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CN117223638A - Full-automatic poultry breeding device - Google Patents

Full-automatic poultry breeding device Download PDF

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Publication number
CN117223638A
CN117223638A CN202311489402.8A CN202311489402A CN117223638A CN 117223638 A CN117223638 A CN 117223638A CN 202311489402 A CN202311489402 A CN 202311489402A CN 117223638 A CN117223638 A CN 117223638A
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CN
China
Prior art keywords
cage
poultry
cover plate
piece
cage body
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Granted
Application number
CN202311489402.8A
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Chinese (zh)
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CN117223638B (en
Inventor
杨春雷
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Shandong Fuhua Agricultural Machinery Equipment Co ltd
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Shandong Fuhua Agricultural Machinery Equipment Co ltd
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Priority to CN202311489402.8A priority Critical patent/CN117223638B/en
Publication of CN117223638A publication Critical patent/CN117223638A/en
Application granted granted Critical
Publication of CN117223638B publication Critical patent/CN117223638B/en
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Abstract

The application discloses a full-automatic poultry breeding device, which belongs to the field of animal husbandry, wherein the breeding device comprises a frame body, breeding cages, a driving piece and an induction piece, wherein a plurality of breeding cages are arranged on each supporting frame along the extending direction of the supporting frame, each breeding cage comprises a cage body and a cover plate arranged at the top of the cage body, the cover plate can slide relative to the cage body along the vertical direction, the breeding cage further comprises a plurality of partition plates which extend outwards from the cover plate, a moving gap is formed between the bottom of each partition plate and the bottom of the cage body, and the distance of the moving gap is not smaller than the maximum sliding distance of the cover plate; the driving piece is used for driving the cover plate to move; the induction piece is in signal connection with the driving piece and is arranged at the side part of the cage body; the poultry in the cage body can trigger the sensing piece, and if the triggering times of the sensing piece are greater than a preset triggering threshold value, the driving piece drives the cover plate to move towards the bottom of the breeding cage until the partition plate is in an isolation position. The space of the separated areas becomes smaller, and the situation that a plurality of poultry attack single poultry is avoided.

Description

Full-automatic poultry breeding device
Technical Field
The application belongs to the field of animal husbandry, and particularly relates to a full-automatic poultry farming device.
Background
Poultry is an artificially fed avian animal, mainly for obtaining meat, eggs and feathers thereof, and has other uses as well; typically chickens, ducks, geese, and the like, but also birds of other families such as turkeys, pigeons, quails, and various singers; poultry farming has a long history in China, and poultry farmed in China at present is still used as a main food source in daily life of people; when poultry are cultivated in a concentrated manner, a cultivation cage is generally adopted, so that the cultivation cost is reduced.
However, in the existing cultivation process, since the poultry is always in the cultivation cage when being cultivated, the volume of the poultry is gradually increased along with the continuous cultivation, and the whole size of the cultivation cage is not changed, when the volume of the poultry is large, the space between the poultry in the cultivation cage is correspondingly reduced, so that the situation of contact friction is easy to occur, the fight phenomenon is easy to occur, and the injury is easy to occur in the fight process, thereby affecting the growth of the poultry.
Disclosure of Invention
In order to overcome the defects, the application provides a full-automatic poultry farming device which can automatically treat fight phenomena occurring between poultry while raising the poultry.
The application is realized by the following technical scheme:
the full-automatic poultry breeding device comprises a frame body, a breeding cage, a driving piece and an induction piece, wherein the frame body comprises a plurality of supporting frames which are arranged along the horizontal direction, and the plurality of supporting frames are sequentially arranged along the vertical direction; each support frame is provided with a plurality of cultivation cages along the extending direction, each cultivation cage comprises a cage body and a cover plate arranged at the top of the cage body, the cover plate can slide relative to the cage body along the vertical direction, each cultivation cage further comprises a plurality of partition plates extending outwards from the cover plate, a moving gap is formed between the bottom of each partition plate and the bottom of the cage body, and the distance of the moving gap is not smaller than the maximum sliding distance of the cover plate; the driving piece is used for driving the cover plate to move; the sensing piece is in signal connection with the driving piece, the sensing piece is arranged on the side part of the cage body, and the distance between the sensing piece and the bottom of the cage body in the vertical direction is larger than the height of each poultry in the breeding cage; the poultry in the cage body can trigger the sensing piece, and if the triggering times of the sensing piece are greater than a preset triggering threshold value, the driving piece drives the cover plate to move towards the bottom of the breeding cage until the partition plate is in an isolation position. When the partition plates are positioned at the isolation positions, the cage body can be divided into areas with smaller space through the partition plates, the space of the divided areas is reduced, and the number of corresponding poultry is also reduced, so that the situation that a plurality of poultry attack single poultry can be avoided, and the attacked poultry is protected; meanwhile, the height of the cage body can be compressed due to the fact that the cover plate descends, so that the phenomenon that poultry is lifted up is avoided, and the attacked poultry can be protected by reducing the aggressiveness of the poultry.
Further, the breeding cage further comprises a flexible shielding piece arranged on the side part of the cage body, wherein the flexible shielding piece is provided with a first position abutting against the side part of the cage body and a second position positioned in the middle of the cage body; the flexible shielding piece moves from a first position to a second position in a state that the cover plate moves towards the bottom of the cage body. The flexible shielding piece moves from a first position to a second position in a state that the cover plate moves towards the bottom of the cage body; the flexible shielding piece can move as well, so the flexible shielding piece can also move under the drive of the driving piece, and the flexible shielding piece moves while the cover plate moves, so the driving piece can synchronously drive the flexible shielding piece to move when driving the cover body to move, wherein the moving path of the flexible shielding piece is from the side part of the cage body to the middle part of the cage body, so the cage body can be swept in the moving process, the upward-leaping poultry can be blocked, so that the poultry stays at the bottom side of the cage body, the aggressiveness of the poultry is reduced, and meanwhile, the flexible shielding piece is softer, and can not damage the poultry even when being contacted with the poultry in the moving process.
Further, the flexible shielding piece comprises first baffle rods arranged at intervals, second baffle rods positioned between adjacent first baffle rods and third baffle rods connected with the first baffle rods and the second baffle rods along the moving direction of the partition plates, the second baffle rods are positioned at the lower sides of the partition plates, and the first baffle rods and the partition plates are arranged in a staggered mode. Because the flexible shielding piece is arranged at the side part of the cage body when the flexible shielding piece is arranged and can move to the middle part of the cage body, when the partition board moves towards the bottom of the cage body, the partition board can be contacted with the flexible shielding piece, the part contacted with the partition board is a second gear rod, when the second gear rod is connected with the first gear rod, the connection is realized through a third gear rod, and the connection direction is the movement direction of the partition board, so that the partition board can drive the second gear rod to synchronously move when moving, and the change of the position of the second gear rod is realized through the expansion and contraction of the third gear rod, so that the partition board can be ensured to smoothly move to an isolation position.
Further, the flexible shielding piece is positioned at the lower side of the sensing piece, and the distance between the flexible shielding piece and the bottom of the cage body in the vertical direction is larger than the height of each poultry in the breeding cage. The flexible shielding piece can block the poultry and prevent the poultry from being lifted up, so that the continuous triggering of the sensing piece by the poultry can be avoided, and meanwhile, the height of the flexible shielding piece is higher than that of the poultry, so that the flexible shielding piece can not limit the movement of the poultry after moving to the middle part of the cage body.
Further, the breeding device further comprises a breeding piece, wherein the breeding piece comprises a first feeding trough arranged on the cage body and a second feeding trough arranged at each partition plate. The raising piece is for placing the region of fodder and water source, through being provided with first manger and second manger respectively in cage department and baffle department for the baffle is when not triggered the removal, and when the baffle removed to the isolation position, because the baffle carries out the space further restriction, consequently the rethread sets up the second manger, makes the poultry that can't remove first manger region can be wiped the department by the second fodder and realize eating of fodder, thereby avoid the poultry because hunger deepen the aggressiveness of poultry.
Further, the feeding member further comprises a communicating pipe communicating the first feeding trough and the second feeding trough, the cover plate is located at the top of the cage body, the second feeding trough is located at the upper side of the first feeding trough, and the partition plate is located at the lower side of the first feeding trough when moving to the isolation position. Because the second manger is located the baffle department, and the baffle is in higher region under the normality, therefore the baffle is when not being in the isolation position, the height of second manger can also be higher relatively, consequently, the second manger can not be in the user state when the fight phenomenon does not appear, and in the raising process of poultry, the situation that the fight appears is also not general, consequently, in order to avoid appearing the fodder long-term piling up in the second manger, realize the intercommunication with first manger and second manger through communicating pipe, when the baffle is in higher position under the normality, the height of second manger is higher than the height of first manger at this moment, the fodder in the second manger then can be moved to in the first manger along communicating pipe, thereby avoid the fodder piling up in the second manger, and when the baffle is in the isolation position, then the fodder in the first manger can be located the below, then the fodder in the first manger can be moved to the second manger through communicating pipe, thereby realize the automatic fodder adding to the second manger under the condition that need not manage the second manger.
Further, the communicating pipe comprises a first connecting pipe communicated with the first feeding trough, a second connecting pipe communicated with the second feeding trough and a third connecting pipe communicated with the first connecting pipe and the second connecting pipe, and the third connecting pipe can slide along the first connecting pipe and/or the second connecting pipe. Because the communicating pipe is used for communicating the first manger and the second manger, and the position of the second manger that is located baffle department also can change along with the removal of baffle, consequently through setting up the third connecting pipe, and the third connecting pipe can slide in first connecting pipe and/or second connecting pipe department to when the position of second manger changes, ensure through the slip of third connecting pipe that communicating pipe can not hinder the normal removal of baffle.
Further, a plurality of through holes are formed at the bottom of the support frame. Through the through holes, the cage body is of an unsealed structure, so that ventilation inside the cage body is facilitated, the environment is in a more comfortable state when poultry is raised, and the growth of poultry is facilitated.
Further, the cultivation cage further comprises a recovery piece arranged on the lower side of the supporting frame. The recovery piece is located the support frame downside, and the support frame department has seted up the through-hole, so excrement and impurity etc. that the poultry produced in the raising process can all fall into in the recovery piece through the through-hole to be convenient for whole recovery processing.
Further, the moving speed of the cover plate is less than 0.03m/s. The cover plate can also drive the partition plate to move in the moving process, so that the partition plate reaches the isolation position, namely, the partition plate is used for separating the poultry, so that the number of the poultry on one side of the partition plate is reduced, the moving speed of the cover plate is relatively low, reaction time is reserved for the movement of the poultry in the moving process of the cover plate, and the situation that the partition plate is pressed down to the poultry is avoided.
Drawings
FIG. 1 is a schematic view illustrating the construction of an exemplary embodiment of a farming apparatus according to the present application;
FIG. 2 is a schematic view illustrating the construction of an exemplary embodiment of a cage according to the present application;
FIG. 3 is a schematic view illustrating the position of an exemplary embodiment of a separator plate according to the present application;
fig. 4 is a schematic view illustrating the position of another exemplary embodiment of the separator according to the present application.
Reference numerals:
1. the flexible shielding piece comprises a supporting frame, 21, a cage body, 22, a cover plate, 23, a partition plate, 24, a flexible shielding piece, 25, a recycling piece, 3, a sensing piece, 41, a first feeding trough, 42 and a second feeding trough.
Detailed Description
The following description of the embodiments of the present application 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 application, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the application without making any inventive effort, are intended to be within the scope of the application.
It should be noted that, in the embodiments of the present application, terms such as left, right, up, down, front, and back are merely relative terms or references to a normal use state of a product, i.e. a traveling direction of the product, and should not be construed as limiting.
In addition, the dynamic terms such as "relative movement" in the embodiments of the present application include not only a change in position but also a movement in which a state is changed without a relative change in position such as rotation or rolling.
Finally, it is noted that when an element is referred to as being "on" or "disposed on" another element, it can be on the other element or intervening elements may also be present. When an element is referred to as being "connected to" another element, it can be directly connected to the other element or intervening elements may also be present.
The full-automatic poultry farming device as shown in fig. 1 to 4 comprises a frame body, a farming cage, a driving part and a sensing part 3, wherein the frame body comprises a plurality of support frames 1 arranged along the horizontal direction, and the plurality of support frames 1 are sequentially arranged along the vertical direction; in the application, as the support frames 1 are provided with a plurality of cultivation cages along the extending direction, the support frames 1 can bear the plurality of cultivation cages, and poultry can be cultivated in the cultivation cages, wherein the poultry is an animal artificially cultivated, such as chickens, ducks, geese and the like, and the following is a detailed explanation, in the application, as the support frames 1 are provided with a plurality of support frames, the support frames 1 are provided with the plurality of cultivation cages, thereby realizing the full utilization of space, the poultry can be cultivated in the cultivation cages in the cultivation process, and in order to improve the economic benefit, a plurality of poultry can be cultivated in one cultivation cage, thereby fully utilizing the space in the cultivation cages, and the body type of the poultry can be gradually enlarged in the cultivation process, the space occupied by the individual birds in the cage is increased, and accordingly, the space allocated by individual birds is reduced, which also correspondingly reduces the amount of movement of the birds in the cage, thereby facilitating the weight gain of the birds, but for the birds, when the body size is increased, the space is correspondingly reduced, so that the birds are more likely to contact each other, friction is likely to occur between the birds, struggling is likely to occur between the birds, injury is unavoidable during struggling, the growth of the birds is affected, and due to the characteristics of the birds, a plurality of single attacks occur during struggling, resulting in serious single attack.
In the application, the breeding cage comprises a cage body 21 and a cover plate 22 arranged at the top of the cage body 21, wherein the cover plate 22 can slide relative to the cage body 21 along the vertical direction, the breeding cage also comprises a plurality of baffle plates 23 which extend outwards from the cover plate 22, a moving gap is formed between the bottom of the baffle plates 23 and the bottom of the cage body 21, and the distance of the moving gap is not smaller than the maximum sliding distance of the cover plate 22; the driving piece is used for driving the cover plate 22 to move; the induction piece 3 is in signal connection with the driving piece, the induction piece 3 is arranged at the side part of the cage body 21, and the distance between the induction piece 3 and the bottom of the cage body 21 in the vertical direction is larger than the height of each poultry in the breeding cage; wherein, the poultry in the cage 21 can trigger the sensing piece 3, if the triggering times of the sensing piece 3 is larger than the preset triggering threshold value, the driving piece drives the cover plate 22 to move towards the bottom of the breeding cage until the partition plate 23 is at the isolation position; since the poultry is raised in the cage 21, in order to avoid the situation that the moving range of the poultry is too small due to the narrow space, the height of the cage 21 is higher than the height of the poultry, but the phenomenon that the poultry rises in the fight process can occur, the sensing piece 3 is triggered at this time, wherein the preset triggering threshold value is set to be a value set in advance, for example, three times, when the number of times the poultry triggers the sensing piece 3 is greater than three times, the fight among the poultry is more intense, the situation that the poultry is easy to hurt occurs at this time, the sensing piece 3 transmits the information to the driving piece, at this time, the driving piece drives the cover plate 22 to move, and since the baffle plate 23 is positioned at the cover plate 22, the baffle plate 23 can also move synchronously in the moving process of the cover plate 22, namely, the baffle plate 23 can move towards the bottom of the cage 21, and when the baffle plate 23 is positioned at the isolation position, the cage 21 can be separated into a region with small space, and the separated region space is reduced, so that the corresponding poultry quantity can also be reduced, the situation that a plurality of poultry attack on the poultry monomers can be avoided, and the poultry is protected; meanwhile, due to the fact that the cover plate 22 descends, the height of the cage body 21 is compressed, the phenomenon that birds are lifted is avoided, and the attacked birds can be protected by reducing the aggressiveness of the birds.
Preferably, the movement speed of the cover plate 22 is less than 0.03m/s; since the cover 22 also moves the partition 23 during the movement process, so that the partition 23 reaches the isolation position, that is, the partition 23 is used to separate the poultry from each other, so as to reduce the number of the poultry on one side of the partition 23, the movement speed of the cover 22 is relatively slow, so that a reaction time is left for the movement of the poultry during the movement process of the cover 22, and the situation that the partition 23 is pressed down to the poultry is avoided.
In the present application, the culture cage further comprises a flexible shielding member 24 arranged at the side part of the cage body 21, wherein the flexible shielding member 24 has a first position abutting against the side part of the cage body 21 and a second position positioned at the middle part of the cage body 21; the flexible shutter 24 moves from the first position to the second position in a state in which the cover 22 moves toward the bottom of the cage 21; the flexible shielding piece 24 can move as well, so the flexible shielding piece 24 can also move under the drive of the driving piece, and the flexible shielding piece 24 moves while the cover plate 22 moves, so the driving piece can synchronously drive the flexible shielding piece 24 to move when driving the cover body to move, wherein the moving path of the flexible shielding piece 24 is from the side part of the cage body 21 to the middle part of the cage body 21, so the cage body 21 can be swept in the moving process, the upward-leaping poultry can be blocked, so that the poultry stays at the bottom side of the cage body 21, the aggressiveness of the poultry is reduced, and meanwhile, the flexible shielding piece 24 is softer, so the contact with the poultry in the moving process can not cause damage to the poultry.
As one embodiment of the present application, the flexible shielding member includes first bars arranged at intervals, second bars positioned between adjacent first bars, and third bars connecting the first bars and the second bars along the moving direction of the partitions 23, the second bars being positioned at the lower sides of the partitions 23, the first bars being staggered with the partitions 23; because the flexible shielding piece 24 is arranged at the side part of the cage body 21 and can move to the middle part of the cage body 21 when being arranged, when the partition board 23 moves towards the bottom of the cage body 21, the flexible shielding piece 24 is contacted, the part contacted with the partition board 23 is a second gear rod, when the second gear rod is connected with the first gear rod, the connection is realized through a third gear rod, and the connection direction is the moving direction of the partition board 23, therefore, the partition board 23 can drive the second gear rod to synchronously move when moving, and the position change of the second gear rod is realized through the expansion and contraction of the third gear rod, so that the partition board 23 can be ensured to smoothly move to the isolation position.
Preferably, the flexible shielding member 24 is positioned at the lower side of the sensing member 3, and the distance between the flexible shielding member 24 and the bottom of the cage body 21 in the vertical direction is larger than the height of each poultry in the breeding cage; the flexible shielding member 24 can block the poultry and prevent the poultry from being lifted up, so that the sensing member 3 can be prevented from being continuously triggered by the poultry, and meanwhile, the height of the flexible shielding member 24 is higher than that of the poultry, so that the flexible shielding member 24 can not limit the movement of the poultry after moving to the middle part of the cage body 21.
In the present application, the cultivation apparatus further comprises a feeding member including a first feeding trough 41 provided to the cage 21 and a second feeding trough 42 provided at each partition 23; the raising piece is for placing the region of fodder and water source, through being provided with first manger 41 and second manger 42 respectively at cage 21 and baffle 23 for when baffle 23 is not triggered the removal, the fodder in first manger 41 can be eaten to the poultry in the cage 21, and when baffle 23 moved to the isolation position, because baffle 23 carries out the space further restriction, consequently the rethread sets up second manger 42, make the poultry that can't remove first manger 41 regional can realize the eating of fodder by second manger 42 department, thereby avoid the poultry to deepen the aggressiveness of poultry because of hunger.
As an embodiment of the present application, the feeder further comprises a communicating pipe communicating the first feed trough 41 and the second feed trough 42, wherein the cover 22 is positioned at the top of the cage 21, the second feed trough 42 is positioned at the upper side of the first feed trough 41, and the second feed trough 42 is positioned at the lower side of the first feed trough 41 in a state that the partition 23 is moved to the isolation position; since the second feed trough 42 is located at the partition 23 and the partition 23 is located in a higher area in the normal state, when the partition 23 is not located at the isolation position, the height of the second feed trough 42 is relatively higher, so that the second feed trough 42 is not in use when no fight occurs, and when the partition 23 is located at the isolation position, the fight occurs under the first feed trough 41, so that the first feed trough 41 and the second feed trough 42 are communicated through the communicating pipe in order to avoid long-term accumulation of feed in the second feed trough 42, when the partition 23 is located at the higher position in the normal state, the height of the second feed trough 42 is higher than the height of the first feed trough 41, and the feed in the second feed trough 42 moves into the first feed trough 41 along the communicating pipe, so that the accumulation of feed in the second feed trough 42 is avoided, and when the partition 23 is located at the isolation position, the second feed trough 42 is located under the first feed trough 41, the feed in the first feed trough 42 moves into the second feed trough 42, so that the automatic feed feeding of the second feed trough 42 is not required.
Preferably, the communicating tube includes a first connecting tube communicating with the first feed trough 41, a second connecting tube communicating with the second feed trough 42, and a third connecting tube communicating the first connecting tube and the second connecting tube, the third connecting tube being slidable along the first connecting tube and/or the second connecting tube; since the communicating pipe is used for communicating the first feed trough 41 and the second feed trough 42, and the position of the second feed trough 42 at the partition 23 is also changed along with the movement of the partition 23, by providing the third connecting pipe, the third connecting pipe can slide at the first connecting pipe and/or the second connecting pipe, so that when the position of the second feed trough 42 is changed, the communicating pipe is ensured not to obstruct the normal movement of the partition 23 by the sliding of the third connecting pipe.
It will be appreciated that since the first feed trough 41 is disposed outside the cage 21 and the second feed trough 42 is disposed inside the cage 21, the communicating pipe will correspondingly pass through the cage 21 when disposed, and the cage 21 has a slit, so that the communicating pipe can directly pass through the slit without affecting the structure of the cage.
In the present application, a plurality of through holes are formed through the bottom of the support frame 1; through the arrangement of the through holes, the cage body 21 is of an unsealed structure, so that ventilation inside the cage body 21 is facilitated, the environment is in a more comfortable state when poultry are raised, and the growth of the poultry is facilitated.
In the application, the breeding cage also comprises a recovery piece 25 arranged at the lower side of the supporting frame 1; the recovery piece 25 is located the support frame 1 downside, and the support frame 1 department has seted up the through-hole, therefore excrement and impurity etc. that the poultry produced in the raising process can all fall into in the recovery piece 25 through the through-hole to be convenient for whole recovery processing.
The foregoing is merely exemplary of the present application and is not intended to limit the present application. Various modifications and variations of the present application will be apparent to those skilled in the art. Any modification, equivalent replacement, improvement, etc. which come within the spirit and principles of the application are to be included in the scope of the claims of the present application.

Claims (10)

1. A fully automatic poultry farming device, characterized in that the farming device comprises:
the frame body comprises a plurality of support frames arranged along the horizontal direction, and the plurality of support frames are sequentially arranged along the vertical direction;
the cultivation cage comprises a cage body and a cover plate arranged at the top of the cage body, the cover plate can slide relative to the cage body along the vertical direction, the cultivation cage further comprises a plurality of partition plates extending outwards from the cover plate, a moving gap is formed between the bottom of the partition plates and the bottom of the cage body, and the distance of the moving gap is not smaller than the maximum sliding distance of the cover plate;
the driving piece is used for driving the cover plate to move;
the sensing piece is in signal connection with the driving piece, is arranged at the side part of the cage body, and is greater than the height of each poultry in the breeding cage in the vertical direction;
the poultry in the cage body can trigger the sensing piece, if the triggering times of the sensing piece are larger than a preset triggering threshold value, the driving piece drives the cover plate to move towards the bottom of the breeding cage until the partition plate is in an isolation position.
2. The fully automatic poultry farming apparatus of claim 1, wherein the farming cage further comprises a flexible shield disposed on a side of the cage, the flexible shield having a first position abutting the side of the cage and a second position in the middle of the cage; the flexible shielding piece moves from the first position to the second position in a state that the cover plate moves towards the bottom of the cage body.
3. The fully automatic poultry farming apparatus according to claim 2, wherein the flexible shielding member includes first bars arranged at intervals, second bars positioned between adjacent first bars, and third bars connecting the first bars and the second bars in a moving direction of the partition plates, the second bars being positioned at lower sides of the partition plates, and the first bars being staggered with the partition plates.
4. A fully automatic poultry farming apparatus according to claim 2, wherein the flexible shield is located below the sensing member and is spaced vertically from the bottom of the cage by a distance greater than the height of each individual poultry within the farming cage.
5. The fully automatic poultry farming apparatus of claim 1, further comprising a feeder comprising a first trough disposed in the cage and a second trough disposed at each of the baffles.
6. The fully automatic poultry farming apparatus according to claim 5, wherein said feeder further comprises a communication pipe communicating said first feed trough and said second feed trough, said cover plate being positioned on said top of said cage, said second feed trough being positioned on said upper side of said first feed trough, said partition being positioned on said lower side of said first feed trough in a state in which said partition is moved to said isolation position.
7. The fully automatic poultry farming apparatus of claim 6 wherein the communication tube comprises a first tube in communication with the first feed trough, a second tube in communication with the second feed trough, and a third tube in communication with the first and second tubes, the third tube being slidable along the first and/or second tubes.
8. The fully automatic poultry farming apparatus of claim 1, wherein the bottom of the support frame has a plurality of through holes formed therethrough.
9. The fully automatic poultry farming apparatus of claim 8, wherein the farming cage further comprises a recovery member disposed on the underside of the support frame.
10. A fully automated poultry farming apparatus according to claim 1, wherein the movement speed of the cover plate is less than 0.03m/s.
CN202311489402.8A 2023-11-10 2023-11-10 Full-automatic poultry breeding device Active CN117223638B (en)

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Application Number Priority Date Filing Date Title
CN202311489402.8A CN117223638B (en) 2023-11-10 2023-11-10 Full-automatic poultry breeding device

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Application Number Priority Date Filing Date Title
CN202311489402.8A CN117223638B (en) 2023-11-10 2023-11-10 Full-automatic poultry breeding device

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CN117223638A true CN117223638A (en) 2023-12-15
CN117223638B CN117223638B (en) 2024-07-12

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US4222348A (en) * 1979-01-25 1980-09-16 Diamond International Corporation Starter-grower cage
DE202009005529U1 (en) * 2009-04-11 2010-09-02 Josef Kühlmann Metallbaugesellschaft mbH und Co KG poultry cage
CN204994424U (en) * 2015-10-08 2016-01-27 乐山师范学院 Poultry cage convenient to it is clean
CN212184629U (en) * 2020-05-06 2020-12-22 四川农业大学 An experimental animal cage
CN214546532U (en) * 2021-03-31 2021-11-02 青岛日联华波科技有限公司 Three-dimensional broiler chicken cage
CN215012610U (en) * 2021-06-03 2021-12-07 芜湖凤如意生态农业有限公司 Poultry is bred with multilayer formula cage of brooding
CN114651746A (en) * 2022-03-22 2022-06-24 山西省畜牧兽医学校 Intelligent automatic feeding device of accurate accuse material

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4222348A (en) * 1979-01-25 1980-09-16 Diamond International Corporation Starter-grower cage
DE202009005529U1 (en) * 2009-04-11 2010-09-02 Josef Kühlmann Metallbaugesellschaft mbH und Co KG poultry cage
CN204994424U (en) * 2015-10-08 2016-01-27 乐山师范学院 Poultry cage convenient to it is clean
CN212184629U (en) * 2020-05-06 2020-12-22 四川农业大学 An experimental animal cage
CN214546532U (en) * 2021-03-31 2021-11-02 青岛日联华波科技有限公司 Three-dimensional broiler chicken cage
CN215012610U (en) * 2021-06-03 2021-12-07 芜湖凤如意生态农业有限公司 Poultry is bred with multilayer formula cage of brooding
CN114651746A (en) * 2022-03-22 2022-06-24 山西省畜牧兽医学校 Intelligent automatic feeding device of accurate accuse material

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