A brushless cleaning system for new energy devices and its use method
By designing a brush-free cleaning system, the combination of water spray and ultrasonic waves is used for efficient cleaning, and the water resources are reused through the water connection device, the existing cleaning methods are poorly effective and wasteful water sources are solved, achieving efficient and environmentally friendly cleaning effects.
Patent Information
- Application Number
- CN202411275813.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-12
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2044-09-12
AI Technical Summary
The cleaning methods of existing new energy devices are average, making it difficult to achieve efficient cleaning, and it will cause waste of water in areas with insufficient water resources.
A brush-free cleaning system is designed, including a walking cart, supporting columns, beams, slide frames, water spray pipes and ultrasonic cleaning boxes. It is cleaned by a combination of water spray and ultrasonic waves, and the cleaned water is collected and reused through a water connection device.
Efficient water spraying and ultrasonic cleaning are achieved, which avoids the wear of the receiving surface by brushing, improves the utilization effect of water resources, is suitable for areas with severe water shortage, and reduces personnel operation costs.
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Figure CN119254119B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of cleaning devices, and in particular to a brushless cleaning system for a new energy device and a use method thereof. Background Art
[0002] With the continuous improvement of energy conservation and emission reduction requirements. The use of fossil energy will become less and less. As a new energy source, the utilization rate of solar energy is constantly increasing, including solar water heating systems, solar power generation systems, solar molten salt heat storage systems, etc. These new energy systems all absorb solar energy through receiving surfaces. The receiving surface is easily covered with dust after long-term operation and needs to be cleaned regularly. There are many cleaning methods at present, including brushing with a cleaning brush and flushing with water or air. The cleaning brush is easy to rub the receiving surface when brushing, so most of them use water or air for flushing. The effect of flushing with water or air alone is generally poor, and it is difficult to achieve a good cleaning effect. In addition, many new energy systems are set up in areas such as the Gobi Desert, where water resources are insufficient, and existing cleaning devices will cause waste of water resources. Summary of the invention
[0003] In view of the deficiencies in the prior art, the present invention provides a brushless cleaning system for a new energy device and a method for using the same.
[0004] The present invention is achieved through the following technical scheme, which provides a brushless cleaning system for a new energy device, including a walking trolley, a supporting column fixedly connected to the walking trolley, and a crossbeam fixedly connected to the upper end of the supporting column, the crossbeam is slidably connected to left and right sides with left and right sliding frames, the crossbeam is equipped with left and right sliding cylinders for driving the left and right sliding frames to move left and right, the left and right sliding frames are connected to an adjusting plane frame through an angle adjustment mechanism, the adjusting plane frame is slidably connected to left and right sides with a cleaning mechanism, the cleaning mechanism includes a base slidably connected to the bottom surface of the adjusting plane frame left and right and a water spray pipe fixedly connected below the base, the water spray pipe extends forward and backward and has a plurality of water spray ports at the lower end, the cleaning mechanism also includes a cleaning box located on one side of the water spray pipe, the cleaning box is connected to the base through a telescopic electromagnet, the bottom surface of the cleaning box and one side close to the water spray pipe are both opened, and an ultrasonic generator is installed in the cleaning box.
[0005] As an optimization, a cleaning drive screw and a cleaning motor for driving the cleaning drive screw to rotate are mounted on the adjusting plane frame, and the nut of the cleaning drive screw is fixedly connected to the base.
[0006] As an optimization, the angle adjustment mechanism includes four electric telescopic rods, one end of the electric telescopic rod is connected to the left and right sliding frame ball joint, and the other end of the electric telescopic rod is connected to the adjustment plane frame ball joint.
[0007] As an optimization, a sealing strip is installed on the bottom edge of the cleaning box.
[0008] As an optimization, the walking trolley is a tracked trolley.
[0009] As an optimization, it also includes a water receiving device located below the cleaning mechanism, the water receiving device includes a swing frame hinged on the walking trolley and a swing cylinder driving the swing frame to swing left and right, two front and rear movable frames are slidably connected to the swing frame, and rollers are connected to the shafts of the front and rear movable frames. Water receiving cloth connecting rods are fixedly connected to the front and rear ends of the swing frame, one end of the water receiving cloth is connected to the water receiving cloth connecting rod, and the other end of the water receiving cloth is wound around the roller, and a synchronous rack extending forward and backward is fixedly connected to the swing frame, and a synchronous gear meshing with the synchronous rack is fixedly connected to one end of the roller. The water receiving device also includes a movable frame driving mechanism that drives the two front and rear movable frames to move relative to each other, and a water collecting tank is installed on the walking trolley, and the water collecting tank is located below one end of the water receiving cloth close to the swing frame.
[0010] As an optimization, the moving frame driving mechanism includes a forward and backward moving motor installed on one forward and backward moving frame, and the rotating shaft of the forward and backward moving motor is connected to a forward and backward moving screw threadedly connected to the other forward and backward moving frame.
[0011] As an optimization, the outer diameter of the water-collecting cloth after being completely wrapped around the roller is equal to the diameter of the synchronous gear. The roller includes a roller shaft and a roller outer tube sleeved on the roller shaft. A connecting tension spring is connected between the roller shaft and the roller outer tube, and the roller shaft is fixedly connected to the synchronous gear.
[0012] As an optimization, the connecting tension spring is arranged obliquely along the length direction of the roller.
[0013] A method for using a brushless cleaning system for a new energy device comprises the following steps:
[0014] a. After the trolley moves forward and backward to the side of the new energy device, the left and right sliding cylinders push the left and right sliding frames toward the new energy device, so that the adjustment plane frame is located above the receiving surface of the new energy device. The angle of the adjustment plane frame is adjusted through the angle adjustment mechanism, so that the adjustment plane frame is parallel to the receiving surface of the new energy device, and the distance between the lower end of the cleaning box and the receiving surface of the new energy device is less than the stroke of the telescopic electromagnet;
[0015] b. The swing cylinder drives the swing frame to swing toward the new energy device, so that the water collection cloth is tilted and set below the adjustment plane frame. The two front and rear moving frames move relative to each other, driving the two rollers to move relative to each other. At the same time, due to the meshing of the synchronous gear and the synchronous rack, the rollers rotate to unfold the water collection cloth. One of the front and rear moving frames stops after contacting the column of the new energy device, and the other front and rear moving frame continues to move until the two front and rear moving frames are respectively attached to the two sides of the column of the new energy device, so as to realize water collection in the area other than the column of the new energy device;
[0016] c. The telescopic electromagnet is extended to make the cleaning box fit on the receiving surface of the new energy device. The water spray port at the lower end of the water spray pipe sprays water on the receiving surface of the new energy device for cleaning. The water on the receiving surface of the new energy device flows downward into the cleaning box. The ultrasonic vibration generated by the ultrasonic generator cleans the water in the box, thereby realizing ultrasonic cleaning of the receiving surface of the new energy device inside the cleaning box. The cleaning mechanism moves left and right to realize the overall cleaning of the receiving surface of the new energy device.
[0017] d. The water in the cleaning tank overflows and flows downward to the water collecting cloth, and then flows along the water collecting cloth to the water collecting tank to realize water recovery.
[0018] The beneficial effects of the present invention are as follows: a brushless cleaning system for a new energy device of the present invention and a method of using the same, the cleaning mechanism can realize a combination of water spray cleaning and ultrasonic cleaning, thereby improving the cleaning effect, thereby eliminating the wear of the receiving surface caused by brushing, and collecting and utilizing the water after cleaning through the arranged water receiving device, thereby improving the utilization effect of water resources, thereby being able to perform water washing operations on new energy devices in areas with severe water shortages, the present invention has a high overall degree of automation, can realize single-person operation, and reduces personnel costs. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 It is a front view of the present invention in a walking state;
[0020] Figure 2 It is a front view of the working state of the present invention;
[0021] Figure 3 It is a schematic diagram of the use of the present invention in working state;
[0022] Figure 4 It is a front view of the cleaning mechanism of the present invention;
[0023] Figure 5 For the present invention Figure 4 Left view of
[0024] Figure 6 It is a front view of the recovery mechanism of the present invention;
[0025] Figure 7 is a top view of the recovery mechanism of the present invention;
[0026] Figure 8 A top view of the recovery mechanism of the present invention in working state;
[0027] Fig. 9 It is a left side view of the recovery mechanism of the present invention;
[0028] Fig.10 It is a left side view of the recovery mechanism of the present invention in working state;
[0029] Fig.11 It is a left side view of another working state of the recovery mechanism of the present invention;
[0030] As shown in the figure:
[0031] 1. Traveling trolley, 2. Support column, 3. Crossbeam, 4. Cleaning mechanism, 41. Base, 42. Water spray pipe, 43. Cleaning box, 44. Ultrasonic generator, 45. Telescopic electromagnet, 5. Left and right sliding frame, 6. Left and right sliding cylinder, 7. Electric telescopic rod, 8. Adjusting plane frame, 9. Cleaning motor, 10. Cleaning drive screw, 11. Water collecting tank, 12. Swinging frame, 13. Front and rear moving frame, 14. Roller, 141. Roller shaft, 142. Roller outer tube, 143. Connecting tension spring, 15. Water collecting cloth, 16. Synchronous gear, 17. Synchronous rack, 18. Swinging cylinder, 19. Front and rear moving screw, 20. Front and rear moving motor, 21. Water collecting cloth connecting rod, 22. New energy device column, 23. New energy device receiving surface. DETAILED DESCRIPTION
[0032] In order to clearly illustrate the technical features of this solution, this solution is described below through a specific implementation method.
[0033] like Figures 1 to 11 As shown, a brushless cleaning system for a new energy device of the present invention comprises a walking trolley 1, which is a crawler-type trolley, can adapt to walking on complex road conditions, and can realize in-situ turning, so as to facilitate the cleaning of the receiving surface 23 of the new energy device. The receiving surface 23 of the new energy device can be various solar energy receiving surfaces such as photovoltaic panels, reflective panels, and heat absorbing panels, and the arrangement forms thereof are all inclined, so as to be perpendicular to the light, thereby improving the heat absorption effect, and at the same time, the receiving surface 23 of the new energy device is supported by the new energy device column 22.
[0034] A vertical support column 2 is fixedly connected to one side of the upper end of the traveling trolley 1. Two support columns 2 are provided and arranged front to back. The support column 2 in this embodiment is fixed to the right side of the traveling trolley 1 and is reinforced by an inclined diagonal brace to prevent shaking.
[0035] The upper end of the support column 2 is fixedly connected to a crossbeam 3 extending to the left. Figure 5 As shown, two cross beams 3 are provided and arranged side by side in front and back. The left end of the cross beam 3 slightly exceeds the left area of the traveling trolley 1.
[0036] The left and right sliding frames 5 are slidably connected to the cross beam 3, and two rectangular sleeves are installed on the left and right sliding frames 5. The two rectangular sleeves are welded longitudinally, and the rectangular sleeves are sleeved on the cross beam 3 with a rectangular cross section, so as to achieve left and right sliding connection. The cross beam 3 is equipped with left and right sliding cylinders 6 for driving the left and right sliding frames 5 to move left and right. When the walking trolley 1 moves, the left and right sliding frames 5 move to the right and retract, and do not occupy space. When the receiving surface 23 of the new energy device needs to be cleaned, the left and right sliding frames 5 move to the left and extend.
[0037] An adjustment plane frame 8 is arranged below the left and right sliding frames 5. The adjustment plane frame 8 is a rectangular frame structure welded by rectangular tubes. The left and right sliding frames 5 are connected to the right end position of the adjustment plane frame 8 through an angle adjustment mechanism. The angle adjustment mechanism includes four electric telescopic rods 7. The four electric telescopic rods 7 are arranged in a rectangular shape. One end of the electric telescopic rod 7 is connected to the left and right sliding frames 5 by a ball joint, and the other end of the electric telescopic rod 7 is connected to the adjustment plane frame 8 by a ball joint, so that the height and angle of the adjustment plane frame 8 can be adjusted by telescoping the four electric telescopic rods 7.
[0038] When the traveling trolley 1 moves, the four electric telescopic rods 7 are retracted to make the adjustment plane frame 8 move upward without occupying the space below. When the new energy device receiving surface 23 needs to be cleaned, the four electric telescopic rods 7 are extended to make the adjustment plane frame 8 parallel to the new energy device receiving surface 23.
[0039] The cleaning mechanism 4 is slidably connected to the adjusting plane frame 8. The cleaning mechanism 4 includes a base 41 slidably connected to the bottom surface of the adjusting plane frame 8 and a water spray pipe 42 fixed below the base 41. The base 41 can slide left and right on the bottom surface of the adjusting plane frame 8 through a slider and a slide rail.
[0040] The water spray pipe 42 extends forward and backward and has multiple water spray outlets at the lower end, so as to spray water below for cleaning. The cleaning mechanism 4 also includes a cleaning box 43 located on one side of the water spray pipe 42. Since the new energy device receiving surface 23 is generally inclined, the water spray pipe 42 and the cleaning box 43 are arranged in the downward inclined direction of the new energy device receiving surface 23. Therefore, the water sprayed from the water spray pipe 42 can flow through the cleaning box 43 when flowing downward on the new energy device receiving surface 23.
[0041] The cleaning box 43 extends forward and backward, and its length is consistent with or close to the length of the water spray pipe 42 . The cleaning box 43 is opened on one side close to the water spray pipe 42 , so that water flowing downward can enter the cleaning box 43 .
[0042] The bottom surface of the cleaning box 43 is opened so that the water in the cleaning box 43 can contact the receiving surface 23 of the new energy device. The cleaning box 43 is equipped with an ultrasonic generator 44. A plurality of ultrasonic generators 44 can be arranged front to back, so that the receiving surface 23 of the new energy device is ultrasonically cleaned by the water in the cleaning box 43.
[0043] The cleaning box 43 is connected to the base 41 through a telescopic electromagnet 45. Four telescopic electromagnets 45 are provided. The cleaning box 43 is pressed against the receiving surface 23 of the new energy device through the elasticity of the telescopic electromagnet 45. A sealing strip is installed on the bottom edge of the cleaning box 43 to improve the sealing effect with the receiving surface 23 of the new energy device.
[0044] In order to realize the left and right movement of the cleaning mechanism 4 and thus realize the cleaning of different areas, the adjusting plane frame 8 is equipped with a cleaning driving screw 10 and a cleaning motor 9 for driving the cleaning driving screw 10 to rotate, and the nut of the cleaning driving screw 10 is fixedly connected to the base 41.
[0045] It also includes a water receiving device located below the cleaning mechanism 4, which is used to collect water flowing downward during cleaning. At the same time, since the new energy device receiving surface 23 is supported by the new energy device column 22, the water receiving device needs to consider the interference of the new energy device column 22. For this purpose, the following water receiving device structure is designed.
[0046] The water receiving device includes a swing frame 12 hinged on the traveling trolley 1 and a swing cylinder 18 for driving the swing frame 12 to swing left and right. The swing frame 12 is in the shape of a long strip extending forward and backward and is hinged at a position near the left side of the traveling trolley 1. One end of the swing cylinder 18 is hinged to the traveling trolley 1, and the other end is hinged to the swing frame 12, so that the swing frame 12 can swing left and right.
[0047] Two front and rear movable frames 13 are slidably connected to the swing frame 12. The front and rear movable frames 13 are long strips extending left and right, and the right ends are slidably connected to the left side of the swing frame 12 through slide rails and sliders. When the traveling trolley 1 is in the walking state, the swing frame 12 swings so that the front and rear movable frames 13 are in a vertical state and are located directly above the traveling trolley 1, thereby reducing the width of the entire system. When water needs to be collected, the swing frame 12 swings to the left so that the front and rear movable frames 13 extend to the left and are in a tilted state.
[0048] The front and rear moving frame 13 is connected to a rotating roller 14, which extends left and right. Figure 7 , 8 As shown, both front and rear ends of the swing frame 12 are fixedly connected with water-collecting cloth connecting rods 21, one end of the water-collecting cloth 15 is connected to the water-collecting cloth connecting rod 21, and the other end of the water-collecting cloth 15 is wound around the rotating roller 14. Figure 7 The middle water receiving cloth 15 is completely wound around the rotating roller 14. Figure 8The middle water receiving cloth 15 is fully unfolded.
[0049] The front and rear moving frames 13 slide inward to drive the roller 14 to move, thereby realizing the unfolding of the water-collecting cloth 15. At the same time, the roller 14 needs to rotate during the unfolding process, but the roller 14 cannot rotate freely, otherwise the water-collecting cloth 15 cannot remain in a tensioned state, and normal water collection cannot be achieved. Therefore, a synchronous rack 17 extending forward and backward is fixedly connected to the swing frame 12, and a synchronous gear 16 meshing with the synchronous rack 17 is fixedly connected to one end of the roller 14. When the front and rear moving frames 13 move forward and backward, the synchronous gear 16 meshes with the synchronous rack 17, thereby realizing the synchronous rotation of the roller 14. When the front and rear moving frames 13 stop, the roller 14 cannot rotate due to the action of the synchronous gear 16, thereby realizing the tensioning of the water-collecting cloth 15.
[0050] The walking trolley 1 is provided with a water collecting tank 11, which is located below the end of the water collecting cloth 15 near the swing frame 12. The water collecting cloth 15 and the front and rear movable frames 13 are kept in a state of being higher on the left and lower on the right, so the water on the water collecting cloth 15 flows to the right, and the water collecting tank 11 is located below the right end of the water collecting cloth 15 to collect the water. A water pump is installed in the water collecting tank 11, which can pump the collected water into the water spraying pipe 42 for spraying again.
[0051] Since the water collecting cloth 15 is wound around the roller 14, as the water collecting cloth 15 is unfolded, the diameter of the water collecting cloth becomes smaller. Therefore, how to achieve that the water collecting cloth 15 remains in a taut state at various unfolding degrees? The following structure is provided. The outer diameter of the water collecting cloth 15 after it is completely wound around the roller 14 is equal to the diameter of the synchronous gear 16. Therefore, when the water collecting cloth 15 is just beginning to be unfolded, the outer diameter of the water collecting cloth 15 is equal to the diameter of the synchronous gear 16. At this time, the unfolding speed of the water collecting cloth 15 is consistent with the moving speed of the roller 14. Therefore, the taut state can be maintained when it is just unfolded.
[0052] However, the above structure will result in that as the outer diameter of the water-collecting cloth 15 gradually decreases during the unfolding process, the linear speed of the water-collecting cloth 15 unfolding on the roller will be less than the moving speed of the roller 14, which will cause the water-collecting cloth 15 to be over-tightened or even unable to continue to unfold. Therefore, in this embodiment, the roller 14 includes a roller shaft 141 and a roller outer tube 142 sleeved on the roller shaft 141, and a connecting tension spring 143 is connected between the roller shaft 141 and the roller outer tube 142, and the connecting tension spring 143 is inclined along the length direction of the roller 14. The roller shaft 141 is fixedly connected to the synchronous gear 16. Therefore, when the unfolding continues, the roller shaft 141 and the roller outer tube 142 rotate relative to each other and the connecting tension spring 143 is stretched, so that the water-collecting cloth 15 continues to unfold and is tightened by the tension of the connecting tension spring 143.
[0053] Since the water collecting device needs to consider the interference of the new energy device column 22, the present application arranges two rollers 14, which move synchronously toward the middle new energy device column 22 and clamp the new energy device column 22 at the same time, so that water can be collected from areas other than the new energy device column 22.
[0054] In order to ensure that the new energy device column 22 can be clamped at any front and rear positions, the water receiving device also includes a movable frame driving mechanism that drives the two front and rear movable frames 13 to move relative to each other. Since the two front and rear movable frames 13 are respectively slidably connected front and rear, when one front and rear movable frame 13 contacts the new energy device column 22, the other can continue to move, thereby achieving clamping.
[0055] The moving frame driving mechanism includes a forward and backward moving motor 20 installed on one forward and backward moving frame 13, and a forward and backward moving lead screw 19 threadedly connected to the other forward and backward moving frame 13 is connected to the rotating shaft of the forward and backward moving motor 20. The forward and backward moving lead screw 19 is driven to rotate by the moving motor 20, so that the relative movement of the two forward and backward moving frames 13 is realized.
[0056] A method for using a brushless cleaning system for a new energy device comprises the following steps:
[0057] a. After the walking trolley 1 moves forward and backward to the side of the new energy device, the left and right sliding cylinders 6 push the left and right sliding frames 5 toward the new energy device, so that the adjustment plane frame 8 is located above the receiving surface 23 of the new energy device, and the angle of the adjustment plane frame 8 is adjusted by the angle adjustment mechanism, so that the adjustment plane frame 8 is parallel to the receiving surface 23 of the new energy device, and the distance between the lower end of the cleaning box 43 and the receiving surface 23 of the new energy device is smaller than the stroke of the telescopic electromagnet 45;
[0058] b. The swing cylinder 18 drives the swing frame 12 to swing toward the new energy device, so that the water collection cloth 15 is tiltedly set below the adjustment plane frame 8, and the two front and rear movable frames 13 move relative to each other, driving the two rollers 14 to move relative to each other. At the same time, due to the meshing of the synchronous gear 16 and the synchronous rack 17, the rollers 14 rotate to unfold the water collection cloth 15. One of the front and rear movable frames 13 stops after contacting the new energy device column 22, and the other front and rear movable frame 13 continues to move until the two front and rear movable frames 13 are respectively attached to the two sides of the new energy device column 22, so as to realize water collection in the area other than the new energy device column 22;
[0059] c. The telescopic electromagnet 45 is extended to make the cleaning box 43 fit on the receiving surface 23 of the new energy device. The water spray port at the lower end of the water spray pipe 42 sprays water on the receiving surface 23 of the new energy device for cleaning. The water on the receiving surface 23 of the new energy device flows downward into the cleaning box 43. The ultrasonic vibration generated by the ultrasonic generator 44 cleans the water in the cleaning box 43, thereby realizing ultrasonic cleaning of the receiving surface 23 of the new energy device inside the cleaning box 43. The cleaning mechanism 4 moves left and right to realize the overall cleaning of the receiving surface 23 of the new energy device.
[0060] d. The water in the cleaning box 43 overflows, flows downward onto the water receiving cloth 15, and flows along the water receiving cloth 15 to the water collecting box 11, thereby realizing water recovery.
[0061] Of course, the above description is not limited to the above examples. Technical features not described in the present invention can be achieved by or by using existing technologies, which will not be described here. The above embodiments and drawings are only used to illustrate the technical scheme of the present invention and are not limitations of the present invention. The present invention is described in detail with reference to the preferred implementation methods. Ordinary technicians in this field should understand that changes, modifications, additions or substitutions made by ordinary technicians in this technical field within the essential scope of the present invention do not depart from the purpose of the present invention, and should also fall within the scope of protection of the claims of the present invention.
Claims
1. A brushless cleaning system for a new energy device, characterized in that: It includes a traveling trolley, a supporting column fixedly connected to the traveling trolley, and a crossbeam fixedly connected to the upper end of the supporting column, a left and right sliding frame is slidably connected to the crossbeam, a left and right sliding cylinder for driving the left and right sliding frames to move left and right is installed on the crossbeam, the left and right sliding frames are connected to an adjusting plane frame through an angle adjustment mechanism, a cleaning mechanism is slidably connected to the adjusting plane frame, the cleaning mechanism includes a base slidably connected to the bottom surface of the adjusting plane frame left and right and a water spray pipe fixedly connected below the base, the water spray pipe extends forward and backward and has a plurality of water spray ports at the lower end, the cleaning mechanism also includes a cleaning box located on one side of the water spray pipe, the cleaning box is connected to the base through a telescopic electromagnet, the bottom surface of the cleaning box and a side close to the water spray pipe are both opened, and an ultrasonic generator is installed in the cleaning box; The adjusting plane frame is provided with a cleaning drive screw and a cleaning motor for driving the cleaning drive screw to rotate, and the nut of the cleaning drive screw is fixedly connected to the base; The angle adjustment mechanism includes four electric telescopic rods, one end of which is connected to the left and right sliding frames with ball joints, and the other end of which is connected to the adjusting plane frame with ball joints; It also includes a water receiving device located below the cleaning mechanism, the water receiving device includes a swing frame hinged on the walking trolley and a swing cylinder driving the swing frame to swing left and right, two front and rear movable frames are slidably connected to the swing frame, and rollers are connected to the shafts on the front and rear movable frames. Water receiving cloth connecting rods are fixedly connected to the front and rear ends of the swing frame, one end of the water receiving cloth is connected to the water receiving cloth connecting rod, and the other end of the water receiving cloth is wound around the roller, a synchronous rack extending forward and backward is fixedly connected to the swing frame, and a synchronous gear meshing with the synchronous rack is fixedly connected to one end of the roller. The water receiving device also includes a movable frame driving mechanism that drives the two front and rear movable frames to move relative to each other, and a water collecting tank is installed on the walking trolley, and the water collecting tank is located below one end of the water receiving cloth close to the swing frame.
2. A brushless cleaning system for a new energy device according to claim 1, characterized in that: The bottom edge of the cleaning box is provided with a sealing strip.
3. A brushless cleaning system for a new energy device according to claim 1, characterized in that: The traveling trolley is a crawler-type trolley.
4. A brushless cleaning system for a new energy device according to claim 1, characterized in that: The moving frame driving mechanism comprises a forward and backward moving motor installed on one forward and backward moving frame, and a forward and backward moving lead screw threadedly connected to the other forward and backward moving frame is connected to the rotating shaft of the forward and backward moving motor.
5. The brushless cleaning system for a new energy device according to claim 1, characterized in that: The outer diameter of the water-collecting cloth after being completely wound on the roller is equal to the diameter of the synchronous gear. The roller includes a roller shaft and a roller outer tube sleeved on the roller shaft. A connecting tension spring is connected between the roller shaft and the roller outer tube. The roller shaft is fixedly connected to the synchronous gear.
6. A brushless cleaning system for a new energy device according to claim 5, characterized in that: The connecting tension spring is arranged obliquely along the length direction of the rotating roller.
7. A method for using the brushless cleaning system for a new energy device according to claim 1, characterized in that: The steps include: a. After the trolley moves forward and backward to the side of the new energy device, the left and right sliding cylinders push the left and right sliding frames toward the new energy device, so that the adjustment plane frame is located above the receiving surface of the new energy device. The angle of the adjustment plane frame is adjusted through the angle adjustment mechanism, so that the adjustment plane frame is parallel to the receiving surface of the new energy device, and the distance between the lower end of the cleaning box and the receiving surface of the new energy device is less than the stroke of the telescopic electromagnet; b. The swing cylinder drives the swing frame to swing toward the new energy device, so that the water collection cloth is tilted and set below the adjustment plane frame. The two front and rear moving frames move relative to each other, driving the two rollers to move relative to each other. At the same time, due to the meshing of the synchronous gear and the synchronous rack, the rollers rotate to unfold the water collection cloth. One of the front and rear moving frames stops after contacting the column of the new energy device, and the other front and rear moving frame continues to move until the two front and rear moving frames are respectively attached to the two sides of the column of the new energy device, so as to realize water collection in the area other than the column of the new energy device; c. The telescopic electromagnet is extended to make the cleaning box fit on the receiving surface of the new energy device. The water spray port at the lower end of the water spray pipe sprays water on the receiving surface of the new energy device for cleaning. The water on the receiving surface of the new energy device flows downward into the cleaning box. The ultrasonic vibration generated by the ultrasonic generator cleans the water in the box, thereby realizing ultrasonic cleaning of the receiving surface of the new energy device inside the cleaning box. The cleaning mechanism moves left and right to realize the overall cleaning of the receiving surface of the new energy device. d. The water in the cleaning tank overflows and flows downward to the water collecting cloth, and then flows along the water collecting cloth to the water collecting tank to realize water recovery.
Citation Information
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