Separated feeding device for animal cubs

By designing suitable isolation and rearing devices, the problems of unsuitable temperature and pathogen growth during cub isolation were solved, thereby improving the survival rate of cubs and the safety of their living environment.

CN223681727UActive Publication Date: 2025-12-19太仆寺旗农产品质量安全检验检测站
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Patent Information

Application Number
CN202520084816.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-15
Publication Date
2025-12-19
Estimated Expiration
2035-01-15

AI Technical Summary

Technical Problem

Existing quarantine devices are ineffective at keeping young animals warm, resulting in unsuitable temperatures and the growth of pathogens that affect the survival rate of young animals.

Method used

An isolation feeding device was designed, comprising components such as a brooder box, a double-door structure, a urine tank structure, a breathable insulation component, an electric heating plate, a baby bottle, and a disinfectant spraying mechanism. The breathable insulation component maintains a constant temperature, the electric heating plate provides heat, the disinfectant spraying mechanism kills pathogens, and the urine tank structure collects urine, ensuring a suitable living environment for the pups.

Benefits of technology

This achieved a constant temperature for the pups, preventing the growth of pathogens, improving their survival rate and living comfort, and ensuring the safety and hygiene of the isolation environment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of livestock breeding, and discloses an animal cub isolation feeding device which comprises a cub breeding box. A hinged door structure; a urine box structure; two U-shaped guide clamping sleeves; the two sets of breathable heat preservation pieces are detachably installed on the corresponding U-shaped guide clamping sleeves respectively. The electric heating plate is fixedly mounted at the upper part of the side wall, far away from the opening, of the cub breeding box; a plurality of milk bottles; and a disinfectant spraying mechanism. According to the cub breeding box, after the two sets of breathable heat preservation pieces are installed in the corresponding U-shaped guide clamping sleeves, the temperature in the cub breeding box can be made to be constant, and the situation that cubs get ill due to the fact that the living environment is too cold is avoided; when the electric heating plate is used for heating, heat can be transferred to the cub breeding box, so that the cub breeding box is more suitable for survival of cubs; the disinfectant spraying mechanism can spray a disinfectant into the cub breeding box, and after the disinfectant is sprayed, the interior of the cub breeding box can be sterilized, so that the problem that cubs get sick due to pathogen breeding is avoided.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of livestock breeding, specifically to an animal young cub isolated feeding device. BACKGROUND

[0002] With the development of the livestock industry, the large-scale livestock farms are more and more, but the livestock farm is large-scale, and the livestock is more and more, once the epidemic occurs, it will be large-scale infection, and it will cause great economic loss to the livestock farm, in order to avoid the large-scale spread of the epidemic, the veterinarian of the livestock farm will isolate the diseased livestock for treatment, at this time, a special epidemic prevention isolation device is needed to isolate to ensure the survival rate of the animal young cub.

[0003] The existing epidemic prevention isolation device has poor heat preservation effect when isolating the animal young cub, and the temperature in the epidemic prevention isolation device is not suitable for the young cub to live, and during the life of the young cub in the epidemic prevention isolation device, there will still be certain pathogenic bacteria, which will cause the young cub to be sick, thereby affecting the survival rate of the animal young cub.

[0004] Therefore, the animal young cub isolated feeding device is provided. SUMMARY

[0005] (I) technical problems solved

[0006] In view of the defects of the prior art, the utility model provides an animal young cub isolated feeding device to solve the problems that the existing epidemic prevention isolation device has poor heat preservation effect when isolating the animal young cub, the temperature in the epidemic prevention isolation device is not suitable for the young cub to live, and during the life of the young cub in the epidemic prevention isolation device, there will still be certain pathogenic bacteria, which will cause the young cub to be sick, thereby affecting the survival rate of the animal young cub.

[0007] (II) technical scheme

[0008] In order to achieve the above purpose, the utility model provides the following technical scheme:

[0009] An animal young cub isolated feeding device, comprising:

[0010] The cub raising box is open on one side, a plurality of hollow grooves are formed in the two side walls adjacent to the opening of the cub raising box, and a plurality of urine discharge holes are formed in the bottom of the cub raising box.

[0011] The double-leaf door structure is installed at the opening of the cub raising box.

[0012] The urine tank structure is installed at the bottom of the cub raising box.

[0013] Two U-shaped guide sleeves, two U-shaped guide sleeves are fixedly installed on the two side walls adjacent to the opening of the cubil;

[0014] Two groups of breathable heat preservation parts, two groups of breathable heat preservation parts are respectively detachably installed on the corresponding U-shaped guide sleeve;

[0015] Electric heating plate, the electric heating plate is fixedly installed on the upper part of the side wall of the cubil far away from the opening;

[0016] A plurality of milk bottles, a plurality of milk bottles are respectively detachably installed on the lower part of the side wall of the cubil far away from the opening;

[0017] Disinfectant spraying mechanism, the disinfectant spraying mechanism is installed on the cubil.

[0018] Preferably, the double-door structure includes a first door and a second door, the first door is movably installed on one side of the opening of the cubil, and the second door is movably installed on the other side of the opening of the cubil;

[0019] The first door is provided with a latch on the side facing the second door, a limit pin shaft is movably installed on the latch, and the bottom end of the limit pin shaft is fixedly installed on the outer side wall of the first door;

[0020] The second door is fixedly provided with an L-shaped clamp on the side facing the first door;

[0021] The latch can rotate around the limit pin shaft, and when rotating, the latch can be clamped into the groove of the L-shaped clamp;

[0022] A first back-shaped handle is fixedly installed on the outer side wall of the first door, and a second back-shaped handle is fixedly installed on the outer side wall of the second door.

[0023] Preferably, the top and the bottom end of the outer side of the first door and the second door are provided with an opening part, each opening part is provided with a rotating shaft, each rotating shaft is sleeved with a shaft seat, and the two groups of shaft seats are fixedly installed on the side wall of the opening of the cubil;

[0024] The outer side of the first door and the second door is provided with a rounded corner part.

[0025] Preferably, the urine tank structure includes a base, the base is hollow inside, and the top and one side wall of the base are open;

[0026] The base is inserted and connected with a urine collecting tank, and a third back-shaped handle is fixedly installed on the outer side wall of the urine collecting tank.

[0027] Preferably, the two groups of the air-permeable heat preservation members each comprise a heat preservation plate, and the two heat preservation plates are respectively inserted and installed in the corresponding U-shaped guide sleeves.

[0028] The two heat preservation plates are each provided with a grid plate.

[0029] Preferably, the two heat preservation plates are each provided with an embedded groove, and the two grid plates are embedded in the corresponding embedded grooves.

[0030] Each of the grid plates is provided with a plurality of air-permeable grids.

[0031] Preferably, the side wall of the pup-rearing box is provided, at a position away from the opening, with a plurality of insertion holes, and the plurality of insertion holes are equidistantly distributed along the length direction of the pup-rearing box.

[0032] Each of the milk bottles is inserted and installed in the corresponding insertion hole, and after being inserted, the nipple of each milk bottle is located in the inner cavity of the pup-rearing box.

[0033] Preferably, the top of the pup-rearing box is provided with an embedded hole.

[0034] The disinfectant spraying mechanism comprises a disinfectant storage tank, which is fixedly installed on the top of the pup-rearing box, and one side of the disinfectant storage tank is provided with a micro peristaltic pump, which is fixedly installed on the top of the pup-rearing box.

[0035] The water inlet end of the micro peristaltic pump is communicated with a pumping hose, and the free end of the pumping hose penetrates downward from the top of the disinfectant storage tank and extends to the bottom of the inner cavity of the disinfectant storage tank.

[0036] The water outlet end of the micro peristaltic pump is communicated with a feeding hose, the free end of the feeding hose is communicated with an atomizing nozzle, the atomizing nozzle is embedded in the embedded hole, and after being embedded, the nozzle of the atomizing nozzle is located in the inner cavity of the pup-rearing box.

[0037] The top of the atomizing nozzle is provided with a feeding port.

[0038] Preferably, the nozzle of the atomizing nozzle is provided with a plurality of micropores.

[0039] Preferably, the inner cavity of the pup-rearing box is provided with a urine pad.

[0040] Beneficial effects:

[0041] The animal pup isolation and feeding device provided by the utility model has the following beneficial effects:

[0042] Firstly, in the utility model, after two groups of air-permeable heat preservation members are installed in the corresponding U-shaped guide sleeves, the temperature in the pup-rearing box can be kept constant, so that the pups can not get sick due to the excessively cold living environment.

[0043] Secondly, in the utility model, the electric heating plate can transfer heat to the cub raising box when heating, and the heat on the cub raising box can be transferred to the inner cavity of the cub raising box, and when the inner cavity of the cub raising box is full of heat, the survival of the cubs can be more suitable.

[0044] Thirdly, in the utility model, each group of the breathable heat preservation piece can be detached from the corresponding U-shaped guide sleeve, and the use height of each group of the breathable heat preservation piece can be freely adjusted.

[0045] Fourthly, in the utility model, each feeding bottle is filled with milk, which can be cow milk, sheep milk or other milk, and the multiple feeding bottles can feed the animal cubs in the cub raising box.

[0046] Fifthly, in the utility model, the disinfectant spraying mechanism can spray disinfectant into the cub raising box, and after spraying, the cub raising box can be disinfected to avoid the problem that the cubs get sick due to the breeding of pathogenic bacteria.

[0047] Sixthly, in the utility model, the two groups of hollow grooves in the cub raising box can ensure the ventilation in the cub raising box, and the plurality of urination holes at the bottom of the inner cavity of the cub raising box can facilitate the urination of the cubs, and after urination, urine will not accumulate in the cub raising box.

[0048] After the split door structure is closed, the animal cubs can be prevented from entering and exiting at will to ensure the safety of the cubs.

[0049] Seventhly, in the utility model, after the animal cubs urinate in the cub raising box, the urine can penetrate downward through the urination holes and flow into the urine tank structure, and the urine tank structure can collect the urine of the cubs.

[0050] Eighthly, in the utility model, the urine of the cubs can penetrate downward through the urination holes and flow into the urine collection tank, and the urine collection tank can collect the urine of the cubs, when the urine collection tank is pulled outwards by the third back-shaped handle, the urine in the urine collection tank can be cleaned, and after cleaning, the urine collection tank can be reinserted into the base.

[0051] Ninthly, in the utility model, after the two heat preservation plates are inserted and installed into the corresponding U-shaped guide sleeves, the cub raising box can be heat preserved, so that the temperature of the living environment of the cubs is more suitable, and since the two heat preservation plates are both installed with grid plates, the isolation feeding device can ventilate through the two grid plates.

[0052] Ten, in the utility model, each feeding bottle is inserted and installed in the corresponding insertion hole, and after insertion, the nipple of each feeding bottle is located in the inner cavity of the cubilose box, when each feeding bottle is inserted and installed in the corresponding insertion hole, each feeding bottle is located in the lower part of the inner cavity of the cubilose box, which can better facilitate the sucking of the nipples of the feeding bottles by the pups, thereby better feeding the pups.

[0053] Eleven, in the utility model, the miniature peristaltic pump can draw the disinfectant in the disinfectant storage tank through the drawing hose, and convey it into the atomizing nozzle through the conveying hose, and then spray the disinfectant in the form of atomization into the cubilose box through the atomizing nozzle, since the spraying state of the disinfectant is mist, the spraying range is larger, and the coverage of disinfection is larger.

[0054] Twelve, in the utility model, the inner cavity bottom of the cubilose box is paved with a urine pad, the urine pad can be made of silica gel, when the urine pad is made of silica gel, the urine pad made of silica gel has a plurality of water-permeable micropores;

[0055] The urine pad can also be made of water-absorbing cotton;

[0056] When the urine pad is made of silica gel or water-absorbing cotton, the pups can be more comfortable. BRIEF DESCRIPTION OF DRAWINGS

[0057] Figure 1 It is a three-dimensional schematic view of the utility model;

[0058] Figure 2 It is a three-dimensional schematic view of the utility model from the back;

[0059] Figure 3 It is a three-dimensional schematic view of one of the viewing angles when the utility model is opened;

[0060] Figure 4 It is a three-dimensional schematic view of the second viewing angle when the utility model is opened;

[0061] Figure 5 It is a three-dimensional schematic view of the combination of the cubilose box and the two U-shaped guide sleeves of the utility model;

[0062] Figure 6 It is a three-dimensional schematic view of the urine box structure of the utility model;

[0063] Figure 7 It is a three-dimensional schematic view of the disinfectant spraying mechanism of the utility model;

[0064] Figure 8 It is a three-dimensional schematic view of the disinfectant spraying mechanism of the utility model from the bottom;

[0065] Figure 9 It is a three-dimensional schematic view of the split door structure of the utility model;

[0066] Figure 10 For Figure 9 A three-dimensional schematic view of the enlarged middle A part;

[0067] Figure 11 An explosion schematic view of the breathable heat preservation part of the utility model.

[0068] In the figure: 10, the cub box; 1001, the hollow groove; 1002, the urine discharge hole; 1003, the embedded hole; 1004, the plug-in hole; 20, the opposite door structure; 2001, the first box door; 2002, the second box door; 2003, the clamping tongue; 2004, the limiting pin shaft; 2005, the L-shaped clamp; 2006, the first back-shaped handle; 2007, the second back-shaped handle; 2008, the gap part; 2009, the pivot; 2010, the shaft seat; 2011, the round corner part; 30, the urine box structure; 3001, the base; 3002, the urine collection box; 3003, the third back-shaped handle; 40, the U-shaped guide sleeve; 50, the breathable heat preservation part; 5001, the heat preservation plate; 50011, the embedded groove; 5002, the grid plate; 60, the electric heating plate; 70, the feeding bottle; 80, the disinfectant spraying mechanism; 8001, the disinfectant storage box; 8002, the micro peristaltic pump; 8003, the material suction hose; 8004, the material conveying hose; 8005, the atomizing nozzle; 8006, the feeding port; 90, the urine pad. DETAILED DESCRIPTION

[0069] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.

[0070] Embodiment one

[0071] As Figures 1-5 shown, the utility model provides a technical scheme:

[0072] An animal cub isolation feeding device, comprising:

[0073] The cub box 10 is open on one side, and a plurality of hollow grooves 1001 are formed in the two side walls adjacent to the opening of the cub box 10, and a plurality of urine discharge holes 1002 are formed in the bottom of the cub box 10;

[0074] The litter box 10 is used for isolating and feeding the animal young, wherein the two groups of hollow grooves 1001 can ensure the ventilation in the litter box 10, and the several urine discharge holes 1002 at the bottom of the inner cavity of the litter box 10 can facilitate the urine discharge of the young, and after the urine discharge, the urine will not accumulate in the litter box 10;

[0075] The split door structure 20 is installed at the opening of the litter box 10;

[0076] After the split door structure 20 is closed, the young can be prevented from entering and exiting at will, so as to ensure the safety of the young;

[0077] The urine box structure 30 is installed at the bottom of the litter box 10;

[0078] After the young of the animal urinates in the litter box 10, the urine can penetrate downward through the urine discharge hole 1002 and flow into the urine box structure 30, and the urine of the young is collected through the urine box structure 30;

[0079] The two U-shaped guide sleeves 40 are respectively fixedly installed on the two side walls adjacent to the opening of the litter box 10;

[0080] The two groups of ventilated heat preservation pieces 50 are respectively detachably installed on the corresponding U-shaped guide sleeves 40;

[0081] After the two groups of ventilated heat preservation pieces 50 are installed in the corresponding U-shaped guide sleeves 40, the temperature in the litter box 10 can be kept constant, so as to avoid the situation that the young become ill due to the excessively cold living environment;

[0082] Meanwhile, each group of ventilated heat preservation pieces 50 can be detached from the corresponding U-shaped guide sleeve 40, as shown in Figure 3 The use height of each group of ventilated heat preservation pieces 50 can also be freely adjusted;

[0083] The electric heating plate 60 is fixedly installed at the upper part of the side wall of the litter box 10 away from the opening;

[0084] When the electric heating plate 60 is heated, heat can be transferred to the litter box 10, and the heat on the litter box 10 can be transferred to the inner cavity of the litter box 10, so that the inner cavity of the litter box 10 is filled with heat, which is more suitable for the survival of the young;

[0085] Meanwhile, the electric heating plate 60 works intermittently, that is, after the electric heating plate 60 is heated for 10-20 minutes, it is disconnected for 20 minutes, so as to ensure that the litter box 10 will not be too hot;

[0086] Meanwhile, since the two air-permeable heat preservation members 50 are both air-permeable, heat in the cubbing box 10 can also escape outward through the air-permeable heat preservation members 50, so that the temperature in the cubbing box 10 is prevented from being too high.

[0087] a plurality of feeding bottles 70, which are respectively detachably installed at lower portions of side walls of the cubbing box 10 away from the opening;

[0088] Each feeding bottle 70 is filled with milk, which can be cow milk, goat milk or other milk, and through the plurality of feeding bottles 70, the animal cubs in the cubbing box 10 can be fed;

[0089] a disinfectant spraying mechanism 80, which is installed on the cubbing box 10;

[0090] The disinfectant spraying mechanism 80 can spray disinfectant into the cubbing box 10, and after spraying, the cubbing box 10 can be disinfected and sterilized to avoid the problem that the cubs get sick due to the breeding of pathogenic bacteria.

[0091] Embodiment Two

[0092] As shown in Figure 1 and Figures 9-10 improved on the basis of Embodiment One:

[0093] In order to optimize the specific structure of the door opening structure 20, in this embodiment, the door opening structure 20 further includes a first box door 2001 and a second box door 2002. The first box door 2001 is movably installed at one side of the opening of the cubbing box 10, and the second box door 2002 is movably installed at the other side of the opening of the cubbing box 10.

[0094] The first box door 2001 is provided with a latch 2003 on the side facing the second box door 2002. The latch 2003 is movably provided with a limiting pin shaft 2004, and the bottom end of the limiting pin shaft 2004 is fixedly installed on the outer side wall of the first box door 2001.

[0095] The second box door 2002 is fixedly provided with an L-shaped clamping head 2005 on the side facing the first box door 2001.

[0096] The latch 2003 can rotate around the limiting pin shaft 2004, and when rotating, the latch 2003 can be clamped into the groove of the L-shaped clamping head 2005, thereby locking and fixing the first box door 2001 and the second box door 2002.

[0097] The outer side wall of the first box door 2001 is fixedly provided with a first back-shaped handle 2006, and the outer side wall of the second box door 2002 is fixedly provided with a second back-shaped handle 2007. The first back-shaped handle 2006 and the second back-shaped handle 2007 can facilitate the opening of the double-leaf door structure 20 by the feeding personnel.

[0098] In order to facilitate the installation of the first box door 2001 and the second box door 2002, in the embodiment, further, the top and the one end of the bottom of the outer side of the first box door 2001 and the second box door 2002 are provided with an opening part 2008, each opening part 2008 is provided with a rotating shaft 2009, and each rotating shaft 2009 is sleeved with a shaft seat 2010. The two groups of shaft seats 2010 are fixedly installed on the side wall at the opening of the cub kit 10.

[0099] In order to facilitate the opening and closing of the first box door 2001 and the second box door 2002, in the embodiment, further, the outer side of the one end of the first box door 2001 and the second box door 2002 is provided with a round corner part 2011.

[0100] Embodiment three

[0101] As shown in Figure 1 , Figure 3 and Figure 6 , the embodiment one is improved:

[0102] In order to optimize the specific structure of the urine box structure 30, in the embodiment, further, the urine box structure 30 comprises a base 3001, the inside of the base 3001 is hollow, and the top and the side wall of the base 3001 are open.

[0103] The base 3001 is inserted and installed with a urine collecting box 3002, and the outer side wall of the urine collecting box 3002 is fixedly provided with a third back-shaped handle 3003.

[0104] In the embodiment, the urine of the cub can penetrate downward through the urination hole 1002 and flow into the urine collecting box 3002. The urine collecting box 3002 can collect the urine of the cub. When the urine collecting box 3002 is pulled out by the third back-shaped handle 3003, the urine in the urine collecting box 3002 can be cleaned. After cleaning, the urine collecting box 3002 can be re-inserted into the base 3001.

[0105] Embodiment four

[0106] As shown in Figure 1 , Figure 3 and Figure 11 , the embodiment one is improved:

[0107] In order to optimize the specific structure of the two groups of breathable heat preservation pieces 50, in the embodiment, further, the two groups of breathable heat preservation pieces 50 each include a heat preservation plate 5001, and the two heat preservation plates 5001 are respectively inserted and installed in the corresponding U-shaped guide sleeves 40.

[0108] The two heat preservation plates 5001 are each provided with a grid plate 5002.

[0109] In the embodiment, after the two heat preservation plates 5001 are inserted and installed in the corresponding U-shaped guide sleeves 40, the heat preservation plates 5001 can heat the breeding box 10, so that the temperature of the living environment of the cubs is more suitable. Since the two heat preservation plates 5001 are each provided with a grid plate 5002, the isolation and feeding device can be ventilated through the two grid plates 5002.

[0110] In order to facilitate the installation of the two grid plates 5002 on the heat preservation plates 5001, in the embodiment, further, the two heat preservation plates 5001 are each provided with an embedded groove 50011, and the two grid plates 5002 are each embedded in the corresponding embedded groove 50011.

[0111] More specifically, each grid plate 5002 has a plurality of ventilation grids.

[0112] Embodiment Five

[0113] As shown in Figures 3-5 , the embodiment one is improved as follows:

[0114] In order to facilitate the installation and removal of each feeding bottle 70 on the breeding box 10, in the embodiment, further, the breeding box 10 is provided, at the lower part of the side wall away from the opening, with a plurality of insertion holes 1004, and the plurality of insertion holes 1004 are equidistantly distributed in the length direction of the breeding box 10.

[0115] Each feeding bottle 70 is inserted and installed in the corresponding insertion hole 1004, and after being inserted, the nipple of each feeding bottle 70 is located in the inner cavity of the breeding box 10. When each feeding bottle 70 is inserted and installed in the corresponding insertion hole 1004, each feeding bottle 70 is located at the lower part of the inner cavity of the breeding box 10, which can better facilitate the cubs to suck the nipple of the feeding bottle 70, thereby better feeding the cubs.

[0116] Embodiment Six

[0117] As shown in Figure 1 , Figure 5 , and Figures 7-8 , the embodiment one is improved as follows:

[0118] In order to optimize the specific structure of the disinfectant spraying mechanism 80, in the embodiment, further, the top of the pupping box 10 is provided with an embedded hole 1003;

[0119] The disinfectant spraying mechanism 80 comprises a disinfectant storage tank 8001, the disinfectant storage tank 8001 is internally provided with disinfectant, the disinfectant storage tank 8001 is fixedly installed on the top of the pupping box 10, and one side of the disinfectant storage tank 8001 is provided with a micro peristaltic pump 8002, and the micro peristaltic pump 8002 is fixedly installed on the top of the pupping box 10;

[0120] The water inlet end of the micro peristaltic pump 8002 is communicated with a pumping hose 8003, the free end of the pumping hose 8003 penetrates downward from the top of the disinfectant storage tank 8001 and extends to the bottom of the inner cavity of the disinfectant storage tank 8001;

[0121] The water outlet end of the micro peristaltic pump 8002 is communicated with a feeding hose 8004, the free end of the feeding hose 8004 is communicated with an atomizing nozzle 8005, the atomizing nozzle 8005 is embedded in the embedded hole 1003, and after being embedded, the nozzle of the atomizing nozzle 8005 is located in the inner cavity of the pupping box 10;

[0122] The top of the atomizing nozzle 8005 is provided with a feeding port 8006.

[0123] In the embodiment, the micro peristaltic pump 8002 can pump the disinfectant in the disinfectant storage tank 8001 out through the pumping hose 8003, and then the disinfectant is transported to the atomizing nozzle 8005 through the feeding hose 8004, and then the disinfectant is sprayed in the form of atomization into the pupping box 10 through the atomizing nozzle 8005. Since the spraying state of the disinfectant is mist, the spraying range is large, and the coverage of disinfection is large.

[0124] More specifically, the nozzle of the atomizing nozzle 8005 is provided with a plurality of micropores.

[0125] Embodiment Seven

[0126] As shown in the embodiment one, the improvements are as follows: Figures 3-4

[0127] In order to make the animal pups more comfortable in the pupping box 10, in the embodiment, further, the inner cavity bottom of the pupping box 10 is paved with a urine pad 90, and the urine pad 90 can be made of silica gel. When the urine pad 90 is made of silica gel, the urine pad 90 made of silica gel is provided with a plurality of water-permeable micropores.

[0128] The urine pad 90 can also be made of water-absorbing cotton.

[0129] When the urine pad 90 is made of silica gel or water-absorbing cotton, the pups can be more comfortable. ​

[0130] In summary, the workflow of this utility model is as follows:

[0131] like Figures 1-11 As shown, the brooder box 10 is used for the isolation and feeding of animal cubs. The two sets of hollow grooves 1001 can ensure the ventilation inside the brooder box 10, and the several urination holes 1002 at the bottom of the inner cavity of the brooder box 10 can facilitate the cubs to urinate, and after urination, the urine will not accumulate inside the brooder box 10.

[0132] When closed, the double-door structure 20 can prevent animal cubs from entering or leaving at will, thus ensuring the safety of the cubs;

[0133] When the animal cubs urinate in the brooder box 10, the urine can seep downwards through the urination hole 1002 and flow into the urine tank structure 30, where the urine of the cubs is collected.

[0134] After the two sets of breathable heat insulation components 50 are installed into the corresponding U-shaped guide sleeves 40, the temperature inside the brooder box 10 can be kept constant to avoid the cubs getting sick due to the cold living environment.

[0135] At the same time, each set of breathable insulation components 50 can be removed from the corresponding U-shaped guide sleeve 40, such as Figure 3 As shown, the height of each set of breathable insulation components 50 can also be freely adjusted;

[0136] When the electric heating plate 60 is heating, it can transfer heat to the brooder box 10, and the heat on the brooder box 10 can be transferred to the inner cavity of the brooder box 10. When the inner cavity of the brooder box 10 is filled with heat, it becomes more suitable for the survival of the cubs.

[0137] Meanwhile, the electric heating plate 60 operates intermittently, that is, after heating for 10-20 minutes, the electric heating plate 60 is turned off for 20 minutes to ensure that the brooder box 10 does not get too hot;

[0138] Meanwhile, since both breathable insulation components 50 are breathable, the heat inside the brooder box 10 can also escape to the outside through the breathable insulation components 50, thus ensuring that the temperature inside the brooder box 10 will not be too high.

[0139] Each bottle 70 is filled with milk, which can be cow's milk, goat's milk, or other types of milk. Multiple bottles 70 can be used to feed the animal cubs in the nursery box 10.

[0140] The disinfectant spraying device 80 can spray disinfectant into the brooder box 10. After spraying, it can disinfect and sterilize the brooder box 10 to prevent the growth of pathogens and the resulting illness of the cubs.

[0141] The different embodiments described above can be combined, replaced, and used in combination with each other.

[0142] It should be noted that the relational terms herein such as first and second and the like are used solely to distinguish one entity or action from another, without necessarily requiring or implying any such actual relationship or order between such entities or actions. Moreover, the terms "comprises", "comprising", or any other variations thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can also include other elements not expressly listed or inherent to such process, method, article, or apparatus.

[0143] Although the embodiments of the present application have been shown and described, it is to be understood that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present application, the scope of which is defined by the appended claims and their equivalents.

Claims

1. An animal young sequestration device, characterized by, Include: The pupping box (10), one side of the pupping box (10) is open, a plurality of hollow grooves (1001) are formed on the two side walls adjacent to the opening of the pupping box (10), and a plurality of urine discharge holes (1002) are formed on the bottom of the pupping box (10); The structure (20) of the opposite doors is installed at the opening of the pupping box (10); The urine tank structure (30) is installed at the bottom of the pupping box (10); Two U-shaped guide sleeves (40) are fixedly installed on the two side walls adjacent to the opening of the pupping box (10); Two groups of breathable heat preservation parts (50) are detachably installed on the corresponding U-shaped guide sleeves (40); The electric heating plate (60) is fixedly installed on the upper part of the side wall away from the opening of the pupping box (10); A plurality of milk bottles (70) are detachably installed on the lower part of the side wall away from the opening of the pupping box (10); The disinfectant spraying mechanism (80) is installed on the pupping box (10).

2. A device for the isolated rearing of young animals according to claim 1, characterized in that: The structure (20) of the opposite doors includes a first box door (2001) and a second box door (2002), the first box door (2001) is movably installed on one side of the opening of the pupping box (10), and the second box door (2002) is movably installed on the other side of the opening of the pupping box (10); The first box door (2001) is provided with a latch (2003) on the side facing the second box door (2002), a limiting pin shaft (2004) is movably installed on the latch (2003), and the bottom end of the limiting pin shaft (2004) is fixedly installed on the outer side wall of the first box door (2001); The second box door (2002) is fixedly provided with an L-shaped clamp (2005) on the side facing the first box door (2001); The latch (2003) can rotate around the limiting pin shaft (2004), and when rotating, the latch (2003) can be clamped into the groove of the L-shaped clamp (2005); The outer side wall of the first box door (2001) is fixedly provided with a first back-shaped handle (2006), and the outer side wall of the second box door (2002) is fixedly provided with a second back-shaped handle (2007).

3. A rearing apparatus for young animals as claimed in claim 2, characterised in that: The top and bottom of the outer side of the first box door (2001) and the second box door (2002) are provided with notches (2008), each notch (2008) is provided with a rotating shaft (2009), and an axle seat (2010) is detachably installed on each rotating shaft (2009). Two groups of axle seats (2010) are fixedly installed on the side walls of the opening of the pupping box (10); The outer side of the first box door (2001) and the second box door (2002) is provided with a rounded corner (2011).

4. A device for rearing young animals according to claim 1, characterized in that: The urine tank structure (30) includes a base (3001), the base (3001) is hollow inside, and the top and one side wall of the base (3001) are open. A urine collection box (3002) is inserted into the base (3001), and a third loop handle (3003) is fixedly installed on the outer side wall of the urine collection box (3002).

5. The animal nursery of claim 1, wherein: Both sets of the breathable insulation components (50) include insulation boards (5001), and the two insulation boards (5001) are respectively inserted into the corresponding U-shaped guide sleeves (40); Both insulation boards (5001) are equipped with grid plates (5002).

6. A rearing apparatus for young animals as claimed in claim 5, characterised in that: Both insulation boards (5001) are provided with mounting grooves (50011), and both mesh boards (5002) are embedded in the corresponding mounting grooves (50011); Each of the aforementioned grid plates (5002) has several air-permeable cells.

7. A rearing device for young animals according to claim 1, characterized in that: The brooding box (10) has multiple insertion holes (1004) on the lower part of the side wall away from the opening, and the multiple insertion holes (1004) are equidistantly distributed in the length direction of the brooding box (10); Each of the said bottles (70) is inserted into the corresponding insertion hole (1004), and after insertion, the nipple of each of the said bottles (70) is located in the inner cavity of the brooder box (10).

8. A rearing device for young animals according to claim 1, characterized in that: The top of the brooding box (10) is provided with an insert hole (1003); The disinfectant spraying mechanism (80) includes a disinfectant storage tank (8001), which is fixedly installed on the top of the brooder box (10). A micro peristaltic pump (8002) is provided on one side of the disinfectant storage tank (8001), which is fixedly installed on the top of the brooder box (10). The inlet end of the micro peristaltic pump (8002) is connected to a material extraction hose (8003). The free end of the material extraction hose (8003) passes through the top of the disinfectant storage tank (8001) and extends downward to the bottom of the inner cavity of the disinfectant storage tank (8001). The outlet of the micro peristaltic pump (8002) is connected to a feed hose (8004), and the free end of the feed hose (8004) is connected to an atomizing nozzle (8005). The atomizing nozzle (8005) is embedded in the mounting hole (1003), and after being embedded, the nozzle of the atomizing nozzle (8005) is located in the inner cavity of the brooding box (10). The top of the atomizing nozzle (8005) has a feeding port (8006).

9. A rearing apparatus for young animals as claimed in claim 8, characterised in that: The atomizing nozzle (8005) has several micropores on its nozzle.

10. The animal nursery of claim 1, wherein: The bottom of the inner cavity of the brooder box (10) is lined with a diaper pad (90).