Bearing type leakage net plate structure of car washing machine
By designing a load-bearing screen-slip panel structure including a substrate, a bottom bearing mechanism and a central hollow mechanism, the problem of insufficient bearing effect and stability of the traditional car wash machine leakage panel structure is solved, and more efficient wastewater recycling and treatment is achieved.
Patent Information
- Application Number
- CN202422516711.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-17
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2034-10-17
AI Technical Summary
The traditional car wash machine has poor bearing effect and stability in the screen-slip structure, resulting in a hollowed-out lower part and unable to effectively carry the vehicle chassis.
A load-bearing screen-slip structure is designed, including a substrate, a bottom bearing mechanism and a central hollow mechanism. There is a ramp on the right side of the substrate, and the bottom bearing mechanism realizes automatic docking through the bearing groove, the lower convex strip, the rectangular butt block and the docking plug column. The middle hollow mechanism improves the bearing effect and stability of the structure through the bearing plate, the bearing docking groove and the hollow frame.
This structure significantly improves the load-bearing effect and stability of the car wash machine, can effectively treat a large amount of wastewater generated during vehicle cleaning, and ensures the recycling and treatment of wastewater through automatic docking and hollow frame design.
Smart Images

Figure CN222921547U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of car washing machines, in particular to a load-bearing mesh plate structure of a car washing machine. Background Art
[0002] Car washers are widely used in construction sites, mining factories, cement factories, coal mines, power plants and communities. The equipment uses multi-directional high-pressure water to wash the tires and chassis, so as to achieve the effect of thoroughly cleaning the wheels and chassis. During the use of this type of car wash, a special mesh plate structure is required to discharge and recycle the waste water generated by car washing, so as to cooperate with the use of fence washing table car washers. The traditional mesh plate structure is often directly connected to the sewer, and the bottom of the entire structure is directly the sewer, resulting in the lower part being hollow, and its load-bearing effect and stability are poor. For this reason, we propose a load-bearing mesh plate structure for a car wash machine. Utility Model Content
[0003] The technical problem to be solved by the utility model is to overcome the existing defects and provide a load-bearing mesh plate structure for a car washing machine. The load-bearing effect and stability effect of the structure are excellent, and the problems in the background technology can be effectively solved.
[0004] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: a load-bearing mesh plate structure of a car washing machine, comprising a base plate, a bottom receiving mechanism and a middle hollowing mechanism;
[0005] Base plate: A ramp is provided on its right side;
[0006] Bottom receiving mechanism: it includes receiving grooves, lower convex strips, rectangular docking blocks and docking plug posts. The receiving grooves are evenly arranged on the upper surface of the base plate. The interior of the receiving grooves is provided with lower convex strips. The upper surface of the lower convex strips is provided with evenly spaced rectangular docking blocks. The four corners of the rectangular docking blocks are provided with docking plug posts.
[0007] The middle hollow mechanism: also includes a receiving plate, a receiving docking groove and a hollow frame, the receiving docking grooves are respectively opened on the lower surface of the receiving plate, the receiving plate is inserted into the inside of the receiving groove, the inside of the receiving docking groove is respectively inserted with the outer surface of the lower convex strip located in the same receiving groove, the inner wall of the receiving plate is provided with a hollow frame, and modularization improves the bearing effect and stability of the structure.
[0008] Furthermore, the central hollow mechanism also includes a rectangular docking groove and a docking slot. The rectangular docking grooves are evenly opened on the lower surface of each supporting plate, and the interior of the rectangular docking grooves is plugged into the outer surface of the rectangular docking blocks corresponding to its upper and lower positions. Docking slots are opened at the four corners of the lower surface of each supporting plate, and the interior of the docking slots is plugged into the outer surface of the docking posts corresponding to its upper and lower positions.
[0009] Furthermore, the bottom receiving mechanism further includes a water leakage hopper and a guide groove. The water leakage hopper is respectively arranged in the middle of the receiving groove. The inside of the substrate is provided with uniformly distributed guide grooves that are interconnected. The lower ends of the water leakage hoppers are all connected to the guide grooves, realizing the function of guiding the waste water.
[0010] Furthermore, it further includes a water pipe. The water pipes are uniformly arranged on the left and right sides of the substrate. The water pipes connect the two sides of the guide groove. The water outlet end of the water pipe is externally connected to an external sewage collection device, realizing the function of discharging the waste water.
[0011] Furthermore, it further includes a fully covered laying pad. The fully covered laying pad is laid on the upper surface of the receiving plate. The lower surface of the fully covered laying pad is provided with upper anti-slip ridges, and the upper surface of the fully covered laying pad is provided with a water leakage grid plate, realizing the function of the vehicle structure of this structure.
[0012] Furthermore, it further includes an anti-slip pad. The anti-slip pads are uniformly arranged on the outer surface of the ramp to prevent the vehicle from slipping when passing through the ramp.
[0013] Furthermore, it further includes a grip buried section. The grip buried section is located on the lower surface of the substrate to realize the function of burying in the ground.
[0014] Compared with the prior art, the beneficial effects of the present utility model are as follows: The load-bearing mesh plate structure of this car wash machine has the following advantages:
[0015] 1. During the process of the vehicle receiving cleaning, a large amount of waste water generated penetrates downward through the water leakage grid plate and the hollow frame to the water leakage hopper, and then flows from the water leakage hopper into the inside of the guide groove. The guide grooves are interconnected. At this time, the external sewage collection device can be adjusted, and the waste water will be recovered by the external sewage collection device through the water pipe and filtered. The waste water will flow back along the guide groove, facilitating the subsequent treatment of sewage.
[0016] 2. Install the structure onto the designated station through the grasping and burying section of the substrate. At this time, insert the receiving plates one by one into the inside of the receiving grooves. The outer shape of the receiving grooves is the same as that of the receiving plates. During the insertion process, the lower convex strips can automatically dock with the receiving docking grooves, the rectangular docking blocks can automatically dock with the rectangular docking grooves, and the docking plug posts can automatically insert into the docking slots. At this time, since these receiving plates are spliced, there are some small gaps between the receiving plates. At this time, the full-coverage laying pad can be laid on these receiving plates. The gaps between the receiving plates are filled by the upper anti-slip convex strips. At this time, the vehicle can move along the ramp to the upper surface of these receiving plates. During the movement, under the pressure of the vehicle, the full-coverage laying pad diverges the pressure to each receiving plate. When the full-coverage laying pad is under pressure and deflects, the upper anti-slip convex strips tightly grip the gaps between the receiving plates to prevent sliding. When the hollow frame is under pressure, the hollow frame diverges the pressure to the receiving plates, and then the receiving plates diverge the pressure to the receiving grooves in sequence. The modularization improves the load-bearing effect and stability of the structure. Brief Description of the Drawings
[0017] Figure 1 is a schematic structural view of the present utility model;
[0018] Figure 2 is a schematic cross-sectional structural view of the bottom receiving mechanism of the present utility model;
[0019] Figure 3 is a schematic structural view of the middle hollowing mechanism of the present utility model;
[0020] Figure 4 is a schematic partial structural view of the present utility model.
[0021] In the figure: 1 substrate, 2 ramp, 3 bottom receiving mechanism, 31 receiving groove, 32 lower convex strip, 33 rectangular docking block, 34 water leakage hopper, 35 guiding groove, 36 docking plug post, 4 middle hollowing mechanism, 41 receiving plate, 42 receiving docking groove, 43 rectangular docking groove, 44 docking slot, 45 hollow frame, 5 water pipe, 6 full-coverage laying pad, 7 upper anti-slip convex strip, 8 water leakage grid plate, 9 anti-slip pad. 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 accompanying 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 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, This embodiment provides a technical solution: a load-bearing mesh plate structure of a car washing machine, comprising a base plate 1, a bottom receiving mechanism 3 and a middle hollow mechanism 4;
[0024] Base plate 1: a ramp 2 is provided on the right side thereof, and also includes an anti-skid pad 9, which is evenly arranged on the outer surface of the ramp 2, and also includes a ground-gripping buried section, which is located on the lower surface of the base plate 1, and the base plate 1 is installed to the designated work station through the ground-gripping buried section;
[0025] Bottom receiving mechanism 3: It includes receiving groove 31, lower convex strip 32, rectangular docking block 33 and docking plug 36. The receiving groove 31 is evenly arranged on the upper surface of the base plate 1. The inside of the receiving groove 31 is provided with lower convex strip 32. The upper surface of the lower convex strip 32 is provided with rectangular docking blocks 33 of even portions. The four corners of the rectangular docking block 33 are provided with docking plug 36. The bottom receiving mechanism 3 also includes a funnel 34 and a guide groove 35. The funnel 34 is respectively opened in the middle of the receiving groove 31. The inside of the base plate 1 is provided with evenly distributed guide grooves 35. The guide grooves 35 are interconnected. The lower ends of the funnels 34 are connected to the guide grooves 35. It also includes a water pipe 5. The water pipe 5 is evenly arranged on the left and right sides of the base plate 1. The water pipe 5 connects the two sides of the guide groove 35. The water outlet end of the water pipe 5 is externally connected to an external sewage collection device.
[0026] Middle hollowing mechanism 4: It further includes a bearing plate 41, a bearing docking groove 42 and a hollowing frame 45. The bearing docking grooves 42 are respectively opened on the lower surface of the bearing plate 41. The bearing plate 41 is inserted into the inside of the bearing groove 31. The inner parts of the bearing docking grooves 42 are respectively inserted with the outer surfaces of the lower ridges 32 located in the same bearing groove 31. Hollowing frames 45 are provided on the inner walls of the bearing plate 41. The middle hollowing mechanism 4 further includes a rectangular docking groove 43 and a docking slot 44. The rectangular docking grooves 43 are evenly opened on the lower surface of each bearing plate 41. The inner parts of the rectangular docking grooves 43 are respectively inserted with the outer surfaces of the rectangular docking blocks 33 corresponding to their upper and lower positions. Docking slots 44 are opened at the four corners of the lower surface of each bearing plate 41. The inner parts of the docking slots 44 are respectively inserted with the outer surfaces of the docking posts 36 corresponding to their upper and lower positions. It further includes a full-coverage laying pad 6. The full-coverage laying pad 6 is laid on the upper surface of the bearing plate 41. Upper anti-slip ridges 7 are provided on the lower surface of the full-coverage laying pad 6. A water leakage grid plate 8 is provided on the upper surface of the full-coverage laying pad 6. Insert the bearing plates 41 one by one into the inside of the bearing grooves 31. The outer shape of the bearing groove 31 is the same as that of the bearing plate 41. During the insertion process, the lower ridges 32 can automatically dock with the bearing docking grooves 42, the rectangular docking blocks 33 can automatically dock with the rectangular docking grooves 43, and the docking posts 36 can automatically insert into the docking slots 44. After all the bearing plates 41 are installed inside the bearing grooves 31, the bearing plate 41 at the specified position can be removed, and the high-pressure spray nozzle for rinsing the vehicle chassis can be embedded into the inside of the water leakage hopper 34 at the specified position, and then the bearing plate 41 is closed. At this time, since these bearing plates 41 are spliced, there are some small gaps between the bearing plates 41. At this time, the full-coverage laying pad 6 can be laid on these bearing plates 41. The gaps between the bearing plates 41 are filled by the upper anti-slip ridges 7. At this time, the vehicle can move onto the upper surfaces of these bearing plates 41 along with the ramp 2. During the movement, due to the pressure of the vehicle, the full-coverage laying pad 6 diverges the pressure to each bearing plate 41. When the full-coverage laying pad 6 is under pressure and deflects, the upper anti-slip ridges 7 tightly grip the gaps between the bearing plates 41 to prevent sliding. When the hollowing frame 45 is under pressure, the hollowing frame 45 diverges the pressure to the bearing plate 41, and then the bearing plate 41 diverges the pressure to the bearing groove 31 in turn, preventing the bearing plate 41 from changing its position and affecting the stability of the entire screen plate. During the process of vehicle receiving cleaning, a large amount of wastewater generated penetrates downward through the water leakage grid plate 8 and the hollowing frame 45 into the water leakage hopper 34, and then flows from the water leakage hopper 34 into the inside of the guiding groove 35. The guiding grooves 35 are interconnected. At this time, the external sewage collection equipment can be adjusted, and the wastewater will be recovered by the external sewage collection equipment through the water pipe 5 and filtered.
[0027] The working principle of the load-bearing strainer plate structure of a car wash machine provided by the present utility model is as follows: The base plate 1 is installed at the designated working station through the ground-gripping and burying section. At this time, the receiving plates 41 are inserted into the receiving grooves 31 one by one. The outer shape of the receiving groove 31 is the same as that of the receiving plate 41. During the insertion process, the lower protruding strip 32 can automatically dock with the receiving docking groove 42, the rectangular docking block 33 can automatically dock with the rectangular docking groove 43, and the docking plug 36 can automatically insert into the docking slot 44. After all the receiving plates 41 are installed inside the receiving grooves 31, the receiving plate 41 at the designated position can be removed, and the high-pressure spray nozzle for rinsing the vehicle chassis is embedded into the strainer 34 at the designated position. Then, the receiving plate 41 is closed. At this time, since these receiving plates 41 are spliced, there are some small gaps between the receiving plates 41. At this time, the full-coverage laying pad 6 can be laid on these receiving plates 41. The gaps between the receiving plates 41 are filled by the upper anti-slip protruding strips 7. At this time, the vehicle can move onto the upper surface of these receiving plates 41 along the ramp 2. During the movement, due to the pressure of the car, the full-coverage laying pad 6 disperses the pressure to each receiving plate 41. When the full-coverage laying pad 6 is under pressure and deflects, the upper anti-slip protruding strips 7 tightly grip the gaps between the receiving plates 41 to prevent sliding. When the hollow frame 45 is under pressure, the hollow frame 45 disperses the pressure to the receiving plates 41, and then the receiving plates 41 disperse the pressure to the receiving grooves 31 in sequence to prevent the receiving plates 41 from changing positions and affecting the stability of the entire strainer plate. During the process of the vehicle being washed, a large amount of wastewater seeps downward through the strainer grid plate 8 and the hollow frame 45 into the strainer 34, and then flows into the inside of the guiding groove 35 through the strainer 34. The guiding grooves 35 are interconnected. At this time, the external sewage collection equipment can be adjusted, and the wastewater will be recovered by the external sewage collection equipment through the water pipe 5 and filtered.
[0028] The above are only the embodiments of the present utility model, and do not limit the patent scope of the present utility model accordingly. Any equivalent structure or equivalent process transformation made by using the content of the specification and drawings of the present utility model, or directly or indirectly applied in other related technical fields, shall be equally included in the patent protection scope of the present utility model.
Claims
1. A load-bearing screen plate structure for a car washing machine, characterized in that: It comprises a base plate (1), a bottom receiving mechanism (3) and a middle hollowing mechanism (4); Base plate (1): a ramp (2) is provided on its right side; Bottom receiving mechanism (3): comprising a receiving groove (31), a lower convex strip (32), a rectangular docking block (33) and a docking plug post (36); the receiving groove (31) is evenly arranged on the upper surface of the base plate (1); the interior of the receiving groove (31) is provided with a lower convex strip (32); the upper surface of the lower convex strip (32) is provided with a rectangular docking block (33) of an even portion; and the four corners of the rectangular docking block (33) are provided with a docking plug post (36); The middle hollow structure (4) further comprises a receiving plate (41), a receiving docking groove (42) and a hollow frame (45), wherein the receiving docking groove (42) is respectively formed on the lower surface of the receiving plate (41), the receiving plate (41) is inserted into the receiving groove (31), the interior of the receiving docking groove (42) is respectively inserted into the outer surface of the lower convex strip (32) located in the same receiving groove (31), and the inner wall of the receiving plate (41) is provided with a hollow frame (45).
2. The load-bearing screen plate structure of a car washing machine according to claim 1, characterized in that: The central hollow structure (4) further comprises a rectangular docking groove (43) and a docking slot (44), wherein the rectangular docking groove (43) is evenly formed on the lower surface of each receiving plate (41), the interior of the rectangular docking groove (43) is plugged into the outer surface of the rectangular docking block (33) corresponding to the upper and lower positions thereof, and docking slots (44) are formed at four corners of the lower surface of each receiving plate (41), and the interior of the docking slots (44) is plugged into the outer surface of the docking plug post (36) corresponding to the upper and lower positions thereof.
3. The load-bearing screen plate structure of a car washing machine according to claim 1, characterized in that: The bottom receiving mechanism (3) further comprises a water funnel (34) and a guide groove (35), wherein the water funnel (34) is respectively arranged in the middle of the receiving groove (31), and the inside of the base plate (1) is provided with evenly distributed guide grooves (35), the guide grooves (35) are interconnected, and the lower ends of the water funnels (34) are all connected to the guide grooves (35).
4. The load-bearing screen plate structure of a car washing machine according to claim 3, characterized in that: It also includes a water pipe (5), the water pipe (5) being evenly arranged on the left side and the right side of the base plate (1), the water pipe (5) connecting the two sides of the guide groove (35), and the water outlet end of the water pipe (5) being externally connected to an external sewage collection device.
5. The load-bearing screen plate structure of a car washing machine according to claim 1, characterized in that: It also includes a fully enclosed laying mat (6), which is laid on the upper surface of the receiving plate (41), the lower surface of the fully enclosed laying mat (6) is provided with an upper anti-slip convex strip (7), and the upper surface of the fully enclosed laying mat (6) is provided with a water-leakage grid plate (8).
6. The load-bearing screen plate structure of a car washing machine according to claim 1, characterized in that: It also includes an anti-skid pad (9), which is evenly arranged on the outer surface of the ramp (2).
7. The load-bearing screen plate structure of a car washing machine according to claim 1, characterized in that: It also comprises a ground-gripping buried section, which is located on the lower surface of the base plate (1).