CN114261795A - Fodder conveyor with subassembly of unloading - Google Patents

Fodder conveyor with subassembly of unloading Download PDF

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Publication number
CN114261795A
CN114261795A CN202111589106.6A CN202111589106A CN114261795A CN 114261795 A CN114261795 A CN 114261795A CN 202111589106 A CN202111589106 A CN 202111589106A CN 114261795 A CN114261795 A CN 114261795A
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China
Prior art keywords
feed
base
supporting
sliding
plate
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Granted
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CN202111589106.6A
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Chinese (zh)
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CN114261795B (en
Inventor
吴三丫
范小飞
贾宝义
邓华
肖卫东
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Jiangsu Jingmu Biotechnology Co ltd
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Jiangsu Jingmu Biotechnology Co ltd
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Priority to CN202111589106.6A priority Critical patent/CN114261795B/en
Publication of CN114261795A publication Critical patent/CN114261795A/en
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P60/00Technologies relating to agriculture, livestock or agroalimentary industries
    • Y02P60/80Food processing, e.g. use of renewable energies or variable speed drives in handling, conveying or stacking
    • Y02P60/87Re-use of by-products of food processing for fodder production

Abstract

The invention relates to the technical field of feed conveying devices, in particular to a feed conveying device with an unloading assembly, which comprises a base, wherein a conveying mechanism for conveying feed is arranged on the base, a supporting mechanism is arranged on one side of the base, an unloading mechanism for lifting and overturning the whole bag of feed is arranged on the supporting mechanism, a clamping mechanism for clamping a feed bag is arranged on the unloading mechanism, and a supporting mechanism for supporting a plastic pipeline conveniently is arranged on one side of the base; prop and install shedding mechanism on the device, when adding the fodder to conveying mechanism's inside, the personnel of breeding promote whole bag fodder to conveying mechanism's top side through shedding mechanism, to conveying mechanism's direction slope when shedding mechanism rises to the certain degree, the fodder on the shedding mechanism falls into conveying mechanism's inside this moment, opens the fodder sack, starts conveying mechanism, has realized the inside of feed bin is carried to the fodder of feed bag inside, easy operation, labour saving and time saving.

Description

Fodder conveyor with subassembly of unloading
Technical Field
The invention relates to the technical field of feed conveying devices, in particular to a feed conveying device with a discharging assembly.
Background
The feed is a general term of food of animals raised by all people, generally refers to food of animals raised in agriculture or animal husbandry, comprises feed raw materials of more than ten varieties such as soybean, soybean meal, corn, fish meal, amino acid, miscellaneous meal, whey powder, grease, meat and bone meal, grains, feed additives and the like, is a device for conveying the feed at a lower part to a higher part in a spiral feeding mode, is generally used for a farm, and conveys the feed on the ground to the inside of a storage bin through a conveyor.
However, when the conventional feed conveying device conveys the feed, the conveying device is usually placed on the ground, the conveying device is connected with a storage bin through a hose, the feed is fed in a spiral feeding mode, the conveyor has a certain height, and when a farmer adds the feed into the conveyor, the whole bag of feed needs to be lifted into the hopper of the conveyor or is transported through a tool, so that time and labor are wasted; and current feed conveyor's plastic hose and conveyer junction are direct unsettled, do not set up supporting mechanism, and the plastic tubing drops with the conveyer pipe easily, perhaps the plastic tubing warp and causes the fodder to block up, is unfavorable for the transport of fodder.
Disclosure of Invention
In order to solve the problems in the prior art, the invention provides a feed conveying device with a discharging assembly.
The technical scheme adopted by the invention for solving the technical problems is as follows: a feed conveying device with an unloading assembly comprises a base, wherein a conveying mechanism for conveying feed is mounted on the base, a supporting mechanism is mounted on one side of the base, an unloading mechanism for lifting and overturning the whole bag of feed is mounted on the supporting mechanism, a clamping mechanism for clamping the feed bag is mounted on the unloading mechanism, and a supporting mechanism for supporting a plastic pipeline conveniently is mounted on one side of the base;
the supporting mechanism comprises connecting plates, two connecting plates are fixedly connected to the side wall of the base, fixing frames with openings at two sides are fixedly connected to the two connecting plates, a discharging mechanism is mounted on each fixing frame, each discharging mechanism comprises two first sliding grooves, two first sliding grooves are oppositely formed in the inner wall of each fixing frame, a screw rod and an auxiliary rod with a cylindrical structure are relatively and rotatably connected to the fixing frames, the auxiliary rods and the screw rod are respectively positioned on the two first sliding grooves, the two first sliding grooves are respectively and slidably connected with two sliding blocks, one of the sliding blocks is in threaded connection with the screw rod, the other sliding block is in sliding connection with the auxiliary rod, a second motor connected between the screw rods is mounted on each fixing frame, a guide shaft is rotatably connected between the two sliding blocks, and the guide shaft slides in a groove of a placing plate for placing a feed bag, the fixed frame is provided with two second sliding grooves in a relatively opened mode, the fixed frame is fixedly connected with two blocking shafts located on the second sliding grooves in a relatively opened mode, the placing plate is provided with two first rotating shafts in a relatively rotating mode, the first rotating shafts slide on the second sliding grooves, the fixed frame is provided with two third sliding grooves in a relatively opened mode, two moving blocks are connected to two side faces of the placing plate in a mutually opposite sliding mode, the two moving blocks are connected with the second rotating shafts in a relatively rotating mode, and the second rotating shafts slide on the third sliding grooves.
Specifically, the side surface of the fixing frame is of an inverted U-shaped structure, and the second sliding groove is located at one half of the width of the fixing frame.
Specifically, the supporting mechanism further comprises a bottom plate, and the bottom of the fixing frame is fixedly connected with the bottom plate.
Specifically, conveying mechanism includes the hopper, install the hopper on the base, the lateral wall of base is connected with the sleeve pipe, the base rotates with sheathed tube inside and is connected with the hob, install first motor on the base, all be fixed with the band pulley on first motor and the hob, connect through the belt between two band pulleys.
Specifically, the bottom of the blocking shaft is flush with the top of the hopper, and the blocking shaft and the first rotating shaft are arranged in an inclined mode.
Specifically, fixture includes two fore-posts, sliding connection has the fore-post on placing the board, fixedly connected with place the parallel, to the splint of disposal bag centre gripping of board on the fore-post, the fore-post with place the centre gripping between the board and have the spring, parallel arrangement between splint and the bottom plate.
Specifically, an inverted L-shaped structure is formed between the clamping plate and the top column, and the top column is of a cross-shaped structure.
Specifically, one of them edges and corners of splint is the slope setting, just the length of fore-set is greater than the thickness of bottom plate.
The supporting mechanism comprises an inner shaft, the base is rotatably connected with the inner shaft, a torsion spring is clamped between the inner shaft and the base, the inner shaft is slidably connected with a supporting plate for supporting the plastic pipeline, the supporting plate is provided with an installation groove, the inner shaft is fixedly connected with a pedal abutting against the supporting plate, and the supporting plate is slidably connected with the sleeve.
Specifically, the section of the supporting and protecting plate is in an H-shaped structure, and the height of the supporting and protecting plate is equal to that of the base.
The invention has the beneficial effects that:
(1) according to the feed conveying device with the discharging assembly, the discharging mechanism is mounted on the supporting device, when the feed is added into the conveying mechanism, a farmer lifts the whole bag of feed to the top side of the conveying mechanism through the discharging mechanism, when the discharging mechanism rises to a certain degree, the whole bag of feed is inclined towards the conveying mechanism, the feed on the discharging mechanism falls into the conveying mechanism, the opening of the feed bag is opened, the conveying mechanism is started, the feed in the feed bag is conveyed into the feed bin, the operation is simple, the time and the labor are saved, and the manual lifting and the manual feeding of the feed by a worker are not needed; namely: when the culturing personnel conveys the whole bag of feed to the interior of the storage bin, the second motor is powered on, the placing plate is lowered to the bottommost part of the fixing frame, the culturing personnel places the whole bag of feed on the placing plate, further controls reverse rotation through the second motor, the screw rod rotates at the moment, the slide block is driven to ascend in the first sliding groove, the first rotating shaft is matched with the second sliding groove to limit the placing plate (because the second sliding groove is in a fold line shape towards the baffle shaft part, the guide shaft is abutted against the placing plate before the first rotating shaft enters the bending area, so that the placing plate cannot rotate), the shaking of the placing plate in the feed ascending process is avoided, the two first rotating shafts are abutted against the baffle shaft in the second sliding groove in the ascending process of the placing plate, the placing plate rotates and inclines by taking the first rotating shaft as the circle center, the guide shaft slides in the groove in the placing plate, and the two moving blocks slide on the side wall of the placing plate at the moment, and the second rotating shaft rotates on the moving block, the inclination angle of the placing plate can be controlled through the second motor, the feed bag on the surface of the placing plate slides to the inside of the hopper when the placing plate inclines, lifting and discharging of the whole bag of feed are realized, manual lifting and discharging are not needed, labor is saved, operation is simple, when the second motor controls the sliding block to descend, the first rotating shaft is separated from the blocking shaft, the placing plate resets, the first rotating shaft is limited for the placing plate again, and the placing plate inclination is avoided.
(2) According to the feed conveying device with the discharging assembly, the two clamping mechanisms are oppositely arranged on the discharging mechanism, when the discharging mechanism is positioned at the bottommost part of the fixing frame, a gap is formed between the clamping mechanisms and the discharging mechanism, a bag of feed is placed between the clamping mechanisms and the discharging mechanism, and when the discharging mechanism rises, the clamping mechanisms reset, so that the bag is clamped, and the bag can be conveniently taken out and residual feed in the bag can be shaken after the feed in the bag is conveyed; namely: when placing the board and being in the mount lower, the bottom and the ground of fore-set are contradicted, further realization spring shrink, splint and place and produce the clearance between the board, insert this clearance department with the wrapping bag of fodder this moment, when placing the board and rise, the bottom and the ground separation of fore-set, the spring shrink, further splint are with fodder wrapping bag centre gripping, do benefit to the slow unloading of fodder, avoid the disposal of manger bag to descend, also do benefit to at last breeder and shake the manger, shake out remaining fodder is whole, after placing the board and descend, the fore-set contacts with ground once more, splint and placing the board separation can be realized, it can to take out the manger bag.
(3) According to the feed conveying device with the unloading assembly, the supporting mechanism is arranged between the side wall of the base and the conveying mechanism, when the feed is conveyed, the supporting mechanism is disassembled, and the supporting mechanism is moved to the plastic pipeline connected with the sleeve, so that the plastic pipeline is supported, the plastic pipeline is prevented from being blocked due to falling and deformation, and the feed conveying is facilitated; namely: when connecting plastic hose between feed bin and sleeve pipe and carry the fodder, can press the footboard, rotate the footboard to correspond with the mounting groove on the supporting plate, the direction that will prop up the backplate and deviate from the base this moment removes, remove the supporting plate to the plastic hose nearest apart from the sleeve pipe on, the strutting to plastic hose has been realized, avoid droing and be out of shape, do benefit to the transport of fodder, when accomodating, press the footboard, correspond mounting groove and footboard, loosen after passing the mounting groove with the supporting plate, it resets interior axle to have realized the torsional spring, and then realized spacing to the supporting plate, do benefit to and accomodate.
Drawings
The invention is further illustrated with reference to the following figures and examples.
FIG. 1 is a schematic overall structure diagram of a preferred embodiment of a feed conveying device with a discharging assembly provided by the invention;
FIG. 2 is a schematic view of a connection structure of a base, a hopper, a sleeve, a spiral pipe, a belt wheel, a fixed frame, a second motor, a first sliding groove, a second sliding groove, a third sliding groove, a sliding block, a placing plate and a screw rod;
FIG. 3 is an enlarged view of the part A shown in FIG. 2;
FIG. 4 is an enlarged view of the structure of the portion B shown in FIG. 2;
FIG. 5 is a schematic view of the connection structure of the placement plate, the top post, the clamping plate and the spring according to the present invention;
FIG. 6 is an enlarged view of the structure of the portion C shown in FIG. 2;
FIG. 7 is a schematic view of the connection structure of the supporting and protecting plate, the inner shaft, the pedal and the mounting groove of the present invention;
FIG. 8 is a schematic view of a connection structure of the fixing frame, the sliding block, the screw rod, the auxiliary rod, the placing plate, the blocking shaft and the first rotating shaft according to the present invention;
fig. 9 is an enlarged view of the structure of the D-section shown in fig. 8.
In the figure: 1. a base; 2. a conveying mechanism; 201. a first motor; 202. a belt; 203. a hopper; 204. a sleeve; 205. a screw rod; 206. a pulley; 3. a support mechanism; 301. a fixed mount; 302. a base plate; 303. a connecting plate; 4. a discharge mechanism; 401. a second motor; 402. a screw rod; 403. a first chute; 404. a slider; 405. placing the plate; 406. a second chute; 407. a third chute; 408. a blocking shaft; 409. a first rotating shaft; 410. a moving block; 411. a second rotating shaft; 412. an auxiliary lever; 413. a guide shaft; 5. a support mechanism; 501. supporting the guard plate; 502. an inner shaft; 503. a torsion spring; 504. a pedal; 505. mounting grooves; 6. a clamping mechanism; 601. a top pillar; 602. a splint; 603. a spring.
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.
As shown in fig. 1-9, the feed conveying device with the discharging assembly according to the present invention includes a base 1, a conveying mechanism 2 for conveying feed is installed on the base 1, a supporting mechanism 3 is installed on one side of the base 1, a discharging mechanism 4 for lifting and turning over the whole bag of feed is installed on the supporting mechanism 3, a clamping mechanism 6 for clamping the feed bag is installed on the discharging mechanism 4, and a supporting mechanism 5 for supporting a plastic pipe is installed on one side of the base 1;
the supporting mechanism 3 comprises a connecting plate 303, two connecting plates 303 are fixedly connected to the side wall of the base 1, two fixing frames 301 with openings at two sides are fixedly connected to the two connecting plates 303, a discharging mechanism 4 is installed on the fixing frame 301, the discharging mechanism 4 comprises two first sliding grooves 403, two first sliding grooves 403 are oppositely formed in the inner wall of the fixing frame 301, a screw rod 402 and an auxiliary rod 412 with a cylindrical structure are relatively rotatably connected to the fixing frame 301, the auxiliary rod 412 and the screw rod 402 are respectively located on the two first sliding grooves 403, the two first sliding grooves 403 are respectively and slidably connected with two sliding blocks 404, one of the sliding blocks 404 is in threaded connection with the screw rod 402, the other sliding block 404 is in slidable connection with the auxiliary rod 412, a second motor 401 connected with the screw rod 402 is installed on the fixing frame 301, and a guide shaft 413 is rotatably connected between the two sliding blocks 404, the guide shaft 413 slides in a groove of a placing plate 405 for placing a feeding bag, two second sliding grooves 406 are arranged on the fixed frame 301 in a relatively-opened mode, two blocking shafts 408 positioned on the second sliding grooves 406 are relatively and fixedly connected to the fixed frame 301, two first rotating shafts 409 are relatively rotatably connected to the placing plate 405, the first rotating shafts 409 slide on the second sliding grooves 406, two third sliding grooves 407 are oppositely arranged on the fixed frame 301, two moving blocks 410 are connected with the two side faces of the placing plate 405 in a sliding manner, a second rotating shaft 411 is rotatably connected on each of the two moving blocks 410, the second rotating shaft 411 slides on the third sliding groove 407, the side surface of the fixing frame 301 is shaped like an inverted U, the second sliding groove 406 is located at a half of the width of the fixing frame 301, the supporting mechanism 3 further includes a bottom plate 302, and the bottom of the fixing frame 301 is fixedly connected with the bottom plate 302; when the breeding personnel conveys the whole bag of feed to the interior of the storage bin, the second motor 401 is powered on, the placing plate 405 is lowered to the bottommost part of the fixing frame 301, the breeding personnel places the whole bag of feed on the placing plate 405, further, the second motor 401 controls reverse rotation, at the moment, the screw rod 402 rotates to drive the sliding block 404 to ascend in the interior of the first sliding groove 403, the first rotating shaft 409 is matched with the second sliding groove 406 to limit the placing plate 405 (because the second sliding groove 406 is in a zigzag shape towards the position of the blocking shaft 408, before the first rotating shaft 409 enters a bending area, the guide shaft 413 is abutted against the placing plate 405, so that the placing plate 405 cannot rotate), the situation that the placing plate 405 shakes in the ascending process of the feed is avoided, and the two first rotating shafts 409 are abutted against the blocking shaft 408 in the second sliding groove 406 in the ascending process of the placing plate 405, at this time, the placing plate 405 rotates and inclines with the first rotating shaft 409 as a center, the guide shaft 413 slides in the groove in the placing plate 405, at this time, the two moving blocks 410 slide on the side wall of the placing plate 405, the second rotating shaft 411 rotates on the moving blocks 410, the inclination angle of the placing plate 405 can be controlled by the second motor 401, when the placing plate 405 inclines, the feed bag on the surface slides into the hopper 203, the whole feed bag is lifted and unloaded, manual lifting and unloading are not needed, labor is saved, the operation is simple, when the second motor 401 controls the sliding block 404 to descend, the first rotating shaft 409 is separated from the blocking shaft 408, the placing plate 405 resets, and the first rotating shaft is used for limiting the placing plate 405 again, so that the placing plate 405 is prevented from inclining.
Specifically, the conveying mechanism 2 includes a hopper 203, the hopper 203 is mounted on the base 1, a sleeve 204 is connected to a side wall of the base 1, a screw rod 205 is rotatably connected to the inside of the base 1 and the sleeve 204, a first motor 201 is mounted on the base 1, belt wheels 206 are fixed to the first motor 201 and the screw rod 205, the two belt wheels 206 are connected through a belt 202, the bottom of the blocking shaft 408 is flush with the top of the hopper 203, and the blocking shaft 408 and the first rotating shaft 409 are arranged in an inclined manner; with the feed bin with connect plastic hose between the sleeve pipe 204, work as place board 405 slope back fodder and fall into the inside of hopper 203, further, open the fodder sack, the fodder is followed hopper 203 flows to hob 205 department will first motor 201 switch on has realized the belt 202 cooperation hob 205 rotates, has realized hob 205 carries the fodder, and the fodder process the inside of feed bin is carried to sleeve pipe 204 and plastic hose.
Specifically, the clamping mechanism 6 includes two top pillars 601, the placing plate 405 is connected with the top pillars 601 in a sliding manner, the top pillars 601 are fixedly connected with clamping plates 602 which are parallel to the placing plate 405 and clamp the feeding bags, a spring 603 is clamped between the top pillars 601 and the placing plate 405, the clamping plates 602 and the bottom plate 302 are arranged in parallel, the clamping plates 602 and the top pillars 601 are in an inverted L-shaped structure, the top pillars 601 are in a cross-shaped structure, one edge of each clamping plate 602 is arranged in an inclined manner, and the length of each top pillar 601 is greater than the thickness of the bottom plate 302; place board 405 be in when mount 301 is lowest, the bottom and the ground of fore-set 601 are contradicted, further realization spring 603 contracts, splint 602 with place and produce the clearance between the board 405, insert this clearance department with the wrapping bag of fodder this moment, work as when place board 405 rises, the bottom and the ground separation of fore-set 601, spring 603 contracts, and is further splint 602 does benefit to the slow unloading of fodder with the fodder wrapping bag centre gripping, avoids the disposal of feedbag to descend, also does benefit to at last breeder and shakes the feedbag, shakes remaining fodder totally, works as place board 405 after descending, fore-set 601 once more with ground contact, can realize splint 602 with place board 405 separation, it can to take out the feedbag.
Specifically, the supporting mechanism 5 includes an inner shaft 502, the inner shaft 502 is rotatably connected to the base 1, a torsion spring 503 is clamped between the inner shaft 502 and the base 1, a supporting plate 501 for supporting a plastic pipeline is slidably connected to the inner shaft 502, an installation groove 505 is formed in the supporting plate 501, a pedal 504 abutting against the supporting plate 501 is fixedly connected to the inner shaft 502, the supporting plate 501 is slidably connected to the sleeve 204, the cross section of the supporting plate 501 is in an "H" shaped structure, and the height of the supporting plate 501 is equal to the height of the base 1; when a plastic hose is connected between the bin and the sleeve 204 for conveying feed, the pedal 504 can be pressed, the pedal 504 rotates to correspond to the mounting groove 505 on the supporting plate 501, at the moment, the supporting plate 501 deviates from the direction of the base 1 and moves, the supporting plate 501 moves to a distance away from the plastic hose closest to the sleeve 204, supporting of the plastic hose is achieved, falling and deformation are avoided, feed conveying is facilitated, when the plastic hose is stored, the pedal 504 is pressed, the mounting groove 505 corresponds to the pedal 504, the supporting plate 501 penetrates through the mounting groove 505 and then is loosened, the torsion spring 503 resets the inner shaft 502, limiting of the supporting plate 501 is achieved, and storage is facilitated.
When the feed storage bin is used, firstly, when a farmer conveys a whole bag of feed into the bin, the second motor 401 is powered on, the placing plate 405 is lowered to the bottommost part of the fixing frame 301, the farmer places the whole bag of feed on the placing plate 405, further, the second motor 401 controls reverse rotation, the screw rod 402 rotates at the moment, the sliding block 404 is driven to ascend in the first sliding groove 403, the first rotating shaft 409 is matched with the second sliding groove 406 to limit the placing plate 405 (because the second sliding groove 406 is in a zigzag shape towards the position of the blocking shaft 408, the guide shaft 413 is abutted against the placing plate 405 before the first rotating shaft 409 enters a bending area, the placing plate 405 cannot rotate), the shaking of the placing plate 405 in the ascending process of the feed is avoided, the two first rotating shafts 409 are abutted against the blocking shaft 408 in the second sliding groove 406 in the ascending process of the placing plate 405, and the placing plate 405 rotates and inclines with the first rotating shaft 409 as the center of a circle, the guide shafts 413 slide in the grooves in the placing plate 405, the two moving blocks 410 slide on the side walls of the placing plate 405 at the moment, the second rotating shafts 411 rotate on the moving blocks 410, the inclination angle of the placing plate 405 can be controlled through the second motor 401, and when the placing plate 405 inclines, the feed bags on the surface slide into the hopper 203, so that the whole bag of feed is lifted and unloaded, manual lifting and unloading are not needed, labor is saved, the operation is simple, when the second motor 401 controls the sliding blocks 404 to descend, the first rotating shafts 409 are separated from the blocking shafts 408, the placing plate 405 resets, and the first rotating shafts 409 limit the placing plate 405 again, so that the placing plate 405 is prevented from inclining; then, when the placing plate 405 is located at the lowest position of the fixing frame 301, the bottom of the top column 601 is abutted against the ground, the spring 603 is further contracted, a gap is formed between the clamping plate 602 and the placing plate 405, at the moment, a feed packaging bag is inserted into the gap, when the placing plate 405 rises, the bottom of the top column 601 is separated from the ground, the spring 603 is contracted, the feed packaging bag is clamped by the further clamping plate 602, slow feeding of the feed is facilitated, one-time lowering of the feed bag is avoided, shaking of the feed bag by a final farmer is facilitated, all residual feed is shaken out, and after the placing plate 405 falls, the top column 601 is contacted with the ground again, so that the clamping plate 602 is separated from the placing plate 405, and the feed bag can be taken out; a plastic hose is connected between the bin and the sleeve 204, when the placing plate 405 inclines, the feed falls into the hopper 203, further, the opening of the feed bag is opened, the feed flows to the screw rod 205 from the hopper 203, the first motor 201 is powered on, the belt 202 rotates in cooperation with the screw rod 205, the feed is conveyed by the screw rod 205, and the feed is conveyed into the bin through the sleeve 204 and the plastic hose; finally, when connecting plastic hose between feed bin and sleeve pipe 204 and carrying out the fodder, can press footboard 504, rotate footboard 504 to correspond with mounting groove 505 on supporting plate 501, remove supporting plate 501 the direction that deviates from base 1 this moment, remove supporting plate 501 to the plastic hose that is nearest apart from sleeve pipe 204 on, realized strutting the plastic hose, avoid droing and warping, do benefit to the transport of fodder, when accomodating, press footboard 504, correspond mounting groove 505 with footboard 504, it loosens to pass supporting plate 501 behind mounting groove 505, the torsional spring 503 has been realized and the interior axle 502 resets, and then realized spacing to supporting plate 501, do benefit to accomodating.
It will be evident to those skilled in the art that the invention is not limited to the details of the foregoing illustrative embodiments, and that the present invention may be embodied in other specific forms without departing from the spirit or essential attributes 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 (10)

1. The feed conveying device with the unloading assembly is characterized by comprising a base (1), wherein a conveying mechanism (2) for conveying feed is mounted on the base (1), a supporting mechanism (3) is mounted on one side of the base (1), an unloading mechanism (4) for lifting and overturning the whole bag of feed is mounted on the supporting mechanism (3), a clamping mechanism (6) for clamping the feed bag is mounted on the unloading mechanism (4), and a supporting mechanism (5) for supporting a plastic pipeline conveniently is mounted on one side of the base (1);
the supporting mechanism (3) comprises a connecting plate (303), the side wall of the base (1) is fixedly connected with two connecting plates (303), two fixing frames (301) with openings at two sides are fixedly connected on the connecting plates (303), the fixing frames (301) are provided with discharging mechanisms (4), each discharging mechanism (4) comprises two first sliding grooves (403), the inner walls of the fixing frames (301) are oppositely provided with two first sliding grooves (403), the fixing frames (301) are relatively and rotatably connected with a screw rod (402) and an auxiliary rod (412) with a cylindrical structure, the auxiliary rods (412) and the screw rod (402) are respectively positioned on the two first sliding grooves (403), the two first sliding grooves (403) are respectively and slidably connected with two sliding blocks (404), one of the sliding blocks (404) is in threaded connection with the screw rod (402), and the other sliding block (404) is in sliding connection with the auxiliary rod (412), a second motor (401) connected with a screw rod (402) is installed on the fixed frame (301), a guide shaft (413) is rotatably connected between the two sliding blocks (404), the guide shaft (413) slides in a groove of a placing plate (405) used for placing a manger bag, two second sliding chutes (406) are oppositely formed on the fixed frame (301), two blocking shafts (408) positioned on the second sliding chutes (406) are relatively and fixedly connected on the fixed frame (301), two first rotating shafts (409) are relatively and rotatably connected on the placing plate (405), the first rotating shafts (409) slide on the second sliding chutes (406), two third sliding chutes (407) are oppositely formed on the fixed frame (301), two moving blocks (410) are oppositely and slidably connected on two side surfaces of the placing plate (405), and a second rotating shaft (411) is rotatably connected on the two moving blocks (410), the second rotating shaft (411) slides on the third sliding groove (407).
2. The feed delivery apparatus with a discharge assembly of claim 1, wherein: the side surface of the fixing frame (301) is of an inverted U-shaped structure, and the second sliding groove (406) is positioned at one-half of the width of the fixing frame (301).
3. The feed delivery apparatus with a discharge assembly of claim 1, wherein: the supporting mechanism (3) further comprises a bottom plate (302), and the bottom of the fixing frame (301) is fixedly connected with the bottom plate (302).
4. The feed delivery apparatus with a discharge assembly of claim 1, wherein: conveying mechanism (2) include hopper (203), install hopper (203) on base (1), the lateral wall of base (1) is connected with sleeve pipe (204), base (1) is connected with hob (205) with the inside rotation of sleeve pipe (204), install first motor (201) on base (1), all be fixed with band pulley (206) on first motor (201) and hob (205), be connected through belt (202) between two band pulleys (206).
5. The feed delivery apparatus with a discharge assembly of claim 4, wherein: the bottom of the blocking shaft (408) is flush with the top of the hopper (203), and the blocking shaft (408) and the first rotating shaft (409) are obliquely arranged.
6. The feed delivery apparatus with a discharge assembly of claim 1, wherein: fixture (6) include two fore-posts (601), sliding connection has fore-post (601) on placing board (405), fixedly connected with and place splint (602) parallel, to the disposal bag centre gripping of board (405) on fore-post (601), fore-post (601) and place the centre gripping between board (405) have spring (603), parallel arrangement between splint (602) and bottom plate (302).
7. The feed delivery apparatus with a discharge assembly of claim 6, wherein: an inverted L-shaped structure is arranged between the clamping plate (602) and the top column (601), and the top column (601) is in a cross-shaped structure.
8. The feed delivery apparatus with a discharge assembly of claim 6, wherein: one of the edges of the clamping plate (602) is obliquely arranged, and the length of the top column (601) is greater than the thickness of the bottom plate (302).
9. The feed delivery apparatus with a discharge assembly of claim 4, wherein: the supporting mechanism (5) comprises an inner shaft (502), the inner shaft (502) is connected to the base (1) in a rotating mode, a torsion spring (503) is clamped between the inner shaft (502) and the base (1), a supporting plate (501) for supporting the plastic pipeline is connected to the inner shaft (502) in a sliding mode, an installation groove (505) is formed in the supporting plate (501), a pedal (504) abutting against the supporting plate (501) is fixedly connected to the inner shaft (502), and the supporting plate (501) is connected with the sleeve (204) in a sliding mode.
10. The feed delivery apparatus with a discharge assembly of claim 9, wherein: the section of the supporting and protecting plate (501) is in an H-shaped structure, and the height of the supporting and protecting plate (501) is equal to that of the base (1).
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