Scientific broiler chicken breeding method and intelligent broiler chicken feeding machine

By designing an intelligent broiler feeder, the hexagonal feeding space and arc-shaped elastic sheets are used to spread the grains, combined with hollow tubes and baffles to reduce drops, the problems of uneven distribution of grains and snatching chickens are solved, and the uniform nutrition supply and healthy development of broilers are achieved.

CN119924254AInactive Publication Date: 2025-05-06连云港市赣榆区畜牧兽医站
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Patent Information

Application Number
CN202510252615.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-05
Publication Date
2025-05-06
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

When the existing feeders pour the grain into the feeding tank, the grain distribution is uneven, causing the chickens to snatch it up, causing the grain to fall and waste, affecting the nutrition and development of the broiler.

Method used

By designing an intelligent broiler feeder, the feeding space and curved elastic sheets in the hexagonal state can make the grain spread at the outlet, avoid accumulation, and reduce the grain drop through hollow tubes and baffles to ensure that the chickens eat evenly.

Benefits of technology

It effectively avoids the accumulation of grains and the snatching of chickens, reduces the waste of grains, and ensures the even nutritional supply and healthy development of broilers.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of feeding machines, in particular to a scientific broiler chicken breeding method and an intelligent broiler chicken feeding machine. According to the scientific broiler chicken breeding method, the feeding machine is scientifically controlled to feed the chickens regularly and quantitatively according to the number of the chicken flocks, sand is scientifically fed, it is ensured that the chicken flocks are sufficient in nutrition and convenient to digest food, when the feeding machine is used for feeding, grains and sand are poured into a hexagonal feeding space, the feeding range of the chicken flocks is widened, and meanwhile the feeding efficiency is improved. Cereals fall on the arc-shaped faces of the elastic pieces and are scattered on the surfaces of the elastic pieces in the direction away from the center of the discharging pipe, and the situation that the cereals are accumulated in the local area of the feeding space, and consequently chicken flocks are driven up is avoided.
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Description

Technical Field

[0001] The invention relates to the technical field of feeders, and in particular to a scientific broiler breeding method and an intelligent broiler feeder. Background Art

[0002] With the development of scale and automation in the chicken farming industry, scientific broiler farming has become the mainstream in the chicken farming industry. In scientific broiler farming, in order to improve farming efficiency and feeding quality, avoid low efficiency and uneven feeding of artificial feeding, which leads to reduced nutrition of broilers and affects the development of broilers, etc., automatic feeders are usually used to carry out timed and quantitative feeding according to the number of chickens.

[0003] However, when the grains flow out from the discharge port of the automatic feeder into the feeding trough, the grains are unevenly distributed, that is, the grains are piled up at the discharge port and the grains are in a triangular shape in the feeding trough. When the chickens are eating, they will preferentially gather at the position where there are more grains in the feeding trough, causing the chickens to scramble for the grains, resulting in a large amount of grain falling and being wasted, causing malnutrition and developmental problems in some broilers. Summary of the invention

[0004] In order to overcome the shortcomings of existing feeders that when pouring grains into the feeding trough, the grains accumulate at the discharge port, causing the chickens to scramble for them, resulting in the grains falling and being wasted, and causing malnutrition and affecting the development of some broilers, the present invention provides a scientific broiler breeding method and an intelligent broiler feeder.

[0005] A scientific broiler breeding method: scientifically control the timing and quantitative feeding of the feeder according to the number of chickens, and scientifically feed sand, control the breeding density, reasonably plan the breeding space, regularly adjust the breeding density, regularly check and clean the chicken pen, regularly clean and disinfect, regularly check the health of the chickens every day, promptly discover and deal with abnormal situations, record the growth data of the chickens, feed consumption and disease occurrence, etc., in order to analyze and adjust the breeding management measures.

[0006] An intelligent broiler feeder comprises a feed barrel, a mixer and a discharge pipe; the feed barrel is fixedly connected to the mixer; the feed barrel is fixedly connected to and connected to the discharge pipe; it also comprises rubber strips, elastic sheets, reels, ropes and guide frames; a plurality of rubber strips are fixedly connected to the discharge pipe, and the ends of two adjacent rubber strips away from the discharge pipe are combined in a flared shape; an elastic sheet is fixedly connected between each two adjacent rubber strips, and the elastic sheet is arc-shaped, and the discharge port of the discharge pipe is opposite to the arc-shaped surface of the corresponding elastic sheet; a plurality of reels are installed on the feed barrel; each reel reels a rope; the other ends of all the ropes are fixedly connected to the corresponding ends of the rubber strips; a guide frame is fixedly connected to the discharge pipe, and a plurality of limit grooves are provided on the guide frame, and all the ropes are located in the corresponding limit grooves.

[0007] Furthermore, it also includes a camera; a plurality of cameras are fixedly connected to the bottom of the discharge pipe.

[0008] Furthermore, it also includes a hollow tube; a hollow tube is fixedly connected between every two adjacent rubber strips, the hollow tube is a foldable tube, a fold is arranged on the hollow tube, and all the hollow tubes are fixedly connected to the corresponding elastic sheet.

[0009] Furthermore, it also includes a baffle; each hollow tube is fixed with a baffle on one side facing the center of the discharge pipe, and all the baffles are arranged obliquely downward toward the center of the discharge pipe, and all the baffles are foldable.

[0010] Furthermore, the rubber strip protrudes from the surface of the elastic sheet.

[0011] Furthermore, it also includes a circular plate and an arc-shaped cover; the circular plate is fixedly connected to the discharge pipe; and the arc-shaped cover is fixedly connected to the bottom of the circular plate.

[0012] Furthermore, it also includes an arc-shaped piece; the arc-shaped piece is fixedly connected inside the arc-shaped cover, and the arc-shaped piece is in a circular ring shape.

[0013] Furthermore, it also includes an electric annular guide rail, a moving block, a DD motor, a second barrel, a round rod, a paddle plate and a baffle plate; the electric annular guide rail is fixedly connected to the outer side of the discharge pipe; the moving block is slidably connected to the electric annular guide rail; the moving block is fixedly connected to the DD motor; the moving block is detachably connected to the second barrel; a round rod is rotatably connected inside the second barrel, and the upper end of the round rod is detachably connected to the rotating part of the DD motor; a number of paddle plates are fixedly connected to the round rod; two symmetrically arranged baffle plates are fixedly connected to the bottom of the round rod, all of which are in contact with the inner bottom of the second barrel, and two symmetrically arranged leakage groups are provided at the inner bottom of the second barrel, each of which is composed of a number of circular holes, and the baffle plates and the leakage groups are staggered.

[0014] Furthermore, it also includes a guide plate; the bottom of the second barrel is fixedly connected with the guide plate, and a plurality of circular holes are opened on the guide plate.

[0015] The present invention has the following advantages: the present invention increases the feeding range of the chickens by pouring grains and sand into a hexagonal feeding space. At the same time, the grains are dropped onto the arc surface of the elastic sheet, so that the grains are scattered on the surface of the elastic sheet away from the center of the discharge pipe, thereby avoiding the grains from accumulating in a local area of ​​the feeding space and causing the chickens to scramble for them.

[0016] The present invention blocks the edge of the elastic sheet by a hollow tube, so that when the chickens are eating, it is reduced that the grains fall out from the edge. At the same time, a blocking sheet is provided, and all the blocking sheets are arranged obliquely downward toward the center of the discharge pipe, so that the grains are kept at a certain distance from the edge of the hollow tube, making it easier for the chickens to see the grains. At the same time, by making the rubber strip protrude from the surface of the elastic sheet, it is prevented that when the grains fall from the discharge port to the surface of the elastic sheet, the grains slide onto the surface of the adjacent elastic sheet.

[0017] The present invention arranges a guide plate so that the sand is discharged from the first circular hole and first falls onto the guide plate, and then falls into the feeding space through the second circular hole on the guide plate. That is, by arranging the guide plate and the second circular hole, the sand can fall into various areas of the feeding space, which is beneficial for the chickens to eat the sand when eating. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 This is a schematic diagram of the structure disclosed by the intelligent broiler feeder of the present invention; Figure 2 It is a structural cross-sectional view of the arc-shaped cover and the arc-shaped sheet disclosed by the intelligent broiler feeder of the present invention; Figure 3 It is a structural cross-sectional view of the barrel 2 disclosed by the intelligent broiler feeder of the present invention; Figure 4 for Figure 3 A magnified image of the area at A; Figure 5 It is a structural schematic diagram of the guide plate disclosed by the intelligent broiler feeder of the present invention; Figure numbers: 1-barrel one, 2-mixer, 3-discharging pipe, 4-rubber strip, 5-elastic sheet, 6-reel, 7-rope, 8-guide frame, 9-camera, 10-hollow tube, 11-baffle, 12-round plate, 13-arc cover, 14-arc sheet, 15-electric circular guide rail, 16-moving block, 17-DD motor, 18-barrel two, 19-round rod, 20-paddle plate, 21-baffle, 22-guide plate, 31-discharging port, 81-limiting groove, 1801-round hole one, 2201-round hole two. DETAILED DESCRIPTION

[0019] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0020] Example 1 A scientific broiler breeding method: scientifically control the timing and quantitative feeding of the feeder according to the number of chickens, and scientifically feed sand, control the breeding density, reasonably plan the breeding space, regularly adjust the breeding density, regularly check and clean the chicken pen, regularly clean and disinfect, regularly check the health of the chickens every day, promptly discover and deal with abnormal situations, record the growth data of the chickens, feed consumption and disease occurrence, etc., in order to analyze and adjust the breeding management measures.

[0021] An intelligent broiler feeding machine, such as Figure 1-Figure 3 As shown, it includes a barrel 1, a mixer 2 and a discharge pipe 3, six discharge ports 31 are arranged at the bottom of the discharge pipe 3, and an electric switch door is arranged inside the discharge pipe 3 to control the opening and closing of the discharge ports 31; the barrel 1 is bolted to the mixer 2; the barrel 1 is fixedly connected to and communicated with the discharge pipe 3, and a gravity sensor is arranged between the barrel 1 and the discharge pipe 3; It also includes a rubber strip 4, an elastic sheet 5, a reel 6, a rope 7 and a guide frame 8; six rubber strips 4 distributed in an annular shape are fixedly connected to the discharge pipe 3, and the ends of two adjacent rubber strips 4 away from the discharge pipe 3 are combined in a flared shape; an elastic sheet 5 is fixedly connected between each two adjacent rubber strips 4, and the elastic sheet 5 is arc-shaped, and the discharge port 31 of the discharge pipe 3 is directly opposite to the arc surface of the corresponding elastic sheet 5; six reels 6 distributed in an annular shape are bolted to the barrel 1; each reel 6 reels a rope 7; the other ends of all ropes 7 are fixedly connected to the corresponding ends of the rubber strip 4; a guide frame 8 is fixedly connected to the discharge pipe 3, and six limit grooves 81 are opened on the guide frame 8, and all ropes 7 are located in the corresponding limit grooves 81, and the limit grooves 81 are used to limit the deflection of the rope 7; the reel 6 is built-in with a timing module, a control module, a servo motor and a reeling roller, and the rope 7 is reeled by the reeling roller, and the discharge pipe 3 is also provided with a timing module and a control module.

[0022] It also includes a camera 9; three cameras 9 are fixedly connected to the bottom of the discharge pipe 3.

[0023] It also includes a hollow tube 10 ; a hollow tube 10 is fixedly connected between every two adjacent rubber strips 4 , the hollow tube 10 is a foldable tube, a fold is provided on the hollow tube 10 , and all the hollow tubes 10 are fixedly connected to the corresponding elastic sheet 5 .

[0024] It also includes a baffle 11; each hollow tube 10 is fixedly connected to a baffle 11 on one side facing the center of the discharge pipe 3, and all the baffles 11 are arranged obliquely downward toward the center of the discharge pipe 3, and all the baffles 11 are foldable.

[0025] The rubber strip 4 protrudes from the surface of the elastic sheet 5 .

[0026] It also includes a circular plate 12 and an arc-shaped cover 13 ; the circular plate 12 is fixedly connected to the discharge pipe 3 ; and the arc-shaped cover 13 is fixedly connected to the bottom of the circular plate 12 .

[0027] The arc-shaped cover 13 further includes an arc-shaped piece 14 ; the arc-shaped piece 14 is fixedly connected to the inside of the arc-shaped cover 13 , and the arc-shaped piece 14 is in a circular ring shape.

[0028] When the present invention is in use, the loading work is first carried out: the lid of the barrel 1 is opened manually, the grains are poured into the barrel 1 and filled, and then the lid is closed, and the control button on the mixer 2 is manually used to control the mixer 2 to stir the grains evenly. The mixer 2 is composed of a servo motor and a stirring rod. When the mixer 2 is in use, the servo motor controls the stirring rod to rotate to stir the grains. After the grains are stirred evenly, the feeding work is carried out.

[0029] The feeding process is as follows: all the reels 6 automatically lower the rope 7, the rubber strip 4 and the elastic sheet 5 lose the restriction of the rope 7, and form a Figure 1 The feeding space is in a hexagonal state as shown, and then the electric switch door in the discharge pipe 3 is opened, so that the discharge port 31 is opened, and the evenly stirred grains flow out from the discharge port 31 and fall onto the elastic sheet 5. Since the discharge port 31 is directly opposite to the curved surface of the elastic sheet 5, when the grains fall onto the curved surface of the elastic sheet 5, they will scatter away from the center of the discharge pipe 3, so that the grains are dispersed on the surface of the elastic sheet 5, avoiding the grains from accumulating in a local area of ​​the feeding space and causing the chickens to scramble for them, that is, avoiding the waste of a large amount of grains, resulting in the problem of malnutrition affecting the development of some broilers, and by making the feeding space hexagonal state, improving the feeding range of the chickens, and blocking the edge of the elastic sheet 5 by the hollow tube 10, so that when the chickens are eating, the grains are reduced from falling out from the edge. At the same time, a blocking sheet 11 is provided, and all the blocking sheets 11 are arranged obliquely downward toward the center of the discharge pipe 3, so that the grains are kept at a certain distance from the edge of the hollow tube 10, making it easier for the chickens to see the grains. At the same time, by making the rubber strip 4 protrude from the surface of the elastic sheet 5, when the grains fall from the discharge port 31 to the surface of the elastic sheet 5, the grains are prevented from sliding to the surface of the adjacent elastic sheet 5, resulting in different amounts of grains on the surface of each elastic sheet 5, that is, avoiding the problem of accumulation.

[0030] According to scientific breeding of chickens, in the existing breeding, grains are fed regularly and quantitatively according to the number of chickens in the free-range area. However, in order to avoid discharging a certain amount of grains into the elastic sheet 5 at one time, causing the problem of grains piling up on the elastic sheet 5, a small amount of grains is put in each time, that is, the camera 9 monitors that the grains fill the feeding space. The camera 9 controls the electric switch door in the discharge pipe 3 to close, and when the camera 9 observes that there is a small amount of grains left, the camera 9 controls the electric switch door in the discharge pipe 3 to open and continue to discharge the grains, and so on and so forth until the certain amount of grains are discharged. In addition, by discharging the certain amount of grains in multiple times, the chickens' appetite can also be avoided. In the worst case, a large amount of grain remains in the feeding space; it should be noted that the winder 6 is equipped with a timing module, a control module, a servo motor and a winding roller, the rope 7 is wound by the winding roller, the discharge pipe 3 is provided with a timing module and a control module, and a gravity sensor is provided between the barrel 1 and the discharge pipe 3. When feeding, for example, 7 o'clock in the morning, 12 o'clock in the afternoon and 5 o'clock in the afternoon, the specific time can be preset manually, the timing modules on the winder 6 and the discharge pipe 3 trigger the control module, and the control module in the winder 6 drives the servo motor to drive the winding roller to rotate to release the winder 6. The maximum release length of the rope 7 is to make the rubber strip 4 and the elastic sheet 5 form a Figure 1 In the state shown, the rubber strip 4 and the elastic sheet 5 form a Figure 1 After the state shown, the servo motor stops rotating, and the control module in the discharge pipe 3 opens the electric switch door to open the discharge port 31 for timed feeding; during the process of the camera 9 monitoring the grains, when the grains fill the feeding space or there is a small amount of grains left, the camera 9 transmits a control signal to the control module on the discharge pipe 3, and the control module controls the electric switch door in the material pipe 3 to open and close; through the gravity sensor and control module arranged between the barrel 1 and the discharge pipe 3, when the weight of the grains put into the feeding space reaches a certain amount, the gravity sensor triggers the control module on the discharge pipe 3 to close the electric switch door in the material pipe 3 for quantitative feeding. It should be noted that the weight of the material pipe 3 and its connecting parts is reset to zero on the gravity sensor, that is, the weight monitored by the gravity sensor is the weight of the grains.

[0031] Although a fixed amount of grain is discharged in multiple times, it is inevitable that a small amount of grain will remain in the feeding space when the chickens have a poor appetite, which will cause insects and mice to steal the grains when they are active at night. Insects and mice carry more pathogens, which can easily spread to the grains after contacting the food, increasing the probability of the chickens getting sick after eating, affecting the health of the chickens. Therefore, when the chickens finish eating at 5 pm, all the reels 6 automatically reel in the rope 7. The specific operation is to trigger the control module through the built-in timing module of the reel 6 to reverse the servo motor and make the reel roller reel in the rope 7. When the rope 7 is reeled, it will pull the corresponding rubber strip 4 close to the discharge pipe 3, and the pulled rubber strip 4 will move. The rubber strips 4 are gradually bent, and since the ends of the two adjacent rubber strips 4 away from the discharge pipe 3 are combined in a flared shape, as the rubber strips 4 are gradually bent, the distance between the two adjacent rubber strips 4 will gradually decrease, and the elastic sheet 5 between the two adjacent rubber strips 4 will also shrink accordingly, until the connecting end of the rope 7 and the rubber strip 4 is in contact with the inner side of the arc cover 13, and the servo motor built into the winder 6 stops reversing, and the remaining grains are wrapped, thereby preventing insects and mice from stealing and causing the problem of germ transmission. At the same time, by arranging an arc sheet 14 on the inner side of the arc cover 13, when the connecting end of the rope 7 and the rubber strip 4 enters the inner side of the arc cover 13, it first contacts the arc sheet 14, and as the rope 7 continues to pull the rubber Strip 4, so that the connecting end of the rope 7 and the rubber strip 4 presses the arc piece 14 obliquely upward, so that the arc piece 14 drives the edge of the arc cover 13 to turn downward, so that the connecting end of the rope 7 and the rubber strip 4 is in close contact with the arc piece 14, and at the same time, the edge of the arc cover 13 covers the edge of the hollow tube 10, further avoiding the problem of insects and mice stealing. It should be noted that in the process of the rope 7 pulling the rubber strip 4 to bend upward, the hollow tube 10 and the baffle 11 are gradually folded together as the elastic sheet 5 shrinks, and finally all are located in the arc cover 13; it should be noted that if a large amount of grains remain in the feeding space, the elastic sheet 5 cannot wrap the grains, and it also affects the shrinkage of parts such as the elastic sheet 5; it should be noted that , when there is a small amount of grain remaining in the feeding space, the gravity sensor records the weight of the remaining grain. When the subsequent quantitative feeding is performed, the gravity sensor superimposes the weight of the remaining grain and the weight of the feeding. When the weight of the remaining grain and the weight of the feeding are superimposed to the quantitative amount, the gravity sensor closes the electric switch door in the material tube 3 through the control module; it should be noted that the number of turns that the servo motor forces the winding roller to release the rope 7 is consistent with the number of turns that the servo motor forces the winding roller to wind up the rope 7, and the self-locking function of the servo motor is used to prevent the winding roller from rotating under the influence of the rubber strip 4, the elastic sheet 5 and the winding rope 7, that is, to prevent the winding rope 7 from being released privately and the rubber strip 4 and the elastic sheet 5 from falling privately.

[0032] Example 2 On the basis of Example 1, Figure 2-Figure 5As shown, it also includes an electric annular guide rail 15, a moving block 16, a DD motor 17, a barrel 18, a round rod 19, a paddle plate 20 and a baffle plate 21; the outer side of the discharge pipe 3 is fixedly connected to the electric annular guide rail 15; the moving block 16 is slidably connected to the electric annular guide rail 15; the moving block 16 is fixedly connected to the DD motor 17; the moving block 16 is bolted to the barrel 18; the barrel 18 is rotatably connected to the round rod 19, and the upper end of the round rod 19 is rotatably connected to the DD motor 17 The round rod 19 is detachably connected; a plurality of paddles 20 are fixedly connected to the round rod 19; two symmetrically arranged baffles 21 are fixedly connected to the bottom of the round rod 19, and all the baffles 21 are in contact with the bottom of the barrel 18. The bottom of the barrel 18 is provided with two symmetrically arranged leakage groups, each of which is composed of a plurality of circular holes 1801, and the baffles 21 and the leakage groups are staggered; a control module is arranged on the DD motor 17; a gravity sensor is arranged on the inner bottom surface of the barrel 18.

[0033] The guide plate 22 is fixedly connected to the bottom of the barrel 18, and a plurality of circular holes 2201 are formed on the guide plate 22.

[0034] Taking into account that chickens have no teeth and cannot chew food, they can only swallow food directly. Eating sand can help chickens digest grains better, and the sand is mixed with food to grind the food, thereby helping chickens to digest and absorb better. At the same time, it can also improve the egg production rate of chickens and increase the weight of eggs. Therefore, when working, the sand is first filled in the barrel 18. When discharging grains, the DD motor 17 is controlled to drive the round rod 19, the paddle plate 20 and the baffle plate 21 to rotate, so that the baffle plate 21 no longer blocks the round hole 1801, and the sand falls from the round hole 1801 to the surface of the feeding space formed by the rubber strip 4 and the elastic sheet 5. At the same time, the sand is The plate 20 stirs the sand in the barrel 18 to prevent the sand from clumping due to long-term storage. At the same time, the electric annular guide rail 15 is controlled to make the moving block 16 drive the DD motor 17 and the barrel 18 to rotate, so that the sand falls evenly on the surface of the feeding space formed by the rubber strip 4 and the elastic sheet 5. At the same time, by setting the guide plate 22, the sand is discharged from the circular hole 1801 and first falls on the guide plate 22, and then falls into the feeding space through the circular hole 2201 on the guide plate 22. That is, by setting the guide plate 22 and the circular hole 2201, the sand can fall into various areas of the feeding space, which is beneficial for the chickens to eat the sand when eating.

[0035] After the chickens finish eating, the reel 6 reels the rope 7 to pull the rubber strip 4 to bend so that the elastic sheet 5 wraps the remaining grains and sand. In the process, the elastic sheet 5 squeezes the guide plate 22 and deforms and bends synchronously, and the guide plate 22 fits the surface of the elastic sheet 5.

[0036] It should be noted that sand is also part of the quantitative requirement for grains, that is, the amount of sand put into a certain amount of grains is also certain. In order to control the amount of sand discharged, a control module is set on the DD motor 17, and a gravity sensor is set on the bottom surface of the barrel 18. The weight of the sand in the barrel 18 is monitored by the gravity sensor. When the gravity sensor detects that the weight of the sand in the barrel 18 minus the original weight of the sand in the barrel 18 is equal to the quantitative discharge of sand, the gravity sensor triggers the control module on the DD motor 17 to make the baffle 21 block the circular hole 1801. When the grains are discharged at a fixed time, the timing module on the winder 6 and the discharge pipe 3 triggers the control module on the DD motor 17 to make the baffle 21 no longer block the circular hole 1801, so that the sand is discharged in a fixed amount.

[0037] Although the present disclosure has been shown and described with reference to specific exemplary embodiments of the present disclosure, it should be understood by those skilled in the art that various changes in form and details may be made to the present disclosure without departing from the spirit and scope of the present disclosure as defined by the appended claims and their equivalents. Therefore, the scope of the present disclosure should not be limited to the above-mentioned embodiments, but should be determined not only by the appended claims, but also by the equivalents of the appended claims.

Claims

1. A scientific broiler breeding method, characterized in that: The method is: scientifically control the timing and quantitative feeding of the feeder according to the number of chickens, and scientifically feed sand, control the breeding density, reasonably plan the breeding space, regularly adjust the breeding density, regularly check and clean the chicken coop, regularly clean and disinfect, regularly check the health of the chickens every day, promptly discover and deal with abnormal situations, record the chicken's growth data, feed consumption and disease occurrence, etc., in order to analyze and adjust the breeding management measures.

2. An intelligent broiler feeder, which is used for the step of scientifically controlling the timing and quantitative feeding of the feeder in the scientific broiler breeding method according to claim 1, characterized in that: The invention comprises a material barrel (1), a mixer (2) and a discharge pipe (3); the material barrel (1) is fixedly connected to the mixer (2); the material barrel (1) is fixedly connected to and communicates with the discharge pipe (3); and further comprises a rubber strip (4), an elastic sheet (5), a reel (6), a rope (7) and a guide frame (8); a plurality of rubber strips (4) are fixedly connected to the discharge pipe (3), and the ends of two adjacent rubber strips (3) away from the discharge pipe (3) are combined in a flared shape; an elastic sheet (5) is fixedly connected between each two adjacent rubber strips (4). The elastic sheet (5) is arc-shaped, and the discharge port (31) of the discharge pipe (3) is opposite to the arc-shaped surface of the corresponding elastic sheet (5); a plurality of reels (6) are installed on the barrel (1); each reel (6) reels a rope (7); the other ends of all the ropes (7) are fixedly connected to the ends of the corresponding rubber strips (4); a guide frame (8) is fixedly connected to the discharge pipe (3), and a plurality of limit grooves (81) are provided on the guide frame (8), and all the ropes (7) are located in the corresponding limit grooves (81).

3. The intelligent broiler feeder according to claim 2, characterized in that: It also includes a camera (9); a plurality of cameras (9) are fixedly connected to the bottom of the discharge pipe (3).

4. The intelligent broiler feeder according to claim 2, characterized in that: It also includes a hollow tube (10); a hollow tube (10) is fixedly connected between each two adjacent rubber strips (4); the hollow tube (10) is a foldable tube; a fold is provided on the hollow tube (10); and all the hollow tubes (10) are fixedly connected to the corresponding elastic sheet (5).

5. The intelligent broiler feeder according to claim 4, characterized in that: It also includes a baffle (11); each hollow tube (10) is fixedly connected to a baffle (11) on one side facing the center of the discharge tube (3), and all the baffles (11) are arranged obliquely downward toward the center of the discharge tube (3), and all the baffles (11) are foldable.

6. The intelligent broiler feeder according to claim 4, characterized in that: The rubber strip (4) protrudes from the surface of the elastic sheet (5).

7. The intelligent broiler feeder according to claim 1, characterized in that: It also includes a circular plate (12) and an arc-shaped cover (13); the circular plate (12) is fixedly connected to the discharge pipe (3); and the arc-shaped cover (13) is fixedly connected to the bottom of the circular plate (12).

8. The intelligent broiler feeder according to claim 7, characterized in that: It also includes an arc-shaped piece (14); the arc-shaped piece (14) is fixedly connected inside the arc-shaped cover (13), and the arc-shaped piece (14) is in a circular ring shape.

9. The intelligent broiler feeder according to claim 7, characterized in that: The electric annular guide rail (15), a moving block (16), a DD motor (17), a second barrel (18), a round rod (19), a paddle plate (20) and a baffle plate (21); the outer side of the discharge pipe (3) is fixedly connected to the electric annular guide rail (15); the moving block (16) is slidably connected to the electric annular guide rail (15); the moving block (16) is fixedly connected to the DD motor (17); the moving block (16) is detachably connected to the second barrel (18); the inner side of the second barrel (18) is rotatably connected to the round guide rail (15); The round rod (19) is provided with a plurality of paddles (20) fixedly connected to the round rod (19); the bottom of the round rod (19) is fixedly connected with two symmetrically arranged baffles (21), all of which are in contact with the inner bottom of the barrel (18); the inner bottom of the barrel (18) is provided with two symmetrically arranged material leakage groups, each of which is composed of a plurality of circular holes (1801), and the baffles (21) and the material leakage groups are arranged in an alternating manner.

10. The intelligent broiler feeder according to claim 9, characterized in that: It also includes a guide plate (22); the bottom of the second barrel (18) is fixedly connected to the guide plate (22), and a plurality of second circular holes (2201) are formed on the guide plate (22).