CN112997685A - Agricultural sugarcane harvesting equipment with dry leaf primary cleaning mechanism - Google Patents

Agricultural sugarcane harvesting equipment with dry leaf primary cleaning mechanism Download PDF

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Publication number
CN112997685A
CN112997685A CN202110040682.9A CN202110040682A CN112997685A CN 112997685 A CN112997685 A CN 112997685A CN 202110040682 A CN202110040682 A CN 202110040682A CN 112997685 A CN112997685 A CN 112997685A
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China
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sugarcane
device shell
wall
end surface
block
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CN202110040682.9A
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Chinese (zh)
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廖萌萌
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Individual
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    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01DHARVESTING; MOWING
    • A01D45/00Harvesting of standing crops
    • A01D45/10Harvesting of standing crops of sugar cane
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01DHARVESTING; MOWING
    • A01D43/00Mowers combined with apparatus performing additional operations while mowing
    • A01D43/006Mowers combined with apparatus performing additional operations while mowing with devices for pressing or compacting
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01DHARVESTING; MOWING
    • A01D43/00Mowers combined with apparatus performing additional operations while mowing
    • A01D43/08Mowers combined with apparatus performing additional operations while mowing with means for cutting up the mown crop, e.g. forage harvesters
    • A01D43/086Mowers combined with apparatus performing additional operations while mowing with means for cutting up the mown crop, e.g. forage harvesters and means for collecting, gathering or loading mown material

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  • Life Sciences & Earth Sciences (AREA)
  • Environmental Sciences (AREA)
  • Harvesting Machines For Specific Crops (AREA)

Abstract

The invention relates to the technical field of sugarcane harvesting, in particular to an agricultural sugarcane harvesting device with a dead leaf primary cleaning mechanism, which comprises a sugarcane harvesting device main body, wherein the sugarcane harvesting device main body comprises a device shell, the top end surface of the device shell is connected with a servo motor, the interior of the servo motor is connected with a cutting and conveying mechanism, the top end surface of the device shell is connected with a dead leaf recovery mechanism, the top end surface of the device shell is connected with a first fixed block, and the inner wall of the first fixed block is connected with a traction mechanism; the sugarcane harvester can conveniently recover and harvest sugarcane by arranging the cutting and conveying mechanism, so that the phenomenon that hands of workers are cut when the workers harvest the sugarcane can be avoided, and the cut sugarcane dead leaves can be conveniently recovered, crushed and collected by arranging the dead leaf collecting mechanism, so that the labor intensity of the workers is reduced, and meanwhile, the operation steps of the workers can be reduced.

Description

Agricultural sugarcane harvesting equipment with dry leaf primary cleaning mechanism
Technical Field
The invention relates to the technical field of sugarcane harvesting, in particular to agricultural sugarcane harvesting equipment with a dry leaf primary cleaning mechanism.
Background
The sugarcane is a temperate zone and tropical crop, is a raw material for manufacturing the sucrose, can extract ethanol to be used as an energy substitute, contains abundant sugar and moisture, also contains various substances such as fat, protein, organic acid, calcium, iron and the like which are very beneficial to the metabolism of a human body, is mainly used for sugar production, and sugarcane harvesting equipment is required to be used in the process of harvesting the sugarcane.
At present, in the existing partial sugarcane mode, a cutter is generally used by a worker to cut the sugarcane manually, but the cutting efficiency is low due to the fact that the worker cuts the sugarcane manually, and a lot of dead sugarcane leaves are possibly left at one end of the cut sugarcane, so that when the worker cuts the dead sugarcane leaves, the dead sugarcane leaves are prone to generating a phenomenon of cutting the hands of the worker, and further the worker can be prone to generating an injury phenomenon when the worker cuts the sugarcane, and after the existing partial worker cuts the dead sugarcane leaves, the dead sugarcane leaves are generally directly placed on the ground, so that when the dead leaves are collected subsequently, the worker still needs to collect the dead sugarcane leaves manually, and then centralized processing is performed, but the general area of the sugarcane leaves is large, and after the worker harvests the sugarcane, go again to clear up the dead leaf, can lead to the consumption of staff's physical power, and then probably lead to the staff when reaping another mu sugarcane field, can lead to work efficiency's decline, consequently need a sugarcane harvesting equipment for agricultural with dry leaf preliminary cleaning mechanism solve above-mentioned problem urgently.
Disclosure of Invention
The invention aims to provide agricultural sugarcane harvesting equipment with a dead leaf primary cleaning mechanism, and aims to solve the problems that hands are easily cut when an existing worker harvests sugarcane, the existing worker is inconvenient to collect and process dead leaves when harvesting the sugarcane, and physical consumption is easily caused.
In order to achieve the purpose, the invention provides the following technical scheme:
an agricultural sugarcane harvesting device with a dead leaf primary cleaning mechanism comprises a sugarcane harvesting device main body, wherein the sugarcane harvesting device main body comprises a device shell, the top end surface of the device shell is connected with a servo motor, the interior of the servo motor is connected with a cutting and conveying mechanism, the top end surface of the device shell is connected with a dead leaf recovery mechanism, the top end surface of the device shell is connected with a first fixed block, the inner wall of the first fixed block is connected with a traction mechanism, the top end of the device shell is connected with a poking and conveying mechanism, the inner wall of the device shell is connected with a guide block, and the outer surface of the device shell is connected with a handle;
cutting conveying mechanism includes drive chain, first crowded piece, main sanction scissors, first gear, second gear and lower drive rod, the bottom surface of device shell is connected with the second gear, and the surface toothing of second gear has first gear, the bottom surface of first gear is connected with main sanction scissors, servo motor's bottom surface is connected with the lower transfer line, and the surface toothing of lower drive rod has drive chain, and drive chain's surface is connected with first crowded piece.
Preferably, mechanism is retrieved to dead leaf includes first bleeder, lower storage cylinder, first flabellum, first cutter, first support frame, first guide strip, coaxial motor, first clamp plate and first guide board, the top surface of device shell is connected with first bleeder, and the bottom inner wall of first bleeder is connected with first support frame, the inside swing joint of first support frame has coaxial motor, coaxial motor's top surface is connected with first cutter, and the top surface of first cutter is connected with first flabellum, coaxial motor's bottom surface threaded connection has first clamp plate, and the surface of first clamp plate is connected with first guide strip, the surface of first clamp plate articulates there is first guide board, the bottom surface of first storage cylinder is connected with down the section of thick bamboo.
Preferably, the traction mechanism comprises a first stop block, a first connecting seat, a first spring, a first abutting plate, a lower connecting cylinder, a first traction frame, a first bearing seat, a torsion spring, a first connecting rod and a second stop rod, the inner wall of the device shell is connected with the lower connecting cylinder, and the outer surface of the lower connecting cylinder is connected with a first stop block, the outer surface of the first stop block is connected with a first spring, the surface of one side of the first spring, which is far away from the first connecting seat, is connected with a first abutting plate, the outer surface of the first abutting plate is connected with a first stop block, the inner wall of the first fixing block is connected with a first connecting rod, the outer surface of the first connecting rod is connected with a torsion spring, the surface of one side of the first connecting rod, which is far away from the torsion spring, is connected with a first traction frame, the inner wall of one side of the first traction frame is connected with a first bearing seat, and the surface of the other side of the first traction frame is hinged with a second stop lever.
Preferably, dial and send the mechanism and include first linkage block, first motor, second and tailor the sword, dial and send and grab, first traction plate, lower transfer line, connect tooth and drive gear, the top surface butt of device shell has first linkage block, and the inner wall of first linkage block is connected with the connection tooth, and the inner wall meshing of connecting the tooth has drive gear, drive gear's bottom surface is connected with lower transfer line, the top surface of first linkage block is connected with first traction plate, the surface of first traction plate is connected with first motor, the output of first motor is connected with the second and tailors the sword, the second is tailor a side surface that the sword was kept away from first motor and is connected with to dial and send and grab.
Preferably, the shape structure of guide piece is triangle-shaped, and guide piece fixed connection is at the inner wall of discharge gate.
Preferably, the inner wall of the first air pumping cylinder is connected with a first guide strip, and the outer surface of the first guide strip is abutted with a first pressing plate.
Preferably, the first stop blocks are provided with eight groups, and the eight groups of first stop blocks are uniformly connected to the outer surface of the lower connecting cylinder at equal intervals.
Preferably, one end surface of the torsion spring is connected to the inner wall of the first fixing block, and the other end surface of the torsion spring is connected to the outer surface of the first connecting rod.
Preferably, the inner wall of the first connecting block is connected with a connecting tooth, the inner wall of the connecting tooth is meshed with a transmission gear, and only half of the outer surface of the transmission gear is provided with a tooth block.
Compared with the prior art, the invention has the beneficial effects that: this sugarcane harvesting equipment for agricultural with mechanism is just cleared up to dead leaf through setting up cutting conveying mechanism, can conveniently retrieve the sugarcane and reap to can avoid the staff can lead to the phenomenon that the hand is cut open when reaping the sugarcane, and the device collects the mechanism through setting up the dead leaf, can conveniently retrieve the broken collection of the sugarcane dead leaf after the cutting, when reducing staff intensity of labour, can also reduce staff's operation step.
1. The device is provided with a cutting and conveying mechanism, when a worker collects sugarcane by using the device, the device can be pushed to the position near the sugarcane manually, then a main cutting scissors connected to the outer surface of a shell of the device can be contacted with the root system of the sugarcane, then a servo motor can be driven by an external power supply to start working, meanwhile, the output end of the servo motor can drive a lower transmission rod to synchronously rotate through the working of the servo motor, a transmission chain can be conveniently driven to synchronously move through the rotation of the lower transmission rod, first extrusion blocks connected to the surface of the lower transmission rod are driven to synchronously move through the movement of the transmission chain, at the moment, a left group of first extrusion blocks and a right group of first extrusion blocks can synchronously move from one side of the first fixed block to one side of a handle, and a lower transmission rod connected to the bottom end surface of the first block is driven to synchronously move through the lower transmission rod close to one side of the first, and then can conveniently make first dog follow the lower gear lever of its bottom and remove in step, the rotation through first dog can drive the second gear of connection in its bottom and remove in step simultaneously, and then can make first gear follow the second gear and together rotate through the meshing between second gear and the first gear, and then can make the main cutting scissors who connects at first gear bottom surface follow first gear and remove in step, with this rotation through main cutting scissors comes to reap the sugarcane, and make the sugarcane after reaping pull backward by first crowded piece, thereby can avoid the staff can lead to the phenomenon that the hand is cut when reaping the sugarcane.
2. The device is provided with a dead leaf collecting mechanism, when a worker harvests dead leaves of a sugarcane, the first motor can be manually started to work through an external power supply, the second cutting knife can be driven to synchronously rotate through the work of the first motor, the poking and grabbing can be driven to synchronously rotate through the work of the first motor, simultaneously, the dead leaves on the surface of the sugarcane can be harvested through the second cutting knife rotating at a high speed, simultaneously, the dead leaves can be conveniently poked and recovered through the poking and grabbing connected to the surface of the first motor, the coaxial motor can synchronously work through the work of the external power supply, simultaneously, the first cutting knife and the first fan blade can be driven to synchronously rotate through the work of the coaxial motor, simultaneously, the dead leaves are sucked through air flow generated by the first fan blade rotating at a high degree, and then the dead leaves can enter the interior of the first air suction tube, and make the surface of withered leaf and first sword of tailorring contact, thereby can carry out abundant breakage to the withered leaf through the first sword of tailorring under the high-speed rotation, and make the surface of the withered leaf whereabouts to first clamp plate after the breakage, simultaneously after the surface of the fallen leaf whereabouts to first clamp plate after the breakage, press open first guide board through the action of gravity, so that make first guide board crowded by the withered leaf piece open, thereby can make the withered leaf piece get into the inside to storage cylinder down, drive first clamp plate through coaxial motor and remove in step simultaneously, and then begin to extrude the withered leaf piece through first clamp plate, and make the inside of storage cylinder down by extrusion, and then can conveniently retrieve the withered leaf, in order to reduce staff's intensity of labour.
Drawings
FIG. 1 is a schematic front perspective view of the present invention;
FIG. 2 is a schematic cross-sectional front view of the structure of the present invention;
FIG. 3 is a perspective view of a first perspective of the structure of the present invention;
FIG. 4 is a schematic left sectional view of a first pump cylinder according to the present invention;
FIG. 5 is a perspective view of the present invention;
FIG. 6 is an exploded perspective view of the first connecting base and the first stopper of the present invention;
FIG. 7 is a perspective view of the traction mechanism of the present invention;
FIG. 8 is a perspective view of the lower connector barrel of the present invention;
FIG. 9 is a perspective view of the first connecting block and the transmission gear of the present invention;
fig. 10 is a perspective view showing the structure of the main scissors and the second gear of the present invention.
In the figure: 1. a device housing; 2. a discharge port; 3. a grip; 4. a servo motor; 5. a drive chain; 6. a first extrusion block; 7. a first fixed block; 8. a first stopper; 9. a first pump cylinder; 10. a first connection block; 11. a guide block; 12. a lower storage cylinder; 13. a first traction frame; 14. a first fan blade; 15. a first cutting knife; 16. a first support frame; 17. a first guide bar; 18. a coaxial motor; 19. a first platen; 20. a first guide plate; 21. a first motor; 22. a second cutting knife; 23. pulling and grabbing; 24. a first traction plate; 25. a lower transmission rod; 26. a first connecting seat; 27. a first spring; 28. a first resisting plate; 29. a lower connecting cylinder; 30. a connecting tooth; 31. a transmission gear; 32. a first bearing seat; 33. main cutting scissors; 34. a first gear; 35. a second gear; 36. a torsion spring; 37. a first connecting rod; 38. a second bar.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Referring to fig. 1-10, an embodiment of the present invention is shown:
an agricultural sugarcane harvesting device with a dead leaf primary cleaning mechanism comprises a sugarcane harvesting device main body, wherein the sugarcane harvesting device main body comprises a device shell 1, the top end surface of the device shell 1 is connected with a servo motor 4, the interior of the servo motor 4 is connected with a cutting and conveying mechanism, the top end surface of the device shell 1 is connected with a dead leaf recovery mechanism, the top end surface of the device shell 1 is connected with a first fixed block 7, the inner wall of the first fixed block 7 is connected with a traction mechanism, the top end of the device shell 1 is connected with a poking and conveying mechanism, the inner wall of the device shell 1 is connected with a guide block 11, and the outer surface of the device shell 1 is connected with a handle 3;
cutting conveying mechanism includes drive chain 5, first crowded piece 6, main sanction scissors 33, first gear 34, second gear 35 and lower drive rod 25, the bottom surface of device shell 1 is connected with second gear 35, and the surface engagement of second gear 35 has first gear 34, the bottom surface of first gear 34 is connected with main sanction scissors 33, servo motor 4's bottom surface is connected with lower transfer line 25, and the surface engagement of lower drive rod 25 has drive chain 5, and drive chain 5's surface is connected with first crowded piece 6, can conveniently pull the sugarcane after being processed to the rear through setting up cutting conveying mechanism, and then can conveniently concentrate the recovery arrangement to the sugarcane.
Further, the dead leaf recycling mechanism comprises a first air extracting cylinder 9, a lower storage cylinder 12, a first fan blade 14, a first cutting knife 15, a first support frame 16, a first guide strip 17, a coaxial motor 18, a first pressure plate 19 and a first guide plate 20, the top end surface of the device shell 1 is connected with the first air extracting cylinder 9, the bottom end inner wall of the first air extracting cylinder 9 is connected with the first support frame 16, the inside of the first support frame 16 is movably connected with the coaxial motor 18, the bottom end surface of the coaxial motor 18 is connected with a threaded rod, the top end surface of the coaxial motor 18 is connected with the first cutting knife 15, the top end surface of the first cutting knife 15 is connected with the first fan blade 14, the bottom end surface of the coaxial motor 18 is connected with the first pressure plate 19 through threads, the outer surface of the first pressure plate 19 is connected with the first guide strip 17, the outer surface of the first pressure plate 19 is hinged with the first guide plate 20, the bottom end surface of the first air extracting cylinder 9, can conveniently crush and recover sugarcane dead leaves by arranging the dead leaf recovery mechanism, thereby reducing the dead leaves when the device works
Further, the traction mechanism comprises a first stop 8, a first connecting seat 26, a first spring 27, a first abutting plate 28, a lower connecting cylinder 29, a first traction frame 13, a first bearing seat 32, a torsion spring 36, a first connecting rod 37 and a second stopping rod 38, the inner wall of the device shell 1 is connected with the lower connecting cylinder 29, the outer surface of the lower connecting cylinder 29 is connected with the first stop 8, the outer surface of the first stop 8 is connected with the first spring 27, the surface of one side, away from the first connecting seat 26, of the first spring 27 is connected with the first abutting plate 28, the outer surface of the first abutting plate 28 is connected with the first stop 8, the inner wall of the first fixing block 7 is connected with the first connecting rod 37, the outer surface of the first connecting rod 37 is connected with the torsion spring 36, the surface of one side, away from the torsion spring 36, of the first connecting rod 37 is connected with the first traction frame 13, the inner wall of one side of the first traction frame 13 is connected with the, the other side surface of the first traction frame 13 is hinged with a second stop lever 38, and by arranging the traction mechanism, the sugarcane can be conveniently pulled to the inside of the device shell 1 through the deflection of the first traction frame 13.
Further, the poking and feeding mechanism comprises a first connecting block 10, a first motor 21, a second cutting knife 22, a poking and feeding claw 23, a first traction plate 24, a lower transmission rod 25, a connecting tooth 30 and a transmission gear 31, the top end surface of the device shell 1 is abutted with the first connecting block 10, the inner wall of the first connecting block 10 is connected with a connecting tooth 30, the inner wall of the connecting tooth 30 is engaged with a transmission gear 31, the bottom end surface of the transmission gear 31 is connected with a lower transmission rod 25, the top end surface of the first connecting block 10 is connected with a first traction plate 24, the outer surface of the first traction plate 24 is connected with a first motor 21, the output end of the first motor 21 is connected with a second cutting knife 22, the surface of one side of the second cutting knife 22 far away from the first motor 21 is connected with a poking and feeding grab 23, can conveniently dial down sugarcane dead leaf from the surface of device shell 1 through setting up to dial send the mechanism to conveniently retrieve the arrangement to the dead leaf.
Further, the shape structure of guide block 11 is triangle-shaped, and guide block 11 fixed connection is at the inner wall of discharge gate 2, sets up to triangle-shaped through the shape structure with guide block 11, can conveniently guide the sugarcane with guide block 11's hypotenuse, and then can conveniently make the sugarcane discharge from the inside of discharge gate 2.
Furthermore, the inner wall of the first air pumping cylinder 9 is connected with a first guide strip 17, the outer surface of the first guide strip 17 is abutted with a first pressing plate 19, the coaxial motor 18 starts to work to drive a threaded rod at the bottom end of the coaxial motor to rotate in a threaded manner, so that the first pressing plate 19 and the output end at the bottom end of the coaxial motor 18 can rotate together, and the first pressing plate 19 is limited by the first guide strip 17, so that the first pressing plate 19 can move up and down along the outer surface of the first guide strip 17.
Further, first dog 8 is provided with eight groups, and eight groups of first dog 8 equidistance even connection are at the surface of connecting cylinder 29 down, through being provided with eight groups of first dog 8, can conveniently give down more buffer space of connecting cylinder 29 to can conveniently make down connecting cylinder 29 cooperate the sugarcane of the different specifications of first dog 8 centre gripping to reap.
Further, a surface of one end of the torsion spring 36 is connected to the inner wall of the first fixing block 7, a surface of the other end of the torsion spring 36 is connected to the outer surface of the first connecting rod 37, and the first traction frame 13 can be pulled by the sugarcane to transversely become a longitudinal direction under the action of the elasticity of the torsion spring 36, and can be rebounded to the original position under the action of the elasticity of the torsion spring 36, so that the first traction frame 13 can be conveniently reset to start to perform next clamping and pulling operation.
Further, the inner wall of the first connecting block 10 is connected with a connecting tooth 30, the inner wall of the connecting tooth 30 is meshed with a transmission gear 31, only half of the outer surface of the transmission gear 31 is provided with a tooth block, the transmission gear 31 can pull the first connecting block 10 to start reciprocating motion by arranging the tooth block on half of the surface of the transmission gear 31, so that the first connecting block 10 can conveniently push the first traction plate 24 to move, and the dead leaves of the sugarcane can be harvested through the first traction plate 24.
The working principle is as follows: when a worker collects sugarcane by using the device, the device can be pushed to the position near the sugarcane manually, then the device is pushed, meanwhile, the second stop rod 38 hinged to the inner wall of the first traction frame 13 can be stopped by the sugarcane and can be contracted towards the inside of the first traction frame 13, then the first traction frame 13 can be pulled backwards, the bottom end surface of the sugarcane is extruded by the first stop block 8, the bottom end of the sugarcane can be clamped to approach one side of the discharge hole 2 through the rotation of the first stop block 8, the sugarcane is pulled by the first extrusion block 6 after being contacted with the first extrusion block 6, so that the sugarcane can be conveniently approached to one side of the discharge hole 2, meanwhile, the first traction frame 13 can also be changed from transverse direction to longitudinal direction through the traction of the sugarcane, and then the main scissors 33 connected to the outer surface of the device shell 1 can be contacted with the root system of the sugarcane, then the servo motor 4 can be driven by an external power supply to start working, meanwhile, the output end of the servo motor 4 can drive the lower transmission rod 25 to synchronously rotate through the working of the servo motor 4, so that the transmission chain 5 can be conveniently driven to synchronously move through the rotation of the lower transmission rod 25, the first extrusion blocks 6 connected to the surface of the transmission chain 5 are driven to synchronously move through the movement of the transmission chain 5, at the moment, the left and right groups of first extrusion blocks 6 can synchronously move from one side of the first fixing block 7 to one side of the handle 3, the lower transmission rod 25 connected to the bottom end surface of the first stop block 8 is driven to synchronously move through the lower transmission rod 25 close to one side of the first fixing block 7, so that the first stop block 8 can conveniently move along with the lower transmission rod 25 at the bottom end of the first stop block synchronously, and the second gear 35 connected to the bottom end of the first stop block 8 can be driven to synchronously move through the, and then can make first gear 34 follow second gear 35 and rotate together through the meshing between second gear 35 and the first gear 34, and then can make the main cutting scissors 33 that connects at first gear 34 bottom surface follow first gear 34 and move in step to this reaps the sugarcane through the rotation of main cutting scissors 33, and makes the sugarcane after reaping pull backward by first crowded piece 6, thereby can avoid the staff can lead to the phenomenon that the hand is cut when reaping the sugarcane.
When a worker harvests the dead leaves of the sugarcane, the first motor 21 can be manually started to work through an external power supply, the second cutting knife 22 can be driven to synchronously rotate through the work of the first motor 21, the poking and grabbing claw 23 can be driven to synchronously rotate through the work of the first motor 21, meanwhile, the dead leaves on the surface of the sugarcane can be harvested through the second cutting knife 22 rotating at a high speed, meanwhile, the dead leaves can be conveniently poked and recovered through the poking and grabbing claw 23 connected to the surface of the first motor 21, the coaxial motor 18 can synchronously work through the work of the external power supply, meanwhile, the first cutting knife 15 and the first fan blade 14 can be driven to synchronously rotate through the work of the coaxial motor 18, meanwhile, the dead leaves are sucked through air flow generated by the first fan blade 14 rotating at a high degree, and accordingly, the dead leaves can enter the first air suction tube 9, and make dead leaf and the first surface of cutting out sword 15 contact, thereby can fully break the dead leaf through the first sword 15 of cutting out under the high-speed rotation, and make the dead leaf after the breakage fall to the surface of first clamp plate 19, simultaneously fall to the surface of first clamp plate 19 after the fallen leaf after the breakage, press open first guide board 20 through the action of gravity, so that make first guide board 20 crowded division by the dead leaf piece, thereby can make the dead leaf piece get into the inside of storage cylinder 12 down, drive first clamp plate 19 through coaxial motor 18 and remove in step simultaneously, and then begin to extrude the dead leaf piece through first clamp plate 19, and make the inside of dead leaf piece at storage cylinder 12 down by extrusion, and then can conveniently retrieve the dead leaf, in order to reduce staff's intensity of labour.
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.

Claims (9)

1. The utility model provides an agricultural is with sugarcane harvesting equipment with mechanism is just cleared up to dead leaf, includes sugarcane harvesting equipment main part, its characterized in that: the sugarcane harvesting equipment main body comprises a device shell (1), wherein the top end surface of the device shell (1) is connected with a servo motor (4), the interior of the servo motor (4) is connected with a cutting and conveying mechanism, the top end surface of the device shell (1) is connected with a dead leaf recovery mechanism, the top end surface of the device shell (1) is connected with a first fixed block (7), the inner wall of the first fixed block (7) is connected with a traction mechanism, the top end of the device shell (1) is connected with a poking and conveying mechanism, the inner wall of the device shell (1) is connected with a guide block (11), and the outer surface of the device shell (1) is connected with a handle (3);
cutting conveying mechanism includes drive chain (5), first crowded piece (6), main sanction scissors (33), first gear (34), second gear (35) and lower transfer line (25), the bottom surface of device shell (1) is connected with second gear (35), and the surface toothing of second gear (35) has first gear (34), the bottom surface of first gear (34) is connected with main sanction scissors (33), the bottom surface of servo motor (4) is connected with lower transfer line (25), and the surface toothing of lower transfer line (25) has drive chain (5), and the surface of drive chain (5) is connected with first crowded piece (6).
2. An agricultural sugar cane harvesting apparatus having a dead leaf scarfing mechanism according to claim 1, wherein: the dead leaf recycling mechanism comprises a first air suction cylinder (9), a lower storage cylinder (12), first fan blades (14), a first cutting knife (15), a first support frame (16), a first guide strip (17), a coaxial motor (18), a first pressing plate (19) and a first guide plate (20), wherein the top end surface of the device shell (1) is connected with the first air suction cylinder (9), the bottom end inner wall of the first air suction cylinder (9) is connected with the first support frame (16), the inside of the first support frame (16) is movably connected with the coaxial motor (18), the top end surface of the coaxial motor (18) is connected with the first cutting knife (15), the top end surface of the first cutting knife (15) is connected with the first fan blades (14), the bottom end surface of the coaxial motor (18) is in threaded connection with the first pressing plate (19), and the outer surface of the first pressing plate (19) is connected with the first guide strip (17), the outer surface of the first pressing plate (19) is hinged with a first guide plate (20), and the bottom end surface of the first air pumping cylinder (9) is connected with a lower storage cylinder (12).
3. An agricultural sugar cane harvesting apparatus having a dead leaf scarfing mechanism according to claim 1, wherein: the traction mechanism comprises a first stop block (8), a first connecting seat (26), a first spring (27), a first resisting plate (28), a lower connecting cylinder (29), a first traction frame (13), a first bearing seat (32), a torsion spring (36), a first connecting rod (37) and a second stop rod (38), wherein the inner wall of the device shell (1) is connected with the lower connecting cylinder (29), the outer surface of the lower connecting cylinder (29) is connected with the first stop block (8), the outer surface of the first stop block (8) is connected with the first spring (27), the surface of one side, far away from the first connecting seat (26), of the first spring (27) is connected with the first resisting plate (28), the outer surface of the first resisting plate (28) is connected with the first stop block (8), the inner wall of the first fixing block (7) is connected with the first connecting rod (37), and the outer surface of the first connecting rod (37) is connected with the torsion spring (36), the surface of one side, far away from torsion spring (36), of first connecting rod (37) is connected with first traction frame (13), the inner wall of one side of first traction frame (13) is connected with first socket (32), and the surface of the other side of first traction frame (13) articulates there is second pin (38).
4. An agricultural sugar cane harvesting apparatus having a dead leaf scarfing mechanism according to claim 1, wherein: the poking and conveying mechanism comprises a first connecting block (10), a first motor (21), a second cutting knife (22), a poking and conveying grab (23), a first traction plate (24), a lower transmission rod (25), a connecting tooth (30) and a transmission gear (31), the top end surface of the device shell (1) is connected with a first connecting block (10) in an abutting mode, the inner wall of the first connecting block (10) is connected with a connecting tooth (30), the inner wall of the connecting tooth (30) is engaged with a transmission gear (31), the bottom end surface of the transmission gear (31) is connected with a lower transmission rod (25), the top end surface of the first connecting block (10) is connected with a first traction plate (24), the outer surface of the first traction plate (24) is connected with a first motor (21), the output end of the first motor (21) is connected with a second cutting knife (22), the surface of one side, far away from the first motor (21), of the second cutting knife (22) is connected with a poking and grabbing claw (23).
5. An agricultural sugar cane harvesting apparatus having a dead leaf scarfing mechanism according to claim 1, wherein: the shape structure of guide piece (11) is triangle-shaped, and guide piece (11) fixed connection is at the inner wall of discharge gate (2).
6. An agricultural sugar cane harvesting apparatus having a dead leaf scarfing mechanism according to claim 2, wherein: the inner wall of the first air suction cylinder (9) is connected with a first guide strip (17), and the outer surface of the first guide strip (17) is abutted with a first pressing plate (19).
7. An agricultural sugar cane harvesting apparatus having a dead leaf scarfing mechanism according to claim 3, wherein: eight groups of first stop blocks (8) are arranged, and the eight groups of first stop blocks (8) are uniformly connected to the outer surface of the lower connecting cylinder (29) at equal intervals.
8. An agricultural sugar cane harvesting apparatus having a dead leaf scarfing mechanism according to claim 3, wherein: one end surface of the torsion spring (36) is connected to the inner wall of the first fixing block (7), and the other end surface of the torsion spring (36) is connected to the outer surface of the first connecting rod (37).
9. An agricultural sugar cane harvesting apparatus having a dead leaf scarfing mechanism according to claim 4, wherein: the inner wall of the first connecting block (10) is connected with a connecting tooth (30), the inner wall of the connecting tooth (30) is meshed with a transmission gear (31), and only half of the outer surface of the transmission gear (31) is provided with a tooth block.
CN202110040682.9A 2021-01-13 2021-01-13 Agricultural sugarcane harvesting equipment with dry leaf primary cleaning mechanism Withdrawn CN112997685A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202110040682.9A CN112997685A (en) 2021-01-13 2021-01-13 Agricultural sugarcane harvesting equipment with dry leaf primary cleaning mechanism

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202110040682.9A CN112997685A (en) 2021-01-13 2021-01-13 Agricultural sugarcane harvesting equipment with dry leaf primary cleaning mechanism

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CN112997685A true CN112997685A (en) 2021-06-22

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114931020A (en) * 2022-05-26 2022-08-23 广西柳工农业机械股份有限公司 Sugarcane leaf comprehensive recovery device and sugarcane harvester and hydraulic main control system thereof

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114931020A (en) * 2022-05-26 2022-08-23 广西柳工农业机械股份有限公司 Sugarcane leaf comprehensive recovery device and sugarcane harvester and hydraulic main control system thereof
CN114931020B (en) * 2022-05-26 2024-05-17 广西柳工农业机械股份有限公司 Sugarcane leaf comprehensive recovery device, sugarcane harvester thereof and hydraulic main control system

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Application publication date: 20210622