Vehicle mud washing apparatus
The automated tire cleaning equipment driven by tire gravity solves the problem of low cleaning efficiency caused by manual operation, realizes automated cleaning and water resource recycling, and improves the efficiency and convenience of tire cleaning.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-02-08
- Publication Date
- 2026-03-20
AI Technical Summary
Existing tire cleaning equipment requires manual operation of the water tank for cleaning, resulting in low cleaning efficiency and inability to clean in a timely manner, with cleaning time affected by human factors.
Design a vehicle mud washing device that uses the vehicle tire's own weight to drive the washing components to move vertically, and combines a transmission component and a water supply component to achieve automated washing. The collection trough is used to collect the mud-water mixture and realize the reuse of water resources.
It improves the automation and efficiency of tire cleaning, reduces manual intervention, and the design of the collection trough reduces subsequent cleaning work, thus realizing the recycling of water resources.
Smart Images

Figure CN115946653B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of tire cleaning, in particular to a vehicle soil flushing device. BACKGROUND
[0002] The car driven out of the construction site needs to clean the mud on the tire to keep the road clean. When cleaning the tire, first excavate an installation groove on the ground for placing the flushing device, then wrap a layer of concrete on the inner wall of the installation groove, then install the flushing device, which includes a bearing plate fixedly provided at the opening of the installation groove, a spray head provided on the bearing plate, a water tank located on one side of the bearing plate, and a water pipe in communication with the water tank and the spray head. The water tank is used to supply water to the water pipe, and the installation groove is in communication with the outside world. When cleaning the tire, the construction worker starts the water tank, the water tank supplies water to the spray head through the water pipe, so that the spray head sprays water to clean the tire, and the muddy water on the cover plate flows into the installation groove.
[0003] In the above-mentioned tire cleaning process, the water tank needs to be started manually to clean the tire, so that after the tire is moved to the bearing plate, the cleaning time of the tire needs to be determined according to human factors, which leads to that the tire cannot be cleaned in time after being positioned, and thus the cleaning efficiency of the tire is low. SUMMARY
[0004] In order to improve the cleaning efficiency of the tire, the present application provides a vehicle soil flushing device.
[0005] The vehicle soil flushing device provided by the present application adopts the following technical scheme:
[0006] A vehicle soil flushing device is placed in a placement groove provided on the ground, which includes an installation body, a cleaning assembly for cleaning the tire, and a driving assembly for driving the cleaning assembly to move in the vertical direction under the extrusion of the tire. When the cleaning assembly is located in the installation body, the cleaning assembly is in a closed state, and when the cleaning assembly is located above the installation body, the cleaning assembly is in an activated state.
[0007] By adopting the above technical scheme, when cleaning the tire, the construction worker moves the tire to the driving assembly, at this time the tire relies on its own gravity to produce an extrusion on the driving assembly, the driving assembly subjected to the extrusion drives the cleaning assembly to move upward, when the cleaning assembly moves above the installation body, the cleaning assembly is in an activated state, at this time the cleaning assembly in the activated state cleans the tire, avoiding the interference of human factors on the cleaning time of the tire, thereby improving the flushing efficiency of the tire.
[0008] Optionally, the top surface of the mounting body is provided with a mounting groove, and the cleaning assembly is located in the mounting groove; the transmission assembly comprises a transmission telescopic rod and a flow guide pipe, the transmission telescopic rod is vertically arranged in the mounting groove and located below the cleaning assembly, the movable end of the transmission telescopic rod is connected with the cleaning assembly, and the fixed end of the transmission telescopic rod is fixedly connected with the mounting body; and the flow guide pipe is in communication with the fixed end of the transmission telescopic rod and the mounting groove.
[0009] By adopting the above technical scheme, when the tire moves to the sliding block, the tire extrudes the sliding block, the extruded sliding block moves downward, the sliding block extrudes the water in the mounting groove into the transmission assembly when the sliding block moves downward, and the transmission assembly drives the cleaning assembly to move vertically upward under the driving of the water flow, so that the cleaning assembly can clean the tire.
[0010] Optionally, the top surface of the mounting body is provided with a sliding groove, and the cleaning assembly is located in the sliding groove; the transmission assembly comprises a transmission telescopic rod and a flow guide pipe, the transmission telescopic rod is vertically arranged in the mounting groove and located below the cleaning assembly, the movable end of the transmission telescopic rod is connected with the cleaning assembly, and the fixed end of the transmission telescopic rod is fixedly connected with the mounting body; and the flow guide pipe is in communication with the fixed end of the transmission telescopic rod and the mounting groove.
[0011] By adopting the above technical scheme, when the tire moves to the sliding block, the tire extrudes the sliding block, the extruded sliding block moves downward, the sliding block extrudes the water in the mounting groove into the transmission assembly when the sliding block moves downward, and the transmission assembly drives the cleaning assembly to move vertically upward under the driving of the water flow, so that the cleaning assembly can clean the tire.
[0012] Optionally, the cleaning assembly comprises a cleaning box and a water outlet pipe communicated with the cleaning box; and the mounting body is provided with a water supply assembly, and the water supply assembly is used for supplying water into the cleaning box.
[0013] By adopting the above technical scheme, the water supply assembly supplies water into the cleaning box, so that the water in the cleaning box is sprayed on the tire through the water outlet pipe, and the cleaning assembly can flush the tire.
[0014] Optionally, the water supply assembly comprises a water tank arranged in the mounting body, a water supply pipe, a baffle slidably inserted into the water supply pipe in the vertical direction, and a connecting rod, the water supply pipe is in communication with the water tank and the cleaning box; the connecting rod is fixedly connected with the baffle and the movable end of the transmission telescopic rod at two ends; and the water tank is used for supplying water to the water supply pipe.
[0015] By adopting the technical scheme, the water tank continuously supplies water to the cleaning box through the water supply pipe, when the cleaning assembly is located in the sliding groove, the baffle isolates both ends of the water supply pipe, so that the water in the water supply pipe cannot enter the cleaning box; when the cleaning box moves upward, the baffle moves upward under the driving of the transmission assembly, so that both ends of the water supply pipe are communicated, and then the water in the water supply pipe can enter the cleaning box, thereby facilitating the cleaning assembly to clean the tire.
[0016] Optionally, a material collecting groove is arranged on the top surface of the mounting body and located between the sliding groove and the mounting groove.
[0017] By adopting the technical scheme, when the cleaning assembly flushes the surface of the tire, the downward flowing mud water can flow into the material collecting groove, the mud water mixture is collected through the material collecting groove, the subsequent manual cleaning operation is reduced, and the convenience of the flushing equipment is improved.
[0018] Optionally, an overflow pipe is arranged in communication between the material collecting groove and the water tank, and the communication part of the overflow pipe with the material collecting groove is located at the top of the material collecting groove.
[0019] By adopting the technical scheme, after the mud water mixture enters the material collecting groove, the mud water is stratified, at this time, the clean water in the material collecting groove floats above the soil, and as the mixture in the material collecting groove gradually increases, the stratified upper clean water is returned to the water tank through the overflow pipe, so that the water resource is reused.
[0020] Optionally, a filter screen is fixedly arranged at the communication part of the overflow pipe with the material collecting groove.
[0021] By adopting the technical scheme, the arrangement of the filter screen can prevent the soil from entering the overflow pipe and reduce the possibility of blockage of the overflow pipe.
[0022] Optionally, a material discharging assembly is arranged on the mounting body, the material discharging assembly comprises a push plate slidingly arranged in the material collecting groove in the vertical direction, a material discharging pipe, and an overflow valve mounted on the material discharging pipe, both ends of the material discharging pipe are in communication with the water supply pipe and the material collecting groove respectively, and the communication part of the material discharging pipe with the material collecting groove is located below the push plate.
[0023] By adopting the technical scheme, when the soil in the material collecting groove is removed, the operator can drive a plurality of sliding blocks to move downward, so that the moving amount of the plurality of sliding blocks is greater than the moving amount of the sliding block when the tire is located above the sliding block, at this time, the water pressure in the mounting groove and the water supply pipe is further increased, and when the water pressure in the water supply pipe increases to the starting pressure of the overflow valve, the water in the mounting groove can enter the material collecting groove through the material discharging pipe and the material collecting groove in sequence, so that the push plate moves upward under the support of the water, and the soil above the push plate is pushed out of the material collecting groove, thereby facilitating the operator to remove the soil.
[0024] To sum up, the present application includes at least one of the following beneficial technical effects:
[0025] 1. By setting the drive assembly and cleaning assembly, when cleaning the tire, the operator moves the tire to the drive assembly, at this time the tire relies on its own gravity to produce extrusion on the drive assembly, the drive assembly subjected to extrusion drives the cleaning assembly to move upward, when the cleaning assembly moves above the mounting body, the cleaning assembly is in the starting state, at this time the cleaning assembly in the starting state cleans the tire, avoids human factors interfering with the cleaning time of the tire, thereby improving the washing efficiency of the tire;
[0026] 2. By setting the collection tank, the collection tank is arranged between the chute and the mounting groove, when the cleaning assembly washes the surface of the tire, the downward flowing mud water can flow into the collection tank, the mud water mixture is collected through the collection tank, reducing the subsequent manual cleaning work, thereby improving the convenience of the washing equipment. BRIEF DESCRIPTION OF DRAWINGS
[0027] Figure 1 is a structural schematic diagram of an embodiment of the present application;
[0028] Figure 2 is a cross-sectional view of the cleaning assembly in the starting state of an embodiment of the present application;
[0029] Figure 3 is a cross-sectional view of the present application for displaying the baffle.
[0030] BRIEF DESCRIPTION OF DRAWINGS
[0031] 1, ground; 11, placing groove;
[0032] 2, mounting body; 21, mounting groove; 22, collection tank; 23, chute; 24, overflow pipe; 25, filter screen;
[0033] 3, cleaning assembly; 31, cleaning box; 32, water outlet pipe;
[0034] 4, water supply assembly; 41, water tank; 42, water supply pipe; 43, connecting rod; 44, baffle;
[0035] 5, transmission assembly; 51, transmission telescopic rod; 52, flow guide pipe;
[0036] 6, drive assembly; 61, sliding block; 62, spring;
[0037] 7, recycling assembly; 71, electric telescopic rod; 72, universal wheel;
[0038] 8, material discharging assembly; 81, push plate; 82, material discharging pipe; 83, overflow valve. DETAILED DESCRIPTION
[0039] The application will be further described below in conjunction with the accompanying drawings. Figures 1-3 The application will be further described below in conjunction with the accompanying drawings.
[0040] The application discloses a vehicle soil washing device, which is placed in a placement groove 11 opened on the ground 1. Referring to Figure 1 and Figure 2 , the vehicle soil washing device comprises a horizontally arranged mounting body 2, a washing assembly 3 arranged on the mounting body 2 and used for washing a tire, a driving assembly 6 arranged on the mounting body 2 and used for driving the washing assembly 3 to move in a vertical direction under the extrusion of the tire, the washing assembly 3 is in a closed state when the washing assembly 3 is located in the mounting body 2, and the washing assembly 3 is in a started state when the washing assembly 3 is located above the mounting body 2.
[0041] When the tire is washed, a construction worker drives the tire to the driving assembly 6, so that the tire extrudes the driving assembly 6 by relying on its own gravity and the gravity of the vehicle, the extruded driving assembly 6 drives the washing assembly 3 to move upwards, and the washing assembly 3 is in the started state when the washing assembly 3 is located above the mounting body 2, at which time the washing assembly 3 in the started state washes the tire.
[0042] Referring to Figure 1 and Figure 2 , the side surface of the mounting body 2 abuts against the inner wall of the placement groove 11, and the length direction and the width direction of the mounting body 2 are both parallel to the ground 1, and the top surface of the mounting body 2 is flush with the ground 1; the bottom surface of the mounting body 2 is provided with a recovery assembly 7 at each top corner, the recovery assembly 7 comprises an electric telescopic rod 71 and a universal wheel 72, the electric telescopic rod 71 is vertically arranged, and the fixed end of the electric telescopic rod 71 is fixedly connected with the mounting body 2; the universal wheel 72 is installed at the bottom of the movable end of the electric telescopic rod 71.
[0043] When the placement groove 11 of the ground 1 is excavated, the construction worker can push the mounting body 2 into the placement groove 11 through the universal wheel 72, and then control the length of the electric telescopic rod 71 through the controller, so that the top surface of the mounting body 2 is flush with the ground 1; when the mounting body 2 needs to be taken out from the placement groove 11, the construction worker can control the length of the electric telescopic rod 71 through the controller, so that the top surface of the mounting body 2 is located above the ground 1, thereby facilitating the construction worker to take the mounting body 2 out of the placement groove 11.
[0044] Referring to Figure 1 and Figure 2, the top surface of the mounting body 2 is sequentially provided with a mounting groove 21, a material collecting groove 22 and a sliding groove 23 for placing the cleaning assembly 3 along the width direction of the mounting body 2; the driving assembly 6 comprises a plurality of sliding blocks 61 arranged along the width direction of the mounting body 2, the sliding blocks 61 are vertically arranged in the mounting groove 21, and the sliding blocks 61 are always located in the mounting groove 21; water is pre-set between the sliding blocks 61 and the bottom surface of the mounting groove 21, and the top surface of the sliding blocks 61 is flush with the top surface of the mounting body 2 under the support of the water.
[0045] With reference to Figure 1 and Figure 2 , the mounting body 2 is provided with a transmission assembly 5, the transmission assembly 5 comprises a transmission telescopic rod 51 and a flow guide pipe 52, wherein the transmission telescopic rod 51 is vertically arranged in the sliding groove 23 and located below the cleaning assembly 3, the movable end of the transmission telescopic rod 51 is connected with the cleaning assembly 3, and the fixed end of the transmission telescopic rod 51 is fixedly connected with the bottom surface of the sliding groove 23; the flow guide pipe 52 is fixedly arranged in the mounting body 2, the two ends of the flow guide pipe 52 are respectively communicated with the inside of the mounting groove 21 and the fixed end of the transmission telescopic rod 51, the communication part of the flow guide pipe 52 with the mounting groove 21 is located on the bottom surface of the mounting groove 21, and the communication part of the flow guide pipe 52 with the fixed end of the transmission telescopic rod 51 is located on the bottom surface of the fixed end of the transmission telescopic rod 51; the driving assembly 6 further comprises a spring 62, and the spring 62 is fixedly arranged in the fixed end of the transmission telescopic rod 51 and vertically arranged.
[0046] When the tire moves above the sliding block 61 and extrudes the sliding block 61, the sliding block 61 moves downward under the drive of the tire, so that the water in the mounting groove 21 enters into the fixed end of the transmission telescopic rod 51 through the flow guide pipe 52 under the extrusion of the sliding block 61; at this time, the water in the fixed end of the transmission telescopic rod 51 supports the movable end of the transmission telescopic rod 51 upward, so that the movable end of the transmission telescopic rod 51 moves upward, and the cleaning assembly 3 moves upward under the drive of the movable end of the transmission telescopic rod 51, and the spring 62 is stretched and in the stretched state during the upward movement of the movable end of the transmission telescopic rod 51; after the tire is cleaned, the operator can control the tire to separate from the sliding block 61, when the tire separates from the sliding block 61, the movable end of the transmission telescopic rod 51 moves downward under the extrusion of the gravity of the cleaning assembly 3 and the gravity of the transmission telescopic rod 51 and the action of the stretched spring 62; the movable end of the transmission telescopic rod 51 extrudes the water in the fixed end of the transmission telescopic rod 51 during the downward movement, so that the water in the fixed end of the transmission telescopic rod 51 flows back to the mounting groove 21 through the flow guide pipe 52, and the water in the mounting groove 21 supports the sliding block 61 upward, so that the top surface of the sliding block 61 is flush with the ground 1 again.
[0047] With reference to Figure 2 and Figure 3The cleaning assembly 3 comprises a cleaning box 31 and a water outlet pipe 32, wherein the cleaning box 31 is horizontally arranged in the chute 23, the length direction of the cleaning box 31 is the same as the length direction of the mounting body 2, the side surface of the cleaning box 31 is fully abutted with the inner side wall of the chute 23 when the cleaning box 31 is located in the chute 23, and the bottom surface of the cleaning box 31 is fixedly connected with the movable end of the transmission telescopic rod 51; the water outlet pipe 32 is communicatively arranged on the cleaning box 31 and located in the cleaning box 31, and a plurality of water outlet pipes 32 are arranged along the length direction of the cleaning box 31.
[0048] With reference to Figure 2 and Figure 3 The mounting body 2 is provided with a water supply assembly 4, which comprises a water tank 41, a water supply pipe 42, a connecting rod 43 and a baffle 44, wherein the water tank 41 is fixedly arranged in the mounting body 2 and used for supplying water to the water supply pipe 42; the water supply pipe 42 is made of hose material, one end of the water supply pipe 42 is located in the chute 23 and communicates with the cleaning box 31, the other end of the water supply pipe 42 is fixedly connected with the mounting body 2 and communicates with the water tank 41; the baffle 44 is vertically inserted on the water supply pipe 42 and slidably connected with the water supply pipe 42 in the vertical direction; the two ends of the connecting rod 43 are respectively fixedly connected with the baffle 44 and the movable end of the transmission telescopic rod 51, the connecting rod 43 is slidably connected with the mounting body 2 in the vertical direction, and the mounting body 2 is internally provided with a sliding groove for the sliding of the connecting rod 43 and the baffle 44; when the top surface of the cleaning box 31 is flush with the top surface of the mounting body 2, the baffle 44 isolates the two ends of the water supply pipe 42, and when the cleaning box 31 is located above the mounting body 2, the two ends of the water supply pipe 42 are communicated.
[0049] During the upward movement of the cleaning assembly 3 driven by the movable end of the transmission telescopic rod 51, the movable end of the transmission telescopic rod 51 synchronously drives the upward movement of the connecting rod 43 and the baffle 44, when the cleaning box 31 moves upward to the preset position, the two ends of the water supply pipe 42 are communicated with each other, at this time, the water in the water tank 41 can be transported into the cleaning box 31 through the water supply pipe 42, so that the water in the cleaning box 31 can be sprayed to the surface of the tire through the water outlet pipe 32, thereby enabling the cleaning assembly 3 to clean the surface of the tire; after the tire is cleaned, the movable end of the transmission telescopic rod 51 moves downward, at this time, the movable end of the transmission telescopic rod 51 drives the baffle 44 to move downward through the connecting rod 43, when the baffle 44 moves downward to the preset position, the two ends of the water supply pipe 42 are isolated from each other, at this time, the water in the water tank 41 cannot enter the cleaning box 31 through the water supply pipe 42, thereby enabling the flushing device to automatically clean the tire.
[0050] With reference to Figure 2 and Figure 3The overflow pipe 24 is in communication with the collecting tank 22 at the top of the collecting tank 22 and in communication with the water tank 41 at the top of the water tank 41, and is fixedly connected with the mounting body 2. The mounting body 2 is provided with a discharging assembly 8, which comprises a push plate 81, a discharging pipe 82 and an overflow valve 83. The push plate 81 is horizontally arranged in the collecting tank 22 and abuts against the inner wall of the collecting tank 22, and is vertically slidably arranged in the collecting tank 22. The discharging pipe 82 is vertically arranged between the collecting tank 22 and the flow guide pipe 52 and is fixedly connected with the mounting body 2. The top end of the discharging pipe 82 is inserted into the bottom surface of the collecting tank 22 and is in communication with the inside of the collecting tank 22, and the bottom end of the discharging pipe 82 is in communication with the flow guide pipe 52. The overflow valve 83 is arranged in the discharging pipe 82.
[0051] When the water in the cleaning box 31 is sprayed on the tire through the water outlet pipe 32, the water flow washes the soil on the tire to form a mud-water mixture, and then the mud-water mixture flows downward into the collecting tank 22. As the tire cleaning process proceeds, the mud-water mixture in the collecting tank 22 gradually increases, and the time for the mud-water mixture to stay in the collecting tank 22 gradually increases, so that the mud-water mixture in the collecting tank 22 is stratified by sedimentation. The clean water at the top of the collecting tank 22 is filtered through the filter screen 25 and then enters the overflow pipe 24, and then flows back to the water tank 41 through the overflow pipe 24, thereby realizing the reuse of water resources. The setting of the filter screen 25 can prevent soil from entering the overflow pipe 24 and reduce the possibility of clogging of the overflow pipe 24.
[0052] When the soil in the collecting tank 22 needs to be removed, the operator can extrude the sliding blocks 61 downward by using an external device, so that the sliding blocks 61 move downward, and the moving amount of the plurality of sliding blocks 61 is greater than the moving amount generated when the tire extrudes the plurality of sliding blocks 61 downward, thereby increasing the water pressure in the mounting groove 21 and the flow guide pipe 52, and the water pressure in the flow guide pipe 52 can reach the starting pressure of the overflow valve 83, so that the water in the flow guide pipe 52 can enter the collecting tank 22 through the discharging pipe 82. At this time, the water entering the collecting tank 22 supports the push plate 81 upward, and the push plate 81 pushes the soil in the collecting tank 22 upward under the support of the water, so that the soil in the collecting tank 22 moves to the outside of the mounting body 2, thereby facilitating the operator to remove the soil.
[0053] It should be noted that in the present application, only one set of cleaning assembly 3 is provided. In order to increase the cleaning area and cleaning effect of the tire, a plurality of cleaning assemblies 3 can be additionally provided circumferentially around the mounting groove 21.
[0054] The implementation principle of the vehicle mud flushing device is as follows: when the tire is cleaned, the construction personnel drives the tire above the sliding block 61, so that the tire extrudes the sliding block 61, the sliding block 61 moves downward under the extrusion of the tire, so that the water in the installation groove 21 enters the fixed end of the transmission telescopic rod 51 under the extrusion of the sliding block 61 through the flow guide pipe 52; at this time, the water in the fixed end of the transmission telescopic rod 51 supports the movable end of the transmission telescopic rod 51 upward, so that the movable end of the transmission telescopic rod 51 moves upward, and the cleaning assembly 3 moves upward under the drive of the movable end of the transmission telescopic rod 51, and the movable end of the transmission telescopic rod 51 moves upward; in the process that the movable end of the transmission telescopic rod 51 drives the cleaning assembly 3 to move upward, the movable end of the transmission telescopic rod 51 synchronously drives the connecting rod 43 and the baffle 44 to move upward, when the cleaning box 31 moves upward to the preset position, the two ends of the water supply pipe 42 are communicated with each other, at this time, the water in the water tank 41 can be transported to the cleaning box 31 through the water supply pipe 42, so that the water in the cleaning box 31 can be sprayed to the surface of the tire through the water outlet pipe 32, so that the cleaning assembly 3 can clean the surface of the tire; when the tire cleaning is completed, the movable end of the transmission telescopic rod 51 moves downward, at this time, the movable end of the transmission telescopic rod 51 drives the baffle 44 to move downward through the connecting rod 43, when the baffle 44 moves downward to the preset position, the two ends of the water supply pipe 42 are isolated from each other, at this time, the water in the water tank 41 cannot enter the cleaning box 31 through the water supply pipe 42, so that the flushing device can automatically clean the tire.
[0055] The above are preferred embodiments of the present application, and do not limit the protection scope of the present application, therefore: any equivalent changes made on the structure, shape, principle of the present application should be covered within the protection scope of the present application.
Claims
1. A vehicle mud washing device, placed in a placement trough (11) opened on the ground (1), characterized in that: The system includes a mounting body (2), a cleaning assembly (3) for cleaning tires, and a drive assembly (6) for driving the cleaning assembly (3) to move vertically under the squeezing action of the tires. When the cleaning assembly (3) is inside the mounting body (2), it is in a closed state. When the cleaning assembly (3) is above the mounting body (2), it is in an activated state. A transmission assembly (5) is used to drive the cleaning assembly (3) to move vertically under the action of water flow. The transmission assembly (5) includes a transmission telescopic rod (51) vertically arranged in the slide groove (23) and located below the cleaning assembly (3), and a guide pipe (52). The cleaning assembly (3) includes a cleaning box (31) and a water outlet pipe (32) connected to the cleaning box (31). A water supply assembly (4) is provided on the mounting body (2). The water supply assembly (4) is used to supply water to the cleaning box (31). The water supply assembly (6) includes a water outlet pipe (6) for supplying water to the mounting body (2). The water tank (41), water supply pipe (42), baffle (44) slidably inserted into the water supply pipe (42) in the vertical direction, and connecting rod (43) are all connected to the water tank (41) and the cleaning box (31); the two ends of the connecting rod (43) are fixedly connected to the baffle (44) and the movable end of the transmission telescopic rod (51) respectively; the water tank (41) is used to supply water to the water supply pipe (42), and the top surface of the mounting body (2) is provided with a material collection trough (22), which is located at... Between the slide groove (23) and the mounting groove (21), the mounting body (2) is provided with a discharge assembly (8). The discharge assembly (8) includes a push plate (81) that is slidably disposed in the collection trough (22) in the vertical direction, a discharge pipe (82), and an overflow valve (83) installed on the discharge pipe (82). The two ends of the discharge pipe (82) are respectively connected to the water supply pipe (42) and the collection trough (22). The connection between the discharge pipe (82) and the collection trough (22) is located below the push plate (81).
2. The vehicle mud washing equipment according to claim 1, characterized in that: The mounting body (2) has a mounting groove (21) on its top surface. The drive assembly (6) includes a slider (61) that is slidably disposed in the mounting groove (21) in the vertical direction. Several sliders (61) are disposed along the width direction of the placement groove (11), and the top surfaces of several sliders (61) are flush with the top surface of the mounting body (2) and the ground (1). Water is pre-placed between the slider (61) and the bottom surface of the mounting groove (21). A transmission assembly (5) is provided on the mounting body (2). When the tire squeezes the slider (61), the water between the slider (61) and the bottom surface of the mounting groove (21) can enter the transmission assembly (5).
3. The vehicle mud washing equipment according to claim 2, characterized in that: The top surface of the mounting body (2) is provided with a sliding groove (23), and the cleaning component (3) is located in the sliding groove (23); the movable end of the transmission telescopic rod (51) is connected to the cleaning component (3), and the fixed end of the transmission telescopic rod (51) is fixedly connected to the mounting body (2); the guide pipe (52) is connected to the inside of the fixed end of the transmission telescopic rod (51) and the mounting groove (21).
4. The vehicle mud washing equipment according to claim 3, characterized in that: An overflow pipe (24) is provided between the material collection trough (22) and the water tank (41), and the connection between the overflow pipe (24) and the material collection trough (22) is located at the top of the material collection trough (22).
5. The vehicle mud washing equipment according to claim 4, characterized in that: A filter screen (25) is fixedly installed at the connection between the overflow pipe (24) and the collection tank (22).
Citation Information
Patent Citations
Tire detection device for automobile engineering
CN216770925U
Vehicle-washing machine
CN2347834Y