Low-land double-layer chicken house

By designing lifting components and temperature control systems for double-layer chicken houses in livestock farms, the problem of difficult transportation of livestock and materials has been solved, improving space utilization and transportation efficiency while reducing construction costs.

CN224522078UActive Publication Date: 2026-07-21SICHUAN SIHAI SANLIAN AGRI DEV CO LTD +1

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SICHUAN SIHAI SANLIAN AGRI DEV CO LTD
Filing Date
2025-09-04
Publication Date
2026-07-21

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  • Figure CN224522078U_ABST
    Figure CN224522078U_ABST
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Abstract

The utility model provides a kind of double-layer chicken house with low land occupation, belong to the technical field of livestock breeding, including double-layer building unit and be set in the lifting assembly of double-layer building unit side;The double-layer building unit includes upper unit and lower unit, lower unit is built on ground, upper unit is built on lower unit;Lifting assembly includes lifting platform, the lifting driver of driving lifting platform to translate between upper unit and lower unit, lifting support, lifting connecting piece;Lifting support is used to connect lifting driver and lifting connecting piece, and lifting connecting piece is used to connect lifting driver and lifting platform;With such a kind of double-layer chicken house with low land occupation, upper unit and lower unit can be used for the feeding of livestock, improve space utilization rate.And the lifting platform of lifting unit can operate between ground and upper platform, can be used for the transport of livestock, feed transport and the transport of livestock manure.
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Description

Technical Field

[0001] This utility model belongs to the field of animal husbandry technology, and more specifically relates to a double-layer chicken coop with low land occupation. Background Technology

[0002] Most existing livestock farms are single-story structures, with livestock raised within a single-story building. Considering efficient space utilization, double-story or multi-story livestock farms present challenges in transporting livestock and materials. For example, in double-story or multi-story livestock farms, young livestock need to be transported to the upper floors before raising them; existing elevators or other transportation devices are inconvenient for transporting large numbers of livestock. Furthermore, feed and livestock excrement also need to be transported between the upper floors and the ground, a cumbersome process using traditional methods. Utility Model Content

[0003] One objective of this utility model is to provide a double-layer chicken coop with low floor space requirements. The double-layer chicken coop includes a double-layer building unit and a lifting component disposed on one side of the double-layer building unit. The double-layer building unit includes an upper unit and a lower unit, with the lower unit built on the ground and the upper unit built on the lower unit.

[0004] The lifting assembly includes a lifting platform, a lifting drive that drives the lifting platform to translate between an upper unit and a lower unit, a lifting bracket, and a lifting connector; the lifting bracket is used to connect the lifting drive and the lifting connector, and the lifting connector is used to connect the lifting drive and the lifting platform.

[0005] The upper unit and the lower unit each include an upper platform and a lower platform, and the lifting drive can drive the lifting platform to translate between the upper platform and the lower platform through the lifting connector.

[0006] Preferably, the lifting drive is an electric motor, and the lifting connector is a cable connected to the electric motor. The rotation of the electric motor can wind or release the cable via a reel. The lifting platform includes a base plate and a frame body set on the base plate, and the cable is connected to the frame body. When the electric motor rotates to wind the cable, the lifting platform can rise to the upper platform. When the electric motor releases the cable, the lifting platform can descend to the lower platform.

[0007] Preferably, the lifting support includes multiple vertical supports and a top frame. The multiple vertical supports surround the outside of the lifting platform, the bottom of the vertical supports is connected to the ground, and the top of the vertical supports is connected to the top frame; the lifting drive is disposed on the top frame.

[0008] The upper unit is provided with an upper liquid container at the top and an upper water supply pipe inside the upper unit. One end of the upper liquid container is connected to the upper water supply pipe through a pipe, and the other end of the upper water supply pipe is provided with a water feeder.

[0009] The lower unit is equipped with a lower liquid container at the top and a lower water supply pipe inside the lower unit. One end of the lower liquid container is connected to the lower water supply pipe, and the other end of the lower water supply pipe is equipped with a water feeder.

[0010] Preferably, a top-level liquid container is provided on the top-level frame, and the top-level liquid container is connected to the upper-level liquid container and the lower-level liquid container; the double-layer chicken coop also includes a water pump, which is connected to the top-level liquid container and can deliver water to the top-level liquid container; the top-level liquid container automatically replenishes water to the upper-level liquid container and the lower-level liquid container, the upper-level liquid container replenishes water to the waterers of the upper-level unit, and the lower-level liquid container replenishes water to the waterers of the lower-level unit.

[0011] Preferably, the upper unit and / or lower unit are further provided with a feeder, a feeding bracket for connecting the feeder, a water feeding bracket for connecting the water feeder, and a height adjustment component for adjusting the height of the feeder and the water feeder.

[0012] The height adjustment assembly includes a main rope, a winch for winding or releasing the main rope, a pulley located at the top of the upper or lower unit, and a branch rope connected to the main rope. Multiple pulleys are provided at the top of the upper or lower unit along the length of the main rope. The main rope is connected to the feeding or watering bracket via the pulley at its end. One end of the branch rope is connected to the main rope and then to the feeding or watering bracket via the pulley.

[0013] The main rope can be wound up by a winch, and the end of the main rope pulls the feeding or watering support upward. At the same time, the main rope pulls one end of the branch rope to move in the direction of the main rope winding. After the branch rope passes through the pulley, the other end of the branch rope pulls the feeding or watering support upward. Conversely, releasing the main rope can drive the feeding or watering support downward.

[0014] Preferably, a water curtain is provided on one side of the upper unit and / or lower unit, and the water curtain is used to reduce the temperature of the upper unit and / or lower unit.

[0015] Preferably, a blower is provided on the side of the upper unit and / or lower unit opposite to the water curtain. The blower is used to blow air into the interior space of the upper unit and / or lower unit and the water curtain to reduce the temperature of the interior space of the upper unit and / or lower unit.

[0016] Preferably, the upper unit and / or lower unit are further provided with radiators, which are used to increase the temperature inside the upper unit and / or lower unit.

[0017] Preferably, the two-story building unit is also provided with a staircase on its side, which leads to the upper platform.

[0018] Preferably, the double-layer chicken house includes two double-layer building units, a lifting assembly is disposed between the two double-layer building units, and the lifting platform can move between the two upper platforms.

[0019] As described above, this utility model provides a low-foot-area double-layer chicken coop where both the upper and lower units can be used for livestock feeding, thus improving space utilization. Furthermore, the lifting platform of the lifting unit can operate between the ground and the upper platform, facilitating the transport of livestock, feed, and livestock manure. Attached Figure Description

[0020] The present invention will be more fully understood through the following detailed description and in conjunction with the accompanying drawings, wherein similar elements are numbered in a similar manner, wherein:

[0021] Figure 1 This is a schematic diagram of a low-foot-area double-layer chicken coop according to an embodiment of the present invention;

[0022] Figure 2 This is a schematic diagram of a blower for a low-foot-area double-layer chicken coop according to an embodiment of this utility model;

[0023] Figure 3 This is a schematic diagram of a lifting component for a low-foot-area double-layer chicken coop according to an embodiment of the present invention;

[0024] Figure 4 yes Figure 3 A magnified view of a portion of point A in the middle;

[0025] Figure 5 This is a schematic diagram of the internal structure of a double-layer chicken coop with low floor space ratio according to an embodiment of this utility model;

[0026] Figure 6 yes Figure 5 A magnified view of a section at point B in the middle;

[0027] Figure 7 yes Figure 5 A magnified view of a section at point C;

[0028] In the diagram: Upper unit 11, Lower unit 12, Lifting platform 13, Lifting drive 14, Lifting bracket 15, Lifting connector 16, Upper liquid container 21, Water feeder 22, Lower liquid container 23, Top liquid container 24, Feeder 25, Main rope 31, Winch 32, Pulley 33, Support rope 34, Water curtain 41, Blower 42. Detailed Implementation

[0029] The technical solution of this utility model will be further described in detail below through embodiments and in conjunction with the accompanying drawings, but this utility model is not limited to the following embodiments.

[0030] Most existing livestock farms are single-story structures, with livestock raised within a single-story building. Considering efficient space utilization, double-story or multi-story livestock farms present challenges in transporting livestock and materials. For example, in double-story or multi-story livestock farms, young livestock need to be transported to the upper floors before raising them; existing elevators or other transportation devices are inconvenient for transporting large numbers of livestock. Furthermore, feed and livestock excrement also need to be transported between the upper floors and the ground, a cumbersome process using traditional methods.

[0031] To address the aforementioned issues, this embodiment provides a low-foot-area double-layer chicken coop. The double-layer chicken coop includes a double-layer building unit and a lifting assembly disposed on one side of the double-layer building unit. The double-layer building unit includes an upper unit 11 and a lower unit 12, with the lower unit 12 constructed on the ground and the upper unit 11 constructed on top of the lower unit 12.

[0032] The lifting assembly includes a lifting platform 13, a lifting driver 14 that drives the lifting platform 13 to translate between the upper unit 11 and the lower unit 12, a lifting bracket 15, and a lifting connector 16; the lifting bracket 15 is used to connect the lifting driver 14 and the lifting connector 16, and the lifting connector 16 is used to connect the lifting driver 14 and the lifting platform 13.

[0033] The upper unit 11 and the lower unit 12 respectively include an upper platform and a lower platform. The lifting driver 14 can drive the lifting platform 13 to translate between the upper platform and the lower platform through the lifting connector 16.

[0034] In this embodiment, as Figure 1 , Figure 2 As shown, the double-story building unit is a two-story building, including an upper unit 11 and a lower unit 12. The upper unit 11 and lower unit 12 are the two floors of the double-story building unit, and both can be used for livestock farming. This improves the space utilization rate of the livestock farming area. Lifting components are used to transport livestock or materials to the upper unit 11.

[0035] The lifting platform 13 is a vertically movable platform. An upper platform is located at the doorway of the upper unit 11, and a lower platform is located at the doorway of the lower unit 12. The lifting platform 13 can move horizontally between the upper and lower platforms. The lifting bracket 15 is a frame that supports the lifting assembly. The lifting drive 14 can be an electric motor or other drive that can drive the lifting platform 13 to move vertically. The lifting connector 16 is a device that connects the lifting drive 14 and the lifting platform 13, including steel cables and pulleys 33.

[0036] Furthermore, the lifting drive 14 is an electric motor, and the lifting connector 16 is a cable connected to the electric motor. The rotation of the electric motor can wind or release the cable through the cable reel. The lifting platform 13 includes a base plate and a frame body set on the base plate, and the cable is connected to the frame body. When the electric motor rotates to wind the cable, the lifting platform 13 can rise to the upper platform. When the electric motor releases the cable, the lifting platform 13 can descend to the lower platform.

[0037] In this embodiment, as Figure 3 , Figure 4 As shown, the motor can drive the reel to rotate. One end of the cable is wound around the reel, and the other end is connected to the frame. The rotation of the motor can rewind or release the cable, thereby driving the lifting platform 13 to move up and down.

[0038] Furthermore, the lifting support 15 includes multiple vertical supports and a top frame. The multiple vertical supports surround the outside of the lifting platform 13, the bottom of the vertical supports is connected to the ground, and the top of the vertical supports is connected to the top frame; the lifting drive 14 is disposed on the top frame.

[0039] The upper unit 11 is provided with an upper liquid container 21 at the top and an upper water supply pipe is provided inside the upper unit 11. The upper liquid container 21 is connected to one end of the upper water supply pipe through a pipe, and a water feeder 22 is provided at the other end of the upper water supply pipe.

[0040] The lower unit 12 is provided with a lower liquid container 23 at the top and a lower water supply pipe inside the lower unit 12. The lower liquid container 23 is connected to one end of the lower water supply pipe through a pipe, and a water feeder 22 is provided at the other end of the lower water supply pipe.

[0041] In this embodiment, as Figure 4 As shown, there are four vertical supports in this embodiment. The lifting platform 13 is rectangular. The four vertical supports are set at the four corners of the lifting platform 13. The top frame is used to install the lifting driver 14. The top frame is provided with holes for the lifting connector 16 to pass through.

[0042] The upper liquid container 21 can be a water bucket for holding drinking water for livestock. Multiple water feeders 22 can be installed in the upper unit 11. Water supply pipes are used to connect the upper liquid container 21 and the multiple water feeders 22. Water from the upper liquid container 21 can automatically flow into the water feeders 22 to automatically replenish drinking water.

[0043] Similarly, the lower liquid container 23 can be a water bucket, and multiple water feeders 22 can be installed in the lower unit 12. The water supply pipe is used to connect the lower liquid container 23 and the multiple water feeders 22. The water in the lower liquid container 23 can automatically flow into the water feeder 22 to automatically replenish the drinking water.

[0044] Furthermore, a top-level liquid container 24 is provided on the top-level frame, and the top-level liquid container 24 is connected to the upper-level liquid container 21 and the lower-level liquid container 23; the double-layer chicken house also includes a water pump, which is connected to the top-level liquid container 24 and can deliver water to the top-level liquid container 24; the top-level liquid container 24 automatically replenishes water to the upper-level liquid container 21 and the lower-level liquid container 23, the upper-level liquid container 21 replenishes water to the waterer 22 of the upper-level unit 11, and the lower-level liquid container 23 replenishes water to the waterer 22 of the lower-level unit 12.

[0045] In this embodiment, the top liquid container 24 is used to automatically replenish water to multiple water buckets. The top liquid container 24 is connected to the upper liquid container 21 and the lower liquid container 23. The water pump is connected to an external water source and the top liquid container 24. The water in the top liquid container 24 can automatically replenish water to the upper liquid container 21 and the lower liquid container 23.

[0046] Furthermore, the upper unit 11 and / or the lower unit 12 are also provided with a feeder 25, a feeding bracket for connecting the feeder 25, a water feeding bracket for connecting the water feeder 22, and a height adjustment component for adjusting the height of the feeder 25 and the water feeder 22.

[0047] The height adjustment assembly includes a main rope 31, a winch 32 for winding or releasing the main rope 31, a pulley 33 located at the top of the upper unit 11 or the lower unit 12, and a branch rope 34 connected to the main rope 31. Multiple pulleys 33 are provided at the top of the upper unit 11 or the lower unit 12 along the length of the main rope 31. The main rope 31 is connected to the feeding bracket or the water feeding bracket through the pulley 33 at its end. One end of the branch rope 34 is connected to the main rope 31, and then connected to the feeding bracket or the water feeding bracket through the pulley 33.

[0048] The winch 32 can wind up the main rope 31, and the end of the main rope 31 pulls the feeding frame or watering frame to rise. At the same time, the main rope 31 pulls one end of the branch rope 34 to move in the direction of winding the main rope 31. After the branch rope 34 passes through the pulley 33, the other end of the branch rope 34 pulls the feeding frame or watering frame to rise. Conversely, releasing the main rope 31 can drive the feeding frame or watering frame to descend.

[0049] In this embodiment, as Figure 5 , Figure 6 , Figure 7As shown, multiple feeders 25 and waterers 22 of the upper unit 11 and / or lower unit 12 are arranged in a straight line. The feeding and watering supports are elongated components. A main rope 31 extends from the side wall of the upper unit 11 or lower unit 12 to the top. Pulleys 33 are installed at the top, and multiple pulleys 33 are arranged in a straight line. The main rope 31 passes over the pulleys 33, then extends downwards around the last pulley 33, eventually connecting to the feeding or watering support below. The two ends of the main rope 31 are a proximal end and a distal end, respectively. The proximal end is wound around a winch 32, and the distal end is connected to the feeding or watering support. One end of a branch rope 34 is fixed to the upper main rope 31, then extends towards the distal end of the main rope 31, wraps around the nearest pulley 33, turns downwards, and connects to the feeding or watering support.

[0050] Therefore, the winch 32 can wind up the main rope 31, and the end of the main rope 31 pulls the feeding bracket or water feeding bracket to rise. At the same time, the other end of the branch rope 34 pulls the feeding bracket or water feeding bracket to rise. Conversely, releasing the main rope 31 can drive the feeding bracket or water feeding bracket to descend.

[0051] Furthermore, a water curtain 41 is provided on one side of the upper unit 11 and / or the lower unit 12, and the water curtain 41 is used to reduce the temperature of the upper unit 11 and / or the lower unit 12.

[0052] In this embodiment, after the water curtain 41 is connected to flowing water, the flowing water evaporates to cool the water.

[0053] Furthermore, a blower 42 is provided on the side of the upper unit 11 and / or lower unit 12 opposite to the water curtain 41. The blower 42 is used to blow air into the internal space of the upper unit 11 and / or lower unit 12 and the water curtain 41 to reduce the temperature of the internal space of the upper unit 11 and / or lower unit 12.

[0054] The blower 42 can generate flowing air and accelerate the evaporation of the water curtain 41, thereby reducing the temperature of the interior space of the upper unit 11 and / or the lower unit 12.

[0055] In practice, the water curtain 41 and the blower 42 can be activated when the temperature is high.

[0056] Furthermore, the upper unit 11 and / or the lower unit 12 are also provided with radiators, which are used to increase the temperature inside the upper unit 11 and / or the lower unit 12.

[0057] In this embodiment, the radiator can be an electric heating device or a water-based radiator, and the radiator is activated when the temperature is low.

[0058] Furthermore, a staircase is also provided on the side of the two-story building unit, leading to the upper platform.

[0059] In practice, the staircase is used to allow people to access the upper unit 11.

[0060] Furthermore, the double-layer chicken house includes two double-layer building units, a lifting assembly is disposed between the two double-layer building units, and the lifting platform 13 can move between the two upper platforms.

[0061] In this embodiment, as Figure 1 , Figure 2 As shown, a lifting assembly can be installed between two double-story building units for use by both units, further reducing the construction cost of double-story chicken houses.

[0062] The above are merely preferred embodiments of this utility model and are not intended to limit the scope of this utility model. Various modifications and variations can be made to this utility model by those skilled in the art. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of this utility model should be included within the protection scope of this utility model.

Claims

1. A low-foot-area double-layer chicken coop, characterized in that: The double-layer chicken house includes a double-layer building unit and a lifting assembly set on one side of the double-layer building unit; the double-layer building unit includes an upper unit (11) and a lower unit (12), the lower unit (12) is built on the ground, and the upper unit (11) is built on the lower unit (12); The lifting assembly includes a lifting platform (13), a lifting drive (14) that drives the lifting platform (13) to translate between the upper unit (11) and the lower unit (12), a lifting bracket (15), and a lifting connector (16); the lifting bracket (15) is used to connect the lifting drive (14) and the lifting connector (16), and the lifting connector (16) is used to connect the lifting drive (14) and the lifting platform (13); The upper unit (11) and the lower unit (12) include an upper platform and a lower platform, respectively. The lifting driver (14) can drive the lifting platform (13) to translate between the upper platform and the lower platform through the lifting connector (16).

2. The low-foot-area double-layer chicken coop according to claim 1, characterized in that: The lifting drive (14) is an electric motor, and the lifting connector (16) is a cable connected to the electric motor. The rotation of the electric motor can wind or release the cable through the cable reel. The lifting platform (13) includes a base plate and a frame body set on the base plate. The cable body is connected to the frame body. When the electric motor rotates to wind the cable, the lifting platform (13) can rise to the upper platform. When the electric motor releases the cable, the lifting platform (13) can descend to the lower platform.

3. A low-foot-area double-layer chicken coop according to claim 1, characterized in that: The lifting support (15) includes multiple vertical supports and a top frame. The multiple vertical supports surround the outside of the lifting platform (13). The bottom of the vertical supports is connected to the ground, and the top of the vertical supports is connected to the top frame. The lifting drive (14) is mounted on the top frame. The upper unit (11) is provided with an upper liquid container (21) at the top, and an upper water supply pipe is provided inside the upper unit (11). The upper liquid container (21) is connected to one end of the upper water supply pipe through a pipe, and a water feeder (22) is provided at the other end of the upper water supply pipe. The lower unit (12) is provided with a lower liquid container (23) at the top and a lower water supply pipe is provided inside the lower unit (12). The lower liquid container (23) is connected to one end of the lower water supply pipe through a pipe, and a water feeder (22) is provided at the other end of the lower water supply pipe.

4. A low-foot-area double-layer chicken coop according to claim 3, characterized in that: The top layer frame is provided with a top layer liquid container (24), which is connected to the upper layer liquid container (21) and the lower layer liquid container (23). The double-layer chicken house also includes a water pump, which is connected to the top layer liquid container (24) and can deliver water to the top layer liquid container (24). The top layer liquid container (24) automatically replenishes water to the upper layer liquid container (21) and the lower layer liquid container. The upper layer liquid container (21) replenishes water to the water feeder (22) of the upper unit (11), and the lower layer liquid container (23) replenishes water to the water feeder (22) of the lower unit (12).

5. A low-foot-area double-layer chicken coop according to claim 3, characterized in that: The upper unit (11) and / or lower unit (12) are also provided with a feeder (25), a feeding bracket for connecting the feeder (25), a water feeding bracket for connecting the water feeder (22), and a height adjustment component for adjusting the height of the feeder (25) and the water feeder (22). The height adjustment assembly includes a main rope (31), a winch (32) for winding or releasing the main rope (31), a pulley (33) set on the top of the upper unit (11) or the lower unit (12), and a branch rope (34) connected to the main rope (31). Multiple pulleys (33) are set on the top of the upper unit (11) or the lower unit (12) along the length of the main rope (31). The main rope (31) is connected to the feeding bracket or the water feeding bracket through the pulley (33) at the end. One end of the branch rope (34) is connected to the main rope (31) and then connected to the feeding bracket or the water feeding bracket through the pulley (33). The main rope (31) can be wound up by the winch (32). The end of the main rope (31) pulls the feeding or watering support upward. At the same time, the main rope (31) pulls one end of the branch rope (34) to move in the direction of the main rope (31) winding. After the branch rope (34) passes through the pulley (33), the other end of the branch rope (34) pulls the feeding or watering support upward. Conversely, releasing the main rope (31) can drive the feeding or watering support downward.

6. A low-foot-area double-layer chicken coop according to claim 1, characterized in that: A water curtain (41) is provided on one side of the upper unit (11) and / or the lower unit (12), and the water curtain (41) is used to reduce the temperature of the upper unit (11) and / or the lower unit (12).

7. A low-foot-area double-layer chicken coop according to claim 6, characterized in that: A blower (42) is provided on the side of the upper unit (11) and / or lower unit (12) opposite to the water curtain (41). The blower (42) is used to blow air into the interior space of the upper unit (11) and / or lower unit (12) and the water curtain (41) to reduce the temperature of the interior space of the upper unit (11) and / or lower unit (12).

8. A low-foot-area double-layer chicken coop according to claim 1, characterized in that: The upper unit (11) and / or the lower unit (12) are also provided with radiators, which are used to increase the temperature inside the upper unit (11) and / or the lower unit (12).

9. A low-foot-area double-layer chicken coop according to claim 1, characterized in that: The two-story building unit also has a staircase on its side, which leads to the upper platform.

10. A low-foot-area double-layer chicken coop according to claim 1, characterized in that: The double-layer chicken house includes two double-layer building units, a lifting assembly is set between the two double-layer building units, and a lifting platform (13) can move between the two upper platforms.