Intelligent breeding and breeding method of meat rabbits
By designing an intelligent breeding and raising device, the problems of rabbit overfeeding and inconvenient feces disposal have been solved. It realizes intelligent feeding and automatic cleaning based on weight, ensuring the healthy growth of rabbits and a clean environment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- QINGDAO KANGDA RABBIT IND DEV
- Filing Date
- 2024-12-05
- Publication Date
- 2026-05-19
AI Technical Summary
Existing automatic feeders cannot intelligently feed rabbits according to their weight, leading to overfeeding, which affects their growth and development. At the same time, the disposal of manure during the breeding process is inconvenient and affects their living environment.
An intelligent breeding and raising device was designed, which includes a feeding adjustment mechanism and a driving cleaning mechanism. Through mechanical transmission and servo motor control, the amount of food fed is automatically adjusted according to the weight of the rabbits, and the feces are automatically cleaned through scrapers and collection boxes.
It enables intelligent feeding based on the rabbit's weight, preventing overfeeding, ensuring healthy growth, and maintaining a clean breeding environment, thus improving automation and safety.
Smart Images

Figure CN119234721B_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the technical field of poultry farming methods, specifically relating to an intelligent breeding and raising method for meat rabbits. Background Technology
[0002] Meat rabbits are a type of rabbit. There are many breeds of meat rabbits, which can be broadly categorized into large, medium, and small types based on size. Rabbits weighing over 5 kg are large; those weighing 3-5 kg are medium; and those weighing under 3 kg are small. Studies have shown that meat rabbits have a lean meat percentage as high as 70%. The meat contains up to 21% protein; it is also high in lysine, phospholipids, calcium, and vitamins, making it particularly suitable for the elderly and children. Abroad, rabbit meat is hailed as a "beauty food," and demand is constantly increasing.
[0003] It possesses unique qualities such as strong adaptability, good reproductive performance, rapid growth and development, high slaughter rate, tender meat, delicious flavor, and rich nutrition. In particular, it is rich in a variety of vitamins and amino acids needed by the human body, and is very popular among consumers.
[0004] In the process of raising meat rabbits, automatic feeders continuously feed the rabbits while they are eating. However, because the animals lack good "self-control," meat rabbits often overeat during the breeding process, which often leads to bloating and other problems, thus hindering their healthy growth and development. Therefore, existing automatic feeders cannot provide intelligent feeding or adjust the feeding according to the rabbits' weight. At the same time, the manure produced during the breeding process needs to be disposed of regularly, affecting the rabbits' living environment, and manual operation is also inconvenient. Summary of the Invention
[0005] The purpose of this invention is to provide an intelligent breeding and raising method for meat rabbits, in order to solve the technical problems of existing automatic feeders that cannot intelligently feed rabbits, cannot adaptively adjust feeding according to the weight of the rabbits, and whose manure generated during the breeding process needs to be treated regularly, thus affecting the living environment of the rabbits.
[0006] To achieve the above objectives, the present invention adopts the following technical solution:
[0007] An intelligent breeding and raising device for meat rabbits, comprising:
[0008] The box body has its outer walls connected to the base plate by brackets on all four sides, and the side walls of the box body are movably connected to support plates. The outer edge of the support plate is connected to a sliding groove along the height direction of the box body, and the bottom ends of the support plate are connected to the base plate by first springs on both sides.
[0009] The feeding adjustment mechanism includes a pull rope fixed to one end of a support plate. One end of the pull rope passes through a movable pulley and a fixed pulley and extends to a hanging ring on a movable plate. Insert rods extending into the interior of the cover are fixedly installed on both sides of the bottom end of the movable plate. The bottom of the cover is fixed in a first material trough by a screw conveyor. The bottom end of the insert rod is connected to a tapered part located between the battery packs. A second spring located at the top of the cover is provided between the insert rods. One end of the second spring is connected to the bottom of the movable plate.
[0010] The movable plate is connected to the cover at the center of its bottom end via a telescopic rod. The drive motor on the screw conveyor is electrically connected to the battery pack. The screw conveyor is provided with an inclined pipe connected to the discharge port. Below the inclined pipe is a second material trough installed and fixed on the side wall of the box. As the support plate on the box rises or falls under the force, the pull rope drives the lifting ring to move up or down through the insertion rod. The battery packs are connected or disconnected. At the same time, the screw conveyor starts or stops under the action of the drive motor.
[0011] Furthermore, it also includes a cleaning mechanism, which includes a servo motor fixed to the bottom of the support plate. The output shaft of the servo motor extends to a reciprocating screw. Both ends of the reciprocating screw are helically driven with sliders that move in opposite directions. One end of the slider is fixed to a crossbeam. A protrusion on the crossbeam penetrates the support plate and extends to the scraper. The protrusion on the crossbeam has a strip groove along the length of the support plate. The top of the scraper is connected to an inclined surface on the side facing the center of the box.
[0012] Furthermore, rectangular grooves are provided at both ends of the support plate. The rectangular grooves are arranged along the edge of the support plate, and baffles are installed on the rectangular grooves. One end of the baffle is connected to the support plate via a hinge near the side wall of the box, and a side plate is connected to the bottom of the baffle via a third spring. The side plate and the support plate are integrally formed. When the servo motor is started, the slider drives the scrapers at both ends to move in opposite directions and pushes the feces on the support plate into the rectangular groove. The baffle rotates downward under the action of gravity and opens the rectangular groove, at which time the feces are poured out.
[0013] Furthermore, the third spring is inclined, and a collection box is provided below the rectangular groove and placed at the bottom of the support plate. The collection box is movable and pull-out, and a push handle is fixedly installed at one end of the outer wall of the collection box. The support plate and the collection box are connected by a fixed rod, and a receiving cavity connected to the third spring is formed between the collection box and the support plate.
[0014] Furthermore, the top of the housing is connected to a fixed pulley via a bending rod, and both ends of the fixed pulley are provided with bearings connected to the bending rod. The lifting ring is connected to a pull rope by a traction fixing method, and a gap is formed between the tapered parts to be placed on the battery pack.
[0015] Furthermore, a positioning hole is provided at the connection between the cover and the screw conveyor, and a locking pin is used to lock and fix it. The screw conveyor is provided with screw blades that are adapted to it in the height direction.
[0016] Furthermore, the feed inlet of the screw conveyor is connected to the first trough, and both ends of the screw conveyor are fixed to the first trough by diagonal rods, and the screw blades are arranged vertically upward.
[0017] An intelligent breeding and raising method for meat rabbits includes the following steps:
[0018] S1.1 Place 3-10 rabbits onto the support plate of the box and put food into the first and second feed troughs;
[0019] S1.2 When the weight of the rabbit decreases, the support plate moves upward under the elastic return of the first spring, and pulls the rope upward, so that the plug is pulled out of the battery pack. The battery packs are connected and the screw conveyor is powered to drive the feed in the first feed trough to the second feed trough.
[0020] S1.3 When the rabbits eat the food in the second feed trough and gain weight, the rope is pulled downwards by the elastic recovery of the second spring, and the plug moves downwards and inserts into the battery packs at the same time, so that the battery packs are disconnected, thereby ensuring that the food in the first feed trough is no longer transported.
[0021] S1.4 Start the servo motor, which causes the slider to drive the scraper to move in the opposite direction and push the feces on the support plate to the baffle. Under the action of gravity, the baffle rotates downward and opens the rectangular groove, allowing the feces to enter the collection box. Under the elastic return action of the third spring, the baffle returns to its original position.
[0022] In summary, due to the adoption of the above technical solution, the beneficial effects of the present invention are:
[0023] (1) A feeding adjustment mechanism is set up so that when the rabbit enters the support plate, it can use its own weight and mechanical transmission to make the screw conveyor control the feeding of the second feed trough. This allows for selective feeding based on the weight of the rabbit, which helps the rabbit grow scientifically and healthily. It effectively and reasonably controls the weight of the rabbit. When the weight of the rabbit is too large, the pull rope can loosen and move downward under the elastic recovery of the second spring. It can also disconnect the battery packs through the plug rod, so that the drive motor cannot supply power normally and the screw conveyor stops feeding. Conversely, when the weight of the rabbit is reduced, the pull rope drives the plug rod to move upward, so that the battery packs are connected and the drive motor is supplied with power, thus allowing the screw conveyor to feed normally and ensuring the normal operation of the device.
[0024] (2) The transmission components are set up with fixed pulleys and movable pulleys on the pull rope. This can save effort and prevent the pull rope from deviating during the movement, thereby ensuring the stable movement of the transmission components. The pull rope is installed on the lifting ring by traction and fixation. This not only facilitates the installation and disassembly of the lifting ring and improves work efficiency, but also makes it easier to quickly fix the pull rope on the lifting ring. The telescopic rod set on the movable plate not only provides the movable plate with corresponding support force, but also provides the corresponding corrective guidance for the movable plate moving up and down. It acts as the connecting medium between the movable plate and the cover, which greatly improves the safety of the device.
[0025] (3) A push cleaning mechanism is set up. After the servo motor starts, the sliders at both ends drive the scraper to move in the opposite direction through the spiral transmission, thereby pushing the feces on the support plate to the baffle. Since the baffle is connected to the support plate by a hinge and the bottom of the baffle is connected to the side plate by a third spring, when the feces accumulate to a certain extent, the baffle rotates downward due to gravity and opens the rectangular groove, thereby letting the feces slide into the collection box. In addition, the collection box is a pull-out movable setting, and the feces can be pushed out by pushing the handle, which is convenient for subsequent cleaning work. It effectively ensures the cleanliness of the box and prevents the rabbit's normal healthy growth from being affected by too much feces. It has a high degree of automation and strong intelligence. Attached Figure Description
[0026] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0027] Figure 1 This is a schematic diagram of the structure of an intelligent breeding and raising device for meat rabbits according to the present invention. Figure 1 ;
[0028] Figure 2 This is a schematic diagram of the structure of an intelligent breeding and raising device for meat rabbits according to the present invention. Figure 2 ;
[0029] Figure 3 This is the present invention. Figure 2 Enlarged view of point A;
[0030] Figure 4 This is a schematic diagram showing the connection between the plug and the battery pack of the present invention;
[0031] Figure 5 This is a schematic diagram of the screw conveyor of the present invention;
[0032] Figure 6 This is a schematic diagram of the interior of the housing of the present invention. Figure 1 ;
[0033] Figure 7 This is a schematic diagram of the interior of the housing of the present invention. Figure 2 ;
[0034] Figure 8 This is a front view of the interior of the housing of the present invention;
[0035] Figure 9 This is the present invention. Figure 8 Enlarged view of point B;
[0036] Figure 10 This is a flowchart illustrating an intelligent breeding and raising method for meat rabbits according to the present invention.
[0037] Reference numerals: 1. Box body; 2. Support plate; 3. First spring; 4. Feeding adjustment mechanism; 5. Pull rope; 6. Movable pulley; 7. Fixed pulley; 8. Movable plate; 9. Lifting ring; 10. Insert rod; 11. Screw conveyor; 12. First trough; 13. Battery pack; 14. Conical part; 15. Second spring; 16. Telescopic rod; 17. Inclined tube; 18. Second trough; 19. Pushing cleaning mechanism; 20. Servo motor; 21. Reciprocating screw; 22. Slider; 23. Crossbeam; 24. Scraper; 25. Baffle; 26. Third spring; 27. Side plate; 28. Collection box; 29. Spiral blade. Detailed Implementation
[0038] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0039] Reference manual attached Figure 1 and Figure 2 As shown, an intelligent breeding and raising device for meat rabbits includes:
[0040] Box 1, the outer walls of box 1 are connected to the base plate by brackets on all four sides, and the side walls of box 1 are movably connected to support plate 2. The outer edge of support plate 2 is connected to a sliding groove along the height direction of box 1. The bottom two sides of support plate 2 are connected to the base plate by first spring 3.
[0041] The feeding adjustment mechanism 4 includes a pull rope 5 fixed to one end of the support plate 2. One end of the pull rope 5 passes through the movable pulley 6 and the fixed pulley 7 and extends to the lifting ring 9 on the movable plate 8. Insert rods 10 extending into the interior of the cover are fixedly installed on both sides of the bottom end of the movable plate 8. The bottom of the cover is fixed in the first material trough 12 by a screw conveyor 11. The bottom end of the insert rod 10 is connected to a tapered portion 14 located between the battery packs 13, and a second spring 15 located at the top of the cover is provided between the insert rods 10. One end of the second spring 15 is connected to the bottom of the movable plate 8. The bottom center of the moving plate 8 is connected to the cover via a telescopic rod 16. The drive motor on the screw conveyor 11 is electrically connected to the battery pack 13. The screw conveyor 11 is provided with an inclined pipe 17 connected to the discharge port. Below the inclined pipe 17 is a second material trough 18 installed and fixed on the side wall of the box 1. As the support plate 2 on the box 1 rises or falls under the force, the pull rope 5 drives the lifting ring 9 to move up or down through the insertion rod 10. The battery packs 13 are connected or disconnected from each other. At the same time, the screw conveyor 11 starts or stops under the action of the drive motor.
[0042] A feeding adjustment mechanism 4 is set up. When the rabbit enters the support plate 2, its own weight, combined with mechanical transmission, enables the screw conveyor 11 to control the feeding of the second feed trough 18. This allows for selective feeding based on the rabbit's weight, scientifically and healthily aiding in the rabbit's growth and effectively controlling its weight. When the rabbit's weight is too large, the pull rope 5 loosens and moves downward under the elastic recovery of the second spring 15, disconnecting the battery pack 13 via the insertion rod 10. This prevents the drive motor from supplying power, and the screw conveyor 11 stops feeding. Conversely, when the rabbit's weight is reduced, the pull rope 5 moves the insertion rod 10 upward, connecting the battery pack 13 and supplying power to the drive motor, allowing the screw conveyor 11 to feed normally and ensuring the normal operation of the device.
[0043] Specifically, the support plate 2 is movably connected to the side wall of the box 1 by the first spring 3. In this way, the support plate 2 can not only ensure the normal movement of the rabbit, but also achieve lifting and lowering movement by the weight change of the rabbit, thereby driving the mechanical movement of the transmission component through the pull rope 5.
[0044] During the up-and-down movement of the pull cord 5, the battery packs 13 can be connected or disconnected. The technical solution of the present invention is essentially that the conical part 14 on the plug rod 10 is inserted into the gap between the battery packs 13. This structural design makes it easy for the plug rod 10 to be directly inserted into the gap between the battery packs 13 through the conical part 14, and the disconnection action can be easily achieved by using a small contact area. On the other hand, inserting into the gap between the battery packs 13 can reduce insertion damage to the battery packs 13, prevent collision and wear between structural components, and improve the safety and lifespan of the device.
[0045] refer to Figure 1 , Figure 6 , Figure 7 , Figure 8 and Figure 9 An intelligent breeding and raising device for meat rabbits also includes a pushing and cleaning mechanism 19. The pushing and cleaning mechanism 19 includes a servo motor 20 fixed to the bottom of the support plate 2. The output shaft of the servo motor 20 extends to the reciprocating screw 21. Both ends of the reciprocating screw 21 are helically driven with sliders 22 that move in opposite directions. One end of the slider 22 is fixed to the crossbeam 23. The protrusion on the crossbeam 23 passes through the support plate 2 and extends to the scraper 24. The protrusion on the crossbeam 23 has a strip groove along the length of the support plate 2. The top of the scraper 24 is connected to an inclined surface on the side facing the center of the box 1.
[0046] The cleaning mechanism 19 is set up. After the servo motor 20 is started, the sliders 22 at both ends drive the scraper 24 to move in the opposite direction through the spiral transmission, thereby pushing the feces on the support plate 2 to the baffle 25. Since the baffle 25 is connected to the support plate 2 by a hinge and the bottom of the baffle 25 is connected to the side plate 27 by a third spring 26, when the feces accumulate to a certain extent, the baffle 25 rotates downward due to gravity and opens the rectangular groove, thereby letting the feces slide into the collection box 28. In addition, the collection box 28 is a pull-out movable setting. The feces can be pushed out by pushing the handle, which facilitates subsequent cleaning work. This effectively ensures the cleanliness of the inside of the box 1 and prevents the normal healthy growth of rabbits from being affected by excessive feces. It has a high degree of automation and strong intelligence.
[0047] Rectangular grooves are provided at both ends of the support plate 2. The rectangular grooves are set along the edge of the support plate 2, and baffles 25 are installed on the rectangular grooves. One end of the baffle 25 is connected to the support plate 2 by a hinge near the side wall of the box 1. The bottom of the baffle 25 is connected to a side plate 27 by a third spring 26. The side plate 27 and the support plate 2 are integrally formed. When the servo motor 20 is started, the slider 22 drives the scrapers 24 at both ends to move in the opposite direction and push the feces on the support plate 2 into the rectangular groove. The baffle 25 rotates downward under the action of gravity and opens the rectangular groove, and the feces are poured out at this time.
[0048] The third spring 26 is inclined. A collection box 28 is located at the bottom of the support plate 2 below the rectangular groove. The collection box 28 is movable and pull-out. A push handle is fixedly installed on one end of the outer wall of the collection box 28. The support plate 2 and the collection box 28 are connected by a fixed rod. A receiving cavity connected to the third spring 26 is formed between the collection box 28 and the support plate 2. When the cleaning mechanism 19 is not working, the scrapers 24 at both ends are located at the center of the support plate 2. The top of the scraper 24 is connected to an inclined surface. In this way, even if there is feces on the scraper 24, the feces will slide down to the support plate 2 due to gravity. Then, the scraper 24 is moved and swept into the collection box 28. In other words, the strip groove on the support plate 2 is the moving space of the crossbeam 23. In order to further collect and remove the feces in the strip groove, a box body placed on the bottom plate can be provided below the length of the strip groove to collect all the feces that fall on the support plate 2.
[0049] Furthermore, the baffle 25 is rotatably connected to the support plate 2 via a hinge. Since the rotatable connection of the hinge is a conventional technical means that is obvious to those skilled in the art, it is not shown in detail in the accompanying drawings, but this does not affect the effective implementation of the technical solution of the present invention.
[0050] refer to Figure 1 , Figure 3 , Figure 4 and Figure 5 The top of the housing 1 is connected to the fixed pulley 7 via a bending rod, and both ends of the fixed pulley 7 are equipped with bearings connected to the bending rod. The lifting ring 9 is connected to the pull rope 5 by traction fixation. A gap is formed between the tapered parts 14 to be placed on the battery pack 13. A positioning hole is opened at the connection between the cover and the screw conveyor 11 and it is locked and fixed by a stop pin. The screw conveyor 11 is equipped with a screw blade 29 that is adapted to it in the height direction and is connected by a stop pin to lock and fix it, which can facilitate the installation and disassembly of structural components and is beneficial to personnel operation.
[0051] The transmission assembly includes a fixed pulley 7 and a movable pulley 6 on the pull rope 5. This design saves effort and prevents the pull rope 5 from deviating during movement, ensuring stable movement of the transmission components. The pull rope 5 is fixed to the lifting ring 9 by traction, which not only facilitates the installation and disassembly of the lifting ring 9 and improves work efficiency, but also makes it easier to quickly fix the pull rope 5 to the lifting ring 9. The telescopic rod 16 on the movable plate 8 not only provides corresponding support to the movable plate 8, but also provides corresponding corrective guidance for the vertical movement of the movable plate 8, acting as a connecting medium between the movable plate 8 and the cover, greatly improving the safety of the device's operation.
[0052] The feed inlet of the screw conveyor 11 is connected to the first trough 12, and both ends of the screw conveyor 11 are fixed to the first trough 12 by diagonal rods. The screw blades 29 are arranged vertically upward. The rotating screw blades 29 push the material from the feed inlet to the discharge outlet, thereby realizing the material conveying. When the rotating shaft drives the screw blades to rotate, the screw blades 29 push the material from the inlet to the outlet, so that the material moves along the screw trajectory inside the screw conveyor 11. The material is lifted under the action of gravity and centrifugal force.
[0053] refer to Figure 10 A smart breeding and raising method for meat rabbits includes the following steps:
[0054] S1.1 Place 3-10 rabbits on the support plate 2 of the box 1, and put food into the first feed trough 12 and the second feed trough 18;
[0055] S1.2 When the weight of the rabbit decreases, the support plate 2 moves upward under the elastic recovery of the first spring 3 and pulls the rope 5 upward, so that the insertion rod 10 is pulled out of the battery pack 13. The battery packs 13 are connected and the screw conveyor 11 is powered and driven, and the food in the first feed trough 12 is transported to the second feed trough 18.
[0056] S1.3 When the rabbit gains weight after eating the food in the second feed trough 18, the pull rope 5 is pulled downward under the elastic recovery action of the second spring 15, and the insertion rod 10 moves downward and inserts into the battery pack 13 at the same time, so that the battery pack 13 is disconnected, thereby ensuring that the food in the first feed trough 12 is no longer transported.
[0057] S1.4 Start the servo motor 20, so that the slider 22 drives the scraper 24 to move in the opposite direction and pushes the feces on the support plate 2 to the baffle 25. Under the action of gravity, the baffle 25 rotates downward and opens the rectangular groove, so that the feces enter the collection box 28. Under the elastic recovery action of the third spring 26, the baffle 25 returns to its original position.
[0058] The entire breeding and raising method is highly automated and intelligent. It can automatically adjust the feeding according to the rabbit's weight to prevent the rabbit from overeating, thus ensuring the healthy and scientific growth and reproduction of the rabbit. At the same time, it also ensures the cleanliness of the inside of the box 1, further improving the rabbit's living environment.
[0059] The above are merely preferred embodiments of the present invention, but the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the present invention, based on the technical solution and inventive concept of the present invention, should be covered within the scope of protection of the present invention.
[0060] The preferred embodiments of the present invention disclosed above are merely illustrative of the invention. These preferred embodiments do not exhaustively describe all details, nor do they limit the invention to any specific implementation. Clearly, many modifications and variations can be made based on the content of this specification. This specification selects and specifically describes these embodiments to better explain the principles and practical applications of the invention, thereby enabling those skilled in the art to better understand and utilize the invention. The invention is limited only by the claims and their full scope and equivalents.
Claims
1. An intelligent breeding and raising method for meat rabbits, characterized in that, Includes the following steps: S1.1 Place 3-10 rabbits onto the support plate of the box and put food into the first and second feed troughs; S1.2 When the weight of the rabbit decreases, the support plate moves upward under the elastic return of the first spring, and pulls the rope upward, so that the plug is pulled out of the battery pack. The battery packs are connected and the screw conveyor is powered to drive the feed in the first feed trough to the second feed trough. S1.3 When the rabbits eat the food in the second feed trough and gain weight, the rope is pulled downwards by the elastic recovery of the second spring, and the plug moves downwards and inserts into the battery packs at the same time, so that the battery packs are disconnected, thereby ensuring that the food in the first feed trough is no longer transported. S1.4 Start the servo motor, so that the slider drives the scraper to move in the opposite direction and pushes the feces on the support plate to the baffle. Under the action of gravity, the baffle rotates downward and opens the rectangular groove, so that the feces enter the collection box. Under the elastic return action of the third spring, the baffle returns to its original position. The outer walls of the box are connected to the base plate by brackets on all four sides, and the side walls of the box are movably connected to support plates. The outer edge of the support plate is connected to a sliding groove along the height direction of the box, and the bottom two sides of the support plate are connected to the base plate by first springs. The feeding adjustment mechanism includes a pull rope fixed to one end of a support plate. One end of the pull rope passes through a movable pulley and a fixed pulley and extends to a hanging ring on a movable plate. Insert rods extending into the interior of the cover are fixedly installed on both sides of the bottom end of the movable plate. The bottom of the cover is fixed in a first material trough by a screw conveyor. The bottom end of the insert rod is connected to a tapered part located between the battery packs. A second spring located at the top of the cover is provided between the insert rods. One end of the second spring is connected to the bottom of the movable plate. The movable plate is connected to the cover at the bottom center via a telescopic rod. The drive motor on the screw conveyor is electrically connected to the battery pack. The screw conveyor is provided with an inclined pipe connected to the discharge port. Below the inclined pipe is a second material trough installed and fixed on the side wall of the box. As the support plate on the box rises or falls under the force, the pull rope drives the lifting ring to move up or down through the plug rod. The battery packs are connected or disconnected. At the same time, the screw conveyor starts or stops under the action of the drive motor. The cleaning mechanism includes a servo motor fixed to the bottom of the support plate. The output shaft of the servo motor extends to a reciprocating screw. Both ends of the reciprocating screw are helically driven with sliders that move in opposite directions. One end of the slider is fixed to a crossbeam. A protrusion on the crossbeam passes through the support plate and extends to a scraper. The protrusion on the crossbeam has a strip groove along the length of the support plate. An inclined surface is connected to the top of the scraper facing the center of the box.
2. The intelligent breeding and raising method for meat rabbits according to claim 1, characterized in that, The support plate has rectangular grooves at both ends, which are set along the edge of the support plate. A baffle is installed on the rectangular groove. One end of the baffle is connected to the support plate by a hinge near the side wall of the box. A side plate is connected to the bottom of the baffle by a third spring. The side plate and the support plate are integrally formed. When the servo motor is started, the slider drives the scrapers at both ends to move in opposite directions and pushes the feces on the support plate into the rectangular groove. The baffle rotates downward under the action of gravity and opens the rectangular groove, at which time the feces are poured out.
3. The intelligent breeding and raising method for meat rabbits according to claim 2, characterized in that, The third spring is inclined, and a collection box is provided below the rectangular groove and placed at the bottom of the support plate. The collection box is movable and pull-out, and a push handle is fixedly installed at one end of the outer wall of the collection box. The support plate and the collection box are connected by a fixed rod, and a receiving cavity connected to the third spring is formed between the collection box and the support plate.
4. The intelligent breeding and raising method for meat rabbits according to claim 1, characterized in that, The top of the housing is connected to a fixed pulley via a bending rod, and both ends of the fixed pulley are equipped with bearings connected to the bending rod. The lifting ring is connected to a pull rope by a traction fixation method, and a gap is formed between the tapered parts to be placed on the battery pack.
5. The intelligent breeding and raising method for meat rabbits according to claim 1, characterized in that, The connection between the cover and the screw conveyor is provided with a positioning hole and is locked and fixed by a stop pin. The screw conveyor is provided with screw blades that are adapted to it in the height direction.
6. The intelligent breeding and raising method for meat rabbits according to claim 5, characterized in that, The feed inlet of the screw conveyor is connected to the first trough, and both ends of the screw conveyor are fixed to the first trough by diagonal rods, and the screw blades are arranged vertically upward.