Cage equipment for livestock and poultry breeding
By designing adjustable and support components, the problems of overcrowding and poor ventilation in poultry cages have been solved, enabling flexible adjustment and efficient ventilation to meet the growth needs of poultry.
Patent Information
- Application Number
- CN202511470396.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-15
- Publication Date
- 2025-11-11
- Estimated Expiration
- 2045-10-15
AI Technical Summary
As poultry grow, existing poultry cages become crowded and poorly ventilated, hindering their growth.
By adjusting the mechanism and snap-fit components, the spacing between the upper, lower, and middle baffle frames is adjusted to ensure sufficient ventilation and vertical space. Combined with the fine-tuning of the support components, effective vertical ventilation and convenient fecal discharge are achieved.
It enables flexible adjustment of poultry cages, ensuring sufficient activity space and ventilation, adapting to the growth needs of poultry, and improving breeding efficiency.
Smart Images

Figure CN120918115A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of livestock breeding equipment technology, specifically to a cage system for livestock and poultry breeding. Background Technology
[0002] Poultry refers to animals raised artificially, such as chickens, ducks, and geese, mainly for their meat, eggs, and feathers. Currently, the traditional farming method in the market is to raise poultry in cages. Large poultry farms all use cages for large-scale farming, which facilitates management and reduces the activity of poultry, thus shortening the poultry production time.
[0003] In the prior art, for example, invention patent application with publication number CN102630600A discloses a poultry raising cage, invention patent application with publication number CN107593500A discloses a pest-proof raising cage for poultry, and invention patent with publication number CN112005922B discloses a raising cage for improving meat quality in large-scale poultry farming. The effective height of the above-mentioned raising cage equipment is a fixed structure. As the poultry grow, the space will become crowded, and the effective ventilation hole diameter remains unchanged, which cannot provide sufficient ventilation and is not conducive to the growth of poultry. Summary of the Invention
[0004] The purpose of this invention is to provide a cage device for livestock and poultry farming to solve the problems mentioned in the background art.
[0005] To achieve the above objectives, the present invention provides the following technical solution: A cage device for raising livestock and poultry includes a frame and a fence mechanism, wherein the fence mechanism is disposed within the frame. The fence mechanism includes an upper frame, a lower frame, multiple middle frames, and a gate stop assembly. The frame is in the shape of a quadrangular prism, and each corner has a vertically opened sliding opening. The upper frame, multiple middle frames, and lower frame are vertically slidably embedded in the sliding opening from top to bottom. Each sliding opening is vertically equipped with an adjustment mechanism to adjust the adjacent spacing between the upper frame, lower frame, and multiple middle frames. A grid plate is horizontally fixed inside the upper frame, and a manure collection plate is inclinedly fixed inside the frame on the bottom side of the lower frame. The front middle of multiple middle baffles is divided into sections to form a cage opening. The door stop assembly is vertically set in the front cage opening area. The door stop assembly includes multiple horizontal bars, a locking device and multiple pairs of connecting rods. The multiple horizontal bars are all horizontally arranged and arranged from top to bottom. The uppermost horizontal bar is horizontally fixedly installed on the front side of the upper baffle. The locking device is fixedly installed on the front side of the bottommost horizontal bar. The middle of the connecting rod is hinged by a first pin, and a torsion spring is installed at the connection. The upper and lower ends of the connecting rod are respectively hinged to the front side of two adjacent horizontal bars by a second pin. The lower frame has a horizontal load-bearing mechanism inside to support the poultry.
[0006] As a preferred embodiment of the present invention, the adjusting mechanism includes a screw, two screw sleeves, and multiple compression springs. The screw is vertically rotatably sleeved in the frame and located in the sliding opening. The two screw sleeves are vertically fixedly sleeved in the upper and lower stop frames, respectively. The screw sleeves are threaded onto the screw. The multiple compression springs are vertically sleeved on the screw and are located between the upper stop frame, the lower stop frame, and multiple middle stop frames. A linkage mechanism is provided inside the bottom side of the frame to drive the four screws to rotate.
[0007] As a preferred technical solution of the present invention, the linkage mechanism includes four first sprockets and a transmission belt. The four first sprockets are respectively fixedly sleeved on the bottom side of four screws, and the transmission belt is rotatably embedded on the four first sprockets.
[0008] As a preferred technical solution of the present invention, sleeves are vertically fixedly installed at the top of each of the four corners of the frame. The sleeves and the bottom of the screw are clearance-fitted. A locking block is horizontally fixedly installed at the top of the screw. A locking groove is horizontally opened at the bottom of the screw. The locking grooves match. A locking component is provided on the side of the bottom of the frame. The locking component is used for transverse transmission.
[0009] As a preferred embodiment of the present invention, the snap-fit component includes a first snap-fit rod, a second snap-fit rod, and two second sprockets. An insertion port is provided on the bottom side of the frame. The first snap-fit rod is horizontally rotatably fitted into the frame and located within the insertion port. A groove is provided on the side end of the first snap-fit rod. The second snap-fit rod is horizontally rotatably mounted on the other side of the bottom of the frame and is coaxially positioned relative to the first snap-fit rod. A protrusion is fixedly installed on the outer end of the second snap-fit rod, and the protrusion corresponds to and matches the groove. The two second sprockets are respectively fixedly fitted onto the first snap-fit rod and the second snap-fit rod. Toothed grooves are provided on the upper side and inner ring of the transmission belt. The first sprocket is meshed with the transmission belt through the inner ring toothed groove, and the two second sprockets are meshed with the transmission belt through the upper toothed groove. Inserts are vertically fixedly installed on the front and rear sides of the left end of the frame, and slots are vertically opened on the front and rear sides of the right end of the frame.
[0010] As a preferred embodiment of the present invention, the load-bearing mechanism includes two sets of fine-tuning components and multiple sets of support components. The support components include a support plate, two support tubes, a main shaft, two sliding plates, two toothed plates, and a first gear. The two support tubes are horizontally rotatably sleeved on the front and rear ends of the lower stop frame, respectively. The support plate is arranged horizontally radially, and its front and rear ends are respectively fixedly connected to the ends of the two support tubes that are close to each other. The main shaft is horizontally radially rotatably sleeved inside the support plate, and its front end passes through the support tube. The two sliding plates are horizontally slidably sleeved on both sides of the support plate, respectively. The first gear is fixedly sleeved on the main shaft. The two toothed plates are horizontally symmetrically arranged and are both meshed with the first gear. The ends of the two toothed plates that are far apart from each other are respectively connected to the ends of the two sliding plates that are close to each other. The two sets of fine-tuning components are both arranged on the front side of the lower stop frame and are used to drive the main shaft and the support plate to rotate, respectively. The front end of the main shaft is fixedly sleeved with a second gear, and the front end of the support tube located on the front side is fixedly sleeved with a third gear. The multiple sets of support components are evenly distributed.
[0011] As a preferred technical solution of the present invention, the fine-tuning component includes a slider, a locking screw and a rack. The slider is horizontally slidably mounted on the front side of the lower stop frame. The locking screw is horizontally radially threaded inside the slider. The rack is horizontally slidably mounted on the front side of the lower stop frame. The racks in the two sets of fine-tuning components are respectively meshed with multiple second gears and multiple third gears.
[0012] Compared with the prior art, the present invention provides a cage device for livestock and poultry farming, which has the following beneficial effects: (1) With the cooperation of the adjustment mechanism and the snap-fit component, the spacing between the upper frame, the lower frame and multiple middle frames can be adjusted. According to the size of the poultry, while meeting the requirement of blocking the poultry, the gap can be expanded as much as possible, so as to ensure that the cage can be fully ventilated, expand the vertical space, and ensure that the poultry have enough space to move around. (2) By inserting the plug and slot, multiple cages are connected in the horizontal direction. By inserting the bottom end of the screw and the sleeve, multiple cages are connected in the vertical direction. With the cooperation of the snap-fit parts, the spacing between the upper frame, lower frame and multiple middle frames in multiple cages can be adjusted synchronously during the mass breeding process to ensure that the ventilation path is unobstructed and further ensure effective ventilation. (3) During the feeding process, while ensuring that multiple sets of support components can effectively support the feet of poultry, the spacing between the support components should be increased as much as possible. This will enable effective ventilation in the vertical direction and facilitate the discharge of poultry manure. Attached Figure Description
[0013] Figure 1 This is a frontal three-dimensional structural diagram of a cage device for livestock and poultry farming proposed in this invention; Figure 2 This is a schematic diagram of a partial cross-sectional structure on the right side of a cage device for livestock and poultry farming proposed in this invention; Figure 3 This is a schematic diagram of a partial cross-sectional structure of a cage device for livestock and poultry farming proposed in this invention; Figure 4 for Figure 1 Enlarged view of the structure at point A in the image; Figure 5 for Figure 1 Enlarged view of the structure at point B in the image; Figure 6 for Figure 1 Enlarged view of the structure at point C in the image; Figure 7 for Figure 1 Enlarged view of the structure at point D in the image; Figure 8 for Figure 2Enlarged view of the structure at point E in the image; Figure 9 for Figure 2 Enlarged view of the structure at point F in the image; Figure 10 for Figure 2 Enlarged view of the structure at point G in the image; Figure 11 for Figure 2 Enlarged view of the structure at point H in the image; Figure 12 for Figure 3 Enlarged view of the structure at point K in the image; Figure 13 for Figure 3 Enlarged view of the structure at point M.
[0014] In the diagram: 1. Frame; 101. Insert block; 102. Slot; 2. Upper baffle; 3. Lower baffle; 4. Middle baffle; 5. Sliding opening; 6. Grating plate; 7. Manure receiving plate; 8. Crossbar; 9. Locking device; 10. Connecting rod; 11. First pin; 12. Second pin; 13. Screw; 14. Screw sleeve; 15. Compression spring; 16. First sprocket; 17. Transmission belt; 18. Sleeve; 19. Locking block; 20. Locking groove; 21. First locking rod; 211. Groove; 22. Second locking rod; 221. Protrusion; 23. Second sprocket; 24. Insertion port; 25. Support plate; 26. Support tube; 27. Main shaft; 28. Slide plate; 29. Gear plate; 30. First gear; 31. Second gear; 32. Third gear; 33. Slider; 34. Locking screw; 35. Rack; 36. Telescopic rod. Detailed Implementation
[0015] The technical solution of the present invention will now be clearly and completely described with reference to the accompanying drawings. Obviously, what is described is only a part of the embodiments of the present invention, and not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0016] See Figure 1-13 A cage device for raising livestock and poultry includes a frame 1 and a fence mechanism, wherein the fence mechanism is disposed inside the frame 1; The fence mechanism includes an upper frame 2, a lower frame 3, multiple middle frames 4, and a gate stop assembly. The frame 1 is in the shape of a quadrangular prism, and each corner is vertically provided with a sliding opening 5. The upper frame 2, multiple middle frames 4, and lower frame 3 are vertically slidably embedded in the sliding opening 5 from top to bottom. Each sliding opening 5 is vertically provided with an adjustment mechanism for adjusting the adjacent spacing between the upper frame 2, lower frame 3, and multiple middle frames 4. A grid plate 6 is horizontally fixedly installed inside the upper frame 2, and a manure receiving plate 7 is inclinedly fixedly installed inside the frame 1 at the bottom side of the lower frame 3. The front middle of multiple middle baffle frames 4 is divided into sections to form a cage opening. The door stop assembly is vertically set in the front cage opening area. The door stop assembly includes multiple horizontal bars 8, a locking device 9 and multiple pairs of connecting rods 10. The multiple horizontal bars 8 are all horizontally arranged and arranged from top to bottom. The uppermost horizontal bar 8 is horizontally fixedly installed on the front side of the upper baffle frame 2. The locking device 9 is fixedly installed on the front side of the bottommost horizontal bar 8. The front side of the lower baffle frame 3 has a lock hole that cooperates with the locking device 9. The middle part of the connecting rod 10 is hinged by the first pin 11 and a torsion spring is installed at the connection. The upper and lower ends of the connecting rod 10 are respectively hinged to the front side of two adjacent horizontal bars 8 by the second pin 12. The lower frame 3 has a horizontal load-bearing mechanism inside for supporting poultry.
[0017] The adjusting mechanism includes a screw 13, two screw sleeves 14, and multiple compression springs 15. The screw 13 is vertically rotatably sleeved inside the frame 1 and located inside the sliding opening 5. The two screw sleeves 14 are vertically fixedly sleeved inside the upper stop frame 2 and the lower stop frame 3, respectively. The screw sleeves 14 are threaded onto the screw 13. The multiple compression springs 15 are all vertically sleeved on the screw 13 and are located between the upper stop frame 2, the lower stop frame 3, and multiple middle stop frames 4, respectively. A linkage mechanism is provided inside the bottom side of the frame 1 to drive the four screws 13 to rotate.
[0018] The linkage mechanism includes four first sprockets 16 and a transmission belt 17. The four first sprockets 16 are respectively fixedly sleeved on the bottom side of the four screws 13, and the transmission belt 17 is rotatably embedded on the four first sprockets 16.
[0019] Sleeves 18 are vertically fixed at the top of each of the four corners of the frame 1. The sleeves 18 are clearance-fitted with the bottom of the screw 13. A locking block 19 is horizontally fixed at the top of the screw 13. A locking groove 20 is horizontally opened at the bottom of the screw 13. The locking groove 20 is matched. A locking component is provided on the side of the bottom of the frame 1. The locking component is used for transverse transmission.
[0020] The locking component includes a first locking rod 21, a second locking rod 22, and two second sprockets 23. A slot 24 is provided on the bottom side of the frame 1. The first locking rod 21 is horizontally rotatably fitted inside the frame 1 and located inside the slot 24. A groove 211 is provided on the side end of the first locking rod 21. The second locking rod 22 is horizontally rotatably installed on the other side of the bottom of the frame 1 and is coaxially arranged with the first locking rod 21. A protrusion 221 is fixedly installed on the outer end of the second locking rod 22. The protrusion 221 corresponds to and matches the groove 211. The two second sprockets 23 are respectively fixedly fitted on the first locking rod 21 and the second locking rod 22. The upper side and inner ring of the transmission belt 17 are provided with toothed grooves. The first sprocket 16 is engaged with the transmission belt 17 through the inner ring toothed groove. The two second sprockets 23 are engaged with the transmission belt 17 through the upper toothed groove. Insert blocks 101 are vertically fixedly installed on the front and rear sides of the left end of the frame 1. Slots 102 are vertically opened on the front and rear sides of the right end of the frame 1.
[0021] The load-bearing mechanism includes two sets of fine-tuning components and multiple sets of support assemblies. The support assemblies include a support plate 25, two support tubes 26, a main shaft 27, two sliding plates 28, two gear plates 29, and a first gear 30. The two support tubes 26 are horizontally rotatably sleeved on the front and rear ends of the lower stop frame 3. The support plate 25 is horizontally radially arranged, with its front and rear ends fixedly connected to the ends of the two support tubes 26 that are close to each other. The main shaft 27 is horizontally radially rotatably sleeved inside the support plate 25, with its front end penetrating through the support tube 26. The two sliding plates 28 are horizontally slidably sleeved on the support plate 25. On both sides of plate 25, the first gear 30 is fixedly sleeved on the main shaft 27. Two toothed plates 29 are horizontally symmetrically arranged and are meshed with the first gear 30. The ends of the two toothed plates 29 that are far apart from each other are respectively close to the ends of the two slide plates 28. Two sets of fine-tuning components are set on the front side of the lower stop frame 3, which are used to drive the main shaft 27 and the support plate 25 to rotate respectively. The front end of the main shaft 27 is fixedly sleeved with the second gear 31, and the front end of the support tube 26 located on the front side is fixedly sleeved with the third gear 32. Multiple sets of support components are distributed at equal intervals.
[0022] The fine-tuning components include a slider 33, a locking screw 34, and a rack 35. The slider 33 is horizontally slidably mounted on the front side of the lower stop frame 3. The locking screw 34 is horizontally radially threaded inside the slider 33. The rack 35 is horizontally slidably mounted on the front side of the lower stop frame 3. The rack 35 in the two sets of fine-tuning components is respectively meshed with multiple second gears 31 and multiple third gears 32.
[0023] When using this equipment to raise poultry, the fence mechanism is adjusted according to the size of the poultry. During adjustment, a screwdriver is inserted into the groove 211 to turn the first locking rod 21. The first locking rod 21 drives the second sprocket 23 fixedly connected to it. The second sprocket 23 drives the transmission belt 17 to rotate through the upper tooth groove. The transmission belt 17 drives the four first sprockets 16 to rotate synchronously through the inner tooth groove. The four first sprockets 16 drive the screws 13 connected to them to rotate. The screws 13 cause the two threaded sleeves 14 connected to them to move away from or closer to each other synchronously, compressing multiple compression springs 15. The multiple compression springs 15 cause multiple middle baffle frames 4 to move up and down and be evenly distributed, so that the upper baffle frame 2, the lower baffle frame 3 and the multiple middle baffle frames 4 are evenly distributed.
[0024] With the cooperation of the adjustment mechanism and the snap-fit component, the spacing between the upper baffle 2, the lower baffle 3 and multiple middle baffles 4 can be adjusted. Based on the size of the poultry, the gaps can be widened as much as possible while still blocking the poultry, so as to ensure that the cage can be fully ventilated, expand the vertical space, and ensure that the poultry have enough room to move around.
[0025] In mass breeding, this equipment can be stacked and multiple cages can be assembled for use. Before assembly, the first locking rod 21 is adjusted so that its end groove 211 is in a vertical state, and the protrusion 221 at the end of the second locking rod 22 is automatically aligned and in a vertical state. Then, the bottom end of the insert block 101 is inserted into the top of the slot 102 and then slid down to assemble two horizontally adjacent cages together. The bottom end of the screw 13 is inserted into the sleeve 18 so that two vertically adjacent cages are combined together. The two screws 13 located in the sleeve 18 are inserted into the slot 20 through the locking block 19. After insertion, the top of the sleeve 18 contacts the bottom surface of the frame 1 for support. The screws 13 do not bear vertical pressure. The bottommost cage is supported by the foundation so that the lowest end of the screw 13 is in a suspended state. When the insert block 101 moves to the bottom of the slot 102, the second locking rod 22 is located in the insertion port 24, and the protrusion 221 is engaged with the groove 211.
[0026] By inserting the plug 101 into the slot 102, multiple cages are connected horizontally. By inserting the bottom end of the screw 13 into the sleeve 18, multiple cages are connected vertically, allowing multiple cages to be combined together for large-scale poultry farming. When the poultry grow to a certain size, the output end of the external torque device engages with the groove 211 at the end of any of the first locking rods 21 on the outside. Tightening the corresponding first locking rod 21 causes the corresponding transmission belt 17 to rotate. The transmission belt 17 drives the screw 13 to rotate, and at the same time, the second sprocket 23 at the other end drives the second locking rod 22 to rotate. The screw 13 is connected to the slot 20 through the locking block 19, which drives multiple vertically parallel screws 13 to rotate. The second locking rod 22 is connected to the groove 211 through the protrusion 221, which drives the first locking rod 21 connected to it to rotate. This allows for the synchronous adjustment of the spacing between the upper baffle 2, lower baffle 3, and multiple middle baffles 4 in multiple cages, ensuring unobstructed ventilation paths and further ensuring effective ventilation.
[0027] During the feeding process, the effective spacing of the bottom support components is fine-tuned according to the size of the poultry's feet. While ensuring that multiple sets of support components can effectively support the poultry's feet, the spacing of the support components is expanded as much as possible. This achieves effective ventilation in the vertical direction and facilitates the downward discharge of poultry droppings.
[0028] During fine-tuning, the locking screw 34 corresponding to the second gear 31 is unlocked, and then the slider 33 is pushed to move. The slider 33 drives the rack 35 fixedly connected to it to move. The rack 35 drives the multiple second gears 31 meshing with it to rotate synchronously. The second gears 31 drive the main shaft 27 to rotate. The main shaft 27 drives the first gear 30 to rotate. The first gear 30 causes the two toothed plates 29 to move synchronously, moving closer or further away from each other, thereby causing the two slide plates 28 to move closer or further away from each other, adjusting the effective width of the support assembly, thereby realizing the adjustment of the spacing between multiple sets of support assemblies.
[0029] When cleaning the cage, the spacing of the enclosure mechanism is adjusted to the maximum. At the same time, the fine-tuning component connected to the third gear 32 is operated, which allows the support component to be deflected 180 degrees, so that the upper and lower sides are swapped, making it easier to thoroughly clean the support surface from the bottom.
[0030] After using the fine-tuning component, the locking screw 34 needs to be tightened so that it presses firmly against the inner wall of the frame 1, restricting the movement of the slider 33.
[0031] When the cage needs to be opened or closed, the locking device 9 is unlocked. Under the action of the torsion spring, the multiple connecting rods 10 automatically converge, causing the multiple horizontal bars 8 to move upward automatically, opening the cage opening area. When the cage opening area needs to be closed, the horizontal bar 8 connected to it is pulled down through the locking device 9, causing the door stop assembly to be stretched and unfolded to cover the cage opening area. Then, the locking device 9 is engaged with the front side of the lower frame 3 to complete the closure of the cage opening area. The door stop assembly composed of multiple horizontal bars 8 and connecting rods 10 automatically extends or retracts at equal intervals as the fence structure is adjusted under the elastic force of the torsion spring.
[0032] Two telescopic rods 36 are symmetrically arranged on both sides of the door stop assembly. The upper and lower ends of the telescopic rods 36 are fixedly connected to the upper frame 2 and the lower frame 3, respectively. The distance between the two telescopic rods 36 is less than the length of the crossbar 8, so as to prevent the door stop assembly from bending outward due to the impact of poultry and to ensure the effectiveness of the blockage.
[0033] Finally, it should be noted that the above descriptions are merely preferred embodiments of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A cage device for raising livestock and poultry, comprising a frame (1) and a fence mechanism, wherein the fence mechanism is disposed within the frame (1); Its features are: The fence mechanism includes an upper frame (2), a lower frame (3), multiple middle frames (4) and a gate stop assembly. The frame (1) is a quadrangular prism, and each corner is vertically provided with a sliding opening (5). The upper frame (2), multiple middle frames (4) and lower frame (3) are vertically slidably embedded in the sliding opening (5) from top to bottom. Each sliding opening (5) is vertically provided with an adjustment mechanism to adjust the adjacent spacing between the upper frame (2), lower frame (3) and multiple middle frames (4). A grid plate (6) is horizontally fixed inside the upper frame (2), and a manure collection plate (7) is inclinedly fixed inside the frame (1) on the bottom side of the lower frame (3). The front middle of multiple middle baffles (4) is partitioned to form a cage opening. The door stop assembly is vertically set in the front cage opening area. The door stop assembly includes multiple horizontal bars (8), a locking device (9) and multiple pairs of connecting rods (10). The multiple horizontal bars (8) are all horizontally arranged and arranged from top to bottom. The uppermost horizontal bar (8) is horizontally fixedly installed in front of the upper baffle (2). The locking device (9) is fixedly installed in front of the bottommost horizontal bar (8). The middle of the connecting rod (10) is hinged by the first pin (11) and a torsion spring is installed at the connection. The upper and lower ends of the connecting rod (10) are respectively hinged to the front of two adjacent horizontal bars (8) by the second pin (12). The lower frame (3) has a horizontal load-bearing mechanism inside for supporting poultry.
2. The cage equipment for livestock and poultry farming according to claim 1, characterized in that: The adjustment mechanism includes a screw (13), two screw sleeves (14) and multiple compression springs (15). The screw (13) is vertically rotated and sleeved inside the frame (1) and located inside the slide (5). The two screw sleeves (14) are vertically fixed and sleeved inside the upper stop frame (2) and the lower stop frame (3) respectively. The screw sleeves (14) are threaded on the screw (13). Multiple compression springs (15) are vertically sleeved on the screw (13) and located between the upper stop frame (2), the lower stop frame (3) and multiple middle stop frames (4) respectively. The bottom side of the frame (1) is provided with a linkage mechanism to drive the four screws (13) to rotate.
3. The cage equipment for livestock and poultry farming according to claim 2, characterized in that: The linkage mechanism includes four first sprockets (16) and a transmission belt (17). The four first sprockets (16) are fixedly sleeved on the bottom side of the four screws (13), and the transmission belt (17) is rotatably embedded on the four first sprockets (16).
4. The cage equipment for livestock and poultry farming according to claim 3, characterized in that: The four corners of the frame (1) are vertically fixed with sleeves (18), the sleeves (18) and the bottom of the screw (13) are clearance fit, the top of the screw (13) is horizontally fixed with a locking block (19), the bottom of the screw (13) is horizontally opened with a locking groove (20), the locking groove (20) matches, and the bottom side of the frame (1) is provided with a locking component, which is used for transverse transmission.
5. The cage equipment for livestock and poultry farming according to claim 4, characterized in that: The locking component includes a first locking rod (21), a second locking rod (22), and two second sprockets (23). A slot (24) is provided on the bottom side of the frame (1). The first locking rod (21) is horizontally rotatably fitted inside the frame (1) and located within the slot (24). A groove (211) is provided on the side end of the first locking rod (21). The second locking rod (22) is horizontally rotatably mounted on the other side of the bottom of the frame (1) and is coaxially positioned with respect to the first locking rod (21). A protrusion (221) is fixedly installed on the outer end of the second locking rod (22). 221) Corresponding to the groove (211), the two second sprockets (23) are respectively fixedly sleeved on the first clasp (21) and the second clasp (22). The upper side and inner ring of the transmission belt (17) are provided with toothed grooves. The first sprocket (16) is meshed with the transmission belt (17) through the inner ring toothed groove. The two second sprockets (23) are meshed with the transmission belt (17) through the toothed groove on the upper side. The front and rear sides of the left end of the frame (1) are vertically fixed with inserts (101), and the front and rear sides of the right end of the frame (1) are vertically provided with slots (102).
6. The cage equipment for livestock and poultry farming according to claim 1, characterized in that: The load-bearing mechanism includes two sets of fine-tuning components and multiple sets of support components. The support components include a support plate (25), two support tubes (26), a main shaft (27), two sliding plates (28), two toothed plates (29), and a first gear (30). The two support tubes (26) are horizontally rotatably sleeved on the front and rear ends of the lower stop frame (3). The support plate (25) is horizontally radially arranged, and its front and rear ends are fixedly connected to the ends of the two support tubes (26) that are close to each other. The main shaft (27) is horizontally radially rotatably sleeved inside the support plate (25), and its front end passes through the support tube (26). The two sliding plates (28) are horizontally slidably sleeved on the support plate (25). On both sides of the plate (25), the first gear (30) is fixedly sleeved on the main shaft (27). The two toothed plates (29) are horizontally symmetrical and are meshed with the first gear (30). The ends of the two toothed plates (29) that are far apart from each other are respectively close to the ends of the two slide plates (28). The two sets of fine adjustment components are set on the front side of the lower frame (3) and are used to drive the main shaft (27) and the support plate (25) to rotate. The front end of the main shaft (27) is fixedly sleeved with the second gear (31), and the front end of the support tube (26) located on the front side is fixedly sleeved with the third gear (32). Multiple sets of support components are distributed at equal intervals.
7. The cage equipment for livestock and poultry farming according to claim 6, characterized in that: The fine-tuning components include a slider (33), a locking screw (34), and a rack (35). The slider (33) is horizontally slidably mounted on the front side of the lower stop frame (3). The locking screw (34) is horizontally radially threaded inside the slider (33). The rack (35) is horizontally slidably mounted on the front side of the lower stop frame (3). The rack (35) in the two sets of fine-tuning components is respectively meshed with multiple second gears (31) and multiple third gears (32).
Citation Information
Patent Citations
Cage for raising poultry
CN102630600A
Poultry danger-proof breeding cage
CN107593500A
A type of poultry cage for improving meat quality in large-scale poultry farming
CN112005922B
Combined protective fence convenient to fold and transport for municipal engineering
CN211851222U
A multi-layer brooding cage for poultry farming
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