Assembly type electromechanical equipment part cleaning device

By designing prefabricated electromechanical equipment parts cleaning devices, and using automated conveying, cleaning and drying processes, the problems of high labor intensity and low efficiency of traditional cleaning methods are solved, achieving a more efficient and thorough cleaning effect.

CN120054919APending Publication Date: 2025-05-30WUXI QIANFENG MACHINERY EQUIPMENT CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202510242868.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-03
Publication Date
2025-05-30

AI Technical Summary

Technical Problem

The traditional cleaning methods of mechanical and electrical equipment parts are labor-intensive and inefficient, and it is difficult to ensure the consistency and thoroughness of the cleaning effect.

Method used

Design a prefabricated electromechanical equipment parts cleaning device, using conveyor seats, hydraulic rods, motor-driven transmission chains and cleaning rollers to realize automated parts conveying, cleaning and drying.

Benefits of technology

It improves the comprehensiveness and thoroughness of cleaning, reduces labor intensity, improves efficiency, ensures that every surface of the workpiece is properly treated, and achieves rapid drying of the workpiece.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120054919A_ABST
    Figure CN120054919A_ABST
Patent Text Reader

Abstract

The invention provides an assembly type electromechanical equipment part cleaning device, and relates to the technical field of mechanical part cleaning. A first rotating column and a second rotating column are installed on the conveying base through bearings, chain wheels are fixed to the first rotating column and the second rotating column, a transmission chain is connected between the chain wheels on the first rotating column and the chain wheels on the second rotating column, a clamping base is fixed to the transmission chain, and a clamping groove is formed in the clamping base. Various impurities attached to the surface of a workpiece can be efficiently removed through the cleaning roller, flexible movement of the cleaning roller in the front-back direction can be achieved through operation of the second motor, deep cleaning work can be comprehensively carried out on all parts of the workpiece without omission, the sixth motor is operated, and the cleaning efficiency is improved. The workpiece can be further deeply cleaned from multiple angles and in all directions under the rotating state, so that the cleaning degree of the workpiece reaches a higher standard and requirement.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of mechanical component cleaning, and particularly to a cleaning device for assembled electromechanical equipment components. Background Art

[0002] With the rapid development of technology and the acceleration of the global industrialization process, electromechanical equipment is increasingly widely used in all walks of life. As an important part of modern industrial production, the performance and stability of electromechanical equipment directly affect the efficiency of the entire production line and the quality of products. However, during the use of electromechanical equipment, its internal parts will inevitably be eroded by pollutants such as dust and oil stains, resulting in a decline in equipment performance and even causing failures. Therefore, it is particularly important to regularly clean and maintain electromechanical equipment, so a cleaning device for assembled electromechanical equipment components is designed.

[0003] Traditional cleaning methods for electromechanical equipment components mostly rely on manual operation. This method not only has a large labor intensity and low efficiency, but also is difficult to ensure the consistency and thoroughness of the cleaning effect. Summary of the Invention

[0004] Embodiments of the present disclosure relate to a cleaning device for assembled electromechanical equipment components to solve the problems of large labor intensity, low efficiency, and difficulty in ensuring the consistency and thoroughness of the cleaning effect in traditional cleaning methods for electromechanical equipment components.

[0005] In a first aspect of the present disclosure, a cleaning device for assembled electromechanical equipment components is provided, which specifically includes: a conveying seat; Four groups of anchor bolts are installed at the lower end of the conveying seat through bolts. A first rotating column and a second rotating column are installed on the conveying seat through bearings. Sprockets are fixed on both the first rotating column and the second rotating column. A transmission chain is connected between the sprockets on the first rotating column and the second rotating column. A clamping seat is fixed on the transmission chain. A clamping groove is provided on the clamping seat, and a workpiece is installed in the clamping groove. A first gearbox is installed on the conveying seat through bolts. The output shaft of the first gearbox is connected to the front end of the first rotating column. A first motor is installed on the first gearbox through bolts. And a storage box is installed on the left side of the conveying seat through bolts. Two positioning plates slide in the storage box. Two round rods are fixed on both of the two positioning plates. The round rods slide on the conveying seat. Springs are sleeved on the round rods. Nuts are screwed onto the round rods. A material taking port is provided on the right side of the storage box. A receiving box is fixed on the right side of the conveying seat. The bottom surfaces of the storage box and the receiving box are arranged in a structure with the left side higher than the right side.

[0006] In at least some embodiments, A support base is fixed to the front side of the conveying base. A first hydraulic rod is installed at the upper end of the support base through bolts. And a lifting plate slides on the support base. Four guide rods are fixed to the lifting plate. All four guide rods slide on the support base. The lifting plate is fixedly connected to the lower end of the piston rod of the first hydraulic rod. A chassis slides on the lower end of the lifting plate. A spring is arranged between the chassis and the lifting plate. A track base is installed on the chassis through bolts. Two stop rods are fixed to the lower end of the chassis. Stop wheels are arranged at the lower ends of the two stop rods.

[0007] In at least some embodiments, A sliding block slides on the track base. The bottom surface of the sliding block is set as an inclined surface. And a second hydraulic rod is fixed to the track base. The piston rod of the second hydraulic rod is fixedly connected to the sliding block. A buffer frame is movably arranged at the lower end of the track base. A support column is fixed to the buffer frame. A contact wheel is installed at the upper end of the support column. The upper end of the contact wheel contacts the bottom surface of the sliding block. And a spring is sleeved on the support column.

[0008] In at least some embodiments, A bottom plate is installed on the lower end of the buffer frame through bolts. A moving plate slides on the lower end of the bottom plate. And a second motor is installed on the bottom plate through bolts. A pulley is fixed to the output shaft of the second motor. A pulley is installed on the bottom plate through a bearing. A transmission belt is connected between the pulley on the output shaft of the second motor and the pulley on the bottom plate. The transmission belt is fixedly connected to the moving plate.

[0009] In at least some embodiments, A fixed seat is fixed to the lower end of the moving plate. A first bearing seat and a second bearing seat are installed on the lower end of the fixed seat through bolts. A cleaning roller is installed between the first bearing seat and the second bearing seat. And a second gearbox is installed on the first bearing seat through bolts. A third motor is installed on the second gearbox through bolts. A waist-shaped through groove is arranged on the fixed seat.

[0010] In at least some embodiments, A side seat is installed on the fixed seat through bolts. A waist-shaped through groove is arranged on the side seat. The waist-shaped through groove on the side seat communicates with the waist-shaped through groove on the fixed seat. A sliding seat slides on the side seat. A dust suction nozzle is fixed to the sliding seat. The dust suction nozzle is connected to an external dust suction device. And a lead screw is installed on the side seat through a bearing. The lead screw is in threaded cooperation with the sliding seat. A third gearbox is installed on the side seat through bolts. A fourth motor is installed on the third gearbox through bolts. The output shaft of the third gearbox is connected to the lead screw.

[0011] In at least some embodiments, The front and rear ends of the conveying seat are respectively fixed with a first mounting seat and a second mounting seat through bolts. Mounting holes are provided on both the first mounting seat and the second mounting seat. Nozzles are installed in the mounting holes on the first mounting seat and the second mounting seat through bolts. The nozzles are connected with a high-pressure air pipe and a high-pressure water pipe, and the high-pressure air pipe and the high-pressure water pipe are respectively connected to an external high-pressure air equipment and a high-pressure cleaning liquid supply equipment.

[0012] In at least some embodiments, A welding plate is fixed on the first mounting seat. A welding frame is welded on the welding plate. An inclined disk rotates on the welding frame. A pulley is fixed on the rotating shaft of the inclined disk. A fifth motor is installed at the lower end of the welding plate through bolts. A pulley is fixed on the output shaft of the fifth motor. A belt is connected between the pulley on the output shaft of the fifth motor and the pulley on the rotating shaft of the inclined disk. And a push rod slides on the welding frame. A contact seat is installed on the push rod through bolts. The contact seat contacts the inclined disk.

[0013] In at least some embodiments, A movable column is movable on the first mounting seat. A spring is sleeved on the movable column. The front end of the push rod abuts against the rear end of the movable column. And a bottom shell is fixed at the front end of the movable column. A top shell is installed at the upper end of the bottom shell through bolts. An intermediate cylinder is installed between the bottom shell and the top shell through a bearing. A toothed disk is fixed at the rear end of the intermediate cylinder. A sixth motor is installed on the top shell through bolts. A worm is fixed on the output shaft of the sixth motor. A transmission rod is installed on the top shell through a bearing. A worm gear and a gear are respectively fixed at the upper and lower ends of the transmission rod. The worm gear meshes with the worm. The gear at the lower end of the transmission rod meshes with the toothed disk.

[0014] In at least some embodiments, Three groups of locking blocks slide at the front end of the intermediate cylinder. A cylindrical rod is fixed on the locking block. Three groups of sliding grooves are provided on the intermediate cylinder. The cylindrical rod on the locking block moves in the sliding grooves on the intermediate cylinder. And a collar is sleeved on the intermediate cylinder. Three groups of cylindrical structures are provided on the collar. The cylindrical rod on the locking block is inserted into the cylindrical structures on the collar. And a spring is sleeved on the cylindrical rod. A clamping seat is sleeved on the collar. Rolling bodies are arranged between the clamping seat and the collar. A third hydraulic rod is fixed on the top shell. A through groove is provided on the top shell. The clamping seat moves in the through groove on the top shell. The piston rod of the third hydraulic rod is connected to the clamping seat through a pin shaft.

[0015] The present invention provides an assembled electromechanical equipment component cleaning device, which has the following beneficial effects: In the present invention, when the first motor runs to drive the transmission chain to start operating, with the clamping seats provided on the transmission chain, the workpiece can be accurately and stably conveyed. When entering the cleaning stage of the workpiece, the first hydraulic rod extends, causing the two sets of stop rods to descend accordingly, and then enabling the stop wheels to tightly press on the transmission chain, significantly improving the stability performance of the transmission chain during operation and effectively avoiding possible adverse conditions such as shaking or deviation. At the same time, the second hydraulic rod is extended to gradually lower the height of the buffer frame until the cleaning roller is in close contact with the surface of the workpiece. At this time, the third motor starts to run, driving the cleaning roller to rotate at a high speed. With the cleaning roller, various impurities attached to the surface of the workpiece can be efficiently removed. By running the second motor, the cleaning roller can be flexibly moved in the front-back direction, enabling comprehensive and non-missing deep cleaning operations on all parts of the workpiece, ensuring that every surface of the workpiece can be properly treated, greatly improving the comprehensiveness and thoroughness of cleaning, with low labor intensity and high efficiency.

[0016] In addition, when the fifth motor starts, it causes the inclined disk to rotate. Under its rotational action, the rear end of the workpiece can be positioned within the space range formed by the three sets of locking blocks. The third hydraulic rod performs a contraction action, thereby driving the three sets of locking blocks to tightly clamp the rear end of the workpiece. By running the sixth motor, the workpiece can be driven to rotate. In this rotating state, the workpiece can be further deeply cleaned from multiple angles and comprehensively, enabling the cleaning degree of the workpiece to reach higher standards and requirements, effectively ensuring the performance and quality stability of the workpiece during subsequent assembly and use.

[0017] In addition, a dust suction nozzle is provided in the present invention. When the cleaning roller cleans the workpiece, the external dust suction device is turned on, and various impurities removed from the workpiece during the cleaning process can be promptly recovered and processed through the dust suction nozzle. This not only effectively prevents the impurities from spreading and remaining everywhere in the working area, greatly improves the cleanliness and hygiene level of the entire working environment, creates a more comfortable and safe working space for the operators, but also, during the actual cleaning operation, the cleaning liquid can be evenly sprayed onto the surface of the workpiece by means of the nozzle. After the cleaning liquid contacts the workpiece, it can quickly penetrate, dissolve, and entrap the stubborn dirt, oil stains, and other impurities adhering to the surface of the workpiece, thereby significantly improving the cleaning effect and cleanliness of the workpiece, ensuring that the workpiece can be cleaned more thoroughly and comprehensively. After the cleaning operation is completed, the nozzle can be switched to the high-pressure gas jet mode, and a strong high-pressure gas flow is ejected onto the surface of the workpiece through the nozzle. Under the rapid impact and blowing action of the high-pressure gas, the residual moisture on the surface of the workpiece can be quickly dispersed and evaporated, thereby achieving the purpose of quickly drying the workpiece, effectively avoiding the adverse phenomena such as rust and corrosion of the workpiece caused by the residual moisture, providing a strong guarantee for subsequent storage, assembly, and use of the workpiece, and further enhancing the integrity and reliability of the entire cleaning process of the assembled electromechanical equipment parts. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings of the embodiments will be briefly introduced below.

[0019] The accompanying drawings in the following description only relate to some embodiments of the present invention and do not limit the present invention.

[0020] In the accompanying drawings: Figure 1 A schematic diagram showing the overall structure of the present application is shown; Figure 2 A schematic diagram showing the structure of the conveying seat of the present application is shown; Figure 3 Shows the Figure 2 Enlarged structural schematic diagram of part A in the present application; Figure 4 A schematic diagram showing the structure of the overall rear end of the present application is shown; Figure 5 A schematic diagram showing the structure of the support seat of the present application is shown; Figure 6 A schematic diagram showing the structure of the rail seat of the present application is shown; Figure 7 A schematic diagram showing the structure of the bottom plate of the present application is shown; Figure 8 A schematic diagram showing the structure of the fixed seat of the present application is shown; Figure 9Shows a schematic structural diagram of the side seat of the present application; Figure 10 Shows a schematic structural diagram of the first mounting seat and the second mounting seat of the present application; Figure 11 Shows a schematic structural diagram of the first mounting seat of the present application; Figure 12 Shows a schematic structural diagram of the bottom shell and the top shell of the present application; Figure 13 Shows the Figure 12 Enlarged structural diagram at position B in; Figure 14 Shows a schematic structural diagram of the card seat of the present application; Figure 15 Shows a schematic structural diagram of the locking block and the collar of the present application.

[0021] List of reference numerals 1. Conveyor seat; 11. Floor feet; 12. First rotating column; 121. First gearbox; 122. First motor; 123. Second rotating column; 124. Transmission chain; 1241. Clamping seat; 1242. Workpiece; 13. Storage bin; 131. Positioning plate; 132. Receiving bin; 2. Support seat; 21. First hydraulic rod; 22. Lifting plate; 221. Guide rod; 23. Underframe; 231. Stop bar; 232. Guide wheel; 24. Rail seat; 241. Slide block; 242. Second hydraulic rod; 243. Buffer frame; 2431. Support column; 2432. Contact wheel; 244. Bottom plate; 2441. Second motor; 2442. Transmission belt; 2443. Moving plate; 25. Fixed seat; 251. First bearing seat; 2511. Second gearbox; 2512. Third motor; 252. Second bearing seat; 253. Cleaning roller; 254. Side seat; 2541. Lead screw; 2542. Third gearbox; 2543. Fourth motor; 2544. Slide seat; 2545. Dust suction nozzle; 3. First mounting seat; 31. Nozzle; 311. High-pressure air pipe; 312. High-pressure water pipe; 32. Welding plate; 321. Welding frame; 322. Tilted plate; 323. Ejector rod; 3231. Contact seat; 33. Fifth motor; 34. Movable column; 35. Bottom shell; 36. Top shell; 361. Transmission rod; 362. Sixth motor; 363. Third hydraulic rod; 37. Intermediate cylinder; 371. Gear disk; 372. Locking block; 3721. Collar; 3722. Card seat; 4. Second mounting seat. Detailed implementation manner

[0022] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are some, but not all, of the embodiments of the present invention. All other embodiments obtained by those of ordinary skill in the art based on the described embodiments of the present invention without creative efforts fall within the scope of protection of the present invention.

[0023] Embodiment 1: Please refer to Figures 1 to 15 : The present invention provides an assembled electromechanical equipment component cleaning device, including: a conveying seat 1; Four groups of floor feet 11 are installed at the lower end of the conveying seat 1 through bolts. A first rotating column 12 and a second rotating column 123 are installed on the conveying seat 1 through bearings. Sprockets are fixed on both the first rotating column 12 and the second rotating column 123. A transmission chain 124 is connected between the sprockets on the first rotating column 12 and the second rotating column 123. A clamping seat 1241 is fixed on the transmission chain 124. A clamping groove is provided on the clamping seat 1241, and a workpiece 1242 is installed in the clamping groove. A first gearbox 121 is installed on the conveying seat 1 through bolts. The output shaft of the first gearbox 121 is connected to the front end of the first rotating column 12. A first motor 122 is installed on the first gearbox 121 through bolts. And a storage box 13 is installed on the left side of the conveying seat 1 through bolts. Two sets of positioning plates 131 slide in the storage box 13. Two sets of round rods are fixed on both of the two sets of positioning plates 131. The round rods slide on the conveying seat 1. Springs are sleeved on the round rods. Nuts are screwed on the round rods. A material taking port is provided on the right side of the storage box 13. A receiving box 132 is fixed on the right side of the conveying seat 1. The bottom surfaces of the storage box 13 and the receiving box 132 are arranged in a structure with the left side higher and the right side lower.

[0024] In the embodiments of the present disclosure, A support seat 2 is fixed on the front side of the conveying seat 1. A first hydraulic rod 21 is installed at the upper end of the support seat 2 through bolts. And a lifting plate 22 slides on the support seat 2. Four guide rods 221 are fixed on the lifting plate 22. All four guide rods 221 slide on the support seat 2. The lifting plate 22 is fixedly connected to the lower end of the piston rod of the first hydraulic rod 21. A bottom frame 23 slides on the lower end of the lifting plate 22. A spring is provided between the bottom frame 23 and the lifting plate 22. A rail seat 24 is installed on the bottom frame 23 through bolts. Two stop rods 231 are fixed at the lower end of the bottom frame 23. Two stop wheels 232 are provided at the lower ends of the two stop rods 231. Its function is: when entering the cleaning stage of the workpiece 1242, the first hydraulic rod 21 performs an extension action, causing the two stop rods 231 to descend accordingly, so that the stop wheels 232 can tightly press on the transmission chain 124, significantly improving the stability performance of the transmission chain 124 during operation and effectively avoiding possible adverse conditions such as shaking or deviation.

[0025] In the embodiments of the present disclosure, A sliding block 241 slides on the rail seat 24. The bottom surface of the sliding block 241 is set as an inclined surface. And a second hydraulic rod 242 is fixed on the rail seat 24. The piston rod of the second hydraulic rod 242 is fixedly connected to the sliding block 241. A buffer frame 243 is movably arranged at the lower end of the rail seat 24. A support column 2431 is fixed on the buffer frame 243. A contact wheel 2432 is installed at the upper end of the support column 2431. The upper end of the contact wheel 2432 contacts the bottom surface of the sliding block 241. And a spring is sleeved on the support column 2431. Its function is: extending the second hydraulic rod 242 to gradually lower the height of the buffer frame 243 until the cleaning roller 253 is in close contact with the surface of the workpiece 1242.

[0026] In the embodiments of the present disclosure, The lower end of the buffer frame 243 is installed with a bottom plate 244 through bolts. A moving plate 2443 slides on the lower end of the bottom plate 244. And a second motor 2441 is installed on the bottom plate 244 through bolts. A pulley is fixed on the output shaft of the second motor 2441. A pulley is installed on the bottom plate 244 through a bearing. A transmission belt 2442 is connected between the pulley on the output shaft of the second motor 2441 and the pulley on the bottom plate 244. The transmission belt 2442 is fixedly connected to the moving plate 2443. Its function is: by running the second motor 2441, the cleaning roller 253 can be flexibly moved in the front-back direction, and the various parts of the workpiece 1242 can be comprehensively and without omission deeply cleaned.

[0027] In the embodiments of the present disclosure, The lower end of the moving plate 2443 is fixed with a fixed seat 25. The lower end of the fixed seat 25 is installed with a first bearing seat 251 and a second bearing seat 252 through bolts. A cleaning roller 253 is installed between the first bearing seat 251 and the second bearing seat 252. And a second gearbox 2511 is installed on the first bearing seat 251 through bolts. A third motor 2512 is installed on the second gearbox 2511 through bolts. A waist-shaped through groove is arranged on the fixed seat 25. Its function is: when the third motor 2512 starts to run, it drives the cleaning roller 253 to rotate at a high speed, and various impurities attached to the surface of the workpiece 1242 can be efficiently removed by means of the cleaning roller 253.

[0028] In the embodiments of the present disclosure, A side seat 254 is installed on the fixed seat 25 through bolts. A waist-shaped through groove is provided on the side seat 254. The waist-shaped through groove on the side seat 254 is connected to the waist-shaped through groove on the fixed seat 25. A sliding seat 2544 slides on the side seat 254. A dust suction nozzle 2545 is fixed on the sliding seat 2544. The dust suction nozzle 2545 is connected to an external dust suction device. And a lead screw 2541 is installed on the side seat 254 through a bearing. The lead screw 2541 is in threaded cooperation with the sliding seat 2544. A third transmission 2542 is installed on the side seat 254 through bolts. A fourth motor 2543 is installed on the third transmission 2542 through bolts. The output shaft of the third transmission 2542 is connected to the lead screw 2541. Its function is: when the cleaning roller 253 cleans the workpiece 1242, turn on the external dust suction device and through the dust suction nozzle 2545, various impurities removed from the workpiece 1242 during the cleaning process can be recycled and processed in a timely manner. Operating the fourth motor 2543 can adjust the position of the dust suction nozzle 2545.

[0029] Embodiment 2, on the basis of Embodiment 1, A first mounting seat 3 and a second mounting seat 4 are respectively fixed to the front and rear ends of the conveying seat 1 through bolts. Mounting holes are provided on both the first mounting seat 3 and the second mounting seat 4. Nozzles 31 are installed in the mounting holes on the first mounting seat 3 and the second mounting seat 4 through bolts. The nozzles 31 are connected to a high-pressure air pipe 311 and a high-pressure water pipe 312. The high-pressure air pipe 311 and the high-pressure water pipe 312 are respectively connected to an external high-pressure air device and a high-pressure cleaning liquid supply device. Its function is: during actual cleaning operations, the cleaning liquid can also be evenly sprayed onto the surface of the workpiece 1242 with the help of the nozzles 31. After the cleaning liquid contacts the workpiece 1242, it can quickly penetrate, dissolve and entrain stubborn dirt, oil stains and other impurities attached to the surface of the workpiece 1242, thus significantly improving the cleaning effect and cleanliness of the workpiece 1242, ensuring that the workpiece 1242 can be cleaned more thoroughly and comprehensively. After the cleaning operation is completed, the nozzles 31 can be switched to the high-pressure gas jet mode. A strong high-pressure gas flow is ejected from the nozzles 31 onto the surface of the workpiece 1242. Under the rapid impact and blowing action of the high-pressure gas, the residual moisture on the surface of the workpiece 1242 can be quickly dispersed and evaporated, thereby achieving the purpose of quickly drying the workpiece 1242.

[0030] Embodiment 3, on the basis of Embodiment 1 and Embodiment 2, A welding plate 32 is fixed on the first mounting seat 3. A welding frame 321 is welded on the welding plate 32. An inclined disk 322 rotates on the welding frame 321. A pulley is fixed on the rotating shaft of the inclined disk 322. A fifth motor 33 is installed at the lower end of the welding plate 32 through bolts. A pulley is fixed on the output shaft of the fifth motor 33. A belt is connected between the pulley on the output shaft of the fifth motor 33 and the pulley on the rotating shaft of the inclined disk 322. And a push rod 323 slides on the welding frame 321. A contact seat 3231 is installed on the push rod 323 through bolts. The contact seat 3231 contacts with the inclined disk 322. A movable column 34 is movable on the first mounting seat 3. A spring is sleeved on the movable column 34. The front end of the push rod 323 abuts against the rear end of the movable column 34. And a bottom shell 35 is fixed at the front end of the movable column 34. A top shell 36 is installed at the upper end of the bottom shell 35 through bolts. An intermediate cylinder 37 is installed between the bottom shell 35 and the top shell 36 through bearings. A gear disk 371 is fixed at the rear end of the intermediate cylinder 37. A sixth motor 362 is installed on the top shell 36 through bolts. A worm is fixed on the output shaft of the sixth motor 362. A transmission rod 361 is installed on the top shell 36 through bearings. A worm gear and a gear are respectively fixed at the upper and lower ends of the transmission rod 361. The worm gear meshes with the worm. The gear at the lower end of the transmission rod 361 meshes with the gear disk 371. Three locking blocks 372 slide at the front end of the intermediate cylinder 37. A cylindrical rod is fixed on the locking block 372. Three sliding grooves are arranged on the intermediate cylinder 37. The cylindrical rod on the locking block 372 moves in the sliding grooves on the intermediate cylinder 37. And a collar 3721 is sleeved on the intermediate cylinder 37. Three cylindrical structures are arranged on the collar 3721. The cylindrical rod on the locking block 372 is inserted into the cylindrical structures on the collar 3721. And a spring is sleeved on the cylindrical rod. A clamping seat 3722 is sleeved on the collar 3721. Rolling elements are arranged between the clamping seat 3722 and the collar 3721. A third hydraulic rod 363 is fixed on the top shell 36. A through groove is arranged on the top shell 36. The clamping seat 3722 moves in the through groove on the top shell 36. The piston rod of the third hydraulic rod 363 is connected with the clamping seat 3722 through a pin shaft. Its function is: When the fifth motor 33 starts, it will cause the inclined disk 322 to rotate. Under its rotating action, the rear end of the workpiece 1242 can be positioned within the space range formed by the three locking blocks 372. The third hydraulic rod 363 performs a contraction action, thereby driving the three locking blocks 372 to tightly clamp the rear end of the workpiece 1242. When the sixth motor 362 runs, the workpiece 1242 can be driven to rotate. In this rotating state, the workpiece 1242 can be further deeply cleaned from multiple angles and all-round, so that the cleaning degree of the workpiece 1242 reaches higher standards and requirements.

[0031] Working principle of this embodiment: During use, start the first motor 122 to drive the transmission chain 124 to start running. With the clamping seat 1241 provided on the transmission chain 124, the workpiece 1242 in the storage box 13 can be accurately and stably conveyed. When entering the cleaning stage of the workpiece 1242, the first hydraulic rod 21 extends, causing the two sets of stop rods 231 to descend accordingly, so that the stop wheels 232 can tightly press on the transmission chain 124, significantly improving the stability performance of the transmission chain 124 during operation and effectively avoiding possible adverse conditions such as shaking or deviation. Extend the second hydraulic rod 242 to gradually lower the height of the buffer frame 243 until the cleaning roller 253 is in close contact with the surface of the workpiece 1242. Start the third motor 2512 to drive the cleaning roller 253 to rotate at high speed. With the cleaning roller 253, various impurities attached to the surface of the workpiece 1242 can be efficiently removed. By running the second motor 2441, the cleaning roller 253 can be flexibly moved in the front-back direction, enabling a comprehensive and non-missing deep cleaning operation on all parts of the workpiece 1242. During the actual cleaning operation, the cleaning liquid can be evenly sprayed onto the surface of the workpiece 1242 through the nozzle 31. After the cleaning liquid contacts the workpiece 1242, it can quickly penetrate, dissolve, and entrap the stubborn dirt, oil stains, and other impurities attached to the surface of the workpiece 1242, thus significantly improving the cleaning effect and cleanliness of the workpiece 1242 and ensuring that the workpiece 1242 can be cleaned more thoroughly and comprehensively. Starting the fifth motor 33 will cause the inclined disk 322 to rotate. Under its rotation effect, the rear end of the workpiece 1242 can be positioned within the space range formed by the three sets of locking blocks 372. The third hydraulic rod 363 performs a contraction action, thereby driving the three sets of locking blocks 372 to tightly clamp the rear end of the workpiece 1242. Run the sixth motor 362 to drive the workpiece 1242 to rotate. In this rotating state, the workpiece 1242 can be further deeply cleaned from multiple angles and comprehensively, making the cleaning degree of the workpiece 1242 reach higher standards and requirements. After the cleaning operation is completed, the nozzle 31 can be switched to the high-pressure gas spraying mode. A strong high-pressure gas flow is sprayed onto the surface of the workpiece 1242 through the nozzle 31. Under the rapid impact and blowing of the high-pressure gas, the residual moisture on the surface of the workpiece 1242 can be quickly dispersed and evaporated, thus achieving the purpose of quickly drying the workpiece 1242. When the cleaning roller 253 cleans the workpiece 1242, turn on the external dust collection device and various impurities removed from the workpiece 1242 during the cleaning process can be timely recycled through the dust suction nozzle 2545. Run the fourth motor 2543 to adjust the position of the dust suction nozzle 2545. The cleaned workpiece 1242 continues to be conveyed to the right by the transmission chain 124 and is finally temporarily stored in the receiving box 132.

[0032] In this text, the following points need attention: 1. The accompanying drawings of the embodiments of the present disclosure only relate to the structures involved in the embodiments of the present disclosure, and other structures can refer to the general design.

[0033] 2. Without conflict, the embodiments of the present disclosure and the features in the embodiments can be combined with each other to obtain new embodiments.

[0034] The above is only the specific implementation manner of the present disclosure, but the protection scope of the present disclosure is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present disclosure can easily think of changes or substitutions, which should be covered within the protection scope of the present disclosure.

Claims

1. A cleaning device for assembled electromechanical equipment parts, comprising: The conveying seat (1) is characterized in that: The lower end of the conveying seat (1) is installed with four sets of feet (11) by bolts, a first rotating column (12) and a second rotating column (123) are installed on the conveying seat (1) by bearings, sprockets are fixed on the first rotating column (12) and the second rotating column (123), a transmission chain (124) is connected between the sprockets on the first rotating column (12) and the second rotating column (123), a clamping seat (1241) is fixed on the transmission chain (124), a card slot is provided on the clamping seat (1241), a workpiece (1242) is installed in the card slot, a first gearbox (121) is installed on the conveying seat (1) by bolts, and the first gearbox (121) is provided with a card slot. The output shaft is connected to the front end of the No. 1 rotating column (12), the No. 1 motor (122) is installed on the No. 1 gearbox (121) by bolts, and a material storage box (13) is installed on the left side of the conveying seat (1) by bolts, two groups of positioning plates (131) are slidably arranged in the material storage box (13), two groups of round rods are fixed on the two groups of positioning plates (131), the round rods slide on the conveying seat (1), and springs are sleeved on the round rods, and nuts are threadedly screwed on the round rods, a material taking port is arranged on the right side of the material storage box (13), and a material receiving box (132) is fixed on the right side of the conveying seat (1), and the bottom surfaces of the material storage box (13) and the material receiving box (132) are arranged in a left-high and right-low structure.

2. The cleaning device for assembled electromechanical equipment parts according to claim 1, characterized in that: A support seat (2) is fixed to the front side of the conveying seat (1), a No. 1 hydraulic rod (21) is installed on the upper end of the support seat (2) by bolts, and a lifting plate (22) is slidably provided on the support seat (2), four groups of guide rods (221) are fixed on the lifting plate (22), and the four groups of guide rods (221) all slide on the support seat (2), the lifting plate (22) is fixedly connected to the lower end of the piston rod of the No. 1 hydraulic rod (21), a base frame (23) is slidably provided at the lower end of the lifting plate (22), a spring is provided between the base frame (23) and the lifting plate (22), a rail seat (24) is installed on the base frame (23) by bolts, two groups of blocking rods (231) are fixed on the lower end of the base frame (23), and blocking wheels (232) are provided at the lower ends of the two groups of blocking rods (231).

3. The cleaning device for assembled electromechanical equipment parts according to claim 2, characterized in that: A sliding block (241) slides on the rail seat (24), the bottom surface of the sliding block (241) is arranged as an inclined surface, a second hydraulic rod (242) is fixed on the rail seat (24), a piston rod of the second hydraulic rod (242) is fixedly connected to the sliding block (241), a buffer frame (243) is movably provided at the lower end of the rail seat (24), a support (2431) is fixed on the buffer frame (243), a contact wheel (2432) is mounted on the upper end of the support (2431), the upper end of the contact wheel (2432) contacts the bottom surface of the sliding block (241), and a spring is sleeved on the support (2431).

4. The cleaning device for assembled electromechanical equipment parts according to claim 3 is characterized in that: The lower end of the buffer frame (243) is mounted with a bottom plate (244) via bolts, a movable plate (2443) is slidably mounted on the lower end of the bottom plate (244), a second motor (2441) is mounted on the bottom plate (244) via bolts, a pulley is fixed on the output shaft of the second motor (2441), a pulley is mounted on the bottom plate (244) via a bearing, a transmission belt (2442) is connected between the pulley on the output shaft of the second motor (2441) and the pulley on the bottom plate (244), and the transmission belt (2442) is fixedly connected to the movable plate (2443).

5. The cleaning device for assembled electromechanical equipment parts according to claim 4, characterized in that: A fixing seat (25) is fixed at the lower end of the movable plate (2443); a first bearing seat (251) and a second bearing seat (252) are installed at the lower end of the fixing seat (25) by means of bolts; a cleaning roller (253) is installed between the first bearing seat (251) and the second bearing seat (252); a second gearbox (2511) is installed on the first bearing seat (251) by means of bolts; a third motor (2512) is installed on the second gearbox (2511) by means of bolts; and a waist-shaped through groove is provided on the fixing seat (25).

6. The cleaning device for assembled electromechanical equipment parts according to claim 5, characterized in that: A side seat (254) is mounted on the fixed seat (25) via bolts, a waist-shaped through groove is provided on the side seat (254), the waist-shaped through groove on the side seat (254) is connected to the waist-shaped through groove on the fixed seat (25), a sliding seat (2544) is slidably mounted on the side seat (254), a dust suction nozzle (2545) is fixed on the sliding seat (2544), the dust suction nozzle (2545) is connected to an external dust suction device, and a screw rod (2541) is mounted on the side seat (254) via a bearing, the screw rod (2541) is threadedly matched with the sliding seat (2544), a No. 3 gearbox (2542) is mounted on the side seat (254) via bolts, a No. 4 motor (2543) is mounted on the No. 3 gearbox (2542) via bolts, and an output shaft of the No. 3 gearbox (2542) is connected to the screw rod (2541).

7. The cleaning device for assembled electromechanical equipment parts according to claim 2, characterized in that: The front and rear ends of the conveying seat (1) are respectively fixed to a first mounting seat (3) and a second mounting seat (4) by bolts; the first mounting seat (3) and the second mounting seat (4) are both provided with mounting holes; nozzles (31) are respectively installed in the mounting holes on the first mounting seat (3) and the second mounting seat (4) by bolts; the nozzles (31) are connected to a high-pressure air pipe (311) and a high-pressure water pipe (312); the high-pressure air pipe (311) and the high-pressure water pipe (312) are respectively connected to external high-pressure air pressure equipment and high-pressure cleaning liquid supply equipment.

8. The cleaning device for assembled electromechanical equipment parts according to claim 7, characterized in that: A welding plate (32) is fixed on the No. 1 mounting seat (3), a welding frame (321) is welded on the welding plate (32), a tilting plate (322) is rotatably mounted on the welding frame (321), a belt pulley is fixed on the rotating shaft of the tilting plate (322), a No. 5 motor (33) is bolted to the lower end of the welding plate (32), a belt pulley is fixed on the output shaft of the No. 5 motor (33), a belt is connected between the belt pulley on the output shaft of the No. 5 motor (33) and the belt pulley on the rotating shaft of the tilting plate (322), and a push rod (323) is slidably mounted on the welding frame (321), a contact seat (3231) is bolted to the push rod (323), and the contact seat (3231) is in contact with the tilting plate (322).

9. The cleaning device for assembled electromechanical equipment parts according to claim 8, characterized in that: A movable column (34) is movable on the No. 1 mounting seat (3), a spring is sleeved on the movable column (34), a front end of a push rod (323) is pressed against a rear end of the movable column (34), and a bottom shell (35) is fixed to the front end of the movable column (34), a top shell (36) is mounted on the upper end of the bottom shell (35) via bolts, an intermediate cylinder (37) is mounted between the bottom shell (35) and the top shell (36) via a bearing, a toothed disc (371) is fixed to the rear end of the intermediate cylinder (37), a No. 6 motor (362) is mounted on the top shell (36) via bolts, a worm is fixed on the output shaft of the No. 6 motor (362), a transmission rod (361) is mounted on the top shell (36) via a bearing, a worm wheel and a gear are respectively fixed to the upper and lower ends of the transmission rod (361), the worm wheel is meshed with the worm, and the gear at the lower end of the transmission rod (361) is meshed with the toothed disc (371).

10. The cleaning device for assembled electromechanical equipment parts according to claim 9, characterized in that: The front end of the intermediate cylinder (37) is slidably provided with three sets of locking blocks (372), a cylindrical rod is fixed on the locking blocks (372), the intermediate cylinder (37) is provided with three sets of sliding grooves, the cylindrical rod on the locking blocks (372) moves in the sliding grooves on the intermediate cylinder (37), and a collar (3721) is sleeved on the intermediate cylinder (37), the collar (3721) is provided with three sets of cylindrical structures, the cylindrical rod on the locking blocks (372) is inserted into the collar (3721), The cylindrical rod is provided with a spring, the collar (3721) is provided with a holder (3722), a rolling body is provided between the holder (3722) and the collar (3721), a third hydraulic rod (363) is fixed on the top shell (36), a through groove is provided on the top shell (36), the holder (3722) moves in the through groove on the top shell (36), and the piston rod of the third hydraulic rod (363) is connected to the holder (3722) via a pin.