CN209643358U - A kind of shallot excavating gear - Google Patents
A kind of shallot excavating gear Download PDFInfo
- Publication number
- CN209643358U CN209643358U CN201920175320.9U CN201920175320U CN209643358U CN 209643358 U CN209643358 U CN 209643358U CN 201920175320 U CN201920175320 U CN 201920175320U CN 209643358 U CN209643358 U CN 209643358U
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- CN
- China
- Prior art keywords
- shallot
- excavating gear
- shovel
- native
- digger blade
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Abstract
The utility model relates to a kind of shallot excavating gears, belong to agricultural machinery harvest equipment technical field.In order to solve the problems, such as that existing excavating gear narrow application range, efficiency of crop are low, a kind of shallot excavating gear applied widely, yield rate is high is provided.Whole device is installed on Green Chinese onion harvester by the shallot excavating gear, including installing mechanism, driving mechanism and digger blade, the installing mechanism, and driving mechanism, which is mounted on installing mechanism, drives digger blade movement, and the digger blade is mounted in driving mechanism.The shallot excavating gear is mounted on rear side of Green Chinese onion harvester and carries out mechanization receipts green onion, improves work efficiency, and saves manpower, for productivity up to 6 mu/h, harvesting speed is 80 times manually harvested.
Description
Technical field
The utility model belongs to technical field of agricultural mechanical equipment, and in particular to a kind of shallot excavating gear.
Background technique
Shallot is generally planted on alley, and green onion body buries relatively deeply, and harvest, which relies primarily on, at present is accomplished manually, a generally people
The combination that green onion ties green onion with three people is pulled out, four people are only capable of about 0.6 mu of harvest with unification day.Hand harvest is time-consuming and laborious, and labour is strong
Degree is big, and production efficiency is low, and harvest is at high cost, becomes a big short slab of limitation China shallot industry development.The digging of Green Chinese onion harvester
Pick shovel is the critical component of Green Chinese onion harvester, and developing the high digger blade of a kind of wide applicability, good reliability, efficiency of crop is to carry out
One step of key of shallot harvest.
Summary of the invention
Utility model aims to solve the low problems of existing excavating gear narrow application range, efficiency of crop, provide
A kind of shallot excavating gear applied widely, yield rate is high.
The shallot excavating gear of the utility model is achieved through the following technical solutions:
A kind of shallot excavating gear is characterized in that including installing mechanism, driving mechanism and digger blade, the peace
Whole device is installed on Green Chinese onion harvester by mounting mechanism, and driving mechanism, which is mounted on installing mechanism, drives digger blade movement, institute
Digger blade is stated to be mounted on installing mechanism;
The digger blade includes shovel tip, shovel transverse slat, sieves native connecting plate, sieves native net, and the shovel transverse slat is mounted on installing mechanism
On, the side for shoveling transverse slat is equipped with shovel tip, and the other side is equipped with the native connecting plate of sieve, and the other side for sieving native connecting plate is equipped with sieve soil
Net, the native connecting plate of the sieve is an anteversion and retroversion inclined plate, and the height close to sieve soil net side is higher than the height close to shovel tip side,
It with the angle of horizontal plane is α on front-rear direction, the shovel tip, shovel transverse slat, to sieve native connecting plate be left low and right high, tilt angle phase
It together, is β with the angle of horizontal plane on left and right directions.
Described sieve on native connecting plate front-rear direction with the angle α of horizontal plane is 10-15 °, the shovel tip, shovel transverse slat, sieve soil
On connecting plate left and right directions with the angle β of horizontal plane be 3-5 °.
In order to control soil and shallot trend, a kind of improvement of the utility model is: the shovel transverse slat and the native connecting plate of sieve
The left and right sides be equipped with mud guard, the front end of the mud guard is concordant with shovel transverse slat, presss from both sides with native connecting plate is sieved at 40-50 degree
Angle.
The front end of the shovel tip is the arc edge of shovel, and convex surface is the edge of shovel of 65Mn upward;
The soil net that sieves includes the shaft connecting with the native connecting plate of sieve, and the other side of shaft is fixedly connected with multiple rectangle steels
Pipe successively successively decreases from spacing of the native net between eccentric wheel side to the sieve soil net other side, rectangle steel is sieved, the folder with horizontal plane
Also successively successively decrease at angle.
The installing mechanism includes excavating gear installation side plate, sliding rail rack and vertical plate, the excavating gear installation side plate
Equipped with two pieces, it is separately mounted to the left and right sides at Green Chinese onion harvester rear, be mounted in the excavating gear installation side plate of every side
Sliding rail rack, the sliding rail rack are set on vertical plate, and the vertical plate connecting plate of installation digger blade is connected with below vertical plate.
The sliding rail rack includes two rack bodies in left and right, is equipped with the first installation on the left of the left support ontology
Block is equipped with third mounting blocks on the right side of right support ontology, the second mounting blocks, the left branch is equipped on the third mounting blocks
Frame ontology, right support ontology are the cuboid housing communicated up and down, and left support ontology, right support ontology are respectively sleeved at left and right
On the vertical plate of two sides.
For the ease of adjusting the embedded depth of digger blade, another improve of the utility model is: the vertical plate is equipped with
Limited block, the limited block are equipped with tapped through hole, are equipped with Limit screw in the tapped through hole;By adjusting Limit screw
The depth screwed on limited block come adjust lifting hydraulic cylinder lever retraction distance, to adjust the embedded depth of digger blade.
The driving mechanism includes the hydraulic drive mechanism for driving digger blade movement and the vibration group of driving digger blade vibration
Part.
The hydraulic drive mechanism is mounted on the left and right sides of digger blade, every side include be fixedly mounted on rack body and
Lifting hydraulic cylinder on vertical plate and the rotation liquid being mounted between the first mounting blocks of excavating gear installation side plate and sliding rail rack
Cylinder pressure, the lifting hydraulic cylinder are able to drive vertical plate and move up and down on sliding rail rack, and the rotating hydraulic cylinder is able to drive digging
Pick shovel rotates certain angle.
The vibration component is mounted on the right side of digger blade, including vibrating motor, eccentric wheel, oscillating bearing are connected with rocker arm
Bar, the vibrating motor are mounted on the second mounting blocks of sliding rail rack, and the output end of vibrating motor is equipped with eccentric wheel, eccentric
The other end of wheel is connect by the oscillating bearing rocker arm connecting rod online with sieve soil is mounted on.
The utility model has the beneficial effects that
The utility model shallot excavating gear is mounted on rear side of Green Chinese onion harvester and carries out mechanization receipts green onion, improves work
Efficiency saves manpower, and for productivity up to 6 mu/h, harvesting speed is 80 times manually harvested, in which: sieves the sliding soil of native connecting plate
The design of angle [alpha] can be such that shallot rhizome is mined after shovel shovel tip dug, as digger blade is forward, the shallot continuously dug
Root and surrounding soil are moved up along shovel transverse slat, the native connecting plate direction sliding of sieve, are finally reached the state dug out;It is sliding simultaneously
The design of native angle [alpha] greatly reduces the advance resistance of digger blade in the soil;
The design of limited block and Limit screw can adjust burying for digger blade according to the difference of shallot rhizome embedded depth
Depth avoids damage to shallot rhizome;
Shovel tip, the design for shoveling transverse slat, the angle β for sieving native connecting plate and horizontal plane, can make shallot move ahead gradually with digger blade
It is tilted to side, realizes the effect that laying operation is neatly put;
The design of vibration component makes to sieve native net fast vibration under eccentric wheel drive, can make the soil around shallot rhizome
It is dissipated by shake, separates shallot with soil, reduce the difficulty manually tied up.
Detailed description of the invention
Fig. 1: the perspective view of the utility model;
Fig. 2: the left view of the utility model and cropper cooperation;
Fig. 3: the structural schematic diagram of the utility model digger blade;
Fig. 4: the utility model sliding rail rack and digger blade assembling stereogram;
Fig. 5: Fig. 4 main view;
Fig. 6: Fig. 4 portion A enlarged drawing;
In figure: 1, digger blade, 101, shovel tip, 102, shovel transverse slat, 103, the native connecting plate of sieve, 104, the native net of sieve, 105,
Mud guard, 106, shaft, 107, rectangular steel pipe, 2, excavating gear installation side plate, 3, sliding rail rack, 301, left support sheet
Body, the 302, first mounting blocks, the 303, second mounting blocks, 304, right support ontology, 305, third mounting blocks, 4, vertical plate, 401,
Limited block, 402, Limit screw, 5, lifting hydraulic cylinder, 6, rotating hydraulic cylinder, 7, vibration component, 701, vibrating motor, 702,
Eccentric wheel, 703, oscillating bearing, 704, rocker arm connecting rod 8, vertical plate connecting plate.
Specific embodiment
With reference to the accompanying drawing, the technical scheme in the utility model embodiment is clearly and completely described, it is clear that
The described embodiments are only a part of the embodiments of the utility model, instead of all the embodiments.Based on the utility model
In embodiment, those of ordinary skill in the art's every other embodiment obtained under the premise of no creative work, all
Belong to the range of the utility model protection.
Embodiment 1.A kind of shallot excavating gear, with reference to Fig. 1-6, including installing mechanism, driving mechanism and digger blade 1, institute
It states installing mechanism whole device is installed on Green Chinese onion harvester, driving mechanism, which is mounted on installing mechanism, drives digger blade 1 to transport
Dynamic, the digger blade 1 is mounted on installing mechanism;
The installing mechanism includes excavating gear installation side plate 2, sliding rail rack 3 and vertical plate 4, and the excavating gear installs side
Plate 2 is equipped with two pieces, is separately mounted to the left and right sides at Green Chinese onion harvester rear, be respectively mounted in the excavating gear installation side plate of every side
There is sliding rail rack 3, the sliding rail rack 3 is set on vertical plate 4, and the vertical plate connecting plate of installation digger blade is connected with below vertical plate 4
8;
The sliding rail rack 3 includes two rack bodies in left and right, and the left side of the left support ontology 301 is equipped with the first peace
Block 302 is filled, the right side of right support ontology 304 is equipped with third mounting blocks 305, is equipped with second on the third mounting blocks 305
Mounting blocks 303, the left support ontology 301, right support ontology 304 are the cuboid housing communicated up and down, left support ontology
301, right support ontology 304 is respectively sleeved on the vertical plate 4 of the left and right sides;
For the ease of adjusting the embedded depth of digger blade, the vertical plate 4 is equipped with limited block 401, sets on the limited block
There is tapped through hole, Limit screw 402 is installed in the tapped through hole;The depth screwed on limited block by adjusting Limit screw
It spends to adjust the distance of lifting hydraulic cylinder lever retraction, to adjust the embedded depth of digger blade, embedded depth range is 0-
30cm;
The digger blade 1 is mounted between the two vertical plate connecting plates 8 in left and right, including shovel tip 101, shovel transverse slat 102, sieve soil are even
Fishplate bar 103 sieves native net 104, and the shovel transverse slat 102 is mounted between two vertical plate connecting plates 8, the side installation of shovel transverse slat 102
There is shovel tip 101, the other side is equipped with the native connecting plate 103 of sieve, and the other side for sieving native connecting plate 103 is equipped with the native net 104 of sieve;
The native connecting plate of the sieve is an anteversion and retroversion inclined plate, and the height close to sieve soil net side is higher than the height close to the side shovel tip α
Degree with the angle of horizontal plane is α on front-rear direction, and the shovel tip, shovel transverse slat, to sieve native connecting plate be left low and right high, inclination
Angle is identical, with the angle of horizontal plane is β on left and right directions;
Described sieve on native connecting plate front-rear direction with the angle α of horizontal plane is 10-15 °, the shovel tip, shovel transverse slat, sieve soil
On connecting plate left and right directions with the angle β of horizontal plane be 3-5 °;
In order to control soil and shallot trend, the shovel transverse slat 102 and the left and right sides for sieving native connecting plate 103 are equipped with gear
The front end of mud plate 105, the mud guard 105 is concordant with shovel transverse slat, with the native connecting plate 103 of sieve at 40-50 degree angle;
The front end of the shovel tip 101 is the arc edge of shovel, and convex surface is the edge of shovel of 65Mn upward;
The soil net 104 that sieves includes the shaft 106 connecting with the native connecting plate 103 of sieve, and the other side of shaft 106 is fixedly connected
There are multiple rectangular steel pipes 107, is successively passed from spacing of the native net between eccentric wheel side to the sieve soil net other side, rectangle steel is sieved
Subtract, also successively successively decreases with the angle of horizontal plane;
The driving mechanism includes the hydraulic drive mechanism for driving digger blade movement and the vibration group of driving digger blade vibration
Part 7;
The hydraulic drive mechanism is mounted on the left and right sides of digger blade 1, and every side includes being fixedly mounted on rack body
301 and the lifting hydraulic cylinder 5 on vertical plate 4 and it is mounted on excavating gear installation side plate 2 and 3 first mounting blocks 301 of sliding rail rack
Between rotating hydraulic cylinder 6, the lifting hydraulic cylinder 5 is able to drive vertical plate 4 and moves up and down on sliding rail rack 3, the rotation
Hydraulic cylinder 6 is able to drive digger blade 1 and rotates certain angle;
The rotating hydraulic cylinder cylinder rod of excavating gear retracts when transition state (walking or travel position), and lifting hydraulic cylinder is complete
It stretches out, digger blade terrain clearance reaches maximum, it is ensured that the smooth transition of Green Chinese onion harvester.
The rotating hydraulic cylinder cylinder rod of excavating gear is stretched out when harvest state, and lifting hydraulic cylinder can be embedded in soil according to shallot
The distance that depth adjustment cylinder rod retracts, to realize the excavation of digger blade different depth.
The vibration component is mounted on the right side of digger blade, including vibrating motor 701, eccentric wheel 702, oscillating bearing 703
With rocker arm connecting rod 704, the vibrating motor 701 is mounted on the second mounting blocks 303 of sliding rail rack 3, vibrating motor 701
Output end is equipped with eccentric wheel 702, and the other end of eccentric wheel 702 passes through oscillating bearing 703 and is mounted on shaking on the native net 104 of sieve
Arm connecting rod 704 connects.
When work, vibrating motor band movable eccentric wheel is rotated, and eccentric wheel drives vibrating screen to vibrate up and down by rocker arm connecting rod,
The soil excavated shake is dissipated, is allowed to be detached from shallot.
The present apparatus by with Green Chinese onion harvester be used cooperatively, it can be achieved that shallot laying harvest and uprightly harvest two kinds of moulds
Formula.When laying harvest operation, excavating gear moves ahead, and shallot is mined shovel sliding trackle root system and digs, and is dissipated by vibrating screen effect shake
The soil connected around shallot rhizome reduces soil to the resistance of shallot rhizome, and final shallot was excavating dress by neat falling
The side set, then by being transported after manually tying up;When upright harvest, vibrating screen stops working, shallot rhizome portion soil
It is loosened under the action of digger blade, shallot is influenced state of being still kept upright by a part of soil attachment force at this time, is then led to
It crosses manually easily to pull up shallot and tie up.
The above descriptions are merely preferred embodiments of the present invention, is not to make other forms to the utility model
Limitation, any person skilled in the art is changed or is modified as possibly also with the technology contents of the disclosure above equivalent
The equivalent embodiment of variation.But it is all without departing from the content of the technical scheme of the utility model, the technology according to the utility model is real
Matter any simple modification, equivalent variations and remodeling to the above embodiments, still fall within the guarantor of technical solutions of the utility model
Protect range.
Claims (10)
1. a kind of shallot excavating gear, it is characterised in that: including installing mechanism, driving mechanism and digger blade (1), the fitting machine
Whole device is installed on Green Chinese onion harvester by structure, and driving mechanism, which is mounted on installing mechanism, drives digger blade (1) movement, described
Digger blade (1) is mounted on installing mechanism;
The digger blade (1) includes shovel tip (101), shovel transverse slat (102), sieves native connecting plate (103), sieves native net (104), the shovel
Transverse slat (102) is mounted on installing mechanism, and the side of shovel transverse slat (102) is equipped with shovel tip (101), and the other side is equipped with sieve soil even
Fishplate bar (103), the other side for sieving native connecting plate (103) is equipped with the native net (104) of sieve, before the native connecting plate (103) of the sieve is one
Hypsokinesis inclined plate is higher than the height close to shovel tip (101) side close to the height for sieving native net (104) side, on front-rear direction with
The angle of horizontal plane is α, and the shovel tip (101), shovel transverse slat (102), the native connecting plate (103) of sieve are left low and right high, inclination angle
It spends identical, with the angle of horizontal plane is β on left and right directions.
2. a kind of shallot excavating gear according to claim 1, it is characterised in that: native connecting plate (103) front and back of the sieve
It is upwards 10-15 ° with the angle α of horizontal plane, the shovel tip (101), shovel transverse slat (102) sieve native connecting plate (103) left and right directions
Upper and horizontal plane angle β is 3-5 °.
3. a kind of shallot excavating gear according to claim 1 or claim 2, it is characterised in that: the shovel transverse slat (102) and sieve soil are even
It is equipped at left and right sides of fishplate bar (103) mud guard (105), the front end of the mud guard (105) is concordant with shovel transverse slat, with sieve soil
Connecting plate (103) is at 40-50 degree angle.
4. a kind of shallot excavating gear according to claim 1 or claim 2, it is characterised in that:
The front end of the shovel tip (101) is the arc edge of shovel, and convex surface is upward;The native net (104) of the sieve includes and sieves native connecting plate
(103) shaft (106) connected, the other side of shaft (106) are fixedly connected with multiple rectangular steel pipes (107), lean on from native net is sieved
Successively successively decrease, also successively successively decrease with the angle of horizontal plane to the soil net other side, the spacing between rectangle steel is sieved in nearly eccentric wheel side.
5. a kind of shallot excavating gear according to claim 1 or claim 2, it is characterised in that: the installing mechanism includes excavating dress
Installation side plate (2), sliding rail rack (3) and vertical plate (4) are set, the excavating gear installation side plate (2) is equipped with two pieces, is separately mounted to
The left and right sides at Green Chinese onion harvester rear is mounted on sliding rail rack (3), the sliding rail in the excavating gear installation side plate of every side
Bracket (3) is set on vertical plate (4), and the vertical plate connecting plate (8) of installation digger blade is connected with below vertical plate (4).
6. a kind of shallot excavating gear according to claim 5, it is characterised in that: the sliding rail rack (3) includes left and right two
A rack body is equipped with the first mounting blocks (302) on the left of the left support ontology (301), the right side of right support ontology (304)
Side is equipped with third mounting blocks (305), is equipped with the second mounting blocks (303), the left support on the third mounting blocks (305)
Ontology (301), right support ontology (304) are the cuboid housing communicated up and down, left support ontology (301), right support ontology
(304) it is respectively sleeved on the vertical plate (4) of the left and right sides.
7. a kind of shallot excavating gear according to claim 5, it is characterised in that: the vertical plate (4) is equipped with limited block
(401), the limited block is equipped with tapped through hole, is equipped with Limit screw (402) in the tapped through hole.
8. a kind of shallot excavating gear according to claim 1 or claim 2, it is characterised in that: the driving mechanism includes that driving is dug
Dig the vibration component (7) of the dynamic hydraulic drive mechanism of scraper and driving digger blade vibration.
9. a kind of shallot excavating gear according to claim 8, it is characterised in that: the hydraulic drive mechanism is mounted on excavation
Shovel the left and right sides of (1), every side include the lifting hydraulic cylinder (5) that is fixedly mounted on rack body (301) and vertical plate (4) with
And it is mounted on the rotating hydraulic cylinder (6) between (3) first mounting blocks (302) of excavating gear installation side plate (2) and sliding rail rack, institute
It states lifting hydraulic cylinder (5) and is able to drive vertical plate (4) and move up and down on sliding rail rack (3), the rotating hydraulic cylinder (6) being capable of band
Dynamic digger blade (1) rotates certain angle.
10. a kind of shallot excavating gear according to claim 8, it is characterised in that: the vibration component is mounted on digger blade
Right side, including vibrating motor (701), eccentric wheel (702), oscillating bearing (703) and rocker arm connecting rod (704), the vibration
Motor (701) is mounted on the second mounting blocks (303) of sliding rail rack (3), and the output end of vibrating motor (701) is equipped with bias
It takes turns (702), the other end of eccentric wheel (702) by oscillating bearing (703) and is mounted on the rocker arm connecting rod sieved on native net (104)
(704) it connects.
Priority Applications (1)
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CN201920175320.9U CN209643358U (en) | 2019-01-31 | 2019-01-31 | A kind of shallot excavating gear |
Applications Claiming Priority (1)
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CN201920175320.9U CN209643358U (en) | 2019-01-31 | 2019-01-31 | A kind of shallot excavating gear |
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Family
ID=68523675
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CN201920175320.9U Expired - Fee Related CN209643358U (en) | 2019-01-31 | 2019-01-31 | A kind of shallot excavating gear |
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Cited By (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111264166A (en) * | 2020-01-16 | 2020-06-12 | 浙江中医药大学中药饮片有限公司 | Platycodon grandiflorum harvesting equipment |
CN111758364A (en) * | 2020-07-29 | 2020-10-13 | 青岛农业大学 | Excavating and soil removing device |
CN111903325A (en) * | 2020-09-10 | 2020-11-10 | 山东农业大学 | Pull-cutting type white asparagus harvesting end effector and harvesting method |
CN112005694A (en) * | 2020-09-17 | 2020-12-01 | 黑龙江省农业机械工程科学研究院 | Vibration excavating structure for beet harvester |
CN114402785A (en) * | 2022-02-24 | 2022-04-29 | 青岛理工大学 | Vibration excavating mechanism for ginger combined harvesting and ginger combined harvester |
-
2019
- 2019-01-31 CN CN201920175320.9U patent/CN209643358U/en not_active Expired - Fee Related
Cited By (8)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111264166A (en) * | 2020-01-16 | 2020-06-12 | 浙江中医药大学中药饮片有限公司 | Platycodon grandiflorum harvesting equipment |
CN111264166B (en) * | 2020-01-16 | 2021-05-28 | 浙江中医药大学中药饮片有限公司 | Platycodon grandiflorum harvesting equipment |
CN111758364A (en) * | 2020-07-29 | 2020-10-13 | 青岛农业大学 | Excavating and soil removing device |
CN111903325A (en) * | 2020-09-10 | 2020-11-10 | 山东农业大学 | Pull-cutting type white asparagus harvesting end effector and harvesting method |
CN111903325B (en) * | 2020-09-10 | 2023-11-14 | 山东农业大学 | Pulling-cutting type white asparagus harvesting end effector and harvesting method |
CN112005694A (en) * | 2020-09-17 | 2020-12-01 | 黑龙江省农业机械工程科学研究院 | Vibration excavating structure for beet harvester |
CN112005694B (en) * | 2020-09-17 | 2022-02-15 | 黑龙江省农业机械工程科学研究院 | Vibration excavating structure for beet harvester |
CN114402785A (en) * | 2022-02-24 | 2022-04-29 | 青岛理工大学 | Vibration excavating mechanism for ginger combined harvesting and ginger combined harvester |
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