Tire cleaning device and vehicle departure control system thereof

By designing a guiding mechanism, a spraying and brushing mechanism, and a drying mechanism for the tire cleaning device, the problem of difficult-to-clean areas of tires was solved, achieving all-round cleaning and drying of tires and improving cleaning efficiency.

CN223686527UActive Publication Date: 2025-12-19GAC HONDA AUTOMOBILE CO LTD
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Patent Information

Application Number
CN202520303991.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-24
Publication Date
2025-12-19
Estimated Expiration
2035-02-24

AI Technical Summary

Technical Problem

In existing technologies, it is difficult to effectively clean the blind spots in tires, which makes it difficult to improve cleaning efficiency.

Method used

Design a tire cleaning device, including a guiding mechanism, a spraying and brushing mechanism, and a drying mechanism. The device uses telescopic and rotating components to drive the brushing component to reach into the local dead corners of the tire for brushing, and achieves all-round cleaning and drying through the spraying assembly and the drying mechanism.

Benefits of technology

It improves the cleaning effect and efficiency of tire blind spots, achieving efficient cleaning of specific tire areas and ensuring thorough tire cleaning.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model relates to the technical field of vehicle cleaning, in particular to a tire cleaning device and a vehicle departure control system thereof, the tire cleaning device comprises a guide mechanism, a spraying and scrubbing mechanism and a drying mechanism, the spraying and scrubbing mechanism is arranged along the guide direction of the guide mechanism, and the spraying and scrubbing mechanism comprises a spraying assembly and a scrubbing assembly, the brushing assembly comprises a telescopic part, a rotating part and a brushing part, the telescopic part is connected with the brushing part through the rotating part, and the telescopic direction of the telescopic part is not parallel to the guiding direction of the guiding mechanism; the system comprises a cleaning area, a detection area and a barrier gate, wherein the cleaning area and the barrier gate are respectively arranged at two ends of the detection area; a plurality of shooting pieces and a plurality of detection sensing pieces are arranged in the detection area; the barrier gate, the shooting piece and the detection sensing piece are all in communication connection with the processing control mechanism; the device further comprises a tire cleaning device. The tire cleaning device can be used for effectively cleaning tires, and the cleaning effect and the cleaning efficiency are improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of vehicle cleaning, more particularly to a tire cleaning device and vehicle off-site control system thereof. BACKGROUND

[0002] In the construction site, there are many operation vehicles, due to the existence of a large amount of dust or soil in the construction site, the outer surface of the operation vehicle, such as the vehicle tire, will adhere to a large amount of dust and soil. In order to avoid the non-work area, such as the city road, being contaminated, and to avoid affecting the appearance of the vehicle, the operation vehicle needs to be cleaned before leaving the construction site. At present, the cleaning of the tire of the off-site vehicle is often carried out by using a car washing platform, but the local dead angle part of the tire is difficult to be effectively cleaned, resulting in the need to return to the car washing platform for cleaning again, and the cleaning efficiency is difficult to be effectively improved. SUMMARY

[0003] The utility model aims at overcoming the deficiency that the local dead angle part of the tire is difficult to be effectively cleaned in the prior art, and provides a tire cleaning device and vehicle off-site control system, which can be used for effectively cleaning the tire and improving the cleaning effect and cleaning efficiency.

[0004] To solve the above technical problems, the utility model adopts the technical scheme of:

[0005] A tire cleaning device is provided, which comprises a guide mechanism, a spray brushing mechanism arranged along the guide direction of the guide mechanism, and a drying mechanism. The spray brushing mechanism comprises a spray assembly and a brushing assembly. The brushing assembly comprises an extension piece, a rotating piece, and a brushing piece. The extension piece is connected to the brushing piece through the rotating piece. The extension direction of the extension piece is arranged to be perpendicular to the guide direction of the guide mechanism.

[0006] The utility model comprises a tire cleaning device. The guide mechanism is arranged to guide the vehicle to be cleaned to perform spray brushing at the spray brushing mechanism and drying at the drying mechanism. The rotating piece drives the brushing piece to rotate for brushing. The extension piece is arranged to drive the brushing piece to extend into the local dead angle part of the tire for brushing, thereby improving the brushing effect and cleaning efficiency.

[0007] Preferably, the extension piece comprises a first cylinder and a second cylinder arranged opposite to each other. The brushing part comprises a first brush and a second brush. The movable end of the first cylinder is connected to the first brush through the rotating piece. The movable end of the second cylinder is connected to the second brush through the rotating piece. The extension directions of the first cylinder and the second cylinder are arranged to be perpendicular to the guide direction of the guide mechanism.

[0008] Preferably, the cross-sectional area of the brush head of the first brush gradually increases from the end far away from the first air cylinder to the end close to the first air cylinder, and the cross-sectional area of the brush head of the second brush gradually increases from the end far away from the second air cylinder to the end close to the second air cylinder.

[0009] Preferably, the spraying assembly comprises a spraying side frame and a spraying bottom frame in communication with the spraying side frame, a plurality of first spray heads are connected to and in communication with the spraying side frame, and a plurality of second spray heads are connected to and in communication with the spraying bottom frame, and the spraying directions of the second spray heads and the first spray heads are not parallel to each other.

[0010] Preferably, the guiding mechanism comprises first and second guide rails arranged in parallel, the brushing assembly comprises a left brushing assembly corresponding to the first guide rail and a right brushing assembly corresponding to the second guide rail, the spraying bottom frame is provided with at least two second spray heads, the second spray heads are located below the guide surfaces of the first and second guide rails, and the guide surfaces of the first and second guide rails are provided with a plurality of through holes facilitating spraying.

[0011] Preferably, the drying mechanism comprises a drying frame, a plurality of air nozzles connected to and in communication with the drying frame, a heater, and a first air pipe, and the heater is connected to the drying frame in communication through the first air pipe.

[0012] Preferably, the tire cleaning device further comprises a control mechanism, and the telescopic member and the rotating member are electrically connected to the control mechanism; the spraying assembly comprises a water pump electrically connected to the control mechanism, and the drying mechanism comprises an air pump electrically connected to the control mechanism.

[0013] The utility model also provides a kind of vehicle off-site control system, including washing area, detection area, barrier, and the washing area, barrier are respectively located at the two ends of the detection area;Several photographing members are equipped in the detection area, and a plurality of detection sensing members are arranged in the direction from one end to the other end in the detection area;Further include processing control mechanism, and the barrier, photographing member, detection sensing member are connected with the processing control mechanism communication;Further include above-mentioned tire cleaning device, the guiding mechanism extends from the washing area to the detection area, and the spraying brushing mechanism and drying mechanism are located in the washing area.

[0014] The utility model discloses a kind of vehicle off-site control systems, the tire of vehicle to be washed can be washed in cleaning area by spray scrubbing mechanism, then vehicle is guided to dry mechanism place by guiding mechanism and dries, then vehicle tire is detected by detection sensing piece, while, tire can also be photographed by photographing member, then, detection signal and photographing image can be transmitted to processing control mechanism and are handled, and according to processing result, barrier gate is opened or kept closed, avoid the vehicle that has not been completely washed off-site.

[0015] Preferably, the vehicle off-site control system further comprises a support frame, the photographing member is connected to the support frame, and a fill light is further connected to the support frame.

[0016] Preferably, the vehicle off-site control system further comprises a plurality of alarm members arranged in the detection area, and the alarm members are communicatively connected to the processing control mechanism.

[0017] Compared with the prior art, the utility model has the beneficial effects that:

[0018] 1. In the tire cleaning device, the guiding mechanism can be used to guide the vehicle to be washed to spray and scrub at the spray scrubbing mechanism, and to dry at the drying mechanism. The rotating member can drive the scrubbing member to rotate and scrub, and the extension member can drive the scrubbing member to extend into the local dead angle part of the tire for scrubbing, thereby improving the scrubbing effect and cleaning efficiency.

[0019] 2. The first brush and the second brush have brush head cross-sectional areas that can be adapted to the parts to be cleaned of the vehicle tire, thereby improving the cleaning effect.

[0020] 3. In the vehicle off-site control system, the tire of the vehicle to be washed can be cleaned in the cleaning area by the spray scrubbing mechanism, then the vehicle is guided to the drying mechanism by the guiding mechanism for drying, and then the tire of the vehicle is detected by the detection sensing piece. At the same time, the tire can also be photographed by the photographing member. Then, the detection signal and the photographing image can be transmitted to the processing control mechanism for processing, and the barrier gate is opened or kept closed according to the processing result, thereby avoiding the vehicle that has not been completely washed off-site. BRIEF DESCRIPTION OF DRAWINGS

[0021] Figure 1 It is a structural schematic view of the utility model a tire cleaning device embodiment one.

[0022] Figure 2 It is a structural schematic view of the utility model spray scrubbing mechanism first embodiment.

[0023] Figure 3 It is a structural schematic view of the utility model a tire cleaning device embodiment two.

[0024] Figure 4 It is the structural schematic view of the second embodiment of the spray brush cleaning mechanism of the utility model;

[0025] Figure 5 It is the structural schematic view of the vehicle off-site control system of the utility model.

[0026] In the drawings: 100, guide mechanism;110, first guide rail;120, second guide rail;130, empty position;200, spray assembly;210, spray side frame;220, spray bottom frame;230, first spray head;240, second spray head;250, water pump;260, water tank;270, water distribution pipe;280, spray inner frame;290, third spray head;300, brush cleaning assembly;310, first air cylinder;320, second air cylinder;330, first brush;340, second brush;350, mounting seat;400, drying mechanism;410, drying frame;420, air nozzle;430, heater;440, first air pipe;450, air pump;500, control mechanism;600, cleaning area;700, detection area;710, barrier gate;720, photographing component;730, detection sensing component;740, support frame;750, light supplement lamp. DETAILED DESCRIPTION

[0027] The utility model will be further explained in combination with specific implementation. Among them, the drawings are only used for example explanation, and the representation is only schematic diagram, and cannot be understood as the restriction of the patent;In order to better explain the embodiment of the utility model, some components of the drawings will be omitted, enlarged or reduced, and the size of actual product is not represented;For those skilled in the art, it is understandable that some well-known structures and their description in the drawings can be omitted.

[0028] The same or similar signs in the drawings of the embodiment of the utility model correspond to the same or similar components;In the description of the utility model, it is understood that if the orientation or position relationship indicated by the terms "upper", "lower", "left", "right" etc. is based on the orientation or position relationship shown in the drawings, only for the convenience of describing the utility model and simplifying the description, and not indicating or implying that the device or element indicated must have a particular orientation, a particular orientation and operation, therefore the position relationship description in the drawings is only used for example explanation, and cannot be understood as the restriction of the patent, for the ordinary skilled in the art, the specific meaning of the above terms can be understood according to the specific situation.

[0029] Embodiment one

[0030] As Figures 1 to 2The first embodiment of the tire cleaning device is shown, comprising a guide mechanism 100, a spraying and brushing mechanism arranged along the guide direction of the guide mechanism 100, and a drying mechanism 400, wherein the spraying and brushing mechanism comprises a spraying assembly 200 and a brushing assembly 300, and the brushing assembly 300 comprises an extension member, a rotating member, and a brushing member, the extension member is connected with the brushing member through the rotating member, and the extension direction of the extension member is arranged to be perpendicular to the guide direction of the guide mechanism 100.

[0031] The guide mechanism 100 can be used to guide the vehicle to be cleaned to spray and brush at the spraying and brushing mechanism and to dry at the drying mechanism 400, the rotating member can drive the brushing member to rotate and brush, and the extension member can drive the brushing member to extend into the local dead angle part of the tire to brush, thereby improving the brushing effect and the cleaning efficiency.

[0032] As shown in Figure 1 and Figure 2 , the extension member comprises a first cylinder 310 and a second cylinder 320 arranged oppositely, the brushing part comprises a first brush 330 and a second brush 340, the movable end of the first cylinder 310 is connected with the first brush 330 through the rotating member, and the movable end of the second cylinder 320 is connected with the second brush 340 through the rotating member, the extension directions of the first cylinder 310 and the second cylinder 320 are arranged to be perpendicular to the guide direction of the guide mechanism 100, and the extension direction of the rotating member is arranged to be parallel to the extension direction of the cylinder. The first brush 330 and the second brush 340 can be used to brush the inner side and the outer side of the tire respectively, the first cylinder 310 and the second cylinder 320 can drive the first brush 330 and the second brush 340 to extend and approach each other respectively, so as to contact and brush the surface of the tire, and the first brush 330 and the second brush 340 can also be driven to retract to move away from each other, thereby avoiding affecting the vehicle to enter the next cleaning process. Specifically, the rotating member can be a rotary motor, the first cylinder 310 and the second cylinder 320 can be rodless cylinders, the movable end of the rodless cylinder is connected with the rotary motor, and the output shaft of the rotary motor is connected with the brush. It should be noted that the selection of the rodless cylinder is only preferred, and other types of cylinders can also be selected according to actual use requirements.

[0033] As shown in Figure 2 , in order to enable the brushing member to adapt to the part to be cleaned of the vehicle tire, the cross-sectional area of the brush head of the first brush 330 gradually increases from one end away from the first cylinder 310 to one end close to the first cylinder 310, and the cross-sectional area of the brush head of the second brush 340 gradually increases from one end away from the second cylinder 320 to one end close to the second cylinder 320. It should be noted that the cross-sectional area of the brush head refers to the cross-sectional area taken along the vertical direction. Specifically, the brush head of the first brush 330 and the second brush 340 can be arranged in a circular truncated cone shape or a conical shape.

[0034] As shown in Figure 2 , the spraying assembly 200 comprises a spraying side frame 210 and a spraying bottom frame 220 connected with the spraying side frame 210, a plurality of first spray heads 230 connected with and communicated with the spraying side frame 210, and a plurality of second spray heads 240 connected with and communicated with the spraying bottom frame 220, the spraying direction of the second spray heads 240 being not parallel to the spraying direction of the first spray heads 230. In the embodiment, the spraying assembly 200 comprises two vertically arranged spraying side frames 210, the two spraying side frames 210 being respectively located at two sides of the guiding mechanism 100, one end of the spraying bottom frame 220 being connected with and communicated with one of the spraying side frames 210, and the other end of the spraying bottom frame 220 being connected with and communicated with the other spraying side frame 210 after passing through the guiding mechanism 100. Figure 1 and Figure 2 As shown in the drawings, the first spray heads 230 are arranged on the spraying side frame 210, and the spraying direction of the first spray heads 230 is towards the side of the guiding mechanism 100, for spraying the side of the tire. In the embodiment, the second spray heads 240 are located between the first brush 330 and the second brush 340, and the spraying direction of the second spray heads 240 is upwards, which can be used for spraying the bottom of the tire.

[0035] It should be noted that, in order to realize spraying, a water pipe connected with a water source can be arranged inside the spraying side frame 210 and the spraying bottom frame 220, and the first spray heads 230 and the second spray heads 240 are connected with the water pipe; or the spraying side frame 210 and the spraying bottom frame 220 are hollow structures, the water source is communicated with the hollow structures, and the first spray heads 230 and the second spray heads 240 are also communicated with the hollow structures.

[0036] As shown in Figure 2 , in order to facilitate the installation of the brushing assembly 300, the fixed ends of the first air cylinder 310 and the second air cylinder 320 are connected with mounting seats 350, and the mounting seats 350 are mounted on the outer side wall of the spraying bottom frame 220. It should be noted that the mounting seat 350 can also be a lifting mounting seat, which facilitates the movement of the brush.

[0037] As shown in Figure 1 , the spraying and brushing mechanism can comprise at least two groups, and a plurality of spraying and brushing mechanisms are arranged along the guiding direction of the guiding mechanism 100. The spraying assemblies 200 in the plurality of spraying and brushing mechanisms can be connected with the water source through a water distribution pipe 270, and specifically, the spraying side frames 210 are connected with the water source through the water distribution pipe 270. The arrangement of at least two groups of spraying and brushing mechanisms can realize the simultaneous cleaning of the front wheels and the rear wheels of the vehicle, and can also be used for the simultaneous cleaning of multiple vehicles.

[0038] As shown in Figure 1As shown, the guide mechanism 100 comprises a first guide rail 110 and a second guide rail 120 arranged in parallel, the interval between the first guide rail 110 and the second guide rail 120 is adapted to the interval between the left and right tires of the vehicle; the first guide rail 110 and the second guide rail 120 can be used for guiding the left and right tires of the vehicle respectively. In the embodiment, the brushing assembly 300 comprises a left brushing assembly arranged corresponding to the first guide rail 110, and a right brushing assembly arranged corresponding to the second guide rail 120, the left brushing assembly and the right brushing assembly can be used for brushing the left and right tires of the vehicle respectively. The right brushing assembly comprises the first air cylinder 310, the second air cylinder 320, the first brush 330, the second brush 340 and the rotating motor as described above, the first air cylinder 310 and the first brush 330 are located at the inner side of the second guide rail 120 and can be used for brushing the inner side of the tire, the second air cylinder 320 and the second brush 340 are located at the outer side of the second guide rail 120 and can be used for brushing the outer side of the tire. In the embodiment, the left brushing assembly and the right brushing assembly have similar or identical structures.

[0039] As shown in Figure 1 The two ends of the first guide rail 110 and the two ends of the second guide rail 120 are provided with slope structures, which can facilitate the entry and exit of the vehicle. The first guide rail 110 and the second guide rail 120 are provided with through holes 130 corresponding to the positions of the spray side frames 210, which can be used for the spray chassis 220 to pass through; specifically, the two spray side frames 210 are located at the outer side of the first guide rail 110 and the outer side of the second guide rail 120 respectively, one end of the spray chassis 220 is connected to and communicates with one of the spray side frames 210, and the other end of the spray chassis 220 passes through the through holes 130 of the first guide rail 110 and the second guide rail 120 in sequence and is connected to and communicates with the other spray side frame 210.

[0040] In the embodiment, the spray chassis 220 is provided with at least two second spray heads 240, when two second spray heads 240 are provided, the two second spray heads 240 are located below the guide surfaces of the first guide rail 110 and the second guide rail 120 respectively, the guide surfaces of the first guide rail 110 and the second guide rail 120 are provided with through holes corresponding to the positions of the second spray heads 240, so that the water flow can be sprayed to the tire. As a preferred, the guide surfaces of the first guide rail 110 and the second guide rail 120 can be provided with a mesh structure, which can avoid water accumulation on the guide rails.

[0041] The working principle of the tire cleaning device in the embodiment is as follows:

[0042] The left and right tires of the vehicle to be cleaned are driven into the first guide track 110 and the second guide track 120, respectively, until the tires correspond to the positions of the spray and brush washing mechanisms; the spray assembly 200 and the brush washing assembly 300 are started, the first spray head 210 sprays towards the side of the tire, the second spray head 240 sprays towards the bottom of the tire, at the same time, the first air cylinder 310 and the second air cylinder 320 extend, so that the first brush 330 and the second brush 340 contact the inner side and the outer side of the tire, and the brushes are rotated by the rotary motor to realize brushing; during the brushing process, the vehicle can also move forward or backward by a small amount to realize brushing of different positions of the tire; it should be noted that the dust and soil adhered to the inner side of the tire are less, so the brushes can be used for cleaning only; after brushing is completed, the vehicle continues to drive on the guide mechanism 100 towards the drying mechanism 400, and the drying mechanism 400 can be used for air drying of the tire to avoid water accumulation.

[0043] Embodiment Two

[0044] This embodiment is a second embodiment of a tire cleaning device, which is similar to embodiment one, and the difference is that, as shown in Figure 3 The drying mechanism 400 includes a drying frame 410, a plurality of air nozzles 420 connected and communicated with the drying frame 410, a heater 430, and a first air pipe 440, the heater 430 is connected and communicated with the drying frame 410 through the first air pipe 440. In this embodiment, the drying frame 410 includes two drying side frames, which are respectively located on the two sides of the guide mechanism 100, and the air nozzles 420 are connected and communicated with the drying side frames; the drying side frames are arranged so that the drying mechanism 400 can be used for simultaneous drying of the tires on both sides of the vehicle. It should be noted that the connecting frame can be connected and arranged through the top or bottom of the drying side frame; when the connecting frame is connected with the top of the drying side frame, the connecting frame is located on the top of the vehicle, ensuring that the vehicle can pass smoothly, as shown in Figure 1 When the connecting frame is connected with the bottom of the drying side frame, a through hole 130 is arranged at the position corresponding to the first guide track 110 and the second guide track 120, and the connecting frame passes through the through hole 130, as shown in Figure 3 .

[0045] It should be noted that, in order to realize air blowing, a gas guide pipe connected with the first air pipe 440 can be arranged inside the drying frame 410, and the air nozzles 420 are connected with the gas guide pipe; or the drying frame 410 is arranged as a hollow structure, the first air pipe 440 is communicated with the hollow structure, and the air nozzles 420 are also communicated with the hollow structure.

[0046] As shown in Figure 3As shown, the tire cleaning device further comprises a control mechanism 500, and the telescopic member and the rotating member are electrically connected with the control mechanism 500; in the embodiment, the first air cylinder 310, the second air cylinder 320 and the rotating motor are electrically connected with the control mechanism 500. The spraying assembly 200 further comprises a water pump 250 and a water tank 260, the water tank 260 and the water pump 250 are connected with a water distribution pipe 270, and the water in the water tank 260 can flow to the first spray head 230 and the second spray head 240 through the water pump 250, the water distribution pipe 270, the spraying side frame 210 and the spraying bottom frame 220; the water pump 250 is electrically connected with the control mechanism 500. The drying mechanism 400 further comprises an air pump 450, the air pump 450 is connected with the heater 430 through a second air pipe, and the heater 430 and the air pump 450 are electrically connected with the control mechanism 500. Specifically, the control mechanism 500 is a control machine.

[0047] The working principle of the tire cleaning device in the embodiment is as follows:

[0048] When the vehicle is performing the spraying and brushing operation, the spraying operation of the spraying assembly 200 can be controlled by the control machine, and the brushing operation of the brushing assembly 300 can also be controlled, so as to improve the cleaning efficiency; when the drying operation is performed, the gas pumped out by the air pump 450 is heated by the heater 430, is then conveyed to the air nozzle 420 and is sprayed out, and is used for drying the surface of the tire.

[0049] Embodiment three

[0050] The third embodiment of the tire cleaning device is similar to the first embodiment or the second embodiment, and the difference is that, as shown in the figure, Figure 4 As shown, the spraying assembly 200 further comprises a spraying inner frame 280 and a plurality of third spray heads 290 connected to the spraying inner frame 280, the spraying inner frame 280 is located between the first guide rail 110 and the second guide rail 120 and is located outside the first air cylinder 310, and the third spray heads 290 are arranged to spray the inner side of the tire. In the embodiment, the drying mechanism 400 further comprises a drying inner frame and an air nozzle connected to the drying inner frame, the drying inner frame is connected with and communicates with the connecting frame, the drying inner frame is located between the first guide rail 110 and the second guide rail 120 and can be used for drying the inner side of the tire.

[0051] Embodiment four

[0052] As shown in the figure, Figure 5The first embodiment of the vehicle off-site management system is shown, which comprises a cleaning area 600, a detection area 700, a barrier gate 710, the cleaning area 600 and the barrier gate 710 are respectively arranged at two ends of the detection area 700, a plurality of photographing members 720 are arranged in the detection area 700, a plurality of detection sensing members 730 are arranged in the detection area 700 along the direction from one end to the other end, a processing control mechanism is further arranged, the barrier gate 710, the photographing member 720 and the detection sensing member 730 are in communication connection with the processing control mechanism, a tire cleaning device as any one of the embodiments one, two and three is further arranged, the guide mechanism 100 extends from the cleaning area 600 to the detection area 700, and the spraying and brushing mechanism and the drying mechanism 400 are both located in the cleaning area 600.

[0053] In the embodiment, the outer side of the first guide track 110 and the outer side of the second guide track 120 are both provided with the photographing member 720, the photographing end of the photographing member 720 faces the guide mechanism 100, which can be used for photographing the image of the tire and transmitting the image to the processing control mechanism for processing and analysis, and judging whether the tire has been cleaned by the processing and analysis result. Specifically, the position of the photographing member 720 can be set according to the actual scene, and the photographing range of the photographing member 720 can cover all the tires on the side. In the embodiment, the photographing member 720 is a first camera.

[0054] In the embodiment, the detection sensing member 730 is arranged on the outer side of the guide mechanism 100, specifically, a plurality of detection sensing members 730 are arranged on the outer side of the first guide track 110 and the outer side of the second guide track 120 and extend along the direction thereof; the plurality of detection sensing members 730 can be used for simultaneously detecting all the tires of the vehicle, thereby improving the detection efficiency. In the embodiment, the detection sensing member 730 can be an infrared sensor, which can be used for assisting in detecting whether the cleanliness of the tire meets the standard.

[0055] In the embodiment, a second camera for photographing and identifying the license plate of the vehicle to be off-site is further arranged in the detection area 700, and the second camera is also in communication connection with the processing control mechanism. In the embodiment, the second camera can be arranged on the barrier gate 710 or a position close to the barrier gate 710. Specifically, the processing control mechanism is a control center, and the first camera, the second camera, the infrared sensor and the barrier gate 710 are all in communication connection with the control center.

[0056] The working principle of the vehicle off-site management system in the embodiment is as follows:

[0057] The vehicle enters the cleaning area 600 and completes cleaning by the spraying and brushing mechanism in the cleaning area 600, and then is dried by the drying mechanism 400; then, the vehicle enters the detection area 700, and the cleaning effect of the tire surface is detected by the first camera and the infrared sensor, and the vehicle meeting the cleaning standard is released by the barrier gate 710, otherwise the barrier gate 710 is kept closed.

[0058] Example 5

[0059] This embodiment is a second embodiment of a vehicle departure control system. This embodiment is similar to embodiment four, except that, as shown in the following... Figure 5 As shown, the vehicle departure control system also includes a support frame 740, with a camera 720 connected to the support frame 740. A supplementary light 750 is also connected to the support frame 740. The support frame 740 and the supplementary light 750 are both designed to improve the shooting effect of the camera 720. In this embodiment, the supplementary light 750 can communicate with the control center.

[0060] In this embodiment, the vehicle departure control system also includes several alarm devices installed in the detection area 700, which are communicatively connected to the processing control mechanism. In this embodiment, the alarm devices can be installed on the barrier gate 710. Specifically, the alarm devices are communicatively connected to the control center, and when the vehicle cleaning effect fails to meet the standard, the alarm devices can be triggered through the control center to provide timely warning.

[0061] In the specific implementation of the above embodiments, the technical features can be combined in any non-contradictory way. For the sake of brevity, not all possible combinations of the above technical features are described. However, as long as the combination of these technical features is not contradictory, it should be considered to be within the scope of this specification.

[0062] Obviously, the above embodiments of this utility model are merely examples for clearly illustrating this utility model, and are not intended to limit the implementation of this utility model. Those skilled in the art can make other variations or modifications based on the above description. It is neither necessary nor possible to exhaustively describe all embodiments here. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this utility model should be included within the protection scope of the claims of this utility model.

Claims

1. A tire cleaning device characterized by, The utility model provides a guide mechanism (100), the spray brush mechanism that sets along the guide direction of guide mechanism (100), dry mechanism (400) are included, the spray brush mechanism includes spray subassembly (200), brush subassembly (300), wherein, the brush subassembly (300) includes telescopic piece, rotating piece, brush piece, the telescopic piece is connected with the brush piece through the rotating piece, and the telescopic direction of telescopic piece is not parallel with the guide direction of guide mechanism (100) and is arranged.

2. The tire cleaning device of claim 1, wherein, The telescopic piece includes first air cylinder (310) and second air cylinder (320) arranged oppositely, and the brush part includes first brush (330) and second brush (340); the movable end of the first air cylinder (310) is connected with the first brush (330) through the rotating piece; the movable end of the second air cylinder (320) is connected with the second brush (340) through the rotating piece; the telescopic direction of the first air cylinder (310) and the second air cylinder (320) is perpendicular to the guide direction of the guide mechanism (100).

3. The tire cleaning device of claim 2, wherein, The cross-sectional area of the brush head of the first brush (330) gradually increases from one end away from the first air cylinder (310) to one end close to the first air cylinder (310); the cross-sectional area of the brush head of the second brush (340) gradually increases from one end away from the second air cylinder (320) to one end close to the second air cylinder (320).

4. The tire cleaning device of claim 1, wherein, The spray subassembly (200) includes a spray side frame (210) and a spray bottom frame (220) connected with the spray side frame (210); a plurality of first spray heads (230) are connected to and communicated with the spray side frame (210); a plurality of second spray heads (240) are connected to and communicated with the spray bottom frame (220); the spray direction of the second spray heads (240) is not parallel to the spray direction of the first spray heads (230).

5. The tire cleaning device of claim 4, wherein, The guide mechanism (100) includes first guide rails (110) and second guide rails (120) arranged in parallel; the brush subassembly (300) includes a left brush subassembly corresponding to the first guide rails (110) and a right brush subassembly corresponding to the second guide rails (120). The spray bottom frame (220) is provided with at least two second spray heads (240); the second spray heads (240) are located below the guide surfaces of the first guide rails (110) and the second guide rails (120); the guide surfaces of the first guide rails (110) and the second guide rails (120) are provided with a plurality of through holes for facilitating spraying.

6. The tire cleaning device of claim 1, wherein, The dry mechanism (400) includes a dry frame (410), a plurality of air nozzles (420) connected with and communicated with the dry frame (410), a heater (430), and a first air pipe (440); the heater (430) is communicated with the dry frame (410) through the first air pipe (440).

7. The tire cleaning device of any one of claims 1 to 5, wherein, The control mechanism (500) is electrically connected with the telescopic member and the rotating member; the water pump (250) of the spraying assembly (200) is electrically connected with the control mechanism (500); and the air pump (450) of the drying mechanism (400) is electrically connected with the control mechanism (500).

8. A vehicle departure regulation system characterized by, The cleaning area (600), the detection area (700) and the barrier (710) are arranged at two ends of the detection area (700) respectively; a plurality of patting members (720) are arranged in the detection area (700); a plurality of detection sensing members (730) are arranged in the detection area (700) along the direction from one end to the other end; and the barrier (710), the patting members (720) and the detection sensing members (730) are in communication connection with the processing control mechanism. The guiding mechanism (100) extends from the cleaning area (600) to the detection area (700); and the spraying and brushing cleaning mechanism and the drying mechanism (400) are arranged in the cleaning area (600).

9. The vehicle gate departure system of claim 8, wherein, The patting members (720) are connected with the support frame (740), and the support frame (740) is further connected with the light supplementing lamp (750).

10. The vehicle gate departure control system of claim 8 or 9, wherein, A plurality of alarm members are arranged in the detection area (700) and in communication connection with the processing control mechanism.