CN108432647B - Cattle and sheep are bred and use feeding device - Google Patents

Cattle and sheep are bred and use feeding device Download PDF

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Publication number
CN108432647B
CN108432647B CN201810097418.7A CN201810097418A CN108432647B CN 108432647 B CN108432647 B CN 108432647B CN 201810097418 A CN201810097418 A CN 201810097418A CN 108432647 B CN108432647 B CN 108432647B
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feed
gear
rod
wheel
transmission
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CN108432647A (en
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张栩坤
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BEIJING GOKE AGRICULTURAL MACHINERY Co.,Ltd.
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Beijing Goke Agricultural Machinery 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
    • A01K5/00Feeding devices for stock or game ; Feeding wagons; Feeding stacks
    • A01K5/001Fodder distributors with mixer or shredder
    • A01K5/004Fodder distributors with mixer or shredder with mixing or shredding element rotating on vertical axis

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  • Life Sciences & Earth Sciences (AREA)
  • Environmental Sciences (AREA)
  • Birds (AREA)
  • Animal Husbandry (AREA)
  • Biodiversity & Conservation Biology (AREA)
  • Apparatuses For Bulk Treatment Of Fruits And Vegetables And Apparatuses For Preparing Feeds (AREA)
  • Feeding And Watering For Cattle Raising And Animal Husbandry (AREA)

Abstract

The invention discloses a feeding device for breeding cattle and sheep, which structurally comprises a feeding device, a feeding track groove, a spreading inlet frame, a stirring material inlet frame, a display screen, control buttons, a control box, bottom wheels, bottom wheel rotating shaft rods, a supporting bearing platform, a feed hopper, a feed conveying belt and a conveying belt motor, wherein the front end surface of the feeding device is provided with the control box, the control box is provided with the display screen and the control buttons, the three control buttons are parallel to each other, the feeding device and the control box are parallel to each other, the front end surface of the feeding device is provided with the spreading inlet frame and the stirring material inlet frame, the spreading inlet frame and the stirring material inlet frame are parallel to each other, the feeding device is fed into the feeding device from a discharging hopper to be lightly ground and stirred and then discharged from a feed guide plate to the feeding track groove, and further, the feeding device is used for matching breeding by spreading nutritional feed from the feed box, so that the working efficiency and the automation degree are greatly improved, the manual pressure is reduced.

Description

Cattle and sheep are bred and use feeding device
Technical Field
The invention relates to a feeding device for cattle and sheep breeding, and belongs to the field of breeding instruments.
Background
The cattle and sheep breeding technology is one of the technical manuals for enriching in new countryside and mainly introduces the cattle and sheep breeding technology. In order to further raise the heat tide of 'science and technology utilization' and accelerate the agricultural industrialization process of China, experts in agriculture organized by the national association of autonomous state science and technology in Hunan province compile a series of science popularization books of the technical handbook for Rich in New rural area, which are divided into 9 small booklets. The series book has the characteristics of short and easy understanding, rich content, pertinence, practicability, strong operability and the like. The technology is dedicated to rural basic cadres, science and technology demonstration households and vast farmers, and people hope to apply the technology, improve the production level, develop rural economy and accelerate the pace of new rural construction.
The feed standard specifies the required amount of various nutrients for animals under certain conditions, the expression mode of the nutrient is represented by the amount of various nutrients required by each animal per day or the concentration of various nutrients in unit weight, the nutrient is an important technical parameter for balancing daily ration and scientifically raising the livestock and poultry by matching the livestock and poultry, the contents of various nutrients in different types of feed raw materials are listed in a feed ingredient table, and the feed raw materials must be correspondingly selected and matched, namely daily ration or feed, in order to ensure that the feed taken by the animals contains all the nutrients specified in the feed standard.
However, when the prior art is used, in actual life, most of cattle and sheep are bred by manual feed processing and feeding, the working efficiency is low, the automation degree is low, a large amount of manpower is wasted, and the stress of people in feeding can not be relieved.
Disclosure of Invention
Aiming at the defects in the prior art, the invention aims to provide a feeding device for cattle and sheep breeding, and solves the problems that most of cattle and sheep breeding is carried out feed processing and feeding manually in actual life, the working efficiency is low, the automation degree is low, a large amount of manpower is wasted, and the pressure of feeding cannot be relieved for people in the prior art.
In order to achieve the purpose, the invention is realized by the following technical scheme: a feeding device for breeding cattle and sheep structurally comprises a feeding device, a feeding track groove, a spreading inlet frame, a stirring material inlet frame, a display screen, control buttons, a control box, bottom wheels, bottom wheel rotating shaft rods, a supporting bearing platform, a feed hopper, a feed conveying belt and a conveying belt motor, wherein the front end face of the feeding device is provided with the control box, the control box is provided with the display screen and the control buttons, the three control buttons are parallel to each other, the feeding device and the control box are parallel to each other, the front end face of the feeding device is provided with the spreading inlet frame and the stirring material inlet frame, the spreading inlet frame and the stirring material inlet frame are parallel to each other, the right end of the feeding device is provided with the feeding track groove, the feeding track groove and the supporting bearing platform are in clearance fit, the bottom wheel rotating shaft rods are arranged at the lower ends of the feeding track groove and the supporting bearing platform, the front end and the rear end of each bottom wheel rotating shaft rod are provided with bottom wheels, the feed grinding and conveying device comprises a bottom wheel, a bottom wheel rotating shaft rod, a supporting bearing platform, a feed hopper, a feed rolling and conveying structure, a feed grinding and conveying structure, a device shell and an auxiliary rotating wheel, wherein the bottom wheel and the bottom wheel rotating shaft rod are perpendicular to each other, the upper end surface of the supporting bearing platform is connected with the lower end of the feeding device and are parallel to each other, the upper left end of the supporting bearing platform is provided with the feed hopper which is in clearance fit with the lower end of the feeding device, the feed hopper is in clearance fit with the left end of the feeding device through a feed conveying belt, the feed conveying belt is provided with a conveying belt motor, the feeding device comprises the feed scattering and conveying structure, the feed processing and conveying structure, the feed rolling and conveying structure and the auxiliary rotating wheel are arranged inside the device shell, the feed rolling and conveying structure is arranged below the feed processing and conveying structure, the upper right end of the feed processing and conveying structure is the feed rolling and conveying structure, and a feed rolling and power structure is arranged below the auxiliary rotating wheel.
Furthermore, spill material and power structure by spill material case shell, spiral soft pole motor, defeated material fan, spiral soft pole, wheel spiral line, fixed link, twist reverse conveyer belt, double-tooth ring, slider, spill material cooperation notch, spill material cooperation inclined rail, connecting rod, slider track, semicircle gear are constituteed.
Further, the upper end of the material spreading box shell is welded with the lower end of the device shell, a material conveying fan and a spiral soft rod motor are arranged in the material spreading box shell, material conveying fans are arranged at the left end and the right end of the spiral soft rod motor, the material conveying fans are connected with the material spreading box shell, the upper end of the spiral soft rod motor is connected with the lower end of a wheel spiral line, a spiral soft rod is arranged on the wheel spiral line, the wheel spiral line is in clearance fit with the device shell, a material spreading matching inclined track is connected with a material spreading inlet frame, a material spreading matching notch is arranged in the material spreading matching inclined track and is in clearance fit with the material spreading matching inclined track, the right end of the material spreading matching notch is hinged with a fixed connecting rod, the fixed connecting rod is hinged with the inside of the device shell, the fixed connecting rod is hinged with a connecting rod, the left end of the material spreading notch is connected with a double-tooth ring through a sliding block, and the sliding block track is in clearance fit with the sliding block, tooth's socket that the double tooth ring internal portion was equipped with meshes with the tooth's socket of half-round gear mutually, half-round gear rolls and power structure transmission through twisting reverse the conveyer belt and fodder and is connected.
Furthermore, the feed processing and transmission structure is composed of a feed output bearing platform, a feed guide-out plate, a whole row of blocks, a feed output driving wheel, an auxiliary driving wheel, a rotating shaft rod, a feed processing groove, a single-side gear, an auxiliary gear, a processing slicing rod, a feed processing bearing platform, a composite bevel gear, a matching gear, a motor, a feed processing bearing platform driving wheel and a stirring material inlet.
Furthermore, the stirring material inlet is connected with a stirring material inlet frame, the stirring material inlet is connected with a feed processing tank through a pipeline, a processing slicing rod is arranged in the feed processing tank, the processing slicing rod is connected with the feed processing tank through a bearing, the lower end of the processing slicing rod is connected with the upper end of a unilateral gear, the lower end of the unilateral gear is connected with the upper end of an auxiliary gear, the auxiliary gear, an auxiliary driving wheel and an inclined plane gear are arranged on a rotating shaft rod, the auxiliary gear, the auxiliary driving wheel and the inclined plane gear are parallel to each other, the auxiliary driving wheel is in transmission connection with a feed output driving wheel through a transmission belt, the feed output driving wheel is in clearance fit with a feed output bearing platform, a whole row of blocks are arranged on the feed output bearing platform, tooth grooves of the inclined plane gear are meshed with tooth grooves of a composite inclined plane gear, and the composite inclined plane gear is meshed with a matching gear, the feed guiding plate is arranged at the right end of the device shell and welded with the right end of the device shell, and the feed processing bearing platform driving wheel is in clearance fit with the feed processing bearing platform.
Furthermore, the fodder rolls and power structure comprises light grinding block, drive gear, telescopic link, arc bevel gear, transfer line, rolls shell, rotary rod, gets into track groove, switch rim plate, bearing block, double-end eccentric motor, conical gear dish, first gear, second gear, spiral bevel gear, supplementary bull stick, cooperation drive wheel, compound transmission gear dish, unloading funnel.
Furthermore, the upper end of the light grinding block is connected with the lower end of a telescopic rod, the upper end of the telescopic rod is connected with the lower end of a grinding shell, the grinding shell is connected with a left end shaft rod of a composite transmission gear disc through a bearing, a tooth space arranged on the inner side of the telescopic rod is meshed with a transmission gear, the transmission gear is in transmission connection with an arc bevel gear, the upper end of the arc bevel gear is connected with a transmission wheel on an upper end shaft rod through a transmission belt, the composite transmission gear disc is meshed with an auxiliary bevel gear of the left end shaft rod, the composite transmission gear disc is in transmission connection with a bevel gear disc through the transmission belt, the right end of the bevel gear disc is meshed with the left end of a first gear, the upper end of the first gear is connected with the lower end of a second gear through the shaft rod, the right end of the second gear is meshed with the lower end of a spiral bevel gear, and the spiral bevel gear and a matched transmission wheel are arranged on the auxiliary rotating rod, spiral bevel gear locates the cooperation drive wheel left, the cooperation drive wheel with spill material and power structure and cooperate, supplementary bull stick left end is connected with double-end eccentric motor right-hand member, double-end eccentric motor left side lower extreme is equipped with the axostylus axostyle and is connected with rotary rod transmission through auxiliary drive wheel and drive belt, the rotary rod upper end is connected and the lower extreme rolls and power structure is connected with the fodder through the bearing with getting into track groove right-hand member through bearing piece left end, be equipped with the switch rim plate on the rotary rod, the switch rim plate with get into track groove clearance fit, unloading funnel lower extreme is connected with getting into track groove upper end, unloading funnel lower extreme both sides are connected with the device shell.
Furthermore, the material scattering and power structure is an integrated structure.
Advantageous effects
The invention relates to a feeding device for breeding cattle and sheep, which is characterized in that feed for feeding cattle and sheep is sequentially added into a feed hopper, the feed is conveyed to a discharging hopper on the feeding device from a feed conveyer belt by the feed hopper, then a control button on a control box starts a main power supply of the feeding device for breeding cattle and sheep, finally other small compound feed is put in from a stirring feed inlet frame, nutrient ingredients are put in from a material scattering inlet frame, the feed is discharged to a feeding track groove after being processed, the feed enters from the discharging hopper, is leveled by an auxiliary rotating wheel and enters into the track groove, a switch wheel disc is opened intermittently, the feed is separated, the feed enters from the track groove and enters into a feed processing bearing platform for light rolling processing, then enters into the feed processing groove from the feed processing bearing platform for mashing and stirring, and meanwhile, the small compound feed enters into a stirring feed inlet and is mixed with the mashed and stirred feed, finally, the nutrition ingredients added in the spreading inlet frame are conveyed by a feed output bearing platform and discharged by a feed guiding plate, the spiral lines on a spiral soft rod motor are driven by the rotation of the spiral soft rod motor, the nutrition ingredients are directly transmitted out of a material conveying fan to play a role of reversing and sucking, a double-head eccentric motor drives an auxiliary rotating rod to rotate, a matching driving wheel on the auxiliary rotating rod sequentially drives a torsion conveying belt and a semicircular gear to rotate, the left side and the right side enable a double-tooth ring to move upwards, the nutrition feed is guided out by the spiral soft rod when the spreading matching notch rises, a connecting rod descends to block the nutrition feed when the connecting rod rises, the next spreading matching notch descends to smoothly enter the nutrition feed, the spiral bevel gear rotates to drive a second gear, the first gear, a conical gear disc and a composite transmission gear disc to be matched by an arc bevel gear and a transmission gear, and finally, the light-milled feed with the clearance of a light milling block is enabled, the power of the feed processing bearing platform, the processing slicing rod and the feed output bearing platform is provided by a motor, the motor rotates to drive a bevel gear, an auxiliary gear and an auxiliary driving wheel on a rotating shaft rod, the bevel gear drives a feed processing bearing platform driving wheel through a composite bevel gear and a matched gear, the auxiliary gear directly drives a unilateral gear to enable the processing slicing rod to rotate, and the auxiliary driving wheel drives the feed output driving wheel through a driving belt.
Should get into inside lightly to grind in smashing to pieces and stirring and again derive the board by the fodder and discharge and feed the track groove including feeding device, further spill out nutrition fodder cooperation by spilling feed box shell and breed, work efficiency and degree of automation improve greatly, have alleviateed artificial pressure.
Drawings
Other features, objects and advantages of the invention will become more apparent upon reading of the detailed description of non-limiting embodiments with reference to the following drawings:
FIG. 1 is a schematic structural view of a feeding device for cattle and sheep cultivation in the invention;
FIG. 2 is a schematic view of the material spreading and power structure and the material rolling and power structure transmission of the present invention;
FIG. 3 is a schematic plan view of the present invention including a feeding apparatus;
FIG. 4 is a schematic plan view of the switch wheel of the present invention;
fig. 5 is a schematic perspective view of the composite transmission gear plate of the present invention.
In the figure: comprises a feeding device-1, a feeding track groove-2, a spreading inlet frame-3, a stirring inlet frame-4, a display screen-5, a control button-6, a control box-7, a bottom wheel-8, a bottom wheel rotating shaft-9, a supporting bearing platform-10, a feed hopper-11, a feed conveyer belt-12, a conveyer belt motor-13, a spreading and power structure-101, a feed processing and transmission structure-102, a feed rolling and power structure-103, a device shell-104, an auxiliary rotating wheel-105, a spreading box shell-10101, a feed conveying fan-10102, a spiral soft rod motor-10103, a spiral soft rod-10104, a wheel spiral line-10105, a fixed connecting rod-10106, a torsion conveyer belt-10107, a double-tooth ring-10108, a slide block-10109, a feed hopper-11, a feed conveyer belt-12, a feed conveyer belt motor-102, a feed rolling and power structure-103, a device shell-104, an auxiliary rotating wheel rotating shaft-105, a feed box-01, a double-10108, a double-10109, A material scattering matching notch-10110, a material scattering matching inclined rail-10111, a connecting rod-10112, a sliding block rail-10113, a semicircular gear-10114, a feed output bearing platform-10201, a feed guide plate-10202, a whole row of blocks-10203, a feed output transmission wheel-10204, an auxiliary transmission wheel-10205, a rotating shaft rod-10206, a feed processing groove-10207, a single-side gear-10208, an auxiliary gear-10209, a processing cutting rod-10210, a feed processing bearing platform-10211, a compound bevel gear-10212, a bevel gear-10213, a matching gear-10214, a motor-10215, a feed processing bearing platform transmission wheel-10216, a stirring material inlet-10217, a light grinding block-10301, a transmission gear-10302, a telescopic rod-10303, an arc bevel gear-04, a transmission rod-10305, The device comprises a rolling shell-10306, a rotating rod-10307, an entering track groove-10308, a switch wheel disc-10309, a bearing block-10310, a double-head eccentric motor-10311, a conical gear disc-10312, a first gear-10313, a second gear-10314, a spiral bevel gear-10315, an auxiliary rotating rod-10316, a matching transmission wheel-10317, a composite transmission gear disc-10318 and a discharging hopper-10319.
Detailed Description
In order to make the technical means, the creation characteristics, the achievement purposes and the effects of the invention easy to understand, the invention is further described with the specific embodiments.
Referring to fig. 1 to 5, the present invention provides a feeding device for cattle and sheep cultivation, which comprises: the structure of the feed device comprises a feeding device 1, a feeding track groove 2, a spreading material inlet frame 3, a stirring material inlet frame 4, a display screen 5, a control button 6, a control box 7, a bottom wheel 8, a bottom wheel rotating shaft rod 9, a supporting bearing platform 10, a feed hopper 11, a feed conveyer belt 12 and a conveyer belt motor 13, wherein the front end surface of the feeding device 1 is provided with the control box 7, the control box 7 is provided with the display screen 5 and the control button 6, the control button 6 is provided with three parts which are parallel to each other, the feeding device 1 and the control box 7 are parallel to each other, the front end surface of the feeding device 1 is provided with the spreading material inlet frame 3 and the stirring material inlet frame 4, the spreading material inlet frame 3 and the stirring material inlet frame 4 are parallel to each other, the right end of the feeding device 1 is provided with a feeding track groove 2 which is in clearance fit, the lower ends of the feeding track groove 2 and the supporting bearing platform 10 are provided with the bottom shaft rod 9, the feeding device comprises a bottom wheel rotating shaft rod 9, bottom wheels 8 are arranged at the front end and the rear end of the bottom wheel rotating shaft rod 9, the bottom wheels 8 are perpendicular to the bottom wheel rotating shaft rod 9, the upper end surface of a supporting bearing platform 10 is connected with the lower end of a feeding device 1 and parallel to the lower end of the feeding device 1, a feed hopper 11 is arranged at the left upper end of the supporting bearing platform 10 and is in clearance fit with the left end of the feeding device 1, a feed conveyor belt motor 13 is arranged on the feed conveyor belt 12, the feeding device 1 comprises a material scattering and power structure 101, a feed processing and transmission structure 102, a feed rolling and power structure 103, an auxiliary rotating wheel 105, the material scattering and power structure 101, the feed processing and transmission structure 102, the feed rolling and power structure 103 and the auxiliary rotating wheel 105 are arranged inside the device shell 104, and the feed processing and transmission structure 102 is arranged below the feed rolling and power structure 103, the feed processing and transmission structure 102 upper right end is for spilling material and power structure 101, spill material and power structure 101 left end is for the feed rolls and power structure 103, the auxiliary rotating wheel 105 below is for the feed rolls and power structure 103, spill material and power structure 101 by spill material case shell 10101, spiral soft rod motor 10102, defeated material fan 10103, spiral soft rod 10104, wheel spiral line 10105, fixed connection pole 10106, twist conveyor 10107, bidentate ring 10108, slider 10109, spill material cooperation notch 10110, spill material cooperation inclined rail 10111, connecting rod 10112, slider track 10113, half circle gear 10114 constitute, spill material case shell 10101 upper end and device shell 104 lower extreme welding, be equipped with defeated material fan 10102 and spiral soft rod motor 10103 in the spill material case shell 10101, be equipped with defeated material fan 10102 about spiral soft rod motor 10103, the material conveying fan 10102 is connected with a material spreading box shell 10101, the upper end of a spiral soft rod motor 10103 is connected with the lower end of a wheel spiral thread 10105, a spiral soft rod 10104 is arranged on the wheel spiral thread 10105, the wheel spiral thread 10105 is in clearance fit with the device shell 104, a material spreading matching inclined rail 10111 is connected with a material spreading inlet frame 3, a material spreading matching notch 10110 is arranged in the material spreading matching inclined rail 10111 and is in clearance fit with the material spreading matching inclined rail 10105, the right end of the material spreading matching notch 10110 is hinged with a fixed connecting rod 10106, the fixed connecting rod 10106 is hinged with the inside of the device shell 104, the fixed connecting rod 10106 is hinged with a connecting rod 10112, the left end of the material spreading matching notch 10110 is connected with a double-tooth ring 10108 through a sliding block 10109, the sliding block rail 10113 is in clearance fit with the sliding block 10109, a tooth groove arranged inside the double-tooth ring 10108 is meshed with a tooth groove of a semicircular gear 10114, and the semicircular gear 10114 is in transmission connection with the feed and the power structure 103 through a conveyor belt 10107, the feed processing and conveying structure 102 comprises a feed output bearing platform 10201, a feed guide-out plate 10202, a whole row block 10203, a feed output transmission wheel 10204, an auxiliary transmission wheel 10205, a rotating shaft rod 10206, a feed processing tank 10207, a single-side gear 10208, an auxiliary gear 10209, a processed slicing rod 10210, a feed processing bearing platform 10211, a compound bevel gear 10212, a bevel gear 10213, a matching gear 10214, a motor 10215, a feed processing bearing platform transmission wheel 10216 and a stirring material inlet 10217, wherein the stirring material inlet 10217 is connected with a stirring material inlet frame 4, the stirring material inlet 10217 is connected with the feed processing tank 10207 through a pipeline, a processed slicing rod 10210 is arranged in the feed processing tank 10207, the processed slicing rod 10210 is connected with the feed processing tank 10207 through a bearing, the lower end of the processed slicing rod 10210 is connected with the upper end of the single-side gear 10208, the lower end of the single-side gear 10208 is connected with the upper end of the auxiliary gear 10209, the auxiliary gear 10209, the auxiliary driving wheel 10205 and the bevel gear 10213 are arranged on a rotating shaft lever 10206, the auxiliary gear 10209, the auxiliary driving wheel 10205 and the bevel gear 10213 are parallel to each other, the auxiliary driving wheel 10205 is in transmission connection with a feed output driving wheel 10204 through a transmission belt, the feed output driving wheel 10204 is in clearance fit with a feed output bearing platform 10201, a whole row block 10203 is arranged on the feed output bearing platform 10201, a tooth space of the bevel gear 10213 is meshed with a tooth space of a compound bevel gear 10212, the compound bevel gear 10212 is meshed with a matching gear 10214, the matching gears 10214 are in two numbers, the matching gears 10214 are connected through a shaft lever, the feed processing bearing platform driving wheel 10216 is meshed with the matching gear 10214 connected with the upper end of the shaft lever, the feed guide plate 10202 is arranged on the device shell 104 and welded between the two, the feed processing bearing platform driving wheel 10216 is in clearance fit with the right end of the feed processing bearing platform 10211, the feed rolling and power structure 103 comprises a light rolling block 10301, a transmission gear 10302, a telescopic rod 10303, an arc-shaped bevel gear 10304, a transmission rod 10305, a rolling shell 10306, a rotary rod 10307, an entering track groove 10308, a switch wheel disc 10309, a bearing block 10310, a double-head eccentric motor 10311, a conical gear disc 10312, a first gear 10313, a second gear 10314, a spiral bevel gear 10315, an auxiliary rotary rod 10316, a matching transmission wheel 10317, a composite transmission gear disc 10318 and a blanking funnel 10319, wherein the upper end of the light rolling block 10301 is connected with the lower end of the telescopic rod 10303, the upper end of the telescopic rod 10303 is connected with the lower end of the rolling shell 10306, the rolling shell 10306 is connected with a shaft rod at the left end of the composite transmission gear disc 10318 through a bearing, a shaft rod 10302 arranged on the inner side of the telescopic rod 10303 is meshed with the tooth groove 10302, the transmission gear 10302 is in transmission connection with the arc-shaped bevel gear 10304, the upper end of the arc-shaped bevel gear 10304 is connected with a transmission wheel on the upper end through a transmission belt, the composite transmission gear disc 10318 is engaged with the left-end shaft rod auxiliary bevel gear, the composite transmission gear disc 10318 is in transmission connection with the bevel gear disc 10312 through a transmission belt, the right end of the bevel gear disc 10312 is engaged with the left end of the first gear 10313, the upper end of the first gear 10313 is connected with the lower end of the second gear 10314 through a shaft rod, the right end of the second gear 10314 is engaged with the lower end of the spiral bevel gear 10315, the spiral bevel gear 10315 and the matching transmission wheel 10317 are arranged on the auxiliary rotating rod 10316, the spiral bevel gear 10315 is arranged on the left side of the matching transmission wheel 10317, the matching transmission wheel 7 is matched with the material scattering and power structure 101, the left end of the auxiliary rotating rod 10316 is connected with the right end of the double-head eccentric motor 10311, the left and lower ends of the double-head eccentric motor 10311 are provided with the shaft rod which is in transmission connection with the rotating rod 10307 through the auxiliary transmission wheel and the transmission belt, the upper end of the rotating rod 10307 is connected with the right end of the track groove 10308 through the left end of the bearing block 10310 and the lower end of the track groove 10308 is connected with the track groove 10308 through the bearing which rolls the feed and the power through the bearing Structure 103 is connected, be equipped with switch rim plate 10309 on rotary rod 10307, switch rim plate 10309 with get into track groove 10308 clearance fit, unloading funnel 10319 lower extreme is connected with getting into track groove 10308 upper end, unloading funnel 10319 lower extreme both sides are connected with device shell 104, spill material and power structure 101 is the integral structure.
The display screen 5, as referred to in this patent, is also commonly referred to as a monitor. The display screen 5 is an I/O device belonging to a computer, i.e., an input/output device. The display tool is a display tool which displays a certain electronic file on a screen through a specific transmission device and reflects the electronic file to human eyes, and can be divided into a Cathode Ray Tube (CRT) display, a Plasma Display Panel (PDP), a Liquid Crystal Display (LCD) and the like according to different manufacturing materials.
When the feed hopper 11 is used, feed for feeding cattle and sheep is firstly added into the feed hopper 11 in sequence, the feed is conveyed to the discharging hopper 10319 on the feeding device 1 from the feed conveyor belt 12 through the feed hopper 11, then the control button 6 on the control box 7 starts the main power supply of the feeding device 1 for cattle and sheep breeding, finally other small compound feed is put in from the stirring material inlet frame 4, nutrient ingredients are put in from the scattering material inlet frame 3, and the feed is discharged to the feeding track groove 2 after being processed.
Fodder enters from unloading funnel 10319 and is leveled by auxiliary rotating wheel 105 and gets into track groove 10308, switch rim plate 10309 can open at intervals, the fodder is separated and gets into, the fodder gets into fodder processing cushion 10211 from entering track groove 10308 and carries out the light grinding processing, then get into fodder processing cushion 10207 from fodder processing cushion 10211 and smash and stir, and stirring material entry 10217 gets into little ratio fodder here simultaneously, mix with the fodder of smashing and stirring, carry by fodder output cushion 10201 again and discharge by fodder export board 10202, and the nutrition batching that spills feed inlet frame 3 adds is rotated by spiral soft rod motor 10102 and is driven the wheel spiral line 10105 on the spiral soft rod motor 10102, directly transmit the nutrition batching out defeated material fan 10102 and play the effect of reversing the suction.
The double-head eccentric motor 10311 rotates to drive the auxiliary rotating rod 10316 to rotate, the matching transmission wheel 10317 on the auxiliary rotating rod 10316 sequentially drives the torsion conveyor belt 10107 and the semicircular gear 10114 to rotate, the double-tooth ring 10108 moves upwards at the left and the back, the spacing of the raised nutritious feed is led out by the spiral soft rod 10104, the connecting rod 10112 descends to obstruct the nutritious feed from sliding downwards when the connecting rod 10112 ascends, the lower-time material scattering matching notch 10110 descends to smoothly enter the nutritious feed, the spiral bevel gear 10315 rotates to drive the second gear 10314, the first gear 10313, the conical gear disk 10312 and the composite transmission gear disk 10318 to be matched by the arc bevel gear 10304 and the transmission gear 10302, finally, the light-ground feed with the clearance of the light grinding block 10301 is made, the power of the feed processing bearing 10211, the processing slicing rod 10210 and the feed output bearing 10301 is provided by the motor 10215, the motor 10215 rotates to drive the gear 10213 on the rotating rod 10206, the auxiliary gear 10209 and the shaft lever 10205, the bevel gear 10213 drives the feed processing bearing platform transmission wheel 10216 through the compound bevel gear 10212 and the matching gear 10214, the auxiliary gear 10209 directly drives the single-side gear 10208 to enable the processing slicing rod 10210 to rotate, and further the auxiliary transmission wheel 10205 drives the feed output transmission wheel 10204 through the transmission belt.
The invention solves the problems that in the prior art, most of cattle and sheep breeding is carried out by manual work in real life, the working efficiency is low, the automation degree is low, a large amount of manpower is wasted, and the pressure of feeding can not be relieved for people, the invention combines the components mutually, the invention provides a feeding device for cattle and sheep breeding, feed for feeding cattle and sheep is sequentially added into a feed hopper 11, the feed is transported from a feed transport belt 12 to a discharging hopper 10319 on the feeding device 1 by the feed hopper 11, then a control button 6 on a control box 7 starts a main power supply of the feeding device 1 for cattle and sheep breeding, finally other small compound feed is put in from a stirring material inlet frame 4, nutrient ingredients are put in from a spreading material inlet frame 3, the processed feed is discharged to a feeding track groove 2, the feed enters from the discharging hopper 10319, is leveled by a rotary wheel auxiliary 105 and enters a track groove 10308, the switch wheel disc 10309 is opened intermittently, feed enters separately, the feed enters a feed processing bearing platform 10211 from the rail groove 10308 for light grinding processing, then enters a feed processing groove 10207 from the feed processing bearing platform 10211 for mashing and stirring, meanwhile, a stirring material inlet 10217 enters small-proportion feed to be mixed with the mashed and stirred feed, finally, the mixed feed is conveyed by a feed output bearing platform 10201 and discharged by a feed guide-out plate 10202, nutrient ingredients added to the material scattering inlet frame 3 are rotated by the spiral soft rod motor 10102 to drive the spiral thread 10105 on the spiral soft rod motor 10102, the nutrient ingredients are directly discharged out of the material conveying fan 10102 to play a role of reversely sucking, the double-head eccentric motor 10311 rotates to drive the auxiliary rotating rod 10316 to rotate, the matching transmission wheel 10317 on the auxiliary rotating rod 10316 sequentially drives the torsion conveyor belt 10107 and the semi-circular gear 10114 to rotate, the double-tooth ring 10108 moves upwards after left, the scattering material matching notch 10110 rises, the interval of the nutrient feed is led out by the spiral soft rod 10104, while the connecting rod 10112 descends to obstruct the nutrition feed from sliding downwards, the material scattering matching notch 10110 descends to enter the nutrition feed smoothly after the belt is lifted, the spiral bevel gear 10315 rotates to drive the second gear 10314 to cooperate with the first gear 10313, the bevel gear disk 10312 and the composite transmission gear disk 10318, and the arc bevel gear 10304 is matched with the transmission gear 10302, finally the light grinding block 10301 is enabled to lightly grind the feed in a clearance manner, the power of the feed processing bearing platform 10211, the processing slicing rod 10210 and the feed output bearing platform 10201 is provided by the motor 10215 again, the motor 10215 rotates to drive the bevel gear 10213 on the rotating shaft rod 10206, the auxiliary gear 10209 and the auxiliary transmission wheel 10205, the bevel gear 10213 drives the feed processing bearing platform transmission wheel 10216 through the composite bevel gear 10212 and the mating gear 10214, the auxiliary gear 10209 directly drives the single-side gear 10208 to rotate the slicing rod 10210, and further the auxiliary driving wheel 10205 drives the feed output driving wheel 10204 through the driving belt.
Should get into inside by unloading funnel 10319 including feeding device 1 and lightly grind in smashing to pieces and stirring and again discharge by fodder eduction plate 10202 and feed track groove 2, further spill the nutrition fodder cooperation by spilling feed box shell 10101 and breed, work efficiency and degree of automation improve greatly, have alleviateed artificial pressure.
While there have been shown and described what are at present considered the fundamental principles and essential features of the invention and its advantages, it will be apparent to those skilled in the art that the invention is not limited to the details of the foregoing exemplary embodiments, but is capable of other specific forms without departing from the spirit or essential characteristics thereof. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.
Furthermore, it should be understood that although the present description refers to embodiments, not every embodiment may contain only a single embodiment, and such description is for clarity only, and those skilled in the art should integrate the description, and the embodiments may be combined as appropriate to form other embodiments understood by those skilled in the art.

Claims (4)

1. The utility model provides a cattle and sheep are bred and use feeding device, its structure includes feeding device (1), feeds track groove (2), spills material inlet frame (3), stirring material inlet frame (4), display screen (5), control button (6), control box (7), return pulley (8), return pulley pivot pole (9), support cushion cap (10), fodder fill (11), fodder transportation area (12), transportation area motor (13), its characterized in that:
the feeding device is characterized in that a control box (7) is arranged on the front end face of the feeding device (1), a display screen (5) and control buttons (6) are arranged on the control box (7), three control buttons (6) are arranged and are parallel to each other, the feeding device (1) and the control box (7) are parallel to each other, a material scattering inlet frame (3) and a stirring material inlet frame (4) are arranged on the front end face of the feeding device (1), the material scattering inlet frame (3) and the stirring material inlet frame (4) are parallel to each other, a feeding track groove (2) is arranged at the right end of the feeding device (1), the feeding track groove and the stirring material inlet frame are in clearance fit, a bottom wheel rotating shaft lever (9) is arranged at the lower end of the feeding track groove (2) and a supporting bearing platform (10), bottom wheels (8) are arranged at the front end and the rear end of the bottom wheel rotating shaft lever (9), and the bottom wheels (8) and the bottom wheel rotating shaft lever (9) are perpendicular to each other, the upper end surface of the supporting bearing platform (10) is connected with the lower end of the feeding device (1) and is parallel to the lower end of the feeding device, a feed hopper (11) is arranged at the left upper end of the supporting bearing platform (10) and is in clearance fit with the supporting bearing platform, the feed hopper (11) is in clearance fit with the left end of the feeding device (1) through a feed conveying belt (12), and a conveying belt motor (13) is arranged on the feed conveying belt (12);
the feeding device (1) comprises a material scattering and power structure (101), a feed processing and transmission structure (102), a feed rolling and power structure (103), a device shell (104) and an auxiliary rotating wheel (105), wherein the material scattering and power structure (101), the feed processing and transmission structure (102), the feed rolling and power structure (103) and the auxiliary rotating wheel (105) are arranged inside the device shell (104), the feed processing and transmission structure (102) is arranged below the feed rolling and power structure (103), the material scattering and power structure (101) is arranged at the upper right end of the feed processing and transmission structure (102), the feed rolling and power structure (103) is arranged at the left end of the material scattering and power structure (101), and the feed rolling and power structure (103) is arranged below the auxiliary rotating wheel (105);
the material spreading and power structure (101) consists of a material spreading box shell (10101), a material conveying fan (10102), a spiral soft rod motor (10103), a spiral soft rod (10104), wheel spiral threads (10105), a fixed connecting rod (10106), a torsion conveyor belt (10107), a double-tooth ring (10108), a sliding block (10109), a material spreading matching notch (10110), a material spreading matching inclined rail (10111), a connecting rod (10112), a sliding block rail (10113) and a semicircular gear (10114);
the device is characterized in that the upper end of the material scattering box shell (10101) is welded with the lower end of the device shell (104), a material conveying fan (10102) and a spiral soft rod motor (10103) are arranged in the material scattering box shell (10101), the material conveying fan (10102) and the spiral soft rod motor (10103) are arranged at the left end and the right end of the spiral soft rod motor (10103), the material conveying fan (10102) is connected with the material scattering box shell (10101), the upper end of the spiral soft rod motor (10103) is connected with the lower end of a wheel rotation line (10105), the spiral soft rod (10104) is arranged on the wheel rotation line (10105), the wheel rotation line (10105) is in clearance fit with the device shell (104), the material scattering fit inclined rail (10111) is connected with a material inlet frame (3), a material scattering fit notch (10110) is arranged in the wheel rotation line (10111) and is in clearance fit with the wheel rotation line, the right end of the material scattering fit notch (10110) is hinged with a fixed connecting rod (10106), the fixed connecting rod (10106) is hinged with the device shell (104), fixed link pole (10106) are articulated with connecting rod (10112), spill material cooperation notch (10110) left end and be connected with double-tooth ring (10108) through slider (10109), slider track (10113) and slider (10109) clearance fit, the tooth's socket that double-tooth ring (10108) inside was equipped with meshes with the tooth's socket of semicircle gear (10114) mutually, semicircle gear (10114) are rolled with the fodder through twisting conveyor belt (10107) and are connected with power structure (103) transmission.
2. The feeding device for cattle and sheep breeding of claim 1, characterized in that: the feed processing and transmission structure (102) consists of a feed output bearing platform (10201), a feed guide-out plate (10202), a whole row of blocks (10203), a feed output transmission wheel (10204), an auxiliary transmission wheel (10205), a rotating shaft rod (10206), a feed processing tank (10207), a single-side gear (10208), an auxiliary gear (10209), a processing slice rod (10210), a feed processing bearing platform (10211), a composite bevel gear (10212), a bevel gear (10213), a matching gear (10214), a motor (10215), a feed processing bearing platform transmission wheel (10216) and a stirring material inlet (10217); the stirring material inlet (10217) is connected with the stirring material inlet frame (4), the stirring material inlet (10217) is connected with a feed processing tank (10207) through a pipeline, a processing slice rod (10210) is arranged in the feed processing tank (10207), the processing slice rod (10210) is connected with the feed processing tank (10207) through a bearing, the lower end of the processing slice rod (10210) is connected with the upper end of a unilateral gear (10208), the lower end of the unilateral gear (10208) is connected with the upper end of an auxiliary gear (10209), the auxiliary gear (10209) is connected with an auxiliary driving wheel (10205) and an inclined plane gear (10213) on a rotating shaft rod (10206), the auxiliary gear (10209) is parallel to the auxiliary driving wheel (10205) and the inclined plane gear (10213), the auxiliary driving wheel (10205) is connected with a feed output driving wheel (04) through a driving belt, and the feed output driving wheel (10204) is in clearance fit with a feed output bearing platform (10201), the feed output bearing platform is characterized in that a whole row of blocks (10203) are arranged on the feed output bearing platform (10201), tooth grooves of bevel gears (10213) are meshed with tooth grooves of compound bevel gears (10212), the compound bevel gears (10212) are meshed with matched gears (10214), the number of the matched gears (10214) is two, the matched gears (10214) are connected through a shaft rod, a feed processing bearing platform driving wheel (10216) is meshed with the matched gear (10214) connected to the upper end of the shaft rod, a feed guide-out plate (10202) is arranged at the right end of a device shell (104) and welded with the right end of the device shell, and the feed processing bearing platform driving wheel (10216) is in clearance fit with the feed processing bearing platform (10211).
3. The feeding device for cattle and sheep breeding of claim 1, characterized in that: the feed rolling and power structure (103) consists of a light rolling block (10301), a transmission gear (10302), a telescopic rod (10303), an arc-shaped bevel gear (10304), a transmission rod (10305), a rolling shell (10306), a rotating rod (10307), an entering track groove (10308), a switch wheel disc (10309), a bearing block (10310), a double-head eccentric motor (10311), a conical gear disc (10312), a first gear (10313), a second gear (10314), a spiral bevel gear (10315), an auxiliary rotating rod (10316), a matching transmission wheel (10317), a composite transmission gear disc (10318) and a blanking funnel (10319); the upper end of the light grinding block (10301) is connected with the lower end of a telescopic rod (10303), the upper end of the telescopic rod (10303) is connected with the lower end of a grinding shell (10306), the grinding shell (10306) is connected with a shaft rod at the left end of a composite transmission gear disc (10318) through a bearing, a tooth socket arranged on the inner side of the telescopic rod (10303) is meshed with a transmission gear (10302), the transmission gear (10302) is in transmission connection with an arc-shaped bevel gear (10304), the upper end of the arc-shaped bevel gear (10304) is connected with a transmission wheel on the shaft rod at the upper end through a transmission belt, the composite transmission gear disc (10318) is meshed with an auxiliary bevel gear of the shaft rod at the left end, the composite transmission gear disc (10318) is in transmission connection with a bevel gear disc (10312) through a transmission belt, the right end of the bevel gear disc (10312) is meshed with the left end of a first gear (10313), the upper end of the first gear (10313) is connected with the lower end of a second gear (10314) through a transmission belt, the right end of the second gear (10314) is meshed with the lower end of a spiral bevel gear (10315), the spiral bevel gear (10315) and a matching transmission wheel (10317) are arranged on an auxiliary rotating rod (10316), the spiral bevel gear (10315) is arranged on the left side of the matching transmission wheel (10317), the matching transmission wheel (10317) is matched with a material scattering and power structure (101), the left end of the auxiliary rotating rod (10316) is connected with the right end of a double-head eccentric motor (10311), the left lower end of the double-head eccentric motor (10311) is provided with a shaft lever which is in transmission connection with a rotating rod (10307) through the auxiliary transmission wheel and a transmission belt, the upper end of the rotating rod (10307) is connected with the right end of an entering track groove (08) through a bearing block (10310) and the lower end of the rotating rod is connected with a feed rolling and power structure (103103) through a bearing, a switch wheel disc (10309) is arranged on the rotating rod (10307), and the switch wheel disc (10309) is in clearance fit with the entering track groove (10308), the lower end of the discharging funnel (10319) is connected with the upper end of the entering track groove (10308), and two sides of the lower end of the discharging funnel (10319) are connected with the device shell (104).
4. The feeding device for cattle and sheep breeding of claim 1, characterized in that: the material scattering and power structure (101) is an integrated structure.
CN201810097418.7A 2018-01-31 2018-01-31 Cattle and sheep are bred and use feeding device Active CN108432647B (en)

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US4079699A (en) * 1976-05-21 1978-03-21 Edward Glen Longmore Automatic, timed, adjustable quantity feeding device
CN206182311U (en) * 2016-07-28 2017-05-24 惠安县科联农业科技有限公司 Feed processing mixes machine with high -efficient environmental protection
CN206078508U (en) * 2016-08-30 2017-04-12 辛忠升 Pig feed delivery device with automatically, put in function
CN206136917U (en) * 2016-11-03 2017-05-03 李建森 Eat processing from a liter material fish and smash feeding device
CN206371491U (en) * 2016-12-21 2017-08-04 湛江市五创海洋生物科技有限公司 A kind of animal and fowl fodder particle-making machine
CN107258567A (en) * 2017-07-14 2017-10-20 徐得强 A kind of efficient mixed fodder feeds all-in-one
CN107432252A (en) * 2017-08-17 2017-12-05 郑州大学 A kind of animal husbandry crushes feeding equipment

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