.
[0008] As a preferred embodiment of the present invention, a chassis is provided at the bottom of the cleaning mesh barrel, and a fitting groove is provided inside the chassis. The fitting groove and the aeration disc are fitted with each other.
[0009] As a preferred embodiment of the present invention, uniformly sized mesh holes are provided on the surface of the cleaning mesh barrel and inside the chassis.
[0010] As a preferred embodiment of the present invention, a fixed seat is provided on the upper part of the machine body, and the lifting rod extends into the interior of the fixed seat and is slidably connected thereto.
[0011] As a preferred embodiment of the present invention, sliding rods are provided on both sides of the lifting rod, and the bottoms of the sliding rods extend into the installation space of the lifting mechanism. The tops of the sliding rods are connected to the support plate.
[0012] As a preferred embodiment of the present invention, the lifting frame is arranged in a triangular structure and is rotatably connected to the connecting cover.
[0013] As a preferred embodiment of the present invention, a temperature sensor and a liquid level sensor are provided in the installation space of the lifting mechanism. The detection ends of the temperature sensor and the liquid level sensor extend into the cleaning tank and are electrically connected to the control panel.
[0014] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0015] The present invention is provided with a cleaning tank inside the body, and a partition is arranged inside the cleaning tank. An overflow hole is arranged inside the partition, and an overflow tank is formed in the cleaning tank through the partition. An overflow drain port is arranged on the side of the overflow tank. A lifting mechanism is arranged inside one side of the body, and the lifting mechanism includes a fixed column. A telescopic groove is arranged inside the fixed column, and a lifting rod is arranged inside the telescopic groove. A support plate is arranged at the top of the lifting rod, and a lifting frame is arranged at the lower part of the support plate. A connecting cover is arranged at the lower part of the lifting frame, and a cleaning net barrel is arranged at the lower part of the connecting cover. The connecting cover is threadedly connected with the cleaning net barrel. The cleaning net barrel can be hoisted through the cooperation of the lifting rod and the connecting cover, which is convenient for it to enter the cleaning tank. A drain pipe, a water inlet pipe and a detergent adding pipe are arranged at the bottom of the cleaning tank, and they are all communicated with the cleaning tank. Control valve groups are arranged on the surfaces of the drain pipe, the water inlet pipe and the detergent adding pipe. The control valve of the water inlet pipe is a diaphragm valve. An air compressor is arranged at the bottom inside the body, and a purification booster pump is arranged at the output end of the air compressor. The output end of the purification booster pump extends into the cleaning tank and is provided with an aeration disc. A controller is arranged inside the other side of the body, and several groups of ultrasonic generators are arranged at the upper part of the controller. A transfer plate is arranged on the side of the ultrasonic generator and is fixedly connected with the transfer plate. The other side of the transfer plate extends into the cleaning tank. Rubber stoppers are added into the cleaning net barrel from the inlet. The water inlet pipe leads the cleaning water pipe into the cleaning tank. The cleaning net barrel moves up and down in the cleaning tank through the lifting mechanism, so that the rubber stoppers in the cleaning net barrel can be fully and evenly rinsed. The cleaning water is discharged into the overflow tank through the overflow hole at the top of the partition and is discharged through the overflow drain port. Open the diaphragm valve of the water inlet pipe to re-enter water. When the water level reaches the specified height, turn on the ultrasonic generator and clean for the specified time. The cleaning water flows out through the top overflow hole. After the ultrasonic cleaning is completed, turn on the air compressor. Compressed air enters the aeration disc at the bottom of the cleaning tank through the purification booster pump, and the aeration disc forms bubbles to bubble-clean the rubber stoppers. At the same time, new water enters from the bottom, and the cleaning water is discharged through the top overflow hole. The cleaning process of the rubber stoppers includes the stages of cleaning water overflow cleaning, ultrasonic overflow cleaning and bubbling overflow cleaning. Different cleaning methods and times are set through different formulas in each stage, and they can be recorded and form a report. Multiple cleaning methods can effectively remove the residues in the fine structures such as the umbilicus and pores of the rubber stoppers, and the cleanliness reaches the aseptic production standard of the pharmaceutical industry; the automated equipment reduces the risk of secondary pollution caused by manual transfer procedures and complies with the GMP specification; the equipment can be adapted to different specifications of rubber stoppers and is not easy to damage the rubber stoppers. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 It is a schematic diagram of the overall structure of the present invention;
[0017] Figure 2 It is a schematic diagram of the structure of the present invention from another angle;
[0018] Figure 3Schematic side sectional view of the present invention;
[0019] Figure 4 Schematic side view of the present invention;
[0020] Figure 5 Schematic sectional view of the lifting mechanism of the present invention.
[0021] In the figure: 1, body; 2, moving mechanism; 3, control panel; 4, cleaning tank; 5, partition; 6, overflow hole; 7, controller; 8, ultrasonic generator; 9, fixed seat; 10, lifting rod; 11, sliding rod; 12, support plate; 13, lifting frame; 14, connecting cover; 15, cleaning net barrel; 16, overflow tank; 17, overflow drain port; 18, water inlet pipe; 19, drain pipe; 20, detergent adding pipe; 21, control valve group; 22, lifting mechanism; 23, chassis; 24, fitting groove; 25, air compressor; 26, purification booster pump; 27, aeration disc; 28, transfer plate; 29, lifting motor; 30, fixed column; 31, telescopic groove; 32, screw; 33, driven gear; 34, driving gear; 35, mounting seat; 36, linkage gear; 37, threaded hole; 38, liquid level sensor; 39, temperature sensor. Detailed implementation manners
[0022] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0023] Please refer to Figures 1-5 , the present invention provides a technical solution: a swing-arm rubber stopper cleaning machine.
[0024] Regarding the above problems to be solved: The traditional cleaning method relies on manual operation of simple tools to complete, and there are problems such as low efficiency, large quality fluctuations, high energy consumption, easy damage to rubber stoppers, and the problem of easy risk of manual contact pollution.
[0025] The solution is as follows: A swing-arm rubber stopper cleaning machine, comprising: a machine body 1, inside which there is a cleaning tank 4, and inside the cleaning tank 4 there is a partition 5. Inside the partition 5 there are overflow holes 6, and an overflow tank 16 is formed in the cleaning tank 4 by the partition 5. On the side of the overflow tank 16 there is an overflow drain port 17. Inside one side of the machine body 1 there is a lifting mechanism 22, and the lifting mechanism 22 includes a fixed column 30. Inside the fixed column 30 there is a telescopic groove 31, and inside the telescopic groove 31 there is a lifting rod 10. At the top of the lifting rod 10 there is a support plate 12, and at the lower part of the support plate 12 there is a lifting frame 13. At the lower part of the lifting frame 13 there is a connecting cover 14, and at the lower part of the connecting cover 14 there is a cleaning mesh barrel 15. The connecting cover 14 is threadedly connected to the cleaning mesh barrel 15. At the bottom of the cleaning tank 4 there are a drain pipe 19, a water inlet pipe 18 and a detergent adding pipe 20, all of which are communicated with the cleaning tank 4. On the surfaces of the drain pipe 19, the water inlet pipe 18 and the detergent adding pipe 20 there is a control valve group 21. The control valve of the water inlet pipe 18 is a diaphragm valve. At the inner bottom of the machine body 1 there is an air compressor 25, and at the output end of the air compressor 25 there is a purification booster pump 26. The output end of the purification booster pump 26 extends into the cleaning tank 4 and is equipped with an aeration disc 27. Inside the other side of the machine body 1 there is a controller 7, and on the upper part of the controller 7 there are several groups of ultrasonic generators 8. On the side of the ultrasonic generator 8 there is a transfer plate 28 and they are fixedly connected to each other. The other side of the transfer plate 28 extends into the cleaning tank 4. On the side of the machine body 1 there is a control panel 3, and the control panel 3 is connected to the control circuit inside the machine body 1. The rubber stoppers are added into the cleaning mesh barrel 15 through the inlet. The water inlet pipe 18 introduces the cleaning water into the cleaning tank 4. The cleaning mesh barrel 15 moves up and down in the cleaning tank 4 through the lifting mechanism 22, so that the rubber stoppers in the cleaning mesh barrel 15 can be fully and evenly rinsed. The cleaning water is discharged into the overflow tank 16 through the overflow holes 6 at the top of the partition 5, and is discharged through the overflow drain port 17. Open the diaphragm valve of the water inlet pipe 18 to re-introduce water. When the water level reaches the specified height, turn on the ultrasonic generator 8 and clean for the specified time. The cleaning water flows out through the top overflow holes 6. After the ultrasonic cleaning is completed, turn on the air compressor 25. Compressed air enters the aeration disc 27 at the bottom of the cleaning tank 4 through the purification booster pump 26. The aeration disc 27 forms bubbles to perform bubble cleaning on the rubber stoppers. At the same time, new water enters from the bottom, and the cleaning water is discharged through the top overflow holes 6. The rubber stopper cleaning process includes stages of cleaning water overflow cleaning, ultrasonic overflow cleaning, and bubble overflow cleaning. Different cleaning methods and times are set through different formulations in each stage, and can be recorded and form a report. A variety of cleaning methods can effectively remove the residues in the fine structures such as the umbilicus and pores of the rubber stoppers, and the cleanliness reaches the aseptic production standard of the pharmaceutical industry; the automated equipment reduces the risk of secondary pollution caused by manual transfer procedures and complies with GMP specifications;The device can be adapted to different specifications of rubber stoppers and is not easy to damage the rubber stoppers.
[0026] Further improved, such as Figure 1 As shown: A moving mechanism 2 is provided at the bottom of the body 1, and the moving mechanism 2 includes a steering shaft, a mounting bracket, moving wheels and a self-locking mechanism. This setting enables the cleaning machine to be conveniently moved to different positions, improving the flexibility and applicability of the device.
[0027] Further improved, such as Figure 5 As shown: A mounting seat 35 is provided at the bottom of the fixed column 30, and a lifting motor 29 is provided at the upper part of the mounting seat 35. The power output end of the lifting motor 29 extends into the interior of the mounting seat 35 and is equipped with a driving gear 34. The bottom of the screw rod 32 extends into the interior of the mounting seat 35 and is equipped with a driven gear 33. A linkage gear 36 is provided between the gear and the driven gear 33. A threaded hole 37 is provided inside the telescopic rod, and the screw rod 32 extends into the threaded hole 37 and is threadedly connected thereto. Through the drive of the lifting motor 29, the up and down movement of the lifting rod 10 is realized, thereby controlling the position of the cleaning net barrel 15 in the cleaning tank 4, making the cleaning process more flexible, and the height of the cleaning net barrel 15 can be adjusted according to needs to ensure the cleaning effect.
[0028] Further improved, such as Figure 3 As shown: A chassis 23 is provided at the bottom of the cleaning net barrel 15, and a fitting groove 24 is provided inside the chassis 23. The fitting groove 24 and the aeration disc 27 are mutually fitted. The design of the chassis 23 and the fitting groove 24 enables the cleaning net barrel 15 to be stably placed on the aeration disc 27, ensuring the effect of bubbling cleaning.
[0029] Further improved, such as Figure 3 As shown: Uniform-sized mesh holes are provided on the surface of the cleaning net barrel 15 and inside the chassis 23. The uniform mesh hole design ensures the uniform distribution of water flow during the cleaning process, improving the cleaning effect. The size of the mesh holes of different cleaning net barrels 15 can also be adjusted according to actual needs to adapt to different specifications of rubber stoppers.
[0030] Further improved, such as Figure 1 As shown: A fixed seat 9 is provided at the upper part of the body 1, and the lifting rod 10 extends into the interior of the fixed seat 9 and is slidably connected thereto. The design of the fixed seat 9 makes the lifting rod 10 more stable during the up and down movement, reducing shaking and deviation, and improving the precision and effect of cleaning.
[0031] Further improved, such as Figure 1As shown: Slide bars 11 are arranged on both sides of the lifting rod 10, and the bottom of the slide bars 11 extends into the installation space of the lifting mechanism 22. The top of the slide bars 11 is connected to the support plate 12. The design of the slide bars 11 further enhances the stability of the lifting mechanism 22 and ensures the smoothness of the cleaning net barrel 15 during the up and down movement.
[0032] Further improved, as Figure 1 shown: The lifting frame 13 is arranged in a triangular structure and is rotatably connected to the connecting cover 14. The design of the triangular structure makes the lifting frame 13 more stable, capable of bearing greater weight and torque, and ensuring the safety of the cleaning net barrel 15 during the lifting process.
[0033] Further improved, as Figure 5 shown: A temperature sensor 39 and a liquid level sensor 38 are arranged in the installation space of the lifting mechanism 22. The detection ends of the temperature sensor 39 and the liquid level sensor 38 extend into the cleaning tank 4 and are electrically connected to the control panel 3. The sensors can monitor the temperature and liquid level changes in the cleaning tank 4 in real time, provide accurate data support for the control panel 3, and ensure the controllability and stability of the cleaning process.
[0034] Working principle: Add the rubber stoppers into the cleaning mesh barrel 15 through the inlet, ensuring uniform distribution. Start the control valve of the water inlet pipe 18 through the control panel 3 to introduce the cleaning water into the cleaning tank 4 until the water level reaches the predetermined height. The cleaning mesh barrel 15 moves up and down in the cleaning tank 4 through the lifting mechanism 22, enabling the rubber stoppers in the cleaning mesh barrel 15 to be fully and evenly rinsed. The cleaning water is discharged into the overflow tank 16 through the overflow holes 6 at the top of the partition 5 and is discharged through the overflow drain port 17. Through physical rinsing, the dirt and impurities on the surface of the rubber stoppers are initially removed. When the water level reaches the specified height, turn on the ultrasonic generator 8 and perform cleaning for a specified time. The vibration waves generated by the ultrasonic waves form cavitation in the cleaning liquid to deeply clean the rubber stoppers. The cleaning water flows out through the top overflow holes 6, carrying away the dirt and impurities washed off. Ultrasonic cleaning can penetrate into the fine structures of the rubber stoppers, effectively removing residues and improving the cleaning effect. After the ultrasonic cleaning is completed, turn on the air compressor 25. Compressed air enters the aeration disc 27 at the bottom of the cleaning tank 4 through the purification booster pump 26. The aeration disc 27 forms bubbles to perform bubble cleaning on the rubber stoppers. At the same time, new water enters from the bottom, and the cleaning water is discharged through the top overflow holes 6, carrying away the remaining dirt and impurities. Bubble cleaning can further enhance the cleaning effect and perform secondary cleaning on the rubber stoppers through the bursting effect of the bubbles to ensure thorough cleaning. After cleaning is completed, close all control valves and power supplies, and discharge the wastewater in the cleaning tank 4 through the drain pipe 19 to prepare for the next cleaning. The equipment is equipped with an automatic recording system, recording the operation process, time, date, clean air pressure, and operators, etc. The equipment operating system is configured with an industrial IPC computer, which can record the data of the equipment operation at any time, set different parameter formulas, batch reports, formula reports, alarm records, audit trails, remote services, etc. Records, reports, and statements can be read through the MES or SCADA system. The equipment for cleaning rubber stoppers can reduce manual input and control manual pollution; through the micro-jet and shock waves generated by the ultrasonic cavitation effect, it can penetrate into areas such as the tiny pores and complex curved surfaces of the rubber stoppers that are difficult to reach by traditional cleaning, completely stripping off oil stains, particulate matter, and microbial residues; it has a strong ability to remove stubborn pollutants such as grease and gum, and the cleaning process does not rely on a large amount of chemical cleaning agents, reducing the residue risk.
[0035] The foregoing has shown and described the basic principles, main features and advantages of the present invention. For a person skilled in the art, it is obvious that the present invention is not limited to the details of the above-mentioned exemplary embodiments, and without departing from the spirit or basic characteristics of the present invention, the present invention can be implemented in other specific forms. Therefore, in any aspect, the embodiments should be regarded as exemplary and non-limiting. The scope of the present invention is defined by the appended claims rather than the above description. Therefore, it is intended to embrace all changes within the meaning and scope of the equivalent elements of the claims in the present invention. Any reference signs in the claims should not be construed as limiting the claimed claim.
[0036] Finally, several points should be noted: First, in the description of the present application, it should be noted that unless otherwise specified and defined, the terms "installation", "connection", and "connection" should be understood in a broad sense, which can be a mechanical connection or an electrical connection, or the communication inside two components, and can be directly connected. "Upper", "lower", "left", "right", etc. are only used to represent the relative position relationship. When the absolute position of the object being described changes, the relative position relationship may change.
[0037] Finally, it should be noted that the above are only the preferred embodiments of the present invention and are not used to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, for those skilled in the art, they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements on some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.
Claims
1. A swing-arm rubber stopper cleaning machine, characterized in that: Comprising: A body (1), inside which there is a cleaning tank (4), and inside the cleaning tank (4) there is a partition plate (5). The partition plate (5) is provided with overflow holes (6). An overflow tank (16) is formed in the cleaning tank (4) by the partition plate (5). The side of the overflow tank (16) is provided with an overflow drain port (17). Inside one side of the body (1) there is a lifting mechanism (22), and the lifting mechanism (22) includes a fixed column (30). Inside the fixed column (30) there is a telescopic slot (31), and inside the telescopic slot (31) there is a lifting rod (10). The top of the lifting rod (10) is provided with a support plate (12), and below the support plate (12) there is a lifting bracket (13). Below the lifting bracket (13) there is a connection cover (14), and below the connection cover (14) there is a cleaning net barrel (15). The connection cover (14) is threadedly connected to the cleaning net barrel (15). The bottom of the cleaning tank (4) is provided with a drain pipe (19), a water inlet pipe (18), and a detergent adding pipe (20), all of which are in communication with the cleaning tank (4). The surfaces of the drain pipe (19), the water inlet pipe (18), and the detergent adding pipe (20) are provided with a control valve group (21). The control valve of the water inlet pipe (18) is a diaphragm valve. Inside the bottom of the body (1) there is an air compressor (25), and the output end of the air compressor (25) is provided with a purification booster pump (26). The output end of the purification booster pump (26) extends into the cleaning tank (4) and is provided with an aeration disc (27). Inside the other side of the body (1) there is a controller (7), and above the controller (7) there are several groups of ultrasonic generators (8). The side of the ultrasonic generator (8) is provided with and fixedly connected to a transfer plate (28). The other side of the transfer plate (28) extends into the cleaning tank (4). The side of the body (1) is provided with a control panel (3), and the control panel (3) is connected to the control circuit inside the body (1).
2. The swing-arm rubber stopper cleaning machine according to claim 1, wherein: The bottom of the body (1) is provided with a moving mechanism (2), and the moving mechanism (2) includes a steering shaft, a mounting bracket, moving wheels, and a self-locking mechanism.
3. The swing-arm rubber stopper cleaning machine according to claim 1, wherein: The bottom of the fixed column (30) is provided with a mounting seat (35), and above the mounting seat (35) there is a lifting motor (29). The power output end of the lifting motor (29) extends into the mounting seat (35) and is provided with a driving gear (34). The bottom of the screw rod (32) extends into the mounting seat (35) and is provided with a driven gear (33). A linkage gear (36) is provided between the gear and the driven gear (33). Inside the telescopic rod there is a threaded hole (37), and the screw rod (32) extends into the threaded hole (37) and is threadedly connected thereto.
4. A swing-arm type rubber stopper cleaning machine according to claim 1, characterized in that: The bottom of the cleaning net barrel (15) is provided with a chassis (23), and inside the chassis (23) there is a fitting groove (24). The fitting groove (24) and the aeration disc (27) are mutually fitted.
5. A swing-arm type rubber stopper cleaning machine according to claim 1, characterized in that: The surfaces of the cleaning mesh barrel (15) and the interior of the chassis (23) are both provided with uniformly sized mesh holes.
6. The swing arm type rubber stopper cleaning machine according to claim 1, wherein: A fixed seat (9) is provided at the upper part of the machine body (1), and the lifting rod (10) extends into the interior of the fixed seat (9) and is slidably connected thereto.
7. The swing-arm rubber stopper cleaning machine according to claim 1, wherein: Sliding rods (11) are provided on both sides of the lifting rod (10), and the bottoms of the sliding rods (11) extend into the installation space of the lifting mechanism (22). The tops of the sliding rods (11) are connected to the support plate (12).
8. A swing arm type rubber stopper washing machine according to claim 1, characterized in that: The lifting frame (13) is arranged in a triangular structure and is rotatably connected to the connection cover (14).
9. The swing-arm type rubber stopper cleaning machine according to claim 1, characterized in that: A temperature sensor (39) and a liquid level sensor (38) are arranged in the installation space of the lifting mechanism (22). The detection ends of the temperature sensor (39) and the liquid level sensor (38) extend into the cleaning tank (4) and are electrically connected to the control panel (3).
Citation Information
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