A vehicle cleaning device for entering and exiting a farm

By creating grooves on the slopes of the farm and installing a cleaning device with movable guide rails, the problem of cleaning omissions due to the limitations of the slope terrain was solved, enabling comprehensive cleaning of the underside of vehicles and hidden parts, thus ensuring the biosecurity of the breeding area.

CN121608708BActive Publication Date: 2026-05-05FUJIAN SHENGZE BIOLOGICAL TECH DEV CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
FUJIAN SHENGZE BIOLOGICAL TECH DEV CO LTD
Filing Date
2026-02-02
Publication Date
2026-05-05

AI Technical Summary

Technical Problem

Existing vehicle cleaning equipment at farms is limited by the terrain of slopes and cannot fully cover hidden parts such as the bottom of vehicles, resulting in omissions in cleaning and disinfection, which increases the risk of disease transmission.

Method used

A groove is created in the middle of the slope, and a movable guide rail and cleaning device are installed. Fan-shaped sprayers are used to clean the bottom of the vehicle, while movable spray components rinse the inside of the wheels. Combined with atomizing spray frames, the outer surface is cleaned. Wastewater is discharged through drainage channels to prevent it from flowing everywhere.

Benefits of technology

It enables a comprehensive cleaning of the underside and hidden parts of vehicles, preventing omissions in cleaning and disinfection, ensuring biosecurity in the breeding area, and reducing the risk of disease transmission.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention discloses a vehicle cleaning device for livestock farms. The device includes a ramp, a cleaning canopy installed on the ramp, a water guide frame installed on the ramp, water guide side barriers on both sides of the ramp, a groove in the center of the ramp, an even number of movable guide rails installed in the groove, a cleaning device installed on the even number of movable guide rails, and a cleaning drive installed at the top of the ramp. The cleaning canopy contains a canopy body, with lifting seats fixed to the outer walls on both sides. This invention, by creating a groove in the center of the ramp, allows vehicles to complete exterior cleaning with the assistance of the cleaning canopy and then stop. Subsequently, the cleaning drive activates, causing the movable guide rails to assist in the displacement of the cleaning device's platform. Simultaneously, fan-shaped sprayers clean the hidden parts of the vehicle's underside, while movable spray components on both sides repeatedly wash the inside of the vehicle and the wastewater generated during cleaning. Ultimately, this method is not limited by the terrain of the ramp and effectively ensures biosecurity in the livestock area.
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Description

Technical Field

[0001] This invention relates to the field of vehicle washing equipment technology, specifically a vehicle washing equipment for livestock farms. Background Technology

[0002] Most farm vehicle cleaning equipment integrates washing, disinfection, and wastewater recycling systems: first, the mud and dirt on the vehicle body are washed away, then disinfectant is sprayed through atomization to kill pathogens, and the wastewater is recycled after sedimentation and filtration; some are equipped with automatic sensing or remote control operation, taking into account both high-efficiency cleaning and environmental protection, reducing the risk of cross-contamination, and ensuring biosecurity in the breeding area.

[0003] However, the existing technology has the following shortcomings: Currently, some farms are located in deep mountains and have limited flat land, so they set up the cleaning equipment on the entrance ramp and complete the vehicle cleaning and disinfection work by manual assistance. However, due to the limitations of the ramp terrain, it is not possible to fully cover the hidden parts such as the bottom of the vehicle, which can easily lead to omissions in cleaning and disinfection, increase the risk of disease transmission, and make it difficult to effectively protect the biosecurity of the breeding area. Summary of the Invention

[0004] Other features and advantages of the invention will be set forth in the description which follows, and will be apparent in part from the description, or may be learned by practicing the invention. The objects and other advantages of the invention may be realized and obtained by means of the structures particularly pointed out in the description and other accompanying drawings.

[0005] The purpose of this invention is to overcome the above-mentioned shortcomings and provide a vehicle cleaning device for entering and exiting a farm. By opening a groove in the middle of the slope, the vehicle stops after being cleaned on the outside of the cleaning shed. The cleaning drive drives the moving guide rail to move the displacement platform. During the displacement, the fan-shaped sprayer simultaneously washes the bottom, and the movable spray component washes the inside of the wheels and sewage. Ultimately, it is not restricted by the slope, avoiding omissions in cleaning and disinfection, increasing the risk of disease transmission, and ensuring the biosecurity of the breeding area.

[0006] To achieve the above objectives, the present invention provides the following technical solution: a vehicle cleaning device for livestock farms, comprising a ramp, a cleaning shed installed on the ramp, a water guide frame installed on the ramp, water guide side barriers on both sides of the ramp, a slope groove in the center of the ramp, an even number of movable guide rails installed in the slope groove, a cleaning device installed on the even number of movable guide rails, and a cleaning drive installed at the top of the ramp; a shed body is provided inside the cleaning shed, and lifting seats are fixed on both outer walls of the shed body, one of the lifting seats is equipped with a power supply box, and the other lifting seat is equipped with a water supply device; a drainage channel is provided below the water guide frame, and support blocks are provided at both ends of the drainage channel, with a covering material on top of the support blocks. The partition frame has an even number of interconnected arched grooves on the side wall of the drainage channel, and an even number of external discharge outlets at one end of the drainage channel. The cleaning device includes a displacement platform with a power supply cable installed on one side below it and a water supply pipe installed on the other side. A water collection tank is installed on the displacement platform, and several booster pumps are connected to the water collection tank. Fan-shaped sprayers are connected to the booster pumps, and an electrical control box is located next to each fan-shaped sprayer. An even number of hinged side lugs are installed on both sides of the water collection tank, and movable spray components are connected between these even number of hinged side lugs. A pipe winding drum is installed on one side below the displacement platform, and a cable winding drum is installed on the other side below the displacement platform. A moving component is installed at the center of the bottom surface of the displacement platform.

[0007] In a further improvement to the present invention, a spray plate is provided inside the movable spray assembly, and side drive ears are provided on both sides of the spray plate. A sliding groove is provided on the rear surface of each side drive ear, and a connecting rod is installed in the sliding groove. An electrically controlled push rod is connected to the end of the connecting rod, and a pipe connection port is installed at the center of the rear surface of the spray plate.

[0008] In a further improvement to the present invention, the pipe connection port is connected to one of the booster pumps via a pipe, and the other booster pump is connected to the fan-shaped sprayer via a pipe. The plate-side drive lug is hinged to the hinge side lug. The end of the electric control push rod is fixed to the surface of the displacement platform and electrically connected to the electric control box. The moving component is connected to the moving guide rail. The moving component is driven by the cleaning drive. The power supply cable is wound up and down through the cable winding drum for length adaptation. The water supply pipe is wound up and down through the pipe winding drum for length adaptation. The end of the water supply pipe is connected to the water collection tank. The interconnecting arch groove and the slope groove are interconnected.

[0009] In a further improvement to the present invention, a movable wheel support frame is provided inside the movable component, a submerged water tank is installed between the movable wheel support frames, an even number of track wheels are installed on the movable wheel support frames, a transmission gear is fixed at the center of the axle of each even number of track wheels, a drive chain is connected to the transmission gear, one end of the drive chain cooperates with the movable guide rail, the other end of the drive chain cooperates with the cleaning drive, the movable wheel support frame is fixed to the bottom surface of the displacement platform, the submerged water tank is interconnected with the water collection tank, and the track wheels are displaced on the movable guide rail.

[0010] In a further improvement to the present invention, a plurality of water guide holes are provided on the side wall of the end of the movable guide rail, and a drainage groove is provided on the end of the movable guide rail. An auxiliary rotating gear shaft is connected between an even number of movable guide rails. A driver is provided inside the cleaning drive, a load-bearing cover plate is provided next to the driver, a cover is provided inside the driver, a motor base is installed inside the cover, a first drive motor is fixed on the motor base, and a transmission chain is installed on the drive shaft of the first drive motor.

[0011] In a further improvement to the present invention, a cavity is provided below the load-bearing cover plate, an inner support frame is installed in the cavity, an interconnecting groove is provided next to the inner support frame, a plurality of auxiliary support platforms are installed in the cavity, a drive shaft is installed on the plurality of auxiliary support platforms, a drive gear is installed at the end of the drive shaft directly opposite the position of the interconnecting groove, and a shaft auxiliary turntable is provided next to one of the auxiliary support platforms.

[0012] In a further improvement to the present invention, the drive gear is connected to the drive chain, the drive chain passes through the interconnecting groove, the interconnecting groove communicates with the groove on the slope, the drive shaft is connected to the transmission chain, the first drive motor is electrically coupled to the power supply box, and the load-bearing cover plate covers the inner support frame.

[0013] In a further improvement to the present invention, several internal suspension rods are suspended inside the shed, and water supply pipes are fixed in the several internal suspension rods. Several water distribution pipes are installed on the surface of the water supply pipes, and atomizing spray frames are connected to the front of the several water distribution pipes. Side water guide boxes are fixed on both sides of the shed, and drain pipes are fixed below both ends of the side water guide boxes. A rear water barrier is set inside the power supply box, and a box is covered under the rear water barrier.

[0014] In a further improvement to the present invention, a water tank is provided inside the water supply device, a liquid filling hopper is installed on the water tank, and an even number of water pumps are provided next to the water tank. One of the water pumps is connected to a first water supply pipe, another water pump is connected to a second water supply pipe, and each of the even number of water pumps is connected to a suction pipe.

[0015] In a further improvement to the present invention, the other end of the suction pipe is connected to the water tank, the first water supply pipe is connected to the water supply pipeline, the second water supply pipe is connected to the water supply pipeline joint, the water pump is electrically connected to the tank, and the cable in the tank is connected to the power supply cable.

[0016] Compared with the prior art, the present invention has the following beneficial effects;

[0017] 1. This invention creates a groove in the middle of a slope. After the vehicle is cleaned on the outside with the help of the cleaning canopy, it stops. Then, the cleaning drive is activated, causing the displacement platform in the moving guide rail auxiliary cleaning device to move. At the same time, the fan-shaped sprayer cleans the hidden parts of the vehicle's bottom, and the movable spray components on both sides repeatedly move to rinse the inside of the vehicle and the wastewater generated during cleaning. Ultimately, this invention is not limited by the slope terrain and effectively protects the biosecurity of the aquaculture area.

[0018] 2. When a vehicle enters the site, its outer surface is cleaned by the arched atomizing spray frame of the cleaning awning. The vehicle passes through the water mist, and some of the water generated during cleaning flows down the slope to the outside of the water guide frame for discharge. Meanwhile, the wastewater from the cleaning device at the bottom of the vehicle flows along the drainage channel on the rail into the groove on the slope, and finally enters the drainage channel through the interconnected arch channel for discharge. This prevents the cleaning wastewater from flowing everywhere when the vehicle enters the site, causing large-scale pollution and wastewater at the site entrance. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the structure of a vehicle cleaning device for entering and exiting a farm according to the present invention;

[0020] Figure 2 This is a side view of the groove structure on the slope in a vehicle cleaning device for entering and exiting a farm according to the present invention.

[0021] Figure 3 This is an enlarged structural schematic diagram of the cleaning device in a vehicle cleaning equipment for livestock farms according to the present invention;

[0022] Figure 4 This is a top view of the displacement platform in a vehicle cleaning device for livestock farms according to the present invention.

[0023] Figure 5 This is a side view of the displacement platform in a vehicle cleaning device for livestock farms according to the present invention.

[0024] Figure 6 For the present invention Figure 5 A magnified schematic diagram of the partial structure at point A in the middle;

[0025] Figure 7 This is a top view of the load-bearing cover plate in a vehicle cleaning device for livestock farms according to the present invention.

[0026] Figure 8 This is a side view of the water supply device in a vehicle cleaning equipment for livestock farms according to the present invention.

[0027] Figure 9 This is a side view of the power supply box in a vehicle cleaning device for livestock farms according to the present invention.

[0028] In the diagram: 1. Slope; 2. Washing shed; 3. Water guide frame; 4. Water guide side guard; 11. Groove on slope; 12. Moving guide rail; 13. Washing device; 14. Washing drive; 21. Shed body; 22. Power supply box; 23. Lifting seat; 24. Water supply device; 31. Dividing frame; 32. Drainage channel; 33. Support block; 34. Interconnecting arch channel; 35. External drain outlet; 121. Rail water guide hole; 122. Rail drainage trough; 123. Auxiliary rotating gear shaft; 131. Displacement platform. Power supply cable 132, water supply pipe 133, driver 141, load-bearing cover plate 142, indoor suspension rod 211, water supply pipe 212, water distribution pipe 213, atomizing spray frame 214, side water guide box 215, drain pipe 216, box 221, rear water barrier 222, water tank 241, liquid filling hopper 242, water pump 243, first water supply pipe 244, second water supply pipe 245, suction pipe 246, water collection tank 131 1. Electrical control box 1312, Fan-shaped sprinkler 1313, Booster pump 1314, Hinge side lug 1315, Movable sprinkler assembly 1316, Pipe winding drum 1317, Cable winding drum 1318, Moving assembly 1319, First drive motor 1411, Cover canopy 1412, Motor base 1413, Transmission chain 1414, Under-plate cavity 1421, Inner support frame 1422, Interconnection groove 1423, Auxiliary shaft rotation Platform 1424, auxiliary support platform 1425, drive shaft 1426, spray plate 13161, side drive lug 13162, electric control push rod 13163, connecting groove slide rod 13164, lug on lug 13165, pipe connection port 13166, moving wheel support frame 13191, submerged water tank 13192, track wheel 13193, transmission gear 13194, drive chain 13195, drive gear 14261. Detailed Implementation

[0029] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below with reference to specific embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.

[0030] Furthermore, in the description of this invention, it should be understood that the terms "center," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," "axial," "radial," and "circumferential" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this invention.

[0031] In this invention, unless otherwise explicitly specified and limited, the terms "installation," "connection," "linking," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral unit; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. However, specifying a direct connection indicates that the two main bodies are not connected through a transitional structure, but rather formed as a whole through a connecting structure. Those skilled in the art can understand the specific meaning of the above terms in this invention according to the specific circumstances.

[0032] In this invention, unless otherwise expressly specified and limited, the first feature "on" or "below" the second feature may be in direct contact with the first and second features, or indirect contact through an intermediate medium. In the description of this specification, references to terms such as "one embodiment," "some embodiments," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.

[0033] The present invention will be further described below with reference to the accompanying drawings: Example 1

[0034] As attached Figure 1 To be continued Figure 7 As shown:

[0035] This embodiment provides a vehicle cleaning device for entering and exiting a farm, including a ramp 1, a cleaning shed 2 installed on the ramp 1, a water guide frame 3 installed on the ramp 1, water guide side barriers 4 on both sides of the ramp 1, a slope groove 11 opened in the center of the ramp 1, an even number of movable guide rails 12 installed in the slope groove 11, a cleaning device 13 installed on the even number of movable guide rails 12, and a cleaning drive 14 installed at the top of the ramp 1.

[0036] Furthermore, the slope 1 is made of concrete, with a groove 11 in the center, and at least two movable guide rails 12 are installed in the groove 11 to allow the cleaning device 13 to move and achieve the cleaning of vehicles entering the site.

[0037] Furthermore, the water guide frame 3 is made of stainless steel strips welded together. With the cooperation of the water guide side barriers 4 on both sides of the slope 1, it blocks the sewage generated by the vehicle washing and finally guides it into the water guide frame 3 for external discharge.

[0038] The inclined cleaning shed 2 is equipped with a shed body 21. Lifting seats 23 are fixed on both outer walls of the shed body 21. A power supply box 22 is installed on one lifting seat 23, and a water supply device 24 is installed on the other lifting seat 23. A drainage channel 32 is provided below the water guide frame 3. Support blocks 33 are provided at both ends of the drainage channel 32. A partition frame 31 covers the support blocks 33. An even number of interconnected arched grooves 34 are opened on the side wall of the drainage channel 32. An even number of external discharge outlets 35 are provided at one end of the drainage channel 32.

[0039] Furthermore, at least two lifting seats 23 are provided, both installed on the outer walls of both sides of the shed 21 and welded to the outer walls of the shed 21. A power supply box 22 and a water supply device 24 are respectively installed on the lifting seats 23.

[0040] Furthermore, the external discharge port 35 is located on one side of the slope 1. Wastewater generated during cleaning is discharged through the external discharge port 35, and a pipeline can be connected to the external discharge port 35 to directly introduce it into an external wastewater recycling and treatment tank.

[0041] Among them, a number of rail-mounted water guide holes 121 are opened on the side wall of the end of the movable guide rail 12, and a rail-mounted drainage groove 122 is opened on the end of the movable guide rail 12. An auxiliary rotating gear shaft 123 is connected between an even number of movable guide rails 12.

[0042] Furthermore, the water guide hole 121 and the drainage groove 122 on the moving guide rail 12 are used to guide the sewage falling on the moving guide rail 12 during the cleaning process and prevent the sewage from accumulating on the moving guide rail 12.

[0043] Furthermore, the track-mounted drainage trough 122 is mainly installed between two movable guide rails 12. The movable guide rails 12 are used to install and fix it, allowing it to assist the cleaning device 13 on the movable guide rails 12 to move and reciprocate under the cooperation of the cleaning drive 14.

[0044] The cleaning device 13 includes a displacement platform 131, a power supply cable 132 installed on one side of the displacement platform 131, and a water supply pipe 133 installed on the other side of the displacement platform 131. A water collection tank 1311 is installed on the displacement platform 131, and several booster pumps 1314 are connected to the water collection tank 1311. A fan-shaped sprayer 1313 is connected to the fan-shaped sprayer 1313, and an electrical control box 1312 is installed next to the fan-shaped sprayer 1313. An even number of hinged side ears 1315 are installed on both sides of the water collection tank 1311, and a movable spray assembly 1316 is connected between the even number of hinged side ears 1315. A pipe winding drum 1317 is installed on one side of the displacement platform 131, and a cable winding drum 1318 is installed on the other side of the displacement platform 131. A moving assembly 1319 is installed at the center of the bottom surface of the displacement platform 131.

[0045] Furthermore, the water collection tank 1311 is mainly used to connect the end of the water supply pipe 133 in the pipe winding drum 1317, and input the water flow into the water collection tank 1311. The cleaning water flow is then distributed by the booster pump 1314 that works in conjunction with the water collection tank 1311.

[0046] Furthermore, at least three booster pumps 1314 are provided, one of which is used for the fan-shaped sprayer 1313, while the other two are respectively connected to independent movable spray components 1316 to complete the supply of cleaning water.

[0047] Furthermore, the pipe winding drum 1317 and the cable winding drum 1318 serve the same purpose, both being used for the coordinated winding and unwinding of the water supply pipe 133 or the power supply cable 132, thereby preventing the cable or pipe from being pulled and broken during the displacement of the displacement platform 131.

[0048] The cleaning drive 14 is equipped with a driver 141, a load-bearing cover plate 142 is provided next to the driver 141, a cover 1412 is provided inside the driver 141, a motor base 1413 is installed inside the cover 1412, a first drive motor 1411 is fixed on the motor base 1413, and a transmission chain 1414 is installed on the drive shaft of the first drive motor 1411.

[0049] Furthermore, the first drive motor 1411 is fixed by a motor base 1413 fixed on the cover 1412, and the first drive motor 1411 has a drive chain shaft in front, which completes the transmission of the transmission chain 1414 through the drive chain shaft, and completes the triggering of the cooperating drive shaft 1426.

[0050] The load-bearing cover plate 142 has a cavity 1421 below it. An inner support frame 1422 is installed in the cavity 1421. An interconnecting groove 1423 is provided next to the inner support frame 1422. Several auxiliary support platforms 1425 are installed in the cavity 1421. A drive shaft 1426 is installed on the auxiliary support platforms 1425. A drive gear 14261 is installed at the end of the drive shaft 1426 directly opposite the position of the interconnecting groove 1423. A shaft auxiliary turntable 1424 is provided next to one of the auxiliary support platforms 1425.

[0051] Furthermore, the inner support frame 1422 is made of steel and has an opening at the position of the interconnection groove 1423 for the drive chain to pass through and to engage with the drive gear 14261 mounted on the drive shaft 1426.

[0052] Furthermore, the auxiliary support platform 1425 mainly serves to fix the drive shaft 1426, while the end of the drive shaft 1426 and the shaft auxiliary turntable 1424 complete the auxiliary rotation of the end of the shaft.

[0053] The movable spray assembly 1316 includes a spray plate 13161. Both sides of the spray plate 13161 are provided with side drive ears 13162. The rear surface of each side drive ear 13162 is provided with an ear groove 13165. A connecting rod 13164 is installed in the ear groove 13165. The end of the connecting rod 13164 is connected to an electrically controlled push rod 13163. A pipe connection port 13166 is installed in the center of the rear surface of the spray plate 13161.

[0054] Furthermore, the side-mounted drive ear 13162 is mainly used for clamping and connecting the spray plate 13161. The side-mounted drive ear 13162 is repeatedly pushed by the rear electrically controlled push rod 13163, causing the spray plate 13161 to swing repeatedly in cooperation with the side-mounted drive ear 13162.

[0055] Furthermore, the electronically controlled push rod 13163 is mainly controlled by the electronic control box 1312 to form repeated forward and backward pushes, which indirectly assists in driving the spray plate 13161 to swing, thereby cleaning the sewage from the vehicle and the inside of the wheels.

[0056] The movable component 1319 is equipped with a movable wheel support frame 13191, a submerged water tank 13192 is installed between the movable wheel support frames 13191, an even number of track wheels 13193 are installed on the movable wheel support frame 13191, a transmission gear 13194 is fixed at the center of the shaft of each even number of track wheels 13193, and a drive chain 13195 is connected to the transmission gear 13194.

[0057] Furthermore, at least two sets of track wheels 13193 are installed on the movable wheel support 13191. The track wheels 13193 move in the movable guide rail 12, thereby driving the displacement platform 131 above the movable wheel support 131 to move together.

[0058] Furthermore, the transmission gear 13194, which is fixed at the center of the shaft of the track wheel 13193, mainly works with the drive chain 13195 to drive it to form an upward or downward displacement, thereby indirectly causing the displacement platform 131 to perform reciprocating work.

[0059] Furthermore, the submerged water tank 13192 is mainly used to increase the volume of the water collection tank 1311, thereby meeting the water demand of its fan-shaped sprayer 1313 and movable spray assembly 1316.

[0060] The specific working principle is as follows:

[0061] In this invention, as the vehicle drives onto the slope 1 of the farm, the power supply box 22 on the lifting seats 23 on both sides of the shed 21 of the cleaning shed 2 controls the water supply device 24 to be turned on. Simultaneously, the cleaning drive 14 starts, causing the cleaning device 13 to move downwards on the top of the guide rail 12 in the groove 11 on the slope. The displacement platform 131, driven by the moving component 1319, works in conjunction with the first drive motor 1411 in the driver 141 to slowly reverse the transmission chain 1414, indirectly cooperating with the drive shaft 1426 to drive the drive gear 14261 in the same direction. The track wheel 13193 in the moving wheel support 13191 moves downwards on the guide rail 12, while the electrical control box 1312 controls the booster pump 1314 to work synchronously, adjusting the water flow in the water collection tank 1311 and inputting it into the fan-shaped sprayer 1313 and the movable spray component 1316. As the displacement occurs, the pipe winding drum 1317 and cable winding drum... 1318 adapts and retracts the power supply cable 132 and water supply pipe 133 to prevent cable and pipe damage. When the vehicle moves to the end of the moving guide rail 12, the fan-shaped sprayer 1313 and the movable spray assembly 1316 form the first round of vehicle bottom cleaning. After the vehicle passes through the cleaning sloping canopy 2 and stops, the first drive motor 1411 works in the forward direction, driving the displacement platform 131 to climb on the moving guide rail 12. The electrical control box 1312 triggers the electrical control push rod 13163 to push and pull repeatedly, indirectly causing the side drive lug 13162 and the spray plate 13161 to swing and re-wash the sewage generated during cleaning and the inner side of the tires. Finally, after reaching the initial position, the cleaning drive 14 is turned off, thereby ensuring that the hidden parts of the vehicle bottom are fully cleaned. This achieves the goal of not being restricted by the slope terrain, effectively protecting the biosecurity of the breeding area, and avoiding the occurrence of cleaning and disinfection omissions that increase the risk of disease transmission. Example 2

[0062] As attached Figure 2 Appendix Figure 4Appendix Figure 8 To be continued Figure 9 As shown:

[0063] The slope 1 has a groove 11 at its center, and an even number of moving guide rails 12 are installed in the groove 11. A cleaning device 13 is installed on the even number of moving guide rails 12. A cleaning drive 14 is installed at the top of the slope 1. The cleaning shed 2 has a shed body 21 inside. Lifting seats 23 are fixed on both outer walls of the shed body 21. A power supply box 22 is installed on one lifting seat 23, and a water supply device 24 is installed on the other lifting seat 23.

[0064] The drainage channel 32 is provided below the water guide frame 3. Both ends of the drainage channel 32 are provided with support blocks 33. The support blocks 33 are covered with a partition frame 31. An even number of interconnected arched grooves 34 are opened on the side wall of the drainage channel 32. An even number of external discharge outlets 35 are provided at one end of the drainage channel 32.

[0065] Furthermore, the drainage channel 32 is mainly located on the slope 1. At the end of the slope 1, the support block 33 is installed inside the drainage channel 32 and covered with the partition frame 31, so that the sewage is guided into the drainage channel 32 with the help of the water guide side baffle.

[0066] Furthermore, the interconnecting arch trough 34 is mainly opened on the side wall of the interconnecting arch trough 34, forming an interconnection with the slope groove 11, so that the wastewater generated by the washing in the slope groove 11 can enter the drainage channel 32 and be discharged and treated by the external discharge port 35.

[0067] The shed 21 has several internal hanging rods 211 suspended inside, and water supply pipes 212 are fixed in the several internal hanging rods 211. Several water distribution pipes 213 are installed on the surface of the water supply pipes 212. The front of the several water distribution pipes 213 is connected to a misting spray frame 214. Water guide boxes 215 are fixed on both sides of the shed 21. Drainage pipes 216 are fixed below both ends of the water guide boxes 215. A rear water barrier 222 is set inside the power supply box 22. The box 221 covers the bottom of the rear water barrier 222.

[0068] Furthermore, the hanger 211 inside the canopy is mainly used for suspending the water supply pipe 212. The water is fed into the atomizing spray frame 214 through the arched water distribution pipe 213 installed on the surface of the water supply pipe 212, so as to supply water to the atomizing spray frame 214 and complete the cleaning of the vehicle exterior.

[0069] Furthermore, the rear water barrier 222 is a solid block behind it, which effectively blocks the water mist generated during cleaning and prevents the water mist from affecting the box 221 covered below.

[0070] Furthermore, a power supply and control harness is provided at the bottom of the enclosure 221. The power supply and control harness is wrapped in a wiring steel pipe and buried in the slope 1. The end of the harness passes through the groove 11 on the slope and is connected by a power supply cable 132 wrapped with a scratch-resistant sleeve.

[0071] The water supply device 24 is equipped with a water tank 241, a liquid filling hopper 242 is installed on the water tank 241, and an even number of water pumps 243 are installed next to the water tank 241. One water pump 243 is connected to a first water supply pipe 244, another water pump 243 is connected to a second water supply pipe 245, and each of the even number of water pumps 243 is connected to a suction pipe 246.

[0072] Furthermore, the liquid addition hopper 242 on the water tank 241 can add the disinfectant solution in proportion, allowing it to mix with the water source in the water tank 241 in a certain ratio, and then draw it into the water pump 243 through the suction pipe 246.

[0073] Furthermore, at least two water pumps 243 are provided, one of which is used to supply water to the first water supply pipe 244. The water is input into the water supply pipe 212 through the first water supply pipe 244, so that the atomizing spray frame 214 can complete the cleaning water mist.

[0074] Furthermore, the second water supply pipe 245 is connected to another water pump 243. It is made of stainless steel, buried in the slope 1, and its end extends out from the side wall of the groove 11 on the slope and is connected to the water supply pipe 133 to complete the water supply work of the structure on the displacement platform 131.

[0075] The specific working principle is as follows:

[0076] This invention powers the water supply device 24 on the other lifting seat 23 via a power supply box 22 on one side of the canopy 21. With the cooperation of the water tank 241, two water pumps 243 operate, and the water flow in the water tank 241 is regulated by the suction pipe 246, feeding water into the first water supply pipe 244 and the second water supply pipe 245 respectively. The first water supply pipe 244 feeds water into the water supply pipe 212 in the canopy's hanging rod 211, where it is then divided by the water distribution pipe 213. Finally, the water is sprayed through the atomizing spray frame 214 to form an atomized cleaning arch, completing the cleaning of the vehicle's surface. The water generated during cleaning flows down the slope 1 and the groove 11 on the slope. Part of it enters the partition frame 31 and falls onto the drainage channel 32, and is discharged from the external outlet 35. The other part falls onto the groove 11 on the slope and the moving guide rail 12 and flows into the groove 11 on the slope through the drainage channel 122 on the rail. It then enters the drainage channel 32 through the interconnecting arch 34 to form a discharge. The external outlet 35 can also be connected to a pipe to recycle and reuse the wastewater. This ultimately prevents the cleaning wastewater from flowing everywhere when vehicles enter the site, causing large-scale pollution and wastewater at the site entrance.

[0077] It should be understood that the embodiments disclosed herein are not limited to the specific processing steps or materials disclosed herein, but should be extended to equivalent substitutions of such features as understood by those skilled in the art. It should also be understood that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting.

[0078] The term "embodiment" in this specification means that a specific feature or characteristic described in connection with an embodiment is included in at least one embodiment of the invention. Therefore, phrases or "embodiments" appearing in various places throughout the specification do not necessarily refer to the same embodiment.

[0079] Furthermore, the described features or characteristics can be incorporated into one or more embodiments in any other suitable manner. In the above description, specific details, such as thickness, quantity, etc., are provided to provide a comprehensive understanding of embodiments of the invention. However, those skilled in the art will understand that the invention can be implemented without the aforementioned specific details or may be implemented using other methods, components, materials, etc.

Claims

1. A vehicle cleaning device for entering and exiting a livestock farm, characterized in that, Includes a slope (1), a cleaning shed (2) installed on the slope (1), a water guide frame (3) installed on the slope (1), water guide side barriers (4) provided on both sides of the slope (1), a slope groove (11) opened in the center of the slope (1), an even number of moving guide rails (12) installed in the slope groove (11), a cleaning device (13) installed on the even number of moving guide rails (12), and a cleaning drive (14) installed at the top of the slope (1). The cleaning sloping shed (2) is provided with a shed body (21), and lifting seats (23) are fixed on both outer walls of the shed body (21). A power supply box (22) is installed on one of the lifting seats (23), and a water supply device (24) is installed on the other lifting seat (23). A drainage channel (32) is provided below the water guide frame (3). Support blocks (33) are provided at both ends of the drainage channel (32). A partition frame (31) covers the support blocks (33). An even number of interconnected arched grooves (34) are opened on the side wall of the drainage channel (32). An even number of external discharge outlets (35) are provided at one end of the drainage channel (32). The cleaning device (13) is equipped with a displacement platform (131), a power supply cable (132) is installed on one side below the displacement platform (131), and a water supply pipe (133) is installed on the other side below the displacement platform (131). A water collection tank (1311) is installed on the displacement platform (131). Several booster pumps (1314) are connected to the side of the water collection tank (1311). Fan-shaped sprayers (1313) are connected to the side of the several booster pumps (1314). An electrical control box (1312) is set next to the fan-shaped sprayers (1313). An even number of hinged side ears (1315) are installed on both sides of the water collection tank (1311). A movable spray assembly (1316) is connected between the even number of hinged side ears (1315). A pipe winding drum (1317) is installed on one side below the displacement platform (131). A cable winding drum (1318) is installed on the other side below the displacement platform (131). A moving assembly (1319) is installed at the center of the bottom surface of the displacement platform (131). The movable spray assembly (1316) is provided with a spray plate (13161). Both sides of the spray plate (13161) are provided with plate-side connecting ears (13162). The rear surface of the plate-side connecting ears (13162) is provided with an ear-mounted sliding groove (13165). A connecting groove sliding rod (13164) is installed in the ear-mounted sliding groove (13165). The end of the connecting groove sliding rod (13164) is connected to an electric control push rod (13163). A pipe connection port (13166) is installed at the center of the rear surface of the spray plate (13161). The pipe connection port (13166) is connected to one of the booster pumps (1314) via a pipe, and the other booster pump (1314) is connected to the fan-shaped sprayer (1313) via a pipe. The plate-side connecting lug (13162) is hinged to the hinge side lug (1315). The end of the electrically controlled push rod (13163) is fixed to the surface of the displacement platform (131) and electrically connected to the electrical control box (1312). The moving assembly (1319) is connected to the moving... The moving guide rail (12) is engaged with the moving component (1319) driven by the cleaning drive (14), the power supply cable (132) is wound up by the cable winding drum (1318) for length adaptation winding up and down, the water supply pipe (133) is wound up by the pipe winding drum (1317) for length adaptation winding up and down, the end of the water supply pipe (133) is connected to the water collection tank (1311), and the interconnecting arch groove (34) is interconnected with the slope groove (11); The movable component (1319) is provided with a movable wheel support frame (13191), and a submerged water tank (13192) is installed between the movable wheel support frames (13191). An even number of track wheels (13193) are installed on the movable wheel support frame (13191). A transmission gear (13194) is fixed at the center of the shaft of each even number of track wheels (13193). A drive chain (13195) is connected to the transmission gear (13194). One end of the drive chain (13195) is engaged with the movable guide rail (12), and the other end of the drive chain (13195) is engaged with the cleaning drive (14). The movable wheel support frame (13191) is fixed to the bottom surface of the displacement platform (131). The submerged water tank (13192) is interconnected with the water collection tank (1311). The track wheels (13193) move on the movable guide rail (12).

2. The vehicle cleaning equipment for entering and exiting a farm according to claim 1, characterized in that: The movable guide rail (12) has several water guide holes (121) on its end side wall and a drainage groove (122) on its end. An auxiliary rotating gear shaft (123) is connected between an even number of movable guide rails (12). The cleaning drive (14) is equipped with a driver (141). A load-bearing cover plate (142) is provided next to the driver (141). A cover (1412) is provided inside the driver (141). A motor base (1413) is installed inside the cover (1412). A first drive motor (1411) is fixed on the motor base (1413). A transmission chain (1414) is installed on the drive shaft of the first drive motor (1411).

3. The vehicle cleaning equipment for entering and exiting a farm according to claim 2, characterized in that: A cavity (1421) is provided below the load-bearing cover plate (142). An inner support frame (1422) is installed in the cavity (1421). An interconnecting groove (1423) is provided next to the inner support frame (1422). Several auxiliary support platforms (1425) are installed in the cavity (1421). A drive shaft (1426) is installed on the several auxiliary support platforms (1425). A drive gear (14261) is installed at the end of the drive shaft (1426) directly opposite the interconnecting groove (1423). A shaft auxiliary turntable (1424) is provided next to one of the auxiliary support platforms (1425).

4. The vehicle cleaning equipment for entering and exiting a farm according to claim 3, characterized in that: The drive gear (14261) is connected to the drive chain (13195), the drive chain (13195) passes through the interconnecting groove (1423), the interconnecting groove (1423) communicates with the slope groove (11), the drive shaft (1426) is connected to the transmission chain (1414), the first drive motor (1411) is electrically connected to the power supply box (22), and the load-bearing cover plate (142) covers the inner support frame (1422).

5. The cleaning equipment for vehicles entering and exiting a farm according to claim 1, characterized in that: Several internal hanging rods (211) are suspended inside the shed (21). Water supply pipes (212) are fixed in the several internal hanging rods (211). Several water distribution pipes (213) are installed on the surface of the water supply pipes (212). Atomizing spray frame (214) is connected in front of the several water distribution pipes (213). Side water guide boxes (215) are fixed on both sides of the shed (21). Drainage pipes (216) are fixed below both ends of the side water guide boxes (215). A rear water barrier (222) is set inside the power supply box (22). The box body (221) is covered below the rear water barrier (222).

6. The cleaning equipment for vehicles entering and exiting a farm according to claim 5, characterized in that: The water supply device (24) is equipped with a water tank (241), and a liquid filling hopper (242) is installed on the water tank (241). An even number of water pumps (243) are installed next to the water tank (241). One of the water pumps (243) is connected to a first water supply pipe (244), and another water pump (243) is connected to a second water supply pipe (245). Each of the even number of water pumps (243) is connected to a suction pipe (246).

7. The vehicle cleaning equipment for entering and exiting a farm according to claim 6, characterized in that: The other end of the suction pipe (246) is connected to the water tank (241), the first water supply pipe (244) is connected to the water supply pipe (212), the second water supply pipe (245) is connected to the water supply pipe (133) at the joint, the water pump (243) is electrically connected to the box (221), and the cable in the box (221) is connected to the power supply cable (132).

Citation Information

Patent Citations

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