Novel buckle type car washing machine conveyor belt

CN224781954UActive Publication Date: 2026-09-22SHAOXING ZHONGLI STEEL BUILDING ENG CO LTD +1
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Patent Information

Application Number
CN202521552948.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-07-24
Publication Date
2026-09-22
Estimated Expiration
2035-07-24

AI Technical Summary

Technical Problem

[0003]现有的洗车机输送装置的输送带多为整体式结构,一旦局部损坏就需整体更换,维修成本高且耗时久,同时,洗车过程中产生的大块颗粒泥沙等杂质易附着在输送带上,不仅影响输送带的正常运行和使用寿命,还会随水流进入洗车机其他部件,造成设备故障,而且,传统输送带缺乏对大块杂质的有效过滤分离手段,无法将杂质统一收集处理,使得洗车环境脏乱,增加了清洁人员的工作负担,难以满足现代洗车行业高效、智能、清洁的需求

Benefits of technology

1、通过连接件,扣板可便捷地与 L型固定板实现可拆卸连接,这种模块化设计彻底改变传统输送带的整体结构,使得当某块扣板出现磨损、损坏等情况,维修人员能够快速拆卸故障扣板并更换新板,避免因局部问题而更换整条输送结构,大幅降低维护成本与停机时间。

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Abstract

The utility model relates to the field of automatic car washer, specifically disclose a new buckle plate formula car washer conveying belt, including installation machine shell, install conveying unit and cleaning unit on the installation machine shell, and conveying unit includes drive unit, and drive unit is installed on the installation machine shell, is provided with transmission chain on drive unit, even install L type fixed plate on every transmission chain, set up a plurality of buckling plates on two transmission chains, wherein at least one buckling plate upper surface installs the positioning piece, and the both ends of buckling plate all are provided with connecting piece, the utility model discloses through connecting piece, and buckling plate can conveniently realize detachable connection with L type fixed plate, and this kind of modularization design completely changes the overall structure of traditional conveying belt, so that when some buckling plate appears wear and tear, damage and so on, maintenance personnel can quickly detach the fault buckling plate and replace new board, avoid replacing whole conveying structure because of local problem, greatly reduce maintenance cost and downtime.
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Description

Technical Field

[0001] This utility model relates to the field of automatic car wash machines, specifically to a novel buckle-plate type conveyor belt for car wash machines. Background Technology

[0002] A car wash machine is a machine that uses computer-controlled brushes and high-pressure water to automatically clean cars. It can be divided into automatic car wash machines and coin-operated car wash machines. It mainly consists of a control system, electrical circuits, air circuits, water circuits, and mechanical structures. Car wash machines are characterized by simple operation, an attractive appearance, and minimal damage to car paint. In recent years, they have been widely used in the automotive service industry.

[0003] Existing car wash machine conveyor belts are mostly integral structures, requiring replacement of the entire belt if any part is damaged. This results in high maintenance costs and time. Furthermore, large particles of mud and sand generated during the car wash process easily adhere to the conveyor belt, affecting its normal operation and lifespan. These impurities can also enter other parts of the car wash machine with the water flow, causing equipment malfunctions. In addition, traditional conveyor belts lack effective means of filtering and separating large impurities, making it impossible to collect and process them uniformly. This results in a dirty and messy car wash environment, increasing the workload of cleaning staff and failing to meet the demands of the modern car wash industry for efficiency, intelligence, and cleanliness. Utility Model Content

[0004] This utility model discloses a novel buckle-plate type car wash machine conveyor belt, including a mounting housing, on which a conveying unit and a cleaning unit are mounted, with the conveying unit installed above the cleaning unit. The conveying unit includes a drive unit mounted on the mounting housing. The drive unit is equipped with two transmission chains, each with an L-shaped fixing plate evenly mounted on it. Both transmission chains are equipped with multiple buckles, at least one of which has a positioning element mounted on its upper surface. Both ends of the buckle are equipped with connectors for connecting the buckle to the L-shaped fixing plate. The cleaning unit is used to clean the buckles and filter and collect large particulate impurities.

[0005] Preferably, the conveying unit is equipped with a support structure, which includes a support slide rail and multiple sets of support wheels. The support slide rail is installed on the inner wall of the mounting housing and is located in the middle of the conveying unit. Each set of support wheels is installed on the lower surface of the buckle plate, and each set of support wheels has at least two wheels. All support wheels can slide and cooperate with the support slide rail.

[0006] Preferably, the connector is a bolt structure, with positioning holes 1 at both ends of the buckle plate and positioning holes 2 on the L-shaped fixing plate.

[0007] Preferably, the cleaning unit includes a filter assembly, which is disposed inside the mounting housing and located below the conveying unit. The internal space of the mounting housing below the filter assembly becomes a water storage tank. A storage tank is provided at one end of the mounting housing, and the storage tank communicates with the internal area of ​​the mounting housing above the filter assembly.

[0008] Preferably, the filter assembly includes an active roller and a driven roller, both of which are rotatably mounted on the inner wall of the mounting housing. The driven roller is mounted higher than the active roller, and the active roller is mounted near the storage compartment. A conveyor belt is fitted between the active roller and the driven roller, and multiple drainage holes are evenly opened on the conveyor belt. A drive component is mounted on the mounting housing, and the drive end of the drive component is connected to the active roller.

[0009] Preferably, multiple sets of brushes are evenly arranged on the surface of the conveyor belt, and a blocking comb is installed on the inner wall of the machine casing. The blocking comb is located below the end of the conveyor belt closest to the storage bin and can contact the brushes arranged on the conveyor belt.

[0010] Preferably, the filter assembly includes brush rollers, all of which can contact the surface of the buckle plate. The brush rollers are located at the end of the conveying unit and close to the drive roller. Both ends of the brush rollers are connected to rotating rods, which are rotatably mounted on the mounting housing. One rotating rod is connected to the drive end of the drive unit with a drive structure.

[0011] Preferably, the two ends of the brush roller are bolted to two rotating rods.

[0012] Preferably, a discharge pipe is installed on the upper surface of the storage bin, the discharge pipe is connected to the inside of the storage bin, and a cover plate is provided at the upper end of the discharge pipe.

[0013] Preferably, a conveying pipe is installed on one side of the housing, the conveying pipe is connected to the water storage tank, and the conveying pipe is connected to an external water pump.

[0014] The beneficial effects of this utility model are: 1. With the connector, the buckle plate can be easily detachably connected to the L-shaped fixing plate. This modular design completely changes the overall structure of the traditional conveyor belt, so that when a buckle plate is worn or damaged, maintenance personnel can quickly disassemble the faulty buckle plate and replace it with a new plate, avoiding the need to replace the entire conveyor structure due to local problems, and greatly reducing maintenance costs and downtime.

[0015] 2. The conveyor belt can separate large particles and sewage falling at the same time through its circular rotation. The sewage will fall into the water storage tank through the filter components, while the large particulate impurities will be blocked by the filter components and enter the storage tank for centralized storage under the conveying of the filter components. This device can automatically collect sewage and large particulate impurities separately for subsequent treatment.

[0016] 3. The brush roller can repeatedly sweep away stubborn large particles of impurities adhering to the surface of the panels, preventing the adhesion of impurities to the surface of the panels. This means that the panels do not need to be cleaned manually, resulting in a clean car wash environment that meets the needs of the modern car wash industry for efficiency, intelligence, and cleanliness.

[0017] 4. By leveraging the intelligent linkage of pressure and water level sensors, resource utilization efficiency and operational stability are significantly improved. The pressure sensor accurately senses the vehicle's weight, delaying the start of drive components and water pumps to avoid ineffective operation when the vehicle first enters, effectively reducing energy consumption. After the vehicle leaves, the equipment shuts down again with a delay, ensuring that all large particles remaining on the mounting plate are transported to the storage bin, and wastewater is simultaneously pumped out cleanly, ensuring operational integrity. At the same time, the water level sensor monitors the water level in the storage bin in real time and dynamically adjusts the power of the external water pump to avoid problems such as poor discharge or incomplete discharge due to a surge in wastewater. Through this intelligent control mechanism, energy conservation and consumption reduction are achieved, while ensuring the efficient operation of large particle transport and wastewater pumping, greatly improving the practicality and reliability of the device. Attached Figure Description

[0018] Figure 1 This is a three-dimensional structural diagram of the present invention.

[0019] Figure 2 This is a schematic diagram of the internal structure of the mounting housing of this utility model.

[0020] Figure 3 This is the second schematic diagram of the internal structure of the mounting housing of this utility model.

[0021] Figure 4 This is a schematic diagram of the support structure of this utility model.

[0022] Figure 5 This is the utility model Figure 4 A magnified schematic diagram of the structure at point A in the middle.

[0023] Figure 6 This is a schematic diagram of the conveyor belt structure of this utility model. Figure 7 This is a schematic diagram of the filter assembly structure of this utility model.

[0024] Figure 8 This is the utility model Figure 7 A magnified schematic diagram of the structure at point B in the middle.

[0025] Figure label: 1. Mounting housing; 2. Conveying unit; 3. Cleaning unit; 4. Drive unit; 5. Transmission chain; 6. L-shaped fixing plate; 7. Buckle plate; 8. Positioning component; 9. Connecting component; 10. Support structure; 11. Support slide rail; 12. Support wheel; 13. Bolt structure; 14. Positioning hole one; 15. Positioning hole two; 16. Filter assembly; 17. Water storage tank; 18. Storage tank; 19. Drive roller; 20. Driven roller; 21. Conveyor belt; 22. Drainage through hole; 23. Brush roller; 24. Rotating rod; 25. Discharge pipe; 26. Cover plate; 27. Conveying pipe; 28. Drive component; 29. ​​Brush assembly; 30. Blocking comb plate. Detailed Implementation

[0026] The embodiments of this utility model are described in detail below, with examples of the embodiments shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain this utility model, and should not be construed as limiting this utility model.

[0027] like Figures 1 to 4 As shown, a novel buckle-plate type car wash conveyor belt of this utility model includes a mounting housing 1, on which a conveying unit 2 and a cleaning unit 3 are mounted, with the conveying unit 2 installed directly above the cleaning unit 3. The conveying unit 2 includes a drive unit 4, which is horizontally mounted on the mounting housing 1. The drive unit 4 is provided with two transmission chains 5. Each transmission chain 5 is evenly equipped with an L-shaped fixing plate 6. Both transmission chains 5 are provided with multiple buckles 7. At least one buckle 7 has a positioning element 8 installed on its upper surface. The positioning element 8 drives the vehicle to move with the buckle 7. Both ends of the buckle 7 are provided with connectors 9, which are used to connect the buckle 7 to the L-shaped fixing plate 6. The cleaning unit 3 is used to clean the buckles 7 and filter and collect large particulate impurities.

[0028] In practical use, this device is buried in the pre-reserved pit in the foundation, so that the upper surface of the upper buckle plate 7 in the conveying unit 2 is parallel to the ground, completing the preliminary installation work, so that this device can stably carry out vehicle operation; in the specific implementation process, the vehicle drives into this device, and under the drive of the drive unit 4, the transmission chain 5 will start to rotate synchronously, thereby driving the buckle plate 7 and the positioning part 8 to rotate in a cycle through the L-shaped fixing plate 6, so that the positioning part 8 will contact the vehicle tire, so that the vehicle can be driven forward through the positioning part 8 to carry out the automated vehicle cleaning process. During the process of the transmission chain 5 driving the buckle plate 7 to rotate in a cycle, the cleaning unit 3 can clean the surface of each buckle plate 7, removing large particles of impurities on the buckle plate 7 and preventing them from adhering to the surface of the buckle plate 7; Through the connectors 9 at both ends of the buckle plate 7, the buckle plate 7 can be easily detachably connected to the L-shaped fixing plate 6. This modular design completely changes the overall structure of the traditional conveyor belt 21, so that when a buckle plate 7 is worn or damaged, maintenance personnel can quickly disassemble the faulty buckle plate 7 and replace it with a new plate, avoiding the need to replace the entire conveyor structure due to local problems, and greatly reducing maintenance costs and downtime.

[0029] like Figure 1 , Figure 2 , Figure 4 As shown, a support structure 10 is installed on the conveying unit 2. The support structure 10 includes a support slide rail 11 and multiple sets of support wheels 12. The support slide rail 11 is installed on the inner wall of the mounting housing 1 and is located in the middle of the conveying unit 2. Each set of support wheels 12 is installed on the lower surface of the buckle plate 7. There are at least two support wheels 12 in each set. The support wheels 12 can slide and cooperate with the support slide rail 11. When the buckle plate 7 moves with the transmission chain 5, the support wheels 12 will slide smoothly along the support slide rail 11. Thus, when the vehicle moves on the buckle plate 7, the support wheels 12 and the support slide rail 11 can effectively share the weight of the buckle plate 7 and the vehicle, reduce the vertical pressure on the transmission chain 5, reduce chain wear, extend service life, and at the same time ensure that the buckle plate 7 remains stable during movement, avoiding vehicle positioning deviation due to shaking.

[0030] like Figure 4 , Figure 5 As shown, the connector 9 is a bolt structure 13. Both ends of the buckle plate 7 have positioning holes 14, and the L-shaped fixing plate 6 has positioning holes 25. The bolt structure 13 can pass through the positioning holes 14 and 25 in sequence, and then the nut is tightened to achieve a stable connection between the buckle plate 7 and the L-shaped fixing plate 6. It also has good disassembly. When the buckle plate 7 is worn or damaged, you can simply use a tool to unscrew the bolts to quickly remove the faulty buckle plate 7 from the L-shaped fixing plate 6, replace it with a new buckle plate 7, and then fix it with bolts again. This can avoid replacing the entire conveyor structure due to local problems and improve service life.

[0031] like Figure 1 , Figure 2 , Figure 4As shown, the cleaning unit 3 includes a filter assembly 16, which is located inside the mounting housing 1 and below the conveying unit 2. The internal space of the mounting housing 1 below the filter assembly 16 becomes a water storage tank 17. A storage tank 18 is provided at one end of the mounting housing 1. The storage tank 18 is connected to the internal area of ​​the mounting housing 1 above the filter assembly 16. During the process of the buckle plate 7 rotating in a cycle via the transmission chain 5, when the buckle plate 7 cycles to the lower area of ​​the transmission chain 5, large particulate impurities on the surface of the buckle plate 7 and the sewage after car washing will fall onto the filter assembly 16 by gravity, thereby separating them through the filter assembly 16. The sewage will fall into the water storage tank 17 through the filter assembly 16, while the large particulate impurities will be blocked by the filter assembly 16 and enter the storage tank 18 for centralized storage under the conveying of the filter assembly 16. Furthermore, a discharge pipe 25 is installed on the upper surface of the storage chamber 18, and a cover plate 26 is provided at the upper end of the discharge pipe 25. When it is necessary to clean the impurities collected inside the storage chamber 18, the cover plate 26 can be removed to open the opening of the discharge pipe 25, so that the staff can discharge the impurities inside the storage chamber 18 through the external discharge component.

[0032] like Figure 2 , Figure 3 , Figure 6 , Figure 7 As shown, the filter assembly 16 includes an active roller 19 and a driven roller 20. Both the active roller 19 and the driven roller 20 are rotatably mounted on the inner wall of the mounting housing 1. The driven roller 20 is mounted higher than the active roller 19, and the active roller 19 is mounted near the storage chamber 18. A conveyor belt 21 is fitted between the active roller 19 and the driven roller 20. Multiple drainage holes 22 are evenly opened on the conveyor belt 21. A drive component 28 is mounted on the mounting housing 1. The drive end of the drive component 28 is connected to the active roller 19 so that the drive component 28 can drive the active roller 19 to rotate, so that the conveyor belt 21 fitted on the active roller 19 and the driven roller 20 can rotate in a cycle, thereby moving large particle impurities falling onto the surface of the conveyor belt 21 and transporting them to the storage chamber 18 for centralized storage. The sewage falling at the same time will fall into the water storage chamber 17 through the drainage holes 22, thereby separating the sewage from the large particles for subsequent separate treatment. Multiple sets of brush groups 29 are evenly arranged on the surface of the conveyor belt 21, and a blocking comb plate 30 is installed on the inner wall of the machine casing. The blocking comb plate 30 is located below the end of the conveyor belt 21 that is close to the storage bin 18, and can contact the brush groups 29 arranged on the conveyor belt 21. This allows large particles that do not fall into the storage bin 18 correctly on the conveyor belt 21 to be scraped off by the active clamping plate during the rotation of the conveyor belt 21, thereby improving the separation of large particles.

[0033] like Figure 1 , Figure 2 , Figure 4 , Figure 7 , Figure 8 As shown, the filter assembly 16 includes brush rollers 23, each of which can contact the surface of the panel 7. The brush rollers 23 are located at the end of the conveying unit 2 and close to the drive roller 19. Both ends of the brush rollers 23 are connected to rotating rods 24, which are rotatably mounted on the mounting housing 1. One rotating rod 24 is connected to the drive end of the drive unit 4 via a drive structure, so that the drive unit 4 can drive the brush rollers 23 to rotate, thereby cleaning the stubborn large particles of impurities adhering to the surface of the panel 7 and removing them from the surface of the panel 7. The brush roller falls onto the conveyor belt 21, thereby improving its ability to remove impurities and preventing impurities from adhering to the surface of the buckle plate 7. This eliminates the need for manual cleaning of the buckle plate 7, keeping the car wash environment clean. Furthermore, the two ends of the brush roller 23 are bolted to two rotating rods 24. This allows the brush roller 23 to be removed from the rotating rods 24 by unscrewing the bolts when its cleaning ability decreases after prolonged use. A new brush roller 23 with better cleaning ability can then be replaced on the rotating rods 24 to continue the cleaning operation.

[0034] like Figure 1-3 As shown, a conveying pipe 27 is installed on one side of the housing 1. The conveying pipe 27 is connected to the water storage tank 17 and is also connected to an external water pump. After the external water pump is started, it can pump the sewage inside the water storage tank 17 to the outside. The bottom surface of the water storage tank 17 is set at a certain angle. The part of the water storage tank 17 that connects to the conveying pipe 27 is located at the lower horizontal end of the water storage tank 17, so that the sewage can be pumped by the external water pump. At the same time, the circulation of the conveyor belt 21 can also drive the sewage to flow to the lower horizontal end of the water storage tank 17, so that the sewage can easily flow into the conveying pipe 27 and be pumped through the external pipe.

[0035] like Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 7 As shown, a pressure sensor 29 is installed on the inner wall of the mounting housing 1, and a support slide rail 11 is mounted on the pressure sensor 29. A water level sensor 30 is installed inside the water storage tank 17. The water level sensor 30 is used to detect the amount of sewage inside the water storage tank 17. When the vehicle to be cleaned travels to the conveying unit 2, the pressure sensor 29 detects a pressure signal. The pressure signal provides a control signal for the start and stop of the drive component 23 and the external water pump, causing the drive component 23 and the external water pump to start and stop at a set time. Furthermore, after the pressure sensor 29 generates a pressure sensing signal, the drive component 23 and the external water pump delay... Start after a certain time; the drive unit 23 and the external water pump will start after the pressure sensed by the pressure sensor 29 disappears. Start after a certain time, and the rated power of the external water pump is [missing information]. Before the external water pump stops, the water in the storage tank 17 needs to be emptied. After the pressure sensor 29 stops sensing the pressure, the power change expression of the external water pump is: Basic formula: Where P represents the power of the drainage pump, in kilowatts (KW); k represents the efficiency coefficient of the drainage pump, which is usually between 0.6 and 0.8; This represents the density of water, taken as 1000 kg / m³. 3 ; g represents the acceleration due to gravity, with a value of 9.8 m / s². 2 ; Q represents the drainage flow rate, measured in meters (m³). 3 / s; h represents the drainage head, which is the height of the drainage pipe, in meters (m). Derivation of the formula: in, Indicates the drainage water level height. The unit is meters (m). This indicates the current detection height of the water level sensor, in meters (m). This indicates the water level at which drainage will stop, in meters (m). S represents the bottom area of ​​the drainage tank, in square meters (m²). 2 ; This indicates the drainage time, in seconds (s). Final formula: After converting the units of calculation and substituting the specific values, the formula is: When the vehicle moves on the buckle plate 7, the support wheel 12 and support rail 11 bear the weight of the vehicle, which is transmitted to the pressure sensor 29. When the pressure sensor 29 senses a change in pressure, it sends a control signal to the controller of the drive component 23 and the external water pump, causing them to start. The drive component 23 then rotates the drive roller 19, causing the conveyor belt 21 to transport large particles. The external water pump begins to extract wastewater from the water storage tank 17, thus enabling the device to efficiently start the conveyor belt 21 and the external water pump. Furthermore, since not many large particles fall onto the surface of the buckle plate 7 when the vehicle first enters, the controller will automatically activate the drive component 23 and the external water pump after the pressure sensor 29 senses the pressure and sends a control signal. The drive component 23 and the external water pump are started after a certain delay. This design can save energy consumption and will not affect the conveying of large particles of impurities. After the vehicle leaves the conveying unit 2 completely, the pressure sensor 29 detects the disappearance of pressure and sends a control signal to the controller of the drive component 23 and the external water pump. The controller will delay for a certain period of time before controlling the drive component 23 and the external water pump to shut down. After the vehicle leaves the conveying unit 2, the large particles of impurities that fall off the buckle plate 7 are not conveyed to the storage bin 18 by the conveyor belt 21. Therefore, by delaying the shutdown of the drive component 23 and the external water pump, the conveyor belt 21 will continue to rotate for a period of time after the vehicle leaves the conveying unit 2 to convey the large particles of impurities on its surface to the storage bin 18. The external water pump will simultaneously pump the sewage inside the water storage bin 17 to the outside. The water level sensor 30 monitors the water level inside the storage tank 17 in real time. Based on the water level, it sends a control signal to the controller of the external water pump. This allows the controller to adjust the power of the external water pump based on the water level detected by the water level sensor 30. If a large amount of sewage is drawn, and the external water pump continues to operate at its normal, stable power, excessive sewage will accumulate inside the storage tank 17, preventing proper discharge. The water level sensor 30 detects the amount of sewage inside the storage tank 17, allowing for reasonable control of the external water pump's power. This ensures that when the pressure sensor 29 detects the pressure loss and sends a signal to the drive unit 23 and the external water pump's controller, shutting it off, the external water pump can effectively control the sewage level inside the storage tank 17. Below the water level.

[0036] The working principle of the novel buckle plate 7 type car wash conveyor belt 21 provided by this utility model is as follows: The drive unit 4 drives the L-shaped fixed plate 6 and buckle plate 7 to rotate in a cycle via a chain, so that the vehicle moves forward with the buckle plate 7 under the fixation of the positioning part 8. The support wheel 12 and the support slide rail 11 can share the weight of the vehicle, reduce the load pressure on the transmission chain 5, and thus carry out the automated cleaning process of the vehicle. During the cyclic rotation of the buckle plate 7 through the transmission chain 5, when the buckle plate 7 circulates to the lower area of ​​the transmission chain 5, the surface of the buckle plate 7 is... Large particles and wastewater from car washes fall onto the conveyor belt 21 by gravity. The conveyor belt 21 rotates and transports the large particles into the storage bin 18 for centralized storage. The wastewater that falls along with the conveyor belt falls into the water storage bin 17 through the drain hole 22, thus separating the wastewater from the large particles for subsequent processing. Furthermore, stubborn large particles adhering to the surface of the buckle plate 7 can be swept off by the rotating brush roller 23, further improving the ability to remove impurities. This device eliminates the need for manual cleaning of the buckle plate 7, maintaining a clean car wash environment.

[0037] The bolt structure 13 can achieve a stable connection between the buckle plate 7 and the L-shaped fixing plate 6, and also has good disassembly. When the buckle plate 7 is worn or damaged, you can simply use a tool to unscrew the bolts to quickly remove the faulty buckle plate 7 from the L-shaped fixing plate 6, then replace it with a new buckle plate 7, and then fix it with bolts again. This can avoid replacing the entire conveyor structure due to local problems and improve its service life.

[0038] In the description of this utility model, it should be understood that the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc., indicating the orientation or positional relationship are based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this utility model and simplifying the description, and are not intended to indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model.

[0039] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one of that feature. In the description of this utility model, "a plurality of" means at least two, such as two, three, etc., unless otherwise explicitly specified.

[0040] Although embodiments of the present invention have been shown and described above, it is understood that the above embodiments are exemplary and should not be construed as limiting the present invention. Those skilled in the art can make changes, modifications, substitutions and variations to the above embodiments within the scope of the present invention.

Claims

1. A novel buckle-plate type car wash machine conveyor belt, comprising a mounting housing (1), characterized in that, The mounting housing (1) is equipped with a conveying unit (2) and a cleaning unit (3), with the conveying unit (2) mounted above the cleaning unit (3); The conveying unit (2) includes a drive unit (4), which is mounted on the mounting housing (1). The drive unit (4) is provided with a transmission chain (5), which has two transmission chains. Each transmission chain (5) is evenly equipped with an L-shaped fixing plate (6). Both transmission chains (5) are provided with multiple buckles (7). At least one buckle (7) has a positioning part (8) installed on its upper surface. Both ends of the buckle (7) are provided with connectors (9). The connectors (9) are used to connect the buckle (7) to the L-shaped fixing plate (6). The cleaning unit (3) is used to clean the buckle (7) and filter and collect large particle impurities.

2. The novel buckle-plate type car wash machine conveyor belt according to claim 1, characterized in that, The conveying unit (2) is equipped with a support structure (10), which includes a support slide rail (11) and multiple sets of support wheels (12). The support slide rail (11) is installed on the inner wall of the mounting housing (1) and is located in the middle of the conveying unit (2). Each set of support wheels (12) is installed on the lower surface of the buckle plate (7). Each set of support wheels (12) has at least two wheels. Each support wheel (12) can slide and cooperate with the support slide rail (11).

3. The novel buckle-plate type car wash machine conveyor belt according to claim 2, characterized in that, The connector (9) is a bolt structure (13), and both ends of the buckle plate (7) have a positioning hole (14), and the L-shaped fixing plate (6) has a positioning hole (15).

4. The novel buckle-plate type car wash machine conveyor belt according to claim 1, characterized in that, The cleaning unit (3) includes a filter assembly (16), which is located inside the mounting housing (1) and below the conveying unit (2). The internal space of the mounting housing (1) below the filter assembly (16) becomes a water storage tank (17). A storage tank (18) is provided at one end of the mounting housing (1), and the storage tank (18) is connected to the internal area of ​​the mounting housing (1) above the filter assembly (16).

5. The novel snap-on car wash machine conveyor belt according to claim 4, characterized in that, The filter assembly (16) includes an active roller (19) and a driven roller (20). Both the active roller (19) and the driven roller (20) are rotatably mounted on the inner wall of the mounting housing (1). The driven roller (20) is mounted higher than the active roller (19), and the active roller (19) is mounted at one end near the storage compartment (18). A conveyor belt (21) is fitted between the active roller (19) and the driven roller (20). The conveyor belt (21) has a plurality of drainage holes (22) evenly distributed on it. A drive component (28) is mounted on the mounting housing (1). The drive end of the drive component (28) is connected to the active roller (19).

6. The novel snap-on car wash machine conveyor belt according to claim 5, characterized in that, Multiple sets of brushes (29) are evenly arranged on the surface of the conveyor belt (21). A blocking comb (30) is installed on the inner wall of the housing. The blocking comb (30) is located below the end of the conveyor belt (21) that is close to the storage bin (18) and can contact the brushes (29) arranged on the conveyor belt (21).

7. A novel snap-on car wash machine conveyor belt according to claim 6, characterized in that, The filter assembly (16) includes a brush roller (23), which can contact the surface of the buckle plate (7). The brush roller (23) is located at the end of the conveying unit (2) and close to the drive roller (19). Both ends of the brush roller (23) are connected to the rotating rod (24). The rotating rod (24) is rotatably mounted on the mounting housing (1). One rotating rod (24) is connected to the drive end of the drive unit (4) with a drive structure.

8. A novel snap-on car wash machine conveyor belt according to claim 7, characterized in that, The brush roller (23) is bolted at both ends to two rotating rods (24).

9. A novel snap-on type car wash machine conveyor belt according to claim 4, characterized in that, The upper surface of the storage chamber (18) is equipped with a discharge pipe (25), which is connected to the interior of the storage chamber (18). The upper end of the discharge pipe (25) is provided with a cover plate (26).

10. A novel snap-on type car wash machine conveyor belt according to claim 4, characterized in that, A conveying pipe (27) is installed on one side of the mounting housing (1). The conveying pipe (27) is connected to the water storage tank (17) and is also connected to an external water pump.