Yak breeding house disinfection equipment
By installing disinfection equipment with coil spring tubes and atomized spray heads in the yak breeding house, the problem of disinfectant being difficult to cover high places and gaps is solved, and efficient disinfectant spraying and bacterial inhibition effects are achieved.
Patent Information
- Application Number
- CN202422115721.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-30
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2034-08-30
AI Technical Summary
The existing yak farmhouse disinfection methods are difficult to spray disinfectant evenly on all corners, especially in high places, corners and gaps, resulting in the inability to form a high-concentration disinfection environment in a short period of time, and the bacterial inhibition effect is limited.
The farmhouse body built with steel structure is equipped with disinfection components, drive components and liquid storage components. Through the combination of coil spring tubes and atomizing spray heads, the threaded rod and slider structure is driven by the motor to make the disinfectant evenly spray the inside of the farmhouse, ensuring that every corner is covered.
The uniform spray of disinfectant in the breeding house is achieved, and a high-concentration disinfection environment is quickly formed, effectively inhibiting the growth and reproduction of bacteria.
Smart Images

Figure CN223054796U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of yak breeding houses, and specifically relates to a disinfection device for yak breeding houses. Background Technique
[0002] During the process of yak breeding, the sanitary environment of the breeding house is crucial. Good disinfection measures can effectively prevent the spread of diseases and ensure the healthy growth of yaks. Among them, the yak breeding house can be closed or semi-closed. A closed yak breeding house can keep the inside warm in cold seasons, reducing the energy consumption of yaks; in hot seasons, it can be cooled through a ventilation system. At the same time, the closed environment can reduce the intrusion of external dust, germs, etc.
[0003] Currently, the existing disinfection methods are mainly divided into two types: one is manual spraying of disinfectant solution, and the other is installing ordinary sprayers in the breeding house. However, due to the large internal space of the breeding house, during the process of spraying the disinfectant solution, it may not be possible to evenly spray the disinfectant solution to all corners of the breeding house, especially some high places, corners, and gaps are difficult to cover, so it is impossible to ensure the formation of a high-concentration disinfection environment in a short time, and the inhibitory effect on germs is limited.
[0004] For the problems in the related technology, no effective solution has been proposed yet. Content of the Utility Model
[0005] In view of the deficiencies of the above-mentioned existing technology, the purpose of the present utility model is to provide a disinfection device for yak breeding houses, aiming to solve the problem that it may not be possible to evenly spray the disinfectant solution to all corners of the breeding house, especially some high places, corners, and gaps are difficult to cover.
[0006] In order to achieve the above purpose, the present utility model adopts the following technical scheme:
[0007] A disinfection device for yak breeding houses includes a breeding house body built by steel structure, a disinfection component for disinfecting the inside of the breeding house body, a driving component for evenly spraying the disinfectant solution inside the breeding house body, and a liquid storage component for storing the disinfection liquid. The inner side wall of the breeding house body is fixedly connected with a partition board. The driving component is arranged on the partition board. The inner wall of the partition board is fixedly connected with a sleeve, and the sleeve is located on the horizontal central axis of the breeding house body. The disinfection component is arranged inside the sleeve. The liquid storage component is arranged at the rear of the breeding house body.
[0008] As a further improvement of the above technical solution, the disinfection component includes a transmission pipe fixed at one end of the sleeve. One end of the transmission pipe is fixedly communicated with a spiral spring pipe. An atomizing nozzle is fixed on the spiral spring pipe. The end of the spiral spring pipe far from the transmission pipe is fixedly connected with a moving disk. The moving disk is slidably connected with the sleeve. By arranging the transmission pipe, the spiral spring pipe, the atomizing nozzle and the moving disk, the disinfectant liquid is evenly sprayed into the interior of the breeding house body.
[0009] As a further improvement of the above technical solution, an electric diaphragm pump is fixedly connected to the bottom of the breeding house body, and the electric diaphragm pump is located on one side of the partition board. The other end of the electric diaphragm pump is fixedly connected to the liquid outlet of the electric diaphragm pump. The liquid inlet of the electric diaphragm pump is fixedly connected with a liquid inlet pipe. By arranging the electric diaphragm pump and the liquid inlet pipe, the disinfectant liquid is transmitted into the transmission pipe.
[0010] As a further improvement of the above technical solution, the liquid storage component includes a storage cylinder. The end of the liquid inlet pipe far from the electric diaphragm pump is fixedly connected to the storage cylinder. The bottom of the storage cylinder is fixedly connected with a base. By arranging the storage cylinder and the base, the disinfectant liquid is stored.
[0011] As a further improvement of the above technical solution, a liquid inlet hole is opened at the top of the storage cylinder. An annular groove is opened at the top of the storage cylinder. A filter cover is attached to the storage cylinder through the liquid inlet hole and the annular groove. By arranging the liquid inlet hole, the annular groove and the filter cover, the liquid flowing into the interior of the storage cylinder is filtered.
[0012] As a further improvement of the above technical solution, the driving component includes a motor. The motor is fixed on one side surface of the partition board. The output end of the motor is fixedly connected with a threaded rod. The threaded rod movably penetrates through the interior of the partition board and extends to be rotatably connected with the breeding house body. A sleeve block is threadedly connected to the outer side wall of the threaded rod. The bottom of the sleeve block is fixedly connected with a bottom rod. The bottom of the bottom rod is fixedly connected with a sliding block. The bottom of the sliding block is fixedly connected with the top of the moving disk. By arranging the motor, the threaded rod, the sleeve block, the bottom rod and the sliding block, the moving disk is driven to move and adjust.
[0013] As a further improvement of the above technical solution, a sliding groove is opened on the sleeve. The sliding block is slidably connected with the sleeve through the sliding groove. By arranging the sliding groove, the accuracy of the compression of the spiral spring pipe by the moving disk is increased.
[0014] As a further improvement of the above technical solution, an ear plate is fixedly connected to the top of the sleeve block. A guide rod is fixedly connected to the interior of the breeding house body. One end of the guide rod is fixedly connected to the partition board. The ear plate is slidably connected with the guide rod. By arranging the ear plate and the guide rod, the stability of the movement of the sleeve block is increased.
[0015] In summary, the technical effects and advantages of the present utility model are as follows: for the disinfection equipment of the yak breeding shed, through the action of the driving component, the pipeline for transporting the disinfectant liquid is evenly laid inside the breeding shed body. Through the action of the liquid storage component, the disinfectant liquid is stored. Then, through the action of the disinfection component, the disinfectant liquid is evenly and quickly sprayed inside the breeding shed body, thereby ensuring that the disinfectant liquid reaches every corner of the breeding shed, forming a high-concentration disinfection environment inside the breeding shed in a short time, and inhibiting the growth and reproduction of germs.
[0016] When the motor operates, the threaded rod rotates accordingly. Through the coordinated use of the sleeve block, bottom rod, slider, and moving plate, it is convenient for the movement of one end of the spiral spring tube, thereby facilitating the laying of the spiral spring tube on the horizontal central axis of the breeding shed body. Secondly, it is convenient to retract the spiral spring tube when it is not in use. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 is a three-dimensional structural schematic diagram of the present utility model;
[0018] Figure 2 is a schematic diagram of the driving component and its related structures of the present utility model;
[0019] Figure 3 is a schematic diagram of the disinfection component and its related structures of the present utility model;
[0020] Figure 4 is a schematic diagram of the liquid storage component and its related structures of the present utility model.
[0021] In the figure: 1, breeding shed body; 2, partition board; 3, sleeve;
[0022] 4, driving component; 41, motor; 42, threaded rod; 43, sleeve block; 44, ear plate; 45, guide rod; 46, bottom rod; 47, slider; 48, chute;
[0023] 5, disinfection component; 51, transmission pipe; 52, spiral spring tube; 520, moving plate; 53, atomizing nozzle; 54, electric diaphragm pump; 55, liquid inlet pipe;
[0024] 6, liquid storage component; 61, storage cylinder; 62, base; 63, liquid inlet hole; 64, annular groove; 65, filter cover. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0025] The present utility model provides a disinfection equipment for a yak breeding shed. To make the purpose, technical solutions, and effects of the present utility model clearer and more definite, the following further details the present utility model with reference to the accompanying drawings and by way of examples. It should be understood that the specific embodiments described herein are only used to explain the present utility model and are not used to limit the protection scope of the present utility model.
[0026] Refer toFigures 1-4 , this embodiment provides a technical solution: a disinfection device for yak breeding houses, including a breeding house body 1 built by steel structure, a disinfection component 5 for disinfecting the inside of the breeding house body 1, a driving component 4 for evenly spraying the disinfectant liquid inside the breeding house body 1, and a liquid storage component 6 for storing the disinfection liquid. The breeding house body 1 is of a closed design and is designed and installed together with a ventilation system. A partition 2 is fixedly connected to the inner side wall of the breeding house body 1. The partition 2 is located at the rear position of the breeding house body 1. The driving component 4 is arranged on the partition 2. A sleeve 3 is fixedly connected to the inner wall of the partition 2. The sleeve 3 penetrates through the inside of the partition 2. The sleeve 3 is fixed on the central axis of the partition 2 and is located on the horizontal central axis of the breeding house body 1. The disinfection component 5 is arranged inside the sleeve 3. The liquid storage component 6 is arranged at the rear of the breeding house body 1. The driving component 4 for moving back and forth adjusts the disinfection component 5, so that the pipelines for transmitting the disinfectant liquid are evenly laid inside the breeding house body 1. Subsequently, the disinfection component 5 extracts and transmits the disinfectant liquid stored in the liquid storage component 6 and evenly sprays it inside the breeding house body 1, so as to ensure that the disinfectant liquid touches every corner of the breeding house.
[0027] Refer to Figures 1-3 , the disinfection component 5 includes a transmission pipe 51 fixedly arranged at one end of the sleeve 3. One end of the transmission pipe 51 is fixedly communicated with a spiral spring pipe 52. An atomizing nozzle 53 is fixedly arranged on the spiral spring pipe 52. A plurality of atomizing nozzles 53 are arranged. The plurality of atomizing nozzles 53 are arranged in a spiral array on the spiral spring pipe 52. The end of the spiral spring pipe 52 far from the transmission pipe 51 is fixedly connected with a moving disk 520. The outer circumference of the moving disk 520 is equal to the inner circumference of the sleeve 3. The moving disk 520 is coaxial with the sleeve 3. The moving disk 520 is slidably connected with the sleeve 3. After the moving disk 520 is forced to move, it can drive the end of the spiral spring pipe 52 far from the transmission pipe 51 to move and adjust, so that the spiral spring pipe 52 is stretched and laid inside the breeding house body 1. Secondly, after the moving disk 520 moves towards the sleeve 3, the spiral spring pipe 52 is squeezed, so that the spiral spring pipe 52 shrinks into the sleeve 3.
[0028] Refer to Figures 1-3 , an electric diaphragm pump 54 is fixedly connected to the bottom of the breeding house body 1, and the electric diaphragm pump 54 is located on one side of the partition 2. The other end of the electric diaphragm pump 54 is fixedly connected to the liquid outlet of the electric diaphragm pump 54. The liquid inlet of the electric diaphragm pump 54 is fixedly connected with a liquid inlet pipe 55. After the electric diaphragm pump 54 operates, the disinfectant liquid is transmitted to the inside of the transmission pipe 51 through the liquid inlet pipe 55, and is transmitted to the inside of the spiral spring pipe 52 and then evenly sprayed out through the atomizing nozzle 53.
[0029] Refer to Figure 1 and Figure 4, the liquid storage assembly 6 includes a storage cylinder 61. One end of the liquid inlet pipe 55 away from the electric diaphragm pump 54 is fixedly connected to the storage cylinder 61. A base 62 is fixedly connected to the bottom of the storage cylinder 61. The base 62 is mainly made of stainless steel and has certain corrosion resistance. The disinfectant liquid inside the storage cylinder 61 flows out through the liquid inlet pipe 55.
[0030] Refer to Figure 4 , a liquid inlet hole 63 is opened at the top of the storage cylinder 61. The liquid inlet hole 63 is located at the center of the top of the storage cylinder 61. An annular groove 64 is opened at the top of the storage cylinder 61. The storage cylinder 61 is fitted with a filter cover 65 through the liquid inlet hole 63 and the annular groove 64. The liquid inlet hole 63 and the annular groove 64 facilitate the installation of the filter cover 65 on the top of the breeding house body 1. The filter cover 65 filters the disinfectant liquid flowing into the inside of the storage cylinder 61.
[0031] Refer to Figures 1-2 , the driving assembly 4 includes a motor 41. The motor 41 is fixedly arranged on one side surface of the partition plate 2. The output end of the motor 41 is fixedly connected with a threaded rod 42. The threaded rod 42 movably penetrates through the inside of the partition plate 2 and extends to be rotationally connected with the breeding house body 1. A sleeve block 43 is threadedly connected to the outer side wall of the threaded rod 42. The outer side wall of the threaded rod 42 is adapted to the inner side wall of the sleeve block 43. A bottom rod 46 is fixedly connected to the bottom of the sleeve block 43. The bottom rod 46 is fixed at the center of the bottom of the sleeve block 43. A slider 47 is fixedly connected to the bottom of the bottom rod 46. The slider 47 is located at the center of the bottom of the bottom rod 46. The bottom of the slider 47 is fixedly connected with the top of the moving disc 520. After the motor 41 operates, the threaded rod 42 rotates accordingly. The sleeve block 43 drives the bottom rod 46 to move, so that the slider 47 drives the moving disc 520 to move horizontally and adjust, thus facilitating the laying or contraction of the spiral spring tube 52.
[0032] Refer to Figure 2 , a chute 48 is opened on the sleeve 3. The width of the chute 48 is the same as the width of the slider 47. The slider 47 is slidably connected with the sleeve 3 through the chute 48. When the moving disc 520 moves towards the direction close to the sleeve 3, the accuracy of the movement of the slider 47 is increased through the chute 48.
[0033] Refer to Figure 2 , an ear plate 44 is fixedly connected to the top of the sleeve block 43. The ear plate 44 is located at the center of the top of the sleeve block 43. A guide rod 45 is fixedly connected to the inside of the breeding house body 1. One end of the guide rod 45 is fixedly connected to the partition plate 2. The ear plate 44 is slidably connected with the guide rod 45. While the sleeve block 43 moves, the ear plate 44 and the guide rod 45 increase the stability of the movement of the sleeve block 43.
[0034] Working principle: First, pour the prepared disinfectant into the interior of the storage cylinder 61. The filter cover 65 filters the liquid flowing into the interior of the storage cylinder 61 to prevent particulate impurities from flowing into the interior of the storage cylinder 61. The motor 41 operates, and the threaded rod 42 rotates accordingly. The sleeve block 43 drives the bottom rod 46 to move, and the slider 47 drives the moving plate 520 to move accordingly. The moving plate 520 moves away from the sleeve 3. The ear plate 44 and the guide rod 45 increase the stability of the movement of the sleeve block 43, thereby driving one end of the spiral spring tube 52 away from the transmission tube 51 to move. The spiral spring tube 52 is stretched and laid inside the breeding house body 1 accordingly. The electric diaphragm pump 54 operates, and the disinfectant liquid in the storage cylinder 61 is transmitted through the liquid inlet pipe 55 and the transmission tube 51 into the interior of the spiral spring tube 52 and sprayed out through the atomizing nozzle 53, so that the disinfectant liquid is evenly sprayed inside the breeding house body 1, thereby disinfecting the breeding house body 1. When the moving plate 520 moves towards the sleeve 3, the slider 47 moves stably through the chute 48, so that the spiral spring tube 52 contracts into the interior of the sleeve 3, thus facilitating the storage of the spiral spring tube 52.
[0035] In the description of the present invention, it should be understood that the orientation or positional relationship indicated by the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", etc. are based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the present invention.
[0036] In the description of the present invention, it should be noted that unless otherwise clearly specified and limited, the terms "installation", "connection", and "connection" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection, an electrical connection, or a connection that can communicate with each other; it can be a direct connection, or an indirect connection through an intermediate medium, and can be the communication inside two elements or the interaction relationship between two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.
[0037] It can be understood that for those of ordinary skill in the art, equivalent substitutions or changes can be made according to the technical solutions of the present invention and its inventive concept, and all such changes or substitutions should fall within the protection scope of the present invention.
Claims
1. A yak breeding house disinfection device, characterized in that, It includes a breeding shed body (1) built by a steel structure, a disinfection component (5) for disinfecting the interior of the breeding shed body (1), a driving component (4) for evenly spraying the disinfectant liquid inside the breeding shed body (1), and a liquid storage component (6) for storing the disinfection liquid. A partition (2) is fixedly connected to the inner side wall of the breeding shed body (1). The driving component (4) is arranged on the partition (2). A sleeve (3) is fixedly connected to the inner wall of the partition (2), and the sleeve (3) is located on the horizontal central axis of the breeding shed body (1). The disinfection component (5) is arranged inside the sleeve (3). The liquid storage component (6) is arranged at the rear of the breeding shed body (1).
2. The disinfection equipment for yaks breeding houses according to claim 1, characterized in that, The disinfection component (5) includes a transmission pipe (51) fixed at one end of the sleeve (3). One end of the transmission pipe (51) is fixedly communicated with a spiral spring pipe (52). An atomizing nozzle (53) is fixed on the spiral spring pipe (52). One end of the spiral spring pipe (52) far from the transmission pipe (51) is fixedly connected with a moving disk (520). The moving disk (520) is slidably connected with the sleeve (3).
3. The disinfection equipment for yaks breeding house according to claim 2, characterized in that, An electric diaphragm pump (54) is fixedly connected to the bottom of the breeding shed body (1), and the electric diaphragm pump (54) is located on one side of the partition (2). The other end of the electric diaphragm pump (54) is fixedly connected with the liquid outlet of the electric diaphragm pump (54). The liquid inlet of the electric diaphragm pump (54) is fixedly connected with a liquid inlet pipe (55).
4. The disinfection equipment for yak breeding houses according to claim 3, characterized in that, The liquid storage component (6) includes a storage cylinder (61). One end of the liquid inlet pipe (55) far from the electric diaphragm pump (54) is fixedly connected to the storage cylinder (61). A base (62) is fixedly connected to the bottom of the storage cylinder (61).
5. The disinfection equipment for yak breeding houses according to claim 4, characterized in that, A liquid inlet hole (63) is opened at the top of the storage cylinder (61). An annular groove (64) is opened at the top of the storage cylinder (61). A filter cover (65) is attached to the storage cylinder (61) through the liquid inlet hole (63) and the annular groove (64).
6. The disinfection equipment for yaks breeding houses according to claim 1, characterized in that, The driving component (4) includes a motor (41). The motor (41) is fixed on one side surface of the partition (2). The output end of the motor (41) is fixedly connected with a threaded rod (42). The threaded rod (42) movably penetrates through the inside of the partition (2) and extends to be rotatably connected with the breeding shed body (1). A sleeve block (43) is threadedly connected to the outer side wall of the threaded rod (42). A bottom rod (46) is fixedly connected to the bottom of the sleeve block (43). A slider (47) is fixedly connected to the bottom of the bottom rod (46). The bottom of the slider (47) is fixedly connected with the top of the moving disk (520).
7. The disinfection equipment for yak breeding houses according to claim 6, characterized in that, A sliding groove (48) is opened on the sleeve (3). The slider (47) is slidably connected with the sleeve (3) through the sliding groove (48).
8. The disinfection equipment for yaks breeding houses according to claim 6, characterized in that, An ear plate (44) is fixedly connected to the top of the sleeve block (43). A guiding rod (45) is fixedly connected to the inside of the breeding shed body (1). One end of the guiding rod (45) is fixedly connected to the partition (2). The ear plate (44) is slidably connected with the guiding rod (45).