A method and system for breeding sheep with pneumonia

By combining spray medicated baths and inhalation with drying treatment, the problem of incomplete drug coverage on the sheep's body surface and respiratory tract was solved, achieving highly effective protection for sick sheep, reducing the pneumonia infection rate, and enhancing drug adhesion and protective effect.

CN120345559BActive Publication Date: 2026-07-31XINJIANG ACAD OF ANIMAL SCI
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
XINJIANG ACAD OF ANIMAL SCI
Filing Date
2025-04-15
Publication Date
2026-07-31

AI Technical Summary

Technical Problem

Existing medicated bath techniques do not provide comprehensive drug coverage for sheep with pneumonia, as the medication cannot penetrate the wool and adhere to the sheep's skin, resulting in poor protective effects.

Method used

The method combines spray medicated bath with inhalation, using an atomizing component to spray the drug onto the surface and inside of the wool, and using a drying method to improve drug adhesion. Combined with surface and respiratory tract coverage, a specific formulation of drug A is used to prolong the drug's residence time on the sheep's surface and respiratory tract.

Benefits of technology

It improved the coverage of the drug on the sheep's body surface and respiratory tract, reduced the infection rate of pneumonia in sheep flocks, prolonged the duration of drug action, enhanced protection against respiratory pathogens, and improved the effectiveness of pneumonia prevention.

✦ Generated by Eureka AI based on patent content.

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Abstract

This application discloses a method and system for raising sheep infected with pneumonia, relating to the field of poultry farming technology. The system includes an atomizing component and a box. The spray pipe of the atomizing component contacts the sheep's skin and sprays a medicated bath onto the sheep. The box has spray holes at the bottom and contains disease-preventing feed; when the sheep eat the feed, drug A is sprayed into the box for them to inhale. It also includes a U-shaped channel, divided into an inlet, a temporary storage channel, a drying channel, and an outlet. The atomizing component is located between the inlet and the temporary storage channel. The atomizing component further includes a first cover, a second cover, and a curved tube. The tail end of the curved tube is connected to an atomizing device, and multiple spray pipes are connected to it, distributed on the upper part and both sides of the curved tube. The spray pipes located on the upper part of the curved tube pass through the first and second covers, while those on both sides pass through the U-shaped channel. The drying channel has multiple air outlet pipes on its side walls, the ends of which are connected to a dryer for drying drug A on the sheep's skin.
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Description

Technical Field

[0001] This invention relates to the field of poultry farming technology, and in particular to a method and system for raising sheep infected with pneumonia. Background Technology

[0002] Pediatric medications are often available in tablet or capsule form, but children, due to their limited swallowing ability, often find it difficult to take these medications directly. Therefore, grinding the medications into powder form, making them easier to mix with food or liquids, has become a common solution. The efficacy of pediatric medications directly impacts children's health and growth. Grinding the medications allows for better control of dosage and concentration, thereby improving both efficacy and safety.

[0003] Publication No. CN110574732B discloses a method for disease prevention and control in the breeding of Qianbei Ma sheep, including the following steps: S1. Site selection and sheep grass planting; S2. Preparation of disease prevention agents; S3. Processing and preparation of disease prevention forage, mixing agent A with harvested and chopped forage at a ratio of 1:6, and then sequentially processing it through silage, ammoniation, and fermentation to obtain disease prevention forage; applying agent B evenly to the forage in the outdoor breeding area every 2-3 days at night using a spraying device, and harvesting the forage in areas not consumed in the short term the day after the application is completed, using it as raw material for disease prevention forage; S4. Disinfection and source elimination; S5. Deworming and medicated baths; S6. Immunization.

[0004] The above-mentioned prevention and control methods are not very effective for sheep with pneumonia during the implementation of medicated baths. Conventional medicated baths may result in incomplete medication, and the medicated solution may not be able to penetrate the wool and adhere to the sheep's skin. Summary of the Invention

[0005] This application provides a method and system for raising sheep with pneumonia, which solves the technical problem of incomplete drug bathing in the prior art. The drug solution in the drug bath is difficult to penetrate the wool and adhere to the sheep's skin. By using a spray drug bath, the coverage of the drug on the sheep's body surface is improved. Furthermore, the method combines surface treatment and inhalation, and the sheep's body surface is dried after the drug bath to improve the adhesion of the spray drug bath, which is more conducive to the technical effect of preventing pneumonia in sheep.

[0006] This application provides a sheep breeding system for pneumonia, including an atomizing component and a box. The atomizing component sprays drugs onto the outer and inner layers of the wool. The box contains disease-preventing feed. When the sheep eats the disease-preventing feed in front of the box, drugs are sprayed into the box so that the sheep can inhale the sprayed drugs.

[0007] It also includes a U-shaped channel, which is divided into an inlet, a temporary holding channel, a drying channel, and an outlet, and its function is to guide the sheep to move; the atomizing component is set between the inlet and the temporary holding channel;

[0008] The atomizing component also includes a first cover and a second cover, both fixed to the top of the U-shaped channel between the inlet and the temporary holding channel. The first cover is installed at a higher height than the second cover. When the sheep lowers its head to enter the lower end of the second cover, the sheep's neck and body can remain relatively horizontal, which makes the spray medicated bath more comprehensive.

[0009] The atomizing assembly also includes: multiple curved tubes, located near the top of the U-shaped channel between the inlet and the temporary channel, with their tail ends connected to the atomizing device;

[0010] Multiple spray tubes are installed at one end on the upper part and both sides of the curved tube. The other end of the upper spray tube passes through the first cover and the second cover in sequence. The other end of the spray tubes at both sides passes through the U-shaped channel. The spray tubes can extend into the sheep's hair and come into contact with the body surface, and then spray drug A onto the sheep's body surface through a spray bath.

[0011] The box is installed in the temporary passage and has a spray hole at the bottom, which is connected to a spraying device for spraying medicine; a feeding device is installed at the top of the box for automatically feeding disease-preventing feed.

[0012] The inlet to the atomizing component, the inlet to the temporary storage channel, the inlet to the drying channel, and the inlet and outlet of the drying channel are respectively equipped with a first switch, a second switch, a third switch, and a fourth switch, which are used to control the movement and stay of the sheep.

[0013] Multiple air outlet pipes are installed on both sides of the U-shaped channel in the drying tunnel; the ends of the air outlet pipes are connected to the dryer and are used for drying sheep after spraying them with a spray medicine bath.

[0014] Furthermore, the spray pipe is divided into a hard section and a soft section. The soft section can change the angle of the spray pipe according to the sheep's body movement, making the sprayed medicated bath more flexible in terms of location.

[0015] Furthermore, the atomizing assembly also includes a capsule, which is fixed to the inner wall of the U-shaped channel and the inner cross section of the second cover. The spray tube passes through the capsule, and the connection section between the spray tube and the curved tube is a foldable section. The rigid section is fixed to the capsule. The expansion or contraction of the capsule can move the spray tube to adapt to sheep of different sizes.

[0016] Furthermore, a connecting pipe is connected to the bearing on the rigid section; an iron plate is fixed on the connecting pipe and located at the connection between the connecting pipe and the rigid section; multiple electromagnets are circumferentially installed on the outer circumferential surface of the rigid section, and the electromagnets attract the iron plate through electromagnetic induction. The movement of the iron plate drives the connecting pipe to rotate, thereby changing the direction of the sprayed drug. The function is to rotate the position of the sprayed drug bath and prevent the sprayed drug from dripping and slipping.

[0017] A method for raising sheep infected with pneumonia, S1. Site selection: Select an outdoor breeding site with abundant grassland and fresh air, and divide it into multiple breeding areas;

[0018] S2. Preparation of feed mixture and disinfectant: The disease prevention drug is prepared by boiling the following raw materials (parts by weight): 2 parts Codonopsis pilosula, 5 parts Cinnamomum cassia, 2 parts Polygonum multiflorum, 2 parts Dryopteris crassirhizoma, 6 parts Banana root, 3 parts Polygonum cuspidatum, 1.2 parts Astragalus membranaceus, 1.5 parts Plantago asiatica, and 35 parts water. The disease prevention drug is mixed with water at a ratio of 1: (30-90) to obtain the feed mixture, and the disease prevention drug is mixed with water at a ratio of 1: (80-120) to obtain the disinfectant.

[0019] S3. Forage processing: Mix feed medicine with forage at a ratio of 1:(4-16), and then process it through silage, ammoniation and fermentation to obtain disease prevention forage;

[0020] S4. Disinfection and source elimination: Regularly disinfect sheep pens and clean and disinfect manure with disinfectant;

[0021] S5. The drug for the spray bath is drug A (combined for surface and inhalation). Drug A (parts by weight) is prepared by mixing chitosan, nanocellulose, glycerol, β-cyclodextrin, tea tree oil extract, eucalyptus oil, honeysuckle extract, andrographolide, dipotassium glycyrrhizate, nano zinc oxide, and aseptically. Chitosan can prolong the time that drug A adheres to the sheep's body surface.

[0022] Chitosan 2 Film-forming sustained release enhances drug adhesion. Nanocellulose 1.5 Thickening and adsorption, prolonging drug retention time glycerin 3 Moisturizes and prevents evaporation, maintaining a humid environment for the wool. β-Cyclodextrin 1.5 Encapsulates volatile components, reducing drug degradation. Tea tree oil extract 2 Broad-spectrum antibacterial (targeting bacteria and fungi) Eucalyptus oil 2 Fights respiratory pathogens and promotes mucus discharge. Honeysuckle extract 1.5 Antiviral agents (such as those for Mycoplasma pneumoniae in sheep). Andrographolide 1 Anti-inflammatory, relieves lung inflammation Dipotassium glycyrrhizate 0.5 Soothes respiratory mucosa and enhances immunity Nano zinc oxide 0.3 Antibacterial, promotes skin healing sterile water 85.7 dilution carrier

[0023] Atomized particle size classification: body surface spray: 50-100μm (attached to wool, slow-release drug); respiratory spray: 5-10μm (can be inhaled into the bronchi, directly acting on lung pathogens); dosage per sheep: 300-400ml / time (250ml for body surface + 50-150ml for targeted respiratory spray); frequency: once every 10 days, shortened to once every 7 days during peak epidemic periods.

[0024] One or more technical solutions provided in this application have at least the following technical effects or advantages:

[0025] Pneumonia is prevented through spray baths and inhalation. Drug A is applied topically and inhaled simultaneously, covering both the skin and respiratory tract (for deworming and pneumonia prevention), reducing the pneumonia transmission rate in sheep flocks. It targets respiratory pathogens (such as Pasteurella and Mycoplasma), prolonging the drug's residence time in wool and the respiratory tract to achieve slow-release and long-lasting protection. Furthermore, the skin of sheep is dried after the spray bath, improving the adhesion of the spray and further enhancing the technical effectiveness of pneumonia prevention in sheep. Attached Figure Description

[0026] Figure 1 This is a top view of a method and system for raising sheep with pneumonia according to the present invention.

[0027] Figure 2 This is a U-shaped channel structure diagram of a method and system for raising sheep with pneumonia according to the present invention;

[0028] Figure 3 This is a schematic diagram of the entrance shed structure of a method and system for raising sheep with pneumonia according to the present invention;

[0029] Figure 4 This is a schematic diagram of the hose structure in Embodiment 2 of the method and system for raising sheep with pneumonia according to the present invention;

[0030] Figure 5 This is a diagram of the cyst structure in a third embodiment of a method and system for raising sheep with pneumonia according to the present invention;

[0031] Figure 6 This is a diagram showing the cyst swelling state in a third embodiment of a method and system for raising sheep with pneumonia according to the present invention.

[0032] Figure 7 This is a diagram of the connecting pipe structure of a method and system for raising sheep with pneumonia according to the present invention, in embodiment four.

[0033] In the picture:

[0034] 100. U-shaped channel; 101. Inlet; 102. Temporary passage; 103. Drying passage; 104. Outlet; 110. First switch; 111. Inlet shed; 120. Second switch; 121. Box body; 130. Third switch; 140. Fourth switch; 200. Atomizing component; 131. Air outlet pipe; 201. First cover; 202. Second cover; 210. Curved pipe; 220. Spray pipe; 2201. Hard section; 2202. Soft end; 230. Bag body; 240. Connecting pipe; 241. Iron sheet; 250. Electromagnet. Detailed Implementation

[0035] To facilitate understanding of the present invention, a more complete description of this application will be given below with reference to the accompanying drawings, which illustrate preferred embodiments of the invention. However, the invention can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to enable a more thorough and complete understanding of the disclosure of the present invention.

[0036] It should be noted that the terms "vertical," "horizontal," "up," "down," "left," "right," and similar expressions used in this article are for illustrative purposes only and do not represent the only possible implementation.

[0037] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains; the terminology used herein in the description of the invention is for the purpose of describing particular embodiments only and is not intended to limit the invention; the term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.

[0038] Example 1: As Figures 1 to 3 As shown, this application discloses a sheep breeding system for pneumonia, including an atomizing component 200 and a box 121. The atomizing component 200 sprays drugs onto the outer and inner layers of the wool. The box 121 contains disease prevention feed. When the sheep eats the disease prevention feed in front of the box 121, drugs are sprayed inside the box 121, allowing the sheep to inhale the sprayed drugs.

[0039] It also includes a U-shaped channel 100, which is divided into an inlet 101, a temporary storage channel 102, a drying channel 103 and an outlet 104, and its function is to guide the sheep to move; the atomizing component 200 is disposed between the inlet 101 and the temporary storage channel 102.

[0040] The atomizing component 200 also includes: a first cover 201 and a second cover 202, both fixed on the top of the U-shaped channel 100 between the inlet 101 and the temporary passage 102, and the first cover 201 is installed at a higher height than the second cover 202. When the sheep lowers its head to enter the lower end of the second cover 202, the sheep's neck and body can remain relatively horizontal, which makes the spray medicated bath more comprehensive.

[0041] The atomizing assembly 200 further includes: a plurality of curved tubes 210, which are located near the top of the U-shaped channel 100 between the inlet 101 and the temporary channel 102, and whose tail ends are connected to the atomizing device;

[0042] Multiple spray tubes 220 are installed at one end on the upper part and both sides of the curved tube 210. The other end of the upper spray tube 220 passes through the first cover 201 and the second cover 202 in sequence. The other end of the spray tubes 220 at both sides passes through the U-shaped channel 100. The spray tubes 220 can extend into the sheep's hair and come into contact with the body surface, so that the drug A can be sprayed onto the sheep's body surface through a spray bath.

[0043] The box body 121 is installed in the temporary passage 102 and has a spray hole at the bottom. The spray hole is connected to a spraying device for spraying medicine. The upper end of the box body 121 is equipped with a feeding device for automatically discharging disease-preventing feed.

[0044] A first switch 110, a second switch 120, a third switch 130, and a fourth switch 140 are respectively installed at the inlet 101 into the atomizing component 200, the inlet 200 into the temporary storage channel 102, the inlet 102 into the drying channel 103, and the inlet / outlet 104 of the drying channel 103. Their function is to control the movement and stay of the sheep.

[0045] Multiple air outlet pipes 131 are installed on both sides of the U-shaped channel 100 at the drying channel 103; the end of the air outlet pipe 131 is connected to the dryer and is used for drying sheep after spraying them with a spray medicine bath.

[0046] A method for raising sheep infected with pneumonia, S1. Site selection: Select an outdoor breeding site with abundant grassland and fresh air, and divide it into multiple breeding areas;

[0047] S2. Preparation of feed mixture and disinfectant: The disease prevention drug is prepared by boiling the following raw materials (parts by weight): 2 parts Codonopsis pilosula, 5 parts Cinnamomum cassia, 2 parts Polygonum multiflorum, 2 parts Dryopteris crassirhizoma, 6 parts Banana root, 3 parts Polygonum cuspidatum, 1.2 parts Astragalus membranaceus, 1.5 parts Plantago asiatica, and 35 parts water. The disease prevention drug is mixed with water at a ratio of 1: (30-90) to obtain the feed mixture, and the disease prevention drug is mixed with water at a ratio of 1: (80-120) to obtain the disinfectant.

[0048] S3. Forage processing: Mix feed medicine with forage at a ratio of 1:(4-16), and then process it through silage, ammoniation and fermentation to obtain disease prevention forage;

[0049] S4. Disinfection and source elimination: Regularly disinfect sheep pens and clean and disinfect manure with disinfectant;

[0050] S5. The drug for the spray bath is drug A (combined for surface and inhalation). Drug A (parts by weight) is prepared by mixing chitosan, nanocellulose, glycerol, β-cyclodextrin, tea tree oil extract, eucalyptus oil, honeysuckle extract, andrographolide, dipotassium glycyrrhizate, nano zinc oxide, and aseptically. Chitosan can prolong the time that drug A adheres to the sheep's body surface.

[0051] Chitosan 2 Film-forming sustained release enhances drug adhesion. Nanocellulose 1.5 Thickening and adsorption, prolonging drug retention time glycerin 3 Moisturizes and prevents evaporation, maintaining a humid environment for the wool. β-Cyclodextrin 1.5 Encapsulates volatile components, reducing drug degradation. Tea tree oil extract 2 Broad-spectrum antibacterial (targeting bacteria and fungi) Eucalyptus oil 2 Fights respiratory pathogens and promotes mucus discharge. Honeysuckle extract 1.5 Antiviral agents (such as those for Mycoplasma pneumoniae in sheep). Andrographolide 1 Anti-inflammatory, relieves lung inflammation Dipotassium glycyrrhizate 0.5 Soothes respiratory mucosa and enhances immunity Nano zinc oxide 0.3 Antibacterial, promotes skin healing sterile water 85.7 dilution carrier

[0052] Atomized particle size classification: body surface spray: 50-100μm (attached to wool, slow-release drug); respiratory tract spray: 5-10μm (can be inhaled into the bronchi, directly acting on lung pathogens); dosage per sheep: 300-400ml / time (250ml for body surface + 50-150ml for targeted respiratory tract spray); frequency: once every 10 days, shortened to once every 7 days during peak epidemic periods.

[0053] Specific implementation: First, a single sheep enters the entrance 101. At this time, the first switch 110 is open and the second switch 120 is closed. During the process of the sheep entering the atomizing component 200, because the first cover 201 is lower than the entrance shed 111, the sheep needs to lower its head to enter the lower part of the atomizing component 200. The sheep's hair will come into contact with the spray pipe 220, and then the sheep will be given a spray bath. The spray pipe 220 sprays drug A onto the sheep's body surface (the sheep will also inhale a small amount of drug A). After the sheep's body is completely inside the lower part of the atomizing component 200, the first switch 110 is closed. After the spray bath is complete, the second switch 120 is opened. 20. The sheep enters the temporary holding passage 102; disease prevention feed is placed into the box 121 through the feeding device. While the sheep are eating the disease prevention feed, drug A is sprayed onto the sheep through the spray nozzle, so that the sheep can inhale drug A while eating the disease prevention feed; after the disease prevention feed is finished, the third switch 130 is opened, so that the sheep enters the drying passage 103. At this time, the fourth switch 140 is closed; the air outlet 131 dries the drug A in the sheep's skin and hair, so that the drug A can fully adhere to the sheep's skin; then the third switch 130 is closed and the fourth switch 140 is opened, so that the sheep enters the outlet 104.

[0054] Beneficial effects: By spraying drug A through the spray pipe 220 into the sheep's skin, the coverage of the drug on the sheep's body surface is improved. Furthermore, the combination of surface application and inhalation allows the sheep to inhale the sprayed medicine while eating disease-preventing forage. Additionally, the exhaust pipe 131 sprays hot air to dry the sheep's body surface after the sprayed medicine bath, improving the adhesion of the sprayed medicine bath and further enhancing the technical effect of preventing pneumonia in sheep.

[0055] Example 2: To enable the spray nozzle 220 to move freely on the sheep's skin and adapt to the sheep's body movements, this application proposes the following technical solution to address the above-mentioned technical problem:

[0056] like Figure 4 As shown, the spray pipe 220 is further divided into a hard section 2201 and a soft section 2202. The soft section 2202 can change the bending angle of the spray pipe 220 according to the sheep's body movement, making the sprayed medicated bath position more flexible.

[0057] One or more technical solutions provided in this application have at least the following technical effects or advantages:

[0058] The spray tube 220 can bend on the sheep's body through the soft section 2202, which not only avoids the sheep's body being punctured by the spray tube 220, but also allows the angle of the bend of the spray tube 220 to be changed by the sheep's body movements, thus making the sprayed medicated bath more flexible in location.

[0059] Example 3: Because sheep's movements are uncontrollable, they may cling to one side, causing incomplete spraying of the medicated bath on the other side. To address the above technical problem, this application proposes the following technical solution:

[0060] like Figure 5 As shown in the figure, the atomizing component 200 also includes a capsule 230, which is fixed to the inner wall of the U-shaped channel 100 and the inner cross section of the second cover 202. The spray pipe 220 passes through the capsule 230, and the connection section between the spray pipe 220 and the curved pipe 210 is a foldable section. The rigid section 2201 is fixed on the capsule 230. The expansion or contraction of the capsule 230 can move the spray pipe 220 to adapt to sheep of different sizes.

[0061] Specific implementation: After the sheep enters the lower end of the second cover 202, the bladder 230 is inflated so that the bladder 230 is tightly attached to the sheep's body. Due to the expansion of the bladder 230, the spray tube 220 is driven to extend into the sheep's body.

[0062] One or more technical solutions provided in this application have at least the following technical effects or advantages:

[0063] The expansion of the capsule 230 centered the sheep. The size of the expansion of the capsule 230 is adjusted according to the sheep's body size. The expansion of the capsule 230 also causes the spray tube 220 to extend into the sheep's body, making the spray bath more comprehensive.

[0064] Example 4: Prolonged spraying of a single location may cause the sprayed medicated bath to drip and slide off, resulting in poor medicated bath efficacy. This application addresses the above-mentioned technical problem by proposing the following technical solution:

[0065] like Figure 7 As shown, a connecting pipe 240 is connected to the bearing on the rigid section 2201; an iron plate 241 is fixed on the connecting pipe 240 and located at the connection between the connecting pipe 240 and the rigid section 2201; multiple electromagnets 250 are circumferentially installed on the outer circumferential surface of the rigid section 2201. The electromagnets 250 are electromagnetically attracted to the iron plate 241. The movement of the iron plate 241 drives the connecting pipe 240 to rotate, thereby changing the direction of the sprayed drug. The function is to rotate the position of the sprayed drug bath and prevent the sprayed drug from dripping and slipping.

[0066] Specific implementation: After the sheep enters the lower end of the second cover 202, the bladder 230 is inflated so that the bladder 230 is tightly attached to the sheep's body. Due to the expansion of the bladder 230, the spray pipe 220 is driven into the sheep's body. Then, multiple electromagnets 250 and magnetic iron plates 241 are activated in stages to change the direction of the connecting pipe 240.

[0067] One or more technical solutions provided in this application have at least the following technical effects or advantages:

[0068] By using an electromagnet 250 and a magnetic piece 241 to change the direction of the connecting pipe 240, it is possible to prevent the sprayed medicine bath from being sprayed on a certain position for a long time and avoid the technical problem of the sprayed medicine bath dripping and falling off.

[0069] The above description is merely a preferred embodiment of the present invention and is not intended to limit the invention. For those skilled in the art, the present invention can have various modifications and variations. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the scope of protection of the present invention.

Claims

1. A system for breeding sheep susceptible to pneumonia, characterized by, The device includes an atomizing component (200) and a box (121). The atomizing component (200) sprays the drug onto the outer and inner layers of the wool. The box (121) contains disease prevention feed. When sheep eat the disease prevention feed in front of the box (121), the box (121) sprays the drug, allowing the sheep to inhale the sprayed drug. The device also includes a U-shaped channel (100), which is divided into an inlet (101), a temporary storage channel (102), a drying channel (103), and an outlet (104). The atomizing component (200) is located between the inlet (101) and the temporary storage channel (102). The atomizing component (200) also includes a first cover (201) and a second cover (202), both of which are fixed on the top of the U-shaped channel (100) between the inlet (101) and the temporary passage (102). The first cover (201) is installed at a higher height than the second cover (202). When the sheep lowers its head to enter the lower end of the second cover (202), the sheep's neck and body can remain relatively horizontal. The atomizing assembly (200) further includes: a plurality of curved tubes (210) near the top of the U-shaped channel (100) installed between the inlet (101) and the temporary channel (102), and the tail end is connected to the atomizing device; Multiple spray tubes (220) are installed at one end on the upper part and both sides of the curved tube (210). The other end of the upper spray tube (220) passes through the first cover (201) and the second cover (202) in sequence. The other end of the spray tubes (220) at both sides passes through the U-shaped channel (100). The spray tubes can extend into the sheep's hair and contact the body surface, and then spray the medicine onto the sheep's body surface through a spray bath. The spray pipe (220) is further divided into a rigid section (2201) and a flexible section (2202), the flexible section being able to change the angle of the spray pipe bending; The atomizing assembly (200) further includes: a capsule (230) fixed to the inner wall of the U-shaped channel (100) and the inner cross section of the second cover (202); the spray tube (220) passes through the capsule (230), and the connection section between the spray tube (220) and the curved tube (210) is a foldable section; the rigid section (2201) is fixed on the capsule (230); the expansion or contraction of the capsule (230) can move the spray tube (220) to a different position; The rigid section (2201) is connected to a connecting pipe (240) by a bearing; an iron plate (241) is fixed on the connecting pipe (240) and located at the connection between the connecting pipe (240) and the rigid section (2201); multiple electromagnets (250) are circumferentially installed on the outer circumferential surface of the rigid section (2201), and the electromagnets (250) are electromagnetically attracted to the iron plate (241). The iron plate (241) moves to drive the connecting pipe (240) to rotate, thereby changing the direction of the sprayed drug.

2. The sheep breeding system for pneumonia as described in claim 1, characterized in that, The box (121) is installed in the temporary passage (102) and has a spray hole at the bottom, which is connected to the spray device; a feeding device is installed at the upper end of the box (121).

3. The sheep breeding system for pneumonia as described in claim 1, characterized in that, The inlet (101) into the atomizing component (200), the inlet (200) into the temporary channel (102), the inlet (102) into the drying channel (103), and the inlet (104) of the drying channel (103) are respectively equipped with a first switch (110), a second switch (120), a third switch (130), and a fourth switch (140); multiple air outlet pipes (131) are installed on both sides of the U-shaped channel (100) in the drying channel (103); the end of the air outlet pipe (131) is connected to the dryer.