Livestock washing medicated bath brushing channel
By designing a livestock rinsing and medicated bath brushing channel and using an inverted "U"-shaped water collection pipe and a lifting plate brush combination, the problem of incomplete traditional cleaning was solved, achieving all-round cleaning and stable medicated baths, thus improving breeding efficiency and health levels.
Patent Information
- Application Number
- CN202520061242.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-10
- Publication Date
- 2026-01-06
- Estimated Expiration
- 2035-01-10
AI Technical Summary
Traditional manual cleaning is inefficient and costly, while automated cleaning devices are not comprehensive, leaving blind spots and causing livestock to move around and get injured, thus affecting the profitability of farming.
The design incorporates a livestock rinsing and medicated bath brushing channel, a rinsing mechanism, and a medicated bath mechanism. It utilizes an inverted "U"-shaped water collection pipe and spray nozzles for comprehensive rinsing, while a lifting plate works in conjunction with a brush to scrub key areas. Combined with an inclined auxiliary plate and servo motor control, it achieves all-round cleaning and stable medicated bathing.
It achieves thorough cleaning without any blind spots, reduces livestock movement, improves cleaning quality and efficiency, saves water resources, reduces manual labor intensity, and is suitable for large-scale farming.
Smart Images

Figure CN223758999U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of livestock management technology, specifically to a livestock rinsing, medicated bath, and brushing channel. Background Technology
[0002] Traditional livestock cleaning relies on manual labor, with farmers using tools to wash, brush, and medicate each animal individually. While flexible and adaptable to individual animal needs, it also allows for timely responses to unexpected situations. However, with the scaling up of livestock farming, its drawbacks have become apparent: extremely low efficiency, requiring significant manpower and time to manage large numbers of animals, leading to soaring labor costs on farms; and the effectiveness of cleaning and medicating treatments is greatly affected by the farmer's skill, stamina, and focus, making it difficult to guarantee high-quality cleaning for every animal in large-scale farming, thus posing potential health risks.
[0003] Automatic rinsing and medicated bath devices subsequently emerged. Some combined limited water spraying with simple brushing, featuring a neck limiting device and a motor-driven comb to clean the fur. Others used a combination of side and top brushes for brushing and medicated bathing. While these methods reduced manual labor and improved standardization, problems remained: cleaning and medicated bathing were not comprehensive, and key areas such as the inner legs and lower abdomen became "dead zones" due to mechanical limitations, leading to the accumulation of dirt and parasites. The limiting effect was poor, causing livestock to move and struggle, interfering with the cleaning process and even causing injuries, thus affecting breeding efficiency.
[0004] To address the aforementioned issues, this application provides a channel for rinsing, medicating, and brushing livestock. Summary of the Invention
[0005] The purpose of this utility model is to provide a livestock rinsing and medicated bath brushing channel to solve the problems mentioned in the background art.
[0006] To achieve the above objectives, this utility model specifically adopts the following technical solution:
[0007] The livestock rinsing and medicated bath brushing channel includes a rinsing and medicated bath channel, a rinsing mechanism, and a medicated bath mechanism, wherein:
[0008] The bottom of the rinsing bath channel is fixed with several evenly distributed support rods. Both ends of the rinsing bath channel are fixed with inclined auxiliary plates for livestock to enter and exit the rinsing bath channel. The other end of the auxiliary plates is placed on the ground.
[0009] The rinsing mechanism is located in the front half of the rinsing bath channel and is used to clean the livestock's body;
[0010] The medicated bathing mechanism is located in the rear half of the rinsing medicated bathing channel and is used to medicate bathe livestock.
[0011] Furthermore, the rinsing mechanism includes a water tank and a rinsing assembly. The water tank is located directly below the rinsing bath channel. The bottom of the front half of the rinsing bath channel has an installation opening, and the top of the water tank is located inside the installation opening. The top of the water tank is flush with the bottom of the rinsing bath channel. The top of the water tank has several evenly distributed seepage holes. The water tank is equipped with an inlet pipe and an outlet pipe.
[0012] Furthermore, the rinsing assembly includes several evenly arranged water collection pipes, each water collection pipe being inverted "U" shape and fixed to the inner wall of the rinsing bath channel. Several evenly distributed water nozzles are installed on the inner wall of each water collection pipe. A main pipe is connected to each of the water collection pipes. The rinsing assembly also includes a water pump located on one side of the water tank. A suction pipe is installed at the inlet end of the water pump, and the other end of the suction pipe extends into the interior of the water tank. A connecting pipe connected to the main pipe is installed at the outlet end of the water pump. A controller electrically connected to the water pump is installed on the outer side of the rinsing bath channel.
[0013] Furthermore, a slag discharge port is constructed on one of the vertical sides of the water tank, and a filter plate is fixedly connected between the inner walls of the water tank, with the filter plate flush with the bottom side of the slag discharge port.
[0014] Furthermore, the medicated bath mechanism includes a rear half of the rinsing medicated bath channel, an inlet pipe and an outlet pipe on the medicated bath tank, a device opening at the bottom of the rinsing medicated bath channel and the top of the medicated bath tank fixed to the device opening, a lifting plate movably arranged inside the medicated bath tank, the lifting plate being able to rise to be flush with the device opening, and the medicated bath mechanism also includes a lifting assembly for controlling the lifting of the lifting plate.
[0015] Furthermore, the lifting assembly includes two spools symmetrically distributed at the top of the rinsing bath channel. Two suspension ropes are wound around the spools, with the ends of the ropes movably passing through the rinsing bath channel and fixed to the top of the lifting plate. The four suspension ropes are arranged in a rectangular pattern. A connecting wheel is fixedly fitted on one end of the rotating shaft of each of the two spools on the same side. An integral connecting belt is fitted between the two connecting wheels. A worm gear is fixedly fitted on the other end of the rotating shaft of one of the spools. A servo motor electrically connected to the controller is installed at the top of the rinsing bath channel. A worm wheel meshing with the worm gear is fixedly fitted on the output shaft of the servo motor.
[0016] Furthermore, the lifting plate has a through-hole in the middle, and several evenly distributed rotating rods corresponding to the through-hole are vertically rotatably mounted on the bottom wall inside the bath box. A brush is fixed to the top of each rotating rod, and a sprocket is fixedly fitted on each rotating rod. An integral chain is fitted on each sprocket. A second servo motor electrically connected to the controller is located below the bath box, and the output end of the second servo motor is fixed to the bottom end of one of the outermost rotating rods.
[0017] Furthermore, several evenly distributed and vertically arranged guide rods are fixed on the bottom wall inside the bath box, and the lifting plate is movably sleeved on several of the guide rods.
[0018] Compared with the prior art, the beneficial effects of this utility model are:
[0019] 1. This solution features a rinsing mechanism in the first half of the rinsing bath channel. A water collection pipe, fixed in an inverted "U" shape to the inner wall of the channel, and evenly distributed spray nozzles allow for a thorough rinse from the top and sides of the livestock, effectively removing dirt and dust. In the second half of the rinsing bath mechanism, a lifting plate, in conjunction with a brush at the top of a rotating rod at the bottom of the bath box, can scrub key areas such as the livestock's abdomen, ensuring complete cleanliness without any blind spots. This thoroughly removes dirt and parasites, improving the cleanliness of the livestock's body and promoting their healthy growth.
[0020] 2. This solution utilizes inclined auxiliary plates at both ends of the rinsing and bathing channel to facilitate the smooth entry and exit of livestock, reducing their panic and struggle during entry and exit. During the bathing process, the lifting plate rises and falls smoothly with the assistance of the guide rod. In conjunction with the lifting components consisting of the reel and the hanging rope, the position of the livestock during the bath is precisely controlled, keeping them stable and preventing them from moving around and getting injured, thus ensuring the smooth progress of the cleaning and bathing process.
[0021] 3. In this solution, the water tank is located directly below the rinsing bath channel, and the top is constructed with seepage holes. The rinsed water can flow into the water tank through the seepage holes. The water tank is equipped with a filter plate and a slag discharge port, which can effectively filter impurities. With the cooperation of components such as inlet pipe, outlet pipe and water pump, water resources can be recycled, saving water costs and conforming to the concept of environmentally friendly aquaculture.
[0022] 4. In this solution, a controller is installed on the outside of the rinsing and bathing channel, which is electrically connected to the water pump and servo motor 1 and servo motor 2. The staff only needs to operate the controller outside the channel to easily adjust the rinsing water pressure and volume, accurately control the lifting plate and the rotation of the brush, realize automated and intelligent operation, and one person can supervise the cleaning of multiple batches of livestock, reduce the intensity of manual labor and improve the efficiency of breeding work. Attached Figure Description
[0023] Figure 1 This is a three-dimensional structural diagram of the present invention;
[0024] Figure 2 This utility model Figure 1 A three-dimensional sectional view;
[0025] Figure 3 This utility model Figure 2 An enlarged view of structure A in the middle;
[0026] Figure 4 This is a three-dimensional structural diagram of some of the structures in this utility model;
[0027] Figure 5 This is a three-dimensional structural diagram of another part of the structure of this utility model;
[0028] Figure 6 This is a three-dimensional structural diagram of another aspect of the present invention.
[0029] In the diagram: 1. Flushing bath channel; 11. Supporting rod; 12. Auxiliary plate; 2. Flushing mechanism; 21. Water tank; 211. Drain hole; 212. Inlet pipe; 213. Outlet pipe; 214. Slag discharge port; 215. Filter plate; 22. Flushing assembly; 221. Water collection pipe; 222. Spray head; 223. Main pipe; 224. Water pump; 225. Suction pipe; 226. Connecting pipe; 227. Controller; 3. Medicated bath mechanism 31. Bath tank; 311. Inlet pipe; 312. Drain pipe; 313. Rotating rod; 314. Brush; 315. Sprocket; 316. Chain; 317. Servo motor II; 318. Guide rod; 32. Lifting plate; 321. Through hole; 33. Lifting assembly; 331. Winding drum; 332. Suspension rope; 333. Connecting wheel; 334. Connecting belt; 335. Worm gear; 336. Servo motor I; 337. Worm wheel. Detailed Implementation
[0030] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings.
[0031] This application provides a livestock rinsing and medicated bath brushing channel, primarily addressing the shortcomings of existing automatic rinsing and medicated bath devices. Some devices combine limited water spraying with simple brushing, incorporating neck-limiting devices and motor-driven combing rollers to clean the fur; others use a combination of side and top brushes for brushing and medicated bathing. While these methods reduce labor intensity and improve standardization, problems remain: incomplete cleaning and medicated bathing, with key areas such as the inner legs and lower abdomen becoming "dead zones" due to mechanical limitations, leading to the accumulation of dirt and parasites; poor limiting effect, causing livestock to easily move and struggle, interfering with the cleaning process, and even injuring themselves, thus affecting breeding efficiency. The following technical solution is provided, which will be discussed in conjunction with... Figures 1-6Please provide a detailed explanation:
[0032] The livestock rinsing and medicated bath brushing channel mainly includes a rinsing and medicated bath channel 1, a rinsing mechanism 2, and a medicated bath mechanism 3, wherein:
[0033] The bottom of the rinsing bath channel 1 is fixed with several evenly distributed support rods 11 to ensure that the entire channel structure is stable and can withstand the pressure brought by the frequent entry and exit of livestock. Both ends of the rinsing bath channel 1 are fixed with inclined auxiliary plates 12 for livestock to enter and exit the rinsing bath channel 1. The other end of the auxiliary plate 12 is placed on the ground to form a natural slope, guiding livestock to enter and exit the channel smoothly and easily, effectively reducing the panic and resistance of livestock during the entry and exit process. It should be noted that the top side of the auxiliary plate 12 is provided with anti-slip texture, which can make livestock enter the interior of the rinsing bath channel 1 safely.
[0034] The rinsing mechanism 2 is located in the front half of the rinsing bath channel 1 and is used to clean the livestock's body;
[0035] The medicated bathing mechanism 3 is located in the rear half of the rinsing medicated bathing channel 1 and is used to medicate bathe livestock.
[0036] Through the above design and operation process, this utility model achieves comprehensive cleaning of livestock. Whether it is the top, sides or the easily overlooked abdomen, all areas can be effectively treated through the rationally arranged rinsing and medicated bath components, completely solving the problem of incomplete cleaning by traditional devices. On the other hand, the precise limiting design, from guiding the livestock in and out of the passage to the stable control of the lifting plate 32 during the medicated bath, greatly reduces the livestock's movement and struggle during the cleaning process, avoids livestock injury, and ensures the efficient progress of the cleaning process.
[0037] In this embodiment, please refer to Figure 2 , Figure 4 and Figure 6The rinsing mechanism 2 includes a water tank 21 and a rinsing assembly 22. The water tank 21 is located directly below the rinsing bath channel 1. The bottom of the front half of the rinsing bath channel 1 has an installation opening, and the top of the water tank 21 is located inside the installation opening. The top of the water tank 21 is flush with the bottom of the rinsing bath channel 1. From a structural stability perspective, the tight fit makes the water tank 21 and the rinsing bath channel 1 an organic whole. When subjected to the vibration and pressure caused by frequent entry and exit of livestock, they work together to ensure the overall structural stability and prevent problems such as loosening or displacement. The top structure has several evenly distributed seepage holes 211. Water rinsed by the rinsing component 22 flows back into the water tank 21 through the seepage holes 211 for recycling, while intercepting dirt and feces. The water tank 21 is equipped with an inlet pipe 212 and an outlet pipe 213. The inlet pipe 212 can be connected to an external water source to facilitate timely replenishment of water when the water in the water tank 21 is insufficient, ensuring the continuity of rinsing work. The outlet pipe 213 can be used when the water tank 21 needs to be deeply cleaned, the water changed, or excess water is drained, flexibly meeting the water needs of different scenarios.
[0038] Furthermore, the rinsing assembly 22 includes several evenly arranged water collection pipes 221. The water collection pipes 221 are inverted "U" shape and fixed to the inner wall of the rinsing bath channel 1. Several evenly distributed water spray heads 222 are installed on the inner wall of the water collection pipes 221. The inverted "U" shape can fully cover the top and sides of the space where the livestock are located in the first half of the rinsing bath channel 1, ensuring no rinsing dead corners. When the livestock enters the rinsing area, the several evenly distributed water spray heads 222 installed on the inner wall of the water collection pipes 221 can evenly disperse the water flow and impact the livestock's body surface from all angles, powerfully washing away dirt and dust, including mud stains on the livestock's back. The debris on both sides can be effectively removed. Several water collection pipes 221 are connected by an integrated main pipe 223. The flushing assembly 22 also includes a water pump 224 installed on one side of the water tank 21. The water inlet end of the water pump 224 is equipped with a suction pipe 225, and the other end of the suction pipe 225 extends into the interior of the water tank 21. The water outlet end of the water pump 224 is equipped with a connecting pipe 226 that is connected to the main pipe 223. A controller 227 that is electrically connected to the water pump 224 is installed on the outside of the flushing bath channel 1. It should be noted that in this embodiment, the water pump 224 is of type QH-HL and the controller 227 is PIXSYS ATR227-11ABC.
[0039] In actual operation, staff only need to operate the controller 227, which is electrically connected to the water pump 224, from the outside of the rinsing bath channel 1 to easily control the rinsing process. The power of the water pump 224 can be flexibly adjusted according to the degree of dirtiness and the difference in species of livestock, thereby changing the water pressure and water volume of the spray head 222. For example, for livestock with more dirt on their body surface and thick hair, the power of the water pump 224 can be appropriately increased to enhance the rinsing effect; for younger livestock with delicate skin, the power can be reduced to avoid injury.
[0040] The powerful and even rinsing ability ensures that the livestock are thoroughly cleaned, effectively improving the cleaning quality and laying a good foundation for the subsequent medicated bath. This avoids the effect of medicated bath on prevention and treatment due to incomplete cleaning in the early stage. Secondly, the convenient operation method greatly reduces the intensity of manual labor. One staff member can manage multiple sets of rinsing equipment at the same time, which greatly improves work efficiency and adapts to the development trend of large-scale and intensive farming.
[0041] To further improve resource utilization, please refer to Figure 2 and Figure 6 A slag discharge port 214 is constructed on one of the vertical sides of the water tank 21. A filter plate 215 is fixedly connected between the inner walls of the water tank 21. The bottom side of the filter plate 215 is flush with the slag discharge port 214. The fine filter structure of the filter plate 215 can effectively intercept various impurities carried in the water flowing back to the water tank 21 from the rinsing bath channel 1 through the seepage hole 211, such as hair washed off the surface of livestock, soil particles, and residual feces. The existence of the slag discharge port 214 provides a convenient channel for cleaning these intercepted impurities.
[0042] For details, please refer to Figure 2 , Figure 3 , Figure 5 and Figure 6 The medicated bath mechanism 3 includes a medicated bath tank 31 located in the rear half of the medicated bath rinsing channel 1. The medicated bath tank 31 is equipped with an inlet pipe 311 and a drain pipe 312. The inlet pipe 311 serves as a key channel for inputting the medicated solution, allowing precise connection to an external medicated bath solution storage device. This facilitates the preparation and injection of medicated bath solutions of appropriate concentrations according to different livestock species and health conditions. The drain pipe 312 facilitates the discharge of waste liquid after the medicated bath, ensuring a clean environment inside the medicated bath tank 31 for future use. The medicated bath rinsing channel 1... The bottom structure has a device opening and the top of the bath box 31 is fixed to the device opening. The inside of the bath box 31 is movably equipped with a lifting plate 32. The lifting plate 32 can be raised to be flush with the device opening. The bathing mechanism 3 also includes a lifting component 33 for controlling the lifting of the lifting plate 32. After the livestock completes the first half of the washing, it can naturally and smoothly transition to the lifting plate 32 and enter the bathing stage without any obstruction. The lifting component 33 controls the lifting plate 32 to descend, and the livestock moves into the inside of the bath box 31 for bathing.
[0043] Furthermore, the lifting assembly 33 includes two reels 331 mounted on top of the rinsing bath channel 1, symmetrically distributed. Two suspension ropes 332 are wound around each reel 331, with the ends of the ropes 332 extending through the rinsing bath channel 1 and fixed to the top of the lifting plate 32. The four suspension ropes 332 are arranged in a rectangular pattern. This multi-point connection and symmetrical force-bearing design ensures the stability of the lifting plate 32 during lifting, preventing tilting and swaying, and preventing livestock from being startled or injured due to imbalance. A connecting wheel 333 is fixedly fitted onto one end of the rotating shaft on the same side of each of the two reels 331, and an integral connecting belt 3 is fitted between the two connecting wheels 333. 34. To achieve synchronous rotation of the two winding drums 331, a worm gear 335 is fixed to the other end of the shaft of one of the winding drums 331. A servo motor 336 electrically connected to the controller 227 is installed at the top of the rinsing bath channel 1. A worm wheel 337 that meshes with the worm gear 335 is fixedly sleeved on the output shaft of the servo motor 336. When a medicated bath is required, the servo motor 336 electrically connected to the controller 227 receives a command and starts, driving the worm wheel 337 to rotate, which in turn drives the worm gear 335 to rotate the winding drum 331. The lifting plate 32 is pulled by the suspension rope 332 to accurately descend to the specified depth in the medicated bath box 31, ensuring that the livestock can be fully immersed in the medicated bath solution.
[0044] The lifting plate 32 has a through-hole 321 in its central structure. Several evenly distributed rotating rods 313, corresponding to the through-hole 321, are vertically mounted on the bottom wall inside the bathing tank 31. A brush 314 is fixed to the top of each rotating rod 313, ensuring that the brush 314 can accurately contact the animal's abdomen—a crucial cleaning area—during the bathing process. Each rotating rod 313 is fitted with a sprocket 315, and each sprocket 315 is fitted with an integrated chain 316, forming a highly efficient and coordinated transmission system. A connection to the controller 22 is located below the bathing tank 31. The second servo motor 317 is electrically connected to the bottom of one of the outermost rotating rods 313. When the second servo motor 317, which is electrically connected to the controller 227 below the bath tank 31, is started, its output end drives the bottom of the outermost rotating rod 313 fixed to it to rotate. With the help of the transmission of the sprocket 315 and the chain 316, all the rotating rods 313 will rotate synchronously, so that the brush 314 can brush the animal's abdomen in an all-round and thorough manner. It should be noted that in this embodiment, the first servo motor 336 and the second servo motor 317 are both of the RC2 / -B type.
[0045] Meanwhile, several evenly distributed and vertically arranged guide rods 318 are fixed on the bottom wall inside the bath box 31. The lifting plate 32 is movably sleeved on several guide rods 318, providing precise guidance for the lifting and lowering of the lifting plate 32 and improving the stability of the lifting plate 32.
[0046] The following are the operating procedures for this device:
[0047] First, carefully prepare and inject the bath solution of just the right concentration through the inlet pipe 311 on the bath tank 31, and at the same time check the water level in the water tank 21.
[0048] Next, the livestock are guided to walk along the inclined auxiliary plates 12 with anti-slip textures at both ends of the rinsing bath channel 1 into the first half of the channel. At this time, the staff outside the channel press the start button by operating the controller 227 which is electrically connected to the water pump 224. The rinsing program is then started, and the water pump 224 starts operating quickly. Several spray heads 222 spray water onto the livestock. After rinsing, the water flows back into the water tank 21 through the seepage hole 211. During this process, the filter plate 215 on the inner wall of the water tank 21 intercepts all the impurities such as hair, dirt particles, and residual feces washed off the livestock's body, making the water flowing back into the water tank relatively clean and successfully realizing the recycling of water resources.
[0049] After the livestock finishes the first half of the rinsing, they are transferred to the lifting plate 32 above the medicated bath tank 31. At this time, the lifting plate 32 is at its highest position, level with the device opening. The staff then activates the servo motor 336 via the controller 227. The output shaft of the servo motor 336 drives the worm gear 337, which is fixedly mounted to it, to rotate. Since the worm gear meshes with the worm 335 fixed to the shaft of one of the winding drums 331, the two winding drums 331 rotate synchronously. The four ropes 332, which are arranged in a rectangular pattern on the winding drums and whose ends are fixed to the top of the lifting plate 32, begin to pull the lifting plate 32, accurately lowering it to the designated depth inside the medicated bath tank 31, ensuring that the livestock can comfortably and fully immerse themselves in the medicated bath solution. Immediately afterwards, the staff... The servo motor 317 is started again by the controller 227. The output of the servo motor 317 drives the bottom of the outermost rotating rod 313 fixed to it to rotate. With the help of the transmission of the sprocket 315 and the chain 316, several evenly distributed rotating rods 313, which are vertically mounted on the bottom wall of the bath box 31 and are directly corresponding to the opening 321 of the lifting plate 32, rotate synchronously. The brush 314 fixed at the top of the rotating rod 313 begins to brush the animal's abdomen in an all-round and thorough manner. After the predetermined bath time is reached, the staff controls the servo motor 336 to reverse through the controller 227, which drives the lifting plate 32 to rise to the same level as the opening of the device. The animal then walks out of the bath box 31 with ease. At this point, the entire bath process is completed.
[0050] The livestock exit the rinsing and medicated bath channel 1 through the auxiliary board 12, and the staff proceeds with the rinsing and medicated bath work for the next livestock.
[0051] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.
Claims
1. Livestock rinsing medicated bath brushing passage, comprising a rinsing medicated bath passage (1), a rinsing mechanism (2) and a medicated bath mechanism (3), characterized in that, Wherein: The bottom of the flushing medicinal bath channel (1) is fixed with a plurality of uniformly distributed bearing rods (11), both ends of the flushing medicinal bath channel (1) are fixed with auxiliary plates (12) which are arranged obliquely and used for livestock to enter and exit the flushing medicinal bath channel (1), the other end of the auxiliary plate (12) is arranged on the ground; The flushing mechanism (2) is arranged at the front half of the flushing medicinal bath channel (1) and used for cleaning the body of the livestock; The medicinal bath mechanism (3) is arranged at the rear half of the flushing medicinal bath channel (1) and used for medicinal bath of livestock, the medicinal bath mechanism (3) comprises a medicinal bath box (31) arranged directly below the flushing medicinal bath channel (1), the medicinal bath box (31) is provided with a liquid inlet pipe (311) and a liquid outlet pipe (312), the bottom of the flushing medicinal bath channel (1) is structured with a device opening and the top end of the medicinal bath box (31) is fixed on the device opening, a lifting plate (32) is movably arranged in the medicinal bath box (31), the lifting plate (32) can be lifted to be flush with the device opening, the medicinal bath mechanism (3) further comprises a lifting assembly (33) used for controlling lifting of the lifting plate (32).
2. The livestock flush bath brush-off tunnel of claim 1, wherein: The flushing mechanism (2) comprises a water tank (21) and a flushing assembly (22), the water tank (21) is arranged directly below the flushing medicinal bath channel (1), the bottom of the front half of the flushing medicinal bath channel (1) is structured with a mounting opening and the top of the water tank (21) is located in the inside of the mounting opening, the top of the water tank (21) is flush with the bottom of the flushing medicinal bath channel (1), the top of the water tank (21) is structured with a plurality of uniformly distributed water permeation holes (211), the water tank (21) is provided with a water inlet pipe (212) and a water outlet pipe (213).
3. The livestock flush bath brush-off tunnel of claim 2, wherein: The flushing assembly (22) comprises a plurality of uniformly arranged water collecting pipes (221), the water collecting pipe (221) is in inverted "U" shape and fixed on the inner wall of the flushing medicinal bath channel (1), a plurality of uniformly distributed water spraying heads (222) are mounted on the inner wall of the water collecting pipe (221), an integrated main pipe (223) is connected between a plurality of water collecting pipes (221), the flushing assembly (22) further comprises a water pump (224) arranged on one side of the water tank (21), a water suction pipe (225) is mounted on the water inlet end of the water pump (224), the other end of the water suction pipe (225) penetrates into the inside of the water tank (21), a connecting pipe (226) in communication with the main pipe (223) is mounted on the water outlet end of the water pump (224), a controller (227) electrically connected with the water pump (224) is mounted on the outside of the flushing medicinal bath channel (1).
4. The livestock flush bath brush-off tunnel of claim 3, wherein: One of the vertical sides of the water tank (21) is structured with a residue discharge opening (214), a filter plate (215) is fixedly connected between the inner walls of the water tank (21), the filter plate (215) is flush with the bottom side of the residue discharge opening (214).
5. The livestock flush bath brush-off tunnel of claim 3, wherein: The lifting assembly (33) comprises two winding drums (331) arranged on the top of the washing bath channel (1), two hanging ropes (332) are arranged on the winding drums (331), the ends of the hanging ropes (332) are movably penetrated through the washing bath channel (1) and are fixed to the top of the lifting plate (32), the four hanging ropes (332) are arranged in a rectangular shape, a linkage wheel (333) is fixed to one end of the same side of the rotating shaft of the two winding drums (331), an integrated linkage belt (334) is arranged between the two linkage wheels (333), a worm (335) is fixed to the other end of the rotating shaft of one of the winding drums (331), a servo motor (336) electrically connected with the controller (227) is arranged on the top of the washing bath channel (1), and a worm wheel (337) engaged with the worm (335) is fixed to the output shaft of the servo motor (336).
6. The livestock flush bath brushing tunnel of claim 5, wherein: A through hole (321) is arranged in the middle of the lifting plate (32), a plurality of rotating rods (313) uniformly arranged and corresponding to the through hole (321) are vertically arranged on the bottom wall of the inside of the bath box (31), a brush (314) is fixed to the top end of the rotating rod (313), a chain wheel (315) is fixed to the rotating rod (313), and an integrated chain (316) is arranged on the chain wheels (315), a servo motor (317) electrically connected with the controller (227) is arranged below the bath box (31), and the output end of the servo motor (317) is fixed to the bottom end of one of the most edge rotating rods (313).
7. The livestock flush bath brush-off tunnel of claim 6, wherein: A plurality of guide rods (318) are fixed to the bottom wall of the inside of the bath box (31) and are arranged in a vertical direction, and the lifting plate (32) is movably arranged on the guide rods (318).