Movable hog house disinfection device
By designing a mobile pigsty disinfection device, the height and angle of the spray heads can be adjusted using an electric telescopic rod and a rotating device, combined with a supporting spray device, achieving comprehensive disinfection of the pigsty and solving the problems of dead corners and high manpower requirements of traditional disinfection devices.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- NINGXIA TIANDIXING AGRI & ANIMAL HUSBANDRY DEV CO LTD
- Filing Date
- 2025-04-14
- Publication Date
- 2026-04-17
AI Technical Summary
Traditional pigsty disinfection devices are prone to creating blind spots, have poor automation, and require a lot of manual operation.
A mobile pigsty disinfection device was designed. It uses a first electric telescopic rod, a chute, and a long slider to change the height of the spray head. A rotating device and a second electric telescopic rod are used to change the angle of the spray pipe. The device supports the spraying device to disinfect the passageway. The first and second water pumps are used to spray the disinfectant.
It achieves comprehensive disinfection of pigsties without any blind spots, improves the level of automation, reduces the need for manpower, and adapts to different pigsty sizes and structures.
Smart Images

Figure CN224126332U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of pigsty disinfection technology, and in particular to a mobile pigsty disinfection device. Background Technology
[0002] With the continuous development of China's pig farming industry, the hygiene and safety of pigsties are receiving increasing attention. Pigsties are crucial for pig growth, development, and slaughter, and proper disinfection is essential for reducing disease rates. Traditional pigsty sterilization methods involve backpack sprayers, where workers carry the sprayers on their backs and hold them by hand. However, these methods lack automation, require significant manpower, and are prone to leaving blind spots. Therefore, we propose a mobile pigsty disinfection device to address these issues. Utility Model Content
[0003] This invention provides a mobile pigsty disinfection device that solves the problems of traditional disinfection devices having blind spots, poor automation, and requiring a lot of manual operation.
[0004] This utility model provides a mobile pigsty disinfection device, including an outer cover. The top of the outer cover has a feed inlet, and the bottom is equipped with several casters. A pushing device is installed on the outer cover. A supporting spray device is installed on the bottom side of the outer cover. A first electric telescopic rod is installed on the supporting spray device. A support block is installed at the end of the first electric telescopic rod. There are sliding grooves on both sides of the first electric telescopic rod. The sliding grooves are fixed to the outer cover. There is a long sliding block that fits into the sliding groove. One end of the long sliding block is fixed to the support block. A second electric telescopic rod is installed at each end of the support block. A rotating device is installed at the end of the second electric telescopic rod. A first spray pipe is connected to the rotating device. Several first spray heads are installed on the first spray pipe. There is a diversion pipe in the support block. The diversion pipe is connected to the first spray pipe through a connecting pipe. The diversion pipe is connected to the outer cover through a coil. The coil extends into the interior of the outer cover. A first water pump is installed on the coil.
[0005] Preferably, the rotating device includes a rotating device housing installed at the end of the second electric telescopic rod. The rotating device housing has a groove, and a motor is installed inside the rotating device housing. A drive gear is installed on the motor, and the drive gear meshes with a driven gear. The driven gear is fixedly sleeved on a round rod, and the round rod passes through the groove and is rotatably connected to the rotating device housing. There is a corresponding protrusion in the groove, and the protrusion is fixedly sleeved on the round rod. The protrusion is connected to a connecting block, and the connecting block is connected to the first spray pipe.
[0006] Preferably, the pushing device includes two support plates symmetrically installed on one side of the outer cover, and a handle and an operating platform are installed between the support plates.
[0007] Preferably, the supporting spray device includes a fixed outer shell fixed to the outer cover, a second spray pipe is provided inside the fixed outer shell, a plurality of second spray heads are installed on the second spray pipe, the second spray pipe extends into the interior of the outer cover through a connecting pipe, a second water pump is installed on the connecting pipe, and a support plate is installed on the top of the fixed outer shell.
[0008] Preferably, a battery compartment is installed inside the outer cover, and heat dissipation grilles are provided on both sides of the battery compartment.
[0009] Preferably, the top of the outer cover has a coil groove.
[0010] Preferably, the coil is made of rubber hose.
[0011] Preferably, the connecting pipe is a corrugated pipe.
[0012] Preferably, several telescopic rods are also connected between the support block and the rotating device.
[0013] As can be seen from the above technical solution, this utility model provides a mobile pigsty disinfection device. When using this device, firstly, disinfectant is poured in through the feed inlet, and the device is pushed into the pigsty. The device is operated via the operating platform. The first electric telescopic rod is started, adjusted to a suitable height, and then stopped. The rotating device is then controlled to unfold the first spray head. Specifically, inside the rotating device, the motor starts, and the motor drives the connecting block to rotate through gear transmission until the first spray pipe fixed on the connecting block is adjusted to a suitable angle. At this time, the first and second water pumps are started. The first water pump causes the disinfectant to flow sequentially through the coil, branch pipe, connecting pipe, and first spray pipe, finally spraying out from the first spray head to disinfect the pigsty. The second water pump causes the disinfectant to flow through the connecting pipe and the second spray pipe, finally spraying out from the second spray head to disinfect the corridor. After use, the water pumps are turned off, the motor is reversed, the first electric telescopic rod is retracted, and the disinfection device is pushed out of the pigsty.
[0014] Compared with the prior art, the beneficial effects of this utility model are:
[0015] 1. The height of the spray head can be changed by the cooperation of the first electric telescopic rod, the chute and the long slider to adapt to pig houses of different heights and increase the adaptability of the device;
[0016] 2. By combining the rotating device, the second electric telescopic rod, and the first spray pipe, the first spray pipe can be folded and extended to change the sterilization radius during disinfection, so as to adapt to the height of different pig houses.
[0017] 3. The passageway can be sterilized by supporting the spray device to ensure the complete sterilization of the pigsty.
[0018] In summary, when using this application, the height and unfolding width of the disinfection spray head can be changed to adapt to pig houses of different sizes, and the passageway can be disinfected to achieve the purpose of comprehensive disinfection of the pig house without dead corners. Attached Figure Description
[0019] To more clearly illustrate the technical solution of this utility model, the drawings used in the implementation examples will be briefly introduced below. Obviously, for those skilled in the art, other drawings can be obtained based on these drawings without any creative effort.
[0020] Figure 1 A schematic diagram of the overall structure of a portable pigsty disinfection device proposed in this utility model;
[0021] Figure 2 Schematic diagram B shows the overall structure of a portable pigsty disinfection device proposed in this utility model;
[0022] Figure 3 This is a top view of the overall structure of a portable pigsty disinfection device proposed in this utility model;
[0023] Figure 4 This is a schematic diagram of the rotating device of a portable pigsty disinfection device proposed in this utility model;
[0024] Figure 5 This is a schematic diagram of the structure of a support spray device for a portable pigsty disinfection device proposed in this utility model.
[0025] In the diagram: 1. Outer cover; 2. Feed inlet; 3. Supporting spray device; 301. Fixed outer shell; 302. Second spray pipe; 303. Connecting pipe; 304. Support plate; 305. Second spray head; 306. Second water pump; 4. First electric telescopic rod; 5. Slide groove; 6. Long slider; 7. Support block; 8. Second electric telescopic rod; 9. Rotating device; 901. Rotating device outer shell; 902. Motor; 903. 904. Driven gear; 905. Round rod; 906. Connecting block; 907. Groove; 908. Protrusion; 10. First spray pipe; 11. First spray head; 12. Diverter pipe; 13. Connecting pipe; 14. Coil; 15. Support plate; 16. Handle; 17. Operating platform; 18. Casters; 19. Battery compartment; 20. Heat dissipation grille; 21. Coil groove; 22. Telescopic rod; 23. First water pump. Detailed Implementation
[0026] To enable those skilled in the art to better understand the technical solutions of this utility model, the technical solutions in the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings.
[0027] See Figure 1-5A portable pigsty disinfection device is disclosed. During use, it automatically disinfects the pigsty. By adjusting the height and width of the disinfection spray heads, it can adapt to pigsties of different sizes and can also disinfect passageways, achieving comprehensive disinfection. Specifically, it includes an outer cover 1 with a feed inlet 2 at the top and several casters 18 at the bottom. A pushing device is installed on the side of the outer cover 1 for easy movement. A supporting spray device 3 is installed on the bottom side of the outer cover 1, and a first electric telescopic rod 4 is mounted on the supporting spray device 3. The bottom of the first electric telescopic rod 4 is mounted on the supporting spray device 3, and its side can be fixed to the outer cover 1 to increase the first... To ensure the stability of the electric telescopic rod 4, a support block 7 is installed at the end of the first electric telescopic rod 4. The first electric telescopic rod 4 has sliding grooves 5 on both sides, which are fixed to the outer cover 1. A long slider 6 is embedded within the sliding groove 5, with one end of the long slider 6 fixed to the support block 7. Because the support block 7 needs to move up and down, relying solely on the first electric telescopic rod 4 for support could easily cause the spraying device to tilt. Therefore, the sliding grooves 5 and the long slider 6 are needed to assist in support, making the equipment more stable. Second electric telescopic rods 8 are installed at both ends of the support block 7. The bottom of the second electric telescopic rod 8 can be partially embedded in the long slider 6 to counteract radial force. Furthermore, to further improve its resistance... The radial force is also enhanced by connecting several telescopic rods 22 between the support block 7 and the rotating device 9. A rotating device 9 is installed at the end of the second electric telescopic rod 8, and a first spray pipe 10 is connected to the rotating device 9. The rotating device 9 can drive the first spray pipe 10 to rotate, thereby changing the spray angle and radius. Several first spray heads 11 are installed on the first spray pipe 10. Disinfection requires the use of first spray heads 11 with better atomization effect. The support block 7 has a cavity, and a diversion pipe 12 is located within the cavity. The diversion pipe 12 is connected to the first spray pipe 10 via a connecting pipe 13. The diversion pipe 12 is connected to the outer cover 1 via a coil 14, which extends into the interior of the outer cover 1 and has a drooping section. At the bottom of the outer cover 1, a first water pump 23 is installed on the coil 14. When the first water pump 23 is started, the disinfectant flows into the coil 14. Because the spray device needs to perform lifting and lowering actions, the coil 14 needs to have a certain degree of flexibility and needs to be coiled and folded. Therefore, a rubber hose is used. After the disinfectant flows through the coil 14, it flows into the diversion pipe 12. The diversion pipe 12 divides the disinfectant into two paths, left and right, which flow into the first spray pipes 10 on both sides respectively. Then, it flows into the first spray pipe 10 through the connecting pipe 13. Because the first spray pipe 10 can rotate under the action of the rotating device 9, the connecting pipe 13 needs to have a certain degree of extensibility. Therefore, an extensible corrugated pipe is used.In this application, because the first spray pipe 10 can be rotated and folded, it can be easily entered into different pig houses. The height of the first spray pipe 10 can be adjusted by the first electric telescopic rod 4 to cope with pig houses of different heights, greatly improving the versatility of the equipment. In addition, the passage can be disinfected by the second spray pipe 302 during use, so as to achieve the purpose of comprehensive disinfection of the pig house.
[0028] In this invention, the rotating device 9 includes a rotating device housing 901 installed at the end of the second electric telescopic rod 8. A groove 907 is formed on the rotating device housing 901. A motor 902 is installed inside the rotating device housing 901. A drive gear 903 is mounted on the motor 902. The drive gear 903 meshes with a driven gear 904. The driven gear 904 is fixedly sleeved on a round rod 905. The round rod 905 passes through the groove 907 and is rotatably connected to the rotating device housing 901. A corresponding groove 907 contains... The protrusion 908 is fixedly sleeved on the round rod 905. The protrusion 908 is connected to the connecting block 906, and the connecting block 906 is connected to the first spray pipe 10. When in use, the motor 902 starts and drives the drive gear 903 to rotate. The drive gear 903 drives the driven gear 904 to rotate. The driven gear 904 is fixed to the round rod 905, thereby driving the protrusion 908, which is also fixed on the round rod 905, to rotate, and finally drive the first spray pipe 10 to rotate.
[0029] In this invention, the pushing device includes two support plates 15 symmetrically installed on one side of the outer cover 1. A handle 16 and an operating platform 17 are installed between the support plates 15. The operating platform 17 is installed in front of the handle 16 for easy operation.
[0030] In this invention, the supporting spray device 3 includes a fixed outer shell 301 fixed on the outer cover 1. The fixed outer shell 301 has a cavity, and a second spray pipe 302 is provided in the cavity. Several second spray heads 305 are installed on the second spray pipe 302. The second spray pipe 302 extends into the interior of the outer cover 1 through a connecting pipe 303. A second water pump 306 is installed on the connecting pipe 303. A support plate 304 is installed on the top of the fixed outer shell 301. In use, the second water pump 306 pumps disinfectant into the second spray pipe 302 and then sprays it out from the second spray heads 305 to achieve the purpose of disinfecting the corridor. The support plate 304 is installed on the upper side of the fixed outer shell 301, which can support the first electric telescopic rod 4 and the slide groove 5 fixed on the fixed outer shell 301.
[0031] In this invention, a battery compartment 19 is installed inside the outer cover 1. The battery compartment 19 has heat dissipation grilles 20 on both sides. The battery compartment 19 is installed on the lower rear side of the outer cover 1 and has a door on the outside. This facilitates maintenance and also prevents disinfectant from entering the battery compartment 19 during disinfection, which could damage the battery.
[0032] In this invention, the top of the outer cover 1 has a coil groove 21. When the support block 7 is raised or lowered, the coil 14 connected to it will also be raised or lowered. Therefore, the coil 14 needs to have a long spare length. When the support block 7 is lowered to the lowest point, the excess coil will automatically fold and fall into the coil groove 21, which can prevent the excessively long coil 14 from being damaged due to storage problems, and also increases the overall aesthetics of the equipment.
[0033] As can be seen from the above technical solution, during use, firstly, the disinfectant is poured in through the feed inlet 2, the disinfection device is pushed into the pigsty, and the device is operated through the operating platform. The first electric telescopic rod 4 is started, adjusted to a suitable height, and then stopped. The rotating device 9 is then controlled to unfold the first spray head 11. Specifically, within the rotating device 9, the motor 902 is started, and the motor 902 drives the connecting block 906 to rotate through gear transmission until the first spray pipe 10, fixed on the connecting block 906, is adjusted to a suitable angle. At this time, the first water pump 23 and the second water pump 306 are started. The first water pump 23 causes the disinfectant to flow through the coil 14, the branch pipe 12, the connecting pipe 13 and the first spray pipe 10 in sequence, and finally spray it out from the first spray head 11 to disinfect the pigsty. The second water pump 306 causes the disinfectant to flow through the connecting pipe 303 and the second spray pipe 302, and finally spray it out from the second spray head 305 to disinfect the corridor. After use, the water pumps are turned off, the motor 902 is reversed, the first electric telescopic rod 4 is retracted, and the disinfection device is pushed out of the pigsty.
[0034] Other embodiments of the present invention will readily occur to those skilled in the art upon consideration of the specification and practice of the invention disclosed herein. The present invention is intended to cover any variations, uses, or adaptations of the invention that follow the general principles of the invention and include common knowledge or customary techniques in the art not disclosed herein. The specification and examples are to be considered exemplary only, and the true scope of the invention is indicated by the claims.
[0035] It should be understood that this utility model is not limited to the precise structure described above and shown in the accompanying drawings, and various modifications and changes can be made without departing from its scope. The embodiments of this utility model described above do not constitute a limitation on the scope of protection of this utility model.
Claims
1. A mobile pig house disinfection device comprising a housing (1), characterized in that: The outer cover (1) has a feed inlet (2) at the top and several casters (18) at the bottom. A pushing device is installed on the outer cover (1). A supporting spray device (3) is installed on the bottom side of the outer cover (1). A first electric telescopic rod (4) is installed on the supporting spray device (3). A support block (7) is installed at the end of the first electric telescopic rod (4). There are sliding grooves (5) on both sides of the first electric telescopic rod (4). The sliding grooves (5) are fixed on the outer cover (1). There are long sliding blocks (6) embedded in the sliding grooves (5). One end of the long sliding block (6) is fixed on the support block (7). The second electric telescopic rod (8) is installed at both ends of the first electric telescopic rod (8). A rotating device (9) is installed at the end of the second electric telescopic rod (8). A first spray pipe (10) is connected to the rotating device (9). Several first spray heads (11) are installed on the first spray pipe (10). A diversion pipe (12) is inside the support block (7). The diversion pipe (12) is connected to the first spray pipe (10) through a connecting pipe (13). The diversion pipe (12) is connected to the outer cover (1) through a coil (14). The coil (14) extends into the interior of the outer cover (1). A first water pump (23) is installed on the coil (14).
2. The mobile swine confinement sanitizing apparatus of claim 1, wherein, The rotating device (9) includes a rotating device housing (901) installed at the end of the second electric telescopic rod (8). The rotating device housing (901) has a groove (907). A motor (902) is installed inside the rotating device housing (901). A drive gear (903) is installed on the motor (902). The drive gear (903) meshes with a driven gear (904). The driven gear (904) is fixedly sleeved on a round rod (905). The round rod (905) passes through the groove (907) and is rotatably connected to the rotating device housing (901). There is a corresponding protrusion (908) in the groove (907). The protrusion (908) is fixedly sleeved on the round rod (905). The protrusion (908) is connected to a connecting block (906). The connecting block (906) is connected to the first spray pipe (10).
3. The mobile swine confinement sanitizing apparatus of claim 1, wherein, The pushing device includes two support plates (15) symmetrically installed on one side of the outer cover (1), and a handle (16) and an operating platform (17) are installed between the support plates (15).
4. The mobile swine confinement sanitizing apparatus of claim 3, wherein, The supporting spray device (3) includes a fixed outer shell (301) fixed on the outer cover (1), a second spray pipe (302) is provided inside the fixed outer shell (301), a number of second spray heads (305) are installed on the second spray pipe (302), the second spray pipe (302) extends into the interior of the outer cover (1) through a connecting pipe (303), a second water pump (306) is installed on the connecting pipe (303), and a support plate (304) is installed on the top of the fixed outer shell (301).
5. The mobile swine confinement sanitizing apparatus of claim 4, wherein, The outer cover (1) is equipped with a battery compartment (19), and the battery compartment (19) has heat dissipation grilles (20) on both sides.
6. A mobile pig house disinfecting device according to claim 5, characterized in that The top of the outer cover (1) has a coil groove (21).
7. A portable pigsty disinfection device according to claim 1, characterized in that, The coil (14) is made of rubber hose.
8. The mobile swine confinement sanitizing apparatus of claim 1, wherein, The connecting pipe (13) is a corrugated pipe.
9. The mobile swine confinement sanitizing apparatus of claim 2, wherein, Several telescopic rods (22) are also connected between the support block (7) and the rotating device (9).