Double-station high-pressure cleaning machine

CN224749633UActive Publication Date: 2026-09-15NINGBO MARTIN EMBODIED ROBOT TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202522263210.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-27
Publication Date
2026-09-15
Estimated Expiration
2035-10-27

AI Technical Summary

Technical Problem

由于常压下清洗效率较低,零部件表面残留物无法达到技术要求、且效率低下

Benefits of technology

[0005] Compared with the prior art, the cleaning mechanism in this application adopts a rotating tray and an upper cover nozzle in combination. During cleaning, the rotating tray can rotate, realizing comprehensive and uniform cleaning of parts. The first filter structure, the second filter mechanism and the third filter mechanism can perform multi-stage filtration of the cleaning fluid, ensuring the cleanliness of the cleaning fluid and improving the recycling rate of the cleaning fluid. The drive mechanism works in coordination with the filtration system to realize automatic recycling and reuse of the cleaning fluid, reducing operating costs.

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Abstract

A double position high pressure cleaning machine, including installation platform, cleaning platform, cleaning mechanism, drive mechanism, first filter mechanism, second filter mechanism and third filter mechanism, installation platform and cleaning platform integration setting, drive mechanism is fixedly arranged on one side of installation platform, cleaning platform is provided with cleaning cavity, cleaning mechanism includes rotating tray, connecting platform, upper end cover and transmission motor, connecting platform is arranged in cleaning cavity, and one end of connecting platform is fixedly arranged on the side wall of cleaning platform, and transmission wheel is arranged on the outer wall of cleaning platform, rotating tray is matched with upper end surface, transmission motor is fixedly arranged on the outer wall of cleaning platform, transmission motor and transmission wheel are driven by belt transmission, transmission wheel drives rotating tray to rotate; The first filter structure, the second filter mechanism and the third filter mechanism are arranged, which can filter the cleaning liquid in multiple stages, ensure the cleanliness of the cleaning liquid, and improve the recycling rate of the cleaning liquid.
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Description

Technical Field

[0001] This utility model relates to the technical field of dual-station high-pressure cleaners, and more particularly to a dual-station high-pressure cleaner. Background Technology

[0002] In the manufacturing industry, cleaning machines are widely used for surface cleaning of parts, tools, and other items. Current technologies for cleaning small parts typically employ single-station cleaning or manual cleaning. However, cleaning under normal pressure is inefficient, resulting in insufficient residue removal on parts surfaces and low overall efficiency. Utility Model Content

[0003] To address the shortcomings and defects of existing technologies, a dual-station high-pressure cleaner is provided. To achieve the goal of better cleaning of parts, this utility model provides the following technical solution.

[0004] A dual-station high-pressure washer includes a mounting platform, a cleaning platform, a cleaning mechanism, a drive mechanism, a first filtration mechanism, a second filtration mechanism, and a third filtration mechanism. The mounting platform and the cleaning platform are integrated. The drive mechanism is fixedly mounted on one side of the mounting platform. The cleaning platform has a cleaning chamber. The cleaning mechanism includes a rotating tray, a connecting platform, an upper cover, and a drive motor. The connecting platform is located inside the cleaning chamber, and one end of the connecting platform is fixedly mounted on the side wall of the cleaning platform. A drive wheel extends from the outer wall of the cleaning platform. The rotating tray is fitted onto the upper surface. The drive motor is fixedly mounted on the outer wall of the cleaning platform. The drive motor and the drive wheel are driven by a belt. The rotation of the drive wheel drives the rotating tray to rotate. A plurality of nozzles are arranged inside the upper cover, corresponding to the rotating tray. During cleaning, cleaning fluid is sprayed from the nozzles into the cleaning chamber. The first filtration mechanism, the second filtration mechanism, and the third filtration mechanism sequentially filter the cleaning fluid in the cleaning chamber, and the cleaning fluid flow is discharged back into the drive mechanism.

[0005] Compared with the prior art, the cleaning mechanism in this application adopts a rotating tray and an upper cover nozzle in combination. During cleaning, the rotating tray can rotate, realizing comprehensive and uniform cleaning of parts. The first filter structure, the second filter mechanism and the third filter mechanism can perform multi-stage filtration of the cleaning fluid, ensuring the cleanliness of the cleaning fluid and improving the recycling rate of the cleaning fluid. The drive mechanism works in coordination with the filtration system to realize automatic recycling and reuse of the cleaning fluid, reducing operating costs.

[0006] Furthermore, a rotating rod is provided inside the connecting platform, the transmission wheel is sleeved on one end of the rotating rod, and a first turbine is provided in the middle section of the rotating rod. A second worm gear is provided at the lower end of the rotating tray. The first turbine meshes with the second turbine. When the rotating rod rotates, the first turbine rotates synchronously, driving the second turbine and the rotating tray to rotate. The output shaft of the transmission motor is correspondingly provided with the transmission wheel and is connected by the belt drive.

[0007] Through the above improvements, by setting a rotating rod and a first turbine on the rotating rod, the meshing design of the first turbine and the second turbine improves the transmission efficiency, ensures smooth transmission and low noise during use, and makes it easier to control the speed.

[0008] Furthermore, the drive motor is provided with a support frame, the end of the support frame abuts against the outer wall of the washing table, a protective cavity is formed between the support frame and the outer wall of the washing table, and the output shaft of the drive motor is disposed in the protective cavity.

[0009] Through the above improvements, the installation of a support frame and protective cavity on the drive motor can effectively protect the transmission components from the influence of the external environment and extend the service life of the equipment; the support frame enhances the fixing strength of the motor, reduces vibration, and improves operational stability.

[0010] Furthermore, the upper end cover includes a fixing frame, an end cover plate, a connecting rod, and a connecting plate. The lower end of the fixing frame is provided with several positioning pins. The end cover plate is fixedly mounted on the lower end of the fixing frame by the positioning pins. The end of the fixing frame is provided with a first mating hole. One end of the connecting plate is fixedly mounted on the outer wall of the washing table, and the other end is provided with a second mating hole. The first mating hole and the second mating hole are correspondingly provided, and the connecting rod passes through the first mating hole and the second mating hole and is disposed between the fixing frame.

[0011] Through the above improvements, the upper end cover is installed by using a positioning pin on the fixing frame to install the end cover plate, which facilitates disassembly and maintenance and ensures the accurate positioning and installation stability of the upper end cover; the matching of the connecting rod with the first mating hole and the second mating hole further improves the accuracy of installation.

[0012] Furthermore, a fixing rod is provided between the fixing frames, and a limiting component is provided at the connection between the fixing frame and the fixing member. A transmission cylinder is fixed to the outer wall of the cleaning table by bolts. A piston rod is provided on the transmission cylinder. A connecting block is provided at the upper end of the piston rod. A fixing hole is provided on the connecting block. The fixing rod passes through the fixing hole. The piston rod extends and retracts, causing the fixing hole and the fixing frame to rotate around the connecting rod.

[0013] Through the above improvements, the upper cover is flipped by setting a transmission cylinder and piston rod. Opening and closing the upper cover is simple and convenient for cleaning the inside of the cleaning chamber and replacing parts. The limiting parts and fixing rods ensure the stability and safety of the flipping process.

[0014] Furthermore, the mounting platform includes a first filtration chamber, a second filtration chamber, a third filtration chamber, and a liquid storage chamber. The first filtration chamber is connected to the cleaning chamber, and a filter screen is provided between the first filtration chamber and the second filtration chamber. The first filtration mechanism is disposed in the first filtration chamber, and a strongly magnetic material is disposed inside the first filtration mechanism to adsorb ferromagnetic impurities in the cleaning liquid flowing into the first filtration chamber. The second filtration mechanism includes a first pump, a first filter tank, and a first inlet pipe. The first inlet pipe connects the first pump and the first filter tank. A first outlet pipe is provided on the first filter tank, with one end connected to the first filter tank and the other end connected to the second filtration chamber. The third filtration mechanism includes a second pump, a second filter tank, and a second inlet pipe. The second inlet pipe connects the second pump and the second filter tank. A second outlet pipe is provided on the second filter tank, with one end connected to the first filter tank and the other end connected to the liquid storage chamber.

[0015] Through the above improvements, the installation platform is equipped with a first filter chamber, a second filter chamber, a third filter chamber, and a liquid storage chamber, which realizes the graded treatment and storage of the cleaning fluid and optimizes the filtration process. The first filter mechanism is set in the first filter chamber, which can adsorb the ferromagnetic impurities washed down during cleaning. The second and third filter mechanisms, through the combination of a liquid pump and a filter tank, ensure filtration efficiency and liquid purification effect.

[0016] Furthermore, clamps are provided at both ends of the first inlet pipe, the first outlet pipe, the second inlet pipe, and the second outlet pipe.

[0017] Through the above improvements, clamps are installed at both ends of the liquid pipe, which enhances the connection and sealing of the pipeline, prevents cleaning fluid leakage, and facilitates the quick installation and replacement of the pipeline.

[0018] Furthermore, magnetic level gauges are respectively installed on the second filter chamber, the second filter chamber and the liquid outlet chamber, and a float is installed at the lower end of the magnetic level gauge, which floats up and down according to the liquid level.

[0019] Through the above improvements, a magnetic float level gauge is used to monitor the liquid level in each chamber in real time. The floating of the float reflects the liquid level height, which improves the accuracy and reliability of liquid level control.

[0020] Furthermore, the drive mechanism includes a drive motor, a mounting bracket, a third liquid pump, a plunger pump, and a diverter pump. The mounting bracket is fixedly mounted on the mounting platform by bolts. The drive motor is located inside the mounting bracket. The plunger pump is fixedly mounted on the upper end of the mounting bracket. The plunger pump is equipped with a mating wheel. The output shaft of the drive motor is connected to the mating wheel via a belt drive. A protective net is provided on the side of the mounting bracket near the mating wheel. A third inlet pipe is provided between the third liquid pump and the liquid storage chamber. The third liquid pump and the plunger pump are connected by a flow pipe. A drain pipe is provided between the plunger pump and the diverter pump. A diverter pipe is provided on the other side of the diverter pump. The other end of the diverter pipe is connected to the upper end cover.

[0021] Through the above improvements, the drive mechanism includes a drive motor, a plunger pump, and a diverter pump, and the belt drive ensures high efficiency of power transmission; a protective net is installed on one side of the mounting bracket to improve safety during use and protect the belt drive mechanism formed by the plunger pump and the drive motor; the diverter pump is connected to the upper end cover to ensure uniform distribution of the cleaning fluid flow.

[0022] Furthermore, a support plate is provided on the mounting platform, and a regulating valve is provided between the plunger pump and the flow divider pump. The regulating valve is fixedly mounted on the support plate by bolts.

[0023] Through the above improvements, the support plate and regulating valve are designed to facilitate precise control of the flow rate of the cleaning fluid between the plunger pump and the split pump. Furthermore, the regulating valve is secured with bolts, making it easy to install and replace. Attached Figure Description

[0024] Figure 1 This is a schematic diagram of the overall structure of a dual-station high-pressure washer; Figure 2 A schematic diagram of the overall structure of a dual-station high-pressure washer (from another perspective); Figure 3 A schematic diagram of a dual-station high-pressure washer from a frontal view. Figure 4 A top-view structural diagram of a dual-station high-pressure washer; Figure 5 This is a partial cross-sectional structural diagram of a dual-station high-pressure cleaner; Figure 6 This is a schematic diagram of the overall structure of a dual-station high-pressure washer (excluding the end face of the mounting platform). Figure 7 This is a schematic diagram of the overall structure of a dual-station high-pressure washer (another view excluding the end face of the mounting platform). Figure 8This is a magnified view of a portion of the structure at point A of a dual-station high-pressure cleaner.

[0025] The components include: 1. Mounting platform; 1.1. First filter chamber; 1.2. Second filter chamber; 1.3. Third filter chamber; 1.4. Liquid storage chamber; 1.5. Filter screen; 1.6. Support plate; 2. Cleaning platform; 2.1. Cleaning chamber; 3. Cleaning mechanism; 3.1. Rotating tray; 3.11. Second worm gear; 3.2. Connecting platform; 3.21. Transmission wheel; 3.22. Rotating rod; 3.23. First turbine; 3.3. Upper end cover; 3.31. Nozzle; 3.32. Fixing frame; 3.33. End cover plate; 3.34. Connecting rod; 3.35. Connecting plate; 3.36. Positioning pin; 3.37. First mating hole; 3.38. Second mating hole; 3.39. Fixing rod; 3.4. Transmission motor; 3.5. Support frame; 3.51. Protective chamber; 4. Drive mechanism; 4.1. Drive 4.1. Motor; 4.2. Mounting bracket; 4.3. Third liquid pump; 4.4. Plunger pump; 4.41. Matching wheel; 4.5. Diverter pump; 4.6. Protective net; 4.7. Third inlet pipe; 4.8. Flow pipe; 4.9. Drain pipe; 4.10. Diverter pipe; 4.11. Regulating valve; 5. First filtration mechanism; 6. Second filtration mechanism; 6.1. First liquid pump; 6.2. First filter tank; 6.3. First inlet pipe; 6.4. First outlet pipe; 7. Third filtration mechanism; 7.1. Second liquid pump; 7.2. Second filter tank; 7.3. Second inlet pipe; 7.4. Second outlet pipe; 8. Limiting component; 9. Transmission cylinder; 9.1. Piston rod; 9.2. Connecting block; 9.21. Fixing hole; 10. Clamping component; 11. Magnetic level gauge; 11.1. Float ball. Detailed Implementation

[0026] The present invention will be further described below with reference to the accompanying drawings and specific embodiments.

[0027] In the description of this utility model, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicating the orientation or positional relationship, are based on the orientation or positional relationship shown in the accompanying drawings and are only for the convenience of describing this utility model 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, and therefore should not be construed as a limitation of this utility model. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0028] like Figures 1 to 8As shown, a dual-station high-pressure washer includes a mounting platform 1, a cleaning platform 2, a cleaning mechanism 3, a drive mechanism 4, a first filter mechanism 5, a second filter mechanism 6, and a third filter mechanism 7. The mounting platform 1 and the cleaning platform 2 are integrated. The drive mechanism 4 is fixedly mounted on one side of the mounting platform 1. The cleaning platform 2 has a cleaning chamber 2.1. The cleaning mechanism 3 includes a rotating tray 3.1, a connecting platform 3.2, an upper cover 3.3, and a drive motor 3.4. The connecting platform 3.2 is located inside the cleaning chamber 2.1, and one end of the connecting platform 3.2 is fixedly mounted on the side wall of the cleaning platform 2. A drive wheel extends from the outer wall of the cleaning platform 2. 3.21, The rotating tray 3.1 is fitted onto the upper surface of the connecting platform 3.2. The drive motor 3.4 is fixedly mounted on the outer wall of the cleaning table 2. The drive motor 3.4 and the drive wheel 3.21 are connected by a belt drive. The rotation of the drive wheel 3.21 drives the rotating tray 3.1 to rotate. Several nozzles 3.31 are provided on the inner side of the upper cover 3.3. The nozzles 3.31 are set corresponding to the rotating tray 3.1. During cleaning, the cleaning liquid is sprayed from the nozzles 3.31 and enters the cleaning chamber 2.1. The first filter mechanism 5, the second filter mechanism 6 and the third filter structure filter the cleaning liquid in the cleaning chamber 2.1 in sequence. The cleaning liquid is then discharged back into the drive mechanism 4.

[0029] A rotating rod 3.22 is installed inside the connecting platform 3.2. A transmission wheel 3.21 is sleeved on one end of the rotating rod 3.22, and a first turbine 3.23 is installed in the middle section of the rotating rod 3.22. A second worm gear 3.11 is installed at the lower end of the rotating tray 3.1. The first turbine 3.23 meshes with the second turbine. When the rotating rod 3.22 rotates, the first turbine 3.23 rotates synchronously, driving the second turbine and the rotating tray 3.1 to rotate. The output shaft of the transmission motor 3.4 is correspondingly set with the transmission wheel 3.21 and is connected by belt drive. By setting the rotating rod 3.22 and the first turbine 3.23 on the rotating rod 3.22, the meshing design of the first turbine 3.23 and the second turbine improves the transmission efficiency, ensures smooth transmission and low noise during use, and allows for convenient control of the speed.

[0030] A support frame 3.5 is provided on the drive motor 3.4. The end of the support frame 3.5 abuts against the outer wall of the cleaning table 2, and a protective cavity 3.51 is formed between the support frame 3.5 and the outer wall of the cleaning table 2. The output shaft of the drive motor 3.4 is located in the protective cavity 3.51. The support frame 3.5 and the protective cavity 3.51 on the drive motor 3.4 can effectively protect the transmission components from the influence of the external environment and extend the service life of the equipment. The support frame 3.5 enhances the fixing strength of the motor, reduces vibration, and improves the operational stability.

[0031] The upper end cover 3.3 includes a fixing frame 3.32, an end cover plate 3.33, a connecting rod 3.34, and a connecting plate 3.35. The lower end of the fixing frame 3.32 is provided with several positioning pins 3.36. The end cover plate 3.33 is fixedly installed at the lower end of the fixing frame 3.32 by the positioning pins 3.36, which facilitates disassembly and maintenance and ensures the accurate positioning and installation stability of the upper end cover 3.3.

[0032] The end of the fixing bracket 3.32 is provided with a first mating hole 3.37. One end of the connecting plate 3.35 is fixedly set on the outer wall of the cleaning table 2, and the other end is provided with a second mating hole 3.38. The first mating hole 3.37 and the second mating hole 3.38 are correspondingly set, and the connecting rod 3.34 passes through the first mating hole 3.37 and the second mating hole 3.38 and is set between the fixing bracket 3.32. The matching of the connecting rod 3.34 with the first mating hole 3.37 and the second mating hole 3.38 further improves the accuracy of installation.

[0033] A fixing rod 3.39 is provided between the fixing frames 3.32, and a limiting component 8 is provided at the connection between the fixing frames 3.32 and the fixing rod 3.39. A transmission cylinder 9 is fixed to the outer wall of the cleaning table 2 by bolts. A piston rod 9.1 is provided on the transmission cylinder 9. A connecting block 9.2 is provided at the upper end of the piston rod 9.1. A fixing hole 9.21 is provided on the connecting block 9.2. The fixing rod 3.39 passes through the fixing hole 9.21. The piston rod 9.1 extends and retracts, causing the fixing hole 9.21 and the fixing frame 3.32 to rotate around the connecting rod 3.34. The rotation of the upper cover 3.3 is achieved by setting up the transmission cylinder 9 and the piston rod 9.1. The operation of opening and closing the upper cover 3.3 is simple, which facilitates the internal cleaning of the cleaning chamber 2.1 and the replacement of parts. The limiting component 8 and the fixing rod 3.39 ensure the stability and safety of the rotation process.

[0034] The mounting platform 1 includes a first filter chamber 1.1, a second filter chamber 1.2, a third filter chamber 1.3, and a liquid storage chamber 1.4. The first filter chamber 1.1 is connected to the cleaning chamber 2.1, and a filter screen 1.5 is provided between the first filter chamber 1.1 and the second filter chamber 1.2. The first filtration mechanism 5 is located in the first filter chamber 1.1, and the first filtration mechanism 5 contains a strongly magnetic material to adsorb ferromagnetic impurities in the cleaning fluid flowing into the first filter chamber 1.1. The mounting platform 1 includes the first filter chamber 1.1, the second filter chamber 1.2, the third filter chamber 1.3, and the liquid storage chamber 1.4, which realizes the graded treatment and storage of the cleaning fluid and optimizes the filtration process. The first filtration mechanism 5, located in the first filter chamber 1.1, can adsorb the ferromagnetic impurities washed down during cleaning.

[0035] The second filtration mechanism 6 includes a first pump 6.1, a first filter tank 6.2, and a first inlet pipe 6.3. The first inlet pipe 6.3 connects the first pump 6.1 and the first filter tank 6.2. The first filter tank 6.2 is provided with a first outlet pipe 6.4, one end of which is connected to the first filter tank 6.2, and the other end is connected to the second filter chamber 1.2. The third filtration mechanism 7 includes a second pump 7.1, a second filter tank 7.2, and a second inlet pipe 7.3. The second inlet pipe 7.3 connects the second pump 7.1 and the second filter tank 7.2. The second filter tank 7.2 is provided with a second outlet pipe 7.4, one end of which is connected to the first filter tank 6.2, and the other end is connected to the storage chamber 1.4. The combination of the pump and the filter tank ensures the filtration efficiency and purification effect of the cleaning solution.

[0036] The first inlet pipe 6.3, the first outlet pipe 6.4, the second inlet pipe 7.3, and the second outlet pipe 7.4 are each equipped with clamps 10 at both ends, which enhances the connection and sealing of the pipeline, prevents the cleaning fluid from leaking, and facilitates the quick installation and replacement of the pipeline.

[0037] Magnetic level gauges 11 are respectively installed on the second filter chamber 1.2 and the liquid storage chamber 1.4. A float ball 11.1 is installed at the lower end of the magnetic level gauge 11. The float ball 11.1 floats up and down according to the liquid level. The magnetic level gauges 11 monitor the liquid level of each chamber in real time, and the floating of the float ball 11.1 reflects the liquid level, which improves the accuracy and reliability of liquid level control.

[0038] The drive mechanism 4 includes a drive motor 4.1, a mounting bracket 4.2, a third liquid pump 4.3, a plunger pump 4.4, and a diverter pump 4.5. The mounting bracket 4.2 is fixedly mounted on the mounting platform 1 by bolts. The drive motor 4.1 is mounted inside the mounting bracket 4.2. The plunger pump 4.4 is fixedly mounted on the upper end of the mounting bracket 4.2. The plunger pump 4.4 is equipped with a mating wheel 4.41. The output shaft of the drive motor 4.1 and the mating wheel 4.41 are connected by a belt drive to ensure high efficiency of power transmission.

[0039] A protective net 4.6 is provided on the side of the mounting bracket 4.2 near the mating wheel 4.41, which improves the safety during use and can protect the belt drive mechanism formed by the plunger pump 4.4 and the drive motor 4.1.

[0040] A third inlet pipe 4.7 is provided between the third pump 4.3 and the storage chamber 1.4. The third pump 4.3 is connected to the plunger pump 4.4 through a flow pipe 4.8. A drain pipe 4.9 is provided between the plunger pump 4.4 and the diverter pump 4.5. A diverter pipe 4.10 is provided on the other side of the diverter pump 4.5. The other end of the diverter pipe 4.10 is connected to the upper end cover 3.3. The connection between the diverter pump 4.5 and the upper end cover 3.3 ensures the uniform distribution of the cleaning fluid.

[0041] A support plate 1.6 is provided on the mounting platform 1. A regulating valve 4.11 is provided between the plunger pump 4.4 and the flow divider pump 4.5 to facilitate precise control of the flow rate of the cleaning fluid between the plunger pump 4.4 and the flow divider pump 4.5. The regulating valve 4.11 is fixed on the support plate 1.6 with bolts, which is secure and easy to replace.

[0042] During use, the drive motor 4.1 starts and drives the plunger pump 4.4 to work. The plunger pump 4.4 drives the third liquid pump 4.3 to draw the cleaning fluid from the storage chamber 1.4 and send the cleaning fluid into the diverter pump 4.5 through the drain pipe 4.9. The diverter pump 4.5 and the diverter pipe 4.10 deliver the cleaning fluid to the upper end cover 3.3 and spray it out through the nozzle 3.31 on the upper end cover 3.3 to clean the parts.

[0043] During cleaning, the drive motor 3.4 is started. The drive motor 3.4 drives the rotating tray 3.1 set in the cleaning chamber 2.1 to rotate through the worm gear transmission. When the rotating tray 3.1 rotates, the cleaning fluid sprayed by the nozzle 3.31 cleans the parts in the rotating tray 3.1, so as to achieve better cleaning effect.

[0044] After cleaning, the cleaning fluid flows into the bottom of the cleaning chamber 2.1 and into the first filter chamber 1.1. The first filter mechanism 5 in the first filter chamber 1.1 adsorbs the residual ferromagnetic impurities such as iron filings and iron powder in the cleaning fluid, performing the first step of filtration. After passing through the filter screen 1.5, the cleaning fluid after the first filtration flows into the second filter chamber 1.2. The first pump 6.1 of the second filter mechanism 6 draws the cleaning fluid into the first filter tank 6.2 for the second filtration. Then, the cleaning fluid is discharged into the third filter chamber 1.3 through the first outlet pipe 6.4.

[0045] The second pump 7.1 of the third filtration mechanism 7 draws the cleaning solution into the second filter tank 7.2 for the third filtration. Then, the cleaning solution is discharged into the storage chamber 1.4 through the second outlet pipe 7.4 to complete the third filtration. The cleaning solution is stored in the storage chamber 1.4 for use when cleaning.

[0046] The above are merely preferred embodiments of this utility model. The protection scope of this utility model is not limited to the above embodiments. All technical solutions falling within the scope of this utility model's concept are within its protection scope. It should be noted that for those skilled in the art, any improvements and modifications made without departing from the principle of this utility model should also be considered within its protection scope.

Claims

1. A dual-station high-pressure cleaner, characterized in that: The system includes an installation platform (1), a cleaning platform (2), a cleaning mechanism (3), a drive mechanism (4), a first filter mechanism (5), a second filter mechanism (6), and a third filter mechanism (7). The installation platform (1) and the cleaning platform (2) are integrated. The drive mechanism (4) is fixedly installed on one side of the installation platform (1). The cleaning platform (2) has a cleaning chamber (2.1). The cleaning mechanism (3) includes a rotating tray (3.1), a connecting platform (3.2), an upper cover (3.3), and a drive motor (3.4). The connecting platform (3.2) is installed in the cleaning chamber (2.1), and one end of the connecting platform (3.2) is fixedly installed on the side wall of the cleaning platform (2). A drive wheel (3.21) extends from the outer wall of the cleaning platform (2). A rotating tray (3.1) is fitted onto the upper surface of the connecting platform (3.2). A drive motor (3.4) is fixedly mounted on the outer wall of the cleaning table (2). The drive motor (3.4) and the drive wheel (3.21) are connected by a belt drive. The rotation of the drive wheel (3.21) drives the rotating tray (3.1) to rotate. Several nozzles (3.31) are provided on the inner side of the upper cover (3.3). The nozzles (3.31) are positioned corresponding to the rotating tray (3.1). During cleaning, the cleaning fluid is sprayed from the nozzles (3.31) into the cleaning chamber (2.1). The first filter mechanism (5), the second filter mechanism (6), and the third filter mechanism sequentially filter the cleaning fluid in the cleaning chamber (2.1). The cleaning fluid is then discharged back into the drive mechanism (4).

2. The dual-station high-pressure cleaner according to claim 1, characterized in that: A rotating rod (3.22) is provided inside the connecting platform (3.2). A transmission wheel (3.21) is sleeved on one end of the rotating rod (3.22). A first turbine (3.23) is provided in the middle section of the rotating rod (3.22). A second worm gear (3.11) is provided at the lower end of the rotating tray (3.1). The first turbine (3.23) meshes with the second worm gear (3.11). When the rotating rod (3.22) rotates, the first turbine (3.23) rotates synchronously, driving the second worm gear (3.11) and the rotating tray (3.1) to rotate. The output shaft of the transmission motor (3.4) is correspondingly arranged with the transmission wheel (3.21) and connected by belt drive.

3. A dual-station high-pressure cleaner according to claim 2, characterized in that: The drive motor (3.4) is provided with a support frame (3.5), the end of the support frame (3.5) abuts against the outer wall of the cleaning table (2), and a protective cavity (3.51) is formed between the support frame (3.5) and the outer wall of the cleaning table (2). The output shaft of the drive motor (3.4) is located in the protective cavity (3.51).

4. A dual-station high-pressure cleaner according to claim 1, characterized in that: The upper end cover (3.3) includes a fixing frame (3.32), an end cover plate (3.33), a connecting rod (3.34), and a connecting plate (3.35). The lower end of the fixing frame (3.32) is provided with several positioning pins (3.36). The end cover plate (3.33) is fixedly installed at the lower end of the fixing frame (3.32) by the positioning pins (3.36). The end of the fixing frame (3.32) is provided with a first mating hole (3.37). One end of the connecting plate (3.35) is fixedly installed on the outer wall of the washing table (2), and the other end is provided with a second mating hole (3.38). The first mating hole (3.37) and the second mating hole (3.38) are correspondingly provided, and the connecting rod (3.34) passes through the first mating hole (3.37) and the second mating hole (3.38) and is located between the fixing frame (3.32).

5. A dual-station high-pressure cleaner according to claim 4, characterized in that: A fixing rod (3.39) is provided between the fixing frames (3.32), and a limiting member (8) is provided at the connection between the fixing frame (3.32) and the fixing rod (3.39). A transmission cylinder (9) is fixedly installed on the outer wall of the cleaning table (2) by bolts. A piston rod (9.1) is provided on the transmission cylinder (9). A connecting block (9.2) is provided at the upper end of the piston rod (9.1). A fixing hole (9.21) is provided on the connecting block (9.2). The fixing rod (3.39) passes through the fixing hole (9.21). The piston rod (9.1) extends and retracts, causing the fixing hole (9.21) and the fixing frame (3.32) to rotate around the connecting rod (3.34).

6. A dual-station high-pressure cleaner according to claim 1, characterized in that: The mounting platform (1) includes a first filter chamber (1.1), a second filter chamber (1.2), a third filter chamber (1.3), and a liquid storage chamber (1.4). The first filter chamber (1.1) is connected to the cleaning chamber (2.1), and a filter screen (1.5) is provided between the first filter chamber (1.1) and the second filter chamber (1.2). The first filtration mechanism (5) is located in the first filter chamber (1.1), and a strong magnetic material is provided inside the first filtration mechanism (5) to adsorb ferromagnetic impurities in the cleaning liquid flowing into the first filter chamber (1.1). The second filtration mechanism (6) includes a first liquid pump (6.1), a first filter tank (6.2), and a first liquid inlet pipe (6.3). The first liquid inlet pipe (6.3) is connected to the... The first liquid pump (6.1) and the first filter tank (6.2) are described. The first filter tank (6.2) is provided with a first liquid outlet pipe (6.4). One end of the first liquid outlet pipe (6.4) is connected to the first filter tank (6.2), and the other end is connected to the second filter chamber (1.2). The third filtration mechanism (7) includes a second liquid pump (7.1), a second filter tank (7.2), and a second liquid inlet pipe (7.3). The second liquid inlet pipe (7.3) is connected to the second liquid pump (7.1) and the second filter tank (7.2). The second filter tank (7.2) is provided with a second liquid outlet pipe (7.4). One end of the first liquid outlet pipe (6.4) is connected to the first filter tank (6.2), and the other end is connected to the liquid storage chamber (1.4).

7. A dual-station high-pressure cleaner according to claim 6, characterized in that: The first inlet pipe (6.3), the first outlet pipe (6.4), the second inlet pipe (7.3), and the second outlet pipe (7.4) are each provided with clamps (10) at both ends.

8. A dual-station high-pressure cleaner according to claim 6, characterized in that: A magnetic float level gauge (11) is provided on the second filter chamber (1.2) and the liquid storage chamber (1.4). A float ball (11.1) is provided at the lower end of the magnetic float level gauge (11). The float ball (11.1) floats up and down according to the liquid level.

9. A dual-station high-pressure cleaner according to claim 6, characterized in that: The drive mechanism (4) includes a drive motor (4.1), a mounting bracket (4.2), a third liquid pump (4.3), a plunger pump (4.4), and a diverter pump (4.5). The mounting bracket (4.2) is fixedly mounted on the mounting platform (1) by bolts. The drive motor (4.1) is located inside the mounting bracket (4.2). The plunger pump (4.4) is fixedly mounted on the upper end of the mounting bracket (4.2). A mating wheel (4.41) is provided on the plunger pump (4.4). The output shaft of the drive motor (4.1) and the mating wheel (4.41) are connected by a belt drive. A protective net (4.6) is provided on the side of the mounting bracket (4.2) near the mating wheel (4.41); a third inlet pipe (4.7) is provided between the third pump (4.3) and the storage chamber (1.4); the third pump (4.3) and the plunger pump (4.4) are connected by a flow pipe (4.8); a drain pipe (4.9) is provided between the plunger pump (4.4) and the diverter pump (4.5); a diverter pipe (4.10) is provided on the other side of the diverter pump (4.5); and the other end of the diverter pipe (4.10) is connected to the upper end cover (3.3).

10. A dual-station high-pressure cleaner according to claim 9, characterized in that: A support plate (1.6) is provided on the mounting platform (1), and a regulating valve (4.11) is provided between the plunger pump (4.4) and the flow divider pump (4.5). The regulating valve (4.11) is fixed on the support plate (1.6) by bolts.