Automatic cleaning device for forklift

By designing the automatic forklift cleaning device of slope plate, surface cleaning structure, soaking structure, brush cleaning structure and drying structure, the problem that existing devices cannot completely remove wheel dust is solved, and the comprehensive cleaning and water saving effect is achieved, extending the service life of the forklift.

CN223086007UActive Publication Date: 2025-07-11龙口港集团有限公司
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422517579.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-18
Publication Date
2025-07-11
Estimated Expiration
2034-10-18

AI Technical Summary

Technical Problem

The existing automatic cleaning device forklifts can only simply clean the wheel dust, and cannot completely remove dust and impurities on the wheels of the forklifts, and does not meet the cleaning standards of places with high hygiene requirements.

Method used

An automatic cleaning device for forklifts including slope plates, surface cleaning structures, soaking structures, brush cleaning structures, rinsing structures and drying structures was designed. The surface dust is removed through the brush, soaking cleaning liquid is cleaned, and the rotating brush is deeply cleaned, and finally drying to ensure the wheels are clean.

Benefits of technology

It realizes all-round cleaning of forklift wheels, meets high sanitary requirements, extends the service life of forklifts, and adopts a water-saving design to reduce environmental impact.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223086007U_ABST
    Figure CN223086007U_ABST
Patent Text Reader

Abstract

The utility model relates to the field of forklifts, and discloses an automatic forklift cleaning device which comprises a slope plate, a surface cleaning structure, a soaking structure, a brush cleaning structure, a rinsing structure and a drying structure, one side of the slope top of the slope plate is fixedly connected with the surface cleaning structure, and the other side of the surface cleaning structure is fixedly connected with the soaking structure. The other face of the soaking structure is fixedly connected with the brush cleaning structure, the other face of the brush cleaning structure is fixedly connected with the rinsing structure, the other face of the rinsing structure is fixedly connected with the drying structure, and the other face of the drying structure is fixedly connected with one face of the slope top of another slope plate. Wheels need to be cleaned every time a forklift enters a warehouse from the outside, an existing forklift automatic cleaning device adopts the structure that a brush is additionally arranged in a grid plate, the forklift grinds through the cleaning device, and only dust on the wheels is simply swept, so that the forklift automatic cleaning device is provided. The utility model aims to add the steps of deep cleaning and drying to clean the forklift wheels.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the field of forklifts, and specifically relates to a forklift automatic cleaning device. Background Art

[0002] A forklift is an industrial vehicle used for carrying and stacking goods, usually used in places such as warehouses, factories, and construction sites. They lift and move goods through fork arms and can operate flexibly in narrow spaces. There are various types of forklifts, including electric forklifts, internal combustion forklifts, and manual forklifts, etc., which are suitable for different working environments and load requirements.

[0003] A forklift automatic cleaning device is a device used to clean the surface and components of a forklift, aiming to improve the maintenance efficiency of the forklift and extend its service life. For some warehouses with high hygiene requirements, such as medical, food, and cosmetics, etc., it is necessary to keep the forklift clean at all times. However, inevitably, the forklift needs to be transported outdoors. Just for a short transportation outdoors, only the wheels of the forklift will stick with some dust and other impurities, and only the wheels of the forklift need to be cleaned. The existing forklift automatic cleaning device adopts a structure with brushes added inside a grid plate. When the forklift runs over the cleaning device, it only simply sweeps the dust on the wheels. For this reason, we propose a forklift automatic cleaning device. Content of the Utility Model

[0004] (1) Technical Problems to be Solved

[0005] In view of the deficiencies of the prior art, the utility model provides a forklift automatic cleaning device, which solves the above problems.

[0006] (2) Technical Solutions

[0007] To achieve the above-mentioned purpose, the utility model provides the following technical solution: A forklift automatic cleaning device includes a slope plate, a surface cleaning structure, an immersion structure, a brush cleaning structure, a rinsing structure, and a drying structure. One side of the top of the slope plate is fixedly connected to the surface cleaning structure, the other side of the surface cleaning structure is fixedly connected to the immersion structure, the other side of the immersion structure is fixedly connected to the brush cleaning structure, the other side of the brush cleaning structure is fixedly connected to the rinsing structure, the other side of the rinsing structure is fixedly connected to the drying structure, and the other side of the drying structure is fixedly connected to one side of the top of another slope plate.

[0008] Preferably, the surface cleaning structure includes a brush seat plate and plastic brushes. One side of the brush seat plate is fixedly connected to one side of the top of the slope plate, and a group of evenly distributed plastic brushes are fixedly connected to the side of the brush seat plate facing the same direction as the slope surface.

[0009] Preferably, the soaking structure includes a soaking tank, rubber blocks, a grid plate, and double tracks. One side of the soaking tank is fixedly connected to the side of the brush seat plate facing away from the slope plate. The opening side of the soaking tank corresponds to the plastic brush. Two rubber blocks are fixedly connected to the inner bottom surface of the soaking tank. The other side of the rubber block is fixedly connected to the grid plate. The other side of the grid plate is fixedly connected to two evenly distributed double tracks. The double tracks are oriented towards the connection surface between the brush seat plate and the soaking tank and correspond to the rubber blocks.

[0010] Preferably, the brush cleaning structure includes a first water collecting tank, support blocks, rotating brushes, and a grid plate. One side of the first water collecting tank is fixedly connected to the side of the soaking tank facing away from the brush seat plate. The opening side of the first water collecting tank corresponds to the double tracks on the soaking tank. Two support blocks are fixedly connected to the inner bottom surface of the first water collecting tank. The support blocks correspond to the rubber blocks inside the soaking tank. The other side of the support block is fixedly connected to the grid plate. The other side of the grid plate is fixedly connected to two groups of rotating brushes. The two groups of rotating brushes correspond to the double tracks on the soaking tank. A set of water drainage holes is provided on the surface of the support block connected to the bottom surface of the first water collecting tank to penetrate the first water collecting tank separated by the support block.

[0011] Preferably, the rinsing structure includes a rinsing tank, double tracks, a grid plate, and rubber blocks. One side of the rinsing tank is fixedly connected to the side of the first water collecting tank facing away from the soaking tank. The opening side of the rinsing tank corresponds to the rotating brushes. Two rubber blocks are fixedly connected to the inner bottom surface of the rinsing tank. The rubber blocks correspond to the support blocks on the first water collecting tank. The other side of the rubber block is fixedly connected to the grid plate. The other side of the grid plate is fixedly connected to two evenly distributed double tracks. The double tracks correspond to the rubber blocks.

[0012] Preferably, the drying structure includes a second water collecting tank, an S-shaped air duct, a grid plate, and a hot air blower. One side of the second water collecting tank is fixedly connected to the side of the rinsing tank facing away from the first water collecting tank. The opening side of the second water collecting tank corresponds to the double tracks. The S-shaped air duct is fixedly connected to the inner bottom surface of the first water collecting tank. The other side of the S-shaped air duct is fixedly connected to the grid plate. The hot air blower is fixedly connected to both ends inside the S-shaped air duct. A set of evenly distributed air outlets is provided on the surface of the hot air blower connected to the grid plate.

[0013] (III) Beneficial Effects

[0014] Compared with the prior art, the present utility model provides a forklift automatic cleaning device, which has the following beneficial effects:

[0015] 1. This forklift automatic cleaning device performs a series of cleaning operations on the forklift wheels, including removing surface dust and impurities, soaking in cleaning liquid, brush cleaning, removing cleaning liquid, and drying steps. The forklift can be cleaned by driving it through the automatic cleaning device, ensuring that the wheels of the forklift entering the warehouse from the outside are kept clean, meeting the warehouse hygiene requirements. Regular cleaning can effectively remove corrosive substances and dirt, reduce the wear of forklift components, and thus extend the service life of the forklift.

[0016] 2. The forklift automatic cleaning device adopts water-saving technology, optimizes the use of water flow, reduces water consumption during the cleaning process. The cleaning liquid and water required are completely inside the device and can be reused until new cleaning liquid and water need to be replaced. It uses environment-friendly cleaning agents and water-saving designs to reduce the impact on the environment, meeting the sustainable development goals of modern enterprises. Brief Description of the Drawings

[0017] Figure 1 It is a schematic structural diagram of the present utility model;

[0018] Figure 2 It is a sectional view schematic diagram of the soaking structure, brush cleaning structure and rinsing structure of the present utility model;

[0019] Figure 3 It is a sectional view schematic diagram of the water tank of the soaking structure, brush cleaning structure and rinsing structure of the present utility model;

[0020] Figure 4 It is a sectional view schematic diagram of the drying structure of the present utility model.

[0021] In the figure: 1. Slope plate; 2. Brush seat plate; 3. Soaking tank; 4. First water collecting tank; 5. Rinsing tank; 6. Second water collecting tank; 7. Plastic brush; 8. Double track; 9. Rotary brush; 10. Grid plate; 11. Support block; 12. Water flow hole; 13. S-shaped air duct; 14. Rubber block; 15. Hot air blower; 16. Air outlet. Detailed Embodiment

[0022] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without making creative efforts shall fall within the protection scope of the present utility model.

[0023] Please refer to Figures 1-4 , a forklift automatic cleaning device, including a slope plate 1, a surface cleaning structure, a soaking structure, a brush cleaning structure, a rinsing structure and a drying structure. One side of the top of the slope plate 1 is fixedly connected to the surface cleaning structure, the other side of the surface cleaning structure is fixedly connected to the soaking structure, the other side of the soaking structure is fixedly connected to the brush cleaning structure, the other side of the brush cleaning structure is fixedly connected to the rinsing structure, the other side of the rinsing structure is fixedly connected to the drying structure, and the other side of the drying structure is fixedly connected to one side of the top of another slope plate 1.

[0024] Furthermore, the surface cleaning structure includes a brush seat plate 2 and plastic brushes 7. One side of the brush seat plate 2 is fixedly connected to the top surface of the slope plate 1. On the side of the brush seat plate 2 facing the same direction as the slope surface of the slope plate 1, a group of uniformly distributed plastic brushes 7 are fixedly connected. When the plastic brushes 7, which are made of plastic, rub against the wheel, static electricity is generated to adsorb dust and impurities on the wheel.

[0025] Furthermore, the soaking structure includes a soaking tank 3, rubber blocks 14, a grid plate 10, and double tracks 8. One side of the soaking tank 3 is fixedly connected to the side of the brush seat plate 2 facing away from the slope plate 1. The opening side of the soaking tank 3 corresponds to the plastic brushes 7. Two rubber blocks 14 are fixedly connected to the inner bottom surface of the soaking tank 3. The other side of the rubber blocks 14 is fixedly connected to the grid plate 10. The other side of the grid plate 10 is fixedly connected to two evenly distributed double tracks 8. The double tracks 8 are directed towards the connection surface of the brush seat plate 2 and the soaking tank 3, and the double tracks 8 correspond to the rubber blocks 14. A cleaning liquid is contained in the soaking tank 3. When the rubber blocks 14 are compressed, they drive the grid plate 10 to be immersed in the cleaning liquid, and the wheel is also in the cleaning liquid. When the wheel leaves the grid plate 10, the rubber blocks 14 rebound, and the double tracks 8 guide the wheel to move in a straight line.

[0026] Furthermore, the brush cleaning structure includes a first water collecting tank 4, support blocks 11, rotating brushes 9, and a grid plate 10. One side of the first water collecting tank 4 is fixedly connected to the side of the soaking tank 3 facing away from the brush seat plate 2. The opening side of the first water collecting tank 4 corresponds to the double tracks 8 on the soaking tank 3. Two support blocks 11 are fixedly connected to the inner bottom surface of the first water collecting tank 4. The support blocks 11 correspond to the rubber blocks 14 inside the soaking tank 3. The other side of the support blocks 11 is fixedly connected to the grid plate 10. The other side of the grid plate 10 is fixedly connected to two groups of rotating brushes 9. The two groups of rotating brushes 9 correspond to the double tracks 8 on the soaking tank 3. On the side of the support blocks 11 connected to the bottom surface of the first water collecting tank 4, a group of water drainage holes 12 are opened to penetrate the first water collecting tank 4 separated by the support blocks 11. The first water collecting tank 4 is used to collect the cleaning liquid attached to the wheel. The rotating brushes 9 will rotate under force to clean the wheel. The support blocks 11 are used to support the grid plate 10 and the wheel. The water drainage holes 12 are used to connect the cleaning liquid inside the first water collecting tank 4.

[0027] Furthermore, the rinsing structure includes a rinsing tank 5, double tracks 8, a grid plate 10, and rubber blocks 14. One side of the rinsing tank 5 is fixedly connected to the side of the first water collecting tank 4 facing away from the soaking tank 3. The opening side of the rinsing tank 5 corresponds to the rotating brushes 9. Two rubber blocks 14 are fixedly connected to the inner bottom surface of the rinsing tank 5. The rubber blocks 14 correspond to the support blocks 11 on the first water collecting tank 4. The other side of the rubber blocks 14 is fixedly connected to the grid plate 10. The other side of the grid plate 10 is fixedly connected to two evenly distributed double tracks 8. The double tracks 8 correspond to the rubber blocks 14. Clear water is contained in the rinsing tank 5.

[0028] Furthermore, the drying structure includes a second water collecting tank 6, an S-shaped air duct 13, a grid plate 10, and a hot air blower 15. One side of the second water collecting tank 6 is fixedly connected to the side of the rinsing tank 5 facing away from the first water collecting tank 4. The open side of the second water collecting tank 6 corresponds to the double track 8. The inner bottom surface of the first water collecting tank 4 is fixedly connected to the S-shaped air duct 13. The other side of the S-shaped air duct 13 is fixedly connected to the grid plate 10. The two ends of the S-shaped air duct 13 are fixedly connected to the hot air blower 15 inside. A group of uniformly distributed air outlets 16 are formed on the side of the hot air blower 15 connected to the grid plate 10. The second water collecting tank 6 is used to collect the water attached to the wheels. The S-shaped air duct 13 is used to support the grid plate 10 and the wheels. The hot air generated by the hot air blower 15 dries the wheels through the air outlets 16 and the grid plate 10.

[0029] Working principle: For the forklift entering the warehouse from the outside, first drive the forklift onto the slope plate 1 and into the brush seat plate 2. The plastic brush 7 rubs against the wheels to remove the dust and impurities on the surface. Then continue to drive towards the soaking tank 3. The wheels roll between the double tracks 8. At this time, the rubber block 14 is pressed, and the grid plate 10 is immersed in the cleaning liquid in the soaking tank 3, and the wheel surfaces are also immersed in the cleaning liquid. Then continue to drive towards the first water collecting tank 4. The wheels roll between the rotating brushes 9. The rotating brushes 9 rub against the wheels and rotate to deeply clean the wheels. Then continue to drive towards the rinsing tank 5. The wheels roll between the double tracks 8. At this time, the rubber block 14 is pressed, and the wheels are rinsed in the water in the rinsing tank 5. Then continue to drive towards the second water collecting tank 6. The hot air from the hot air blower 15 dries the wheels through the air outlets 16 and the grid plate 10. Then continue to drive towards the slope plate 1 and leave the slope plate 1 to enter the warehouse.

[0030] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. An automatic forklift cleaning device, comprising a slope plate (1), a surface cleaning structure, an immersion structure, a brush cleaning structure, a rinsing structure and a drying structure, characterized in that: One side of the top of the slope plate (1) is fixedly connected to a surface cleaning structure, the other side of the surface cleaning structure is fixedly connected to a soaking structure, the other side of the soaking structure is fixedly connected to a brush cleaning structure, the other side of the brush cleaning structure is fixedly connected to a rinsing structure, the other side of the rinsing structure is fixedly connected to a drying structure, and the other side of the drying structure is fixedly connected to one side of the top of another slope plate (1).

2. The automatic forklift cleaning device according to claim 1, characterized in that: The surface cleaning structure includes a brush seat plate (2) and plastic brushes (7). One side of the brush seat plate (2) is fixedly connected to one side of the top of the slope plate (1), and a group of evenly distributed plastic brushes (7) are fixedly connected to the surface of the brush seat plate (2) facing the same direction as the slope of the slope plate (1).

3. An automatic forklift cleaning device according to claim 2, characterized in that: The soaking structure includes a soaking tank (3), rubber blocks (14), a grid plate (10), and double tracks (8). One side of the soaking tank (3) is fixedly connected to the side of the brush seat plate (2) facing away from the slope plate (1). The opening side of the soaking tank (3) corresponds to the plastic brushes (7). Two rubber blocks (14) are fixedly connected to the inner bottom surface of the soaking tank (3). The other side of the rubber blocks (14) is fixedly connected to the grid plate (10). The other side of the grid plate (10) is fixedly connected to two evenly distributed double tracks (8). The direction of the double tracks (8) points to the connection surface of the brush seat plate (2) and the soaking tank (3), and the double tracks (8) correspond to the rubber blocks (14).

4. The automatic forklift cleaning device according to claim 3, characterized in that: The brush cleaning structure includes a first water collecting tank (4), support blocks (11), rotating brushes (9), and a grid plate (10). One side of the first water collecting tank (4) is fixedly connected to the side of the soaking tank (3) facing away from the brush seat plate (2). The opening side of the first water collecting tank (4) corresponds to the double tracks (8) on the soaking tank (3). Two support blocks (11) are fixedly connected to the inner bottom surface of the first water collecting tank (4). The support blocks (11) correspond to the rubber blocks (14) in the soaking tank (3). The other side of the support blocks (11) is fixedly connected to the grid plate (10). Two groups of rotating brushes (9) are fixedly connected to the other side of the grid plate (10). The two groups of rotating brushes (9) correspond to the double tracks (8) on the soaking tank (3). A group of water drainage holes (12) are opened on the surface of the support blocks (11) connected to the bottom surface of the first water collecting tank (4) to penetrate through the first water collecting tank (4) separated by the support blocks (11).

5. The automatic forklift cleaning device according to claim 4, characterized in that: The rinsing structure includes a rinsing tank (5), double tracks (8), a grid plate (10), and rubber blocks (14). One side of the rinsing tank (5) is fixedly connected to the side of the first water collecting tank (4) facing away from the soaking tank (3). The opening side of the rinsing tank (5) corresponds to the rotating brushes (9). Two rubber blocks (14) are fixedly connected to the inner bottom surface of the rinsing tank (5). The rubber blocks (14) correspond to the support blocks (11) on the first water collecting tank (4). The other side of the rubber blocks (14) is fixedly connected to the grid plate (10). The other side of the grid plate (10) is fixedly connected to two evenly distributed double tracks (8). The double tracks (8) correspond to the rubber blocks (14).

6. The automatic cleaning device for forklift trucks according to claim 5, characterized in that: The drying structure includes a second water collecting tank (6), an S-shaped air duct (13), a grid plate (10), and a hot air blower (15). One side of the second water collecting tank (6) is fixedly connected to the side of the rinsing tank (5) facing away from the first water collecting tank (4). The open side of the second water collecting tank (6) corresponds to the double track (8). The inner bottom surface of the first water collecting tank (4) is fixedly connected to the S-shaped air duct (13). The other side of the S-shaped air duct (13) is fixedly connected to the grid plate (10). The two ends of the S-shaped air duct (13) are fixedly connected to the hot air blower (15). A group of evenly distributed air outlets (16) are provided on the side of the hot air blower (15) connected to the grid plate (10).