A mobile temperature-controlled lamb incubator and method of use

By using the frame lifting and automatic cleaning system of the mobile temperature-controlled lamb nursery, the problem of excrement accumulation in the lamb nursery has been solved, achieving automated management of the clean environment and improving the health of the lambs.

CN118104570BActive Publication Date: 2025-11-21INSTITUTE OF GRASSLAND RESEARCH OF CAAS
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Patent Information

Application Number
CN202410444726.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-04-15
Publication Date
2025-11-21
Estimated Expiration
2044-04-15

AI Technical Summary

Technical Problem

Existing lamb nursery boxes cause air quality to deteriorate due to the accumulation of excrement during use, which affects the health of lambs. They are also inconvenient to clean and can easily lead to hoof rot.

Method used

A mobile temperature-controlled lamb nursery was designed. Through frame lifting and magnetic connection of air cylinders, the system can automatically clean up excrement. Combined with high-pressure water flushing and gas blowing, the excrement is separated and thoroughly removed.

Benefits of technology

It effectively maintains the hygiene of the lambs' living environment, prevents the accumulation of excrement that leads to hoof rot, reduces the intensity of cleaning work, and ensures the healthy growth of the lambs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a movable temperature control lamb incubator and a use method, and belongs to the technical field of lamb breeding. The movable temperature control lamb incubator comprises a box body, and further comprises a frame arranged in the box body, an opening is formed in the frame, a heat preservation block corresponding to the opening is arranged in the opening, a flushing port is arranged on the box body and used for flushing the frame, a sewage discharge inclined plate is arranged below the heat preservation block, a sewage discharge port is formed in the box body and corresponds to one end of the sewage discharge inclined plate which is downwardly inclined, a threaded block is arranged in the box body and used for controlling the lifting of the frame, a second magnetic element is arranged on the threaded block, an air inflating cylinder is arranged in the box body, and a first magnetic element matched with the second magnetic element is slidably connected in the air inflating cylinder. The application can clean the box body at regular time intervals, ensure the internal cleanness of the box body, avoid the rotting of the hoofs of lambs caused by the aggregation of excrement, and ensure the health of the lambs.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of lamb breeding, and particularly relates to a movable temperature-controlled lamb incubator. BACKGROUND

[0002] Improving the survival rate of lambs is an important way to ensure the profits of sheep enterprises and breeders; after birth, the body temperature regulation function of lambs is imperfect, needs more heat, produces less heat, and has poor heat preservation ability, and is most afraid of cold; the direct harm of cold to lambs is freezing to death, at the same time, cold is the inducement of trampling to death, starvation, and cold, respiratory diseases and diarrhea of lambs, therefore, good heat preservation work during the incubation period of lambs can greatly improve the survival rate of lambs and promote the early growth rate of lambs.

[0003] Lambs live in the incubator for a long time, and inevitably excrete in the incubator; the excrement not only causes the air quality in the incubator to decrease, affecting the life quality of lambs, but also causes the excrement to breed bacteria and fungi if the excrement is not cleaned for a long time, which causes the hooves of lambs to rot. SUMMARY

[0004] The present application aims at solving the problems in the prior art and provides a movable temperature-controlled lamb incubator.

[0005] In order to achieve the above-mentioned purpose, the present application adopts the following technical scheme:

[0006] The incubator comprises a box body, a frame arranged in the box body, an opening formed in the frame, a heat preservation block corresponding to the opening and located in the opening, a flushing port arranged on the box body and used for flushing the frame, a sewage discharge inclined plate arranged below the heat preservation block, a sewage discharge port formed in the box body and corresponding to one end of the sewage discharge inclined plate, a threaded block arranged in the box body and used for controlling the lifting of the frame, a second magnetic element arranged on the threaded block, an air cylinder arranged in the box body, a first magnetic element slidably connected to the air cylinder and matched with the second magnetic element, an air outlet pipe arranged at the bottom of the air cylinder and having an air outlet end facing the sewage discharge inclined plate, and the heat preservation block being flush with the frame when the frame is at the lowest point.

[0007] Preferably, the box body is provided with a box door, the box body is provided with a driving part, a slot is formed in the side surface of the box body provided with the driving part, and a containing groove is arranged in the slot.

[0008] Further, a threaded rod is arranged in the containing groove, the top end of the threaded rod is fixedly connected to the output end of the driving part, and the threaded block is threadedly connected to the threaded rod.

[0009] Preferably, the air cylinder is arranged in the containing groove, and the second magnetic element is sleeved on the air cylinder.

[0010] Preferably, the bottom of the heat preservation block is connected with a connecting rod, water inlets and outlets are respectively arranged in the connecting rod, a circulating water channel is arranged in the heat preservation block, and the two ends of the circulating water channel are respectively connected with the water inlets and outlets.

[0011] Further, the connecting rod penetrates through the sewage inclined plate, and the bottom of the connecting rod is provided with a bottom plate.

[0012] Further, the water supply main pipe and the water discharge main pipe are arranged below the bottom plate.

[0013] Further, the water supply main pipe is connected with a water supply branch pipe, the water supply branch pipe is connected with a water inlet pipe, the water inlet pipe is connected with the water inlet, the water discharge main pipe is connected with a water discharge branch pipe, the water discharge branch pipe is connected with a water outlet pipe, and the water outlet pipe is connected with the water outlet.

[0014] Preferably, the box is provided with a fixing block, and when the frame moves to the lowest point, the fixing block is used for supporting the frame.

[0015] Preferably, a use method of the mobile temperature-controlled lamb incubator comprises the following steps.

[0016] S1, opening the box, placing the lamb on the frame, the heat preservation block being flush with the frame, and the heat preservation block and the frame forming a plane for the lamb to rest on;

[0017] S2, adjusting the temperature in the box by heating the heat preservation block, so as to adapt to the growth of the lamb;

[0018] S3, the screw block controlling the frame to rise, excrement and urine of the lamb left on the frame falling on the sewage inclined plate, and part of the excrement and urine being left on the heat preservation block, and the second magnet driving the first magnet to slide upward in the air cylinder, so that the air cylinder is filled with gas;

[0019] S4, injecting high-pressure water flow from the flushing port, and impacting on the heat preservation block and the sewage inclined plate, so as to complete the cleaning of the heat preservation block and the sewage inclined plate;

[0020] S5, after the cleaning of the heat preservation block and the sewage inclined plate is completed, the screw block controls the frame to descend, and the heat preservation block and the frame form a plane again, and when descending, the second magnet drives the first magnet to slide downward in the air cylinder, so that the gas in the air cylinder is blown along the inclined direction of the sewage inclined plate through the air outlet pipe, so that the water and the excrement and urine left on the sewage inclined plate are more completely discharged.

[0021] Compared with the prior art, the mobile temperature-controlled lamb incubator has the following beneficial effects:

[0022] 1. The mobile temperature control lamb incubator, by lifting the frame, preliminary separation of excrement and lamb, and then through the flushing port to the sewage inclined plate and the heat preservation block flushing, remove the excrement, ensure the sanitary environment of lamb life.

[0023] 2. The mobile temperature control lamb incubator, after completing the cleaning of the box body, the frame is lowered, the second magnetic element drives the first magnetic element to move down, so that the first magnetic element compresses the air in the air cylinder, so that the air in the air cylinder is discharged to the sewage inclined plate through the air outlet pipe, so that the water and excrement remaining on the sewage inclined plate are more thoroughly discharged, and the drying of the sewage inclined plate is also accelerated.

[0024] The mobile temperature control lamb incubator does not involve the same part as the prior art or can be realized by using the prior art, the present application can clean the box body regularly, ensure the cleanliness of the box body, avoid the accumulation of excrement causing the hooves of lambs to rot, and ensure the health of lambs. BRIEF DESCRIPTION OF DRAWINGS

[0025] Figure 1 The present application proposes a mobile temperature control lamb incubator overall structure diagram;

[0026] Figure 2 The present application proposes a mobile temperature control lamb incubator box body internal structure diagram;

[0027] Figure 3 The present application proposes a mobile temperature control lamb incubator air cylinder internal structure diagram;

[0028] Figure 4 The present application proposes a mobile temperature control lamb incubator Figure 3 A part of the enlarged structure diagram;

[0029] Figure 5 The present application proposes a mobile temperature control lamb incubator;

[0030] Figure 6 The present application proposes a mobile temperature control lamb incubator Figure 5 B part of the enlarged structure diagram;

[0031] Figure 7 The present application proposes a mobile temperature control lamb incubator frame and heat preservation block structure diagram;

[0032] Figure 8 The present application proposes a mobile temperature control lamb incubator;

[0033] Figure 9A structure schematic view of a mobile temperature control lamb incubator water supply main pipe and drainage main pipe is provided in the present application.

[0034] Figure 10 A cross-sectional view of a mobile temperature control lamb incubator heat preservation block is provided in the present application.

[0035] In the figure: 1, box; 101, box door; 102, flushing port; 103, sewage outlet; 104, heater; 105, driving part; 106, slot; 107, containing groove; 2, frame; 201, ventilation slot; 202, guard plate; 203, opening; 3, heat preservation block; 301, circulating waterway; 4, air cylinder; 401, first magnetic part; 402, air outlet pipe; 5, threaded rod; 501, threaded block; 502, second magnetic part; 6, sewage inclined plate; 601, jack; 7, bottom plate; 8, water supply main pipe; 801, water supply branch pipe; 802, water inlet pipe; 9, drainage main pipe; 901, drainage branch pipe; 902, water outlet pipe; 10, connecting rod; 1001, water inlet; 1002, water outlet; 11, fixing block. DETAILED DESCRIPTION

[0036] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, not all the embodiments.

[0037] In the description of the present application, it should be understood that the terms “upper”, “lower”, “front”, “back”, “left”, “right”, “top”, “bottom”, “inner”, “outer” and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and therefore cannot be understood as indicating or implying that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application.

[0038] Embodiment 1:

[0039] Reference Figures 1-10, including box 1, further comprising: frame 2, set in box 1, frame 2 is provided with opening 203;Thermal block 3, corresponding to opening 203, thermal block 3 is located in opening 203;Flushing port 102, provided on box 1, for flushing frame 2;Thermal block 3 below is provided with inclined plate 6, box 1 is provided with drain 103, drain 103 corresponds to the downward inclined end of inclined plate 6;Screw block 501, provided in box 1, for controlling the lifting of frame 2, screw block 501 is provided with second magnetic member 502, box 1 is provided with air cylinder 4, air cylinder 4 is slidably connected with first magnetic member 401 matched with second magnetic member 502, the bottom of air cylinder 4 is provided with air outlet pipe 402, the air outlet end of air outlet pipe 402 faces inclined plate 6;When frame 2 is at the lowest point, thermal block 3 is flush with frame 2.

[0040] In the application, when in use, the lamb is placed on the frame 2, at this time, since the frame 2 is at the lowest point, the thermal block 3 is flush with the frame 2, and the thermal block 3 and the frame 2 form a plane, on which the lamb rests, and the temperature in the box 1 is maintained at a temperature suitable for the growth of the lamb by heating the thermal block 3.

[0041] When cleaning the inside of the box 1, the lamb does not need to be taken out, the frame 2 is lifted by the screw block 501, the excrement left by the lamb on the frame 2 falls on the inclined plate 6, and part of the excrement is placed on the thermal block 3, at the same time, the first magnetic member 401 is driven by the second magnetic member 502 to slide upward in the air cylinder 4, so that the air cylinder 4 is filled with gas, then high-pressure water flow is injected from the flushing port 102, so that the high-pressure water flow impacts on the thermal block 3 and the inclined plate 6, and the excrement on the thermal block 3 and the inclined plate 6 is washed away, and the cleaning of the thermal block 3 and the inclined plate 6 is completed, when the frame 2 is lifted, the lamb remains on the frame 2, by lifting the frame 2, the lamb and the excrement can be preliminarily separated, which is convenient for subsequent cleaning, and the cleaning time and the time interval of cleaning can be set, so that the excrement can be automatically cleaned, and the labor intensity of the staff is reduced.

[0042] After the cleaning of the thermal block 3 and the inclined plate 6 is completed, the frame 2 is lowered by the screw block 501, and the thermal block 3 and the frame 2 form a plane again, when the frame 2 is lowered, the first magnetic member 401 is driven by the second magnetic member 502 to slide downward in the air cylinder 4, so that the gas in the air cylinder 4 is blown along the inclined direction of the inclined plate 6 through the air outlet pipe 402, so that the water and the excrement remaining on the inclined plate 6 are more completely discharged, and the drying of the inclined plate 6 is also accelerated.

[0043] The frame 2 is provided with ventilation grooves 201 at both ends, which strengthens the air flow in the box 1, and when the surface of the frame 2 and the heat preservation block 3 is not cleaned, part of the excrement can be discharged along the ventilation grooves 201 to the sewage inclined plate 6, and when the air outlet pipe 402 blows air along the inclined direction of the sewage inclined plate 6, the air in the box 1 is driven out of the box 1, so that the air in the box 1 is replaced, and the air quality in the box 1 is improved;

[0044] The box 1 is further provided with a sewage outlet 103, which is arranged below the flushing port 102 and is flush with the lowest part of the sewage inclined plate 6, so that the excrement on the sewage inclined plate 6 is discharged out of the box 1 through the sewage outlet 103;

[0045] The sewage inclined plate 6 is arranged to be inclined to the sewage outlet 103, so as to facilitate drainage and sewage, and a plurality of insertion holes 601 are arranged on the sewage inclined plate 6, and the connecting rod 10 is inserted into the insertion holes 601;

[0046] The frame 2 is further provided with a protective plate 202 near both ends of the threaded rod 5, the inner side of the protective plate 202 is arc-shaped, and the protective plate 202 is relatively high, so that when the frame 2 rises, the protective plate 202 can prevent the lamb from being rolled into the slot 106 and the hair of the lamb from being rolled into the threaded rod 5 and the threaded block 501, and when the frame 2 rises to the highest point, the protective plate 202 abuts against the top surface of the box 1.

[0047] Embodiment 2:

[0048] With reference to Figures 1-10 The box 1 is provided with a box door 101, the box 1 is provided with a driving part 105, the side of the box 1 provided with the driving part 105 is provided with a slot 106, and the slot 106 is provided with a containing groove 107; the containing groove 107 is provided with a threaded rod 5, the top end of the threaded rod 5 is fixedly connected to the output end of the driving part 105, and a threaded block 501 is threadedly connected to the threaded rod 5; an air cylinder 4 is arranged in the containing groove 107, and a second magnetic part 502 is sleeved on the air cylinder 4.

[0049] In the present application, the box door 101 can be designed as a sliding type, which is convenient for staff to put in and take out the lamb;

[0050] The power source in the driving part 105 is a motor, which is used to drive the threaded rod 5 to rotate, and when the threaded rod 5 rotates, the threaded block 501 moves on the threaded rod 5, and by controlling the rotating direction of the threaded rod 5, the threaded block 501 can be controlled to rise or fall;

[0051] The threaded block 501 drives the second magnetic part 502 to move up and down, so that the second magnetic part 502 slides on the air cylinder 4, the second magnetic part 502 is magnetically connected with the first magnetic part 401, the first magnetic part 401 drives the first magnetic part 401 to slide up and down in the air cylinder 4, and air suction and exhaust are completed.

[0052] Embodiment 3

[0053] With reference to Figures 1-10 The bottom of the heat preservation block 3 is connected with a connecting rod 10, the connecting rod 10 is provided with a water inlet channel 1001 and a water outlet channel 1002 respectively, the heat preservation block 3 is provided with a circulating water channel 301, the two ends of the circulating water channel 301 are connected with the water inlet channel 1001 and the water outlet channel 1002 respectively; the connecting rod 10 penetrates the pollution inclined plate 6, and the bottom of the connecting rod 10 is provided with a bottom plate 7; the box body 1 is provided with a heater 104, the water inlet end and the water outlet end of the heater 104 are respectively connected with a water supply main pipe 8 and a drainage main pipe 9, and the water supply main pipe 8 and the drainage main pipe 9 are arranged below the bottom plate 7; the water supply main pipe 8 is connected with a water supply branch pipe 801, the water supply branch pipe 801 is connected with a water inlet pipe 802, the water inlet pipe 802 is connected with the water inlet channel 1001, and the drainage main pipe 9 is connected with a drainage branch pipe 901, the drainage branch pipe 901 is connected with a water outlet pipe 902, and the water outlet pipe 902 is connected with the water outlet channel 1002.

[0054] In the application, the connecting rod 10 is provided with a plurality of heat preservation blocks 3, and each group of heat preservation blocks 3 and connecting rods 10 form an independent heating unit.

[0055] The water heated by the heater 104 is discharged through the water supply main pipe 8, the water supply main pipe 8 is connected with a plurality of water supply branch pipes 801, each water supply branch pipe 801 is connected with a plurality of water inlet pipes 802, each water inlet pipe 802 is connected with the water inlet channel 1001 in the connecting rod 10, the heated water enters the connecting rod 10 through the water inlet channel 1001, and then is discharged into the circulating water channel 301 in the heat preservation block 3, so as to heat the heat preservation block 3, the hot water in the circulating water channel 301 flows into the water outlet channel 1002 through the other end outlet of the circulating water channel 301, then enters the water outlet pipe 902 through the water outlet channel 1002, and finally is collected into the drainage main pipe 9 through the drainage branch pipe 901, and then is introduced into the heater 104 through the drainage main pipe 9, so as to heat the cooled water again, and the water is delivered into the water supply main pipe 8, and the above operation is repeated.

[0056] The connection mode of the water outlet pipe 902, the drainage branch pipe 901 and the drainage main pipe 9 is consistent with the connection mode of the water supply main pipe 8, the water supply branch pipe 801 and the water inlet pipe 802.

[0057] Embodiment 4

[0058] With reference to Figures 1-10, comprising a box body 1, further comprising: a frame 2 arranged in the box body 1, the frame 2 is provided with an opening 203; a heat preservation block 3 corresponding to the opening 203, the heat preservation block 3 is located in the opening 203; a flushing port 102 arranged on the box body 1, for flushing the frame 2; a sewage discharge inclined plate 6 is arranged below the heat preservation block 3, a sewage discharge port 103 is arranged on the box body 1, and the sewage discharge port 103 corresponds to the downward inclined end of the sewage discharge inclined plate 6; a threaded block 501 is arranged in the box body 1, for controlling the lifting of the frame 2, the threaded block 501 is provided with a second magnetic element 502, the box body 1 is provided with an air cylinder 4, the air cylinder 4 is slidably connected with a first magnetic element 401 matched with the second magnetic element 502, and the bottom of the air cylinder 4 is provided with an air outlet pipe 402, and the air outlet end of the air outlet pipe 402 faces the sewage discharge inclined plate 6; when the frame 2 is located at the lowest point, the heat preservation block 3 is flush with the frame 2; the box body 1 is provided with a fixing block 11, and when the frame 2 moves to the lowest point, the fixing block 11 is used for supporting the frame 2.

[0059] In the application, two fixing blocks 11 are fixedly connected in the box body 1, the two fixing blocks 11 are opposite to each other, when the heat preservation block 3 is flush with the frame 2, the frame 2 is located at the lowest point, at this time, the two fixing blocks 11 support the frame 2, so that the frame 2 has a stress point below, and the frame 2 is more stable.

[0060] Embodiment 5:

[0061] Refer to Figures 1-10 A use method of the mobile temperature-controlled lamb incubator, comprising the following steps:

[0062] S1, open the box door 101, place the lamb on the frame 2, the heat preservation block 3 is flush with the frame 2, the heat preservation block 3 and the frame 2 form a plane, and the lamb rests on the plane;

[0063] S2, the heater 104 heats the water and discharges through the water supply main pipe 8, the heated water enters the circulating water channel 301 in turn through the water supply branch pipe 801, the water inlet pipe 802 and the water inlet channel 1001, and then heats the heat preservation block 3, adjusts the temperature in the box body 1, so that it is suitable for the growth of the lamb;

[0064] S3, rotate the threaded rod 5, so that the threaded block 501 controls the frame 2 to rise, the excrement left by the lamb on the frame 2 falls on the sewage discharge inclined plate 6, and part of the excrement is placed on the heat preservation block 3, and the second magnetic element 502 drives the first magnetic element 401 to slide upward in the air cylinder 4, so that the air cylinder 4 is filled with gas;

[0065] S4, open the flush port 102, inject high pressure water flow from the flush port 102, so that the water flow impact on the heat preservation block 3 and the sewage inclined plate 6, the excrement on the sewage inclined plate 6 is washed down, the washed excrement is discharged from the box 1 through the sewage port 103, and then the cleaning of the heat preservation block 3 and the sewage inclined plate 6 is completed;

[0066] S5, after the cleaning of the heat preservation block 3 and the sewage inclined plate 6 is completed, the threaded rod 5 is reversely rotated, the threaded block 501 controls the frame 2 to descend, when the frame 2 descends to the lowest point, the heat preservation block 3 and the frame 2 reconstitute a plane, in the descending process, the second magnetic element 502 drives the first magnetic element 401 to slide downwards in the air cylinder 4, the first magnetic element 401 discharges the air in the air cylinder 4, the gas in the air cylinder 4 blows along the inclined direction of the sewage inclined plate 6 through the air outlet pipe 402, so that the water and the excrement remaining on the sewage inclined plate 6 are more thoroughly discharged.

[0067] The above is only the preferred specific implementation of the present application, but the protection scope of the present application is not limited to this, any skilled person in the art, according to the technical scheme and the inventive concept of the present application, within the technical range disclosed by the present application, makes equivalent replacement or change, should be covered in the protection scope of the present application.

Claims

1. A mobile temperature-controlled lamb nursery box, comprising a box body (1), characterized in that, Also includes: A frame (2) is set inside the box (1), and an opening (203) is provided on the frame (2). The insulation block (3) corresponds to the opening (203) and is located inside the opening (203); A rinsing port (102) is provided on the housing (1) for rinsing the frame (2); The insulation block (3) is provided with a drain slope (6) below it, and the box body (1) is provided with a drain port (103), which corresponds to the downward inclined end of the drain slope (6). A threaded block (501) is installed inside the housing (1) to control the lifting and lowering of the frame (2). A second magnetic element (502) is provided on the threaded block (501). An air cylinder (4) is provided inside the housing (1). A first magnetic element (401) that cooperates with the second magnetic element (502) is slidably connected inside the air cylinder (4). An air outlet pipe (402) is provided at the bottom of the air cylinder (4). The air outlet end of the air outlet pipe (402) faces the sewage discharge inclined plate (6). When the frame (2) is at its lowest point, the insulation block (3) is flush with the frame (2); The box (1) is provided with a door (101), and the box (1) is provided with a drive unit (105). The side of the box (1) where the drive unit (105) is provided has a slot (106), and the slot (106) is provided with a receiving slot (107). The receiving groove (107) is provided with a threaded rod (5), the top end of the threaded rod (5) is fixedly connected to the output end of the drive unit (105), and the threaded block (501) is threadedly connected to the threaded rod (5). The air cylinder (4) is set in the receiving groove (107), and the second magnetic element (502) is sleeved on the air cylinder (4).

2. The mobile temperature-controlled lamb nursery box according to claim 1, characterized in that, The bottom of the insulation block (3) is connected to a connecting rod (10), and the connecting rod (10) is provided with an inlet channel (1001) and an outlet channel (1002). The insulation block (3) is provided with a circulating water channel (301), and the two ends of the circulating water channel (301) are connected to the inlet channel (1001) and the outlet channel (1002) respectively.

3. A mobile temperature-controlled lamb nursery box according to claim 2, characterized in that, The connecting rod (10) passes through the sewage discharge inclined plate (6), and the bottom of the connecting rod (10) is provided with a base plate (7).

4. A mobile temperature-controlled lamb nursery box according to claim 3, characterized in that, The housing (1) is equipped with a heater (104), and the water inlet and outlet of the heater (104) are respectively connected to a water supply main pipe (8) and a drainage main pipe (9). The water supply main pipe (8) and the drainage main pipe (9) are located below the bottom plate (7).

5. A mobile temperature-controlled lamb nursery box according to claim 4, characterized in that, The main water supply pipe (8) is connected to a branch water supply pipe (801), the branch water supply pipe (801) is connected to an inlet pipe (802), the inlet pipe (802) is connected to an inlet channel (1001), the main drainage pipe (9) is connected to a branch drainage pipe (901), the branch drainage pipe (901) is connected to an outlet pipe (902), the outlet pipe (902) is connected to an outlet channel (1002).

6. A mobile temperature-controlled lamb nursery box according to claim 1, characterized in that, The box (1) is provided with a fixing block (11). When the frame (2) moves to the lowest point, the fixing block (11) is used to support the frame (2).

7. A method of using a portable temperature-controlled lamb nursery box, applied to the portable temperature-controlled lamb nursery box described in claim 1, characterized in that, Includes the following steps: S1. Open the box (1), place the lamb on the frame (2), and make the insulation block (3) flush with the frame (2). The insulation block (3) and the frame (2) form a plane for the lamb to rest on. S2. By heating the insulation block (3), the temperature inside the box (1) is adjusted to make it suitable for lamb growth; S3, the threaded block (501) controls the frame (2) to rise, and the excrement left by the lamb on the frame (2) falls onto the sewage slope (6), and some of the excrement is placed on the heat insulation block (3). At the same time, the second magnet (502) drives the first magnet (401) to slide upward in the air cylinder (4), so that the air cylinder (4) is filled with gas. S4. High-pressure water flow is injected from the rinsing port (102) and impacts the insulation block (3) and the drain slope (6) to complete the cleaning of the insulation block (3) and the drain slope (6); S5. After cleaning the insulation block (3) and the drain slope (6), the threaded block (501) controls the frame (2) to descend. The insulation block (3) and the frame (2) are reassembled into a plane. During the descent, the second magnet (502) drives the first magnet (401) to slide downward in the air cylinder (4), so that the gas in the air cylinder (4) is blown along the direction of the drain slope (6) through the air outlet pipe (402), so that the water and excrement remaining on the drain slope (6) are discharged more thoroughly.

Citation Information

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