Individual ground cage for breeding ducks
By designing a detachable ground cage and automatic material line system for breeding breeding, the existing cages are solved, and the effects of high cost, difficult to clean and no automatic material line are achieved, and the effects of convenient operation, cost reduction and labor efficiency are achieved.
Patent Information
- Application Number
- CN202421912405.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-08
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2034-08-08
AI Technical Summary
The existing ground cages for breeding breeding in ducks have high manufacturing and maintenance costs, difficulty in cleaning during the whole house, and design problems such as no adaptive automatic material lines, and the cages are difficult to disassemble, which increases the operating risk and cleaning difficulty.
An individual ground cage for breeding duck breeding was designed, including a cage body that was partly located in the rice husk ditch and partly located on the ditch wall. It adopts a pluggable or snap-disassembled partition design, and is equipped with an automatic material line system. The material line is lifted and lowered through the longitudinal channel to meet the needs of breeding ducks in different growth cycles.
It realizes convenient disassembly and clean the cage, reduces manufacturing and maintenance costs, improves operational safety and labor efficiency, adapts to the needs of automated feeding, and reduces manual operation.
Smart Images

Figure CN222852933U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of animal husbandry equipment, in particular to an individual ground cage for breeding ducks. Background Art
[0002] In order to meet the needs of individual determination in breeding, the current breeding ducks need to be transferred to cages for breeding during the egg-laying period. Cages are mainly divided into two types: ground cages and traditional cages. Most of the existing ground cages are difficult to disassemble, and after installation, bedding needs to be laid on the ground, which requires relatively higher cage partitions. It is difficult for operators to grasp the wing roots of breeding ducks when catching ducks, resulting in an increased probability of injuring ducks. At the same time, when catching ducks, they need to lean their weight on the partitions, which increases the manufacturing and maintenance costs of cages. When a batch of ducklings are eliminated, the structure of the cages and the rice husks laid increase the difficulty of cleaning, causing hidden dangers to epidemic prevention.
[0003] On the other hand, there is no cage design for breeding ground cages that is suitable for automatic feed lines. Most of them are equipped with feed troughs and storage boxes, and feed is added manually or semi-manually. This design is because the litter is difficult to remove regularly after it becomes wet, and the water line must be installed on the outside of the cage, which limits the feeding position. Therefore, the best location for the feed line should be between two vertical single-row cages. The support of the feed line needs to be considered, and the height adjustment problem also needs to be considered to prevent the ducks from being restricted in feeding after the height of the litter changes.
[0004] How to solve the above technical problems is the subject faced by the present utility model. Utility Model Content
[0005] In order to solve the shortcomings of the prior art, the utility model provides a detachable individual ground cage for breeding ducks, which is reasonably designed, safe and reliable, and solves the problems of high manufacturing and maintenance costs, difficulty in cleaning when tidying up the house, and the lack of cage design suitable for automatic feeding lines in the prior art individual ground cages for breeding ducks.
[0006] The technical solution adopted by the utility model to solve the technical problem is as follows: the utility model provides an individual ground cage for breeding ducks, comprising a cage body which is partially located in a rice husk trench and partially located on the trench wall;
[0007] The cage body includes a plurality of main transverse partition nets, each of which includes a transverse bar, both ends of which are fixedly arranged on the groove walls on both sides of the rice husk groove, the partition nets below the transverse bar of the main transverse partition net are located in the rice husk groove, and the partition nets above the transverse bar of the main transverse partition net are located above the groove wall;
[0008] A secondary transverse partition net parallel to the main transverse partition net is arranged between two adjacent main transverse partition nets;
[0009] The ends of two adjacent main transverse partition nets are connected with a guardrail net through a buckle, and the middle of the guardrail net is connected with the secondary transverse partition net through a buckle;
[0010] A bottom longitudinal partition net and a top longitudinal partition net are connected between adjacent transverse partition nets, two opposite top longitudinal partition nets are arranged above each bottom longitudinal partition net, and a lifting channel of the material line is arranged between the two opposite top longitudinal partition nets;
[0011] The waterline is located outside the guardrail net.
[0012] The cross bar is horizontally erected on the top surface of the ditch wall above the rice husk ditch, and both ends of the cross bar are fixedly connected to the top surface of the ditch wall through steel sheets and expansion screws;
[0013] Each of the cross bars is arranged in parallel.
[0014] A main bottom transverse partition net is provided at the bottom of the cross bar, and the main bottom transverse partition net is located in the rice husk groove, and the height of the main bottom transverse partition net is 2 / 3 of the depth of the rice husk groove;
[0015] A main top transverse partition net is fixedly arranged on the top of the cross bar, and a vertical longitudinal channel is opened in the middle of the main top transverse partition net.
[0016] The secondary transverse partition net comprises a secondary bottom transverse partition net and a secondary top transverse partition net, and the secondary transverse partition net comprises a secondary bottom transverse partition net and a secondary top transverse partition net, and the secondary transverse partition net has the same structure as the main bottom transverse partition net and the main top transverse partition net of the main transverse partition net, and the bottom surface of the secondary top transverse partition net of the secondary transverse partition net and the bottom surface of the cross bar are located in the same horizontal plane, that is, the bottom surface of the secondary top transverse partition net is located on the top surface of the groove wall.
[0017] The guardrail net vertically connects the main transverse partition net and the secondary transverse partition net, the two ends of the bottom surface of the guardrail net are located on the top surface of the same end of two adjacent cross bars, and the top surface of the guardrail net is flush with the top surfaces of the main transverse partition net and the secondary transverse partition net;
[0018] Both ends of the fence net are provided with a plurality of buckle sub-components, and the buckle sub-components are respectively connected to the buckle mother components on one side of two adjacent main horizontal partition nets;
[0019] A female part of a buckle is arranged on one side of the middle part of the guardrail net close to the secondary transverse partition net, and is connected to a female part of the buckle on one side of the secondary transverse partition net.
[0020] The bottom longitudinal partition net is vertically connected between the adjacent main bottom transverse partition net and the auxiliary bottom transverse partition net, and is movably connected by buckles;
[0021] The top surface and the bottom surface of the bottom longitudinal partition net are flush with the top surfaces and the bottom surfaces of the main bottom transverse partition net and the auxiliary bottom transverse partition net.
[0022] A pair of top longitudinal partition nets are connected between each adjacent main top transverse partition net and the auxiliary top transverse partition net;
[0023] The top longitudinal partition net is arranged perpendicular to the main top transverse partition net, and two ends of an opposite group of top longitudinal partition nets are respectively connected to the two side rod bodies of the longitudinal channel, and the lifting channel is between a pair of top longitudinal partition nets.
[0024] The water line is hung on one side of the cage, a plurality of drinking heads are arranged on the water line, and the water line is connected to a water trough with a V-shaped cross section parallel to the water line through a plurality of water line hangers;
[0025] The waterline hanger comprises an upper hanger whose top is hung on the waterline, the upper hanger is movably connected to a lower hanger through a plug joint parallel to the waterline, and the lower hanger is provided with a through hole penetrating the water tank.
[0026] The feed line is connected to the cage by a hand-cranked winch, and a plurality of feed discharge ports are provided on the feed line, each of which is connected to a feed discharger;
[0027] The material line is connected to a material trough below and parallel to the material line through a material line hanger. A through hole for hanging the material line and the material trough is provided in the middle of the material line hanger, and vertical sliding grooves are provided on both sides of the material line hanger. The sliding grooves are respectively slidably connected to the two side rods of the longitudinal channel on both sides.
[0028] Padding is laid in the rice husk groove, and the laying height of the padding is at the same horizontal height as the bottom surfaces of the main horizontal partition net and the auxiliary horizontal partition net.
[0029] The beneficial effects of the utility model are:
[0030] 1. Each partition can be removed by plugging or snapping, which is convenient for disassembling and reinstalling the cage. The cage can also be selectively disassembled to facilitate thorough cleaning of padding such as rice husks and cages. At the same time, the partition is composed of a square frame and welding wire, and the replacement cost is low;
[0031] 2. The cage body is located in the rice husk ditch. It is a sunken ground cage. The outer edge of the cage is lower than that of the traditional ground cage. The operator is relatively higher, which is more conducive to catching ducks safely.
[0032] 3. The feed is fed into the long flat feed trough through the auger feed line, which improves the efficiency of feeding, reduces manual operation and reduces the workload. The cage body adopts the method of feeding in the middle with drinking water on both sides. This design makes the ducks eat without space conflict when drinking water;
[0033] 4. The feed line is set in the middle of the overall frame and can supply two single cages at the same time. The height adjustment device and the bottom longitudinal partition net provide sufficient strength to support the stability of the feed line; and the height-adjustable feature of the feed line is suitable for breeder ducks in different growth cycles. After the bottom longitudinal partition net rises with the feed line, it can prevent ducks from jumping into the fence and meet the requirements of breeding. The single bottom longitudinal partition net directly below the feed line can provide a larger activity space for the breeder ducks;
[0034] 5. During specific use, plastic meshes can be tied on both sides of the bottom longitudinal partition net, the main bottom transverse partition net, and the auxiliary bottom transverse partition net to limit the position of the padding material. BRIEF DESCRIPTION OF THE DRAWINGS
[0035] Figure 1 It is a three-dimensional structural schematic diagram of the utility model.
[0036] Figure 2 It is the front view of the utility model.
[0037] Figure 3 It is a top view of the cage body of the utility model.
[0038] Figure 4 It is a three-dimensional structural schematic diagram of the cage body of the utility model.
[0039] Figure 5 It is a three-dimensional structural schematic diagram of the main horizontal partition net of the utility model.
[0040] Figure 6 It is a three-dimensional structural schematic diagram of the auxiliary horizontal partition net of the utility model.
[0041] Figure 7 It is a three-dimensional structural schematic diagram of the guardrail net of the utility model.
[0042] Figure 8 It is a three-dimensional structural schematic diagram of the waterline of the utility model.
[0043] Fig. 9 It is a three-dimensional structural schematic diagram of the material line of the utility model.
[0044] Among them, the accompanying drawings are marked as: 1, rice husk ditch; 101, ditch wall; 2, main horizontal partition; 201, cross bar; 202, main bottom horizontal partition; 203, main top horizontal partition; 204, longitudinal channel; 3, auxiliary horizontal partition; 301, auxiliary bottom horizontal partition; 302, auxiliary top horizontal partition; 4, guardrail net; 5, buckle; 6, water line; 601, drinking head; 602, water line hanger; 603, water trough; 7, material line; 701, feeder; 702, material line hanger; 703, material trough; 704, slide; 8, bottom longitudinal partition; 801, top longitudinal partition; 9, steel sheet. DETAILED DESCRIPTION
[0045] In order to clearly illustrate the technical features of this solution, this solution is described below through specific implementation methods.
[0046] See also Figures 1 to 9 As shown, the present embodiment is an individual ground cage for breeding ducks, including a cage body partially located in the rice husk trench 1 and partially located on the trench wall 101, the cage body includes a plurality of main cross partitions 2, the main cross partitions 2 include cross bars 201, both ends of the cross bars 201 are fixedly arranged on the trench walls 101 on both sides of the rice husk trench 1, the cross bars 201 are horizontally erected on the top surface of the trench wall 101 above the rice husk trench 1, and both ends of the cross bars 201 are fixedly connected to the top surface of the trench wall 101 by steel sheets 9 and expansion screws, and each cross bar 201 is arranged in parallel.
[0047] The partition net below the cross bar 201 of the main cross partition net 2 is located in the rice husk ditch 1, and the partition net above the cross bar 201 of the main cross partition net 2 is located above the ditch wall 101. A main bottom cross partition net 202 is arranged at the bottom of the cross bar 201. The main bottom cross partition net 202 is located in the rice husk ditch 1, and its height is 2 / 3 of the depth of the rice husk ditch 1. A main top cross partition net 203 is fixedly arranged on the top of the cross bar 201, and a vertical longitudinal channel 204 is opened in the middle of the main top cross partition net 203.
[0048] A secondary cross partition net 3 parallel to the main cross partition net 2 is arranged between two adjacent main cross partition nets 2, and the secondary cross partition net 3 includes a secondary bottom cross partition net 301 and a secondary top cross partition net 302. The secondary cross partition net 3 includes a secondary bottom cross partition net 301 and a secondary top cross partition net 302, which have the same structure as the main bottom cross partition net 202 and the main top cross partition net 203 of the main cross partition net 2, and the bottom surface of the secondary top cross partition net 302 of the secondary cross partition net 3 and the bottom surface of the cross bar 201 are located in the same horizontal plane, that is, the bottom surface of the secondary top cross partition net 302 is located on the top surface of the groove wall 101.
[0049] A guardrail net 4 is connected between the ends of two adjacent main cross partition nets 2 through a buckle 5, and a secondary cross partition net 3 is connected to the middle part of the guardrail net 4 through a buckle 5. The guardrail net 4 vertically connects the main cross partition net 2 and the secondary cross partition net 3. The two ends of the bottom surface of the guardrail net 4 are located on the top surface of the same end of two adjacent cross bars 201. The top surface of the guardrail net 4 is flush with the top surfaces of the main cross partition nets 2 and the secondary cross partition nets 3. Several sub-components of the buckle 5 are arranged at both ends of the guardrail net 4. The sub-components of the buckle 5 are respectively connected to the main components of the buckle 5 on one side of the two adjacent main cross partition nets 2. A main component of the buckle 5 is arranged on the side of the middle part of the guardrail net 4 close to the secondary cross partition net 3, and is connected to the sub-components of the buckle 5 on one side of the secondary cross partition net 3.
[0050] A bottom longitudinal partition net 8 and a top longitudinal partition net 801 are connected between adjacent transverse partition nets, and two opposite top longitudinal partition nets 801 are arranged above each bottom longitudinal partition net 8. A lifting channel of the material line 7 is provided between the two opposite top longitudinal partition nets 801. The bottom longitudinal partition net 8 is vertically connected between the adjacent main bottom transverse partition net 202 and the auxiliary bottom transverse partition net 301, and is movably connected through the buckle 5. The top and bottom surfaces of the bottom longitudinal partition net 8 are flush with the top and bottom surfaces of the main bottom transverse partition net 202 and the auxiliary bottom transverse partition net 301. A pair of top longitudinal partition nets 801 are connected between each adjacent main top transverse partition net 203 and the auxiliary top transverse partition net 302. The top longitudinal partition net 801 is arranged perpendicular to the main top transverse partition net 203, and the two ends of an opposite group of top longitudinal partition nets 801 are respectively connected to the two side rods of the longitudinal channel 204, and there is a lifting channel between the pair of top longitudinal partition nets 801.
[0051] The water line 6 is located outside the guardrail net 4, and the water line 6 is hung on one side of the cage. A plurality of drinking heads 601 are arranged on the water line 6, and the water line 6 is connected to a water trough 603 with a V-shaped cross-section parallel to the water line 6 through a plurality of water line hangers 602. The water line hanger 602 includes an upper hanger hung on the water line 6 at the top, and the upper hanger is movably connected to the lower hanger through a plug joint parallel to the water line 6, and the lower hanger is provided with a through hole that penetrates the water trough 603.
[0052] The material line 7 is suspended to the cage by a hand-cranked winch, and a plurality of discharge ports are provided on the material line 7, each of which is connected to a discharger 701. The material line 7 is connected to a material trough 703 below and parallel to the material line 7 through a material line hanger 702, and a through hole for hanging the material line 7 and the material trough 703 is provided in the middle of the material line hanger 702, and vertical slide grooves 704 are provided on both sides of the material line hanger 702, and the slide grooves 704 are slidably connected to the two side rods of the longitudinal channel 204 on both sides.
[0053] Padding is laid in the rice husk trench 1 , and the laying height of the padding is at the same level as the bottom surfaces of the main transverse partition net 2 and the auxiliary transverse partition net 3 .
[0054] Technical features not described in the present invention can be achieved through or by adopting existing technologies, and will not be elaborated here. Of course, the above description is not a limitation of the present invention, and the present invention is not limited to the above examples. Changes, modifications, additions or substitutions made by ordinary technicians in this technical field within the essential scope of the present invention should also fall within the scope of protection of the present invention.
Claims
1. An individual ground cage for breeding ducks, characterized in that: It comprises a cage body which is partially located in the rice husk groove (1) and partially located on the groove wall (101); The cage body comprises a plurality of main transverse partition nets (2), the main transverse partition nets (2) comprising a cross bar (201), both ends of the cross bar (201) being fixedly arranged on the groove walls (101) on both sides of the rice husk groove (1), the partition nets below the cross bar (201) of the main transverse partition net (2) being located in the rice husk groove (1), and the partition nets above the cross bar (201) of the main transverse partition net (2) being located above the groove wall (101); A secondary transverse partition net (3) parallel to the main transverse partition net (2) is arranged between two adjacent main transverse partition nets (2); A guardrail net (4) is connected between the ends of two adjacent main transverse partition nets (2) via a buckle (5), and the middle of the guardrail net (4) is connected to the secondary transverse partition net (3) via a buckle (5); A bottom longitudinal partition net (8) and a top longitudinal partition net (801) are connected between adjacent transverse partition nets, two opposite top longitudinal partition nets (801) are arranged above each bottom longitudinal partition net (8), and a lifting channel for the material line (7) is arranged between the two opposite top longitudinal partition nets (801); The waterline (6) is located outside the guardrail net (4).
2. The individual ground cage for breeding ducks according to claim 1, characterized in that: The cross bar (201) is horizontally erected on the top surface of the ditch wall (101) above the rice husk ditch (1), and both ends of the cross bar (201) are fixedly connected to the top surface of the ditch wall (101) through steel sheets (9) and expansion screws; Each of the cross bars (201) is arranged in parallel.
3. The individual ground cage for breeding ducks according to claim 1, characterized in that: A main bottom transverse partition net (202) is provided at the bottom of the cross bar (201); the main bottom transverse partition net (202) is located in the rice husk groove (1), and the height of the main bottom transverse partition net (202) is 2 / 3 of the depth of the rice husk groove (1); A main top transverse partition net (203) is fixedly arranged on the top of the transverse bar (201), and a vertical longitudinal channel (204) is opened in the middle of the main top transverse partition net (203).
4. The individual ground cage for breeding ducks according to claim 3, characterized in that: The secondary transverse partition net (3) comprises a secondary bottom transverse partition net (301) and a secondary top transverse partition net (302). The secondary transverse partition net (3) comprises a secondary bottom transverse partition net (301) and a secondary top transverse partition net (302). The secondary transverse partition net (3) has the same structure as the main bottom transverse partition net (202) and the main top transverse partition net (203) of the main transverse partition net (2). The bottom surface of the secondary top transverse partition net (302) of the secondary transverse partition net (3) and the bottom surface of the cross bar (201) are located on the same horizontal plane, that is, the bottom surface of the secondary top transverse partition net (302) is located on the top surface of the groove wall (101).
5. The individual ground cage for breeding ducks according to claim 1, characterized in that: The guardrail net (4) vertically connects the main transverse partition net (2) and the secondary transverse partition net (3), the two ends of the bottom surface of the guardrail net (4) are located on the top surface of the same end of two adjacent cross bars (201), and the top surface of the guardrail net (4) is flush with the top surfaces of the main transverse partition net (2) and the secondary transverse partition net (3); Both ends of the guardrail net (4) are provided with a plurality of sub-components of buckles (5), and the sub-components of the buckles (5) are respectively connected to the main buckle (5) components on one side of two adjacent main transverse partition nets (2); A mother part of a buckle (5) is provided on one side of the middle part of the fence net (4) close to the secondary transverse partition net (3), and is connected to a sub-part of the buckle (5) on one side of the secondary transverse partition net (3).
6. The individual floor cage for breeding ducks according to claim 4, characterized in that: The bottom longitudinal partition net (8) is vertically connected between the adjacent main bottom transverse partition net (202) and the auxiliary bottom transverse partition net (301), and is movably connected via a buckle (5); The top surface and the bottom surface of the bottom longitudinal partition net (8) are flush with the top surfaces and the bottom surfaces of the main bottom transverse partition net (202) and the auxiliary bottom transverse partition net (301).
7. The individual floor cage for breeding ducks according to claim 4, characterized in that: A pair of top longitudinal partition nets (801) are connected between each adjacent main top transverse partition net (203) and the auxiliary top transverse partition net (302); The top longitudinal partition net (801) is arranged perpendicular to the main top transverse partition net (203), and the two ends of an opposite group of top longitudinal partition nets (801) are respectively connected to the two side rod bodies of the longitudinal channel (204), and the lifting channel is between a pair of top longitudinal partition nets (801).
8. The individual floor cage for breeding ducks according to claim 1, characterized in that: The water line (6) is hung on one side of the cage, a plurality of drinking heads (601) are arranged on the water line (6), and the water line (6) is connected to a water trough (603) with a V-shaped cross section parallel to the water line (6) through a plurality of water line hangers (602); The waterline hanger (602) comprises an upper hanger whose top is hung on the waterline (6), the upper hanger is movably connected to a lower hanger via a plug connector parallel to the waterline (6), and the lower hanger is provided with a through hole penetrating the water tank (603).
9. The individual floor cage for breeding ducks according to claim 3, characterized in that: The feed line (7) is connected to the cage by a hand-cranked winch, and a plurality of feed openings are provided on the feed line (7), each of which is connected to a feeder (701); The material line (7) is connected to a material trough (703) below and parallel to the material line (7) through a material line hanger (702); a through hole for hanging the material line (7) and the material trough (703) is provided in the middle of the material line hanger (702); and vertical slide grooves (704) are provided on both sides of the material line hanger (702); the slide grooves (704) are respectively slidably connected to the two side rods of the longitudinal channel (204) on both sides.
10. The individual floor cage for breeding ducks according to claim 1, characterized in that: Padding is laid in the rice husk trench (1), and the laying height of the padding is at the same level as the bottom surfaces of the main transverse partition net (2) and the auxiliary transverse partition net (3).