Integrated warm-keeping and ventilating breeding device for dwarf horses

By setting vents, sponge layers and plastic films on the top of the stable to filter rainwater impurities, the problems of poor ventilation and insufficient warmth in the pony breeding equipment were solved, good ventilation and warmth effects were achieved, and the quality of the living environment of the pony was improved.

CN223310425UActive Publication Date: 2025-09-09广西农业职业技术大学
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422753480.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-12
Publication Date
2025-09-09
Estimated Expiration
2034-11-12

AI Technical Summary

Technical Problem

Existing pony breeding equipment has poor ventilation in cold seasons, which leads to the accumulation of moisture and harmful gases, affecting the health of the pony. At the same time, traditional designs ignore the balance between warmth and ventilation, leading to health problems for the pony.

Method used

Ventilation holes are set on the top of the stable, and a sponge layer and plastic film are equipped to filter rainwater and impurities. Combined with the design of breathable and thermal insulation materials, good ventilation and warmth retention effects are achieved.

Benefits of technology

It effectively blocks rain and impurities, keeps the stable dry and clean, provides fresh air and light, reduces discomfort caused by temperature differences, and improves the quality of the living environment for ponies.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223310425U_ABST
    Figure CN223310425U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of livestock breeding, in particular to an integrated dwarf horse warm-keeping ventilation feeding device which comprises a stable, a roof is arranged on the top of the stable, a plurality of ventilation openings are formed in the top and the bottom wall of the roof, a plurality of sponge layers are symmetrically and fixedly connected to the bottom wall of the roof, and the sponge layers are all located below the ventilation openings in the top of the roof. A plastic film is arranged below the roof and made of breathable heat preservation materials, support assemblies used for fixing the plastic film and stretching the plastic film to be opened are symmetrically arranged on the two sides of the bottom of the roof, and the two ends of the plastic film are in sliding connection with the support assemblies. The ventilation opening is formed in the top of the stable, the sponge layer and the plastic film are arranged on the ventilation opening accessory to filter rainwater and impurities, ventilation is achieved, meanwhile, rainwater is prevented from entering the stable, and a warm-keeping and good-ventilation feeding environment is provided for the dwarf horse.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the technical field of animal husbandry, and in particular to an integrated pony warming and ventilation breeding device. Background Art

[0002] Pony, as a unique horse breed, is known for its petite size, strong physique and docile temperament. Compared with ordinary horses, ponies show significant differences in warmth, ventilation and feeding needs. First, in terms of warmth, due to their small body structure, ponies are more sensitive to changes in ambient temperature. Especially in cold seasons, more sophisticated warmth-keeping measures are needed to prevent excessive loss of body temperature. Secondly, ventilation is also crucial for ponies. A good ventilation environment can effectively reduce the occurrence of disease, especially because ponies are smaller in size and their stables are narrower than those of ordinary horses. Therefore, compact stables can easily lead to poor ventilation in the stable, which in turn leads to the accumulation of harmful gases such as ammonia, affecting the health of the ponies. Finally, in terms of feeding, ponies require more refined management, including clean drinking water and a hygienic feeding environment to ensure their healthy growth.

[0003] However, ventilation has become a pressing challenge in existing pony breeding technology. Traditional stable design often prioritizes insulation over ventilation. This results in doors and windows being tightly closed to maintain indoor temperatures during cold weather. This impedes air circulation between the tightly packed stables, preventing the timely removal of harmful gases like moisture and ammonia, seriously impacting the pony's health. Furthermore, even in stables designed with ventilation openings, concerns about leaks often limit their size or use inappropriate coverings, further exacerbating the problem of insufficient ventilation. Utility Model Content

[0004] In order to solve the above problems, the utility model provides an integrated pony warm and ventilated breeding device, which provides a warm and well-ventilated breeding environment for the pony by arranging vents on the top of the stable and arranging a sponge layer and a plastic film near the vents to filter rainwater and impurities. While ventilating, it also prevents rainwater from entering the stable, providing the pony with a breeding environment that is both warm and well-ventilated.

[0005] In order to achieve the above-mentioned purpose, the technical solution of the present invention is as follows: an integrated pony warming and ventilating breeding device, including a stable, a roof is provided on the top of the stable, and a plurality of vents are provided on the top and bottom wall of the roof, and a plurality of sponge layers are symmetrically fixedly connected to the bottom wall of the roof, and the plurality of sponge layers are all located below the vents on the top of the roof, and a plastic film is provided under the roof, and the plastic film is made of breathable and heat-insulating material, and bracket assemblies for fixing the plastic film and stretching the plastic film to open are symmetrically provided on both sides of the bottom of the roof, and the two ends of the plastic film are slidably connected to the bracket assemblies.

[0006] The technical principle behind this solution is as follows: Ventilation holes are located on both the roof's top and bottom walls, allowing for free air circulation. In clear weather, natural wind enters the stable through the vents, providing a fresh air environment for the ponies. During rainy or windy conditions, a sponge layer fixed to each side of the roof's bottom wall acts as a rain shield and preliminary filter for impurities. External moisture and impurities are first absorbed or blocked by the sponge layer, reducing the likelihood of them falling directly into the stable. Simultaneously, the sponge layer, through its porous structure, washes away some impurities, depositing them on the plastic film underneath. The plastic film at the bottom of the roof not only further filters fine rainwater and impurities but also maintains excellent light transmittance. The plastic film's light transmittance allows natural light to penetrate the roof, illuminating the stable interior and providing a pleasantly bright environment for the ponies. The plastic film is made of an insulating material. As the temperature inside the stable rises, thermal buoyancy can cause water droplets to form on the roof. However, the plastic film's insulation effectively minimizes the temperature difference between indoor and outdoor temperatures, reducing the likelihood of condensation.

[0007] The above scheme has the following beneficial effects:

[0008] 1. This solution effectively blocks most of the external rainwater and impurities from falling directly into the stable through the sponge layer, keeping the interior of the stable dry and clean. At the same time, the porous structure of the sponge layer can remove impurities under the erosion of rainwater, providing space for subsequent filtration. The porous structure of the sponge layer also ensures air permeability. While filtering rainwater and impurities, it can also ensure that the roof can always be ventilated into the stable.

[0009] 2. In this solution, the plastic film acts as a filtering barrier under the sponge layer, further blocking rainwater and impurities. The plastic film itself has good light transmittance, allowing natural light to penetrate the roof, providing additional light for the ponies and helping them grow.

[0010] 3. In this solution, since ponies are smaller than ordinary horses, the space for them to move around in the stable is narrower, resulting in poor air circulation in the stable. When keeping warm in winter, the heat from the ponies' breathing cannot evaporate to the outside in time. Due to the thermal buoyancy effect, water droplets will form on the roof. The plastic film uses breathable insulation material to maintain a relatively stable temperature inside the stable, reducing the temperature difference caused by direct contact between the inside of the stable and the roof, and reducing the condensation of water droplets due to excessive temperature differences on the roof surface, thereby avoiding the discomfort and potential health problems caused by dripping water droplets to the ponies.

[0011] 4. In this solution, both ends of the plastic film are slidably connected to the bracket assembly, which ensures the stability of the plastic film and facilitates the maintenance and replacement of the plastic film.

[0012] Furthermore, the bracket assembly includes a first bracket assembly and a second bracket assembly. The first bracket assembly includes a hollow first bracket rod, which is rotatably connected to a first rotating roller. One end of the plastic film is fixedly connected to the first rotating roller, and the other end of the plastic film extends through the first bracket rod to the outside and is fixedly connected to the second bracket assembly.

[0013] Beneficial effect: The first rotating roller is rotatably connected to the first bracket rod. This design allows one end of the plastic film to be easily fixed on the first rotating roller and freely unfolded or reeled in as the first rotating roller rotates, making it easy to adjust the tension and position of the plastic film.

[0014] Furthermore, the second bracket assembly includes a hollow second bracket rod, a first motor is fixedly connected to one side of the inner wall of the second bracket rod, the input end signal of the first motor is connected to the output end of the controller, the output shaft of the first motor is coaxially fixedly connected to the second rotating roller, the other end of the plastic film passes through the second bracket rod and extends to the hollow part of the second bracket rod and is fixedly connected to the second rotating roller, and a recovery chamber is provided at the bottom of the second bracket rod.

[0015] Beneficial effect: By connecting the input end of the first motor with the output end signal of the controller, the controller can remotely control the operation of the first motor. The controller can control the reeling of the used plastic film according to the set reeling length of the plastic film, and make the new plastic film extend from the first bracket rod and automatically lay out and unfold. Impurities and rainwater on the plastic film can be dropped into the recovery chamber when the second rotating roller is reeling, so as to avoid the second rotating roller being stuck by impurities when reeling the plastic film.

[0016] Furthermore, the sponge layer has a wavy shape.

[0017] Benefits: The wavy sponge layer has a larger surface area than a flat sponge layer, which can more effectively intercept and absorb rainwater. When rainwater falls on the wavy sponge layer, it flows along the grooves of the waves, increasing the contact area with the sponge and thus improving the absorption efficiency of rainwater.

[0018] Furthermore, several horse pens are symmetrically arranged on both sides of the stable, and the horse pens are fixedly connected to each other. Under the ground of the horse pens, floor heating pipes are laid, and the input end of the floor heating pipes is connected to the output end signal of the controller.

[0019] Beneficial effects: The setting of the stable allows each pony to have a relatively independent space, which helps reduce fighting and injuries among ponies and improves the safety of breeding; the laying of floor heating pipes provides uniform ground heating for the stable. In cold weather, the floor heating pipes can quickly increase the temperature in the stable, providing a warm resting environment for the ponies, which helps reduce diseases caused by the cold.

[0020] Furthermore, a crossbeam is fixedly connected to the bottom of the roof, a temperature and humidity sensor is fixedly connected to the bottom of the crossbeam, and an output end of the temperature and humidity sensor is signal-connected to an input end of the controller.

[0021] Beneficial effects: The temperature and humidity sensor can monitor the temperature and humidity changes inside the stable in real time and adjust the temperature of the floor heating pipes to help the ponies keep warm.

[0022] Furthermore, a trough assembly is fixedly connected in the horse pen, and the trough assembly includes a trough box and a water supply tank. The trough box and the water supply tank are connected to the food trough and the water supply trough on one side respectively. A first valve is fixedly connected between the trough box and the food trough, and a second valve is fixedly connected between the water supply tank and the water supply trough. The input ends of the first valve and the second valve are both connected to the output end signal of the controller.

[0023] Beneficial effects: By integrating the control of the first valve and the second valve into the controller, the automatic supply of food and water is achieved; since ponies have a large appetite, but excessive eating will lead to obesity and thus affect their health, the first valve is used to control the pony's feed; in summer, drinking water accumulates in the water supply trough and easily breeds bacteria, which can easily cause illness after the pony drinks it, so the second valve is used to regularly provide the pony with a certain amount of drinking water to reduce the accumulation of drinking water in the water supply trough.

[0024] Furthermore, a drainage pipe is connected to the bottom of the water supply tank, and a third valve is fixedly connected between the water supply tank and the drainage pipe. The input end of the third valve is signal-connected to the output end of the controller.

[0025] Beneficial Effects: Regular drainage helps keep the water in the water tank clean and fresh. Draining the accumulated drinking water in the water tank through the third valve ensures that the water in the water tank does not remain in the water tank for a long time, further reducing the risk of bacterial growth and contamination.

[0026] Furthermore, several window frames corresponding to the horse pens are symmetrically opened on both sides of the stable, and a rotating shaft is rotatably connected to one side of the inner wall of the window frame. The bottom end of the rotating shaft extends to the inner bottom wall of the window frame and is fixedly connected to a second motor. The input end of the second motor is connected to the output end signal of the controller, and the output shaft of the second motor is coaxially fixedly connected to the rotating shaft, and a blind is fixedly connected to the side of the rotating shaft away from the window frame.

[0027] Beneficial effect: By adjusting the opening angle of the blinds through the motor-driven rotating shaft, it is possible to ensure that the temperature, humidity and air quality in the stable are maintained at a suitable level, providing a more comfortable living environment for the horses.

[0028] Furthermore, an anemometer is fixedly connected to one side of the shutters located outside the stable, and an output end of the anemometer is signal-connected to an input end of the controller.

[0029] Beneficial effects: The anemometer can monitor changes in wind speed outside the stable in real time. Wind speed not only affects the ventilation effect inside the stable, but may also have a direct impact on the comfort and health of the horses. By connecting the output signal of the anemometer to the controller, the ventilation volume inside the stable can be adjusted by adjusting the opening and closing angle of the blinds.

[0030] Additional aspects and advantages of the present invention will be given in part in the following description and will become apparent from the following description or learned through practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS

[0031] Figure 1 This is a front cross-sectional schematic diagram of an embodiment of the integrated pony warming and ventilation breeding device of the present utility model;

[0032] Figure 2 This is a front cross-sectional view of a bracket assembly of an embodiment of the integrated pony warming and ventilation breeding device of the present invention;

[0033] Figure 3 This is a schematic front cross-sectional view of a window frame of an embodiment of the integrated pony warming and ventilation breeding device of the present invention.

[0034] The figure marks in the drawings of the specification include: 1. stable; 2. vent; 3. sponge layer; 4. first support rod; 5. plastic film; 6. roof; 7. temperature and humidity sensor; 8. window frame; 9. horse stable; 10. feeding trough; 11. water trough; 12. floor heating pipe; 13. drainage pipe; 14. water supply tank; 15. feeding trough box; 16. beam; 17. second support rod; 18. first rotating roller; 19. second rotating roller; 20. recovery chamber; 21. first motor; 22. rotating shaft; 23. shutter; 24. second motor. DETAILED DESCRIPTION

[0035] The following is a clear and complete description of the technical solution of the present invention in conjunction with the accompanying drawings. Obviously, the embodiments described are only some of the embodiments of the present invention, not all of them. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making any creative efforts are within the scope of protection of the present invention.

[0036] In the description of this utility model, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicating positions or relationships, are based on the positions or relationships shown in the accompanying drawings and are intended solely to facilitate the description of this utility model and simplify the description. They do not indicate or imply that the devices or components referred to must have a specific orientation, be constructed, or operate in a specific orientation. Therefore, they should not be construed as limitations on this utility model. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0037] In the description of this utility model, it should be noted that, unless otherwise expressly specified or limited, the terms "mounted," "connected," and "connected" should be understood in a broad sense. For example, they can refer to fixed connections, detachable connections, or integral connections; mechanical connections, electrical connections; direct connections, indirect connections through an intermediate medium, and internal communication between two components. Those skilled in the art will understand the specific meanings of the above terms in this utility model based on the specific circumstances.

[0038] The following is further described in detail through specific implementation methods:

[0039] Example 1:

[0040] As attached Figure 1 、 Figure 2 and Figure 3 As shown: An integrated pony warming and ventilating breeding device, including a stable 1, a roof 6 is installed on the top of the stable 1, and a plurality of vents 2 are opened on the top and bottom wall of the roof 6, a plurality of sponge layers 3 are symmetrically bonded to the bottom wall of the roof 6, and the plurality of sponge layers 3 are all located below the vents 2 on the top of the roof 6, and the shape of the sponge layer 3 is wavy. A plastic film 5 is laid under the roof 6, and the plastic film 5 is made of breathable and heat-insulating material. Support assemblies for fixing the plastic film 5 and stretching the plastic film 5 are symmetrically provided on both sides of the bottom of the roof 6, and the two ends of the plastic film 5 are slidably connected to the support assemblies.

[0041] The bracket assembly includes a first bracket assembly and a second bracket assembly. The first bracket assembly includes a hollow first bracket rod 4, which is rotatably connected to a first rotating roller 18. One end of the plastic film 5 is snap-connected to the first rotating roller 18. The second bracket assembly includes a hollow second bracket rod 17. One side of the inner wall of the second bracket rod 17 is bolted to a first motor 21. The first motor 21 is preferably a brushless DC motor. The input end signal of the first motor 21 is connected to the output end of the controller. The controller is preferably a Siemens S7-300 series controller. The output shaft of the first motor 21 is coaxially welded with a second rotating roller 19. The other end of the plastic film 5 passes through the second bracket rod 17 and extends to the hollow part of the second bracket rod 17 and is snap-connected to the second rotating roller 19. A recovery chamber 20 is welded to the bottom of the second bracket rod 17.

[0042] The specific implementation process is as follows: first, the two ends of the plastic film 5 are fixed on the first rotating roller 18 and the second rotating roller 19 respectively, and the sponge layer 3 is laid.

[0043] In clear weather, natural wind enters the stable 1 through the vents 2, and then passes through the air holes in the sponge layer 3 and the gap between the plastic film 5 and the roof 6 to enter the stable 1, providing a fresh air environment for the ponies; when it rains, the wavy sponge layers 3 installed on both sides of the bottom wall of the roof 6 of the stable 1 effectively absorb a large amount of rainwater. At the same time, their porous structure can naturally remove some suspended impurities as the rainwater flows through. Subsequently, the preliminarily filtered rainwater and its remaining impurities continue to fall onto the plastic film 5 laid at the bottom. The plastic film 5 again intercepts tiny water droplets and residual impurities that may penetrate the sponge layer 3, ensuring that the interior of the stable 1 remains dry and clean. At the same time, the light transmittance of the plastic film 5 allows natural light to penetrate, providing the necessary light for the interior of the stable 1, which is conducive to the healthy growth and daily activities of the ponies.

[0044] Since ponies are smaller than ordinary horses, the space for ponies to move around in the stable 1 is narrower, resulting in poor air circulation in the stable 1. In winter, in order to maintain insulation inside the stable 1, the heat from the ponies' breathing cannot be evaporated to the outside in time. Due to the thermal buoyancy effect, water droplets will condense on the roof 6. The thermal insulation performance of the plastic film 5 effectively reduces the temperature difference between indoors and outdoors, thereby reducing the condensation of water droplets, thereby avoiding the discomfort and potential health problems caused by dripping water droplets to the ponies.

[0045] When the plastic film 5 needs to be replaced, the controller starts the first motor 21. The controller rewinds the used plastic film 5 to the second rotating roller 19 according to the set length of the rewound plastic film 5, and stretches the new plastic film 5 from the first rotating roller 18 and lays it out. Impurities and rainwater on the plastic film 5 can fall into the recovery chamber 20 when the second rotating roller 19 is rewound, so as to prevent the second rotating roller 19 from being stuck by impurities when rewinding the plastic film 5.

[0046] Example 2:

[0047] As attached Figure 1 As shown, the difference from Example 1 is that a crossbeam 16 is riveted to the bottom of the roof 6, and a temperature and humidity sensor 7 is bolted to the bottom of the crossbeam 16. The output end of the temperature and humidity sensor is signal-connected to the input end of the controller. The temperature and humidity sensor 7 is preferably an SHT21 digital temperature and humidity sensor. Several horse pens 9 are symmetrically welded on both sides of the inside of the stable 1, and the horse pens 9 are bolted together. Floor heating pipes 12 are laid under the ground inside the horse pens 9. The input end of the floor heating pipe 12 is signal-connected to the output end of the controller. The floor heating pipe 12 is preferably a heat-resistant polyethylene pipe.

[0048] The specific implementation process is as follows: the setting of the stable 9 allows each pony to have a relatively independent space, which helps to reduce fighting and injuries between ponies and improve the safety of breeding; the temperature and humidity sensor 7 can monitor the temperature and humidity changes inside the stable 1 in real time. In winter, the temperature of the stable 1 drops and is not suitable for the survival of ponies. The controller receives the temperature information from the temperature and humidity sensor 7 and adjusts the temperature of the floor heating pipe 12. The floor heating pipe 12 can quickly increase the temperature inside the stable 9, providing a warm resting environment for the ponies, which helps to reduce diseases caused by the cold.

[0049] Example 3:

[0050] As attached Figure 1 As shown, the difference from Example 2 is that a trough assembly is bolted in the horse pen 9, and the trough assembly includes a trough box 15 and a water supply box 14. The trough box 15 and the water supply box 14 are respectively connected to the feed trough 10 and the water supply trough 11 on one side, a first valve is bolted between the trough box 15 and the feed trough 10, and a second valve is bolted between the water supply box 14 and the water supply trough 11. The input ends of the first valve and the second valve are both connected to the output end signal of the controller, a drain pipe 13 is connected to the bottom of the water supply trough 11, and a third valve is bolted between the water supply trough 11 and the drain pipe 13, and the input end of the third valve is connected to the output end signal of the controller. The first valve, the second valve and the third valve are preferably JD745X electric ball valves.

[0051] The specific implementation process is as follows: Since ponies have a large appetite, but excessive eating will lead to obesity and thus affect their health, the pony's feed is controlled through the first valve. In summer, drinking water accumulates in the water supply tank 11 and is prone to breed bacteria, which can easily cause illness after the pony drinks it. Therefore, a fixed amount of drinking water is regularly provided to the pony through the second valve to reduce the accumulation of drinking water in the water supply tank 11. When drinking water still accumulates in the water supply tank 11, the accumulated drinking water in the tank is discharged through the third valve, which can ensure that the water in the water supply tank 11 will not be retained for a long time, further reducing the risk of bacterial growth and contamination.

[0052] Example 4:

[0053] As attached Figure 1 and Figure 3 As shown, the difference from Example 3 is that several window frames 8 corresponding to the horse pens 9 are symmetrically opened on both sides of the stable 1, and one side of the inner wall of the window frame 8 is rotatably connected to the rotating shaft 22. The bottom end of the rotating shaft 22 extends to the inner bottom wall of the window frame 8 and is bolted to the second motor 24. The second motor 21 is preferably a brushless DC motor. The input end of the second motor 24 is signal-connected to the output end of the controller. The output shaft of the second motor 24 is coaxially welded to the rotating shaft 22. A blind 23 is welded to the side of the rotating shaft 22 away from the window frame 8. The blind 23 is bolted to the side outside the stable 1 with an anemometer. The anemometer is preferably a TN2204 anemometer, and the output end of the anemometer is signal-connected to the input end of the controller.

[0054] The specific implementation process is as follows: the anemometer can monitor the wind speed changes outside the stable 1 in real time. By connecting the output signal of the anemometer to the controller, the controller drives the rotating shaft 22 through the second motor 24 to adjust the opening and closing angle of the shutter 23 to adjust the ventilation volume inside the stable 1.

[0055] Obviously, the above embodiments are merely examples for clarity of explanation and are not intended to limit the implementation methods. Those skilled in the art will readily appreciate that other variations or modifications based on the above descriptions are possible. It is not necessary and impossible to enumerate all implementation methods here. Obvious variations or modifications arising therefrom remain within the scope of protection of the present invention.

Claims

1. An integrated pony warming and ventilation breeding device, characterized in that: The invention comprises a stable (1), wherein a roof (6) is provided on the top of the stable (1), a plurality of vents (2) are provided on the top and bottom wall of the roof (6), a plurality of sponge layers (3) are symmetrically fixedly connected to the bottom wall of the roof (6), the plurality of sponge layers (3) are all located below the vents (2) on the top of the roof (6), a plastic film (5) is provided below the roof (6), the plastic film (5) is made of a breathable heat-insulating material, and bracket assemblies for fixing the plastic film (5) and stretching the plastic film (5) are symmetrically provided on both sides of the bottom of the roof (6), and both ends of the plastic film (5) are slidably connected to the bracket assemblies.

2. The integrated pony warming and ventilation breeding device according to claim 1, characterized in that: The support assembly comprises a first support assembly and a second support assembly, wherein the first support assembly comprises a hollow first support rod (4), the first support rod (4) is rotatably connected to a first rotating roller (18), one end of a plastic film (5) is fixedly connected to the first rotating roller (18), and the other end of the plastic film (5) passes through the first support rod (4) and extends to the outside and is fixedly connected to the second support assembly.

3. The integrated pony warming and ventilation breeding device according to claim 2, characterized in that: The second bracket assembly comprises a hollow second bracket rod (17), one side of the inner wall of the second bracket rod (17) is fixedly connected to a first motor (21), an input end signal of the first motor (21) is connected to an output end of a controller, an output shaft of the first motor (21) is coaxially fixedly connected to a second rotating roller (19), the other end of the plastic film (5) passes through the second bracket rod (17) and extends to the hollow portion of the second bracket rod (17) and is fixedly connected to the second rotating roller (19), and a recovery chamber (20) is provided at the bottom of the second bracket rod (17).

4. The integrated pony warming and ventilation breeding device according to claim 3, characterized in that: The sponge layer (3) is in a wavy shape.

5. The integrated pony warming and ventilation breeding device according to claim 4, characterized in that: A plurality of horse pens (9) are symmetrically arranged on both sides of the stable (1), and the horse pens (9) are fixedly connected to each other. Floor heating pipes (12) are laid under the ground inside the horse pens (9), and the input end of the floor heating pipe (12) is connected to the output end signal of the controller.

6. The integrated pony warming and ventilation breeding device according to claim 5, characterized in that: The bottom of the roof (6) is fixedly connected to a crossbeam (16), the bottom of the crossbeam (16) is fixedly connected to a temperature and humidity sensor (7), and the output end of the temperature and humidity sensor (7) is signal-connected to the input end of the controller.

7. The integrated pony warming and ventilation breeding device according to claim 6, characterized in that: A trough assembly is fixedly connected in the horse stable (9), and the trough assembly includes a trough box (15) and a water supply box (14). One side of the trough box (15) and the water supply box (14) are respectively connected to a food supply trough (10) and a water supply trough (11). A first valve is fixedly connected between the trough box (15) and the food supply trough (10), and a second valve is fixedly connected between the water supply box (14) and the water supply trough (11). The input ends of the first valve and the second valve are both connected to the output end signal of the controller.

8. The integrated pony warming and ventilation breeding device according to claim 7, characterized in that: The bottom of the water supply tank (11) is connected to a drainage pipe (13), a third valve is fixedly connected between the water supply tank (11) and the drainage pipe (13), and an input end of the third valve is signal-connected to an output end of the controller.

9. The integrated pony warming and ventilation breeding device according to claim 8, characterized in that: A plurality of window frames (8) corresponding to the horse pens (9) are symmetrically provided on both sides of the stable (1); a rotating shaft (22) is rotatably connected to one side of the inner wall of the window frame (8); the bottom end of the rotating shaft (22) extends to the inner bottom wall of the window frame (8) and is fixedly connected to a second motor (24); the input end of the second motor (24) is signal-connected to the output end of the controller; the output shaft of the second motor (24) is coaxially fixedly connected to the rotating shaft (22); and a shutter (23) is fixedly connected to the side of the rotating shaft (22) away from the window frame (8).

10. The integrated pony warming and ventilation breeding device according to claim 9, characterized in that: One side of the shutter (23) located outside the stable (1) is fixedly connected to an anemometer, and the output end of the anemometer is connected to the input end signal of the controller.