Motor stator cleaning and drying all-in-one machine and operating method thereof

By designing an integrated cleaning and drying machine for motor stators, a hydraulic cylinder and a rotating shaft are used to drive the transmission belt to rotate. Combined with brush strips and sponge strips, the machine achieves automated cleaning and drying of motor stators, solving the problems of low cleaning efficiency and poor versatility in existing technologies, thereby improving cleaning efficiency and reducing labor intensity.

CN114759745BActive Publication Date: 2026-04-24NANLING LIANG POWER TOOLS
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
NANLING LIANG POWER TOOLS
Filing Date
2022-05-08
Publication Date
2026-04-24

AI Technical Summary

Technical Problem

Existing motor stator cleaning devices can only clean a limited number of motor stators at a time, have poor versatility, low automation, and require high labor intensity for operators.

Method used

An integrated cleaning and drying machine for motor stators has been designed, including components such as a water tank, a support plate, a hydraulic cylinder, a motor, a rotating shaft, a water pump, and a blower. The hydraulic cylinder drives the motor stator to move within the support groove, and the rotating shaft drives the transmission belt to rotate. The machine is cleaned by brush strips and dried by sponge strips, thus achieving automated cleaning and drying.

Benefits of technology

This technology enables simultaneous cleaning and drying of multiple motor stators, improving cleaning and drying efficiency, reducing the labor intensity of operators, and expanding the applicability and versatility of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a motor stator cleaning and drying all-in-one machine, which comprises a water tank, a bearing plate, a top plate, a hydraulic cylinder I, a connecting plate, a motor, a rotating shaft, a water conveying pump, an air blower, a hydraulic cylinder II, a push plate and an adjusting rod, characterized in that the top of the water tank is provided with a vertical plate, the bearing plate is arranged on the positioning plate, the top plate is arranged on the vertical plate, the hydraulic cylinder I is arranged on the top plate, the connecting plate is connected with a piston rod I, the motor is arranged on a fixed plate, and the rotating shaft is provided with connecting shafts at both ends. The motor stator falls into the bearing groove by the hydraulic cylinder II pulling the push plate and the push rod, the push rod sequentially pushes the motor stator, the motor stator sequentially advances in the bearing groove, the motor stator is cleaned and dried, a plurality of bearing grooves are arranged on the bearing plate, a plurality of motor stators can be simultaneously cleaned and dried at a time, and thus the cleaning and drying efficiency of the motor stator is improved.
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Description

Technical Field

[0001] This invention relates to the field of motor stator manufacturing technology, specifically to an integrated motor stator cleaning and drying machine and its operating method. Background Technology

[0002] The stator is one of the important components of an electric motor, and its performance directly affects the quality of the motor. After the stator blank is made, it needs to be machined by a honing machine to remove the paint from the inner hole and leads. After machining, burrs and other debris will remain in the inner hole and leads of the stator. The existing method is to remove them manually, which is inefficient and does not clean them thoroughly. For example, the patent application number 202121377271.0 discloses an automatic stator cleaning device, which solves the problem of low cleaning quality. However, it has the problems of cleaning a small number of motor stators at one time, poor versatility, low degree of automation, and high labor intensity for operators. Summary of the Invention

[0003] The purpose of this invention is to address the problems of existing motor stator cleaning and drying devices, such as the small number of motor stators that can be cleaned at one time, poor versatility, low degree of automation, and high labor intensity for operators. The invention provides an integrated motor stator cleaning and drying machine and its operation method that has a reasonable structural design, can clean a large number of motor stators at one time, has good versatility, high degree of automation, and low labor intensity for operators.

[0004] The technical solution adopted by this invention to solve the technical problem is as follows:

[0005] A motor stator cleaning and drying integrated machine includes a water tank, a support plate, a top plate, a first hydraulic cylinder, a connecting plate, a motor, a rotating shaft, a water pump, a blower, a second hydraulic cylinder, a push plate, and an adjusting rod. The water tank is characterized by having a vertical plate on top and a positioning plate on the vertical plate. The support plate is mounted on the positioning plate and has a support groove and a material discharge groove. A drainage hole penetrating the support plate is located at the bottom of the support groove. The top plate is mounted on the vertical plate and has a feed pipe extending its lower end above the support groove. The first hydraulic cylinder is mounted on the top plate and has a piston rod. The connecting plate is connected to the piston rod. The connecting plate includes a fixing plate, an air outlet pipe, and a water spray pipe. The system is connected via a ventilation pipe, with the top of the spray pipe connected via a water pipe. A nozzle is located at the bottom of the spray pipe, and a bearing is mounted on a fixed plate. The motor is mounted on the fixed plate. Connecting shafts are located at both ends of the rotating shaft, extending into the bearings. One connecting shaft is connected to the motor output shaft. A conveyor belt is installed between the rotating shafts. The water pump is mounted on the top plate, with a suction pipe and a delivery pipe. The suction pipe is connected to a water tank, and the delivery pipe is connected to the water pipe. The blower is mounted on the top plate, with an air delivery pipe connected to the ventilation pipe. The second hydraulic cylinder is mounted on the vertical plate, with a second piston rod. A push plate is mounted on the second piston rod. A push rod is installed on the push plate and extends into the bearing groove below the feed cylinder. An adjusting rod passes through an upright plate, on which a baffle is installed. A spring is installed on the adjusting rod between the baffle and the upright plate, and the baffle extends into the bearing groove. The motor stator to be cleaned is placed into the feed pipe. Gravity causes the motor stator to fall along the feed pipe, so that the lowest motor stator contacts the push rod. Hydraulic cylinder two is activated, pulling the push plate and push rod, causing the motor stator to fall into the bearing groove. The push rod sequentially pushes the motor stator, and the motor stator advances sequentially within the bearing groove, performing a cleaning and drying process on the motor stator. Multiple bearing grooves are provided on the bearing plate, allowing multiple motor stators to be cleaned and dried simultaneously, thus improving the cleaning and drying efficiency of the motor stator. The motor drives the rotating shaft to rotate, which in turn drives the conveyor belt to rotate. The descending conveyor belt contacts the motor stator, and the rotating conveyor belt causes the motor stator to rotate within a bearing groove. This causes the brush strips within the bearing groove to clean the rotating motor stator. Water carrying impurities in the bearing groove is quickly discharged through the drain hole. During the cleaning process, the motor stator continues to move within the bearing groove under the action of the push rod. After cleaning, the motor stator comes into contact with the air sprayed from the air outlet pipe within the bearing groove, causing the sponge strips within the bearing groove to contact the rotating motor stator, absorbing the water from the motor stator and drying it. This improves the cleaning and drying efficiency of the motor stator. The motor stator continues to advance within the bearing groove under the coordinated action of hydraulic cylinder one, hydraulic cylinder two, the motor, the water pump, and the blower.The cleaning and drying process for motor stators can be automated, improving work efficiency and reducing the workload of operators.

[0006] Preferably, the positioning plate is provided with positioning holes, and the support plate is provided with positioning rods below it. The positioning rods are inserted into the positioning holes, and the support plate is designed to be removable from the positioning plate. Inserting the positioning rods on the support plate into the positioning holes improves the stability of the support plate on the positioning plate, thereby improving the stability of the motor stator during the cleaning and drying process. According to the different sizes of motor stators, the support plate with the corresponding support groove is selected, which not only improves the stability of the motor stator in the support groove, but also improves the versatility of the integrated cleaning and drying machine and expands its application range.

[0007] Preferably, the bearing groove, feed pipe, push rod, and baffle on the bearing plate are configured in a one-to-one correspondence structure. The motor stator to be cleaned is placed in the feed pipe, and gravity causes the motor stator to fall along the feed pipe, so that the lowest motor stator contacts the push rod. The second hydraulic cylinder is activated, and the second hydraulic cylinder pulls the push plate and push rod, causing the motor stator to fall into the bearing groove. The push rod pushes the motor stator in sequence, and the motor stator advances in sequence in the bearing groove, thus performing cleaning and drying treatment on the motor stator. Multiple bearing grooves are provided on the bearing plate, which can perform cleaning and drying treatment on multiple motor stators at the same time, thereby improving the cleaning and drying efficiency of the motor stator.

[0008] Preferably, the inner wall of the bearing groove on the bearing plate is provided with a brush strip and a sponge strip. The motor drives the rotating shaft to rotate, which in turn drives the conveyor belt to rotate. The descending conveyor belt contacts the motor stator. The rotating conveyor belt drives the motor stator to rotate in the bearing groove, so that the brush strip in the bearing groove cleans the rotating motor stator. The water in the bearing groove, carrying impurities, is quickly discharged from the drain hole. During the cleaning process, the motor stator continues to move in the bearing groove under the action of the push rod. After cleaning, the motor stator contacts the air sprayed from the air outlet pipe in the bearing groove, so that the sponge strip in the bearing groove contacts the rotating motor stator, absorbs the water on the motor stator after cleaning, and dries the motor stator, improving the cleaning and drying efficiency of the motor stator.

[0009] Preferably, the conveyor belt on the rotating shaft is configured as a segmented structure, with brush strips two on the conveyor belt, and the air outlet pipe and water spray pipe are placed in the space between the conveyor belts. The motor drives the rotating shaft to rotate, the rotating shaft drives multiple conveyor belts to rotate, and the conveyor belts drive the motor stator to rotate in the bearing groove. The brush strips two on the conveyor belt and the brush strips in the bearing groove clean the motor stator, thereby improving the cleaning efficiency and cleaning quality of the motor stator.

[0010] Preferably, the fixed plate is provided with an inner cavity, and a push block is provided in the inner cavity by a spring. The push block extends from the bottom end of the fixed plate and is positioned directly above the material drop trough. The conveyor belt contacts the motor stator in the bearing trough, and the push block contacts the motor stator above the material drop trough. The push block continues to descend under the action of hydraulic cylinder one, causing the motor stator to fall from the material drop trough. The motor stator continues to move forward in the bearing trough under the combined action of hydraulic cylinder one, hydraulic cylinder two, motor, water pump, and blower, performing cleaning and drying treatment on the motor stator. This automates the cleaning and drying process of the motor stator, improves work efficiency, and reduces the labor intensity of operators.

[0011] Preferably, the push rod is designed to be replaceable from the push plate, and the adjusting rod is designed to be movable on the vertical plate. The push rod and the push plate are connected by a thread, which facilitates the installation or replacement of the push rod on the push plate. This allows the push rod to be adapted to motor stators of different sizes, improving the versatility of the washing and drying integrated machine and expanding its application range.

[0012] Preferably, a receiving plate is provided on the upright plate below the positioning plate. After cleaning and drying, the motor stator falls onto the receiving plate through the dropping chute, which facilitates the collection of the motor stator and improves the cleaning and drying quality of the motor stator.

[0013] Preferably, both the adjusting rod and the baffle are provided with air jet holes. One end of the adjusting rod is connected to the air supply pipe through a connecting pipe. Under the action of the hydraulic cylinder and piston rod, the push rod pushes the motor stator into the bearing groove from one end. The baffle blocks the motor stator at the other end of the bearing groove, allowing the motor stator to be cleaned and dried in the bearing groove between the baffle and the push rod. After cleaning and drying, the motor stator continues to move in the bearing groove, pushing the baffle and adjusting rod to move, pressing the spring between the upright plate and the baffle, reducing the moving speed of the motor stator, and improving the stability of the motor stator unloading process. After the motor stator falls from the chute, the spring force pushes the baffle to move in the opposite direction, causing the baffle to contact another motor stator and block it. The blower blows air through the air supply pipe and connecting pipe into the air nozzles of the adjusting rod and baffle, and sprays it into the motor stator, so that the airflow can fully contact the cleaned motor stator and perform a thorough drying process, enhancing the drying efficiency of the motor stator. To further improve the drying efficiency and drying quality of the motor stator, a heater can be added to the air supply pipe so that the airflow carries heat to dry the cleaned motor stator.

[0014] An operating method for an integrated motor stator cleaning and drying machine, characterized in that the operating method includes the following steps:

[0015] The first step is to check whether the wiring of the motor stator cleaning and drying integrated machine is complete, and whether hydraulic cylinder one, motor, water pump, blower, and hydraulic cylinder two are in good condition.

[0016] The second step involves selecting a bearing plate with corresponding bearing grooves, a push rod, and an adjusting rod with corresponding baffles, based on the size of the motor stator. Insert the positioning rod on the bearing plate into the positioning hole, place the push rod on the push plate, pass the adjusting rod through the upright plate, and add clean water into the water tank.

[0017] The third step involves placing the motor stator to be cleaned into the feed pipe. Gravity causes the motor stator to fall along the feed pipe, bringing the lowest motor stator into contact with the push rod. Hydraulic cylinder two is then activated, pulling the push plate and push rod to lower the motor stator into the bearing groove. The push rod then pushes the motor stator forward sequentially within the bearing groove. The water pump is then activated, drawing water from the tank through the suction pipe and spraying it onto the surface of the motor stator within the bearing groove of the bearing plate through the water supply pipe, water pipe, spray pipe, and nozzle.

[0018] The fourth step is to start the hydraulic cylinder and the motor. The hydraulic cylinder and the piston rod drive the connecting plate to rise or fall. The motor drives the rotating shaft to rotate, which in turn drives the transmission belt to rotate. After the transmission belt falls, it contacts the motor stator. The rotating transmission belt drives the motor stator to rotate in the bearing groove, so that the brush strips in the bearing groove clean the rotating motor stator. The water in the bearing groove carries impurities and is quickly discharged from the drain hole.

[0019] Fifth step, start the blower. During the cleaning process, the motor stator continues to move in the bearing groove under the action of the push rod. After cleaning, the motor stator comes into contact with the air sprayed from the air outlet pipe in the bearing groove, so that the sponge strip in the bearing groove comes into contact with the rotating motor stator, absorbs the water on the motor stator after cleaning, and dries the motor stator.

[0020] Step 6: The push rod pushes the uncleaned motor stator to continue moving in the bearing groove, so that the cleaned motor stator pushes the dried motor stator to move in the bearing groove. The frontmost motor stator contacts the baffle, and the push block on the fixed plate presses the motor stator down. The motor stator falls from the discharge chute onto the receiving plate to receive the cleaned and dried motor stator.

[0021] Step 7: After the motor stator is cleaned and dried, turn off hydraulic cylinder 1, motor, water pump, blower, and hydraulic cylinder 2, disconnect the power, and clean the impurities in the cleaning and drying tanks.

[0022] Beneficial effects: This invention uses a hydraulic cylinder to pull a push plate and push rod, causing the motor stator to fall into the bearing groove. The push rod sequentially pushes the motor stator, which advances sequentially within the bearing groove, performing a cleaning and drying process. Multiple bearing grooves are provided on the bearing plate, allowing for simultaneous cleaning and drying of multiple motor stators, thus improving the cleaning and drying efficiency. The motor drives a rotating shaft, which in turn drives a conveyor belt. The descending conveyor belt contacts the motor stator, and the rotating conveyor belt causes the motor stator to rotate within the bearing groove. This causes the brush strips within the bearing groove to clean the rotating motor stator. Water in the bearing groove carries impurities away from the brush. The drain hole discharges water quickly. During the cleaning process, the motor stator continues to move in the bearing groove under the action of the push rod. After cleaning, the motor stator comes into contact with the air sprayed from the air outlet pipe in the bearing groove, causing the sponge strips in the bearing groove to contact the rotating motor stator and absorb the water on the motor stator after cleaning, thus drying the motor stator and improving the cleaning and drying efficiency of the motor stator. The motor stator continues to move forward in the bearing groove under the combined action of hydraulic cylinder one, hydraulic cylinder two, motor, water pump, and blower, cleaning and drying the motor stator. This allows the cleaning and drying process of the motor stator to be automated, improving work efficiency and reducing the labor intensity of operators. Attached Figure Description

[0023] Figure 1 This is a schematic diagram of the structure of the present invention.

[0024] Figure 2 This is a partial structural schematic diagram of the present invention, illustrating the connection structure between the support plate and the positioning plate.

[0025] Figure 3 This is a partial structural schematic diagram of the present invention, illustrating the connection structure between the support plate and the support groove.

[0026] Figure 4 This is a partial structural schematic diagram of the present invention, illustrating the connection structure between the support plate and the material discharge chute.

[0027] Figure 5 This is a partial structural schematic diagram of the present invention, illustrating the connection structure between the rotating shaft and the conveyor belt.

[0028] Figure 6 This is a partial structural schematic diagram of the present invention, illustrating the connection structure between the push plate and the push rod.

[0029] Figure 7 This is a partial structural diagram of the present invention, illustrating the connection structure between the fixing plate and the push block.

[0030] Figure 8 This is a partial structural schematic diagram of the present invention, illustrating the connection structure between the adjusting rod and the air jet hole.

[0031] Figure 9This is a schematic diagram of another embodiment of the present invention.

[0032] In the diagram: 1. Water tank, 2. Support plate, 3. Top plate, 4. Hydraulic cylinder one, 5. Connecting plate, 6. Motor, 7. Rotating shaft, 8. Water pump, 9. Blower, 10. Hydraulic cylinder two, 11. Push plate, 12. Adjusting rod, 13. Vertical plate, 14. Positioning plate, 15. Receiving plate, 16. Positioning hole, 17. Positioning rod, 18. Support groove, 19. Drop groove, 20. Drainage hole, 21. Brush strip one, 22. Sponge strip, 23. Feed pipe, 24. 25. Piston rod 1, 26. Fixed plate, 27. Bearing, 28. Inner cavity, 29. Push block, 30. Spring, 31. Air outlet pipe, 32. Water spray pipe, 33. Nozzle, 34. Connecting shaft, 35. Conveyor belt, 36. Brush strip 2, 37. Water suction pipe, 38. Water supply pipe, 39. Air supply pipe, 40. Ventilation pipe, 41. Connecting pipe, 42. Piston rod 2, 43. Push rod, 44. Baffle, 45. Air spray hole, 46. Filter screen. Detailed Implementation

[0033] The present invention will now be described in more detail with reference to the accompanying drawings.

[0034] Example 1:

[0035] As attached Figure 1-8As shown, a motor stator cleaning and drying integrated machine includes a water tank 1, a support plate 2, a top plate 3, a first hydraulic cylinder 4, a connecting plate 5, a motor 6, a rotating shaft 7, a water pump 8, a blower 9, a second hydraulic cylinder 10, a push plate 11, and an adjusting rod 12. The water tank 1 is characterized by having a vertical plate 13 on top, with a positioning plate 14 on the vertical plate 13. The support plate 2 is mounted on the positioning plate 14, and has a support groove 18 and a material discharge groove 19 on it. A drainage hole 20 penetrating the support plate 2 is provided at the bottom of the support groove 18. The top plate 3 is mounted on the vertical plate 13, and has a feed pipe 23 on it, with its lower end extending above the support groove 18. The first hydraulic cylinder 4 is mounted on the top plate 3 and... A piston rod 24 is mounted on the cylinder 4. The connecting plate 5 is connected to the piston rod 24. A fixed plate 25, an air outlet pipe 30, and a water spray pipe 31 are mounted on the connecting plate 5. The top end of the air outlet pipe 30 is connected to a ventilation pipe 40, and the top end of the water spray pipe 31 is connected to a water pipe 38. A nozzle 32 is mounted at the bottom end of the water spray pipe 31. A bearing 26 is mounted on the fixed plate 25. The motor 6 is mounted on the fixed plate 25. Connecting shafts 33 are mounted at both ends of the rotating shaft 7. The connecting shafts 33 extend into the bearings 26, and one of the connecting shafts 33 is connected to the output shaft of the motor 6. A conveyor belt 34 is mounted between the rotating shafts 7. A water pump 8 is mounted on the top plate 3. A suction pipe 36 and a water delivery pipe are mounted on the water pump 8. Pipe 37 connects the suction pipe 36 to the water tank 1, and the water supply pipe 37 connects to the water pipe 38. The blower 9 is mounted on the top plate 3, and an air supply pipe 39 is mounted on the blower 9, which is connected to the ventilation pipe 40. The hydraulic cylinder 10 is mounted on the vertical plate 13, and a piston rod 42 is mounted on the hydraulic cylinder 10. The push plate 11 is mounted on the piston rod 42, and a push rod 43 is mounted on the push plate 11, extending into the bearing groove 18 below the feed cylinder. The adjusting rod 12 passes through the vertical plate 13, and a baffle 44 is mounted on the vertical plate 13. A spring 29 is mounted on the adjusting rod 12 between the baffle 44 and the vertical plate 13, and the baffle 44 extends into the bearing groove 18. The motor to be cleaned is positioned... The motor stator is placed into the feed pipe 23. Gravity causes it to fall along the feed pipe 23, bringing the lowest stator into contact with the push rod 43. Hydraulic cylinder 10 is activated, pulling the push plate 11 and push rod 43, causing the motor stator to fall into the bearing groove 18. Push rod 43 then pushes the motor stator forward sequentially within the bearing groove 18, performing a cleaning and drying process. Multiple bearing grooves 18 are provided on the bearing plate 2, allowing for simultaneous cleaning and drying of multiple motor stators, thus improving cleaning and drying efficiency. Motor 6 drives the rotating shaft 7 to rotate, which in turn drives the conveyor belt 34 to rotate. The descending conveyor belt 34 contacts the motor stator, and the rotating conveyor belt 34 causes the motor stator to rotate within the bearing groove 18.The brush strips 21 within the bearing groove 18 clean the rotating motor stator. Water carrying impurities in the bearing groove 18 is quickly discharged through the drain hole 20 and flows into the water tank 1, allowing for water recycling and reducing waste. During the cleaning process, the motor stator continues to move within the bearing groove 18 under the action of the push rod 43. After cleaning, the motor stator comes into contact with the air sprayed from the air outlet 30 within the bearing groove 18, causing the sponge strips 22 within the bearing groove 18 to contact the rotating motor stator, absorbing the water and drying the stator, thus improving the cleaning and drying efficiency. The motor stator continues to advance within the bearing groove 18 under the coordinated action of hydraulic cylinder 4, hydraulic cylinder 10, motor 6, water pump 8, and blower 9, cleaning and drying the motor stator. This automated cleaning and drying process improves work efficiency and reduces the labor intensity of operators.

[0036] Preferably, the positioning plate 14 is provided with a positioning hole 16, and the support plate 2 is provided with a positioning rod 17 below it. The positioning rod 17 is inserted into the positioning hole 16, and the support plate 2 is set to be removable from the positioning plate 14. Inserting the positioning rod 17 on the support plate 2 into the positioning hole 16 improves the stability of the support plate 2 on the positioning plate 14, thereby improving the stability of the motor stator during the cleaning and drying process. According to the motor stator of different sizes, the support plate 2 of the corresponding support groove 18 is selected, which not only improves the stability of the motor stator in the support groove 18, but also improves the versatility of the cleaning and drying integrated machine and expands the application range of the cleaning and drying integrated machine.

[0037] Preferably, the bearing groove 18, feed pipe 23, push rod 43, and baffle 44 on the bearing plate 2 are configured in a one-to-one correspondence structure. The motor stator to be cleaned is placed into the feed pipe 23, and gravity causes the motor stator to fall along the feed pipe 23, so that the lowest motor stator contacts the push rod 43. The hydraulic cylinder 10 is activated, and the hydraulic cylinder 10 pulls the push plate 11 and the push rod 43, so that the motor stator falls into the bearing groove 18. The push rod 43 pushes the motor stator in sequence, and the motor stator moves forward in sequence in the bearing groove 18 to clean and dry the motor stator. The bearing plate 2 is provided with multiple bearing grooves 18, which can clean and dry multiple motor stators at the same time, thereby improving the cleaning and drying efficiency of the motor stator.

[0038] Preferably, the inner wall of the bearing groove 18 on the bearing plate 2 is provided with brush strips 21 and sponge strips 22. The motor 6 drives the rotating shaft 7 to rotate, which in turn drives the transmission belt 34 to rotate. The descending transmission belt 34 contacts the motor stator. The rotating transmission belt 34 drives the motor stator to rotate in the bearing groove 18, so that the brush strips 21 in the bearing groove 18 clean the rotating motor stator. The water in the bearing groove 18 carrying impurities is quickly discharged from the drain hole 20. During the cleaning process, the motor stator continues to move in the bearing groove 18 under the action of the push rod 43. After cleaning, the motor stator contacts the air sprayed from the air outlet 30 in the bearing groove 18, so that the sponge strips 22 in the bearing groove 18 contact the rotating motor stator, absorb the water on the motor stator after cleaning, and dry the motor stator, thereby improving the cleaning and drying efficiency of the motor stator.

[0039] Preferably, the conveyor belt 34 on the rotating shaft 7 is configured as a segmented structure, with brush strips 35 on the conveyor belt 34, and the air outlet pipe 30 and water spray pipe 31 are arranged in the space between the conveyor belts 34. The motor 6 drives the rotating shaft 7 to rotate, and the rotating shaft 7 drives multiple conveyor belts 34 to rotate. The conveyor belts 34 drive the motor stator to rotate in the bearing groove 18. The brush strips 35 on the conveyor belt 34 and the brush strips 21 in the bearing groove 18 clean the motor stator, thereby improving the cleaning efficiency and cleaning quality of the motor stator.

[0040] Preferably, the fixed plate 25 is provided with an inner cavity 27, and a push block 28 is provided in the inner cavity 27 by means of a spring 29. The push block 28 extends from the bottom end of the fixed plate 25 and is positioned directly above the material drop trough 19. The conveyor belt 34 contacts the motor stator in the bearing trough 18, and the push block 28 contacts the motor stator above the material drop trough 19. Under the action of the hydraulic cylinder 4, the push block 28 continues to descend, causing the motor stator to fall from the material drop trough 19. Under the combined action of the hydraulic cylinder 4, the hydraulic cylinder 10, the motor 6, the water pump 8, and the blower 9, the motor stator continues to advance in the bearing trough 18, cleaning and drying the motor stator. This automates the cleaning and drying process of the motor stator, improves work efficiency, and reduces the labor intensity of operators.

[0041] Preferably, the push rod 43 is designed to be replaceable from the push plate 11, and the adjusting rod 12 is designed to be movable on the vertical plate 13. The push rod 43 and the push plate 11 are connected by a thread, which facilitates the installation or replacement of the push rod 43 on the push plate 11. This allows the push rod 43 to be used with motor stators of different sizes, improving the versatility of the cleaning and drying integrated machine and expanding its application range.

[0042] Preferably, a receiving plate 15 is provided on the upright plate 13 below the positioning plate 14. After cleaning and drying, the motor stator falls onto the receiving plate 15 through the dropping chute 19, which facilitates the collection of the motor stator and improves the cleaning and drying quality of the motor stator.

[0043] Preferably, both the adjusting rod 12 and the baffle 44 are provided with air jet holes 45. One end of the adjusting rod 12 is connected to the air supply pipe 39 through the connecting pipe 41. Under the action of the hydraulic cylinder 10 and the piston rod 42, the push rod 43 pushes the motor stator into the bearing groove 18 from one end of the bearing groove 18. The baffle 44 blocks the motor stator at the other end of the bearing groove 18, so that the motor stator is cleaned and dried in the bearing groove 18 between the baffle 44 and the push rod 43. After cleaning and drying, the motor stator continues to move in the bearing groove 18, pushing the baffle 44 and the adjusting rod 12 to move, pressing the spring 29 between the upright plate 13 and the baffle 44, reducing the movement speed of the motor stator and increasing the speed of the motor stator. To ensure the smoothness of the feeding process, after one motor stator falls from the feeding chute 19, the elastic force of the spring 29 pushes the baffle 44 to move in the opposite direction, so that the baffle 44 contacts the other motor stator and blocks it. The blower 9 blows the airflow through the air supply pipe 39 and the connecting pipe 41 into the air spray hole 45 of the adjusting rod 12 and the baffle 44, and sprays it into the motor stator from the air spray hole 45, so that the airflow can fully contact the cleaned motor stator and fully dry the motor stator, thereby enhancing the drying efficiency of the motor stator. In order to further improve the drying efficiency and drying quality of the motor stator, a heater can be added to the air supply pipe 39 so that the airflow carries heat to dry the cleaned motor stator.

[0044] An operating method for an integrated motor stator cleaning and drying machine, characterized in that the operating method includes the following steps:

[0045] The first step is to check whether the wiring of the motor stator cleaning and drying integrated machine is complete, and whether the hydraulic cylinder 1 (4), motor (6), water pump (8), blower (9), and hydraulic cylinder 2 (10) are in good condition.

[0046] The second step involves selecting a support plate 2 with a corresponding bearing groove 18, a push rod 43, and an adjusting rod 12 with a corresponding baffle 44, based on the size of the motor stator. The positioning rod 17 on the support plate 2 is inserted into the positioning hole 16. The push rod 43 is placed on the push plate 11, and the adjusting rod 12 is passed through the upright plate 13. Clean water is then added to the water tank 1.

[0047] The third step involves placing the motor stator to be cleaned into the feed pipe 23. Gravity causes the motor stator to fall along the feed pipe 23, bringing the lowest motor stator into contact with the push rod 43. Hydraulic cylinder 10 is then activated, pulling the push plate 11 and the push rod 43 to allow the motor stator to fall into the bearing groove 18. The push rod 43 then pushes the motor stator forward sequentially within the bearing groove 18. The water pump 8 is then activated, drawing water from the water tank 1 through the suction pipe 36 and spraying it onto the surface of the motor stator within the bearing groove 18 of the bearing plate 2 through the water supply pipe 37, water pipe 38, spray pipe 31, and nozzle 32.

[0048] Fourth step, start hydraulic cylinder 4 and motor 6. Hydraulic cylinder 4 and piston rod 24 drive connecting plate 5 to rise or fall. Motor 6 drives rotating shaft 7 to rotate, which in turn drives transmission belt 34 to rotate. After falling, transmission belt 34 contacts motor stator. The rotating transmission belt 34 drives motor stator to rotate in bearing groove 18, so that brush strip 21 in bearing groove 18 cleans the rotating motor stator. Water in bearing groove 18 carrying impurities is quickly discharged from drain hole 20.

[0049] Fifth step, start blower 9. During the cleaning process, the motor stator continues to move in the bearing groove 18 under the action of push rod 43. After cleaning, the motor stator comes into contact with the air sprayed from the air outlet 30 in the bearing groove 18, so that the sponge strip 22 in the bearing groove 18 comes into contact with the rotating motor stator, absorbs the water on the motor stator after cleaning, and dries the motor stator.

[0050] In the sixth step, the push rod 43 pushes the uncleaned motor stator to continue moving in the bearing groove 18, so that the cleaned motor stator pushes the dried motor stator to move in the bearing groove 18. The foremost motor stator contacts the baffle 44, and the push block 28 on the fixed plate 25 presses the motor stator down. The motor stator falls from the discharge groove 19 onto the receiving plate 15 to receive the cleaned and dried motor stator.

[0051] Step 7: After the motor stator is cleaned and dried, turn off hydraulic cylinder 4, motor 6, water pump 8, blower 9, and hydraulic cylinder 10, disconnect the power, and clean the impurities in the cleaning and drying tanks.

[0052] Example 2:

[0053] As attached Figure 9As shown: A motor stator cleaning and drying integrated machine includes a water tank 1, a support plate 2, a top plate 3, a first hydraulic cylinder 4, a connecting plate 5, a motor 6, a rotating shaft 7, a water pump 8, a blower 9, a second hydraulic cylinder 10, a push plate 11, and an adjusting rod 12. The water tank 1 is characterized by having a vertical plate 13 on top, with a positioning plate 14 on the vertical plate 13. The support plate 2 is mounted on the positioning plate 14, and has a support groove 18 and a material discharge groove 19. A drainage hole 20 penetrating the support plate 2 is provided at the bottom of the support groove 18. The top plate 3 is mounted on the vertical plate 13, and has a feed pipe 23 extending its lower end above the support groove 18. The first hydraulic cylinder 4 is mounted on the top plate 3 and... A piston rod 24 is mounted on the cylinder 4. The connecting plate 5 is connected to the piston rod 24. A fixed plate 25, an air outlet pipe 30, and a water spray pipe 31 are mounted on the connecting plate 5. The top end of the air outlet pipe 30 is connected to a ventilation pipe 40, and the top end of the water spray pipe 31 is connected to a water pipe 38. A nozzle 32 is mounted at the bottom end of the water spray pipe 31. A bearing 26 is mounted on the fixed plate 25. The motor 6 is mounted on the fixed plate 25. Connecting shafts 33 are mounted at both ends of the rotating shaft 7. The connecting shafts 33 extend into the bearings 26, and one of the connecting shafts 33 is connected to the output shaft of the motor 6. A conveyor belt 34 is mounted between the rotating shafts 7. A water pump 8 is mounted on the top plate 3. A suction pipe 36 and a water delivery pipe are mounted on the water pump 8. Pipe 37 connects the suction pipe 36 to the water tank 1, and the water supply pipe 37 connects to the water pipe 38. The blower 9 is mounted on the top plate 3, and an air supply pipe 39 is mounted on the blower 9, which is connected to the ventilation pipe 40. The hydraulic cylinder 10 is mounted on the vertical plate 13, and a piston rod 42 is mounted on the hydraulic cylinder 10. The push plate 11 is mounted on the piston rod 42, and a push rod 43 is mounted on the push plate 11, extending into the bearing groove 18 below the feed cylinder. The adjusting rod 12 passes through the vertical plate 13, and a baffle 44 is mounted on the vertical plate 13. A spring 29 is mounted on the adjusting rod 12 between the baffle 44 and the vertical plate 13, and the baffle 44 extends into the bearing groove 18. The motor to be cleaned is positioned... The motor stator is placed into the feed pipe 23. Gravity causes it to fall along the feed pipe 23, bringing the lowest stator into contact with the push rod 43. Hydraulic cylinder 10 is activated, pulling the push plate 11 and push rod 43, causing the motor stator to fall into the bearing groove 18. Push rod 43 then pushes the motor stator forward sequentially within the bearing groove 18, performing a cleaning and drying process. Multiple bearing grooves 18 are provided on the bearing plate 2, allowing for simultaneous cleaning and drying of multiple motor stators, thus improving cleaning and drying efficiency. Motor 6 drives the rotating shaft 7 to rotate, which in turn drives the conveyor belt 34 to rotate. The descending conveyor belt 34 contacts the motor stator, and the rotating conveyor belt 34 causes the motor stator to rotate within the bearing groove 18.The brush strips 21 within the bearing groove 18 clean the rotating motor stator. Water carrying impurities in the bearing groove 18 is quickly discharged through the drain hole 20 and flows into the water tank 1, allowing for water recycling and reducing waste. During the cleaning process, the motor stator continues to move within the bearing groove 18 under the action of the push rod 43. After cleaning, the motor stator comes into contact with the air sprayed from the air outlet 30 within the bearing groove 18, causing the sponge strips 22 within the bearing groove 18 to contact the rotating motor stator, absorbing the water and drying the stator, thus improving the cleaning and drying efficiency. The motor stator continues to advance within the bearing groove 18 under the coordinated action of hydraulic cylinder 4, hydraulic cylinder 10, motor 6, water pump 8, and blower 9, cleaning and drying the motor stator. This automated cleaning and drying process improves work efficiency and reduces the labor intensity of operators.

[0054] Preferably, the positioning plate 14 is provided with a positioning hole 16, and the support plate 2 is provided with a positioning rod 17 below it. The positioning rod 17 is inserted into the positioning hole 16, and the support plate 2 is set to be removable from the positioning plate 14. Inserting the positioning rod 17 on the support plate 2 into the positioning hole 16 improves the stability of the support plate 2 on the positioning plate 14, thereby improving the stability of the motor stator during the cleaning and drying process. According to the motor stator of different sizes, the support plate 2 of the corresponding support groove 18 is selected, which not only improves the stability of the motor stator in the support groove 18, but also improves the versatility of the cleaning and drying integrated machine and expands the application range of the cleaning and drying integrated machine.

[0055] Preferably, the bearing groove 18, feed pipe 23, push rod 43, and baffle 44 on the bearing plate 2 are configured in a one-to-one correspondence structure. The motor stator to be cleaned is placed into the feed pipe 23, and gravity causes the motor stator to fall along the feed pipe 23, so that the lowest motor stator contacts the push rod 43. The hydraulic cylinder 10 is activated, and the hydraulic cylinder 10 pulls the push plate 11 and the push rod 43, so that the motor stator falls into the bearing groove 18. The push rod 43 pushes the motor stator in sequence, and the motor stator moves forward in sequence in the bearing groove 18 to clean and dry the motor stator. The bearing plate 2 is provided with multiple bearing grooves 18, which can clean and dry multiple motor stators at the same time, thereby improving the cleaning and drying efficiency of the motor stator.

[0056] Preferably, the inner wall of the bearing groove 18 on the bearing plate 2 is provided with brush strips 21 and sponge strips 22. The motor 6 drives the rotating shaft 7 to rotate, which in turn drives the transmission belt 34 to rotate. The descending transmission belt 34 contacts the motor stator. The rotating transmission belt 34 drives the motor stator to rotate in the bearing groove 18, so that the brush strips 21 in the bearing groove 18 clean the rotating motor stator. The water in the bearing groove 18 carrying impurities is quickly discharged from the drain hole 20. During the cleaning process, the motor stator continues to move in the bearing groove 18 under the action of the push rod 43. After cleaning, the motor stator contacts the air sprayed from the air outlet 30 in the bearing groove 18, so that the sponge strips 22 in the bearing groove 18 contact the rotating motor stator, absorb the water on the motor stator after cleaning, and dry the motor stator, thereby improving the cleaning and drying efficiency of the motor stator.

[0057] Preferably, the conveyor belt 34 on the rotating shaft 7 is configured as a segmented structure, with brush strips 35 on the conveyor belt 34, and the air outlet pipe 30 and water spray pipe 31 are arranged in the space between the conveyor belts 34. The motor 6 drives the rotating shaft 7 to rotate, and the rotating shaft 7 drives multiple conveyor belts 34 to rotate. The conveyor belts 34 drive the motor stator to rotate in the bearing groove 18. The brush strips 35 on the conveyor belt 34 and the brush strips 21 in the bearing groove 18 clean the motor stator, thereby improving the cleaning efficiency and cleaning quality of the motor stator.

[0058] Preferably, the fixed plate 25 is provided with an inner cavity 27, and a push block 28 is provided in the inner cavity 27 by means of a spring 29. The push block 28 extends from the bottom end of the fixed plate 25 and is positioned directly above the material drop trough 19. The conveyor belt 34 contacts the motor stator in the bearing trough 18, and the push block 28 contacts the motor stator above the material drop trough 19. Under the action of the hydraulic cylinder 4, the push block 28 continues to descend, causing the motor stator to fall from the material drop trough 19. Under the combined action of the hydraulic cylinder 4, the hydraulic cylinder 10, the motor 6, the water pump 8, and the blower 9, the motor stator continues to advance in the bearing trough 18, cleaning and drying the motor stator. This automates the cleaning and drying process of the motor stator, improves work efficiency, and reduces the labor intensity of operators.

[0059] Preferably, the push rod 43 is designed to be replaceable from the push plate 11, and the adjusting rod 12 is designed to be movable on the vertical plate 13. The push rod 43 and the push plate 11 are connected by a thread, which facilitates the installation or replacement of the push rod 43 on the push plate 11. This allows the push rod 43 to be used with motor stators of different sizes, improving the versatility of the washing and drying integrated machine and expanding its application range.

[0060] Preferably, a receiving plate 15 is provided on the upright plate 13 below the positioning plate 14. After cleaning and drying, the motor stator falls onto the receiving plate 15 through the dropping chute 19, which facilitates the collection of the motor stator and improves the cleaning and drying quality of the motor stator.

[0061] Preferably, both the adjusting rod 12 and the baffle 44 are provided with air jet holes 45. One end of the adjusting rod 12 is connected to the air supply pipe 39 through the connecting pipe 41. Under the action of the hydraulic cylinder 10 and the piston rod 42, the push rod 43 pushes the motor stator into the bearing groove 18 from one end of the bearing groove 18. The baffle 44 blocks the motor stator at the other end of the bearing groove 18, so that the motor stator is cleaned and dried in the bearing groove 18 between the baffle 44 and the push rod 43. After cleaning and drying, the motor stator continues to move in the bearing groove 18, pushing the baffle 44 and the adjusting rod 12 to move, pressing the spring 29 between the upright plate 13 and the baffle 44, reducing the movement speed of the motor stator and increasing the speed of the motor stator. To ensure the smoothness of the feeding process, after one motor stator falls from the feeding chute 19, the elastic force of the spring 29 pushes the baffle 44 to move in the opposite direction, so that the baffle 44 contacts the other motor stator and blocks it. The blower 9 blows the airflow through the air supply pipe 39 and the connecting pipe 41 into the air spray hole 45 of the adjusting rod 12 and the baffle 44, and sprays it into the motor stator from the air spray hole 45, so that the airflow can fully contact the cleaned motor stator and fully dry the motor stator, thereby enhancing the drying efficiency of the motor stator. In order to further improve the drying efficiency and drying quality of the motor stator, a heater can be added to the air supply pipe 39 so that the airflow carries heat to dry the cleaned motor stator.

[0062] Preferably, the water tank 1 is provided with a horizontally structured filter screen 46, which can filter impurities in the water and prevent impurities from being sucked out by the water suction pipe 36. This can improve the cleaning quality of the motor stator and prevent impurities from damaging the water pump 8, thus extending the service life of the water pump 8.

[0063] An operating method for an integrated motor stator cleaning and drying machine, characterized in that the operating method includes the following steps:

[0064] The first step is to check whether the wiring of the motor stator cleaning and drying integrated machine is complete, and whether the hydraulic cylinder 1 (4), motor (6), water pump (8), blower (9), and hydraulic cylinder 2 (10) are in good condition.

[0065] The second step involves selecting a support plate 2 with a corresponding bearing groove 18, a push rod 43, and an adjusting rod 12 with a corresponding baffle 44, based on the size of the motor stator. The positioning rod 17 on the support plate 2 is inserted into the positioning hole 16. The push rod 43 is placed on the push plate 11, and the adjusting rod 12 is passed through the upright plate 13. Clean water is then added to the water tank 1.

[0066] The third step involves placing the motor stator to be cleaned into the feed pipe 23. Gravity causes the motor stator to fall along the feed pipe 23, bringing the lowest motor stator into contact with the push rod 43. Hydraulic cylinder 10 is then activated, pulling the push plate 11 and the push rod 43 to allow the motor stator to fall into the bearing groove 18. The push rod 43 then pushes the motor stator forward sequentially within the bearing groove 18. The water pump 8 is then activated, drawing water from the water tank 1 through the suction pipe 36 and spraying it onto the surface of the motor stator within the bearing groove 18 of the bearing plate 2 through the water supply pipe 37, water pipe 38, spray pipe 31, and nozzle 32.

[0067] Fourth step, start hydraulic cylinder 4 and motor 6. Hydraulic cylinder 4 and piston rod 24 drive connecting plate 5 to rise or fall. Motor 6 drives rotating shaft 7 to rotate, which in turn drives transmission belt 34 to rotate. After falling, transmission belt 34 contacts motor stator. The rotating transmission belt 34 drives motor stator to rotate in bearing groove 18, so that brush strip 21 in bearing groove 18 cleans the rotating motor stator. Water in bearing groove 18 carrying impurities is quickly discharged from drain hole 20.

[0068] Fifth step, start blower 9. During the cleaning process, the motor stator continues to move in the bearing groove 18 under the action of push rod 43. After cleaning, the motor stator comes into contact with the air sprayed from the air outlet 30 in the bearing groove 18, so that the sponge strip 22 in the bearing groove 18 comes into contact with the rotating motor stator, absorbs the water on the motor stator after cleaning, and dries the motor stator.

[0069] In the sixth step, the push rod 43 pushes the uncleaned motor stator to continue moving in the bearing groove 18, so that the cleaned motor stator pushes the dried motor stator to move in the bearing groove 18. The foremost motor stator contacts the baffle 44, and the push block 28 on the fixed plate 25 presses the motor stator down. The motor stator falls from the discharge groove 19 onto the receiving plate 15 to receive the cleaned and dried motor stator.

[0070] Step 7: After the motor stator is cleaned and dried, turn off hydraulic cylinder 4, motor 6, water pump 8, blower 9, and hydraulic cylinder 10, disconnect the power, and clean the impurities in the cleaning and drying tanks.

[0071] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

[0072] In the description of this invention, it should be understood that the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this invention.

[0073] All parts not covered in this invention are the same as or can be implemented using existing technologies.

Claims

1. A motor stator cleaning and drying integrated machine, comprising a water tank, a support plate, a top plate, a first hydraulic cylinder, a connecting plate, a motor, a rotating shaft, a water pump, a blower, a second hydraulic cylinder, a push plate, and an adjusting rod, characterized in that, The water tank is topped with a vertical plate, and a positioning plate is mounted on the vertical plate. A support plate is mounted on the positioning plate, and a support groove and a material discharge groove are provided on the support plate. A drainage hole penetrating the support plate is provided at the bottom of the support groove. A top plate is mounted on the vertical plate, and a feed pipe is provided on the top plate, with its lower end extending above the support groove. A hydraulic cylinder is mounted on the top plate, and a piston rod is mounted on the hydraulic cylinder. A connecting plate is connected to the piston rod. A fixing plate, an air outlet pipe, and a water spray pipe are provided on the connecting plate. The top end of the air outlet pipe is connected to a ventilation pipe, and the top end of the water spray pipe is connected to a water pipe. A nozzle is provided at the bottom end of the water spray pipe. A bearing is mounted on the fixing plate. The motor is mounted on the fixing plate, and connecting shafts are provided at both ends of the rotating shaft. The connecting shaft is inserted into the bearing, and one of the connecting shafts is connected to the motor output shaft. A transmission belt is installed between the rotating shafts. The water pump is installed on the top plate, and a suction pipe and a delivery pipe are installed on the water pump. The suction pipe is connected to the water tank, and the delivery pipe is connected to the water pipe. The blower is installed on the top plate, and an air delivery pipe is installed on the blower. The air delivery pipe is connected to the ventilation pipe. The second hydraulic cylinder is installed on the vertical plate, and a second piston rod is installed on the second hydraulic cylinder. The push plate is installed on the second piston rod, and a push rod is installed on the push plate. The push rod extends into the bearing groove below the feed cylinder. The adjusting rod passes through the vertical plate, and a baffle is installed on the vertical plate. A spring is installed on the adjusting rod between the baffle and the vertical plate, and the baffle extends into the bearing groove.

2. The integrated motor stator cleaning and drying machine according to claim 1, characterized in that: The positioning plate is provided with positioning holes, and the bearing plate is provided with positioning rods below it. The positioning rods are inserted into the positioning holes, and the bearing plate is designed to be removable from the positioning plate.

3. The integrated motor stator cleaning and drying machine according to claim 1, characterized in that: The bearing groove, feed pipe, push rod and baffle on the bearing plate are configured as a one-to-one correspondence structure.

4. The integrated motor stator cleaning and drying machine according to claim 3, characterized in that: The inner wall of the bearing groove on the bearing plate is provided with a brush strip and a sponge strip.

5. The integrated cleaning and drying machine for motor stator according to claim 1, characterized in that: The conveyor belt on the rotating shaft is configured as a segmented structure, with brush strips on the conveyor belt and air outlet pipes and water spray pipes installed in the space between the conveyor belts.

6. The integrated cleaning and drying machine for motor stator according to claim 1, characterized in that: The fixed plate is provided with an inner cavity, and a push block is provided in the inner cavity by means of a spring. The push block extends out from the bottom end of the fixed plate and is positioned directly above the material discharge chute.

7. The integrated cleaning and drying machine for motor stator according to claim 1, characterized in that: The push rod is designed to be replaceable from the push plate, and the adjusting rod is designed to be movable on the upright plate.

8. The integrated cleaning and drying machine for motor stator according to claim 1 or 2, characterized in that: A receiving plate is provided on the upright plate below the positioning plate.

9. The integrated cleaning and drying machine for motor stator according to claim 1, characterized in that: Both the adjusting rod and the baffle are equipped with air jet holes, and one end of the adjusting rod is connected to the air supply pipe through a connecting pipe.

10. An operating method applicable to the integrated motor stator cleaning and drying machine as described in claim 1, characterized in that, The operation method includes the following steps: The first step is to check whether the wiring of the motor stator cleaning and drying integrated machine is complete, and whether hydraulic cylinder one, motor, water pump, blower, and hydraulic cylinder two are in good condition. The second step is to select a bearing plate with a corresponding bearing groove, a push rod, and an adjusting rod with a corresponding baffle according to the size of the motor stator. Insert the positioning rod on the bearing plate into the positioning hole, install the push rod on the push plate, pass the adjusting rod through the vertical plate, and add clean water into the water tank. The third step involves placing the motor stator to be cleaned into the feed pipe. Gravity causes the motor stator to fall along the feed pipe, bringing the lowest motor stator into contact with the push rod. Hydraulic cylinder two is then activated, pulling the push plate and push rod to lower the motor stator into the bearing groove. The push rod then pushes the motor stator forward sequentially within the bearing groove. The water pump is then activated, drawing water from the tank through the suction pipe and spraying it onto the surface of the motor stator within the bearing groove of the bearing plate through the water supply pipe, water pipe, spray pipe, and nozzle. The fourth step is to start the hydraulic cylinder and the motor. The hydraulic cylinder and the piston rod drive the connecting plate to rise or fall. The motor drives the rotating shaft to rotate, which in turn drives the transmission belt to rotate. After the transmission belt falls, it contacts the motor stator. The rotating transmission belt drives the motor stator to rotate in the bearing groove, so that the brush strips in the bearing groove clean the rotating motor stator. The water in the bearing groove carries impurities and is quickly discharged from the drain hole. Fifth step, start the blower. During the cleaning process, the motor stator continues to move in the bearing groove under the action of the push rod. After cleaning, the motor stator comes into contact with the air sprayed from the air outlet pipe in the bearing groove, so that the sponge strip in the bearing groove comes into contact with the rotating motor stator, absorbs the water on the motor stator after cleaning, and dries the motor stator. Step 6: The push rod pushes the uncleaned motor stator to continue moving in the bearing groove, so that the cleaned motor stator pushes the dried motor stator to move in the bearing groove. The frontmost motor stator contacts the baffle, and the push block on the fixed plate presses the motor stator down. The motor stator falls from the drop chute onto the receiving plate to receive the cleaned and dried motor stator. Step 7: After the motor stator is cleaned and dried, turn off hydraulic cylinder 1, motor, water pump, blower, and hydraulic cylinder 2, disconnect the power, and clean the impurities in the cleaning and drying tanks.

Citation Information

Patent Citations

  • Automatic stator cleaning device

    CN214813118U

  • Motor stator cleaning and drying all-in-one machine

    CN217240529U