Lamb breeding disinfection cleaning device
By designing cleaning, flushing and disinfection components that automatically adjust the spray angle and direction, the problem of low cleaning efficiency of manual handheld spray heads in the prior art is solved, and automated cleaning, flushing and disinfection is realized, and working efficiency is improved.
Patent Information
- Application Number
- CN202421195566.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-05-29
- Publication Date
- 2025-06-10
- Estimated Expiration
- 2034-05-29
AI Technical Summary
The existing lamb breeding disinfection cleaners require manual hand-held spray heads for cleaning, which is inconvenient to automatically adjust the spray angle and spray range of the spray heads, resulting in a decrease in cleaning efficiency.
A lamb breeding disinfection cleaner including support components, cleaning components, flush components and disinfection components is designed. Automatic cleaning, flush and disinfection are achieved by setting the cleaning components, flush components and disinfection components into structures that can automatically adjust the spray angle and direction.
Without manual adjustment, the automated cleaning, rinsing and disinfection process greatly improves work efficiency and reduces the time and energy of manual operation.
Smart Images

Figure CN222954636U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of cleaners, in particular to a disinfection and cleaning device for lamb breeding. Background Art
[0002] Lambs refer to young sheep, especially those under one year old or without permanent teeth. The young of goats, ibexes, and antelopes are sometimes also called lambs. Lamb meat is tender, delicious, and rich in nutrition, with certain tonic effects. Lamb meat contains various nutrients such as protein, fat, vitamins, and minerals. Among them, the protein content is relatively high and is easy to digest and absorb, which helps to enhance the body's immunity and promote good health. Lamb pens are narrow, crowded, dirty, damp, invaded by cold winds, and seriously polluted, which can all cause a large number of lamb diseases. In order to do a good job in cleaning and reduce the occurrence of diseases, it is necessary to regularly disinfect and clean lamb farms. A disinfection and cleaning device for lamb breeding is a device specifically designed for disinfecting and cleaning lamb farms. Existing disinfection and cleaning devices for lamb breeding usually require manual holding of a spray head to clean lamb breeding sites, which is not convenient for automatically adjusting the spraying angle and spraying range of the spray head, resulting in a decrease in cleaning efficiency. Content of the Utility Model
[0003] In order to overcome the problem that existing disinfection and cleaning devices for lamb breeding usually require manual holding of a spray head to clean lamb breeding sites, which is not convenient for automatically adjusting the spraying angle and spraying range of the spray head, resulting in a decrease in cleaning efficiency.
[0004] The technical solution of the utility model is as follows: A disinfection and cleaning device for lamb breeding includes a support assembly, a cleaning assembly, a flushing assembly, and a disinfection assembly. A cleaning assembly for cleaning the lamb breeding farm with a cleaning agent is arranged at the upper left part of the support assembly. A flushing assembly for flushing the wall or floor after being cleaned with the cleaning agent with clean water is arranged at the upper right part of the support assembly. A disinfection assembly for disinfecting and sterilizing the lamb breeding farm after being cleaned is arranged in the middle of the upper end of the support assembly.
[0005] Preferably, by setting the cleaning component, the rinsing component, and the disinfection component, they can be respectively used for cleaning, rinsing, and disinfecting the lamb breeding site. And by setting the cleaning component, the rinsing component, and the disinfection component into structures that can automatically adjust the spraying angle and direction, it can automatically clean, rinse, and disinfect the lamb breeding site without manual adjustment, which is more time-saving and labor-saving, and has higher work efficiency. By setting the cleaning component, the cleaning agent can be sprayed on the lamb breeding site for cleaning. By setting the cleaning component, the rinsing component, and the disinfection component, they can be respectively used for cleaning, rinsing, and disinfecting the lamb breeding site. And by setting the cleaning component, the rinsing component, and the disinfection component into structures that can automatically adjust the spraying angle and direction, it can automatically clean, rinse, and disinfect the lamb breeding site without manual adjustment, which is more time-saving and labor-saving, and has higher work efficiency. By setting the cleaning component, the cleaning agent can be sprayed on the lamb breeding site for cleaning. By setting the disinfection component, the disinfected solution can be sprayed on the lamb breeding site after cleaning to perform sterilization and disinfection.
[0006] Preferably, the support component includes a support plate, a turntable, a base, a first driving motor, support columns, and rollers. Above the base, there is a support plate for support. Between the support plate and the base, there is a turntable for rotation. In the middle of the lower end of the base, there is a first driving motor for driving the turntable to rotate. The first driving motor is provided with an output shaft. The output shaft of the first driving motor passes through the lower end of the base and extends to the upper end to drive the turntable to rotate. At the lower end of the base, two groups of support columns for supporting the base are symmetrically provided. At the lower end of the support columns, two groups of rollers for rolling forward are symmetrically provided. By setting the first driving motor to drive the turntable to rotate, the turntable can drive the support plate to rotate, and then drive the cleaning component, the rinsing component, and the disinfection component above to rotate to achieve multi-directional spraying.
[0007] Preferably, the cleaning component includes a first water tank, a first water inlet pipe, a first water pressure controller, a first spray plate, a first spray head, a first connecting pipe, a support frame, a first connecting block, a second driving motor, and a fourth water inlet pipe. A first water pressure controller for controlling the water pressure is provided at the front part of the upper end of the first water tank. A first water inlet pipe for introducing a cleaning agent is provided at the side of the rear part of the upper end of the first water tank. A fourth water inlet pipe for introducing water extends forward along the first water inlet pipe. The first spray plate is communicated with the first water tank through the first connecting pipe. Control valves for controlling the entry and exit of the cleaning agent are provided on the outer sides of the connections between the first connecting pipe and the first water inlet pipe and the first water tank. The first spray plate is rotatably connected to the first connecting block through the support frame. A plurality of groups of first spray heads for spraying the cleaning agent are evenly arranged at one end of the first spray plate away from the support frame. The second driving motor is provided with an output shaft. The output shaft of the second driving motor passes through the outer side of the first connecting block and extends to the inner side to drive the support frame to drive the first spray plate to rotate. Control valves for controlling the entry and exit of the cleaning agent are provided on the outer sides of the connections between the first water inlet pipe, the fourth water inlet pipe, and the first connecting pipe and the first water tank. By setting the second driving motor to drive the support frame to rotate, the support frame can drive the first spray plate to rotate to adjust the spraying angle of the first spray head to adjust the spraying range.
[0008] Preferably, the rinsing component includes a second water tank, a second water inlet pipe, a second water pressure controller, a second spray plate, a second spray head, a second connecting block, a swing arm, a third connecting block, a third driving motor, and a second connecting pipe. A second water inlet pipe for introducing water is provided at the side of the upper end of the second water tank. A second water pressure controller for controlling the water pressure is provided at the rear part of the upper end of the second water tank. The second spray plate is communicated with the second water tank through the second connecting pipe. The second spray plate is rotatably connected to the swing arm through the second connecting block. The second connecting block and the third connecting block are rotatably connected through the swing arm. By setting the second connecting block, the swing arm, and the third connecting block to be rotatably connected, the second spray plate can be driven to rotate synchronously during the rotation process to adjust the spraying angle of the second spray head.
[0009] Preferably, third driving motors for driving the swing arm and the second connecting block to rotate are provided on the outer sides of the second connecting block and the third connecting block. The third driving motor is provided with an output shaft. The output shafts of the two third driving motors pass through the outer sides of the second connecting block and the second connecting block respectively to drive the second connecting block and the swing arm to rotate. Three groups of second spray heads for spraying water are evenly arranged at one end of the second spray plate away from the second connecting block. Control valves for controlling the entry and exit of water are provided on the outer sides of the connections between the second water inlet pipe and the second connecting pipe and the second water tank. By setting the two third driving motors, the swing arm and the second connecting block can be driven to rotate to adjust the position and spraying angle of the second spray head, so as to spray water at different positions to wash the cleaning agent and residual stains clean.
[0010] Preferably, the disinfection component includes a third water tank, a third water pressure controller, a third water inlet pipe, a telescopic cylinder, an electric push rod, a transfer tank, a connector, a third spray head, a fourth spray head, and a third connecting pipe. In the middle of the upper end of the third water tank, there is a telescopic cylinder for controlling the up and down movement of the electric push rod. The telescopic cylinder is adjustably connected to the connector through the electric push rod. At the upper end of the connector, there is a transfer tank for transferring water flow. Around the side of the transfer tank, there are multiple groups of third spray heads for spraying disinfectant. Around the upper end side of the transfer tank, there are multiple groups of fourth spray heads for spraying disinfectant. By setting the telescopic cylinder to control the electric push rod to drive the third spray head and the fourth spray head to move up and down to adjust their heights, the spraying range can be adjusted by changing the height.
[0011] Preferably, the connector is communicated with the third water tank through the third connecting pipe. At the front part of the upper end of the third water tank, there is a third water pressure controller for controlling the hydraulic pressure. At the side of the upper end of the third water tank, there is a third water inlet pipe for introducing disinfectant. On the outer sides of the joints of the third water inlet pipe and the third connecting pipe with the third water tank, there are control valves for controlling the entry and exit of disinfectant.
[0012] The beneficial effects of the present utility model are as follows:
[0013] 1. Compared with traditional lamb breeding disinfection and cleaning devices, which usually require manual holding of the spray head to clean the lamb breeding site, it is not convenient to automatically adjust the spraying angle and range of the spray head, resulting in a decrease in cleaning efficiency. By setting the cleaning component, flushing component, and disinfection component, they can be respectively used for cleaning, flushing, and disinfecting the lamb breeding site. And by setting the cleaning component, flushing component, and disinfection component into structures that can automatically adjust the spraying angle and direction, it can automatically clean, flush, and disinfect the lamb breeding site without manual adjustment, saving time and effort and having higher work efficiency. By setting the cleaning component, the cleaning agent can be sprayed on the lamb breeding site to clean it. By setting the second driving motor, the support frame can be driven to rotate, so that the support frame can drive the first spray plate to rotate to adjust the spraying angle of the first spray head to adjust the spraying range. By setting the flushing component, the cleaning agent left after the cleaning by the cleaning component can be flushed clean. By evenly arranging three groups of second spray heads, water can be sprayed evenly. By setting two groups of third driving motors, the swing arm and the second connecting block can be driven to rotate to adjust the position and spraying angle of the second spray head, so as to realize spraying water at different positions to flush the cleaning agent and residual stains clean.
[0014] 2. By setting up a disinfection component, the lamb breeding site after cleaning can be sprayed with disinfectant for sterilization and disinfection. By arranging multiple groups of third nozzles around the side of the transfer tank, the water pressure can be used to drive the transfer tank to rotate, so that the transfer tank can drive the third nozzles and the fourth nozzles to rotate and spray disinfectant during the rotation process. Spraying disinfectant in a circumferential rotation manner can make the spraying more uniform. By setting up a telescopic cylinder, the electric push rod can be controlled to drive the third nozzles and the fourth nozzles to move up and down to adjust their heights, so as to adjust the spraying range by changing the height. By setting up a first driving motor on the support component, the turntable can be driven to rotate, so that the turntable can drive the support plate to rotate to drive the cleaning component, the flushing component and the disinfection component above to rotate to achieve multi-directional spraying. By setting up a first water pressure controller, a second water pressure controller and a third water pressure controller, they can be used to control the hydraulic pressure of the cleaning component, the flushing component and the disinfection component respectively, so that corresponding adjustments can be made according to different usage requirements. The cleaning component, the flushing component and the disinfection component that can automatically adjust for cleaning, flushing and disinfection are more time-saving and labor-saving than manual operation, and can greatly improve the cleaning efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 Shows the overall schematic diagram of the lamb breeding disinfection and cleaning device of the present utility model;
[0016] Figure 2 Shows the schematic diagram of the support component in the lamb breeding disinfection and cleaning device of the present utility model;
[0017] Figure 3 Shows the schematic diagram of the cleaning component in the lamb breeding disinfection and cleaning device of the present utility model;
[0018] Figure 4 Shows the schematic diagram of the flushing component in the lamb breeding disinfection and cleaning device of the present utility model;
[0019] Figure 5 Shows the schematic diagram of the disinfection component in the lamb breeding disinfection and cleaning device of the present utility model.
[0020] Description of the reference numerals: 1, support assembly; 2, cleaning assembly; 3, rinsing assembly; 4, disinfection assembly; 101, support plate; 102, turntable; 103, base; 104, first driving motor; 105, support column; 106, roller; 201, first water tank; 202, first water inlet pipe; 203, first water pressure controller; 204, first spray plate; 205, first spray head; 206, first connecting pipe; 207, support frame; 208, first connecting block; 209, second driving motor; 210, fourth water inlet pipe; 301, second water tank; 302, second water inlet pipe; 303, second water pressure controller; 304, second spray plate; 305, second spray head; 306, second connecting block; 307, swing arm; 308, third connecting block; 309, third driving motor; 310, second connecting pipe; 401, third water tank; 402, third water pressure controller; 403, third water inlet pipe; 404, telescopic cylinder; 405, electric push rod; 406, transfer tank; 407, connector; 408, third spray head; 409, fourth spray head; 410, third connecting pipe. Detailed implementation manners
[0021] The present utility model will be further described below in conjunction with the accompanying drawings and embodiments.
[0022] Please refer to Figure 1 , the present utility model provides an embodiment: a lamb breeding disinfection and cleaning device, including a support assembly 1, a cleaning assembly 2, a rinsing assembly 3 and a disinfection assembly 4. A cleaning assembly 2 for cleaning the lamb breeding farm with a cleaning agent is provided at the left part of the upper end of the support assembly 1. A rinsing assembly 3 for rinsing the wall or floor after being cleaned by the cleaning agent with clean water is provided at the right part of the upper end of the support assembly 1. A disinfection assembly 4 for sterilizing and disinfecting the lamb breeding farm after being cleaned is provided in the middle of the upper end of the support assembly 1.
[0023] Please refer to Figure 2, in this embodiment, the support assembly 1 includes a support plate 101, a turntable 102, a base 103, a first drive motor 104, support columns 105 and rollers 106. Above the base 103, there is a support plate 101 for support. Between the support plate 101 and the base 103, there is a turntable 102 for rotation. In the middle of the lower end of the base 103, there is a first drive motor 104 for driving the turntable 102 to rotate. The first drive motor 104 is provided with an output shaft, and the output shaft of the first drive motor 104 passes through the lower end of the base 103 and extends to the upper end to drive the turntable 102 to rotate. On the lower end of the base 103, there are symmetrically arranged two groups of support columns 105 for supporting the base 103. At the lower ends of the support columns 105, there are symmetrically arranged two groups of rollers 106 for rolling forward. By setting the first drive motor 104 to drive the turntable 102 to rotate, the turntable 102 can drive the support plate 101 to rotate, thereby driving the upper cleaning assembly 2, rinsing assembly 3 and disinfection assembly 4 to rotate to achieve multi-directional spraying.
[0024] Please refer to Figure 3 , in this embodiment, the cleaning assembly 2 includes a first water tank 201, a first water inlet pipe 202, a first water pressure controller 203, a first spray plate 204, first nozzles 205, a first connecting pipe 206, a support frame 207, a first connecting block 208, a second drive motor 209 and a fourth water inlet pipe 210. At the front part of the upper end of the first water tank 201, there is a first water pressure controller 203 for controlling the water pressure. At the rear side of the upper end of the first water tank 201, there is a first water inlet pipe 202 for introducing cleaning agent. Forward along the first water inlet pipe 202, there is a fourth water inlet pipe 210 for introducing water. The first spray plate 204 is communicated with the first water tank 201 through the first connecting pipe 206. On the outer sides of the joints of the first connecting pipe 206 and the first water inlet pipe 202 with the first water tank 201, there are control valves for controlling the inlet and outlet of the cleaning agent. The first spray plate 204 is rotatably connected to the first connecting block 208 through the support frame 207. At one end of the first spray plate 204 away from the support frame 207, there are evenly arranged multiple groups of first nozzles 205 for spraying the cleaning agent. The second drive motor 209 is provided with an output shaft, and the output shaft of the second drive motor 209 passes through the outer side of the first connecting block 208 and extends to the inner side to drive the support frame 207 to drive the first spray plate 204 to rotate. On the outer sides of the joints of the first water inlet pipe 202, the fourth water inlet pipe 210 and the first connecting pipe 206 with the first water tank 201, there are control valves for controlling the inlet and outlet of the cleaning agent. By setting the second drive motor 209 to drive the support frame 207 to rotate, the support frame 207 can drive the first spray plate 204 to rotate to adjust the spraying angle of the first nozzles 205 to adjust the spraying range.
[0025] Please refer to Figure 4In this embodiment, the flushing assembly 3 includes a second water tank 301, a second water inlet pipe 302, a second water pressure controller 303, a second spray plate 304, second spray nozzles 305, a second connecting block 306, a swing arm 307, a third connecting block 308, a third driving motor 309, and a second connecting pipe 310. A second water inlet pipe 302 for introducing water is provided at the upper edge side of the second water tank 301. A second water pressure controller 303 for controlling the water pressure magnitude is provided at the rear part of the upper end of the second water tank 301. The second spray plate 304 is communicated with the second water tank 301 through the second connecting pipe 310. The second spray plate 304 is rotatably connected to the swing arm 307 through the second connecting block 306. The second connecting block 306 and the third connecting block 308 are rotatably connected through the swing arm 307. By setting the second connecting block 306, the swing arm 307, and the third connecting block 308 to be rotatably connected, the second spray plate 304 can be driven to rotate synchronously during the rotation process to adjust the spraying angle of the second spray nozzles 305. Third driving motors 309 for driving the swing arm 307 and the second connecting block 306 to rotate are provided on the outer sides of the second connecting block 306 and the third connecting block 308. Output shafts are provided on the third driving motors 309. The output shafts of the two groups of third driving motors 309 respectively pass through the outer sides of the second connecting block 306 and the second connecting block 306 to drive the second connecting block 306 and the swing arm 307 to rotate. Three groups of second spray nozzles 305 for spraying water are evenly arranged at one end of the second spray plate 304 away from the second connecting block 306. Control valves for controlling the water inlet and outlet are provided on the outer sides of the joints of the second water inlet pipe 302 and the second connecting pipe 310 with the second water tank 301. By providing two groups of third driving motors 309, the swing arm 307 and the second connecting block 306 can be driven to rotate to adjust the position and spraying angle of the second spray nozzles 305, so as to realize spraying water at different positions to wash the cleaning agent and residual stains clean.
[0026] Please refer to Figure 5In this embodiment, the disinfection component 4 includes a third water tank 401, a third water pressure controller 402, a third water inlet pipe 403, a telescopic cylinder 404, an electric push rod 405, a transfer tank 406, a connector 407, a third spray head 408, a fourth spray head 409 and a third connecting pipe 410. In the middle of the upper end of the third water tank 401, there is a telescopic cylinder 404 for controlling the up and down movement of the electric push rod 405. The telescopic cylinder 404 is adjustably connected to the connector 407 through the electric push rod 405. At the upper end of the connector 407, there is a transfer tank 406 for transferring water flow. Multiple groups of third spray heads 408 for spraying disinfectant are arranged around the side of the transfer tank 406. Multiple groups of fourth spray heads 409 for spraying disinfectant are arranged around the upper side of the transfer tank 406. By setting the telescopic cylinder 404 to control the electric push rod 405 to drive the third spray head 408 and the fourth spray head 409 to move up and down to adjust their heights, the spraying range can be adjusted by changing the height. The connector 407 is communicated with the third water tank 401 through the third connecting pipe 410. At the front part of the upper end of the third water tank 401, there is a third water pressure controller 402 for controlling the hydraulic pressure. At the side of the upper end of the third water tank 401, there is a third water inlet pipe 403 for introducing disinfectant. Control valves for controlling the entry and exit of disinfectant are provided on the outer sides of the joints of the third water inlet pipe 403 and the third connecting pipe 410 with the third water tank 401.
[0027] When working, first, water and cleaning agent are respectively put into the first water tank 201 through the fourth water inlet pipe 210 and the first water inlet pipe 202 according to a certain ratio, and then water and disinfectant are respectively put into the second water tank 301 and the third water tank 401 through the second water inlet pipe 302 and the third water inlet pipe 403;
[0028] Then, the support component 1 is pushed to the corresponding location. First, the lamb breeding site is preliminarily cleaned by the cleaning component 2. The water pressure is adjusted to an appropriate size through the first water pressure controller 203. The control valve on the outer side of the first connecting pipe 206 is opened, and the cleaning agent is sprayed through the first spray head 205 to clean the lamb breeding site, and the spraying angle of the first spray head 205 is adjusted by driving the support frame 207 to rotate through the second drive motor 209;
[0029] After that, the residual cleaning agent and dirt on the cleaned breeding site are rinsed clean by the rinsing component 3. The water pressure is adjusted to an appropriate size through the second water pressure controller 303. Then, the control valve on the outer side of the second connecting pipe 310 is opened, and water is sprayed through the second spray head 305 for rinsing, and the spraying angle of the second spray head 305 is adjusted by driving the swing arm 307 and the second connecting block 306 to rotate through the third drive motor 309;
[0030] Finally, the disinfection component 4 is used to disinfect the cleaned breeding site. The hydraulic pressure is adjusted to an appropriate size through the third hydraulic pressure controller 402, and the control valve outside the third connecting pipe 410 is opened, so that the disinfectant flows along the third connecting pipe 410 through the connector 407 into the transfer tank 406, and then reaches the third spray head 408 and the fourth spray head 409. Under the action of the hydraulic pressure, the third spray head 408 drives the transfer tank 406 to rotate, so that the third spray head 408 and the fourth spray head 409 spray the disinfectant through rotation to disinfect the breeding site;
[0031] The telescopic cylinder 404 is used to control the electric push rod 405 to drive the third spray head 408 and the fourth spray head 409 to move up and down to adjust their heights, and the spraying range is adjusted by changing the heights;
[0032] During the operation of the cleaning component 2, the flushing component 3 and the disinfection component 4, the first driving motor 104 on the support component 1 drives the turntable 102 to rotate, so that the turntable 102 drives the support plate 101 to rotate to drive the upper cleaning component 2, the flushing component 3 and the disinfection component 4 to rotate to achieve multi-directional spraying.
[0033] Through the above steps, the staff first put water and cleaning agent into the first water tank 201 through the fourth water inlet pipe 210 and the first water inlet pipe 202 respectively according to a certain ratio, then put water and disinfectant into the second water tank 301 and the third water tank 401 through the second water inlet pipe 302 and the third water inlet pipe 403 respectively, and then push the support assembly 1 to push it to the corresponding location. First, use the cleaning assembly 2 to initially clean the lamb breeding site. Adjust the water pressure to an appropriate size through the first water pressure controller 203, open the control valve outside the first connecting pipe 206, spray the cleaning agent through the first spray head 205 to clean the lamb breeding site, and drive the support frame 207 to rotate through the second driving motor 209 to drive the first spray head 205 to adjust the spraying angle. Then, rinse the remaining cleaning agent and dirt on the breeding site after cleaning through the rinsing assembly 3. Adjust the water pressure to an appropriate size through the second water pressure controller 303, then open the control valve outside the second connecting pipe 310, spray water through the second spray head 305 for rinsing, and drive the swing arm 307 and the second connecting block 306 to rotate through the third driving motor 309 to drive the second spray head 305 to rotate to adjust the spraying angle. Finally, disinfect the cleaned breeding site through the disinfection assembly 4. Adjust the hydraulic pressure to an appropriate size through the third water pressure controller 402, open the control valve outside the third connecting pipe 410, so that the disinfectant flows along the third connecting pipe 410 through the connector 407 into the transfer tank 406, and then reaches the third spray head 408 and the fourth spray head 409. Under the action of water pressure, the third spray head 408 drives the transfer tank 406 to rotate, so that the third spray head 408 and the fourth spray head 409 spray the disinfectant by rotating to disinfect the breeding site, and control the electric push rod 405 to drive the third spray head 408 and the fourth spray head 409 to move up and down through the telescopic cylinder 404 to adjust their heights, and adjust the spraying range by changing the height. During the operation of the cleaning assembly 2, the rinsing assembly 3 and the disinfection assembly 4, drive the turntable 102 to rotate through the first driving motor 104 on the support assembly 1, so that the turntable 102 drives the support plate 101 to rotate to drive the upper cleaning assembly 2, rinsing assembly 3 and disinfection assembly 4 to rotate to achieve multi-directional spraying, avoiding the time-consuming and laborious manual adjustment. By setting the first water pressure controller 203, the second water pressure controller 303 and the third water pressure controller 402, they can be used to control the hydraulic pressure of the cleaning assembly 2, the rinsing assembly 3 and the disinfection assembly 4 respectively, so that corresponding adjustments can be made according to different usage requirements. The cleaning assembly 2, the rinsing assembly 3 and the disinfection assembly 4 that can automatically adjust the spraying angle and spraying range for cleaning, rinsing and disinfection are more time-saving and labor-saving than manual operation, can greatly improve the cleaning efficiency, and have a better cleaning effect than traditional cleaners.
[0034] The embodiments of the present utility model have been described in detail above in conjunction with the accompanying drawings. However, the present utility model is not limited to the above embodiments, and various changes can be made without departing from the gist of the present utility model within the scope of knowledge possessed by those skilled in the art.
Claims
1. A lamb breeding disinfection and cleaning device, comprising a support assembly (1); characterized in that: The invention also comprises a cleaning component (2), a flushing component (3) and a disinfection component (4); the cleaning component (2) for cleaning the lamb farm with a cleaning agent is provided at the left upper end of the support component (1); the flushing component (3) for flushing the wall or floor surface cleaned with the cleaning agent with clean water is provided at the right upper end of the support component (1); and the disinfection component (4) for sterilizing and disinfecting the lamb farm after being cleaned is provided at the middle upper end of the support component (1).
2. A lamb breeding disinfection and cleaning device according to claim 1, characterized in that: The support assembly (1) comprises a support plate (101), a turntable (102), a base (103), a first drive motor (104), a support column (105) and a roller (106); a support plate (101) for supporting is arranged above the base (103); a turntable (102) for rotating is arranged between the support plate (101) and the base (103); a first drive motor (104) for driving the turntable (102) to rotate is arranged at the middle of the lower end of the base (103); an output shaft is arranged on the first drive motor (104); the output shaft of the first drive motor (104) passes through the lower end of the base (103) and extends to the upper end to drive the turntable (102) to rotate; two groups of support columns (105) for supporting the base (103) are symmetrically arranged at the lower end of the base (103); and two groups of rollers (106) for rolling forward are symmetrically arranged at the lower end of the support column (105).
3. The lamb breeding disinfection and cleaning device according to claim 1, characterized in that: The cleaning component (2) comprises a first water tank (201), a first water inlet pipe (202), a first water pressure controller (203), a first spray plate (204), a first nozzle (205), a first connecting pipe (206), a support frame (207), a first connecting block (208), a second drive motor (209) and a fourth water inlet pipe (210); the first water pressure controller (203) for controlling the water pressure is provided at the front of the upper end of the first water tank (201); the first water inlet pipe (202) for introducing a cleaning agent is provided at the side of the rear of the upper end of the first water tank (201); the fourth water inlet pipe (210) for introducing water is provided along the front of the first water inlet pipe (202); the first spray plate (204) is connected to the first water tank (201) through the first connecting pipe (206); the first connecting pipe (206) A control valve for controlling the inflow and outflow of cleaning agent is provided on the outer side of the connection between the first water inlet pipe (202) and the first water tank (201); the first spray plate (204) is rotatably connected to the first connecting block (208) via a support frame (207); a plurality of first nozzles (205) for spraying cleaning agent are evenly distributed on one end of the first spray plate (204) away from the support frame (207); an output shaft is provided on the second drive motor (209); the output shaft of the second drive motor (209) passes through the outer side of the first connecting block (208) and extends to the inner side to drive the support frame (207) to drive the first spray plate (204) to rotate; and a control valve for controlling the inflow and outflow of cleaning agent is provided on the outer side of the connection between the first water inlet pipe (202), the fourth water inlet pipe (210) and the first connecting pipe (206) and the first water tank (201).
4. The lamb breeding disinfection and cleaning device according to claim 1, characterized in that: The flushing assembly (3) comprises a second water tank (301), a second water inlet pipe (302), a second water pressure controller (303), a second spray plate (304), a second nozzle (305), a second connecting block (306), a swing arm (307), a third connecting block (308), a third driving motor (309) and a second connecting pipe (310). The second water inlet pipe (302) for introducing water is provided on the upper side of the second water tank (301). The second water pressure controller (303) for controlling the water pressure is provided at the rear of the upper end of the second water tank (301). The second spray plate (304) is connected to the second water tank (301) through the second connecting pipe (310). The second spray plate (304) is rotatably connected to the swing arm (307) through the second connecting block (306). The second connecting block (306) is rotatably connected to the third connecting block (308) through the swing arm (307).
5. The lamb breeding disinfection and cleaning device according to claim 4, characterized in that: The outer sides of the second connection block (306) and the third connection block (308) are both provided with a third driving motor (309) for driving the swing arm (307) and the second connection block (306) to rotate. The third driving motor (309) is provided with an output shaft. The output shafts of the two groups of third driving motors (309) respectively pass through the outer sides of the second connection block (306) and the second connection block (306) to drive the second connection block (306) and the swing arm (307) to rotate. Three groups of second nozzles (305) for spraying water are evenly distributed at one end of the second spray plate (304) away from the second connection block (306). A control valve for controlling the inflow and outflow of water is provided at the outer side of the connection between the second water inlet pipe (302) and the second connection pipe (310) and the second water tank (301).
6. The lamb breeding disinfection and cleaning device according to claim 1, characterized in that: The disinfection assembly (4) comprises a third water tank (401), a third water pressure controller (402), a third water inlet pipe (403), a telescopic cylinder (404), an electric push rod (405), a transfer tank (406), a connector (407), a third nozzle (408), a fourth nozzle (409) and a third connecting pipe (410). A telescopic cylinder (404) for controlling the upward and downward movement of the electric push rod (405) is provided at the middle of the upper end of the third water tank (401). The telescopic cylinder (404) and the connector (407) are connected by the electric push rod (405). A transfer tank (406) for transferring water flow is provided at the upper end of the connector (407). A plurality of third nozzles (408) for spraying disinfectant are provided around the side of the transfer tank (406). A plurality of fourth nozzles (409) for spraying disinfectant are provided around the upper end of the transfer tank (406).
7. A lamb breeding disinfection and cleaning device according to claim 6, characterized in that: The connector (407) is connected to the third water tank (401) via a third connecting pipe (410); a third water pressure controller (402) for controlling the hydraulic pressure is provided at the front upper end of the third water tank (401); a third water inlet pipe (403) for introducing disinfectant is provided at the side upper end of the third water tank (401); and a control valve for controlling the inflow and outflow of disinfectant is provided on the outer side of the connection between the third water inlet pipe (403) and the third connecting pipe (410) and the third water tank (401).