Visual spray head for beef cattle spray cooling
By designing a visual nozzle for spraying and cooling beef cattle, we have achieved precise spraying control and automated monitoring, solving the problems of low efficiency and resource waste in traditional cooling methods, and providing uniform cooling and health monitoring effects.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-27
- Publication Date
- 2026-03-27
AI Technical Summary
Existing methods for cooling beef cattle, such as ventilation, have limited effectiveness, while water spraying consumes a lot of water and creates excessive humidity, which is detrimental to the health of beef cattle.
A visual nozzle for cooling beef cattle by spraying is designed, including a spray main pipe, a spray component, a transmission component, and a camera component. The spray component converts water flow into fine droplets, the transmission component drives the camera component to rotate or translate for monitoring, and the camera component captures images of the spray area in real time, realizing precise spraying and automated control.
It improves spraying efficiency and automation, reduces water waste, ensures consistent spraying results and the health of beef cattle, provides visual monitoring and data analysis, and adapts to different scenario needs.
Smart Images

Figure CN224038172U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to beef cattle spraying application technical field, concretely is a visual nozzle of beef cattle spraying cooling. BACKGROUND
[0002] In the beef cattle breeding process, suitable environmental temperature is important to the growth and development of beef cattle. Especially in hot summer, high temperature environment easily leads to beef cattle to appear heat stress reaction, influences its appetite and health, and even can lead to beef cattle heat stroke death seriously. Therefore, take effective cooling measure has important significance to guarantee the health of beef cattle and improve the breeding benefit.
[0003] At present, the cooling mode commonly used in beef cattle breeding includes ventilation cooling, watering cooling etc. However, these traditional cooling modes have many deficiencies. Ventilation cooling can reduce the temperature in the cowshed, but the effect is limited, and the effect is worse in high humidity environment. Watering cooling can rapidly reduce the temperature of beef cattle, but the water resource consumption is large, and easily leads to the humidity in the cowshed to be too high, is not conducive to the healthy growth of beef cattle, therefore we propose a visual nozzle of beef cattle spraying cooling. CONTENT OF UTILITY MODEL
[0004] The utility model discloses a visual nozzle of beef cattle spraying cooling to solve the problem in the above background technical.
[0005] To achieve the above object, the utility model provides the following technical scheme: A visual spray head for beef cattle spray cooling, comprising a top mounting plate, a spray main pipe, a spray assembly, a transmission assembly and a camera assembly; the bottom of the top mounting plate is provided with the spray main pipe through a connecting strut, the bottom of the spray main pipe is provided with a water outlet pipe, the spray main pipe is stably installed at the required position through the top mounting plate and the connecting strut, the stability and reliability of the spray system are ensured, this installation mode makes the spray main pipe be able to evenly and accurately cover the target area, improves the spray efficiency; at the same time, the water outlet pipe can adjust the spray angle and range according to the requirement, realizes more fine spray control, which helps to optimize the utilization of water resources, reduces waste, and meets the spray requirement in different scenes, the spray assembly is installed on the water outlet pipe, the spray assembly is responsible for converting water flow into fine mist, thereby increasing the surface area of spray, improving the cooling effect, the mist is fine and uniform, can more effectively contact with air, promotes evaporation, carries away the heat of beef cattle body surface, realizes rapid cooling; in addition, the design of the spray assembly makes the distribution of mist more uniform, avoids the problem of local over-wetting or uneven dryness, ensures the consistency and effect of spray, the bottom of the top mounting plate is provided with the transmission assembly, the transmission assembly is engaged with the camera assembly and is driven, the transmission assembly is the power source of the whole spray system, drives the camera assembly to rotate or translate, realizes the overall monitoring of the spray area, this design not only improves the automation degree of spray, but also enables the operator to remotely monitor the spray process, adjusts the spray strategy in time, ensures the spray effect and the health of beef cattle; the engagement transmission of the transmission assembly and the camera assembly ensures the stability and reliability of transmission, avoids the problem of abnormal movement or stagnation of the camera assembly caused by poor transmission, and the camera assembly is installed at the bottom of the top mounting plate, and the camera assembly is responsible for capturing image information of the spray area and transmitting it to the operator or control system in real time, through the camera assembly, the operator can intuitively understand the spray effect and solve problems in time; at the same time, the camera assembly can also record the spray process, provide basis for subsequent data analysis and optimization.
[0006] Preferably, the spray assembly is provided with an atomizing nozzle, and the bottom of the atomizing nozzle is provided with a fireproof shell. The fireproof shell not only effectively protects the atomizing nozzle from high-temperature environment, but also ensures the stability and uniformity of the mist during the spraying process. In addition, the design of the fireproof shell makes it easy to clean and maintain, prolonging the service life of the atomizing nozzle. The combination of the atomizing nozzle and the fireproof shell further improves the overall performance and reliability of the spray system, providing more uniform and effective cooling effect for beef cattle.
[0007] Preferably, the inner side of the fire-resistant shell is provided with a spraying shaft, and the bottom of the spraying shaft is provided with a cooling nozzle, and the spraying shaft is designed to flexibly adjust the spraying angle and range of the cooling nozzle to adapt to different beef cattle house environments and needs, and during spraying, the water mist sprayed by the cooling nozzle is fine and uniform, which can quickly reduce the temperature in the beef cattle house and provide a comfortable living environment for beef cattle; at the same time, the spraying shaft and the cooling nozzle are made of corrosion-resistant and wear-resistant materials to ensure their stability and durability during long-term use, which not only improves the practicability and effect of the spraying and cooling system, but also reduces the maintenance and replacement costs, providing strong support for the sustainable development of beef cattle breeding industry.
[0008] Preferably, the transmission assembly is provided with a connecting fixed plate, the bottom of the connecting fixed plate is provided with a transmission motor, the output end of the transmission motor is provided with a transmission connecting shaft, and the transmission connecting shaft is provided with a first transmission gear disc, and the first transmission gear disc is engaged with a second transmission gear disc on the spraying shaft, when the transmission motor is started, the first transmission gear disc is driven to rotate through the transmission connecting shaft, and then the second transmission gear disc and the spraying shaft are driven to rotate, this transmission mode not only has a compact structure, but also has high transmission efficiency, which can ensure that the spraying shaft rotates quickly and stably when needed, and realizes uniform spraying of water mist; in addition, the design of the connecting fixed plate enhances the connection stability between the transmission assembly and the transmission motor, so that the whole spraying and cooling system is more reliable during operation.
[0009] Preferably, the camera assembly is provided with a shaft mounting seat, the bottom of the shaft mounting seat is provided with a shaft connecting rod, and the bottom of the shaft connecting rod is provided with a second transmission gear disc, this design enables the camera assembly to rotate synchronously with the spraying system through the linkage of the shaft mounting seat, the shaft connecting rod and the second transmission gear disc, so that the camera assembly can always be aligned with the spraying area, and the spraying and cooling process can be captured and recorded in real time, providing visual monitoring for beef cattle spraying and cooling; in addition, the stable connection of the shaft mounting seat and the shaft connecting rod ensures the stability and reliability of the camera assembly during rotation, further improving the overall performance of the spraying and cooling system.
[0010] Preferably, the bottom of the second transmission gear disc is provided with a connecting base, and an infrared camera is rotatably arranged on the connecting base through a connecting shaft, the arrangement of the infrared camera enables the spraying and cooling system not only to have visual monitoring function, but also to have infrared thermal imaging capability, this innovative design enables the breeder to intuitively monitor the beef cattle body temperature distribution through infrared thermal imaging, and timely find beef cattle with abnormal body temperature to effectively prevent diseases; at the same time, the ingenious combination of the infrared camera, the second transmission gear disc and the connecting base ensures the stability and accuracy of the infrared camera during rotation, providing a more comprehensive and accurate monitoring means for beef cattle spraying and cooling, and further improving the intelligent level of the spraying and cooling system.
[0011] Compared with the prior art, the utility model has the advantages of
[0012] 1, the utility model discloses transmission assembly as the power source of whole spray system, drive camera subassembly and rotate or translation, realize the overall monitoring of spray area, this design not only improves the degree of automation of spray, also makes the operator can remote monitoring spray process, timely adjustment spray strategy, ensure spray effect and beef cattle's health, transmission assembly and the meshing transmission of camera subassembly guarantee the stability and reliability of transmission, avoid the problem that camera subassembly moves abnormally or stagnates because of transmission is not smooth, and camera subassembly is installed at the bottom of top mounting plate, and camera subassembly is responsible for capturing the image information of spray area, real -time transmission to the operator or control system, through camera subassembly, the operator can intuitively understand spray effect, and timely discover and solve the problem.
[0013] 2, the utility model discloses the bottom of axle connecting link installs second transmission gear disc, this design makes camera subassembly can through axle mounting seat, axle connecting link and the linkage of second transmission gear disc, realize the synchronous rotation with spray system, in this way, camera subassembly can always aim at spray area, real -time capture and record the process of spray cooling, provide visual monitoring for beef cattle's spray cooling, in addition, the stable connection of axle mounting seat and axle connecting link ensures the stability and reliability of camera subassembly in the rotation process, further improves the overall performance of spray cooling system. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 It is the whole structure schematic diagram of the utility model;
[0015] Figure 2 It is the spray assembly schematic diagram of the utility model;
[0016] Figure 3 It is the transmission assembly and camera subassembly cooperation schematic diagram of the utility model;
[0017] In the drawing: 1, top mounting plate;2, spray main pipe;3, connecting strut;4, water outlet pipe;5, spray assembly;51, atomizing nozzle;52, fireproof shell;53, spraying shaft;54, cooling nozzle;6, transmission assembly;61, connecting fixed blade;62, transmission motor;63, first transmission gear disc;64, transmission connecting shaft;7, camera subassembly;71, axle mounting seat;72, axle connecting link;73, connecting base;74, infrared camera;75, second transmission gear disc. DETAILED DESCRIPTION
[0018] The technical scheme of the utility model is further explained below in combination with the drawings and specific embodiments.
[0019] Embodiment one
[0020] As Figures 1-3 The utility model provides a kind of embodiment shown in the attached drawings: a kind of visual nozzle for beef cattle spray cooling, including top mounting plate 1, spray main pipe 2, spray assembly 5, transmission assembly 6 and camera assembly 7;Spray main pipe 2 is installed in the bottom of top mounting plate 1 by connecting strut 3, and spray main pipe 2 is installed in the bottom of water outlet pipeline 4, and spray main pipe 2 is stably installed in the desired position by top mounting plate 1 and connecting strut 3, ensure the stability and reliability of spray system, this installation mode makes that spray main pipe 2 can evenly and accurately cover target area, improve spray efficiency;At the same time, water outlet pipeline 4 can adjust spray angle and range as required, realize more fine spray control, this helps to optimize the use of water resources, reduce waste, and meet the spray demand in different scenarios, and spray assembly 5 is installed on water outlet pipeline 4, and spray assembly 5 is responsible for converting water flow into small mist, to increase the surface area of spray, improve cooling effect, mist is small and uniform, can more effectively contact with air, promote evaporation, carry away the heat of beef cattle surface, realize rapid cooling;In addition, the design of spray assembly 5 makes that mist distribution is more uniform, avoids the problem of local overwetting or uneven dryness, ensures the consistency and effect of spray, and transmission assembly 6 is installed in the bottom of top mounting plate 1, and transmission assembly 6 is engaged with camera assembly 7 and is driven, and transmission assembly 6 is as the power source of entire spray system, drives camera assembly 7 to rotate or translate, realizes the overall monitoring of spray area, this design not only improves the degree of automation of spray, but also enables operator to remotely monitor spray process, adjusts spray strategy in time, ensures spray effect and the health of beef cattle;The engagement transmission of transmission assembly 6 and camera assembly 7 guarantees the stability and reliability of transmission, avoids the problem that camera assembly 7 moves abnormally or stagnates due to transmission is not smooth, and camera assembly 7 is installed in the bottom of top mounting plate 1, and camera assembly 7 is responsible for capturing image information of spray area, and real-time transmission is given to operator or control system, and through camera assembly 7, operator can intuitively understand spray effect, and discover and solve problems in time;At the same time, camera assembly 7 can also record spray process, provide basis for subsequent data analysis and optimization.
[0021] Embodiment two
[0022] As Figure 2Compared with the first embodiment, the embodiment further comprises: the atomizing nozzle 51 is installed on the spray assembly 5, the bottom of the atomizing nozzle 51 is provided with a fire-resistant shell 52, the fire-resistant shell 52 can not only effectively protect the atomizing nozzle 51 from the influence of high-temperature environment, but also ensure the stability and uniformity of mist droplets in the spraying process. In addition, the design of the fire-resistant shell 52 makes it easy to clean and maintain, prolonging the service life of the atomizing nozzle 51; the combination of the atomizing nozzle 51 and the fire-resistant shell 52 further improves the overall performance and reliability of the spraying system, providing more uniform and effective cooling effect for beef cattle.
[0023] As shown in the embodiment, Figure 2 The inside of the fire-resistant shell 52 is provided with a spraying shaft 53, and the bottom of the spraying shaft 53 is provided with a cooling nozzle 54. The design of the spraying shaft 53 enables the cooling nozzle 54 to flexibly adjust the spraying angle and range to adapt to different beef cattle house environments and needs. During the spraying process, the water mist sprayed by the cooling nozzle 54 is fine and uniform, which can quickly reduce the temperature in the beef cattle house and provide a comfortable living environment for beef cattle. At the same time, the materials of the spraying shaft 53 and the cooling nozzle 54 are corrosion-resistant and wear-resistant, ensuring their stability and durability during long-term use. This design not only improves the practicability and effect of the spraying cooling system, but also reduces the maintenance and replacement costs, providing strong support for the sustainable development of beef cattle breeding industry.
[0024] As shown in the embodiment, Figure 1 And Figure 3 The transmission assembly 6 is provided with a connecting fixed plate 61, the bottom of the connecting fixed plate 61 is provided with a transmission motor 62, the output end of the transmission motor 62 is provided with a transmission connecting shaft 64, the transmission connecting shaft 64 is provided with a first transmission gear disc 63, and the first transmission gear disc 63 is engaged with a second transmission gear disc 75 on the spraying shaft 53. When the transmission motor 62 is started, the first transmission gear disc 63 is driven to rotate through the transmission connecting shaft 64, and then the second transmission gear disc 75 and the spraying shaft 53 are driven to rotate. This transmission mode not only has a compact structure, but also has high transmission efficiency, which can ensure that the spraying shaft 53 rotates quickly and stably when needed, realizing uniform spraying of water mist. In addition, the design of the connecting fixed plate 61 enhances the connection stability between the transmission assembly 6 and the transmission motor 62, making the whole spraying cooling system more reliable during operation.
[0025] As shown in the embodiment, Figure 1 And Figure 3As shown, the camera assembly 7 is provided with a shaft mounting seat 71, the bottom of the shaft mounting seat 71 is provided with a shaft linkage rod 72, and the bottom of the shaft linkage rod 72 is provided with a second transmission gear disc 75, which can realize synchronous rotation with the spraying system through the linkage of the shaft mounting seat 71, the shaft linkage rod 72 and the second transmission gear disc 75, so that the camera assembly 7 can always be aligned with the spraying area, and the process of spraying cooling can be captured and recorded in real time, thereby providing visual monitoring for the spraying cooling of beef cattle.
[0026] In this embodiment, as shown in Figure 1 and Figure 3 As shown, the bottom of the second transmission gear disc 75 is provided with a connecting base 73, and the connecting base 73 is provided with an infrared camera 74 through a connecting shaft, so that the spraying cooling system not only has a visual monitoring function, but also has an infrared thermal imaging capability, which enables the breeder to intuitively monitor the temperature distribution of beef cattle through infrared thermal imaging, discover beef cattle with abnormal temperature in time, and effectively prevent diseases; at the same time, the ingenious combination of the infrared camera 74, the second transmission gear disc 75 and the connecting base 73 ensures the stability and accuracy of the infrared camera 74 in the rotating process, thereby providing a more comprehensive and accurate monitoring means for the spraying cooling of beef cattle, and further improving the intelligent level of the spraying cooling system.
[0027] It is obvious for those skilled in the art that the present application is not limited to the details of the above exemplary embodiments, and can be realized in other specific forms without departing from the spirit or essential characteristics of the present application. Therefore, the embodiments should be regarded as exemplary and non-limiting, and the scope of the present application is defined by the appended claims rather than the above description, and all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present application. Any reference signs in the claims should not be regarded as limiting the claims.
Claims
1. A visualizing nozzle for cattle spray cooling, comprising a top mounting plate (1), a spray main pipe (2), a spray assembly (5), a transmission assembly (6) and a camera assembly (7); characterized in that: The bottom of the top mounting plate (1) is provided with a spray main pipe (2) through a connecting strut (3), the bottom of the spray main pipe (2) is provided with a water outlet pipe (4), the water outlet pipe (4) is provided with a spray assembly (5), the bottom of the top mounting plate (1) is provided with a transmission assembly (6), the transmission assembly (6) is engaged with a camera assembly (7) for transmission, and the camera assembly (7) is mounted on the bottom of the top mounting plate (1).
2. A visualizing nozzle for cattle showering according to claim 1, characterized in that: The spray assembly (5) is provided with an atomizing nozzle (51), and the bottom of the atomizing nozzle (51) is provided with a fireproof shell (52).
3. The visualizing nozzle for beef cattle spray cooling according to claim 2, characterized in that: The inside of the fireproof shell (52) is provided with a spraying shaft (53), and the bottom of the spraying shaft (53) is provided with a cooling nozzle (54).
4. The visualizing nozzle for beef cattle spray cooling according to claim 1, characterized in that: The transmission assembly (6) is provided with a connecting fixed plate (61), the bottom of the connecting fixed plate (61) is provided with a transmission motor (62), the output end of the transmission motor (62) is provided with a transmission connecting shaft (64), and the transmission connecting shaft (64) is provided with a first transmission gear disc (63).
5. The visualizing nozzle for beef cattle spray cooling according to claim 1, characterized in that: The camera assembly (7) is provided with a shaft mounting seat (71), the bottom of the shaft mounting seat (71) is provided with a shaft connecting rod (72), and the bottom of the shaft connecting rod (72) is provided with a second transmission gear disc (75).
6. A visualizing nozzle for cattle showering according to claim 5, characterized in that: The bottom of the second transmission gear disc (75) is provided with a connecting base (73), and the connecting base (73) is provided with an infrared camera (74) through a connecting shaft.