CN219182373U - Horse animal try-on separation fence - Google Patents

Horse animal try-on separation fence Download PDF

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Publication number
CN219182373U
CN219182373U CN202320847520.0U CN202320847520U CN219182373U CN 219182373 U CN219182373 U CN 219182373U CN 202320847520 U CN202320847520 U CN 202320847520U CN 219182373 U CN219182373 U CN 219182373U
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fence
test
separation
animal
door
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CN202320847520.0U
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Inventor
吴海青
苏少锋
乔健敏
特日格勒
田婧
贾晓清
马跃军
孙培陪
白晋宇
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Inner Mongolia Academy of Agricultural and Animal Husbandry Sciences
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Inner Mongolia Academy of Agricultural and Animal Husbandry Sciences
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Abstract

The utility model discloses a separating fence for a equine animal test, which relates to the technical field of livestock breeding and comprises a to-be-detected female animal fence, wherein a feed trough and a water trough are arranged in the to-be-detected female animal fence; one side of the female animal ring to be detected is provided with a test case separation ring, a male animal case is arranged in the test case separation ring, a test case bait source is arranged in the male animal case, and the test case separation ring is communicated with the female animal ring to be detected through a first unidirectional separation door; one side of the test plot separating fence is provided with an oestrus female animal fence, and the test plot separating fence is communicated with the oestrus female animal fence through a second unidirectional separating door. According to the utility model, the feed and water are matched in the female animal ring fence to be detected, and the test condition bait source is arranged in the test condition separation ring fence, so that the female animals in estrus are separated by utilizing the characteristic that the female animals in estrus find male animals by themselves, and the labor intensity and the injury risk of personnel are reduced.

Description

Horse animal try-on separation fence
Technical Field
The utility model relates to the technical field of livestock breeding, in particular to a equine animal test condition separation column.
Background
In the breeding process of horses and donkeys, excellent varieties are required to be bred, large-scale farms are usually bred through artificial insemination technology, and in the artificial insemination process, oestrus female animals are required to be selected.
When the prior large-scale oestrus inspection is carried out on the female animals, all the female animals needing to be oestrus inspection are driven into a mating room for one-to-one inspection, and a breeder is required to drive and select each female animal to be inspected in the process, so that the workload of staff is obviously increased, and a plurality of staff are required to cooperate together for completion; there are also test sires placed in a herd to pick up oestrus sires, when oestrus sires are found, they catch up and climb across the sires, at this time breeder will drive them off the sires, catch them up for further inspection or breeding work, during which the breeder is tired and may be kicked or bumped, which is very dangerous, and at the same time dust in the colony during the catch up of the sires may affect the colony environment, and may also affect normal feeding or drinking activities of the non-oestrus sires.
Therefore, it is particularly important to develop a special safe equine animal test situation separation device.
Therefore, the utility model provides a equine animal test situation separation column.
Disclosure of Invention
The utility model aims to solve the defects in the prior art, and provides a equine animal test situation separation column.
In order to achieve the above purpose, the present utility model adopts the following technical scheme:
the separating fence comprises a to-be-detected female animal ring fence, wherein a feed trough and a water trough are arranged in the to-be-detected female animal ring fence; a test case separation fence is arranged on one side of the to-be-detected female animal fence, a public animal fence is arranged in the test case separation fence, a test case bait source is arranged in the public animal fence, and the test case separation fence is communicated with the to-be-detected female animal fence through a first unidirectional separation door; one side of the test plot separation fence is provided with an oestrus female animal fence, and the test plot separation fence is communicated with the oestrus female animal fence through a second unidirectional separation door.
Further, the first unidirectional separation door is identical with the second unidirectional separation door in structure, the unidirectional separation door comprises a door plate, an elastic bearing and a door frame, the two door plates are connected with the corresponding two sides of the door frame in a rotating mode through the elastic bearing, a limiting block is arranged on the door frame, and the unidirectional separation door is connected with a test case separation ring fence in a detachable mode.
Further, the first unidirectional separation door is opened from the female animal fence to be detected to the test-condition separation fence, and the second unidirectional separation door is opened from the test-condition separation fence to the oestrus female animal fence.
Further, the try-on bait source is try-on sires.
Further, the public stable is detachably connected in the test case separation ring.
Advantageous effects
Compared with the prior art, the utility model has the beneficial effects that: according to the utility model, the feed and water are arranged in the female animal ring to be detected, and the test condition bait source is arranged in the test condition separation ring, so that the female animals can be separated into the test condition separation ring by utilizing the characteristic that the female animals find male animals by themselves, the female animals which are not in the heat condition can be left in the female animal ring to be detected, and the labor intensity and the injury risk of operators are obviously reduced; by setting the opening direction of the first unidirectional separation door, the female animals in oestrus are prevented from returning to the female animal pens to be detected from the test situation separation pen; by setting the opening direction of the second unidirectional separation door, the oestrus female animals can be prevented from returning to the test-plot separation ring from the oestrus female animal ring, and the influence on the subsequent oestrus female animal separation work is avoided; through setting up rail and one-way separation door for detachable construction, can separate the quantity of female animal that awaits measuring as required and adjust the size of each rail and the quantity of one-way separation door.
Drawings
The accompanying drawings are included to provide a further understanding of the utility model and are incorporated in and constitute a part of this specification, illustrate the utility model and together with the embodiments of the utility model, serve to explain the utility model.
FIG. 1 is a schematic diagram of the overall structure of a equine animal try-on separation column provided by the utility model;
FIG. 2 is a top view of a one-way release door provided by the present utility model;
fig. 3 is a schematic diagram of the structure of the public stable provided by the utility model.
In the figure: 1. a female animal pen to be detected; 2. test plot separation ring fence; 3. oestrus female animal ring rail; 4. a feed trough; 5. a water tank; 6. a public stable; 7. a first one-way separation gate; 8. a second one-way separation gate; 9. a door panel; 10. a door frame; 11. a limiting block; 12. and (5) a fence.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments.
In the description of the present utility model, it should be understood that the terms "upper," "lower," "front," "rear," "left," "right," "top," "bottom," "inner," "outer," and the like indicate or are based on the orientation or positional relationship shown in the drawings, merely to facilitate description of the present utility model and to simplify the description, and do not indicate or imply that the devices or elements referred to must have a specific orientation, be configured and operated in a specific orientation, and thus should not be construed as limiting the present utility model.
Referring to fig. 1-3, a separating fence for testing the equine animal comprises a to-be-tested female animal fence 1, wherein a feed trough 4 and a water trough 5 are arranged in the to-be-tested female animal fence 1; one side of the female animal ring 1 to be detected is provided with a test case separation ring 2, a male animal column 6 is arranged in the test case separation ring 2, a test case bait source is arranged in the male animal column 6, and the test case separation ring 2 is communicated with the female animal ring 1 to be detected through a first unidirectional separation door 7; one side of the test-case separation fence 2 is provided with an oestrus female animal fence 3, and the test-case separation fence 2 is communicated with the oestrus female animal fence 3 through a second unidirectional separation door 8.
When separating oestrus female animals, an operator firstly places sufficient feed and water in a feed trough 4 and a water trough 5 in a female animal ring 1 to be detected respectively, and then places a oestrus bait source in a male animal ring 6; then an operator drives a plurality of female animals to be detected into the female animal guard 1 to be detected, under the attraction of the test condition bait source, the female animals with oestrus do not go to the feed trough 4 and the water tank 5, but actively go to the male animal guard 6, the female animals with oestrus enter the test condition separation guard 2 after passing through the first unidirectional separation gate 7, the female animals without oestrus are not affected by the test condition bait source, and the female animals without oestrus actively eat feed and drinking water, so that the female animals to be detected remain in the female animal guard 1; the operator drives the oestrus female animals entering the test situation separation fence 2 into the oestrus female animal fence 3 through the second unidirectional separation door 8, and drives the non-oestrus female animals left in the female animal fence 1 to be detected out through the entrance of the female animal fence 1 to be detected; the operator drives a plurality of next batches of to-be-detected female animals into the to-be-detected female animal ring 1 for separation, and the oestrus female animals can be separated from the to-be-detected female animals by repeating the operation.
Compared with the prior art, the utility model sets the feed and water in the female animal ring 1 to be detected and sets the test condition bait source in the test condition separating ring 2, so that the oestrus female animals can be separated into the test condition separating ring 2, and the non-oestrus female animals can be left in the female animal ring 1 to be detected; by providing the first unidirectional separation gate 7, it is possible to prevent a female animal in oestrus from returning from the test-action separation pen 2 to the female animal pen 1 to be inspected; by arranging the second unidirectional separation door 8, the oestrus female animals can be prevented from returning to the test-effect separation ring 2 from the oestrus female animal ring 3, and the influence on the subsequent oestrus female animal separation work is avoided; the characteristics of the male livestock are automatically searched by the oestrus female livestock, so that the oestrus female livestock are separated, and the labor intensity and the injury risk of personnel are obviously reduced.
In other preferred embodiments, the first unidirectional separation door 7 and the second unidirectional separation door 8 have the same structure, the unidirectional separation door comprises door panels 9, elastic bearings and a door frame 10, the two door panels 9 are rotatably connected with the corresponding two sides of the door frame 10 through the elastic bearings, a limiting block 11 is arranged on the door frame 10, and the unidirectional separation door is detachably connected with the test case separation ring fence 2. The elastic bearing is arranged, so that the door plate 9 can be restored to the closed state after being propped up by a female animal; by arranging the limiting block 11, the rotation angle range of the door plate 9 and the opening direction of the door plate 9 can be limited; the distance between the two door plates 9 is 30cm-40cm, and the optimal distance is 10cm less than the minimum chest width of the female animals; the first unidirectional separation door 7 is detachably connected with the fence 12 between the to-be-detected female animal fence 1 and the test animal fence 2, and the second unidirectional separation door 8 is detachably connected with the fence 12 between the test animal fence 2 and the oestrus female animal fence 3.
In other preferred embodiments, the first one-way separating gate 7 is opened from the test animal stall 1 to the test animal stall 2, and the second one-way separating gate 8 is opened from the test animal stall 2 to the oestrus animal stall 3. By setting the opening direction of the first unidirectional separation door 7, the female animals in oestrus are prevented from returning to the female animal pen 1 to be detected from the test situation separation pen 2; by setting the opening direction of the second unidirectional separation gate 8, it is possible to prevent the oestrus dam from returning from the oestrus dam 3 to the test pattern separation dam 2, avoiding the influence of the subsequent oestrus dam separation work.
In other preferred embodiments, the sire 6 is removably attached in the test case separation pen 2. The male livestock 6 is detachably arranged in the test situation separation ring 2, so that the male livestock 6 can be adjusted to a proper position, and the effect of attracting oestrus female animals is enhanced; the sire stall 6 can be replaced with a rope that ties the sire in the test case separation stall 2.
In other preferred embodiments, the pens 12 and one-way separator gates may be provided in a removable configuration, and the size of each pen and the number of one-way separator gates may be adjusted as desired to separate the number of female animals to be tested.
The foregoing is only a preferred embodiment of the present utility model, but the scope of the present utility model is not limited thereto, and any person skilled in the art, who is within the scope of the present utility model, should make equivalent substitutions or modifications according to the technical scheme of the present utility model and the inventive concept thereof, and should be covered by the scope of the present utility model.

Claims (5)

1. The separating fence for the test condition of the equine animals is characterized by comprising a to-be-detected female animal fence, wherein a feed trough and a water trough are arranged in the to-be-detected female animal fence; a test case separation fence is arranged on one side of the to-be-detected female animal fence, a public animal fence is arranged in the test case separation fence, a test case bait source is arranged in the public animal fence, and the test case separation fence is communicated with the to-be-detected female animal fence through a first unidirectional separation door; one side of the test plot separation fence is provided with an oestrus female animal fence, and the test plot separation fence is communicated with the oestrus female animal fence through a second unidirectional separation door.
2. The equine animal test situation separation column according to claim 1, wherein the first unidirectional separation door and the second unidirectional separation door have the same structure, the unidirectional separation door comprises a door plate, an elastic bearing and a door frame, the two door plates are rotatably connected with the corresponding two sides of the door frame through the elastic bearing, a limiting block is arranged on the door frame, and the unidirectional separation door is detachably connected with the test situation separation column.
3. The equine animal test pattern separator according to claim 1 wherein said first one-way separator gate is opened from the test pattern separator to the test pattern separator and said second one-way separator gate is opened from the test pattern separator to the oestrus mother pattern.
4. The equine animal test pattern separation column of claim 1, wherein said test pattern bait source is a test pattern sire.
5. A equine animal test situation separator according to claim 1, wherein said male animal stall is detachably connected in said test situation separator.
CN202320847520.0U 2023-04-17 2023-04-17 Horse animal try-on separation fence Active CN219182373U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320847520.0U CN219182373U (en) 2023-04-17 2023-04-17 Horse animal try-on separation fence

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320847520.0U CN219182373U (en) 2023-04-17 2023-04-17 Horse animal try-on separation fence

Publications (1)

Publication Number Publication Date
CN219182373U true CN219182373U (en) 2023-06-16

Family

ID=86702540

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320847520.0U Active CN219182373U (en) 2023-04-17 2023-04-17 Horse animal try-on separation fence

Country Status (1)

Country Link
CN (1) CN219182373U (en)

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