A cleaning device for processing double-layer mesh sheets

By designing a double-layer mesh cleaning device with lifting and slewing drive mechanisms, the problems of manual flip and waste of water resources in the prior art are solved, and automatic cleaning of both sides of the double-layer mesh and efficient utilization of water resources are achieved.

CN119897303BActive Publication Date: 2025-06-13SHANXI HUAYI ZHONGCHENG BUILDING MATERIALS CO LTD
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Patent Information

Application Number
CN202510397164.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-04-01
Publication Date
2025-06-13
Estimated Expiration
2045-04-01

AI Technical Summary

Technical Problem

The existing double-layer mesh cleaning device requires manual overturning and controlling the water pump when cleaning the double-layer mesh. The steps are cumbersome and easy to cause waste of water resources.

Method used

A cleaning device including a shell, cleaning board, lifting board and a rotary drive mechanism is designed to flip the discharge frame and lift the cleaning board through the motor and the lifting rod, and to control the water immersion of the brush with the rotary drive mechanism and the baffle that controls the communication hole to avoid wasting water.

Benefits of technology

Automatic cleaning of both sides of the double-layer mesh is achieved, reducing manual operation, avoiding waste of water resources, and improving cleaning efficiency and production cost control.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention belongs to the technical field of mesh cleaning. More specifically, it relates to a cleaning device for processing double-layer meshes, which includes a housing and a cleaning plate. A telescopic rod is fixedly connected to the top of the inner cavity of the housing. The end of the telescopic rod away from the housing is fixedly connected to a lifting plate. The cleaning plate is arranged on the lower side of the lifting plate and is connected with a rotary driving mechanism. Motors I are installed on both sides of the housing. Output boxes I are installed on both sides of the inner cavity of the housing. The output end of the motor I penetrates the housing and extends into the corresponding output box I. The output end of the motor I is fixedly connected to a rotating rod I. One end of the rotating rod I is fixedly connected to a connecting plate I. One end of the connecting plate I is rotatably connected to a lifting rod. The end of the lifting rod away from the connecting plate I is rotatably connected to the lifting plate. When the lifting rod moves upward, it will drive the lifting plate and the connecting pipe II to move upward, and the cleaning plate will also move upward. The connecting plate I rotates 180 degrees to flip the feeding frame, and the other side of the double-layer mesh is cleaned by the brush.
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Description

Technical Field

[0001] The present invention belongs to the technical field of mesh cleaning, and more specifically, relates to a cleaning device for processing double-layer meshes. Background Art

[0002] A double-layer steel bar mesh is a material commonly used in building construction. It consists of two layers of steel bar meshes arranged in parallel and is fixed together by connectors in the vertical direction (such as binding wires or welding points). This structure can provide better strength and stability, especially suitable for buildings that require higher load-bearing capacity and seismic performance.

[0003] Dust or impurities often adhere to the double-layer steel bar mesh, so a cleaning device for processing double-layer meshes is needed. In existing devices, most clean the double-layer mesh by combining cleaning brushes with water spraying. This method can effectively remove the dust and impurities adhering to the double-layer mesh, but during the cleaning process of the double-layer mesh, only one side close to the cleaning brush can be cleaned. After one side is cleaned, manual turning is required to clean the other side, and the operation is rather cumbersome. Secondly, during the water spraying cleaning process, when one side of the double-layer mesh is cleaned, the water pump needs to be turned off, then the double-layer mesh is turned over, and after the double-layer mesh is turned over, the water pump is turned on again for water spraying. This step is rather cumbersome. If not turned off, it will cause waste of water resources and impose a burden on production costs and the environment.

[0004] For example, a metal mesh plate cleaning device disclosed in the Chinese invention patent with the application number 201810831600.0, although it uses a liftable mesh hole cleaning mechanism to clean the metal mesh plate, it is still difficult to clean the lower surface of the metal mesh plate.

[0005] The Chinese utility model patent with the application number 202122530538.1 discloses a mesh plate cleaning device that directly cleans the mesh plate by spraying water with a nozzle. It cannot ensure the cleaning effect, and it also cannot directly clean the lower surface of the mesh plate, and has a large demand for water resources, easily causing waste of water resources.

[0006] Therefore, it is necessary to improve the existing technology. Summary of the Invention

[0007] To solve the problems raised in the above background art that manual turning is required after one side of the double-layer mesh is cleaned, and it is also necessary to turn off the water pump after one side of the double-layer mesh is cleaned and then turn over the double-layer mesh, and the steps are rather cumbersome, the present invention provides a cleaning device for processing double-layer meshes.

[0008] To achieve the above object, the present invention provides the following technical solutions:

[0009] A cleaning device for processing double-layer mesh sheets, comprising a housing and a cleaning plate. A telescopic rod is fixedly connected to the top of the inner cavity of the housing. One end of the telescopic rod away from the housing is fixedly connected to a lifting plate. The cleaning plate is arranged on the lower side of the lifting plate and is connected with a rotary driving mechanism. Motors I are installed on both sides of the housing. Output boxes I are installed on both sides of the inner cavity of the housing. The output end of the motor I penetrates the housing and extends into the corresponding output box I. The output end of the motor I is fixedly connected to a rotating rod I. One end of the rotating rod I away from the motor I is fixedly connected to a connecting plate I. One end of the connecting plate I away from the rotating rod I is rotatably connected to a lifting rod. One end of the lifting rod away from the connecting plate I is rotatably connected to the lifting plate;

[0010] One side of the lifting rod away from the connecting plate I is rotatably connected to a connecting plate II. One end of the connecting plate II away from the lifting rod is fixedly connected to a rotating rod II. One end of the rotating rod II away from the connecting plate II penetrates the output box I and is fixedly connected to a connecting block. A feeding frame is arranged between the two connecting blocks on both sides of the housing.

[0011] Preferably, a connecting pipe I is rotatably connected to the top of the inner cavity of the housing. A connecting pipe II is slidably connected to the inner cavity of the connecting pipe I. The inner cavity of the connecting pipe II is communicated with the inner cavity of the connecting pipe I. A water passing groove II is arranged on the upper side of the connecting pipe I;

[0012] A limiting groove is opened in the inner cavity of the connecting pipe I. A limiting ring is fixedly connected to the top of the outer wall of the connecting pipe II. And the limiting ring is slidably matched with the limiting groove. Guide grooves are opened on both sides of the outer wall of the connecting pipe II. Guide blocks are fixedly connected to both sides of the bottom of the limiting groove. And the guide blocks are slidably matched with the guide grooves. The lower end of the connecting pipe II penetrates the lifting plate and is fixedly connected to the cleaning plate. The connecting pipe II is axially limited with the lifting plate;

[0013] The inner cavity of the cleaning plate is communicated with the inner cavity of the connecting pipe II. A brush and a plurality of water passing grooves I communicated with the inner cavity of the cleaning plate are arranged on the lower side of the cleaning plate.

[0014] Preferably, the rotary driving mechanism includes a motor II. The top of the housing is connected with an output box II. The middle part of the output box II is divided into left and right two chambers by a limiting plate. A motor II is fixedly connected to the top of the output box II. The connecting pipe I is fixedly connected to the output end of the motor II. The connecting pipe I penetrates the left chamber of the output box II and the water passing groove II is located in the left chamber;

[0015] A water supply device is connected to the right chamber of the output box II. A communication hole is arranged on the limiting plate.

[0016] Preferably, a baffle plate for controlling the opening and closing of the connecting hole is slidably provided on the side of the limiting plate close to the left chamber, a compression groove I is opened on one side of the limiting plate, a spring I is fixedly connected to the inside of the compression groove I, an end of the spring I away from the compression groove I is fixedly connected to the limiting plate, the side of the limiting plate away from the spring I is fixedly connected to the baffle, a resistance plate is fixedly connected to the side of the baffle plate close to the connecting tube I, a toggle plate is fixedly connected to the upper part of the outer wall of the connecting tube I, and when the toggle plate rotates, it pushes the resistance plate to move in the direction of the spring I and opens the connecting hole.

[0017] Preferably, the water supply device includes a water tank, a water tank is installed on one side of the shell, a water pump is installed on the top of the water tank, an L-shaped water pipe is installed on the top of the water pump, and the end of the L-shaped water pipe away from the water pump is connected to the right chamber of the output box II.

[0018] Preferably, a collecting box is installed at the bottom of the shell, a waste trough is opened at the bottom of the inner cavity of the shell, the collecting box is connected with the shell through the waste trough, and a filter frame is slidably connected in the collecting box;

[0019] A filter net is installed inside the filter frame, and a handle I is fixedly connected to one side of the filter frame.

[0020] Preferably, the water tank and the collecting tank are connected to each other on one side through a connecting groove.

[0021] Preferably, a rubber pad I is installed on one side of the inner wall of the material discharging frame, and compression grooves II are opened on the two side walls of the material discharging frame perpendicular to the rubber pad I, and a rubber pad II is slidably arranged in the compression groove II, and a spring II is installed inside the compression groove II, and the spring II drives the rubber pad II to move in a direction close to the rubber pad I;

[0022] A handle II is slidably connected to one side of the material discharging frame away from the rubber pad I, and an end of the handle II is fixedly connected to the rubber pad II.

[0023] Preferably, a slide rail is provided on the top of the shell, the output box II is slidably arranged in the slide rail, and the output box II is connected to a driver I for driving it to move linearly back and forth.

[0024] Preferably, it also includes a fixed frame, which is fixedly connected to the connecting block, the discharge frame is slidably arranged in the fixed frame, the double-layer mesh is arranged in the discharge frame, and a driver II is arranged between the discharge frame and the fixed frame to drive the discharge frame to move along the fixed frame.

[0025] Compared with the prior art, the present invention has the following beneficial effects:

[0026] The present invention uses a power source to realize the flipping of the material discharging frame and the lifting and lowering of the cleaning plate through the cooperation of the motor I and the lifting rod and other structures. By flipping the material discharging frame, both end surfaces of the double-layer mesh can be exposed within the cleaning range of the cleaning brush without manual flipping and control. The cleaning plate is lifted and lowered synchronously when the material discharging frame is flipped to prevent interference between the material discharging frame and the cleaning plate.

[0027] The present invention drives the cleaning plate to rotate by motor II to clean the double-layer mesh. A water trough I is arranged inside the cleaning plate, and the brush is immersed in water by using the water trough I. The water trough I is connected to a water pump through connecting pipe II, connecting pipe I, output box II, and L-shaped water pipe. When connecting pipe I rotates, the toggle plate contacts the resistance plate to make the baffle slide in the compression groove I, and the water flows into the water trough II through the limiting plate; when the toggle plate is separated from the resistance plate, the baffle is reset by the elastic force of spring I to block the water flow. The intermittent connection of the limiting plate is controlled by the baffle, and the immersion speed of the brush is controlled to avoid wasting water resources. When the toggle plate stops rotating, it does not conflict with the resistance plate, and the water flow is blocked by the baffle. BRIEF DESCRIPTION OF THE DRAWINGS

[0028] Figure 1 It is a schematic diagram of the three-dimensional structure of Example 1 of the present invention;

[0029] Figure 2 It is a schematic diagram of the internal structure of the housing of the present invention;

[0030] Figure 3 It is a cross-sectional view of the output box I of the present invention;

[0031] Figure 4 for Figure 3 Enlarged view of point A in the middle;

[0032] Figure 5 is a cross-sectional view of a cleaning plate of the present invention;

[0033] Figure 6 It is a cross-sectional view of the housing and output box II of the present invention;

[0034] Figure 7 is a cross-sectional view of a limiting plate of the present invention;

[0035] Figure 8 This is a schematic diagram of the structure of the material discharging frame of Embodiment 1 of the present invention;

[0036] Figure 9 It is a cross-sectional view of the water tank and the collection tank of the present invention;

[0037] Figure 10 It is a schematic diagram of the three-dimensional structure of Example 2 of the present invention;

[0038] Figure 11 This is a schematic diagram of the structure of the lifting plate of Example 2 of the present invention;

[0039] Figure 12 This is a schematic structural diagram of the material discharging frame in Embodiment 2 of the present invention.

[0040] In the figure: 1. Housing; 2. Telescopic rod; 3. Lifting plate; 4. Motor I; 5. Output box I; 6. Rotating rod I; 7. Connecting plate I; 8. Lifting rod; 9. Connecting plate II; 10. Rotating rod II; 11. Connecting block; 12. Material discharging frame; 13. Connecting pipe I; 14. Limiting groove; 15. Connecting pipe II; 16. Limiting ring; 17. Guide groove; 18. Guide block; 19. Cleaning plate; 20. Water passing groove I; 21. Brush; 22. Output box II; 23. Motor II; 24. Water passing groove II; 25. Poking plate; 26. Restricting plate; 27. Baffle; 28. Compression groove I; 29. Spring I; 30. Limiting plate; 31. Contact plate; 32. Water tank; 33. Water pump; 34. L-shaped water pipe; 35. Collection box; 36. Filter frame; 37. Filter net; 38. Handle I; 39. Connecting groove; 310. Slide plate; 40. Waste material groove; 41. Rubber pad I; 42. Compression groove II; 43. Spring II; 44. Rubber pad II; 45. Handle II; 46. Slide rail; 47. Driver I; 48. Fixed frame; 49. Driver II. Specific embodiments

[0041] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0042] Embodiment 1:

[0043] Such as Figures 1 to 9As shown in the figure, the present invention provides a cleaning device for processing double-layer mesh sheets, including a housing 1. On both sides of the top of the inner cavity of the housing 1, telescopic rods 2 are fixedly connected. One end of the telescopic rod 2 away from the housing 1 is fixedly connected with a lifting plate 3. The movement of the lifting plate 3 is guided by the telescopic rod 2. Motors I 4 are installed on both sides of the housing 1. Output boxes I 5 are installed on both sides of the inner cavity of the housing 1. The output end of the motor I 4 penetrates the housing 1 and extends into the corresponding output box I 5. The output end of the motor I 4 is fixedly connected with a rotating rod I 6. One end of the rotating rod I 6 away from the motor I 4 is fixedly connected with a connecting plate I 7. One end of the connecting plate I 7 away from the rotating rod I 6 is rotatably connected with a lifting rod 8. One end of the lifting rod 8 away from the connecting plate I 7 is rotatably connected with the lifting plate 3. The motor I 4 drives the rotating rod I 6 and the connecting plate I 7 to rotate, and then drives the lifting plate 3 to move up and down through the lifting rod 8. On one side of the lifting rod 8 away from the connecting plate I 7, a connecting plate II 9 is rotatably connected. One end of the connecting plate II 9 away from the lifting rod 8 is fixedly connected with a rotating rod II 10. One end of the rotating rod II 10 away from the connecting plate II 9 penetrates the output box I 5 and is fixedly connected with a connecting block 11. On the side where the two connecting blocks 11 on both sides of the housing 1 are close to each other, a feeding frame 12 is fixedly connected. When the motor I 4 drives the connecting plate I 7 to rotate, it synchronously drives the connecting plate II 9, the rotating rod II 10 and the feeding frame 12 to rotate, realizing the flipping of the feeding frame 12. When the feeding frame 12 flips, interference can be avoided by raising the lifting plate 3.

[0044] The cleaning plate 19 is located below the lifting plate 3 and is connected with a rotary driving mechanism. The rotary driving mechanism includes a motor II 23, a connecting pipe I 13 and a connecting pipe II 15. The top of the housing 1 is connected with an output box II 22. The motor II 23 is fixedly connected to the top of the output box II 22. The connecting pipe I 13 is rotatably connected to the top of the inner cavity of the housing 1 and is fixedly connected with the output end of the motor II 23. A connecting pipe II 15 is slidably connected to the inner cavity of the connecting pipe I 13. The lower end of the connecting pipe II 15 penetrates the lifting plate 3 and is fixedly connected with the cleaning plate 19. On both sides of the outer wall of the connecting pipe II 15, guiding grooves 17 are opened. On both sides of the bottom of the limiting groove 14, guiding blocks 18 are fixedly connected. The guiding blocks 18 are slidably matched with the guiding grooves 17. The motor II 23 drives the connecting pipe I 13 to rotate, and then drives the connecting pipe II 15 and the cleaning plate 19 to rotate by using the guiding blocks 18 and the guiding grooves 17, realizing the cleaning operation.

[0045] The inner cavity of the connecting pipe II 15 is communicated with the inner cavity of the connecting pipe I 13. A water passing groove II 24 is arranged on the upper side of the connecting pipe I 13. The connecting pipe II 15 is axially limited with the lifting plate 3, so that when the lifting plate 3 moves up and down, it can drive the connecting pipe II 15 to move up and down synchronously.

[0046] The inner cavity of the cleaning plate 19 is communicated with the inner cavity of the connecting pipe II 15. A brush 21 and several water through-channels I 20 communicated with the inner cavity of the cleaning plate 19 are arranged on the lower side of the cleaning plate 19. Water enters the connecting pipe I 13 from the water through-channel II 24 and is discharged through the connecting pipe II 15 and the water through-channels I 20 for water spraying.

[0047] A limiting groove 14 is formed in the inner cavity of the connecting pipe I 13. A limiting ring 16 is fixedly connected to the top of the outer wall of the connecting pipe II 15. The limiting ring 16 is hermetically connected with and slidably matched with the limiting groove 14.

[0048] The middle part of the output box II 22 is divided into two left and right chambers by a limiting plate 26. The connecting pipe I 13 penetrates through the left chamber of the output box II 22 and the water through-channel II 24 is located in the left chamber. A water supply device is connected to the right chamber of the output box II 22. A communication hole is arranged on the limiting plate 26. The water supply device pumps water into the right chamber of the output box II 22, then enters the left chamber through the communication hole, and further enters the connecting pipe I 13 through the water through-channel II 24.

[0049] A baffle 27 for controlling the opening and closing of the communication hole is slidably arranged on one side of the limiting plate 26 close to the left chamber. A compression groove I 28 is formed on one side of the limiting plate 26. A spring I 29 is fixedly connected inside the compression groove I 28. One end of the spring I 29 far away from the compression groove I 28 is fixedly connected to a limiting plate 30. The limiting plate 30 is fixedly connected to the baffle 27. A contact plate 31 is fixedly connected to one side of the baffle 27. A toggle plate 25 is fixedly connected to the upper part of the outer wall of the connecting pipe I 13.

[0050] When the connecting pipe I 13 rotates, the toggle plate 25 intermittently contacts with the contact plate 31. When the toggle plate 25 contacts with the contact plate 31, the baffle 27 moves towards the direction of the spring I 29 and opens the communication hole. When the toggle plate 25 does not contact with the contact plate 31, under the push of the spring I 29, the baffle 27 closes the communication hole.

[0051] The water supply device includes a water tank 32. The water tank 32 is installed on one side of the housing 1. A water pump 33 is installed on the top of the water tank 32. An L-shaped water pipe 34 is installed on the top of the water pump 33. One end of the L-shaped water pipe 34 far away from the water pump 33 is communicated with the right chamber of the output box II 22. The output box II 22 is supplied with water through the water pump 33.

[0052] A collection box 35 is installed at the bottom of the housing 1. A waste material groove 40 is formed at the bottom of the inner cavity of the housing 1. The collection box 35 is communicated with the housing 1 through the waste material groove 40. The sewage in the housing 1 enters the collection box 35 through the waste material groove 40. A filter frame 36 for filtering the sewage is slidably connected in the collection box 35. A filter screen 37 is installed inside the filter frame 36. A handle I 38 is fixedly connected to one side of the filter frame 36 for facilitating its disassembly. The water tank 32 and the collection box 35 are communicated through a connection groove 39 on the side close to each other.

[0053] By adopting the above scheme, the cleaned waste water will flow into the collection box 35 through the waste trough 40, and the waste water will be filtered by the filter frame 36 and the filter net 37. The filtered water will flow into the water tank 32 through the connecting groove 39 for recycling, thereby avoiding the waste of water resources. When too much waste material accumulates on the filter frame 36, the filter frame 36 is pulled out of the collection box 35 by the handle I 38 to clean the filter net 37.

[0054] A rubber pad Ⅰ41 is installed on one side of the inner wall of the discharge frame 12, and compression grooves Ⅱ42 are opened on the two side walls of the discharge frame 12 perpendicular to the rubber pad Ⅰ41. A rubber pad Ⅱ44 is slidably arranged in the compression groove Ⅱ42, and a spring Ⅱ43 is installed inside the compression groove Ⅱ42. The spring Ⅱ43 drives the rubber pad Ⅱ44 to move in the direction close to the rubber pad Ⅰ41 to provide a pre-tightening force.

[0055] A handle II 45 is slidably connected to a side of the discharge frame 12 away from the rubber pad I 41 , and an end of the handle II 45 is fixedly connected to the rubber pad II 44 .

[0056] Pull handle II 45, rubber pad II 44 overcomes the elastic force of spring II 43 and slides in compression groove II 42, then the double-layer mesh is placed between rubber pad I 41 and rubber pad II 44, release handle II 45, and the elastic force of spring II 43 makes rubber pad II 44 contact with the double-layer mesh to fix it.

[0057] The working principle and use process of the present invention:

[0058] Pull the handle Ⅱ45 to compress the spring Ⅱ43, then place the double-layer mesh between the rubber pad Ⅰ41 and the compression groove Ⅱ42, release the handle Ⅱ45, and use the elastic force of the spring Ⅱ43 to make the rubber pad Ⅱ44 contact the double-layer mesh to fix it. Turn on the water pump 33 to extract the water in the water tank 32, and the water is transmitted to the output box Ⅱ22 through the L-shaped water pipe 34. Then turn on the motor Ⅱ23 to rotate the connecting pipe Ⅰ13. When the connecting pipe Ⅰ13 rotates, it will contact the contact plate 31 through the toggle plate 25, so that the contact plate 31 slides in the compression groove Ⅰ28, and then the water will flow through the limiting plate 26 to the water channel Ⅱ24. When the toggle plate 25 is separated from the contact plate 31, the baffle 27 will be reset by the elastic force of the spring Ⅰ29 to block the water flow, so as to avoid wasting water resources.

[0059] When water flows through the water channel II 24, the water flows through the connecting pipe II 15 into the cleaning plate 19. When the connecting pipe I 13 rotates, the connecting pipe II 15 also rotates. The rotation of the connecting pipe II 15 drives the cleaning plate 19 to rotate, and then the brush 21 cleans one side of the double-layer mesh.

[0060] After one side of the double-layer mesh is cleaned, start the motor Ⅰ4 to drive the rotating rod Ⅰ6 to drive the connecting plate Ⅰ7 to rotate, and at the same time drive the lifting rod 8 to move upward. The movement of the lifting rod 8 will drive the connecting plate Ⅱ9, the rotating rod Ⅱ10 and the connecting block 11 to rotate. Through the connecting block 11, the feeding frame 12 is turned over. When the lifting rod 8 moves upward, it will drive the lifting plate 3 and the connecting pipe Ⅱ15 to move upward. At the same time, the cleaning plate 19 will also move upward. The connecting plate Ⅰ7 rotates 180 degrees to flip the feeding frame 12, and then the other side of the double-layer mesh is cleaned by the brush 21.

[0061] Embodiment 2:

[0062] As Figure 10 、 Figure 11 、 Figure 12 A cleaning device for processing double-layer meshes as shown. On the basis of Embodiment 1, in order to be applicable to double-layer meshes with larger sizes, a slide rail 46 is provided at the top of the housing 1. The output box Ⅱ22 is slidably arranged in the slide rail 46. A slide plate 310 is slidably arranged on the lifting plate 3. The connecting pipe Ⅱ15 is rotatably connected to the slide plate 310. The L-shaped water pipe 34 is a flexible pipe. The output box Ⅱ22 is connected with a driver Ⅰ47 that drives it to move linearly in a reciprocating manner. The driver Ⅰ47 can adopt a linear motor. The driver Ⅰ47 drives the output box Ⅱ22 to move horizontally along the slide rail 46, and at the same time drives the connecting pipe Ⅱ15 and the slide plate 310 to move horizontally along the lifting plate 3 synchronously through the connecting pipe Ⅰ13, so that the cleaning plate 19 moves horizontally to clean the double-layer mesh horizontally.

[0063] It further includes a fixed frame 48. The two sides of the fixed frame 48 are respectively fixedly connected to the two connecting blocks 11. The feeding frame 12 is slidably arranged in the fixed frame 48. The double-layer mesh is arranged in the feeding frame 12. A driver Ⅱ49 for driving the feeding frame 12 to move along the fixed frame 48 is arranged between the feeding frame 12 and the fixed frame 48. The driver Ⅱ49 drives the feeding frame 12 to move longitudinally, which is convenient for longitudinally cleaning the double-layer mesh in the feeding frame 12. The driver Ⅱ49 adopts the prior art.

[0064] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements, but also includes other elements not expressly listed, or further includes elements inherent to such process, method, article or device.

[0065] Although embodiments of the present invention have been shown and described, it will be understood by those of ordinary skill in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A cleaning device for double-layer mesh processing, comprising a housing (1) and a cleaning plate (19), characterized in that: A telescopic rod (2) is fixedly connected to the top of the inner cavity of the shell (1), and one end of the telescopic rod (2) away from the shell (1) is fixedly connected to the lifting plate (3), and the cleaning plate (19) is arranged on the lower side of the lifting plate (3) and is connected to a rotary drive mechanism. Motors I (4) are installed on both sides of the shell (1), and output boxes I (5) are installed on both sides of the inner cavity of the shell (1). The output end of the motor I (4) passes through the shell (1) and extends into the corresponding output box I (5). The output end of the motor I (4) is fixedly connected to a rotating rod I (6), and one end of the rotating rod I (6) away from the motor I (4) is fixedly connected to a connecting plate I (7). The end of the connecting plate I (7) away from the rotating rod I (6) is rotatably connected to a lifting rod (8), and the end of the lifting rod (8) away from the connecting plate I (7) is rotatably connected to the lifting plate (3); The lifting rod (8) is rotatably connected to a connecting plate II (9) at one side away from the connecting plate I (7); the connecting plate II (9) is fixedly connected to a rotating rod II (10) at one end away from the lifting rod (8); the rotating rod II (10) passes through the output box I (5) at one end away from the connecting plate II (9) and is fixedly connected to a connecting block (11); a material discharge frame (12) is provided between the two connecting blocks (11) on both sides of the housing (1); The top of the inner cavity of the shell (1) is rotatably connected to a connecting pipe I (13), the inner cavity of the connecting pipe I (13) is slidably connected to a connecting pipe II (15), the inner cavity of the connecting pipe II (15) is communicated with the inner cavity of the connecting pipe I (13), and a water trough II (24) is provided on the upper side of the connecting pipe I (13); The inner cavity of the connecting tube I (13) is provided with a limiting groove (14), the top of the outer wall of the connecting tube II (15) is fixedly connected to a limiting ring (16), and the limiting ring (16) is slidably matched with the limiting groove (14), both sides of the outer wall of the connecting tube II (15) are provided with guide grooves (17), both sides of the bottom of the limiting groove (14) are fixedly connected with guide blocks (18), and the guide blocks (18) are slidably matched with the guide grooves (17), the lower end of the connecting tube II (15) passes through the lifting plate (3) and is fixedly connected to the cleaning plate (19), and the connecting tube II (15) and the lifting plate (3) are axially limited; The inner cavity of the cleaning plate (19) is connected to the inner cavity of the connecting pipe II (15), and a brush (21) and a plurality of water channels I (20) connected to the inner cavity of the cleaning plate (19) are provided on the lower side of the cleaning plate (19); The rotary drive mechanism comprises a motor II (23), an output box II (22) is connected to the top of the housing (1), the middle of the output box II (22) is divided into two left and right chambers by a limiting plate (26), the top of the output box II (22) is fixedly connected to the motor II (23), a connecting pipe I (13) is fixedly connected to the output end of the motor II (23), the connecting pipe I (13) passes through the left chamber of the output box II (22), and the water tank II (24) is located in the left chamber; The right chamber of the output box II (22) is connected to a water supply device, and a communication hole is provided on the limiting plate (26); A baffle plate (27) for controlling the opening and closing of the connecting hole is slidably provided on the side of the limiting plate (26) close to the left chamber, a compression groove I (28) is provided on one side of the limiting plate (26), a spring I (29) is fixedly connected inside the compression groove I (28), an end of the spring I (29) away from the compression groove I (28) is fixedly connected to a limiting plate (30), a side of the limiting plate (30) away from the spring I (29) is fixedly connected to the baffle plate (27), a side of the baffle plate (27) close to the connecting pipe I (13) is fixedly connected to a resistance plate (31), an upper portion of the outer wall of the connecting pipe I (13) is fixedly connected to a toggle plate (25), and when the toggle plate (25) rotates, it pushes the resistance plate (31) to move in the direction of the spring I (29) and opens the connecting hole.

2. A cleaning device for double-layer mesh processing according to claim 1, characterized in that: The water supply device comprises a water tank (32), the water tank (32) being mounted on one side of the housing (1), a water pump (33) being mounted on the top of the water tank (32), an L-shaped water pipe (34) being mounted on the top of the water pump (33), and an end of the L-shaped water pipe (34) away from the water pump (33) being connected to the right chamber of the output box II (22).

3. A cleaning device for double-layer mesh processing according to claim 2, characterized in that: A collecting box (35) is installed at the bottom of the shell (1), a waste trough (40) is provided at the bottom of the inner cavity of the shell (1), the collecting box (35) is connected to the shell (1) via the waste trough (40), and a filter frame (36) is slidably connected inside the collecting box (35); A filter screen (37) is installed inside the filter frame (36), and a handle I (38) is fixedly connected to one side of the filter frame (36).

4. A cleaning device for double-layer mesh processing according to claim 3, characterized in that: The water tank (32) and the collecting tank (35) are connected to each other via a connecting groove (39) on their adjacent sides.

5. A cleaning device for double-layer mesh processing according to claim 1, characterized in that: A rubber pad I (41) is installed on one side of the inner wall of the material discharging frame (12), and compression grooves II (42) are opened on two side walls of the material discharging frame (12) perpendicular to the rubber pad I (41), and a rubber pad II (44) is slidably arranged in the compression groove II (42), and a spring II (43) is installed inside the compression groove II (42), and the spring II (43) drives the rubber pad II (44) to move in a direction close to the rubber pad I (41); A handle II (45) is slidably connected to the side of the material discharging frame (12) away from the rubber pad I (41), and the end of the handle II (45) is fixedly connected to the rubber pad II (44).

6. A cleaning device for double-layer mesh processing according to claim 1, characterized in that: A slide rail (46) is arranged on the top of the housing (1), the output box II (22) is slidably arranged in the slide rail (46), and the output box II (22) is connected to a driver I (47) for driving it to move linearly back and forth.

7. A cleaning device for double-layer mesh processing according to claim 1, characterized in that: The device also includes a fixed frame (48) fixedly connected to the connecting block (11), a material discharging frame (12) slidably arranged in the fixed frame (48), a double-layer mesh sheet arranged in the material discharging frame (12), and a driver II (49) for driving the material discharging frame (12) to move along the fixed frame (48) arranged between the material discharging frame (12) and the fixed frame (48).

Citation Information

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