SORGHUM CUTTING HEADER AND SORGHUM HARVESTER WITH LARGE FEED VOLUME AND MULTIPLE REELING PANS
20220330483 · 2022-10-20
Assignee
Inventors
Cpc classification
A01D43/063
HUMAN NECESSITIES
A01D43/08
HUMAN NECESSITIES
A01D57/03
HUMAN NECESSITIES
A01D47/00
HUMAN NECESSITIES
International classification
A01D47/00
HUMAN NECESSITIES
A01D43/063
HUMAN NECESSITIES
A01D43/08
HUMAN NECESSITIES
Abstract
A sorghum cutting header and a sorghum harvester with large feed volume and multiple reeling pans includes a reeling header, a rod crushing device, and a reciprocating cutter device. The rod crushing device is located under the reeling header. The reeling header includes reeling pans, frame rods, bearing seats, reeling pan shafts, tandem shafts, and tandem shaft bearing seats. The reeling pan shafts are installed in parallel on the frame rod through bearing seats. The adjacent reeling pan shafts are in transmission connection, and at least one reeling pan shaft is in transmission connection with the power device. An inner part of any reeling pan shaft penetrates the tandem shafts. Both ends of the tandem shafts are supported on the frame rods, and one end of the tandem shafts is fixed on the tandem shaft bearing seats. The reeling pans are mounted on any reeling pan shaft.
Claims
1. A sorghum cutting header with large feed volume and multiple reeling pans, the sorghum cutting header comprising a reeling header, a rod crushing device and a reciprocating cutter device, the reciprocating cutter device is configured for cutting sorghum heads pulled by the reeling header, and the rod crushing device is located under the reeling header and is configured for cutting the remaining sorghum stalks; the reeling header comprises a plurality of reeling pans, a frame rod, bearing seat, a plurality of reeling pan shafts, tandem shafts and tandem shaft bearing seats; the reeling pan shafts are installed in parallel on the frame rod through the bearing seats, and the adjacent reeling pan shafts are in transmission connection; a power device is transmitted to at least one of the reeling pan shafts through chain drive; the tandem shaft penetrates inside any one of the pan shafts, and two ends of the tandem shaft are supported on the frame rod through the tandem shaft bearing seat, and one end of the tandem shaft is fixed on the frame rod; any one of the reeling pan shafts are mounted with the reeling pans.
2. The sorghum cutting header with large feed volume and multiple reeling pans according to claim 1, wherein any one of the reeling pans comprises a central gear, a plurality of planetary gears, elastic teeth, a reeling pan shell, planetary gear shafts and a plurality of elastic tooth rods; the reeling pan shell (1017) is mounted on the reeling pan shaft, the central gear is mounted on the tandem shaft, and the central gear is located on a center of reeling pan shell; of the plurality of planetary gears are evenly distributed in the center of the reeling pan shell, and the plurality of planetary gears mesh with the central gear; the planetary gears are mounted on the reeling pan shell through the planetary gear shaft, and the reeling pan shell rotates to make the planetary gears rotate around the central gear; the elastic tooth rods penetrating the reeling pan shell are installed on an edge of the reeling pan shell, and the elastic tooth rods correspond to the planetary gears one by one, and any one of the elastic tooth rods is in transmission connection to a corresponding one of the planetary gears; each elastic tooth rod is provided with elastic teeth, and the elastic teeth on the same reeling pan rotate synchronously, and a direction of the elastic teeth remains unchanged during rotation.
3. The sorghum cutting header with large feed volume and multiple reeling pans according to claim 1, wherein one end of any one of the reeling pan shafts is equipped with a double row sprocket, any one of the pan shafts and an adjacent one of the reeling pan shafts are connected by a chain drive.
4. The sorghum cutting header with large feed volume and multiple reeling pans according to claim 2, wherein the reeling header further comprises a device for adjusting an angle of elastic teeth, and the device for adjusting the angle of elastic teeth comprises a stepping motor and a brake; the brake is configured to selectively fix the tandem shaft and the frame rod; the tandem shaft is connected to the stepping motor in driving mode to adjust a phase angle of the tandem shaft when the brake is not working.
5. The sorghum cutting header with large feed volume and multiple reeling pans according to claim 2, wherein the reeling pan further comprises a device for adjusting an angle of elastic teeth, and the device for adjusting the angle of elastic teeth comprises an adjusting disk and a flywheel, and one end of the tandem shaft is fixed on the frame rod through the adjusting disk; the flywheel is provided at one end of the tandem shaft, and the flywheel is coaxially fixed with the adjusting disk, and a phase angle of the tandem shaft is adjusted by manually rotating the flywheel.
6. The sorghum cutting header with large feed volume and multiple reeling pans according to claim 2, wherein 4-6 reeling pans are installed on any one of the reeling pan shafts, a center distance between the adjacent reeling pan shafts is 480 mm-550 mm, an outer diameter of each reeling pan is 300 mm-350 mm; a length of the elastic teeth is 100 mm-150 mm, a distance between two adjacent elastic teeth along an axis is 120 mm-150 mm.
7. The sorghum cutting header with large feed volume and multiple reeling pans according to claim 1, wherein one end of the frame rod is equipped with a hydraulic rod for adjusting an inclination angle between a connecting line of shaft centers of the reeling pans and a horizontal plane, and an adjustment range is 5°-20°.
8. The sorghum cutting header with large feed volume and multiple reeling pans according to claim 1, wherein the rod crushing device comprises rod crushing knife groups, rod splitters, tool post hydraulic rods and a rod knife holder; the rod splitters and the broken rod crushing knife groups are installed in a staggered arrangement on the rod knife holder; one end of the tool post hydraulic rods is installed on the rod knife holder for adjusting a cutting angle.
9. The sorghum cutting header with large feed volume and multiple reeling pans according to claim 8, wherein each rod crushing knife group comprises stirring knife barrels, two stirring knife shafts, ring blades, upper stirring knife gears and lower stirring knife gears; the two stirring knife shafts are supported in parallel on the rod knife holder, each stirring knife barrel is installed on each of the stirring knife shafts; both ends of each stirring knife shaft are respectively equipped with an upper stirring knife gear and a lower stirring knife gear; the upper stirring knife gear and the lower stirring knife gear on one of the stirring knife shafts intermesh with the upper stirring knife gear and the lower stirring knife gear on the other one of the stirring knife shafts; the ring blades on the two stirring knife shafts are equally spaced, and cutting edges of the ring blades on the two stirring shafts are opposite; one of the stirring knife shafts is directly or indirectly connected to the power device.
10. A sorghum harvester, comprising the sorghum cutting header with large feed volume and multiple reeling pans according to claim 1, a reeling header, a screw feeder, an ear head conveyor, a straw helper, an engine, a grain tank and a frame; wherein one end of the reeling header is installed on the frame through a rotating pair, and the straw helper installed on the frame under the reeling header; the screw feeder is located behind the reciprocating cutter device; the ear head conveyor is installed at an outlet of the screw feeder, and is configured to transport the sorghum head to the grain tank; the engine is configured to provide power of the reeling header, the screw feeder and the ear head conveyor respectively.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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[0038] In the figure, 1—reeling header, 101—reeling pan, 102—frame rod, 103—bearing seat, 104—reeling pan shaft, 105—reeling header shaft, 106—double row sprocket, 107—single row sprocket, 108—hydraulic rod, 109—drive chain, 110—adjusting disk, 111—tandem shaft, 112—tandem shaft sent, 1011—central gear, 1012—planetary gear, 1013—primary sprocket, 1014—secondary sprocket, 1015—chain, 1016—elastic tooth, 1017—reeling pan shell, 1018—planetary gear shaft, 1019—elastic tooth rod, 2—rod crushing device, 201—rod crushing knife group, 202—rod splitter, 203—tool post hydraulic rod, 204—rod knife holder, 2011—stirring knife barrel, 2012—stirring knife shaft, 2013—ring blade, 2014—upper stirring knife gear, 2015—lower stirring knife gear, 2016—stirring knife sprocket, 2017—stirring knife chain, 3—reciprocating cutter device, 304—cutting shaft, 4—screw feeder, 403—auger shaft, 5—ear head conveyor, 508—drive shaft, 6—straw helper, 7—engine, 8—grain tank.
DESCRIPTION OF THE EMBODIMENTS
[0039] The present invention is further described below in conjunction with specific embodiments and the accompanying drawings, but the scope is not limited thereto.
[0040] As shown in
[0041] As shown in
[0042] As shown in
[0043] Working process: Power is transmitted to the reeling pan shaft 104 to make it rotate, and the reeling pan shaft 104 drives the reeling pan shell 1017 to rotate. Since the tandem shaft 111 is fixed on the frame rod 102, the central gear 1011 is fixed, and the reeling pan shell 1017 rotates and drives the planetary gears 1012 to revolve. Since planetary gears mesh with the central gear 1011 and the central gear 1011 does not rotate, the planetary gears 1012 rotate and drive the primary sprocket 1013 fixedly connected to them to rotate. The primary sprocket 1013 drives the secondary sprocket 1014 to rotate through the chain 1015. The number of teeth of the central gear 1011 is Z1, the number of teeth of the planetary gear 1012 is Z2, the number of teeth of the primary gear 1013 is Z3, and the number of teeth of the secondary sprocket is Z4. The number of teeth between the transmission parts in the reeling pans satisfies the relationship (Z4.Math.Z2)/(Z3.Math.Z1)=1. Since the transmission ratio i=1, the rotation speed of the secondary sprocket 1014 is the same as the revolution speed of the reeling pan, but the direction is opposite, so that the angle of the elastic teeth remains unchanged during the working process.
[0044] The reeling pan 101 is mounted on the reeling pan shaft 104, and 4-6 reeling pans 101 are installed on any one of the reeling pan shafts 104. The outer diameter of the reeling pan 101 is 300 mm-350 mm. The length of the pan shaft 104 is 3000 mm-3500 mm, and the diameter is 35 mm-40 mm. The center distance between the adjacent reeling pan shafts 104 is 480 mm-550 mm, the length of the elastic teeth 1016 is 100 mm-150 mm. The distance between two adjacent elastic teeth along the axis is 120 mm-150 mm. The diameter of the double row sprocket 106 is 100 mm to 150 mm. The diameter of the single row sprocket 111 is 80 mm to 120 mm. One end of the frame rod 102 is equipped with a hydraulic rod 108 for adjusting a number of the inclination angle between the connecting line of the shaft center of the reeling pan 101 and the horizontal plane, the adjustment range is 5°-20°.
[0045] In order to realize the angle adjustment of the elastic teeth 1016, the present invention also comprises a device for adjusting the angle of the elastic teeth, which can realize automatic or manual adjustment.
[0046] The automatically adjusted elastic teeth angle adjusting device comprises a stepping motor and a brake. The brake is used for selectively fixing the tandem shaft 111 and the frame rod 102. The tandem shaft 111 is connected to the stepping motor in transmission, and is used to adjust the phase angle of the tandem shaft 111 when the brake is not working. When no adjustment is needed, the brake keeps working to make the tandem shaft 111 and the frame rod 102 fixedly connected. When the angle needs to be adjusted, the brake does not work, and the phase angle of the tandem shaft 111 is adjusted by a stepping motor, thereby driving the elastic teeth 1016 to rotate.
[0047] As shown in
[0048] As shown in
[0049] As shown in
[0050] The length of the stirring knife shaft 2012 is 1000 mm-1200 mm, and the diameter is 80 mm-100 mm. Each stirring knife barrel 2011 is welded to the outside of the stirring knife shafts 2012 and has a diameter of 200 mm to 300 mm. The height of the ring blades 2013 is 60 mm-100 mm, and the distance between the adjacent ring blades 2013 on the stirring knife barrels 2011 is 120 mm-200 mm. The cutting edges of the adjacent ring blades are in opposite directions to realize the shearing of the stalk. The diameter of the upper stirring knife gears 2014 and the lower stirring knife gears 2015 is 500 mm to 600 mm. The stirring knife sprockets 2016 have a diameter of 450 mm to 550 mm. The stirring knife sprockets are arranged in a staggered manner at the lowest part of the stirring knife shafts, and are connected by the stirring knife chains 2017. The power of the stirring knife transmission box is unilaterally transmitted to each stirring knife shaft 2012 through the transmission mechanism under the stirring knife barrels.
[0051] As shown in
[0052] The embodiments are preferred embodiments of the present invention, but the present invention is not limited to the above-mentioned embodiments. Without departing from the essence of the present invention, any obvious improvements, substitutions or variations that can be made by those skilled in the art fall within the protection scope of the present invention.