CN202773394U - Self-propelled multi-kinetic-energy corn green feed harvester - Google Patents

Self-propelled multi-kinetic-energy corn green feed harvester Download PDF

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Publication number
CN202773394U
CN202773394U CN 201220433239 CN201220433239U CN202773394U CN 202773394 U CN202773394 U CN 202773394U CN 201220433239 CN201220433239 CN 201220433239 CN 201220433239 U CN201220433239 U CN 201220433239U CN 202773394 U CN202773394 U CN 202773394U
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corncob
self
conveying
corn
kinetic energy
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CN 201220433239
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李亮业
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Abstract

A self-propelled multi-kinetic-energy corn green feed harvester belongs to the field of agricultural mechanical equipment and comprises a frame (1), a power device, a transmission device, a cab (3), wheels (2), a cutting conveying device and cutter throwers, wherein the power device, the transmission device and the cab (3) are installed on the upper part of the frame (1), the wheels (2) are installed below the frame (1), the cutting conveying device is installed on the front end of the frame (1), the cutter throwers are sequentially connected with one another behind the frame, and the self-propelled multi-kinetic-energy corn green feed harvester is characterized in that a corn ear picking device with adjustable height is installed on the upper part of the cutting conveying device, the rear part of the corn ear picking device is communicated with a corn ear conveying box (16) with a transverse conveying auger (15) inside, the output end of the corn ear conveying box (16) is provided with an opening, a slide groove (17) capable of storing corn ears is installed behind the opening, and the slide groove (17) is communicated with a corn storage cabin (18) behind the frame (1) through a corn ear conveying device on one side of the frame (1). Due to the adoption of the self-propelled multi-kinetic-energy corn green feed harvester, the corn can be automatically harvested while the green feed is harvested, and the straw mulching can be realized.

Description

Self-propelled many kinetic energy maize stalks feed reaping machine
Technical field
Self-propelled many kinetic energy maize stalks feed reaping machine belongs to the agricultural machinery field, is specifically related to a kind of multi-functional self-propelled corn Green-fodder harvesting machine.
Background technology
Along with socioeconomic development, the animal husbandry development is advanced by leaps and bounds, this just needs a large amount of feeds to carry out the green grass or young crops storage, and blue or green storage is seasonal strong, require at short notice with the blue or green storage of feed, this just needs Green-fodder harvesting machine as early as possible that crop harvesting is complete, yet the self-propelled greenfeed harvester of present stage is when work, need at first to utilize manually corncob to be broken off with the fingers and thumb down, Green-fodder harvesting machine could be worked, so just, increase human cost and wasted the harvesting time, thus need the scientific research personnel to study a kind of automatically multifunctional corn Green-fodder harvesting machine of results of corn of in the harvesting greenfeed, realizing, to enhance productivity.
Summary of the invention
The technical problems to be solved in the utility model is: overcome the deficiencies in the prior art, provide a kind of and can carry out automatically self-propelled many kinetic energy maize stalks feed reaping machine of results of corn in the results green fodder.
The technical scheme that its technical problem that solves the utility model adopts is: this self-propelled many kinetic energy maize stalks feed reaping machine, comprise vehicle frame, be installed in the power set on vehicle frame top, transmission device and driver's cabin, be installed in the wheel of vehicle frame below, be installed in the cutting conveying appliance of vehicle frame front end and in the wings the chopping and throwing mechanism of being linked in sequence, it is characterized in that: at the adjustable ear-picking unit of described cutting conveying appliance top installation height, the ear-picking unit rear portion is communicated with the corncob conveying box that is built-in with the lateral transfer screw feeder, the output opening of corncob conveying box, one chute that can take in corncob is installed at the opening part rear, and chute is communicated with the corn warehouse at vehicle frame rear by the corncob conveying plant of vehicle frame one side.Ear-picking unit can be taken the corncob on the stalk when cutting conveying appliance cuts off stalk, the corncob of taking enters the corncob conveying box and by the conveying screw feeder that rotates corncob is sent into chute, and then the conveying through the corncob conveying plant finally enters the corn warehouse.
Described ear-picking unit comprises harvesting pair roller, dialing-grain unit and outer cover, many groups are driven relatively turnable harvesting pair roller and are followed away the ceding of Taiwan top that direction is installed in cutting conveying appliance side by side, the dialing-grain unit that can drive running is all installed in every group of harvesting pair roller top, and dialing-grain unit top is covered with outer cover.The harvesting pair roller interacts corncob is taken, and the dialing-grain unit of running is dialled in the corncob conveying box at rear with corncob, and outer cover plays protection internal mechanism and effect attractive in appearance.
Described harvesting pair roller is arranged side by side the 3-5 group altogether.
The horizontal flying shore of described conveying screw feeder is carried three gear pieces that can stir corncob of output circumference uniform distribution of screw feeder driving shaft on the sidewall of corncob conveying box both sides.Gear piece can be dialled in chute with corncob.
Described corncob conveying plant comprises corncob delivery chute and conveyer belt, and the input of corncob delivery chute is communicated with chute, and output is communicated with the corn warehouse, and conveyer belt is layered on the base plate of corncob delivery chute lower end.The conveyer belt running transmits corncob, makes corncob be input to the corn warehouse by the corncob delivery chute from chute.
Described cutting conveying appliance comprises the ceding of Taiwan, laterally is installed in the ceding of Taiwan interior hobboing cutter, roller bearing and feeding screw feeder successively, and ceding of Taiwan rear portion has feeding mouth and connects the pan feeding passage, installs in the pan feeding passage and carries chain harrow, carries chain harrow connection chopping and throwing mechanism.Hobboing cutter cuts off maize straw from the bottom, enters the conveying chain harrow by roller bearing and feeding screw feeder, finally enters chopping and throwing mechanism.
Described chopping and throwing mechanism comprises crush box and is installed in roll stacks and the rotary cutting knife of crush box inside, be installed in the discharge pipe of crush box upper end, the input of roll stacks connects carries the chain harrow rear end, the output of roll stacks is installed rotatable rotary cutting knife, and the crush box upper end open also connects the discharge pipe of rotatable direction.Maize straw is through carrying chain harrow to send into roll stacks, and through stretching out after the extruding, the shredding corn stalk after the rotary cutting knife of rotation will push is also dished out by discharge pipe.
Described roll stacks comprises two pairs of rolls that vary in size, two rolls that diameter is larger are placed side by side at front end up and down, the roll face of cylinder is provided with convex tendon, less two rolls of diameter up and down placed side by side the rear end and above the roll cylinder be provided with convex tendon, the roll face of cylinder of below is the smooth face of cylinder.
Described crush box lower openings, opening part is installed dismountable movable floor by bolt and is sealed.If necessary, movable floor can be unloaded, the maize straw of chopping is spilt from lower openings, the realization maize straw is gone back the field on the spot.
The hydraulic motor that discharge pipe is rotated is installed in described discharge pipe lower end.
Compared with prior art, the beneficial effect that has of the utility model is:
1, can realize that green fodder and corn gather in the crops simultaneously, increase work efficiency, reduce labour intensity: ear-picking unit is installed on cutting conveying appliance top, the ear-picking unit rear portion is communicated with the corncob conveying box that is built-in with the lateral transfer screw feeder, corncob conveying box output is communicated with chute, chute is by corncob delivery chute corn warehouse, ear-picking unit can be taken the corncob on the stalk when cutting conveying appliance cuts off stalk, the corncob of taking enters the corncob conveying box and by the conveying screw feeder that rotates corncob is sent into chute, and then the conveying through the corncob delivery chute finally enters the corn warehouse;
2, green fodder can be realized the results storage, also can select stalk to go back on the spot the field: maize straw is through carrying chain harrow to send into roll stacks, through stretching out after the extruding, the crops after the rotary cutting knife of rotation will push are shredded and dish out by discharge pipe, can realize the storage of green fodder results; The crush box lower openings, opening part is installed dismountable movable floor by bolt and is sealed, and if necessary, movable floor can be unloaded, and the stalk of chopping is spilt from lower openings, and the realization stalk is gone back the field on the spot;
3, the green fodder of processing digests easily, is more suitable for animals and feeds: crops successively process feed screw feeder and carry chain harrow, and by shredding after the roll stacks extruding, make the easier digestion of green fodder, help animals to digest and assimilate, and are more suitable for nursing;
4, can gather in the crops the maize straw of lodging: hobboing cutter cuts off maize straw from the bottom, and it is low to cut stubble, can normally gather in for the maize straw that lodges, and has solved the difficult problem that the falling corn stalk can't gather in.
Description of drawings
Fig. 1 is the utility model front view schematic diagram.
Fig. 2 is the utility model right view schematic diagram.
Fig. 3 is the utility model partial structurtes schematic diagrames.
Wherein: 1, vehicle frame 2, wheel 3, driver's cabin 4, the ceding of Taiwan 5, hobboing cutter 6, feeding screw feeder 7, roller bearing 8, pan feeding passage 9, carry chain harrow 10, roll stacks 11, rotary cutting knife 12, crush box 13, discharge pipe 14, hydraulic motor 15, carry screw feeder 16, corncob conveying box 17, chute 18, corn warehouse 19, harvesting pair roller 20, dialing-grain unit 21, outer cover 22, gear piece 23, corncob delivery chute 24, conveyer belt 25, movable floor.
Embodiment
Fig. 1 ~ 3rd, most preferred embodiment of the present utility model is described further below in conjunction with 1 ~ 3 pair of the utility model of accompanying drawing.
With reference to accompanying drawing 1 ~ 3: this self-propelled many kinetic energy maize stalks feed reaping machine, comprise vehicle frame 1, be installed in vehicle frame 1 top power set, transmission device and driver's cabin 3, be installed in vehicle frame 1 below wheel 2, be installed in the cutting conveying appliance of vehicle frame 1 front end and in the wings the chopping and throwing mechanism of being linked in sequence, be installed in the ear-picking unit on cutting conveying appliance top.
Cutting conveying appliance comprises the ceding of Taiwan 4, laterally is installed in hobboing cutter 5, roller bearing 7 and feeding screw feeder 6 in the ceding of Taiwan 4 successively, and the ceding of Taiwan 4 rear portions have feeding mouth and connect pan feeding passage 8, and chain harrows 9 are carried in the 8 interior installations of pan feeding passage, carry chain harrow 9 to connect chopping and throwing mechanisms.Chopping and throwing mechanism comprises crush box 12 and is installed in roll stacks 10 and the rotary cutting knife 11 of crush box 12 inside that be installed in the discharge pipe 13 of crush box 12 upper ends, the hydraulic motor 14 that discharge pipe 13 is rotated is installed in discharge pipe 13 lower ends.Roll stacks 10 comprises two pairs of rolls that vary in size, two rolls that diameter is larger are placed side by side at front end up and down, the roll face of cylinder is provided with convex tendon, less two rolls of diameter up and down placed side by side the rear end and above the roll cylinder be provided with convex tendon, the roll face of cylinder of below is the smooth face of cylinder, the input of roll stacks 10 connects carries chain harrow 9 rear ends, the output of roll stacks 10 is installed rotatable rotary cutting knife 11, crush box 12 upper end open also connect the discharge pipe 13 of rotatable direction, crush box 12 lower openings, opening part is installed dismountable movable floor 25 by bolt and is sealed, if necessary, movable floor 25 can be unloaded, the maize straw of chopping is spilt from lower openings, the realization maize straw is gone back the field on the spot.
At the adjustable ear-picking unit of cutting conveying appliance top installation height, the ear-picking unit rear portion is communicated with the corncob conveying box 16 that is built-in with lateral transfer screw feeder 15, the output opening of corncob conveying box 16, one chute 17 that can take in corncob is installed at the opening part rear, and chute 17 is communicated with the corn warehouse 18 at vehicle frame 1 rear by the corncob conveying plant of vehicle frame 1 one sides.Ear-picking unit comprises harvesting pair roller 19, dialing-grain unit 20 and outer cover 21,3-5 organizes relatively turnable harvesting pair roller 19 and follows away the ceding of Taiwan 4 tops that direction is installed in cutting conveying appliance side by side, the dialing-grain unit 20 that can drive running is all installed in every group of harvesting pair roller 19 tops, and dialing-grain unit 20 tops are covered with outer cover 21.Harvesting pair roller 19 interacts corncob is taken, and the dialing-grain unit 20 of running is dialled in the corncob conveying box 16 at rear with corncob, and outer cover 21 plays protection internal mechanism and effect attractive in appearance.
Carry screw feeder 15 horizontal flying shores on corncob conveying box 16 both sides sidewalls, three of the output circumference uniform distributions of conveying screw feeder 15 driving shafts can be stirred the gear piece 22 of corncob.Gear piece 22 can be dialled in corncob chute 17.The corncob conveying plant comprises corncob delivery chute 23 and conveyer belt 24, the input of corncob delivery chute 23 is communicated with chute 17, output is communicated with corn warehouse 18, conveyer belt 24 is layered on the corncob delivery chute 23 lower end base plates, conveyer belt 24 runnings transmit corncob, make corncob be input to corn warehouse 18 by corncob delivery chute 23 from chute 17.
The whole course of work is divided into green fodder results and two processes of harvest corn.
Green fodder harvesting work process: start this self-propelled many kinetic energy maize stalks feed reaping machine, hobboing cutter 5 cuts off maize straw from the bottom, the maize straw that cuts off enters by roller bearing 7 and feeding screw feeder 6 and carries chain harrow 9, then enter in the crush box 12,10 extruding of process roll stacks are also stretched out, the rotary cutting knife 11 of rotation is dished out from discharge pipe 13 with shredding corn stalk and with it, directly send in motor vehicle reservoir or other containers, if need straw-returning, then the movable floor 25 with crush box 12 lower ending opening places unloads, the maize straw of chopping is spilt from lower openings, and the realization maize straw is gone back the field on the spot.
Harvest corn process: start this self-propelled many kinetic energy maize stalks feed reaping machine, hobboing cutter 5 cuts off maize straw from the bottom, many groups harvesting pair roller 19 on the simultaneously ceding of Taiwan 4 tops is done the corncob that relatively rotates on the maize straw and is taken, then the dialing-grain unit 20 of running is dialled in corncob the corncob conveying box 16 at rear, enter the corncob of corncob conveying box 16 through carrying screw feeder 15 to send into chute 17, conveyer belt 24 runnings this moment, corncob is transmitted, make corncob be input to corn warehouse 18 by corncob delivery chute 23 from chute 17, realize harvest corn.
The above, it only is preferred embodiment of the present utility model, be not to be the restriction of the utility model being made other form, any those skilled in the art may utilize the technology contents of above-mentioned announcement to be changed or be modified as the equivalent embodiment of equivalent variations.But every technical solutions of the utility model content that do not break away to any simple modification, equivalent variations and remodeling that above embodiment does, still belongs to the protection domain of technical solutions of the utility model according to technical spirit of the present utility model.

Claims (10)

1. self-propelled many kinetic energy maize stalks feed reaping machine, comprise vehicle frame (1), be installed in the power set on vehicle frame (1) top, transmission device and driver's cabin (3), be installed in the wheel (2) of vehicle frame (1) below, be installed in the cutting conveying appliance of vehicle frame (1) front end and in the wings the chopping and throwing mechanism of being linked in sequence, it is characterized in that: at the adjustable ear-picking unit of described cutting conveying appliance top installation height, the ear-picking unit rear portion is communicated with the corncob conveying box (16) that is built-in with lateral transfer screw feeder (15), the output opening of corncob conveying box (16), one chute (17) that can take in corncob is installed at the opening part rear, and chute (17) is communicated with the corn warehouse (18) at vehicle frame (1) rear by the corncob conveying plant of vehicle frame (1) one side.
2. self-propelled many kinetic energy maize stalks feed reaping machine according to claim 1, it is characterized in that: described ear-picking unit comprises harvesting pair roller (19), dialing-grain unit (20) and outer cover (21), many groups are driven relatively turnable harvesting pair roller (19) and are followed away the ceding of Taiwan (4) top that direction is installed in cutting conveying appliance side by side, the dialing-grain unit (20) that can drive running is all installed in every group of harvesting pair roller (19) top, and dialing-grain unit (20) top is covered with outer cover (21).
3. self-propelled many kinetic energy maize stalks feed reaping machine according to claim 2 is characterized in that: described harvesting pair roller (19) is arranged side by side the 3-5 group altogether.
4. self-propelled many kinetic energy maize stalks feed reaping machine according to claim 1, it is characterized in that: laterally flying shore is on the sidewall of corncob conveying box (16) both sides for described conveying screw feeder (15), and three of the output circumference uniform distributions of conveying screw feeder (15) driving shaft can be stirred the gear piece (22) of corncob.
5. self-propelled many kinetic energy maize stalks feed reaping machine according to claim 1, it is characterized in that: described corncob conveying plant comprises corncob delivery chute (23) and conveyer belt (24), the input of corncob delivery chute (23) is communicated with chute (17), output is communicated with corn warehouse (18), and conveyer belt (24) is layered on the base plate of corncob delivery chute (23) lower end.
6. self-propelled many kinetic energy maize stalks feed reaping machine according to claim 1, it is characterized in that: described cutting conveying appliance comprises the ceding of Taiwan (4), laterally is installed in hobboing cutter (5), the roller bearing (7) in the ceding of Taiwan (4) and feed screw feeder (6) successively, the ceding of Taiwan (4) rear portion has feeding mouth and connects pan feeding passage (8), install in the pan feeding passage (8) and carry chain harrow (9), carry chain harrow (9) to connect chopping and throwing mechanism.
7. according to claim 1 or 6 each described self-propelled many kinetic energy maize stalks feed reaping machines, it is characterized in that: described chopping and throwing mechanism comprises crush box (12) and is installed in crush box (12) inner roll stacks (10) and rotary cutting knife (11), be installed in the discharge pipe (13) of crush box (12) upper end, the input of roll stacks (10) connects carries chain harrow (9) rear end, the output of roll stacks (10) is installed rotatable rotary cutting knife (11), and crush box (12) upper end open also connects the discharge pipe (13) of rotatable direction.
8. self-propelled many kinetic energy maize stalks feed reaping machine according to claim 7, it is characterized in that: described roll stacks (10) comprises two pairs of rolls that vary in size, two rolls that diameter is larger are placed side by side at front end up and down, the roll face of cylinder is provided with convex tendon, less two rolls of diameter up and down placed side by side the rear end and above the roll cylinder be provided with convex tendon, the roll face of cylinder of below is the smooth face of cylinder.
9. self-propelled many kinetic energy maize stalks feed reaping machine according to claim 7, it is characterized in that: described crush box (12) lower openings, opening part is installed dismountable movable floor (25) by bolt and is sealed.
10. self-propelled many kinetic energy maize stalks feed reaping machine according to claim 7 is characterized in that: the hydraulic motor (14) that the installation of described discharge pipe (13) lower end can make discharge pipe (13) rotate.
CN 201220433239 2012-08-29 2012-08-29 Self-propelled multi-kinetic-energy corn green feed harvester Expired - Fee Related CN202773394U (en)

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Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103583144A (en) * 2013-08-17 2014-02-19 邹国新 Grass-seed-separated type grass cutting and racking machine
CN103843523A (en) * 2014-03-25 2014-06-11 邹平永兴农机有限公司 Versatile self-walking corn green feed harvester
CN106171272A (en) * 2016-08-31 2016-12-07 冯桂强 Green-fodder harvesting machine
CN109005892A (en) * 2018-07-30 2018-12-18 山东国丰机械有限公司 A kind of self-propelled ear-stem harvester for maize
CN111557169A (en) * 2020-06-08 2020-08-21 中联重机浙江有限公司 Low-position corn header
CN112753363A (en) * 2021-01-19 2021-05-07 郑州市天粮收获机械有限公司 Multifunctional corn harvester
CN113228927A (en) * 2021-03-24 2021-08-10 九方泰禾国际重工(青岛)股份有限公司 Self-propelled green feed harvester with disc cutter type chopper and method

Cited By (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103583144A (en) * 2013-08-17 2014-02-19 邹国新 Grass-seed-separated type grass cutting and racking machine
CN103843523A (en) * 2014-03-25 2014-06-11 邹平永兴农机有限公司 Versatile self-walking corn green feed harvester
CN103843523B (en) * 2014-03-25 2016-05-18 邹平永兴农机有限公司 Self-propelled corn Green-fodder harvesting machine
CN106171272A (en) * 2016-08-31 2016-12-07 冯桂强 Green-fodder harvesting machine
CN109005892A (en) * 2018-07-30 2018-12-18 山东国丰机械有限公司 A kind of self-propelled ear-stem harvester for maize
CN111557169A (en) * 2020-06-08 2020-08-21 中联重机浙江有限公司 Low-position corn header
CN112753363A (en) * 2021-01-19 2021-05-07 郑州市天粮收获机械有限公司 Multifunctional corn harvester
CN113228927A (en) * 2021-03-24 2021-08-10 九方泰禾国际重工(青岛)股份有限公司 Self-propelled green feed harvester with disc cutter type chopper and method
CN113228927B (en) * 2021-03-24 2023-02-03 九方泰禾国际重工(青岛)股份有限公司 Self-propelled green feed harvester with disc cutter type chopper and method

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Granted publication date: 20130313

Termination date: 20190829