CN210445318U - Seeding formula driving feeding machine - Google Patents

Seeding formula driving feeding machine Download PDF

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Publication number
CN210445318U
CN210445318U CN201921267958.1U CN201921267958U CN210445318U CN 210445318 U CN210445318 U CN 210445318U CN 201921267958 U CN201921267958 U CN 201921267958U CN 210445318 U CN210445318 U CN 210445318U
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CN
China
Prior art keywords
hopper
travelling
kickoff
hoppers
feeding machine
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Expired - Fee Related
Application number
CN201921267958.1U
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Chinese (zh)
Inventor
张唯真
张志辉
刘圆
胡滨
李旭
杨海辉
杜红伟
张卫杰
孙志强
寇向阳
宋冰炎
李晨
毛晓琳
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Henan Winworld Livestock Equipment Co Ltd
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Henan Winworld Livestock Equipment Co Ltd
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Priority to CN201921267958.1U priority Critical patent/CN210445318U/en
Application granted granted Critical
Publication of CN210445318U publication Critical patent/CN210445318U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model provides a seeding formula driving feeding machine, the effectual present driving feeding machine that has solved needs the independent control, can cause every to breed the inhomogeneous problem of unloading between the cage. Including a plurality of walking frame, it is a plurality of horizontal fixed mounting has the hopper curb plate of two symmetry installations on the walking frame, two fixed mounting has a plurality of hoppers, and is a plurality of between the hopper curb plate the bottom of hopper is fixed mounting respectively has a plurality of hoppers, and is a plurality of rotate respectively in the hopper and install the setting gauge. The utility model realizes the movement of the travelling crane feeder by a plurality of travelling frames and travelling wheels on the travelling crane track; the feeding of all the cultivation cages is realized through a plurality of hoppers and discharge ports which are arranged on the side plates of the hoppers; the kick-out device is used, so that the hopper can evenly discharge materials, the condition of uneven feeding is avoided, and great convenience is brought to feeding work.

Description

Seeding formula driving feeding machine
Technical Field
The utility model relates to a livestock-raising equipment technical field specifically is a seeding formula driving feeding machine.
Background
With the development of science and technology, poultry raising gradually enters into an automatic, intensive and intelligent cage raising mode from an initial free-range mode, the cage raising mode can improve the density of poultry raising, save feed, prevent poultry epidemic diseases and the like, and various poultry feeding machines suitable for the cage raising mode continuously enter into the field of poultry raising for improving labor productivity.
However, the mechanization and automation level of poultry farming in China is still low at present, for example, some small-sized farms and farmers still adopt a feeding mode of manual feeding in a material tray, the mode needs manual feeding at regular time, the feeding is not uniform easily, the material tray is small, and when the poultry takes food, the poultry can be robbed and crowded, so that part of the poultry can not take food normally, and when the poultry is severe, fighting can be carried out, so that the poultry is dead.
And at some large-scale plants and raisers, then adopt automatic feeding machine to breed, install the driving track on breeding the cage promptly, then install the driving feeding machine on the driving track, make every layer of both sides of breeding the cage all have a hopper to come the feeding mode of reinforced in the trough of breeding the cage both sides, this kind of mode can save the manual work, avoid the poultry to laught and crowd, guarantee the normal feed of poultry, but because the feeding machine on breeding the cage is single control, the inevitable can cause the inhomogeneous condition of unloading between every breeding the cage, and all be equipped with the feeding machine on every breeding the cage, the cost has been increased to the manual work has been reduced, the later stage maintenance is comparatively loaded down with trivial details.
Therefore, the utility model provides a seeding type traveling crane feeder to solve the problem.
SUMMERY OF THE UTILITY MODEL
To the above situation, for overcoming prior art's defect, the utility model provides a seeding formula driving feeding machine, the effectual present driving feeding machine that has solved needs the independent control, can cause every to breed the inhomogeneous problem of unloading between the cage.
The utility model provides a seeding formula driving feeding machine, its characterized in that, is including a plurality of walking framves, it is a plurality of horizontal fixed mounting has the hopper curb plate of two symmetry installations on the walking frame, two fixed mounting has a plurality of hoppers, a plurality of between the hopper curb plate the bottom of hopper is fixed mounting respectively has a plurality of play hoppers, and is a plurality of rotate respectively in the play hopper and install the setting gauge.
Preferably, it is a plurality of the walking frame is the triangle-shaped structure respectively, rotates respectively on its base and installs two walking wheels, two one side of walking wheel coaxial arrangement respectively has driven sprocket, and is a plurality of the top of walking frame respectively with two the fixed and rotation of hopper curb plate is installed drive sprocket, corresponds respectively on a plurality of drive sprocket and a plurality of driven sprocket and installs the chain, two fixed mounting has the walking wheel motor on the hopper curb plate, and the walking wheel motor is through walking long axis connection drive sprocket.
Preferably, a plurality of the bottom an organic whole of hopper is connected with the flange, and is a plurality of the top an organic whole of play hopper is connected with the flange, installs the flange piece between hopper and the play hopper, and it has a plurality of feed openings to open on the flange piece.
Preferably, the left side and the right side of the discharge hoppers are respectively provided with a kick-out device mounting hole, and the kick-out devices are respectively rotatably mounted in the kick-out device mounting holes.
Preferably, the lower parts of the two hopper side plates are provided with kickoff motors, the rotating shafts of the kickoff motors are provided with kickoff long shafts, a plurality of kickoff long shafts are respectively provided with a long shaft mounting hole, and the kickoff long shafts penetrate through and are fixedly connected with the long shaft mounting holes on the plurality of kickoff long shafts.
Preferably, a worm gear speed reducer is adopted between the traveling wheel motor and the traveling wheel long shaft, and a worm gear speed reducer is adopted between the kick-out device motor and the kick-out device long shaft.
The utility model realizes the movement of the travelling crane feeder by a plurality of travelling frames and travelling wheels on the travelling crane track; the feeding of all the cultivation cages is realized through a plurality of hoppers and discharge ports which are arranged on the side plates of the hoppers; the kick-out device is used, so that the hopper can evenly discharge materials, the condition of uneven feeding is avoided, and great convenience is brought to feeding work.
Drawings
Fig. 1 is a schematic perspective view of the present invention.
Fig. 2 is a schematic perspective view of the present invention.
Fig. 3 is a schematic front view of the present invention.
Fig. 4 is a schematic sectional perspective view of the present invention.
Fig. 5 is a schematic view of the motor of the present invention.
Fig. 6 is a schematic perspective view of the driving sprocket of the present invention.
Fig. 7 is the local three-dimensional schematic view of the walking wheel of the utility model.
Fig. 8 is a perspective view of the hopper of the present invention.
Fig. 9 is a perspective view of the discharge port of the present invention.
Detailed Description
The foregoing and other technical matters, features and effects of the present invention will be apparent from the following detailed description of the embodiments, which is to be read in connection with the accompanying drawings of fig. 1 to 9. The structural contents mentioned in the following embodiments are all referred to the attached drawings of the specification.
Exemplary embodiments of the present invention will be described below with reference to the accompanying drawings.
The embodiment I, the utility model relates to a seeding type traveling crane feeder, which is characterized in that the feeder comprises a plurality of traveling frames 1, the traveling frames 1 are arranged on a traveling track and can travel on the traveling track, the number of the traveling frames 1 can be increased according to actual needs, the traveling frames 1 can be formed by welding steel pipes, two symmetrically-arranged hopper side plates 2 are transversely and fixedly arranged on the traveling frames 1, the hopper side plates 2 can be formed by welding a plurality of steel plates according to actual needs, the hopper side plates 1 can be welded or can be connected with other common connecting modes, a certain gap is left between the two hopper side plates 2, a plurality of hoppers 3 are fixedly arranged between the two hopper side plates 2, the hoppers 3 are fixed between the two hopper side plates 2 by adopting bolt connection or other connecting modes which are convenient to be disassembled according to the positions of actual breeding cages, when the breeding cages change positions, can be according to the position of the position control hopper 3 of breeding the cage, it is a plurality of the bottom of hopper 3 is fixed with a plurality of discharge gates 4 respectively, and discharge gate 4 passes through the bolt mode to be fixed in the bottom of hopper 3, and the pipeline is installed to the below of every discharge gate 4, and the trough of breeding cage one side is placed respectively to the other end of each pipeline, and is a plurality of rotate respectively in the discharge hopper 4 and install setting gauge 5, can be when setting gauge 5 rotates in the even setting gauge of fodder in the hopper to the pipeline for the fodder can be even fall into in the trough.
In the second embodiment, on the basis of the first embodiment, the traveling frames 1 are respectively of a stable triangular structure, two traveling wheels 6 are respectively rotatably mounted on the bottom edges of the traveling frames, the traveling wheels 6 are placed on a traveling track, the traveling frames 1 can travel back and forth on the traveling track through the traveling wheels 6, driven sprockets 7 are respectively and coaxially mounted on one sides of the two traveling wheels 6, the driven sprockets 7 can coaxially rotate together with the traveling wheels 6, driving sprockets 8 are respectively and fixedly and rotatably mounted on the tops of the traveling frames 1 and the two hopper side plates 2, the tops of the traveling frames 1 and the hopper side plates 2 are fixedly connected, two bearing seats are mounted on the tops of the hopper side plates 2, driving sprockets 8 are rotatably mounted between the two bearing seats, chains are respectively and correspondingly mounted on the driving sprockets 8 and the driven sprockets 7, and the two driving sprockets realize synchronous rotation through chain transmission, two fixed mounting has walking wheel motor 9 on the hopper curb plate 2, walking wheel motor 9 is just reversing motor and is connected power supply, walking wheel motor 9 connects driving sprocket 8 through walking wheel major axis 10, fixed connection walking wheel major axis 10 in walking wheel motor 9's the pivot, the coaxial fixed connection of pivot of walking wheel major axis 10 and driving sprocket 8, if use a plurality of driving sprocket 8, then can adopt the coaxial fixed connection of walking wheel major axis 10 between per two driving sprocket 8's the pivot, when making walking wheel motor 9 rotate, can make each driving sprocket 8 synchronous rotation through walking wheel major axis 10, thereby drive each driven sprocket 7 and the rotation of walking wheel 6.
Third embodiment, on the basis of first embodiment, it is a plurality of the bottom an organic whole of hopper 3 is connected with the flange, and is a plurality of the top an organic whole of hopper 4 is connected with the flange, installs flange piece 11 between hopper 3 and the hopper 4, and it has a plurality of feed openings 12 to open on the flange piece 11, and when hopper 4 was connected fixedly with hopper 3, the feed opening 12 on hopper 4 and the flange piece 11 corresponded the installation for fodder in the hopper 3 got into in hopper 4 through feed opening 12, and the place that hopper 4 was not installed to 3 bottoms of hopper then was covered by flange piece 11, prevents that the fodder from spilling.
In the fourth embodiment, on the basis of the third embodiment, the left and right sides of the plurality of discharge hoppers 4 are respectively provided with a kickoff mounting hole, the plurality of kickoffs 5 are respectively rotatably mounted in the kickoff mounting holes, and the kickoffs 5 can rotate in the discharge hoppers 4.
Fifth embodiment, on the basis of the fourth embodiment, the kickoff motors 13 are installed below the two hopper side plates 2, the kickoff motors 13 are forward and reverse rotation motors and are connected to a power supply, the kickoff long shafts 14 are installed on the rotating shafts of the kickoff motors 13, when the rotating shafts of the kickoff motors 13 rotate, the kickoff long shafts 14 also rotate, the plurality of kickoff devices 5 are respectively provided with axial long shaft installation holes, the kickoff long shafts 14 penetrate through and are fixedly connected with the long shaft installation holes on the plurality of kickoff devices 5, the kickoff long shafts 14 can increase in length according to actual needs, the kickoff long shafts 14 are installed in the long shaft installation holes on the respective kickoff devices 5, and can drive the kickoff devices 5 to rotate simultaneously, so that simultaneous and uniform feeding is realized.
Sixth embodiment, on the basis of fifth embodiment, adopt worm gear reducer between walking wheel motor 9 and the walking wheel major axis 10, worm gear reducer is installed at 2 tops of hopper curb plate, and the pivot of walking wheel motor 9 is connected with the worm in the worm gear reducer, and the long axis 10 of walking wheel is connected with the turbine in the worm gear reducer, decelerates through worm gear for walking wheel 6 can be at the uniform velocity slow traveles, adopt worm gear reducer between setting gauge motor 13 and setting gauge major axis 14, install worm gear reducer at 2 bottoms of hopper curb plate, and the pivot of setting gauge motor 13 is connected with the worm in the worm gear reducer, and setting gauge major axis 14 is connected with the worm wheel in the worm gear reducer, decelerates through worm gear for each setting gauge 5 can be at the uniform velocity slow rotation.
Seventh embodiment, on the basis of sixth embodiment, setting gauge 5 is cylindric, and the external diameter of setting gauge 5 is less than the diameter of setting gauge mounting hole, when setting gauge 5 rotates, the arc surface of setting gauge 5 is tangent and is pasting the arc surface rotation of setting gauge mounting hole with the arc surface of setting gauge mounting hole, it has a plurality of even silo 501 to open on the arc surface of setting gauge 5, after the fodder fell into out hopper 4, the fodder fell into even silo 501, the fodder that is higher than even silo 501 is scraped with the inner wall tangency of play hopper 4 when setting gauge 5 rotates for every even silo 501 falls into the fodder of pipeline even and equals.
During specific operation, at first synchronous corotation is opened walking wheel motor 9 and setting gauge motor 13, walking wheel motor 9, it rotates to drive each drive sprocket 8, drive sprocket 8 drives driven sprocket 7 and walking wheel 6 through the chain and rotates, walking frame 1 begins to drive each hopper 3 and traveles on the track of going on the bus, meanwhile, fodder in the hopper 3 is through setting gauge 5 even group to each pipeline of hopper 4 below in, then fall into the trough of each breed cage through the pipeline is even, when walking frame 1 traveles to breed the cage end, synchronous stop walking wheel motor 9 and setting gauge motor 13 can, when using next time, direct synchronous reversal open walking wheel motor 9 and setting gauge motor 13 can.
The utility model realizes the movement of the travelling crane feeder by a plurality of travelling frames and travelling wheels on the travelling crane track; the feeding of all the cultivation cages is realized through a plurality of hoppers and discharge ports which are arranged on the side plates of the hoppers; the kick-out device is used, so that the hopper can evenly discharge materials, the condition of uneven feeding is avoided, and great convenience is brought to feeding work.

Claims (7)

1. The utility model provides a seeding formula driving feeding machine, its characterized in that, is including a plurality of walking frame (1), and is a plurality of horizontal fixed mounting has hopper curb plate (2) of two symmetry installations on walking frame (1), two fixed mounting has a plurality of hoppers (3) between hopper curb plate (2), and is a plurality of the bottom of hopper (3) is fixed mounting respectively has a plurality of play hopper (4), and is a plurality of rotate respectively in play hopper (4) and install setting gauge (5).
2. A seeding type travelling crane feeding machine according to claim 1, wherein the travelling frames (1) are respectively of a triangular structure, two travelling wheels (6) are respectively rotatably mounted on the bottom edges of the travelling frames, one side of each travelling wheel (6) is respectively and coaxially provided with a driven sprocket (7), the top of each travelling frame (1) is respectively fixed with two hopper side plates (2) and rotatably provided with a driving sprocket (8), the plurality of driving sprockets (8) and the plurality of driven sprockets (7) are respectively and correspondingly provided with chains, two travelling wheel motors (9) are fixedly mounted on the hopper side plates (2), and the travelling wheel motors (9) are connected with the driving sprockets (8) through travelling wheel long shafts (10).
3. A seeding type traveling crane feeder according to claim 2, wherein a flange is integrally connected to the bottom of the plurality of hoppers (3), a flange is integrally connected to the top of the plurality of discharging hoppers (4), a connecting flange piece (11) is installed between the hoppers (3) and the discharging hoppers (4), and a plurality of discharging ports (12) are formed in the connecting flange piece (11).
4. A seeding type traveling crane feeder according to claim 3, wherein the left and right sides of the discharging hoppers (4) are respectively provided with a kickoff mounting hole, and the kickoff devices (5) are respectively rotatably mounted in the kickoff mounting holes.
5. A seeding type travelling crane feeder according to claim 4, wherein a kickoff motor (13) is installed below the two hopper side plates (2), a kickoff long shaft (14) is installed on a rotating shaft of the kickoff motor (13), long shaft installation holes are respectively formed in the plurality of kickoff devices (5), and the kickoff long shaft (14) penetrates through and is fixedly connected with the long shaft installation holes in the plurality of kickoff devices (5).
6. A sowing type travelling crane feeding machine according to claim 5, wherein a worm gear speed reducer is adopted between the travelling wheel motor (9) and the travelling wheel long shaft (10), and a worm gear speed reducer is adopted between the kick-out device motor (13) and the kick-out device long shaft (14).
7. A seeding type travelling crane feeder according to claim 6, wherein the kick-out device (5) is cylindrical, and a plurality of material homogenizing grooves (501) are arranged on the arc surface of the kick-out device (5).
CN201921267958.1U 2019-08-07 2019-08-07 Seeding formula driving feeding machine Expired - Fee Related CN210445318U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921267958.1U CN210445318U (en) 2019-08-07 2019-08-07 Seeding formula driving feeding machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921267958.1U CN210445318U (en) 2019-08-07 2019-08-07 Seeding formula driving feeding machine

Publications (1)

Publication Number Publication Date
CN210445318U true CN210445318U (en) 2020-05-05

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CN201921267958.1U Expired - Fee Related CN210445318U (en) 2019-08-07 2019-08-07 Seeding formula driving feeding machine

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113602837A (en) * 2021-08-30 2021-11-05 江苏迦楠环境科技有限公司 Medicament feeding device for sewage treatment and use method thereof
CN114651735A (en) * 2022-05-16 2022-06-24 黑龙江省农业机械工程科学研究院齐齐哈尔农业机械化研究所 Hoist and mount formula feeding device

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113602837A (en) * 2021-08-30 2021-11-05 江苏迦楠环境科技有限公司 Medicament feeding device for sewage treatment and use method thereof
CN114651735A (en) * 2022-05-16 2022-06-24 黑龙江省农业机械工程科学研究院齐齐哈尔农业机械化研究所 Hoist and mount formula feeding device
CN114651735B (en) * 2022-05-16 2024-02-27 黑龙江省农业机械工程科学研究院齐齐哈尔分院 Hoisting type feeding device

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CF01 Termination of patent right due to non-payment of annual fee
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Granted publication date: 20200505

Termination date: 20210807