CN107125162B - Chicken fodder ration feeding device - Google Patents

Chicken fodder ration feeding device Download PDF

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Publication number
CN107125162B
CN107125162B CN201710516487.2A CN201710516487A CN107125162B CN 107125162 B CN107125162 B CN 107125162B CN 201710516487 A CN201710516487 A CN 201710516487A CN 107125162 B CN107125162 B CN 107125162B
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Prior art keywords
rotary
feed
semicircular
gear
feeding device
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CN107125162A (en
Inventor
孙晓燕
黄河
李鑫
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Shandong New Hope Liuhe Group Co Ltd
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Shandong New Hope Liuhe Group Co Ltd
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    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01KANIMAL HUSBANDRY; AVICULTURE; APICULTURE; PISCICULTURE; FISHING; REARING OR BREEDING ANIMALS, NOT OTHERWISE PROVIDED FOR; NEW BREEDS OF ANIMALS
    • A01K39/00Feeding or drinking appliances for poultry or other birds
    • A01K39/01Feeding devices, e.g. chainfeeders
    • A01K39/012Feeding devices, e.g. chainfeeders filling automatically, e.g. by gravity from a reserve
    • A01K39/0125Panfeeding systems; Feeding pans therefor

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  • Life Sciences & Earth Sciences (AREA)
  • Environmental Sciences (AREA)
  • Birds (AREA)
  • Animal Husbandry (AREA)
  • Biodiversity & Conservation Biology (AREA)
  • Feeding And Watering For Cattle Raising And Animal Husbandry (AREA)

Abstract

The invention provides a chicken feed quantitative feeding device, and belongs to the technical field of livestock and poultry quantitative feeding equipment. The invention has the beneficial effects that: the chicken feed quantitative feeding device realizes the automatic control of the quantification and punctual timing of the whole feeding process, and ensures that livestock and poultry can supplement enough feed; in addition, the rotary feed bin can rotate around the main shaft, so that feed in the rotary feed bin is accumulated above the feed discharging pipe under the action of centrifugal force, the feed discharging is convenient, and the feed is prevented from being accumulated at the position far away from the feed discharging port of the rotary feed bin for a long time and rotting is avoided.

Description

Chicken fodder ration feeding device
Technical Field
The invention relates to the technical field of quantitative livestock and poultry feeding equipment, in particular to a quantitative chicken feed feeding device.
Background
Large-scale chicken plant is at the in-process of breeding the chicken, the volume of puting in of fodder is very big, if throw in the fodder through manual operation, very waste time and energy, the fodder that now commonly used is thrown the material device and is adopted one and simple and easy throw the material device and throw the material, the device's capacity is certain, when throwing the material fill whole device can, the capacity of device can not adapt to the growth stage of chicken, only can reach the purpose of regulation through the form of changing the device, so the adaptability of device is not good. When chickens are bred, the feed feeding amount cannot be too much or too little, the feeding amount of the feed cannot be controlled by the conventional device according to each growth stage of the chickens, the feeding amount cannot be changed rapidly, the too little or too much feeding amount is easy to cause, and scientific breeding cannot be realized.
How to solve the above technical problems is the subject of the present invention.
Disclosure of Invention
The invention aims to provide a chicken feed quantitative feeding device.
The invention is realized by the following measures: the utility model provides a chicken fodder ration feeding device, includes the base, wherein be equipped with feed cylinder moving structure in the backup pad of base one side, feed cylinder moving structure top is equipped with feed bin under the rotation type, the top of feed bin is equipped with actuating mechanism under the rotation type.
The charging barrel moving structure comprises a semicircular supporting plate provided with an arc baffle, a rotary plate which is positioned above the semicircular supporting plate and is arranged concentrically with the semicircular supporting plate, a limiting rotary plate which is arranged below the rotary plate and connected to a rotary shaft at the center of the rotary plate, and a power rotary plate which is arranged on one side of the limiting rotary plate, wherein the rotary shaft at the center of the power rotary plate is coaxial with an output shaft of a driving motor positioned below the base.
The rotary type blanking bin is rectangular, a rotary hole and a notch are formed in the top surface of the rotary type blanking bin, and a blanking pipe communicated with the notch is arranged on the bottom surface of the rotary type blanking bin.
A feed port is formed in one side of the rotary blanking bin, an electric valve is arranged in the feed port and the blanking tube respectively, an electric control circuit of the electric valve is connected with a controller to form a control loop, and the electric valve is composed of a rotating shaft and a baffle plate, wherein the rotating shaft is connected with a gear reduction mechanism driven by a servo motor; since the servo motor driven gear reduction mechanism is well known to those skilled in the art, it is not described in detail.
The controller is a common timing control switch and consists of a switch circuit driven by a timer and a relay. The relay carries out on-off control to electric valve, and the time-recorder of controller is installed in the workshop that needs control, and the time-recorder is timed the time that needs the unloading and is closed electric valve when not needing the unloading. Since the timing control switch and the relay control circuit are well known to those skilled in the art, they will not be described in detail.
Actuating mechanism include the pivot with feed bin top surface under the rotation type notch matched with gear, with the rotatory gear that the gear leaned on and connects cup joints the circumference slewing mechanism of the upper segment of rotatory gear center department main shaft, circumference slewing mechanism include the centre bore with main shaft matched with swivel housing follows four connecting rods that the circumference of swivel housing was arranged set up the montant of connecting rod free end top surface sets up main epaxial drive gear, and be located swivel housing top articulates main epaxial toggle structure.
The shifting structure comprises a shifting rod, one end of the shifting rod is sleeved on the main shaft, the other end of the shifting rod is provided with a socket, the socket is matched with the vertical rod, the shifting structure also comprises a connecting rod A, one end of the connecting rod A is hinged to a connecting column on the top surface of the middle part of the shifting rod, a connecting rod at the other end of the connecting rod A is provided with a driving gear which is externally meshed with the transmission gear, and a connecting rod B is hinged between the connecting rod and; the driving gear is driven by a gear reduction mechanism driven by a servo motor, and the gear reduction mechanism driven by the servo motor is well known to engineering technicians in the field and is not described in detail.
A conveying belt is arranged below one end of the semicircular supporting plate and is driven by a conveying mechanism;
the arc-shaped baffle plate is provided with a hollow cylindrical material cup bin for containing material cups.
Four semicircular grooves are formed in the periphery of the rotary disc at equal intervals, and the semicircular grooves and the arc-shaped baffle plate form a limiting groove for locking the material cup.
The limiting rotary disc is provided with semicircular guide grooves at equal intervals, and a guide port is formed between every two adjacent semicircular guide grooves.
The power turntable is provided with a semicircular opening with the radius equal to that of the guide opening, the bottom surface of the power turntable is provided with a driving lever I, the top surface of the free end of the driving lever I is connected with a stop lever, and the driving lever I is arranged along the radial direction of the semicircular opening.
The gear and the rotating gear are equal in diameter.
The invention has the beneficial effects that: according to the chicken feed quantitative feeding device, chicken feed is added into a rotary feeding bin, a socket of a deflector rod of a toggle structure is matched with a vertical rod, so that a rotary gear and a main shaft are driven to rotate together, the gear rotates along the circumferential direction of the rotary gear, a driving motor is started, a stop lever connected with the top surface of the free end of the deflector rod I moves into a guide port of a limiting rotary disc, a limiting disc is driven to rotate, so that the rotary disc and the limiting disc rotate synchronously, a feed cup is arranged in a semicircular groove on the rotary disc, when the timing time of a timer reaches a set time, a feeding pipe corresponds to an empty feed cup, an electric valve in the feeding pipe is opened, the timer calculates the feeding time again, and when the feed in the feed cup reaches a set amount, the electric valve in the feeding pipe is driven by the controller is closed, and the feed is fed into the next feed cup in a; the cup filled with the feed is conveyed to the conveyer belt through the semicircular groove on the turntable; the feed can be fed into the feed cup from the feeding pipe at regular time, so that the quantification of the whole feeding process is realized, the automatic control of timing is realized at regular time, and the sufficient feed can be supplemented for the livestock and poultry; in addition, the rotary feed bin rotates around the main shaft, so that feed in the rotary feed bin is accumulated above the feed discharging pipe under the action of centrifugal force, the feed discharging is convenient, and the feed is prevented from being accumulated at the position far away from the feed discharging port of the rotary feed bin for a long time and rotting is avoided.
Drawings
Fig. 1 is a schematic overall structure diagram of an embodiment of the present invention.
Fig. 2 is a schematic structural diagram of a connection relationship between the rotary blanking bin and the driving mechanism in the embodiment of the invention.
Fig. 3 is a schematic structural diagram of the driving mechanism after hiding the toggle structure in the embodiment of the present invention.
Fig. 4 is a schematic structural diagram of a semicircular supporting plate in an embodiment of the invention.
Fig. 5 is a schematic structural diagram of a positional relationship between the turntable and the limiting turntable according to an embodiment of the present invention.
Fig. 6 is a schematic structural diagram of a positional relationship between the turntable and the limiting turntable according to an embodiment of the present invention.
Fig. 7 is a schematic structural diagram of a power turntable according to an embodiment of the present invention.
Wherein the reference numerals are: 1. a base; 2. a support plate; 3. a cartridge moving structure; 30. a semicircular supporting plate; 300. an arc-shaped baffle plate; 301. a conveyor belt; 31. a turntable; 32. a limiting turntable; 33. a power turntable; 3000. A material cup; 3001. a hollow cylindrical material cup bin; 310. a semicircular groove; 320. a semicircular guide groove; 321. a guide port; 330. a semicircular opening; 331. a deflector rod I; 3310. a gear lever; 4. a rotary discharging bin; 5. a drive mechanism; 50. a gear; 51. a rotating gear; 510. a main shaft; 52. a rotating sleeve; 53. a connecting rod; 530. a vertical rod; 511. a transmission gear; 54. a toggle structure; 540. a deflector rod; 5400. a socket; 541. a connecting rod A; 5410. a connecting rod; 542. a drive gear; 543. a connecting rod B; 6. and (5) discharging the material pipe.
Detailed Description
In order to clearly illustrate the technical features of the present solution, the present solution is explained below by way of specific embodiments.
Referring to fig. 1 to 7, the present invention is: the utility model provides a chicken fodder ration feeding device, includes base 1, wherein, is equipped with feed cylinder removal structure 3 in the backup pad 2 of base 1 one side, and feed cylinder removal structure 3 top is equipped with feed bin 4 under the rotation type, and the top of feed bin 4 is equipped with actuating mechanism 5 under the rotation type.
The charging barrel moving structure 3 comprises a semicircular supporting plate 30 provided with an arc baffle 300, a rotary disc 31 which is positioned above the semicircular supporting plate 30 and is arranged concentrically with the semicircular supporting plate 30, a limiting rotary disc 32 which is arranged below the rotary disc 31 and connected to the central rotating shaft of the rotary disc 31, and a power rotary disc 33 which is arranged on one side of the limiting rotary disc 32, wherein the central rotating shaft of the power rotary disc 33 is coaxial with the output shaft of a driving motor which is positioned below the base 1.
Feed bin 4 is the rectangle form under the rotation type, and rotatory hole and notch have been seted up to the top surface of feed bin 4 under the rotation type, and 4 bottom surfaces of feed bin are equipped with the unloading pipe 6 that is linked together with the notch under the rotation type.
A feed inlet is formed in one side of the rotary type blanking bin 4, electric valves are respectively arranged in the feed inlet and the blanking pipe 6, electric control circuits of the electric valves are connected with a controller to form a control loop, and each electric valve is composed of a rotating shaft and a baffle plate, wherein the rotating shaft is connected with a gear reduction mechanism driven by a servo motor; since the servo motor driven gear reduction mechanism is well known to those skilled in the art, it is not described in detail.
The controller is a common timing control switch and consists of a switch circuit driven by a timer and a relay. The relay carries out on-off control to electric valve, and the time-recorder of controller is installed in the workshop that needs control, and the time-recorder is timed the time that needs the unloading and is closed electric valve when not needing the unloading. Since the timing control switch and the relay control circuit are well known to those skilled in the art, they will not be described in detail.
The driving mechanism 5 comprises a gear 50 with a rotating shaft matched with a notch on the top surface of the rotary discharging bin 4, a rotating gear 51 abutted against the gear 50, a circumferential rotating mechanism sleeved on the upper section of a main shaft 510 at the center of the rotating gear 51, the circumferential rotating mechanism comprises a rotating sleeve 52 with a central hole matched with the main shaft 510, four connecting rods 53 arranged along the circumference of the rotating sleeve 52, a vertical rod 530 arranged on the top surface of the free end part of each connecting rod 53, a transmission gear 511 arranged on the main shaft 510, and a toggle structure 54 positioned above the rotating sleeve 52 and hinged on the main shaft 510.
The toggle structure 54 comprises a toggle rod 540 with one end sleeved on the main shaft 510, the other end of the toggle rod 540 is provided with a socket 5400, the socket 5400 is matched with the vertical rod 530, the toggle rod A541 with one end hinged on a connecting column on the top surface of the middle part of the toggle rod 540 is also provided with a connecting rod 5410 at the other end of the connecting rod A541, a driving gear 542 externally meshed with the transmission gear 511 is arranged on the connecting rod 5410, and a connecting rod B543 is hinged between the connecting rod 5410 and; the driving gear 542 is driven by a gear reduction mechanism driven by a servo motor, which is well known to those skilled in the art and will not be described further.
A conveyor belt 301 is arranged below one end of the semicircular supporting plate 30, and the conveyor belt 301 is driven by a conveying mechanism;
a hollow cylindrical cup magazine 3001 accommodating cups 3000 is provided on the cowl 300.
Four semicircular grooves 310 are formed in the circumferential direction of the rotary disc 31 at equal intervals, and the semicircular grooves 310 and the arc-shaped baffle plate 300 form a limiting groove for locking the material cup 3000.
The limit turntable 32 is provided with semicircular guide grooves 320 at equal intervals, and a guide opening 321 is formed between adjacent semicircular guide grooves 320.
The power turntable 33 is provided with a semicircular opening 330 with the radius equal to that of the guide opening 321, the bottom surface of the power turntable 33 is provided with a shift lever I331, the top surface of the free end of the shift lever I331 is connected with a stop lever 3310, and the shift lever I331 is arranged along the radial direction of the semicircular opening 330.
The gear 50 is of the same diameter as the rotary gear 51.
When the invention is actually used: chicken feed is added into the rotary type blanking bin 4, a socket 5400 of a deflector rod 540 of a deflector structure 54 is matched with a vertical rod 530, so that a rotary gear 51 and a main shaft 510 are driven to rotate together, a gear 50 rotates along the circumferential direction of the rotary gear 51, a driving motor is started, a stop rod 3310 connected with the top surface of the free end of a deflector rod I331 moves into a guide port 321 of a limiting rotary disc 32, the limiting disc 32 is driven to rotate, the rotary disc 31 and the limiting disc synchronously rotate, a material cup 3000 is arranged in a semicircular groove 310 on the rotary disc 31, when the timing time of a timer reaches a set time, a blanking pipe 6 corresponds to an empty material cup 3000, an electric valve in the blanking pipe 6 is opened, the timer calculates the blanking time again, and when the material in the material cup 3000 reaches the set amount, the electric valve in the blanking pipe 6 is driven by the controller to be closed, and feed is injected into the next material cup 3000 in a circulating manner; the cup 3000 filled with the fodder is carried to the conveyer belt through the semicircular groove 310 on the turntable 31; feed can enter the feed cup 3000 from the blanking pipe 6 at regular time.
The technical features of the present invention which are not described in the above embodiments may be implemented by or using the prior art, and are not described herein again, of course, the above description is not intended to limit the present invention, and the present invention is not limited to the above examples, and variations, modifications, additions or substitutions which may be made by those skilled in the art within the spirit and scope of the present invention should also fall within the protection scope of the present invention.

Claims (7)

1. A chicken feed quantitative feeding device comprises a base (1), and is characterized in that a material cylinder moving structure (3) is arranged on a supporting plate (2) on one side of the base (1), a rotary type discharging bin (4) is arranged above the material cylinder moving structure (3), and a driving mechanism (5) is arranged at the top of the rotary type discharging bin (4);
the rotary blanking bin (4) is rectangular, a rotary hole and a notch are formed in the top surface of the rotary blanking bin (4), and a blanking pipe (6) communicated with the notch is arranged on the bottom surface of the rotary blanking bin (4);
the driving mechanism (5) comprises a gear (50) with a rotating shaft matched with the notch on the top surface of the rotary discharging bin (4), a rotating gear (51) abutted against the gear (50), a circumferential rotating mechanism sleeved on the upper section of a main shaft (510) at the center of the rotating gear (51), and the circumferential rotating mechanism comprises a rotating sleeve (52) with a central hole matched with the main shaft (510), four connecting rods (53) arranged along the circumferential direction of the rotating sleeve (52), a vertical rod (530) arranged on the top surface of the free end part of each connecting rod (53), a transmission gear (511) arranged on the main shaft (510), and a shifting structure (54) which is positioned above the rotating sleeve (52) and hinged on the main shaft (510);
toggle structure (54) include that one end cup joints driving lever (540) on main shaft (510), socket (5400) have been seted up to the other end of driving lever (540), socket (5400) with montant (530) cooperate, still include that one end articulates connecting rod A (541) on the spliced pole on driving lever (540) middle part top surface, be equipped with on connecting rod (5410) of the other end of connecting rod A (541) with drive gear (511) outer toothing's drive gear (542) connecting rod (5410) with it has connecting rod B (543) to articulate between main shaft (510).
2. The chicken feed quantitative feeding device according to claim 1, wherein the feed barrel moving structure (3) comprises a semicircular supporting plate (30) provided with an arc-shaped baffle plate (300), a rotary plate (31) which is positioned above the semicircular supporting plate (30) and is concentric with the semicircular supporting plate (30), a limiting rotary plate (32) which is arranged below the rotary plate (31) and is connected to a central rotating shaft of the rotary plate (31), and a power rotary plate (33) which is arranged on one side of the limiting rotary plate (32), wherein the central rotating shaft of the power rotary plate (33) is coaxial with an output shaft of a driving motor which is positioned below the base (1).
3. The chicken feed quantitative feeding device according to claim 2, characterized in that a conveyor belt (301) is arranged below one end of the semicircular supporting plate (30), and the conveyor belt (301) is driven by a conveying mechanism;
the arc-shaped baffle (300) is provided with a hollow cylindrical material cup bin (3001) containing a material cup (3000).
4. The chicken feed quantitative feeding device according to claim 3, characterized in that four semicircular grooves (310) are formed in the circumferential direction of the rotary disc (31) at equal intervals, and the semicircular grooves (310) and the arc-shaped baffle (300) form a limiting groove for locking the feed cup (3000).
5. The chicken feed quantitative feeding device according to claim 4, characterized in that the limiting rotary disc (32) is provided with semicircular guide grooves (320) at equal intervals, and a guide opening (321) is arranged between the adjacent semicircular guide grooves (320).
6. The chicken feed quantitative feeding device according to claim 5, wherein a semicircular opening (330) with a radius equal to that of the guide opening (321) is arranged on the power rotary disc (33), a shift lever I (331) is arranged on the bottom surface of the power rotary disc (33), a stop lever (3310) is connected to the top surface of the free end of the shift lever I (331), and the shift lever I (331) is arranged along the radial direction of the semicircular opening (330).
7. A chicken feed dosing device according to claim 1, characterized in that the gear wheel (50) and the rotating gear wheel (51) are of equal diameter.
CN201710516487.2A 2017-06-29 2017-06-29 Chicken fodder ration feeding device Active CN107125162B (en)

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CN107889778A (en) * 2017-10-18 2018-04-10 安徽工程大学 Device is thrown in a kind of quota of feed spray for aquaculture
CN108719135A (en) * 2018-05-31 2018-11-02 山东新希望六和集团有限公司 A kind of meat duck cultivation feed timing, quantitative delivery apparatus
CN109089738B (en) * 2018-08-22 2021-12-07 孙瑞秀 Environment-friendly mixing arrangement for domestic fungus cultivation material
CN108812074B (en) * 2018-08-22 2021-12-07 孙瑞秀 Environment-friendly mixing arrangement for domestic fungus cultivation material
CN111086853B (en) * 2019-11-06 2020-10-27 温州职业技术学院 Non-stop feeding assembly of workpiece cleaning equipment
CN111633452B (en) * 2020-06-19 2022-02-18 南京师范大学泰州学院 Power distribution control cabinet plate processing equipment and processing method thereof

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DD295073A5 (en) * 1990-06-19 1991-10-24 Ingenieurhochschule Berlin-Wartenberg,De DEVICE AND METHOD FOR DOSING GIANT-DRYING DRIED FEED
CN2170624Y (en) * 1993-07-23 1994-07-06 邱德深 Poultry (domestic animal) feed quantitative thrower
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