Multifunctional goose breeding cage

CN224791416UActive Publication Date: 2026-09-25HUNAN INST OF ANIMAL HUSBANDRY & VETERINARY MEDICINE
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Patent Information

Application Number
CN202522217549.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-20
Publication Date
2026-09-25
Estimated Expiration
2035-10-20

AI Technical Summary

Benefits of technology

1、本实用新型的多功能鹅养殖笼具,通过模块化设置,便于拆装,便于育雏、育成、本交繁殖、单体隔离功能阶段的鹅养殖,便于满足鹅从育雏到成鹅的各个周期养殖需求,便于提高养殖效率,通过对各个阶段笼具内部空间的调整,便于优化动物福利,减少鹅应激反应,通过设置漏粪网孔棱角钝化的矩形底板,便于减少鹅足垫损伤和应激反应,通过设置可拆装的丝网隔板,便于分隔、调整笼具内部空间,通过设置┐形限位杆和孔板,便于快速拆装丝网隔板。

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Abstract

The utility model belongs to poultry breeding device technical field discloses a multifunctional goose breeding cage, including rectangular bottom plate, the rectangular bottom plate top is connected with the long side frame and the short side frame and is enclosed and is formed the rectangular cage frame, the parallel partition rod of short side frame is connected between two long side frames, the both ends fixedly connected with the hole plate I of partition rod top, the middle fixedly connected with hole plate II, the opposite surface fixedly connected with hole plate III of two short side frames, the hole plate I, hole plate II, hole plate III between respectively connected with the detachable silk screen partition, and will rectangular cage frame divide into 6 partitioned rooms, the utility model discloses through the modularization setting, convenient to dismount, convenient to one cage complete the different stages of different purposes of goose breeding of rearing, rearing, this crossbreeding etc., convenient to improve goose cage utilization, through setting the rectangular bottom plate of mesh corner blunting, convenient to reduce the goose foot pad injury and stress reaction, through setting the detachable silk screen partition, convenient to separate, adjust the different interval space of cage inside according to the demand.
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Description

Technical Field

[0001] This utility model relates to a multifunctional goose breeding cage, belonging to the technical field of poultry breeding equipment. Background Technology

[0002] Currently, goose farming mainly employs two modes: cage farming and cageless farming. Compared to cageless farming, cage farming allows for easier control of feed intake and feeding time, facilitates cost management, controls the farming environment, strengthens disease prevention and control, and improves farming efficiency. Existing goose cages mostly use traditional bolt-fixed methods. For example, Chinese patent CN202230147980.8 discloses a modular goose cage assembly, which includes a cage body, a water trough assembly, a cleaning device, and a bottom plate assembly. The bottom plate assembly is mounted on the lower end of the cage body, the cleaning device is mounted on the lower end of the bottom plate assembly, and the water trough assembly is mounted on one side of the cage body. The cage can be assembled and folded by the first bolt and the symmetrical first and second rectangular frames. The cleaning device can be installed on the cage by the third bolt. However, the assembly and disassembly are not convenient and require time and effort to twist the bolts, which is inconvenient for workers. At the same time, the internal space of the existing goose cages is mostly fixed and the function is single. It is not convenient to meet the needs of multi-functional breeding such as brooding, rearing, natural mating, individual feeding, and estrus induction and semen collection. Therefore, there is a need for a multi-functional goose breeding cage that is easy to assemble and disassemble and can meet the needs of brooding, rearing, natural mating, individual feeding, and estrus induction and semen collection. Summary of the Invention

[0003] The purpose of this invention is to provide a multifunctional goose breeding cage.

[0004] To achieve the above objectives, the present invention adopts the following technical solution: a multifunctional goose breeding cage, comprising a rectangular base plate, the top of which is connected to two parallel long side frames and two parallel short side frames, the long side frames and short side frames forming a rectangular cage frame, the top and bottom of the opposite sides of the two long side frames being respectively connected to two partition rods, the two ends of the top of the partition rods being respectively fixedly connected to perforated plates I, the partition rods being parallel to the short side frames, the middle of the top of the partition rods being fixedly connected to perforated plates II, the top and bottom of the opposite sides of the two short side frames being respectively fixedly connected to perforated plates III, detachable wire mesh partitions being connected between perforated plates I and II, between the two sets of perforated plates II, and between perforated plates III and II, the wire mesh partitions dividing the interior of the rectangular cage frame into 6 compartments.

[0005] Preferably, the rectangular base plate is a manure-leaking plate, and the rectangular base plate has multiple manure-leaking holes, which are circular holes, strip holes, rounded rectangular holes, or rounded hexagonal holes. The edges of the manure-leaking holes are blunted. The long frame and the short frame each include a rectangular frame formed by rectangular tubes. The inner wall of the rectangular frame is provided with wire mesh I. The mesh of wire mesh I is square or regular hexagonal. The wire mesh I is made of metal wire, nylon wire, or metal wire coated with plastic. The wire mesh partition includes a rectangular frame formed by rectangular tubes, and wire mesh II is fixedly connected to the inner wall of the rectangular frame.

[0006] Preferably, two or more limiting rods I are fixedly connected to the bottom of the long frame and the short frame respectively, a limiting slot I is opened on the upper surface of the rectangular base plate, a U-shaped limiting rod I is fixedly connected to the top of both ends of the short frame, a limiting groove is opened on the top of both ends of the long frame, a limiting clip is fixedly connected to both ends of the separator rod, and a limiting clip groove adapted to the limiting clip is opened on the top and bottom of the opposite sides of the two long frames respectively.

[0007] Preferably, the perforated plate I, perforated plate II, and perforated plate III are fixedly connected to the partition rod and the short frame by welding or bolting. The limiting rod is a rectangular rod, and the end of the limiting rod away from the partition rod is chamfered.

[0008] Preferably, the top and bottom of both sides of the wire mesh partition are respectively fixedly connected with U-shaped limiting rods II, which are inserted into the through holes on the perforated plate I, perforated plate II, and perforated plate III, respectively. The U-shaped limiting rods II are round rods, and the through holes are round holes.

[0009] Preferably, limiting rings are fixedly connected to the opposite surfaces of the two sets of separating rods and the two sides of the perforated plate II, and a sliding door is slidably inserted into the limiting ring, with a handle on the top of the sliding door.

[0010] Preferably, the wire mesh partition between the perforated plate I and the perforated plate II is a rotatable cage door. A U-shaped limiting rod III is fixedly connected to the top and bottom of one side of the cage door, and the U-shaped limiting rod III is inserted into a through hole on the perforated plate I. A vertically penetrating limiting groove I is formed at the top of the other side of the cage door. A sliding rod is slidably connected within the limiting groove I. The top of the sliding rod extends to the outside of the limiting groove I and is fixedly connected to an upper U-shaped rod, which is inserted into a through hole on the perforated plate II. A limiting groove II is formed at the top of the limiting groove I on the side opposite to the upper U-shaped rod. The upper end of the limiting groove II penetrates the upper surface of the cage door. A straight rack I is slidably connected within the limiting groove II. The straight rack I is fixedly connected to the outer wall of the sliding rod. A mounting block is fixedly connected to the top of the cage door near the limiting groove I. A gear is rotatably connected inside the mounting block, and the gear meshes with the straight rack I. The gear is meshed with a rack II on the side away from the rack I. A pressing rod is fixedly connected to the side of the rack II away from the gear. The pressing rod and the rack II are slidably connected in a limiting groove III opened on the side of the mounting block away from the limiting groove I. The upper end of the limiting groove III penetrates the upper surface of the cage door, and the top of the pressing rod extends above the limiting groove III. A limiting groove IV is opened at the top of the limiting groove I on the side away from the gear. A limiting block is slidably connected within the limiting groove IV. The limiting block is fixedly connected to the sliding rod. A return spring is connected to the top of the limiting block. A limiting groove V is opened at the bottom of the limiting groove I on the side away from the gear, penetrating the outer wall of the cage door away from the U-shaped limiting rod III. A lower U-shaped rod is fixedly connected to the lower end of the sliding rod. The lower U-shaped rod slides through the limiting groove V and extends to the outside of the limiting groove V. The lower U-shaped rod is inserted into the through hole on the perforated plate II.

[0011] Preferably, the inner wall of the limiting slide groove I, the outer wall of the sliding rod, the inner wall of the limiting slide groove II, the inner wall of the limiting slide groove III, the outer wall of the pressing rod, the inner wall of the limiting slide groove IV, and the inner wall of the limiting slide groove V are smooth or lubricated surfaces, and the return spring is a compression spring.

[0012] Preferably, the top of the rectangular cage is detachably connected to an insulated top cover, and an insulated lamp is provided inside the insulated top cover at the corresponding partition. The bottom of the insulated top cover is provided with two or more limiting rods II, and the top of the rectangular cage is provided with a corresponding limiting slot II.

[0013] Preferably, the top of the long frame is provided with two or more limiting holes, an inverted L-shaped rod is inserted into the limiting holes, a sleeve is slidably sleeved on the outer wall of the inverted L-shaped rod, a feed trough is fixedly connected to the outer wall of the sleeve, and a locking knob is threadedly connected to the outer wall of one side of the sleeve.

[0014] Beneficial effects 1. This utility model's multifunctional goose breeding cage, through its modular design, is easy to assemble and disassemble, facilitating goose breeding at various stages, including brooding, rearing, natural mating, and individual isolation. It meets the breeding needs of geese throughout their life cycle from brooding to adulthood, improving breeding efficiency. Adjusting the internal space of the cage at each stage optimizes animal welfare and reduces stress on geese. The rectangular bottom plate with blunted edges of the manure-leaking mesh reduces footpad damage and stress. The detachable wire mesh partitions facilitate the separation and adjustment of the cage's internal space. The U-shaped limiting rod and perforated plate allow for quick assembly and disassembly of the wire mesh partitions.

[0015] This utility model relates to a multifunctional goose breeding cage. By setting a cage door that is easy to rotate, it is easy to control the opening and closing of the cage for mating one male and four female geese, and it is easy to switch between mating and individual isolation functions. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the structure of this utility model; Figure 2 This is a top view of the rectangular cage structure in this utility model; Figure 3 This is a schematic diagram of the rectangular base plate in this utility model; Figure 4 This is a schematic diagram of the structure of the long frame in this utility model; Figure 5 This is a schematic diagram of the structure of the separator rod in this utility model; Figure 6 This is a schematic diagram of the short frame structure in this utility model; Figure 7 This is a schematic diagram of the structure of the wire mesh partition in this utility model; Figure 8 This is a schematic diagram of the spacing structure of the rectangular cage frame in the growth stage of this utility model; Figure 9 This is a schematic diagram of the interval structure of the rectangular cage frame in the current stage of this utility model; Figure 10 This is a schematic diagram of the structure of Embodiment 2 of this utility model; Figure 11 This is a schematic diagram of the cage door structure in this utility model; Figure 12 for Figure 11 A schematic diagram of the side section structure at point A in the diagram; Figure 13 for Figure 11 Schematic diagram of the side section structure at point B in the diagram; Figure 14 This is a top view of the rectangular cage structure in Embodiment 3 of this utility model; Figure 15This is a schematic diagram showing the connection state of the pull-out door and the partition rod in Embodiment 3 of this utility model; Figure 16 This is a schematic diagram of the pull-out door in Embodiment 3 of this utility model; Figure 17 This is a schematic diagram of the structure when the limiting ring in this utility model is a U-shaped block; Figure 18 This is a schematic diagram of the structure of the heat-insulating top cover in Embodiment 4 of this utility model; Figure 19 This is a schematic diagram of the feed trough in Embodiment 5 of this utility model.

[0017] In the diagram: 1. Rectangular base plate; 11. Manure leakage hole; 12. Limiting slot I; 2. Rectangular cage frame; 21. Long frame; 22. Short frame; 23. Divider rod; 24. Perforated plate I; 25. Perforated plate II; 26. Perforated plate III; 27. Wire mesh partition; 28. Partition; 29. ​​Cage door; 201. Rectangular frame; 202. Wire mesh I; 203. Rectangular frame; 204. Wire mesh II; 205. Limiting rod I; 206. U-shaped limiting rod I; 207. Limiting groove; 208. Limiting locking rod; 209. Limiting locking groove; 210. U-shaped rod; 211. U-shaped limiting rod II; 212. Through hole; 213. U-shaped limiting rod III; 214. Limiting slide groove I; 2 15. Sliding rod; 216. Upper U-shaped rod; 217. Limiting groove II; 218. Spur rack I; 219. Mounting block; 220. Gear; 221. Spur rack II; 222. Pressing rod; 223. Limiting groove III; 224. Limiting groove IV; 225. Limiting block; 226. Return spring; 227. Limiting groove V; 228. Lower U-shaped rod; 229. Limiting ring; 230. Pull-out door; 231. Handle; 232. Insulated top cover; 233. Limiting slot II; 234. Limiting insertion hole; 235. Inverted L-shaped rod; 236. Sleeve; 237. Feed trough; 238. Locking knob; 239. Connecting unit; 240. U-shaped block. Detailed Implementation

[0018] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0019] Example 1: like Figure 1-9As shown, this utility model provides a technical solution: a multifunctional goose breeding cage, including a rectangular base plate 1, which is a manure-suspension plate with a thickness of ≥3cm. Multiple manure-suspension holes 11 are provided on the rectangular base plate 1. These holes 11 can be circular, strip-shaped, rounded rectangular, or rounded hexagonal. The edges of the manure-suspension holes 11 are blunted to ensure manure passage while preventing footpad damage. The top of the rectangular base plate 1 is connected to two parallel long side frames 21 and two parallel short side frames 22. The long side frames 21 and short side frames 22 enclose a rectangular cage frame 2. Two dividing rods 23 are connected to the top and bottom of the opposite sides of the two long side frames 21, respectively. The two ends of the top of the dividing rods 23 are respectively fixedly connected to… There is a perforated plate I 24, and the partition rod 23 is parallel to the short frame 22. The top middle of the partition rod 23 is fixedly connected to the perforated plate II 25. The top and bottom of the opposite sides of the two short frames 22 are respectively fixedly connected to the perforated plate III 26. The perforated plates I 24, II 25, and III 26 are respectively fixedly connected to the partition rod 23 and the short frame 22 by welding or bolting. Detachable wire mesh partitions 27 are connected between the perforated plates I 24 and II 25, between the two sets of perforated plates II 25, and between the perforated plates III 26 and II 25. The wire mesh partitions 27 divide the interior of the rectangular cage 2 into 6 partitions 28. In this embodiment, the size of the partition 28 is 60cm × 60cm × 80cm.

[0020] Specifically, the long frame 21 and the short frame 22 each include a rectangular frame 201 formed by rectangular tubes. The inner wall of the rectangular frame 201 is provided with a wire mesh I 202. The mesh of the wire mesh I 202 is square or regular hexagonal. The mesh of the wire mesh I 202 is smaller than the body size of the gosling but larger than the outer diameter of the gosling's head. In this embodiment, the mesh of the wire mesh I 202 is a square hole with a side length of 80-100mm. The wire diameter of the wire mesh I 202 is 4-6mm. The wire mesh I 202 is made of metal wire, nylon wire or metal wire coated with plastic. In this embodiment, the wire mesh I 202 is made of stainless steel wire. The wire mesh partition 27 includes a rectangular frame 203 formed by rectangular tubes. A wire mesh II 204 is fixedly connected to the inner wall of the rectangular frame 203. The mesh of the wire mesh II 204 is not larger than the mesh of the wire mesh I 202. The corners of the perforated plate I 24, perforated plate II 25, and perforated plate III 26 are blunted.

[0021] Specifically, two or more limiting rods I205 are fixedly connected to the bottom of the long frame 21 and the short frame 22 respectively. A limiting slot I12, adapted to the limiting rods I205, is correspondingly opened on the upper surface of the rectangular base plate 1. The limiting rods I205 are engaged in the limiting slots I12. A U-shaped limiting rod I206 is fixedly connected to the top of each end of the short frame 22. A limiting groove 207, adapted to the U-shaped limiting rod I206, is opened at the top of each end of the long frame 21. The U-shaped limiting rod I206 is engaged in the limiting groove 207. Limiting rods 208 are fixedly connected to both ends of the separator rod 23. Limiting grooves 209, adapted to the limiting rods 208, are opened at the top and bottom of the opposite surfaces of the two long frames 21 respectively. Positioning rod 208 is engaged in limiting groove 209. Limiting rod 208 is a rectangular rod. The end of limiting rod 208 away from the separator rod 23 is chamfered to facilitate the insertion of limiting rod 208 into limiting groove 209. The top of long frame 21 is provided with limiting groove 207 corresponding to the position of separator rod 23, and a ∩-shaped rod 210 is engaged. The other end of ∩-shaped rod 210 is engaged in the groove of perforated plate I 24, limiting the ends of long frame 21 and separator rod 23. The top and bottom of both sides of wire mesh partition 27 are respectively fixedly connected with ┐-shaped limiting rod II 211. ┐-shaped limiting rod II 211 is inserted into the through holes 209 on perforated plate I 24, perforated plate II 25, and perforated plate III 26 respectively. ┐-shaped limiting rod II 211 is a round rod, and through hole 209 is a round hole.

[0022] The working process of this utility model is as follows: A rectangular base plate 1 is installed on a mechanical manure cleaning ditch. The limiting rods I 205 at the bottom of the long frame 21 and the short frame 22 are inserted into the limiting slots I 12 on the rectangular base plate 1. The U-shaped limiting rods I 206 at the top of the short frame 22 are engaged in the limiting grooves 207 at both ends of the long frame 21. The long frame 21 and the short frame 22 enclose a rectangular cage 2. Wire mesh partitions 27 are inserted between perforated plates I 24 and II 25, between the two sets of perforated plates II 25, and between perforated plates III 26 and II 25. The U-shaped limiting rods II 211 on the wire mesh partitions 27 are inserted into the through holes 209 on the perforated plates I 24, II 25, and III 26, respectively. The wire mesh partitions 27 divide the interior of the rectangular cage 2 into six compartments 28. Figure 1 As shown, goslings are placed in cages and raised in six separate compartments 28 for easy brooding. When the goslings reach 40-60 days of age, the three wire mesh partitions 27 parallel to the long frame 21 are removed, forming three interconnected units 239. Figure 8 As shown, the activity space for geese is expanded to facilitate rearing during the breeding stage. During the breeding season, wire mesh partitions 27 are installed in the two connecting units 239 near the short frame 22 to form a breeding cage for one male and four female geese. Figure 9As shown, opening the wire mesh partition 27 between the male and female goose compartments connects the compartments, enabling natural mating. Installing the wire mesh partition 27 separates the male and female goose compartments, allowing for individual isolation of the female goose and creating a single cage. The wire mesh partition 27 between the male and female goose compartments is easy to open and close, facilitating the conversion between natural mating and individual isolation functions, and also facilitating estrus induction and sperm collection. This multifunctional goose breeding cage, through its modular design, is easy to assemble and disassemble, and convenient for brooding and rearing. The integrated breeding, mating, and individual isolation system for goose farming facilitates meeting the needs of geese throughout their growth cycle from brooding to adulthood, thereby improving farming efficiency. Adjusting the internal space of the cages at each stage optimizes animal welfare and reduces stress on geese. The rectangular bottom plate with blunted corners at the manure leakage holes helps reduce footpad damage and stress. The removable wire mesh partitions facilitate the separation and adjustment of the internal space of the cages, while the U-shaped limiting rods and perforated plates allow for quick assembly and disassembly of the wire mesh partitions.

[0023] Example 2: like Figure 10-13As shown, this utility model provides a technical solution: a multifunctional goose breeding cage, including a rectangular base plate 1, which is a slatted floor. The top of the rectangular base plate 1 is connected to two parallel long side frames 21 and two parallel short side frames 22, which together form a rectangular cage frame 2. The top and bottom of the opposite sides of the two long side frames 21 are respectively connected to two dividing rods 23. Perforated plates I 24 are fixedly connected to both ends of the top of the dividing rods 23. The dividing rods 23 are parallel to the short side frames 22. A perforated plate II 25 is fixedly connected to the middle of the top of the dividing rods 23. Perforated plates III 26 are fixedly connected to the top and bottom of the opposite sides of the two short side frames 22. The perforated plates I 24 and II 25 are connected together, and the two sets of perforated plates II 25 are connected together. Detachable wire mesh partitions 27 are connected between perforated plate I 24 and perforated plate II 25. The wire mesh partition 27 between perforated plate I 24 and perforated plate II 25 is a rotatable cage door 29. The cage door 29 includes a rectangular frame 203 formed by rectangular tubes. Wire mesh II 204 is fixedly connected to the inner wall of the rectangular frame 203. A U-shaped limiting rod III 213 is fixedly connected to the top and bottom of one side of the cage door 29. The U-shaped limiting rod III 213 is inserted into the through hole 209 on the perforated plate I 24. A limiting groove I 214 is vertically opened on the top of the other side of the cage door 29, running from top to bottom through the side of the cage door 29 away from the U-shaped limiting rod III 213. A sliding rod 215 is slidably connected in the limiting groove I 214. The top of the sliding rod 215 extends to the limiting groove. An upper U-shaped rod 216 is fixedly connected to the outside of the sliding groove I 214. The upper U-shaped rod 216 is inserted into the through hole 209 on the perforated plate II 25. A limiting groove II 217 is opened on the top of the limiting groove I 214 on the side away from the upper U-shaped rod 216. The upper end of the limiting groove II 217 penetrates the upper surface of the cage door 29. A straight rack I 218 is slidably connected in the limiting groove II 217. The straight rack I 218 is fixedly connected to the outer wall of the sliding rod 215. An mounting block 219 is fixedly connected to the top of the cage door 29 on the side near the limiting groove I 214. A gear 220 is rotatably connected inside the mounting block 219. The gear 220 meshes with the straight rack I 218. A straight rack II 221 is meshed with the side of the gear 220 away from the straight rack I 218. A pressing rod 222 is fixedly connected to the side of the rack II 221 away from the gear 220. The pressing rod 222 and the rack II 221 are slidably connected in a limiting groove III 223 opened on the side of the mounting block 219 away from the limiting groove I 214. The upper end of the limiting groove III 223 penetrates the upper surface of the cage door 29, and the top of the pressing rod 222 extends above the limiting groove III 223. A limiting groove IV 224 is opened on the top of the limiting groove I 214 on the side away from the gear 220. A limiting block 225 is slidably connected in the limiting groove IV 224. The limiting block 225 is fixedly connected to the sliding rod 215. A return spring 226 is connected to the top of the limiting block 225. The top of the return spring 226 is connected to the inner top wall of the limiting groove IV 224.The bottom of the limiting slide groove I 214, facing away from the gear 220, has a limiting slide groove V 227 that penetrates the outer wall of the cage door 29 away from the U-shaped limiting rod III 213. The lower end of the sliding rod 215 is fixedly connected to a lower U-shaped rod 228, which slides through the limiting slide groove V 227 and extends to the outside of the limiting slide groove V 227. The lower U-shaped rod 228 is inserted into the perforated plate II 25 on the lower partition rod 23. Within the through hole 209, the inner walls of the limiting slide groove I 214, the outer wall of the sliding rod 215, the inner walls of the limiting slide groove II 217, the inner walls of the limiting slide groove III 223, the outer wall of the pressing rod 222, the inner walls of the limiting slide groove IV 224, and the inner walls of the limiting slide groove V 227 are smooth or lubricated surfaces. The return spring 226 is a compression spring. When it is necessary to open the male and female goose compartments, the pressing rod 222 is pressed, and the pressing rod 222 drives the straight... Rack II 221 moves downward, driving gear 220 to rotate, which in turn causes rack I 218 to drive sliding rod 215 to move upward. Return spring 226 is compressed, and sliding rod 215 drives upper U-shaped rod 216 and lower U-shaped rod 228 to move upward and separate from perforated plate II 25. This allows cage door 29 to rotate and open around the vertical part of U-shaped limiting rod III 213. The easily rotatable cage door 29 facilitates control of the opening and closing of the mating cage for one male and four female geese, and facilitates the conversion between mating and individual isolation functions. Rotating cage door 29 opens the male and female goose compartments, enabling mating. Closing cage door 29 separates the male and female geese, creating individual cages. The cage door 29 between the male and female goose compartments is easy to open and close, facilitating the conversion between mating and individual isolation functions, and also facilitating estrus induction and sperm collection. Other structures are the same as in Embodiment 1.

[0024] Example 3: like Figure 14-16As shown, this utility model provides a technical solution: a multifunctional goose breeding cage, including a rectangular base plate 1, which is a manure-slatting plate. The top of the rectangular base plate 1 is connected to two parallel long side frames 21 and two parallel short side frames 22, which together form a rectangular cage frame 2. Two dividing rods 23 are connected to the top and bottom of the opposite sides of the two long side frames 21, respectively. Perforated plates I 24 are fixedly connected to both ends of the top of the dividing rods 23. The dividing rods 23 are parallel to the short side frames 22. A perforated plate II 25 is fixedly connected to the middle of the top of the dividing rods 23. Limiting rings 235 are fixedly connected to the opposite sides of the two sets of dividing rods 23 and to both sides of the perforated plate II 25. The limiting rings 235 are... The rectangular ring or ∩-shaped semi-ring has blunted corners of the limiting ring 235. A sliding insertion door 236 is inserted into the limiting ring 235 from top to bottom. The insertion door 236 includes a rectangular frame 203 formed by a rectangular tube. A wire mesh Ⅱ 204 is fixedly connected to the inner wall of the rectangular frame 203. A handle 237 is provided at the top of the insertion door 236. The outer wall of the handle 237 is a non-slip surface or is provided with a rubber non-slip pad. By setting the insertion door 236, which is easy to remove and insert, it is easy to control the opening and closing of the mating cage for one male and four female geese. It is easy to open and close, and it is easy to switch between mating and single isolation functions. It is also easy to induce estrus and collect semen. Other structures are the same as in Embodiment 1 or 2.

[0025] Example 4: like Figure 18 As shown, this utility model provides a technical solution: a multifunctional goose breeding cage, including a rectangular base plate 1, which is a manure-slatted plate. The top of the rectangular base plate 1 is connected to two parallel long side frames 21 and two parallel short side frames 22. The long side frames 21 and short side frames 22 enclose a rectangular cage frame 2. The top of the rectangular cage frame 2 is detachably connected to an insulated top cover 232. An insulated lamp is provided in the insulated top cover 232 at the corresponding partition 28. The bottom of the insulated top cover 232 is provided with two or more limiting rods II. The top of the rectangular cage frame 2 is provided with a limiting slot II 233 that is compatible with the limiting rods II. Installing the insulated top cover 232 facilitates the formation of an insulated space suitable for the growth of goslings. Other structures are the same as in Embodiment 1, 2 or 3.

[0026] Example 5: like Figure 19As shown, this utility model provides a technical solution: a multifunctional goose breeding cage, including a rectangular base plate 1, which is a manure-slatting plate. The top of the rectangular base plate 1 is connected to two parallel long side frames 21 and two parallel short side frames 22, which together form a rectangular cage frame 2. The top of the long side frames 21 is provided with two or more limiting holes 234, and an inverted L-shaped rod 235 is inserted into each limiting hole 234. A sleeve 236 is slidably fitted onto the outer wall of the inverted L-shaped rod 235. A feed trough 237 is fixedly connected to the upper part of the sleeve 236. A locking knob 238 is threadedly connected to the outer wall of one side of the sleeve 236. The threaded rod of the locking knob 238 passes through the side wall of the sleeve 236 and presses against the outer wall of the inverted L-shaped rod 235, thus limiting the inverted L-shaped rod 235. The position of the feed trough 237 on the inverted L-shaped rod 235 can be easily adjusted through the sleeve 236 and the locking knob 238. This makes it easier to adjust the height of the feed trough 237 to the level of the goose's neck according to the growth of the goose, making it easier for the goose to eat. Other structures are the same as in Embodiment 1, 2, 3, or 4.

[0027] As an alternative, this multi-functional goose cage can also be used for raising other poultry.

[0028] As an alternative, rectangular tubes can be replaced with angle steel or plastic-coated angle iron.

[0029] As an alternative, the long frame 21 and the short frame 22 are fixedly connected by bolts, and the divider 23 is fixedly connected to the long frame 21 by bolts.

[0030] As an alternative, the limit lever 208 can be replaced with an elliptical lever, a hexagonal lever, or an octagonal lever.

[0031] As an alternative, such as Figure 17 As shown, the limiting ring 229 can be replaced by two U-shaped blocks 240 facing each other, and the corners of the U-shaped blocks 240 are blunted.

Claims

1. A multifunctional goose breeding cage, comprising a rectangular base plate (1), characterized in that: The top of the rectangular base plate (1) is connected to two long side frames (21) and two short side frames (22). The long side frames (21) and short side frames (22) enclose a rectangular cage frame (2). The top and bottom of the opposite sides of the two long side frames (21) are respectively connected to two partition rods (23). The two ends of the top of the partition rods (23) are respectively fixedly connected to perforated plates I (24). The partition rods (23) are parallel to the short side frames (22). The middle of the top of the partition rods (23) is fixedly connected to perforated plates II (25). The top and bottom of the opposite sides of the two short side frames (22) are respectively fixedly connected to perforated plates III (26). Detachable wire mesh partitions (27) are respectively connected between perforated plates I (24) and perforated plates II (25), between the two sets of perforated plates II (25), and between perforated plates III (26) and perforated plates II (25). The wire mesh partitions (27) divide the interior of the rectangular cage frame (2) into 6 partitions (28).

2. The multifunctional goose breeding cage according to claim 1, characterized in that: The rectangular base plate (1) is a manure-leaking plate. Multiple manure-leaking holes (11) are provided on the rectangular base plate (1). The manure-leaking holes (11) are circular holes, strip holes, rounded rectangular holes or rounded hexagonal holes. The edges of the manure-leaking holes (11) are blunted. The long frame (21) and the short frame (22) respectively include a rectangular frame (201) formed by rectangular tubes. The inner wall of the rectangular frame (201) is provided with wire mesh I (202). The mesh of the wire mesh I (202) is square or regular hexagonal. The wire mesh I (202) is made of metal wire, nylon wire or metal wire covered with plastic. The wire mesh partition (27) includes a rectangular frame (203) formed by rectangular tubes. Wire mesh II (204) is fixedly connected to the inner wall of the rectangular frame (203).

3. The multifunctional goose breeding cage according to claim 1, characterized in that: Two or more limiting rods I (205) are fixedly connected to the bottom of the long frame (21) and the short frame (22), respectively. A limiting slot I (12) is opened on the upper surface of the rectangular base plate (1). A U-shaped limiting rod I (206) is fixedly connected to the top of both ends of the short frame (22), and a limiting groove (207) is opened on the top of both ends of the long frame (21). A limiting lever (208) is fixedly connected to both ends of the separator rod (23), and a limiting slot (209) that matches the limiting lever (208) is opened on the top and bottom of the opposite surfaces of the two long frames (21).

4. The multifunctional goose breeding cage according to claim 3, characterized in that: The perforated plate I (24), perforated plate II (25), and perforated plate III (26) are fixedly connected to the partition rod (23) and the short frame (22) respectively by welding or bolting. The limiting rod (208) is a rectangular rod. The end of the limiting rod (208) away from the partition rod (23) is chamfered. The top of the long frame (21) is provided with a limiting groove (207) and a ∩-shaped rod (210) is attached to it. The other end of the ∩-shaped rod (210) is attached to the groove of the perforated plate I (24).

5. A multifunctional goose breeding cage according to claim 1, characterized in that: The top and bottom of both sides of the wire mesh partition (27) are respectively fixedly connected with ┐-shaped limiting rods II (211). The ┐-shaped limiting rods II (211) are respectively inserted into the through holes (212) on the perforated plate I (24), perforated plate II (25), and perforated plate III (26). The ┐-shaped limiting rods II (211) are round rods, and the through holes (212) are round holes.

6. The multifunctional goose breeding cage according to claim 1, characterized in that: The wire mesh partition (27) between the perforated plate I (24) and the perforated plate II (25) is a rotatable cage door (29). A U-shaped limiting rod III (213) is fixedly connected to the top and bottom of one side of the cage door (29). The U-shaped limiting rod III (213) is inserted into the through hole (212) on the perforated plate I (24). A limiting groove I (214) penetrating the cage door (29) is vertically opened on the top of the other side of the cage door (29). A sliding rod (215) is slidably connected in the limiting groove I (214). The top of the sliding rod (215) extends to the outside of the limiting groove I (214) and is fixedly connected to an upper U-shaped rod (216). The upper U-shaped rod (216) is inserted into the perforated plate II. Inside the through hole (212) on (25), the top of the limiting slide groove I (214) on the side facing away from the U-shaped rod (216) is provided with a limiting slide groove II (217). The upper end of the limiting slide groove II (217) penetrates the upper surface of the cage door (29). A rack I (218) is slidably connected inside the limiting slide groove II (217). The rack I (218) is fixedly connected to the outer wall of the sliding rod (215). A mounting block (219) is fixedly connected to the top of the cage door (29) on the side near the limiting slide groove I (214). A gear (220) is rotatably connected inside the mounting block (219). The gear (220) meshes with the rack I (218). A rack II (221) is meshed with the side of the rack away from the rack I (218). A pressing rod (222) is fixedly connected to the side of the rack II (221) away from the gear (220). The pressing rod (222) and the rack II (221) are slidably connected in a limiting groove III (223) opened on the side of the mounting block (219) away from the limiting groove I (214). The upper end of the limiting groove III (223) penetrates the upper surface of the cage door (29), and the top of the pressing rod (222) extends to the top of the limiting groove III (223). A limiting groove IV (224) is opened on the top of the side of the limiting groove I (214) away from the gear (220). 24) An inner sliding connection is provided with a limiting block (225), the limiting block (225) is fixedly connected to the sliding rod (215), the top of the limiting block (225) is connected with a return spring (226), the bottom of the limiting groove I (214) facing away from the gear (220) is provided with a limiting groove V (227) that penetrates the outer wall of the cage door (29) away from the U-shaped limiting rod III (213), the lower end of the sliding rod (215) is fixedly connected with a lower U-shaped rod (228), the lower U-shaped rod (228) slides through the limiting groove V (227) and extends to the outside of the limiting groove V (227), the lower U-shaped rod (228) is inserted into the through hole (212) on the perforated plate II (25).

7. A multifunctional goose breeding cage according to claim 6, characterized in that: The inner wall of the limiting slide groove I (214), the outer wall of the sliding rod (215), the inner wall of the limiting slide groove II (217), the inner wall of the limiting slide groove III (223), the outer wall of the pressing rod (222), the inner wall of the limiting slide groove IV (224), and the inner wall of the limiting slide groove V (227) are smooth or lubricated surfaces, and the reset spring (226) is a compression spring.

8. The multifunctional goose breeding cage according to claim 1, characterized in that: Limiting rings (229) are fixedly connected to the opposite surfaces of the two sets of separating rods (23) and the two sides of the perforated plate II (25). A sliding door (230) is slidably inserted into the limiting ring (229), and a handle (231) is provided on the top of the sliding door (230).

9. A multifunctional goose breeding cage according to claim 1, characterized in that: The top of the rectangular cage (2) is detachably connected to an insulated top cover (232). An insulated lamp is provided in the corresponding partition room (28) inside the insulated top cover (232). Two or more limiting rods II are provided at the bottom of the insulated top cover (232). A limiting slot II (233) is opened on the top of the rectangular cage (2).

10. A multifunctional goose breeding cage according to claim 1, characterized in that: The top of the long frame (21) is provided with two or more limiting holes (234). An inverted L-shaped rod (235) is inserted into the limiting hole (234). A sleeve (236) is slidably sleeved on the outer wall of the inverted L-shaped rod (235). A feed trough (237) is fixedly connected to the outer wall of the sleeve (236). A locking knob (238) is threadedly connected to the outer wall of one side of the sleeve (236).