Escape-proof railing for ostrich breeding

By using rotating components and an adjustable structure, the escape-proof railing solves the problems of traditional railings not fitting the terrain and the ostrich's growth adjustment, achieving flexible adjustment of the railing and efficient protection.

CN224111911UActive Publication Date: 2026-04-14HENAN JINLU SPECIAL BREEDING CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-03
Publication Date
2026-04-14

AI Technical Summary

Technical Problem

Traditional ostrich farming escape-proof fences cannot be flexibly adjusted and are difficult to perfectly fit complex terrain. They have problems such as gaps between the fence and the ground or uneven transitions to bends. Furthermore, the fence height cannot be adjusted according to the ostrich's growth size, increasing the risk of escape and wasting resources.

Method used

An escape-proof railing was designed, which includes a rotating component and an adjustable handle. The angle and height of the railing can be adjusted by a worm gear and bevel gear structure. Combined with the use of casters and fixed posts, it can adapt to changes in terrain and adjust the width and height of the railing.

Benefits of technology

The system ensures a tight fit between the fence and the ground, reducing the risk of ostriches escaping, improving protection, and allowing for flexible expansion or reduction of the breeding space, thus increasing resource utilization efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an anti-escape handrail for ostrich breeding, and aims to solve the problem that the risk that ostriches escape from gaps is increased due to the fact that an existing anti-escape handrail is difficult to be perfectly attached to the terrain, a large gap exists between the handrail and the ground, or smooth transition cannot be achieved at a bend. The handrail comprises a first supporting rod, a connecting block, a rotating rod, a rotating assembly and the like, a first adjusting handle is rotated to drive a worm to rotate, the worm rotates to drive a worm wheel to rotate, the worm wheel rotates to drive the rotating rod to rotate, and the rotating rod rotates to drive a rotating frame to rotate; the rotating frame rotates to drive the third supporting rod to rotate, the angle of the third supporting rod can be adjusted according to the terrain change, it is guaranteed that the distance between the handrail and the ground is always kept within a proper range, the ostriches are prevented from getting out of the lower portion of the handrail, and the overall protection effect can be guaranteed.
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Description

Technical Field

[0001] This utility model relates to the field of ostrich farming, and in particular to an escape-proof fence for ostrich farming. Background Technology

[0002] Traditional ostrich farm escape-proof fences only have the basic function of preventing ostriches from escaping. While they can prevent ostriches from escaping to a certain extent, they also have many limitations. First, the terrain of farm sites is often complex and diverse, with slopes, bends, or irregular shapes. Escape-proof fences are difficult to fit perfectly with the terrain, resulting in large gaps between the fences and the ground, or inability to smoothly transition at bends, increasing the risk of ostriches escaping through the gaps.

[0003] Secondly, when it is necessary to expand the scale of breeding, the fences cannot flexibly expand the breeding space, and the fences need to be rebuilt, which increases costs and workload. If the scale of breeding needs to be reduced, the fences cannot reduce the breeding area, which will increase the idle space and is not conducive to the efficient use of breeding resources.

[0004] Furthermore, the fence height cannot be adjusted according to the size of the ostrich as it grows. Ostrich chicks are small, and a low fence height is sufficient to prevent them from escaping. However, as ostriches grow rapidly, the originally suitable fence height can cause them to escape, increasing the safety risks in the breeding process.

[0005] In summary, existing ostrich farm escape-prevention fences have shortcomings in terms of adjustability and telescopic capability, failing to meet the needs of preventing ostriches from escaping. Therefore, developing an escape-prevention fence for ostrich farms that can flexibly adjust to changes in terrain, closely conform to the ground and various terrain features, effectively avoiding large gaps between the fence and the ground or inability to smoothly transition at bends, and minimizing the possibility of ostriches escaping through gaps or weak points, is of significant practical importance. Utility Model Content

[0006] To overcome the technical challenges of complex and diverse terrain in ostrich farms, which may include slopes, bends, or irregular shapes, and the difficulty in perfectly conforming escape-proof fences to the terrain, resulting in large gaps between the fences and the ground, or inconsistencies in the transition at bends, thus increasing the risk of ostriches escaping through these gaps.

[0007] The technical solution of this utility model is as follows: an escape-proof fence for ostrich farming, including a first support rod, a connecting block, and a rotating assembly. The rotating assembly is provided on the outer side of the first support rod, and the connecting block is provided on the outer side of the first support rod. A groove is provided inside the connecting block, and a first adjusting handle is provided on the outer side of the connecting block. A worm gear is provided at the output end of the first adjusting handle, and a worm wheel is provided inside the groove. The worm wheel is connected to the connecting block through a rotating shaft. A rotating rod is provided above the worm wheel, and a rotating frame is fixedly connected above the rotating rod. A third support rod is fixedly connected to one side of the rotating frame.

[0008] Preferably, a connecting plate is provided on one side of the first support rod, and a first fixing rod is provided above the connecting plate. Multiple sets of the first fixing rods are provided, and a first sliding rod is provided inside the first fixing rod.

[0009] Preferably, the first support rod has a groove inside, a second adjusting handle is provided on the outside of the first support rod, a first bevel gear is provided at the output end of the second adjusting handle, a second bevel gear is provided inside the groove, a first threaded rod is provided above the second bevel gear, a first sliding plate is provided above the first threaded rod, and the first sliding plate is fixedly connected to the first sliding rod.

[0010] Preferably, the connecting plate has a groove inside, and a movable plate is arranged inside the groove. The connecting plate and the movable plate have through holes above them. Multiple sets of through holes are provided, and fixing bolts are arranged inside the through holes. A second fixing rod is arranged above the movable plate. Multiple sets of second fixing rods are provided, and a second sliding rod is arranged inside the second fixing rod.

[0011] Preferably, a second support rod is provided on one side of the movable plate, a third adjusting handle is provided on the outer side of the second support rod, a fourth bevel gear is provided at the output end of the third adjusting handle, a groove is provided inside the second support rod, a third bevel gear is provided inside the groove, a second threaded rod is provided above the third bevel gear, a second sliding plate is provided above the second threaded rod, and the second sliding plate is fixedly connected to the second sliding rod.

[0012] Preferably, casters are provided below the first support rod, the second support rod, and the third support rod; connecting rods are provided on both sides of the first support rod, the second support rod, and the third support rod; a third threaded rod is provided inside the connecting rod; an adjustment knob is provided above the third threaded rod; and a fixing post is provided below the third threaded rod.

[0013] Preferably, insect-proof lights are installed on the outer sides of the first and second support rods, and protective railings are installed above the first and second sliding rods.

[0014] Preferably, the first bevel gear meshes with the second bevel gear, the worm gear meshes with the worm, and the third bevel gear meshes with the fourth bevel gear.

[0015] The beneficial effects of this utility model: Through ingenious structural design, this utility model combines adjustment and telescopic effects. On the one hand, rotating the first adjustment handle drives the worm gear to rotate, which in turn drives the worm wheel to rotate, which in turn drives the rotating rod to rotate, which in turn drives the rotating frame to rotate, which in turn drives the third support rod to rotate. This allows the angle of the third support rod to be adjusted according to changes in terrain, ensuring that the distance between the railing and the ground is always kept within a suitable range. This prevents ostriches from crawling out from under the railing and ensures the overall protective effect.

[0016] On the other hand, rotating the second adjusting handle drives the first bevel gear to rotate, which in turn drives the second bevel gear to rotate, which in turn drives the first threaded rod to rotate, which in turn drives the first sliding plate to move linearly above the first threaded rod, causing the second sliding rod to move upward from the inside of the first fixed rod. This allows for height adjustment of the first fixed rod. Rotating the third adjusting handle drives the fourth bevel gear to rotate, which in turn drives the third bevel gear to rotate, which in turn drives the second threaded rod to rotate, which in turn drives the second sliding plate to move linearly above the second threaded rod. This allows the second sliding rod to move upward from the inside of the second fixed rod, allowing for adjustment of the second sliding rod according to the height adjusted by the first sliding rod, so that the heights of the first and second sliding rods are consistent. Attached Figure Description

[0017] Figure 1 The diagram shown is a first three-dimensional structural schematic of an ostrich breeding anti-escape fence according to the present invention.

[0018] Figure 2 The diagram shown is a second three-dimensional structural schematic of an ostrich breeding anti-escape fence according to the present invention.

[0019] Figure 3 The diagram shown is a third-dimensional structural schematic of an ostrich breeding anti-escape fence according to this utility model.

[0020] Figure 4 The diagram shown is a fourth-dimensional structural schematic of an ostrich breeding anti-escape fence according to this utility model.

[0021] Figure 5 The diagram shown is a partial three-dimensional structural schematic of an ostrich breeding anti-escape fence according to this utility model.

[0022] Explanation of reference numerals in the attached drawings: 1. First support rod; 2. Second support rod; 3. Third support rod; 4. Guardrail; 5. Insect-proof lamp; 101. Connecting block; 102. First adjusting handle; 103. Worm gear; 104. Rotating rod; 105. Rotating frame; 106. Worm; 201. Connecting plate; 202. First fixing rod; 203. First sliding rod; 301. Second adjusting handle; 302. First bevel gear; 303. Second bevel gear 304, First threaded rod; 305, First sliding plate; 401, Moving plate; 402, Fixing bolt; 403, Second fixing rod; 404, Second sliding rod; 501, Third adjusting handle; 502, Fourth bevel gear; 503, Third bevel gear; 504, Second sliding plate; 505, Second threaded rod; 601, Caster wheel; 602, Connecting rod; 603, Third threaded rod; 604, Adjusting knob; 605, Fixing column. Detailed Implementation

[0023] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0024] Please see Figures 1-5 This utility model provides an embodiment of an ostrich breeding escape prevention fence, including a first support rod 1, a connecting block 101, and a rotating assembly. The rotating assembly is located on the outer side of the first support rod 1, and the connecting block 101 is located on the outer side of the first support rod 1. A groove is formed inside the connecting block 101, and a first adjusting handle 102 is located on the outer side of the connecting block 101. A worm gear 106 is located at the output end of the first adjusting handle 102, and a worm wheel 103 is located inside the groove. The worm wheel 103 is connected to the connecting block 101 via a rotating shaft. A rotating rod 104 is located above the worm wheel 103, and a rotating mechanism is fixedly connected above the rotating rod 104. The rotating frame 105 has a third support rod 3 fixedly connected to one side. Rotating the first adjusting handle 102 drives the worm gear 106 to rotate, which in turn drives the worm wheel 103 to rotate, which in turn drives the rotating rod 104 to rotate, which in turn drives the rotating frame 105 to rotate, which in turn drives the third support rod 3 to rotate. This allows the angle of the third support rod 3 to be adjusted according to changes in terrain, ensuring that the distance between the railing and the ground is always within a suitable range. This prevents ostriches from crawling out from under the railing and ensures the overall protective effect.

[0025] Please see Figures 1-4In this embodiment, a connecting plate 201 is provided on one side of the first support rod 1, and a first fixing rod 202 is provided above the connecting plate 201. Multiple sets of the first fixing rod 202 are provided. A first sliding rod 203 is provided inside the first fixing rod 202. A groove is formed inside the first support rod 1. A second adjusting handle 301 is provided on the outside of the first support rod 1. A first bevel gear 302 is provided at the output end of the second adjusting handle 301. A second bevel gear 303 is provided inside the groove. A first threaded rod 304 is provided above the second bevel gear 303. A first sliding plate 305 is provided above the first threaded rod 304. The first sliding plate 305 is fixedly connected to the first sliding rod 203. Rotating the second adjusting handle 301 drives the first bevel gear 302 to rotate. 2. Rotation drives the second bevel gear 303 to rotate, which in turn drives the first threaded rod 304 to rotate. The rotation of the first threaded rod 304 drives the first sliding plate 305 to move linearly above the first threaded rod 304, causing the second sliding rod 404 to move upward from inside the first fixed rod 202. The height of the first fixed rod 202 can be adjusted. The connecting plate 201 has a groove inside, and a movable plate 401 is set inside the groove. Through holes are opened above the connecting plate 201 and the movable plate 401. Multiple sets of through holes are opened, and fixing bolts 402 are set inside the through holes. By adjusting the movable plate 401 to slide inside the connecting plate 201, the movable plate 401 is fixed to the connecting plate 201 by the fixing bolts 402. The width can be adjusted according to the size of the site.

[0026] Please see Figures 1-3In this embodiment, a second fixing rod 403 is provided above the movable plate 401. Multiple sets of the second fixing rod 403 are provided. A groove is formed inside the second fixing rod 403, and a second sliding rod 404 is provided inside the groove. A second support rod 2 is provided on one side of the movable plate 401. A third adjusting handle 501 is provided on the outer side of the second support rod 2. A fourth bevel gear 502 is provided at the output end of the third adjusting handle 501. A groove is formed inside the second support rod 2, and a third bevel gear 503 is provided inside the groove. A second threaded rod 505 is provided above the third bevel gear 503, and a second sliding rod 404 is provided above the second threaded rod 505. The movable plate 504, the second sliding plate 504, and the second sliding rod 404 are fixedly connected. Rotating the third adjusting handle 501 drives the fourth bevel gear 502 to rotate, which in turn drives the third bevel gear 503 to rotate, which in turn drives the second threaded rod 505 to rotate. The rotation of the second threaded rod 505 causes the second sliding plate 504 to move linearly above the second threaded rod 505, allowing the second sliding rod 404 to move upward from inside the second fixed rod 403. The second sliding rod 404 can be adjusted according to the upward adjustment height of the first sliding rod 203, so that the first sliding rod 203 and the second fixed rod 404 can move upward together. The sliding rods 404 are all at the same height. Universal wheels 601 are located below the first support rod 1, the second support rod 2, and the third support rod 3. Connecting rods 602 are located on both sides of the first support rod 1, the second support rod 2, and the third support rod 3. A third threaded rod 603 is located inside the connecting rod 602. An adjusting knob 604 is located above the third threaded rod 603, and a fixing post 605 is located below the third threaded rod 603. The universal wheels 601 allow for easy movement. When moved to the desired interception location, rotating the adjusting knob 604 moves the third threaded rod 603 downwards, causing the fixing post 605 to insert. Once embedded in the ground, it can be stably fixed and supported. When it needs to be moved, turn the adjustment knob 604 to move the third threaded rod 603 upward, so that the fixing column 605 can be pulled out of the ground and moved to a height higher than the universal wheel 601, so that it can be moved to the place where it is needed again. Insect-proof lamps 5 are provided on the outside of the first support rod 1 and the second support rod 2, and a protective fence 4 is provided above the first sliding rod 203 and the second sliding rod 404. The insect-proof lamps 5 can attract and kill pests in the breeding area, reducing the breeding of pests in the breeding area and reducing the damage caused by pests to ostriches. The protective fence 4 can prevent ostriches from escaping by jumping.

[0027] During operation, rotating the first adjusting handle 102 drives the worm gear 106 to rotate, which in turn drives the worm wheel 103 to rotate, which in turn drives the rotating rod 104 to rotate, which in turn drives the rotating frame 105 to rotate, which in turn drives the third support rod 3 to rotate. This allows the angle of the third support rod 3 to be adjusted according to changes in terrain, ensuring that the distance between the railing and the ground is always within a suitable range. This prevents ostriches from crawling out from under the railing and ensures the overall protective effect. Rotating the second adjusting handle 301 drives the first bevel gear 302 to rotate. The rotation of the first bevel gear 302 drives the rotation of the second bevel gear 303, which in turn drives the rotation of the first threaded rod 304. The rotation of the first threaded rod 304 causes the first sliding plate 305 to move linearly above it, allowing the second sliding rod 404 to move upwards from inside the first fixed rod 202. This allows for height adjustment of the first fixed rod 202. The sliding plate 401 slides within the connecting plate 201, and is fixed to the connecting plate 201 by the fixing bolt 402. The width can be adjusted according to the size of the space. Rotating the third adjusting handle 501... The rotation of the fourth bevel gear 502 drives the rotation of the third bevel gear 503, which in turn drives the rotation of the second threaded rod 505. The rotation of the second threaded rod 505 then causes the second sliding plate 504 to move linearly above it, allowing the second sliding rod 404 to move upwards from inside the second fixed rod 403. The second sliding rod 404 can be adjusted according to the upward adjustment height of the first sliding rod 203, ensuring that the heights of the first and second sliding rods are the same. The universal wheels 601 facilitate easy movement, allowing it to be moved to the desired interception position. When the ostrich is in a suitable location, rotating the adjustment knob 604 moves the third threaded rod 603 downwards. This downward movement of the third threaded rod 603 causes the fixing post 605 to insert into the ground, providing stable fixation and support. When the ostrich needs to be moved, rotating the adjustment knob 604 moves the third threaded rod 603 upwards, causing the fixing post 605 to be pulled out of the ground and moved to a height higher than the caster wheel 601. This allows the ostrich to be moved back to the desired location. The insect-repellent lamp 5 attracts and kills pests in the breeding area, reducing the breeding of pests and minimizing damage to the ostriches. The protective fence 4 prevents the ostriches from escaping by jumping.

[0028] Through the above steps, rotating the first adjusting handle 102 drives the worm gear 106 to rotate, which in turn drives the worm wheel 103 to rotate, which in turn drives the rotating rod 104 to rotate, which in turn drives the rotating frame 105 to rotate, which in turn drives the third support rod 3 to rotate. This allows the angle of the third support rod 3 to be adjusted according to changes in terrain, ensuring that the distance between the railing and the ground is always kept within a suitable range. This prevents ostriches from crawling out from under the railing and ensures the overall protective effect.

Claims

1. An escape-proof fence for ostrich farming, comprising a first support rod (1), characterized in that: It also includes a connecting block (101) and a rotating assembly. A rotating assembly is provided on the outside of the first support rod (1). A connecting block (101) is provided on the outside of the first support rod (1). A groove is provided inside the connecting block (101). A first adjusting handle (102) is provided on the outside of the connecting block (101). A worm gear (106) is provided at the output end of the first adjusting handle (102). A worm wheel (103) is provided inside the groove. The worm wheel (103) is connected to the connecting block (101) through a rotating shaft. A rotating rod (104) is provided above the worm wheel (103). A rotating frame (105) is fixedly connected above the rotating rod (104). A third support rod (3) is fixedly connected to one side of the rotating frame (105).

2. The ostrich breeding anti-escape fence according to claim 1, characterized in that: A connecting plate (201) is provided on one side of the first support rod (1), and a first fixing rod (202) is provided above the connecting plate (201). Multiple sets of the first fixing rod (202) are provided, and a first sliding rod (203) is provided inside the first fixing rod (202).

3. The ostrich breeding anti-escape fence according to claim 2, characterized in that: The first support rod (1) has a groove inside, and a second adjustment handle (301) is provided on the outside of the first support rod (1). A first bevel gear (302) is provided at the output end of the second adjustment handle (301). A second bevel gear (303) is provided inside the groove. A first threaded rod (304) is provided above the second bevel gear (303). A first sliding plate (305) is provided above the first threaded rod (304). The first sliding plate (305) is fixedly connected to the first sliding rod (203).

4. The ostrich breeding anti-escape fence according to claim 2, characterized in that: The connecting plate (201) has a groove inside, and a movable plate (401) is installed inside the groove. The connecting plate (201) and the movable plate (401) have through holes above them. Multiple sets of through holes are provided. Fixing bolts (402) are installed inside the through holes. A second fixing rod (403) is installed above the movable plate (401). Multiple sets of second fixing rods (403) are provided. The second fixing rod (403) has a groove inside, and a second sliding rod (404) is installed inside the groove.

5. The ostrich breeding anti-escape fence according to claim 4, characterized in that: A second support rod (2) is provided on one side of the movable plate (401), a third adjusting handle (501) is provided on the outside of the second support rod (2), a fourth bevel gear (502) is provided at the output end of the third adjusting handle (501), a groove is provided inside the second support rod (2), a third bevel gear (503) is provided inside the groove, a second threaded rod (505) is provided above the third bevel gear (503), a second sliding plate (504) is provided above the second threaded rod (505), and the second sliding plate (504) is fixedly connected to the second sliding rod (404).

6. The ostrich breeding anti-escape fence according to claim 1, characterized in that: A caster wheel (601) is provided below the first support rod (1), the second support rod (2) and the third support rod (3). A connecting rod (602) is provided on both sides of the first support rod (1), the second support rod (2) and the third support rod (3). A third threaded rod (603) is provided inside the connecting rod (602). An adjusting knob (604) is provided above the third threaded rod (603). A fixing post (605) is provided below the third threaded rod (603).

7. The ostrich breeding anti-escape fence according to claim 1, characterized in that: Insect-proof lamps (5) are installed on the outside of the first support rod (1) and the second support rod (2), and guardrails (4) are installed above the first sliding rod (203) and the second sliding rod (404).

8. The ostrich breeding anti-escape fence according to claim 5, characterized in that: The first bevel gear (302) meshes with the second bevel gear (303), the worm gear (103) meshes with the worm (106), and the third bevel gear (503) meshes with the fourth bevel gear (502).