Sheep cub nursing and cleaning device for veterinarian

By using a staggered arrangement of distributed hot air ducts and a gradually changing aperture design, combined with a rotatable fan hood and a temperature control sensor, the problem of uneven hot air distribution in the lamb care and cleaning device is solved, achieving uniform hot air distribution and safe care.

CN223585024UActive Publication Date: 2025-11-25宜昌市夷陵区动物疫病预防控制中心
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Patent Information

Application Number
CN202423270423.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2025-11-25
Estimated Expiration
2034-12-30

AI Technical Summary

Technical Problem

Existing lamb care and cleaning devices have uneven hot air distribution in the drying system, leading to excessively high local temperatures that may cause skin burns to lambs.

Method used

It adopts a distributed hot air duct staggered arrangement, a gradually changing aperture design, a rotatable fan hood and a fine-tuning knob, combined with a dust collection box and a temperature control sensor to ensure uniform distribution of hot air and real-time temperature monitoring.

Benefits of technology

It achieves uniform distribution of hot air, avoids localized overheating, ensures the skin health of lambs, and improves the safety and efficiency of care and cleaning.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the utility model provides a veterinary sheep cub nursing and cleaning device. The veterinary sheep cub nursing and cleaning device comprises a cleaning nozzle; the support frame is used for supporting and fixing the cleaning nozzle; the distributed hot air pipeline surrounds the periphery of the supporting frame and provides warm air needed by drying, the distributed hot air pipeline is formed by arranging a plurality of pipelines in a staggered mode, the outlet direction of the distributed hot air pipeline is downward, and the gradually-changed aperture design is adopted; the rotatable fan cover is located at the tail end of each distributed hot air pipeline, and a plurality of fine adjustment knobs are arranged on the rotatable fan cover to adjust the angle of the air outlet; the dust collection recovery box is arranged on one side of the bottom of the device; wherein the rotatable fan cover is connected with the distributed hot air pipeline through a rotating joint; and a gradual change type shunting sheet is arranged in the pipeline of the distributed hot air pipeline and is used for uniformly distributing warm air to each pipeline outlet. Through the scheme of the embodiment of the invention, the problem of how to optimize the distribution uniformity of hot air in the drying system can be solved, and the risk of burning the skin of the sheep cubs caused by local overheating is avoided.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of veterinary medical devices, in particular to a veterinary sheep lamb nursing and cleaning device. BACKGROUND

[0002] The sheep lamb nursing and cleaning device aims to provide comprehensive, gentle and efficient nursing and cleaning services for sheep lambs. However, there is a problem in the actual application of this device, that is, the distribution of hot air is not uniform during the operation of the drying system. Due to the uneven distribution of hot air, the temperature in some areas may be too high, thereby increasing the risk of local overheating. If this happens, the delicate skin of the sheep lambs may be burned, thereby adversely affecting their health. SUMMARY

[0003] Therefore, the present application provides a veterinary sheep lamb nursing and cleaning device to at least partially solve the problems in the prior art.

[0004] The veterinary sheep lamb nursing and cleaning device of the present application comprises:

[0005] a cleaning nozzle;

[0006] a support frame for supporting and fixing the cleaning nozzle;

[0007] a distributed hot air duct surrounding the support frame to provide warm air required for drying, wherein the distributed hot air duct is arranged in multiple branch ducts staggered and with outlet directions downward, and adopts a gradually changing aperture design;

[0008] a rotatable air scoop at the end of each distributed hot air duct, which is provided with a plurality of fine adjustment knobs to adjust the angle of the air outlet;

[0009] a dust suction and recovery box disposed on one side of the bottom of the device; wherein

[0010] the rotatable air scoop is connected to the distributed hot air duct through a rotating joint; and

[0011] the distributed hot air duct is provided with a gradually changing shunt plate inside the duct for uniformly distributing warm air to each duct outlet.

[0012] In one specific embodiment, the rotatable air scoop is provided with a layer of air-permeable mesh.

[0013] In one specific embodiment, an adjusting connecting rod is provided between the distributed hot air ducts to adjust the distance and angle between adjacent ducts.

[0014] In one specific embodiment, the support frame has a telescopic structure.

[0015] In an embodiment, the fine adjustment knob is provided with a positioning hole.

[0016] In an embodiment, a primary or multiple-stage filtering device is additionally arranged inside the dust suction and recycling box.

[0017] In an embodiment, a protective fence is arranged around the cleaning nozzle.

[0018] In an embodiment, an anti-skid pad is arranged at the bottom of the support frame.

[0019] In an embodiment, the outer surface of the distributed hot air duct is covered with a layer of thermal insulation material.

[0020] In an embodiment, a temperature control sensor is integrated inside the support frame to monitor the temperature condition of each part in real time.

[0021] The present disclosure provides a veterinary sheep lamb nursing and cleaning device, which comprises a cleaning nozzle, a support frame for supporting and fixing the cleaning nozzle, a distributed hot air duct surrounding the support frame to provide warm air required for drying, wherein the distributed hot air duct is arranged in a staggered manner with multiple pipes and the outlet direction is downward, and a gradually changing aperture design is adopted; a rotatable air cover is arranged at the end of each distributed hot air duct, and a plurality of fine adjustment knobs are arranged on the rotatable air cover to adjust the angle of the outlet; a dust suction and recycling box is arranged at one side of the bottom of the device; the rotatable air cover is connected to the distributed hot air duct through a rotary joint; and a gradually changing shunt plate is arranged inside the pipe of the distributed hot air duct to uniformly distribute the warm air to each pipe outlet. Through the scheme of the present disclosure, the uniformity of the distribution of hot air in the drying system can be optimized, and the risk of burns on the skin of sheep lambs caused by local overheating can be avoided. BRIEF DESCRIPTION OF DRAWINGS

[0022] In the drawings, like reference numerals refer to like elements throughout the various drawings. The drawings are not necessarily to scale, emphasis instead being placed on illustrating principles of the application. It should be understood that the drawings are merely depictions of some embodiments of the application and that they should not be construed as limiting the scope of the application.

[0023] Figure 1 Fig. 1 is a schematic view of the shaft side structure of the lamb nursing and cleaning device of the present application;

[0024] Figure 2 Fig. 2 is a schematic view of the cleaning nozzle structure of the present application; Figure 1

[0025] Figure 3 Fig. 3 is a top sectional view of the distributed hot air duct of the present application; Figure 1 ​​

[0026] Figure 4 The utility model discloses Figure 1 The structure diagram of support frame is shown.

[0027] In the drawing: 1, cleaning spray head, 2, support frame, 3, dispersed hot air pipeline, 4, rotatable air cover, 5, dust suction recovery box, 6, flow splitter, 7, air-permeable net, 8, adjusting connecting rod, 9, rotary joint, 10, positioning hole, 11, filtering device, 12, guardrail, 13, non-slip pad, 14, heat insulation material layer, 15, temperature control sensor DETAILED DESCRIPTION

[0028] It should be noted that, in this document, relational terms such as first and second and the like can be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Moreover, the terms "comprises", "comprising", or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus. Without further limitation, an element preceded by "comprises... a" does not, without more constraints, foreclose the existence of additional identical elements in the process, method, article, or apparatus that comprises the recited element.

[0029] As Figure 1 and Figure 2 shown, the veterinary sheep lamb nursing cleaning device of the application comprises a cleaning spray head 1, a support frame 2, a dispersed hot air pipeline 3, a rotatable air cover 4 and a dust suction recovery box 5.

[0030] The cleaning spray head 1 is used to spray mild cleaning liquid to the surface of the sheep lamb to remove stains. In order to ensure effective and uniform coverage of each part of the sheep lamb skin, an adjustable angle and height support frame 2 is designed as support. This support not only provides stable basic support for the cleaning spray head 1 but also has a certain flexibility to adjust the position to adapt to small sheep lambs of different sizes and shapes. The support frame 2 and the cleaning spray head 1 are connected through a quick release connector to ensure easy installation and convenient replacement according to specific needs.

[0031] Surrounding the support frame 2 is the dispersed hot air pipeline 3, which forms a multi-branch staggered space structure around the support frame 2 and arranges the pipeline openings downward. Each dispersed pipeline is arranged in a gradually increasing aperture from the top to the bottom, so that the air flow gradually increases with the increase of the channel length, and a consistent flow rate is achieved at the outlet, maintaining stable air pressure between the outlets, so that the hot air is evenly delivered in the entire area.

[0032] The terminal of each distributed hot air duct 3 is equipped with a rotatable air scoop 4 to further refine the air flow pattern. These air scoops have an adjusting function that can control the air supply angle in the respective corresponding area by rotation, preventing a certain position from being excessively exposed to high temperature and thus causing local overheating, while ensuring a broader and safer overall heating area. The orientation of the air outlet can be fine-tuned by operating a small knob to meet the needs of actual application scenarios.

[0033] Placed at the bottom end of the entire device is a dust suction and recovery box 5. Its working principle is to use suction force to collect spilled water stains, stray hairs and other residues during the cleaning process. This step ensures that the operating area remains clean and tidy, reducing the interference of environmental humidity factors, and also facilitates the subsequent cleaning work. The entire box body is provided with a filter core filter layer to separate dry substances from wet waste liquid to avoid cross contamination, and the filter core is easy to clean and replace.

[0034] Specifically, the cleaning nozzle 1 can be designed with an adjustable nozzle angle, matched with a high-pressure water pump to push a fixed amount of detergent to ensure comprehensive flushing; the hot air duct material needs to have durable insulation performance and internal wires for power supply to the heating unit to generate warm air flow. The gradual change in hole diameter can be achieved through precise mechanical processing or special mold manufacturing; in addition, a high-precision stepper motor is used to drive the rotatable air scoop 4 to rotate in multiple directions for adjustment. Finally, the negative ion fan combined with the high-efficiency HEPA dust suction assembly works together to form strong suction power.

[0035] In terms of solving the problem of uneven heat distribution in the optimization of the drying process, the above-mentioned distributed gradual change in hole diameter design combined with the inclined installation method realizes a better gas distribution mechanism, making the air flow speed of each distributed port close to equal, greatly improving the drying efficiency and avoiding damage to the delicate skin tissue of animals due to local high temperature. At the same time, the rotatable air scoop 4 with fine adjustment capability increases the flexibility of the system, which helps to accurately control the temperature at each key node to prevent accidents and ensure that all areas have a suitable temperature for promoting the healthy growth of young animals.

[0036] In one embodiment, as Figure 3As shown, the internal part of the distributed hot air duct 3 of the veterinary sheep young lamb care cleaning device of the present application is provided with a gradually changing shunt 6. The shunt 6 is designed to gradually change, installed in the internal part of the distributed hot air duct 3, and can effectively guide the warm air to the air outlet position. Specifically, the design of the shunt 6 is optimized by its shape and position, which distributes the warm air introduced by the hot air source to different directions and areas, ensuring that the warm air can cover the entire sheep young lamb care area in a more stable and gentle manner, thereby preventing the problem of excessive temperature caused by uneven airflow. In order to achieve this effect, in one specific implementation of the shunt 6, each distributed hot air duct 3 is manufactured to contain several layers of internal channels, and the spacing and cross-sectional size between the layers gradually decrease or increase with position to achieve the required fluid mechanics and airflow distribution characteristics.

[0037] For example, in an actual application scenario, the gradually changing shunt 6 with a predetermined angle and thickness change can be accurately formed by using 3D printing technology. The shunt 6 material is selected from metals or engineering plastics with good thermal conductivity and corrosion resistance, ensuring that it can maintain stable performance under long-term use conditions. These shunts 6 are tightly combined with the pipe wall and arranged according to the ideal air flow route calculated in advance. In addition, in order to further ensure the shunt effect, a baffle structure can be provided to divide and guide the air flow at appropriate positions, so that the air flow entering each outlet air hole can be more uniform and gentle.

[0038] In one embodiment, referring back to Figure 2 , the veterinary sheep young lamb care cleaning device of the present application is provided with a layer of air-permeable net 7 on the rotatable air cover 4 to optimize the transmission and distribution characteristics of the warm air flow. This design ensures that when drying the surface of the sheep young lamb, the air flow is more gentle and uniform, avoiding the discomfort or potential harm to the young lamb caused by direct strong wind. The air-permeable net 7 is located on one side of the inside of the rotatable air cover 4, tightly covering the entire air outlet area. It not only disperses the air flow, but also acts as a filter medium to prevent larger particles from entering the hot air flow path, further ensuring cleaning and safety performance.

[0039] The air-permeable net 7 is made of flexible high polymer material, which has good air permeability and durability, while maintaining a low drag coefficient, so as not to significantly affect the air volume. Specifically, the grid structure of this air-permeable net 7 is designed as a small pore diameter mesh surface that is fine but not too obstructive to air flow, and is provided with a fixed edge around it to ensure its stable installation position, and will not be displaced during use due to external vibration or improper operation.

[0040] For example, the air-permeable mesh 7 can be connected to the inside of the rotatable hood 4 by an adhesive or other mechanical fasteners. Such a technical solution achieves effective gas dispersion and maintains structural integrity. In addition, the fine-tuning knob still retains its original function, and users can enjoy the uniform and soft airflow environment brought by the air-permeable mesh 7 while adjusting the angle of the air outlet. This combination not only enhances the user experience but also provides more detailed care options.

[0041] In one embodiment, the present application provides an adjustable connecting rod 8 between the distributed hot air pipes 3 of a veterinary sheep lamb care cleaning device, which is installed between adjacent distributed hot air pipes 3. The design of the adjustable connecting rod 8 allows the distance and angle between the two pipes to be adjusted manually or electrically. Specifically, the adjustable connecting rod 8 is composed of a telescopic metal pipe and a set of hinged points that can provide multiple degrees of freedom for multi-directional rotation, allowing the distributed hot air pipes 3 at different positions to be adjusted in multiple planes.

[0042] By introducing the adjustable connecting rod 8, the device can be more flexible to adapt to different types and sizes of sheep lambs. For example, when a certain part needs special attention during cleaning, users can change the direction and intensity of the hot air according to the actual situation to ensure that the wool surface is fully and uniformly dried. This design is particularly suitable for personalized operations between individuals at different growth stages or with large body condition differences, further improving the practicality and flexibility of the device.

[0043] Specifically, an electric motor-driven gear transmission system can be used to control the extension length and rotation angle of the connecting rod, or a manual threaded rod adjustment device can be used to change the relative position and inclination angle between the two pipes to meet the needs of specific application scenarios.

[0044] In one embodiment, the present application provides a veterinary sheep lamb care cleaning device with a telescopic support frame 2, which allows the device to freely adjust the height in the vertical direction to meet the needs of sheep lambs of different sizes and body positions. At the same time, the support frame 2 also has multi-angle deflection capability in the horizontal direction to meet the working requirements of the cleaning nozzle 1. In this way, the coverage during cleaning is wider, and the operator can more accurately control the direction and intensity of the spray.

[0045] The design ensures convenience and safety during the nursing process. Specifically, the telescopic function of the support frame 2 is realized by a set of precise threaded rod systems located inside the support frame 2, which can be adjusted manually or electrically. When the height needs to be adjusted, simply rotate the adjustment knob or press the controller button to make the threaded rod rise or fall. The multi-angle deflection in the horizontal direction is achieved by installing a universal joint structure at the bottom of the support frame 2. This structure not only can bear a larger weight, but also allows the support frame 2 to realize free angle adjustment within a larger range. This provides great convenience for different cleaning scenarios.

[0046] For example, when encountering larger lamb or needing to clean the back area of the body, the support frame 2 can be adjusted to the appropriate height and fine-tuned for the best working angle through simple hand movements. The whole process is fast and accurate, and will not cause additional stress or discomfort to the lamb. This height-adjustable and multi-angle deflection functional design effectively supports the smooth development of cleaning work.

[0047] In one embodiment, the rotatable air cover 4 of the veterinary lamb nursing and cleaning device of the present application is connected to the distributed hot air duct 3 through a special rotary joint 9, thereby giving the air cover the ability to rotate and position freely within a certain range. This not only enhances the flexibility of the device, but also allows the outflow angle to be adjusted according to different scenarios to achieve the best outflow effect. This design fully considers the actual application requirements, especially the fine nursing requirements of small livestock such as lambs.

[0048] The specific structure of the rotary joint 9 includes a flexible and stable coupling structure, which ensures that the distributed hot air duct 3 and the rotatable air cover 4 are closely connected while allowing the latter to rotate freely. Through this joint connection, whether it is adjusting the outflow direction during initial installation or fine-tuning according to actual needs during subsequent use, it can be easily completed. In particular, this connection method does not affect the smooth outflow of air from the duct to the outside. The design of the rotary joint 9 also allows the user to fix the air cover at a specific position when needed, thereby maintaining a constant wind direction to achieve stable blow-drying or warm air functions.

[0049] In one embodiment, a rotary joint 9 made of high-toughness material can be used, and it integrates damping elements inside to ensure smoothness during rotation and stability when stopped. Specifically, when the angle of the air cover needs to be adjusted, the technician can easily change the desired position by slightly rotating the joint part; at the same time, due to the presence of damping, even after the external force is removed, the air cover can still stably maintain the adjusted direction unchanged. In this way, the entire device can provide great convenience and reliability for veterinary care.

[0050] In one embodiment, the fine-tuning knob of the veterinary sheep lamb care cleaning device of the present application is provided with a positioning hole 10 for accurately locking the angle of the air cover. The support frame 2 and the distributed hot air duct 3 jointly constitute the main frame structure, under which the various components are installed closely and reasonably arranged. The specific design of the fine-tuning knob allows the operator to conveniently and accurately set the optimal inclination position of the air cover.

[0051] Specifically, the positioning hole 10, combined with the thread structure or gear structure of the knob itself, can be fixed by mechanical fitting when set at different angles. The fine-tuning knob is located on each rotatable air cover 4 and is firmly installed to ensure the stability and safety of the adjustment process. This combination can not only provide sufficient adjustment range to meet the needs of actual application scenarios, but also ensure that the air cover will not accidentally rotate due to external force or other interference after adjustment, affecting the use effect.

[0052] For example, the fine-tuning knob can use a spring compression system inside to align the protruding part with the positioning hole 10 for limiting when it is rotated to a specific angle. Such a mechanism effectively improves the operation reliability of the device and the user experience satisfaction. The technical implementation is to design the knob to contain multiple protruding points, which are docked to the corresponding holes one by one during the adjustment process to establish the angle. When the fine-tuning knob is turned to the right position, the built-in structure will form a stable mechanical lock between the two contact surfaces to prevent loosening and ensure that the air cover remains in the selected position throughout the service period.

[0053] In one embodiment, the dust collection and recycling box 5 of the veterinary sheep lamb care cleaning device of the present application is additionally provided with one or more levels of filtering devices 11 (see Figure 1 ). Through these filtering devices 11, waste water and wool can be effectively separated, and the quality of the exhaust gas can be further purified to avoid environmental pollution or re-pollution of the sheep lambs caused by untreated exhaust gas.

[0054] The design of the one or more levels of filtering devices 11 is based on the principles of physical blocking and inertial action. When the air cleaner sucks water vapor and small particles in the air, these substances will enter the filter screen along with the airflow. As the number of filter layers increases or the filter holes become smaller, more foreign matter can be captured, and eventually relatively clean air is discharged through the exhaust port. In actual application, this feature helps to ensure the cleanliness of the cleaning environment and the air in the operating space. This design not only ensures the effective purification of exhaust gas, but also reduces the frequency of equipment maintenance and improves user experience.

[0055] For example, the filter device 11 mounting frame is arranged on the side of the dust suction recovery box 5 close to the bottom. The frame is made of a strong and durable material and can stably fix a plurality of independent filter core assemblies arranged in parallel. The filter cores are in close contact and sealed connection with each other to prevent untreated air from bypassing the filter material. The filter material is selected to have high interception efficiency, corrosion resistance, and long service life, such as composite fiber material or metal mesh screen. Through reasonable structural layout and scientific material selection, the filtering performance and service life are fully guaranteed.

[0056] With reference to the foregoing Figure 1 In one embodiment, a protective fence 12 is arranged around the cleaning nozzle 1 of the veterinary sheep lamb care cleaning device of the present application, and the fence is lined with a flexible material to avoid accidental harm to the sheep lamb during use of the cleaning nozzle 1. This design cleverly balances the cleaning efficiency and the need for animal safety protection. During the cleaning process, the protective fence 12 can effectively prevent the nozzle from directly contacting the fragile body parts of the lamb, reducing the risk of physical damage, while also ensuring that the cleaning agent can act smoothly on the target surface.

[0057] Specifically, the protective fence 12 is installed around the cleaning nozzle 1 and is stably attached to the support frame 2 through a fixing structure, ensuring that it can provide sufficient safety protection without affecting the movement of the nozzle. The fence is filled with a flexible material with good elasticity and wear resistance, which not only enhances the flexibility of the device during use but also cushions the impact force that may exist. The flexible material is uniformly filled in the frame structure made of metal or hard plastic, forming an interface that can withstand external force and is soft enough.

[0058] For example, silica gel or specially designed sponge material can be selected as the flexible lining material, and a hot-pressing process is used to firmly fix these linings on the metal mesh or other types of strong supports. This not only maintains a neat and beautiful appearance, but also has good cushioning performance after long-term use. Through precise machining and assembly processes, every detail is strictly in line with safety requirements, while also facilitating the user's daily cleaning and maintenance operations.

[0059] In one embodiment, the veterinary sheep lamb care cleaning device of the present application is provided with an anti-slip pad 13 at the bottom of the support frame 2 to keep the device stable and prevent it from sliding during work. The support frame 2 not only serves to carry and support the core components of the entire care cleaning device, but also ensures that the operator can use the device safely and stably. By installing the anti-slip pad 13, the friction between the bottom of the device and the operating platform can be effectively enhanced, avoiding movement or tilting caused by slight vibrations during operation or due to external environmental factors.

[0060] The anti-slip pad 13 is usually made of materials with high friction coefficient, such as silica gel or rubber, which not only have excellent anti-slip performance, but also can effectively buffer external impact force, thereby further improving the stability of the device. The combination between the support frame 2 and the anti-slip pad 13 is tight and firm, and the anti-slip pad 13 is installed on the bottom of the support frame 2 by adhesive or other fixing means, and is integrated with the overall structure of the support frame 2. For example, the anti-slip pad 13 can be designed in a way that the protrusions and grooves are matched to achieve a more secure fixation.

[0061] In order to achieve the above-mentioned anti-slip effect, the anti-slip pad 13 can be pre-made to adapt to the design of the bottom shape of the support frame 2, and when actually installed, the anti-slip pad 13 is attached to the bottom surface of the support frame 2 flatly and uniformly by using appropriate tools. This connection ensures that the nursing and cleaning device can maintain good fixation even on uneven operation table surfaces, providing users with a reliable use experience.

[0062] In one embodiment, the outer surface of the distributed hot air pipe 3 of the veterinary lamb nursing and cleaning device of the present application is covered with a layer of heat insulation material 14 to reduce the influence of external environmental temperature on hot air transmission. The heat insulation material layer 14 effectively reduces heat loss, thereby improving heating efficiency and ensuring safety, avoiding the risk of burns or safety hazards caused by excessive heat.

[0063] The distributed hot air pipe 3 in this design is located around the support frame 2 and is arranged in a staggered manner to form multiple pipe rings, so that the airflow can cover the entire cleaning area more uniformly. The outlet direction of each pipe is downward, and a variable aperture design is adopted to optimize the wind speed distribution, ensuring that the gas flow rate remains consistent at different positions. This structure effectively improves the drying performance of the cleaning device while ensuring that there is no local overheating during use. Specifically, the distributed hot air pipe 3 is equipped with a rotatable air cap 4 at the end, which allows the angle of the air outlet to be adjusted to adapt to different working requirements.

[0064] Specifically, materials with excellent heat insulation performance, such as high-temperature resistant rubber or foamed plastic, can be selected as the heat insulation layer. The heat insulation material should be tightly attached to the outer surface of the distributed hot air pipe 3 to ensure that there is no gap and prevent cold air from penetrating and interfering with the heating effect. When installing, the heat insulation material is cut into a long strip and fixed around the outside of each pipe, so that each part is fully protected. For example, the thickness and width of the heat insulation material can be adjusted according to actual conditions during processing to meet the actual application requirements while ensuring overall aesthetics and compact design.

[0065] This embodiment not only reflects the safety considerations of the device, but also reflects the attention to details, thereby improving the practicality of the device and the convenience of user use.

[0066] In one embodiment, the support frame 2 of the veterinary sheep lamb care cleaning device of the present application is integrated with a temperature control sensor 15 inside. The temperature control sensor 15 is located inside the support frame 2, which can monitor the temperature conditions of each part of the support frame 2 in real time, and feedback to the control center through the connection line, so as to realize the automatic adjustment of the internal environment temperature of the whole care cleaning device. The installation position of the sensor is reasonable, which ensures that it can fully detect the actual temperature change of each key area and avoid the risk of burns caused by local high temperature.

[0067] Specifically, the temperature control sensing system uses a precise temperature detection element, combined with efficient signal processing and communication technology, which can transmit temperature data to the central processor within seconds. The support frame 2 is a key structure of a load-bearing and integrated functional component, and its internal structure is designed as a multi-layer frame to ensure enough space for temperature control sensing lines and other electrical components. The information exchange between the temperature control sensor 15 and the control center is completed by a stable and reliable signal transmission link. The control center automatically controls the output power of the heating source and the cooling system according to the collected temperature parameters to maintain a stable and safe use environment. In addition, the support frame 2 also reserves enough maintenance and repair paths for regular calibration and inspection of the sensor and lines.

[0068] For example, in order to further improve the temperature control accuracy, in actual application, the temperature control sensor 15 can be selected with high sensitivity and wide range characteristics, and multiple sampling points can be set to cover the temperature fluctuation range that may occur under different working conditions. At the same time, intelligent temperature compensation algorithm is introduced at the software level, which automatically adjusts the target set temperature interval according to the preset safety threshold, to prevent abnormal temperature rise and fall caused by external interference or internal load mutation.

[0069] In actual operation process, when the device is used, the cleaning nozzle 1 is used to spray mild cleaning liquid to the surface of the sheep lamb to remove stains. The support frame 2 is responsible for supporting and fixing the cleaning nozzle 1, and ensures that its position is adjustable to adapt to sheep lambs of different sizes. Around the support frame 2 are the distributed hot air pipes 3, which provide the warm air required for drying. These hot air pipes are arranged in multiple pipes staggered and the outlet direction is downward, adopting a gradual aperture design to ensure that the airflow gradually increases the flow rate from top to bottom, so that the outlet air speed is uniform. The end of each distributed hot air pipe 3 is equipped with a rotatable air scoop 4, which is provided with several fine adjustment knobs to adjust the outlet angle, so as to further ensure that the wind coverage area is extensive in the whole area, effectively preventing skin burns caused by local overheating. The dust collection and recovery box 5 is placed on one side of the bottom of the device, which can timely suck the generated wastewater and dander impurities during the cleaning process, maintain a clean environment and ensure the smooth operation of the subsequent operation.

[0070] The above are preferred embodiments of the present application, it should be pointed out that, for those skilled in the art, without departing from the principles described in the present application, can make several improvements and refinements, these improvements and refinements should also be considered as the protection scope of the present application.

Claims

1. A veterinary device for caring for and cleaning lambs, characterized in that, The utility model relates to a kind of cleaning nozzle and its supporting frame, including: Cleaning nozzle (1); Support frame (2) for supporting and fixing cleaning nozzle (1); Dispersed hot air duct (3) is surrounded around support frame (2), wherein the dispersed hot air duct (3) is arranged as multiple branch staggered pipeline and outlet direction is downward, and each dispersed pipeline is arranged gradually increasing from top to low aperture; Rotatable air scoop (4) is located at the end of each dispersed hot air duct (3), and a plurality of fine adjustment knobs are provided on it to adjust the angle of outlet port; Dust suction recovery box (5) is arranged at the bottom of the device on one side;Wherein The rotatable air scoop (4) is connected with the dispersed hot air duct (3) by rotating joint (9);And The inside of the dispersed hot air duct (3) is provided with gradually changing shunt piece (6) for uniformly distributing warm air to each pipeline outlet.

2. A lambing crèche cleaning apparatus for veterinary use according to claim 1 characterised in that: A layer of air-permeable mesh (7) is provided on the rotatable air scoop (4).

3. A lambing crèche cleaning apparatus for veterinary use according to claim 1 characterised in that: Adjusting connecting rod (8) is provided between the dispersed hot air duct (3) for adjusting the distance and angle between adjacent pipelines.

4. A lambing crèche cleaning apparatus for veterinary use according to claim 1 characterised in that: The support frame (2) has telescopic structure.

5. A lambing crèche cleaning apparatus for veterinary use according to claim 1 characterised in that: The fine adjustment knob is provided with positioning hole (10).

6. A lambing crèche cleaning apparatus for veterinary use according to claim 1 characterised in that: A primary or multi-stage filtering device (11) is additionally provided inside the dust suction recovery box (5).

7. A lambing crèche cleaning apparatus for veterinary use according to claim 1 characterised in that: Protective fence (12) is provided around the cleaning nozzle (1).

8. A lambing crèche cleaning apparatus for veterinary use according to claim 1 characterised in that: Anti-slip pad (13) is installed at the bottom of the support frame (2).

9. A lambing crèche cleaning apparatus for veterinary use according to claim 1 characterised in that: The outer surface of the dispersed hot air duct (3) is covered with a layer of heat insulation material (14).

10. A lamb care cleaning device for veterinary use according to claim 1, characterised in that: Temperature control sensor (15) is integrated inside the support frame (2) to monitor the temperature condition of each part in real time.